3–759
Motorola Bipolar Power Transistor Device Data
Designer's
Data Sheet
SWITCHMODE
NPN Bipolar
Power Transistor for Electronic
Light Ballast and Switching
Power Supply Applications
The MJE/MJF18204 have an application specific state–of–the–art die dedicated to
the electronic ballast (“light ballast”) and power supply applications.
Improved Global Efficiency Due to Low Base Drive Requirements:
High and Flat DC Current Gain hFE
Fast Switching
No Coil Required in Base Circuit for Fast Turn–Off (No Current Tail)
Full Characterization at 125
_
C
Motorola “6 SIGMA” Philosophy Provides Tight and Reproducible Parametric
Distributions
Two Package Choices: Standard T O–220 or Isolated TO–220
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
MAXIMUM RATINGS
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
Rating
ÎÎÎÎ
ÎÎÎÎ
Symbol
ÎÎÎÎ
ÎÎÎÎ
MJE18204
ÎÎÎÎ
ÎÎÎÎ
MJF18204
ÎÎÎ
ÎÎÎ
Unit
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
Collector–Emitter Voltage
ÎÎÎÎ
ÎÎÎÎ
VCEO
ÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎ
600
ÎÎÎ
ÎÎÎ
Vdc
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
Collector–Base Voltage
ÎÎÎÎ
ÎÎÎÎ
VCBO
ÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎ
1200
ÎÎÎ
ÎÎÎ
Vdc
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
Collector–Emitter V oltage
ÎÎÎÎ
ÎÎÎÎ
VCES
ÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎ
1200
ÎÎÎ
ÎÎÎ
Vdc
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
Emitter–Base Voltage
ÎÎÎÎ
ÎÎÎÎ
VEBO
ÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎ
10
ÎÎÎ
ÎÎÎ
Vdc
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
Collector Current Continuous
Peak (1)
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
IC
ICM
ÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎ
5
10
ÎÎÎ
Î
Î
Î
ÎÎÎ
Adc
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
Base Current Continuous
Peak (1)
ÎÎÎÎ
ÎÎÎÎ
IB
IBM
ÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎ
2
4
ÎÎÎ
ÎÎÎ
Adc
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎ
Î
Î
ÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
RMS Isolation Voltage (2) Per Figure 22
(for 1 sec, R.H. 30%) Per Figure 23
TC = 25°C Per Figure 24
ÎÎÎÎ
Î
ÎÎ
Î
Î
ÎÎ
Î
ÎÎÎÎ
VISOL1
VISOL2
VISOL3
ÎÎÎÎ
Î
ÎÎ
Î
Î
ÎÎ
Î
ÎÎÎÎ
ÎÎÎÎ
Î
ÎÎ
Î
Î
ÎÎ
Î
ÎÎÎÎ
4500
3500
1500
ÎÎÎ
Î
Î
Î
Î
Î
Î
ÎÎÎ
Volts
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
*Total Device Dissipation @ TC = 25°C
*Derate above 25
_
C
ÎÎÎÎ
ÎÎÎÎ
PD
ÎÎÎÎ
ÎÎÎÎ
75
0.6
ÎÎÎÎ
ÎÎÎÎ
35
0.28
ÎÎÎ
ÎÎÎ
Watt
W/
_
C
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
Operating and Storage Temperature
ÎÎÎÎ
ÎÎÎÎ
TJ, Tstg
ÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎ
65 to 150
ÎÎÎ
ÎÎÎ
_
C
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
THERMAL CHARACTERISTICS
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
Rating
ÎÎÎÎ
ÎÎÎÎ
Symbol
ÎÎÎÎ
ÎÎÎÎ
MJE18204
ÎÎÎÎ
ÎÎÎÎ
MJF18204
ÎÎÎ
ÎÎÎ
Unit
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
Thermal Resistance — Junction to Case
— Junction to Ambient
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
RθJC
RθJA
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
1.65
62.5
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
3.55
62.5
ÎÎÎ
Î
Î
Î
ÎÎÎ
_
C/W
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
Maximum Lead Temperature for Soldering
Purposes: 1/8 from Case for 5 Seconds
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
TL
ÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎ
260
ÎÎÎ
Î
Î
Î
ÎÎÎ
_
C
(1) Pulse Test: Pulse Width = 5 ms, Duty Cycle
v
10%.
(2) Proper strike and creepage distance must be provided.
Designer’s Data for “W orst Case” Conditions — The Designer’s Data Sheet permits the design of most circuits entirely from the information presented. SOA Limit
curves — representing boundaries on device characteristics — are given to facilitate “worst case” design.
MOTOROLA
SEMICONDUCTOR TECHNICAL DATA
MJE18204
MJF18204
POWER TRANSISTORS
5 AMPERES
1200 VOLTS
35 and 75 WATTS
CASE 221A–06
TO–220AB
CASE 221D–02
TO–220 FULLPACK
MJE18204 MJF18204
3–760 Motorola Bipolar Power Transistor Device Data
ELECTRICAL CHARACTERISTICS (TC = 25°C unless otherwise noted)
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Characteristic
ÎÎÎÎ
ÎÎÎÎ
Symbol
Min
Typ
Max
ÎÎÎÎ
ÎÎÎÎ
Unit
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
OFF CHARACTERISTICS
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Collector–Emitter V oltage
(IC = 1 mA, IB = 0)
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
VCEO
ÎÎ
600
ÎÎ
660
Î
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
Vdc
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Collector–Emitter Sustaining V oltage
(IC = 100 mA, L = 25 mH)
(IC = 200 mA, L = 25 mH, R = 2 )
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
VCEO(sus)
VCER(sus)
ÎÎ
550
600
ÎÎ
630
700
Î
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
Vdc
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Collector–Base Breakdown Voltage
(ICBO = 1 mA, IE = 0)
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
VCBO
ÎÎ
1200
ÎÎ
1300
Î
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
Vdc
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Emitter–Base Breakdown Voltage
(IEBO = 1 mA, IC = 0)
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
VEBO
ÎÎ
10
ÎÎ
12.9
Î
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
Vdc
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Collector Cutoff Current (VCE = 600 V, IB = 0)
Collector Cutoff Current (VCE = 550 V, IB = 0)
ÎÎÎÎÎÎ
ÎÎÎÎÎÎ
@ TC = 25°C
@ TC = 125°C
ÎÎÎÎ
ÎÎÎÎ
ICEO
200
2000
ÎÎÎÎ
ÎÎÎÎ
µAdc
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Collector Cutoff Current (VCE = Rated VCES, VBE = 0)
Collector Cutoff Current (VCE = 1000 V, VBE = 0)
ÎÎÎÎÎÎ
Î
ÎÎÎÎ
Î
Î
ÎÎÎÎ
Î
ÎÎÎÎÎÎ
@ TC = 25°C
@ TC = 125°C
@ TC = 125°C
ÎÎÎÎ
Î
ÎÎ
Î
Î
ÎÎ
Î
ÎÎÎÎ
ICES
ÎÎ
ÎÎ
ÎÎ
ÎÎ
Î
Î
100
500
100
ÎÎÎÎ
Î
ÎÎ
Î
Î
ÎÎ
Î
ÎÎÎÎ
µAdc
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Collector Cutoff Current
(VCB = Rated VCB, IE = 0)
ÎÎÎÎ
ÎÎÎÎ
ICBO
100
ÎÎÎÎ
ÎÎÎÎ
µAdc
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Emitter–Cutoff Current
(VEB = 10 Vdc, IC = 0)
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
IEBO
ÎÎ
ÎÎ
Î
100
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
µAdc
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
ON CHARACTERISTICS
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Base–Emitter Saturation Voltage
(IC = 1 Adc, IB = 0.1 Adc)
(IC = 2 Adc, IB = 0.4 Adc)
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
VBE(sat)
ÎÎ
ÎÎ
0.83
0.92
Î
1.1
1.25
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
Vdc
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Collector–Emitter Saturation V oltage
(IC = 1 Adc, IB = 0.1 Adc)
ÎÎÎÎÎÎ
Î
ÎÎÎÎ
Î
Î
ÎÎÎÎ
Î
ÎÎÎÎÎÎ
@ TC = 25°C
@ TC = 125°C
ÎÎÎÎ
Î
ÎÎ
Î
Î
ÎÎ
Î
ÎÎÎÎ
VCE(sat)
ÎÎ
ÎÎ
ÎÎ
ÎÎ
0.3
0.7
Î
Î
1
1.25
ÎÎÎÎ
Î
ÎÎ
Î
Î
ÎÎ
Î
ÎÎÎÎ
Vdc
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
(IC = 2 Adc, IB = 0.4 Adc)
ÎÎÎÎÎÎ
ÎÎÎÎÎÎ
@ TC = 25°C
@ TC = 125°C
ÎÎÎÎ
ÎÎÎÎ
0.3
0.8
0.6
1.25
ÎÎÎÎ
ÎÎÎÎ
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
DC Current Gain
(IC = 0.5 Adc, VCE = 3 Vdc)
ÎÎÎÎÎÎ
Î
ÎÎÎÎ
Î
Î
ÎÎÎÎ
Î
ÎÎÎÎÎÎ
@ TC = 25°C
@ TC = 125°C
ÎÎÎÎ
Î
ÎÎ
Î
Î
ÎÎ
Î
ÎÎÎÎ
hFE
ÎÎ
ÎÎ
18
ÎÎ
ÎÎ
23
Î
Î
35
ÎÎÎÎ
Î
ÎÎ
Î
Î
ÎÎ
Î
ÎÎÎÎ
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
(IC = 1 Adc, VCE = 1 Vdc)
ÎÎÎÎÎÎ
Î
ÎÎÎÎ
Î
ÎÎÎÎÎÎ
@ TC = 25°C
@ TC = 125°C
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
ÎÎ
10
8
ÎÎ
13
Î
22
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
(IC = 2 Adc, VCE = 1 Vdc)
ÎÎÎÎÎÎ
Î
ÎÎÎÎ
Î
@ TC = 25°C
@ TC = 125°C
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎ
5
4
ÎÎ
8
6
Î
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
(IC = 5 mAdc, VCE = 5 Vdc)
ÎÎÎÎÎÎ
Î
ÎÎÎÎ
Î
ÎÎÎÎÎÎ
@ TC = 25°C
@ TC = 125°C
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
ÎÎ
10
ÎÎ
25
33
Î
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
DYNAMIC CHARACTERISTICS
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Current Gain Bandwidth (IC = 0.5 Adc, VCE = 10 Vdc, f = 1 MHz)
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
fT
ÎÎ
ÎÎ
13
Î
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
MHz
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Output Capacitance (VCB = 10 Vdc, IE = 0, f = 1 MHz)
ÎÎÎÎ
ÎÎÎÎ
Cob
200
ÎÎÎÎ
ÎÎÎÎ
pF
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Input Capacitance (VEB = 8 Vdc)
ÎÎÎÎ
ÎÎÎÎ
Cib
2000
ÎÎÎÎ
ÎÎÎÎ
pF
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
DYNAMIC SATURATION VOLTAGE
ÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎ
Dynamic Saturation
Vlt
ÎÎÎÎÎÎ
ÎÎÎÎÎÎ
IC = 2 Adc
IB1 = 660 mAdc
ÎÎÎ
ÎÎÎ
@ 3 µs
ÎÎÎÎÎÎ
ÎÎÎÎÎÎ
@ TC = 25°C
ÎÎÎÎ
ÎÎÎÎ
VCE(dsat)
2.5
ÎÎÎÎ
ÎÎÎÎ
V
ÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎ
Voltage:
Determined 1 µs and
ÎÎÎÎÎÎ
Î
ÎÎÎÎ
Î
ÎÎÎÎÎÎ
IB1
=
660
mAdc
VCC = 300 V
ÎÎÎ
Î
Î
Î
ÎÎÎ
ÎÎÎÎÎÎ
Î
ÎÎÎÎ
Î
ÎÎÎÎÎÎ
@ TC = 125°C
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
ÎÎ
ÎÎ
7.5
Î
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
ÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎ
3 µs respectively after
risin
g
I
B1
reaches
ÎÎÎÎÎÎ
ÎÎÎÎÎÎ
IC = 2 Adc
IB1 =04Adc
ÎÎÎ
ÎÎÎ
@ 3 µs
ÎÎÎÎÎÎ
ÎÎÎÎÎÎ
@ TC = 25°C
ÎÎÎÎ
ÎÎÎÎ
7
ÎÎÎÎ
ÎÎÎÎ
ÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎ
gB1
90% of final IB1
ÎÎÎÎÎÎ
ÎÎÎÎÎÎ
IB1
=
0
.
4
Adc
VCC = 300 V
ÎÎÎ
ÎÎÎ
ÎÎÎÎÎÎ
ÎÎÎÎÎÎ
@ TC = 125°C
ÎÎÎÎ
ÎÎÎÎ
15
ÎÎÎÎ
ÎÎÎÎ
MJE18204 MJF18204
3–761
Motorola Bipolar Power Transistor Device Data
ELECTRICAL CHARACTERISTICS (TC = 25°C unless otherwise noted)
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Characteristic
ÎÎÎÎ
ÎÎÎÎ
Symbol
Min
Typ
Max
ÎÎÎÎ
ÎÎÎÎ
Unit
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
SWITCHING CHARACTERISTICS: Resistive Load (D.C. 10%, Pulse Width = 20 µs)
ÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎ
T urn–on Time
ÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎ
IC = 2 Adc, IB1 = 0.4 Adc
IB2 = 1 Adc
ÎÎÎÎÎÎ
ÎÎÎÎÎÎ
@ TC = 25°C
ÎÎÎÎ
ÎÎÎÎ
ton
105
175
ÎÎÎÎ
ÎÎÎÎ
ns
ÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎ
Turn–off Time
ÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎ
IB2
=
1
Adc
VCC = 300 Vdc
ÎÎÎÎÎÎ
Î
ÎÎÎÎ
Î
ÎÎÎÎÎÎ
@ TC = 25°C
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
toff
ÎÎ
ÎÎ
1.75
Î
2.5
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
µs
ÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎ
T urn–on Time
ÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎ
IC = 2 Adc, IB1 = 0.4 Adc
IB2 =04Adc
ÎÎÎÎÎÎ
ÎÎÎÎÎÎ
@ TC = 25°C
ÎÎÎÎ
ÎÎÎÎ
ton
95
200
ÎÎÎÎ
ÎÎÎÎ
ns
ÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎ
Turn–off Time
ÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎ
IB2
=
0
.
4
Adc
VCC = 300 Vdc
ÎÎÎÎÎÎ
ÎÎÎÎÎÎ
@ TC = 25°C
ÎÎÎÎ
ÎÎÎÎ
toff
3.5
4.5
ÎÎÎÎ
ÎÎÎÎ
µs
ÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎ
T urn–on Time
ÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎ
IC= 0 7 Adc IB1 = 50 mAdc
ÎÎÎÎÎÎ
ÎÎÎÎÎÎ
@T
C=25
°
C
ÎÎÎÎ
ÎÎÎÎ
td
70
150
ÎÎÎÎ
ÎÎÎÎ
ns
ÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎ
I
C =
0
.
7
Adc
,
I
B1 =
50
mAdc
IB2 = 0.4 Adc
ÎÎÎÎÎÎ
ÎÎÎÎÎÎ
@
TC
=
25°C
ÎÎÎÎ
ÎÎÎÎ
tr
210
400
ÎÎÎÎ
ÎÎÎÎ
ns
ÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎ
Turn–off Time
ÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎ
B2
VCC = 125 Vdc
PW=70µs
ÎÎÎÎÎÎ
ÎÎÎÎÎÎ
@T
C=25
°
C
ÎÎÎÎ
ÎÎÎÎ
ts
0.9
1.2
ÎÎÎÎ
ÎÎÎÎ
µs
ÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎ
PW
=
70
µs
ÎÎÎÎÎÎ
ÎÎÎÎÎÎ
@
TC
=
25°C
ÎÎÎÎ
ÎÎÎÎ
tf
275
450
ÎÎÎÎ
ÎÎÎÎ
ns
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
SWITCHING CHARACTERISTICS: Inductive Load (Vclamp = 300 V, VCC = 15 V, L = 200 µH)
ÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎ
Fall T ime
ÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎ
I1Ad
ÎÎÎÎÎÎ
Î
ÎÎÎÎ
Î
ÎÎÎÎÎÎ
@ TC = 25°C
@ TC = 125°C
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
tf
ÎÎ
ÎÎ
110
95
Î
175
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
ns
ÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎ
Storage T ime
ÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎ
IC = 1 Adc
IB1 = 0.1 Adc
I
B2
= 0.5 Adc
ÎÎÎÎÎÎ
ÎÎÎÎÎÎ
@ TC = 25°C
@ TC = 125°C
ÎÎÎÎ
ÎÎÎÎ
ts
1.35
1.9
2
ÎÎÎÎ
ÎÎÎÎ
µs
ÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎ
Crossover Time
ÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎ
IB2
0.5
Adc
ÎÎÎÎÎÎ
Î
ÎÎÎÎ
Î
ÎÎÎÎÎÎ
@ TC = 25°C
@ TC = 125°C
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
tc
ÎÎ
ÎÎ
150
115
Î
250
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
ns
ÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎ
Fall T ime
ÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎ
I2Ad
ÎÎÎÎÎÎ
Î
ÎÎÎÎ
Î
ÎÎÎÎÎÎ
@ TC = 25°C
@ TC = 125°C
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
tf
ÎÎ
ÎÎ
120
180
Î
200
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
ns
ÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎ
Storage T ime
ÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎ
IC = 2 Adc
IB1 = 0.4 Adc
I
B2
= 1 Adc
ÎÎÎÎÎÎ
ÎÎÎÎÎÎ
@ TC = 25°C
@ TC = 125°C
ÎÎÎÎ
ÎÎÎÎ
ts
1.9
2.35
2.75
ÎÎÎÎ
ÎÎÎÎ
µs
ÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎ
Crossover Time
ÎÎÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎ
Î
ÎÎÎÎÎÎÎÎ
IB2
1
Adc
ÎÎÎÎÎÎ
Î
ÎÎÎÎ
Î
ÎÎÎÎÎÎ
@ TC = 25°C
@ TC = 125°C
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
tc
ÎÎ
ÎÎ
190
180
Î
300
ÎÎÎÎ
Î
ÎÎ
Î
ÎÎÎÎ
ns
ÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎ
Fall T ime
ÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎ
IC
=
2 Adc
ÎÎÎÎÎÎ
ÎÎÎÎÎÎ
@ TC = 25°C
ÎÎÎÎ
ÎÎÎÎ
tf
185
300
ÎÎÎÎ
ÎÎÎÎ
ns
ÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎ
Storage T ime
ÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎ
IC
=
2
Adc
IB1 = 0.4 Adc
I04Ad
ÎÎÎÎÎÎ
ÎÎÎÎÎÎ
@ TC = 25°C
ÎÎÎÎ
ÎÎÎÎ
ts
4
5
ÎÎÎÎ
ÎÎÎÎ
µs
ÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎ
Crossover Time
ÎÎÎÎÎÎÎÎ
ÎÎÎÎÎÎÎÎ
IB2 = 0.4 Adc
ÎÎÎÎÎÎ
ÎÎÎÎÎÎ
@ TC = 25°C
ÎÎÎÎ
ÎÎÎÎ
tc
350
500
ÎÎÎÎ
ÎÎÎÎ
ns
MJE18204 MJF18204
3–762 Motorola Bipolar Power Transistor Device Data
TYPICAL STATIC CHARACTERISTICS
Figure 1. DC Current Gain @ 1 Volt
100
10
11010.10.01 IC, COLLECTOR CURRENT (AMPS)
hFE, DC CURRENT GAIN
TJ = 125°CTJ = 25°C
TJ = –20°C
VCE = 1 V
Figure 2. DC Current Gain @ 3 Volts
100
10
11010.10.01 IC, COLLECTOR CURRENT (AMPS)
hFE, DC CURRENT GAIN
TJ = 125°C
TJ = –20°C
VCE = 3 V
Figure 3. DC Current Gain @ 5 Volts
100
10
11010.10.01 IC, COLLECTOR CURRENT (AMPS)
hFE, DC CURRENT GAIN
TJ = 125°C
TJ = –20°C
VCE = 5 V
Figure 4. Collector Saturation Region
2
010000100010010 IB, BASE CURRENT (mA)
IC = 1 A
VCE, VOLTAGE (VOLTS)
1
4 A
3 A
2 A
1.5 A
Figure 5. Collector–Emitter Saturation Voltage
10
1
0.01 1010.10.01 IC, COLLECTOR CURRENT (AMPS)
IC/IB = 5
VCE, VOLTAGE (VOLTS)
0.1
IC/IB = 10
TJ = 125°C
TJ = 25°C
Figure 6. Base–Emitter Saturation Region
1.5
0100.10.01 IC, COLLECTOR CURRENT (AMPS)
VBE, VOLTAGE (VOLTS)
1
TJ = 125°C
TJ = –20°C
1
0.5
IC/IB = 5
IC/IB = 10
TJ = 25°C
TJ = 25°C
TJ = 25°C
TJ = 25°C
MJE18204 MJF18204
3–763
Motorola Bipolar Power Transistor Device Data
t, TIME (ns)
TYPICAL STATIC CHARACTERISTICS
Figure 7. Capacitance
10000
10 100101VR, REVERSE VOLT AGE (VOLTS)
C, CAPACIT ANCE (pF)
1000
TJ = 25°C
f(test) = 1 MHz
100
Cib (pF)
Cob (pF)
Figure 8. Resistive Switching, ton
1600
0510.5 IC, COLLECTOR CURRENT (AMPS)
1.5
800
IC/IB = 10
IC/IB = 5
IB1 = IB2
VCC = 300 V
PW = 20 µs
1400
1200
1000
600
400
200
2 2.5 3 3.5 4 4.5
Figure 9. Resistive Switching, toff
8
5
1
IC, COLLECTOR CURRENT (AMPS)
6
t, TIME ( s)µ
7
2
TJ = 125°C
TJ = 25°C
IC/IB = 10
IC/IB = 5
4
3
510.5 1.5 2 2.5 3 3.5 4 4.5
IB1 = IB2
VCC = 300 V
PW = 20 µs
t, TIME (ns)
Figure 10. Inductive Storage Time, tsi
6
3
23.510.5 IC, COLLECTOR CURRENT (AMPS)
1.5
4
TJ = 125°C
TJ = 25°C
IC/IB = 5
5
32.52
IC/IB = 10
IB1 = IB2
VCC = 15 V
VZ = 300 V
LC = 200 µH
Figure 11. Inductive Storage Time, tsi (hFE)
6
31573 hFE, FORCED GAIN 13
4
9
TJ = 125°C
TJ = 25°C
, STORAGE TIME (tsi µs)
5
511
IB1 = IB2
VCC = 15 V
VZ = 300 V
LC = 200 µH
IC = 1 A
IC = 2 A
Figure 12. Inductive Switching,
tc & tfi @ IC/IB = 5
1500
0310 IC, COLLECTOR CURRENT (AMPS)
2
t, TIME (ns)
1000
500
TJ = 125°C
TJ = 25°C
tc
IB1 = IB2
VCC = 15 V
VZ = 300 V
LC = 200 µH
TJ = 125°C
TJ = 25°C
tc
tfi
tfi
MJE18204 MJF18204
3–764 Motorola Bipolar Power Transistor Device Data
TYPICAL STATIC CHARACTERISTICS
Figure 13. Inductive Switching,
tc & tfi @ IC/IB = 10
1100
100
IC, COLLECTOR CURRENT (AMPS)
t, TIME (ns)
600
TJ = 125°C
TJ = 25°C
3042
tc
tfi
IBoff = IB2
VCC = 15 V
VZ = 300 V
LC = 200 µH
1000
900
800
700
200
500
400
300
1
Figure 14. Inductive Fall Time
680
80 1573 hFE, FORCED GAIN
480
tfi, FALL TIME (ns)
280
9
TJ = 125°C
TJ = 25°C
11513
IC = 2 A
IBoff = IB2
VCC = 15 V
VZ = 300 V
LC = 200 µH
IC = 1 A
Figure 15. Inductive Crossover Time
1200
600
200 1553 hFE, FORCED GAIN
1000
tc, CROSSOVER TIME (ns)
7
TJ = 125°C
TJ = 25°C
91011
800
400
4 6 8 121314
IC = 2 A
IC = 1 A
IB1 = IB2
VCC = 15 V
VZ = 300 V
LC = 200 µH
Figure 16. BVCER = f (RBE)
1400
600 100010010 RBE ()
BVCER (VOLTS)
TJ = 25°C
BVCER (VOLTS) @ 10 mA
1300
800 BVCER(sus) @ 200 mA
1200
1100
1000
900
700
Figure 17. Forward Bias Safe Operating Area
100
0.01 100010 VCE, COLLECTOR–EMITTER VOLT AGE (VOLTS)
Figure 18. Reverse Bias Switching Safe
Operating Area
6
2
01200400 VCE, COLLECT OR–EMITTER VOLTAGE (VOLTS)
4
100 600
1
0.1
IC, COLLECTOR CURRENT (AMPS)
IC, COLLECTOR CURRENT (AMPS)
5 ms 1 ms 10 µs
1 µs
0 V –1.5 V
–5 V
TC 125°C
GAIN 5
LC = 4 mH
10
800
MJE18204–DC
MJF18204–DC
5
3
1
500 700 1000900 1100
EXTENDED SOA
MJE18204 MJF18204
3–765
Motorola Bipolar Power Transistor Device Data
POWER DERATING F ACTOR
Figure 19. Forward Bias Power Derating
There are two limitations on the power handling ability of
a transistor: average junction temperature and second
breakdown. Safe operating area curves indicate IC–VCE
limits of the transistor that must be observed for reliable
operation; i.e., the transistor must not be subjected to
greater dissipation than the curves indicate. The data of
Figure 19 is based on TC = 25°C; TJ(pk) is variable
depending on power level. Second breakdown pulse limits
are valid for duty cycles to 10% but must be derated when
TC > 25°C. Second breakdown limitations do not derate the
same as thermal limitations. Allowable current at the
voltages shown on Figure 16 may be found at any case
temperature by using the appropriate curve on Figure 18.
TJ(pk) may be calculated from the data in Figures 21 and
22. At any case temperatures, thermal limitations will
reduce the power that can be handled to values less than
the limitations imposed by second breakdown. For induc-
tive loads, high voltage and current must be sustained
simultaneously during turn–off with the base–to–emitter
junction reverse biased. The safe level is specified as a
reverse–biased safe operating area (Figure 17). This rating
is verified under clamped conditions so that the device is
never subjected to an avalanche mode.
TC, CASE TEMPERATURE (°C)
1.0
0.8
0.6
0.4
0.2
016014012010080604020
SECOND
BREAKDOWN
DERATING
THERMAL
DERATING
TYPICAL STATIC CHARACTERISTICS
Figure 20. Dynamic Saturation
Voltage Measurements Figure 21. Inductive Switching Measurements
TYPICAL SWITCHING CHARACTERISTICS
(IB1 = IB2 FOR ALL CURVES)
TIME
10
4
08206
8
6
2
4
9
7
5
3
1
13 57
VCE
0 V
IB
90% IB
1 µs
3 µs
dyn 1 µs
dyn 3 µs
IB
IC
Vclamp
tsi
tc
tfi
90% IC
10% IC
90% IB1
10% Vclamp
TIME
MJE18204 MJF18204
3–766 Motorola Bipolar Power Transistor Device Data
TYPICAL SWITCHING CHARACTERISTICS
(IB1 = IB2 FOR ALL CURVES)
Table 1. Inductive Load Switching Drive Circuit
V(BR)CEO(sus)
L = 10 mH
RB2 =
VCC = 20 Volts
IC(pk) = 100 mA
Inductive Switching
L = 200 µH
RB2 = 0
VCC = 15 Volts
RB1 selected for desired IB1
RBSOA
L = 500 µH
RB2 = 0
VCC = 15 Volts
RB1 selected for desired IB1
+15 V
1 µF150
3 W
100
3 W
MPF930
+10 V
50
COMMON
–Voff
500 µF
MPF930
MTP8P10
MUR105
MJE210 MTP12N10
MTP8P10
150
3 W
100 µF
Iout
A
1 µF
IC PEAK
VCE PEAK
VCE
IB
IB1
IB2
RB2
RB1
MJE18204 MJF18204
3–767
Motorola Bipolar Power Transistor Device Data
0.01
t, TIME (ms)
Figure 22. Typical Thermal Response (ZθJC(t)) for MJE18204
r(t), TRANSIENT THERMAL RESIST ANCE
(NORMALIZED)
RθJC(t) = r(t) RθJC
RθJC = 1.65°C/W MAX
D CURVES APPLY FOR POWER
PULSE TRAIN SHOWN
READ TIME AT t1
TJ(pk) – TC = P(pk) RθJC(t)
P(pk)
t1t2
DUTY CYCLE, D = t1/t2
0.2
0.02
0.1
D = 0.5
SINGLE PULSE
0.01 0.1 1 10 100 1000
0.1
1
0.01
Figure 23. Typical Thermal Response (ZθJC(t)) for MJF18204
r(t), TRANSIENT THERMAL RESISTANCE
(NORMALIZED)
RθJC(t) = r(t) RθJC
RθJC = 3.55°C/W MAX
D CURVES APPLY FOR POWER
PULSE TRAIN SHOWN
READ TIME AT t1
TJ(pk) – TC = P(pk) RθJC(t)
P(pk)
t1t2
DUTY CYCLE, D = t1/t2
0.2
0.02
0.1
SINGLE PULSE
0.01 0.1 1 10 100 100000
0.1
1
1000 10000
0.05
0.05
D = 0.5
t, TIME (ms)
TYPICAL THERMAL RESPONSE
(IB1 = IB2 FOR ALL CURVES)
MJE18204 MJF18204
3–768 Motorola Bipolar Power Transistor Device Data
MOUNTED
FULLY ISOLA TED
PACKAGE LEADS
HEATSINK
0.110 MIN
Figure 24. Screw or Clip Mounting
Position for Isolation Test Number 1
*Measurement made between leads and heatsink with all leads shorted together
CLIP
MOUNTED
FULLY ISOLA TED
PACKAGE LEADS
HEATSINK
CLIP 0.107MIN
MOUNTED
FULLY ISOLA TED
PACKAGE LEADS
HEATSINK
0.107 MIN
Figure 25. Clip Mounting Position
for Isolation Test Number 2 Figure 26. Screw Mounting Position
for Isolation Test Number 3
TEST CONDITIONS FOR ISOLATION TESTS*
4–40 SCREW
PLAIN WASHER
HEATSINK
COMPRESSION WASHER
NUT
CLIP
HEATSINK
Laboratory tests on a limited number of samples indicate, when using the screw and compression washer mounting technique, a screw
torque of 6 to 8 in .lbs is sufficient to provide maximum power dissipation capability. The compression washer helps to maintain a
constant pressure on the package over time and during large temperature excursions.
Destructive laboratory tests show that using a hex head 4–40 screw , without washers, and applying a torque in excess of 20 in.lbs will
cause the plastic to crack around the mounting hole, resulting in a loss of isolation capability.
Additional tests on slotted 4–40 screws indicate that the screw slot fails between 15 to 20 in .lbs without adversely affecting the pack-
age. However, in order to positively ensure the package integrity of the fully isolated device, Motorola does not recommend exceeding 10
in .lbs of mounting torque under any mounting conditions.
Figure 27. Typical Mounting Techniques
for Isolated Package
Figure 27a. Screw–Mounted Figure 27b. Clip–Mounted
MOUNTING INFORMATION**
**For more information about mounting power semiconductors see Application Note AN1040.
2–3
Selector Guide
Motorola Bipolar Power Transistor Device Data
Table 1. Plastic (Isolated TO–220 Type)
Device Type Resistive Switching
ICCont
Amps
Max
VCEO(sus)
Volts
Min
VCES
Volts
Min NPN PNP hFE
Min/Max @ IC
Amp
ts
µs
Max
tf
µs
Max @ IC
Amp
fT
MHz
Min
PD (Case)
Watts
@ 25°C
1 250
MJF47
30/150 0.3 2 typ 0.17 typ 0.3 10 28
2 400 700
BUL44F
14/34 0.2 2.75(3) 0.2(3) 1 13 typ 25
1000
MJF18002
14/34 0.2 2.75(3) 0.175(3) 1 13 typ 25
3 100
MJF31C MJF32C
10 min 1 0.6 0.3 1 3 28
5100
MJF122
(2)
MJF127
(2) 2000 min 3 1.5 typ 1.5 typ 3 4(1) 28
400 700
BUL45F
14/34 0.3 1.7(3) 0.15(3) 1 12 typ 35
450 1000
BUT11AF
10 min .005 4 0.8 2.5 40
1000
MJF18004
14/34 0.3 1.7(3) 0.15(3) 1 13 typ 35
550 1200
MJF18204
18/35 0.5 2.75(3) 0.2(3) 2 12 35
6 400 700
BUL146F
14/34 0.5 2.5(3) 0.15(3) 3 14 typ 40
450 1000
MJF18006
14/34 0.5 3.2(3) 0.15(3) 3 14 typ 40
880
MJF6107
30/90 2 0.5 typ 0.13 typ 2 4 35
150
MJF15030 MJF15031
40 min 3 1 typ 0.15 typ 3 30 35
400 700
MJF13007
5/30 5 3 0.7 5 4 40
BUL147F
14/34 1 2.5(3) 0.18(3) 2 14 typ 45
450 1000
MJF18008
16/34 1 2.75(3) 0.18(3) 2 13 typ 45
10 60
MJF3055 MJF2955
20/100 4 2 40
80
MJF44H11 MJF45H11
40/100 4 0.5 typ 0.14 typ 5 40 35
100
MJF6388
(2)
MJF6668
(2) 3k/20k 3 1.5 typ 1.5 typ 20(1) 40
450 1000
MJF18009
14/34 1.5 2.75(3) 0.2(3) 3 12 50
12 400 700
MJF13009
6/30 8 3 0.7 8 8 40
(1)|hFE| @ 1 MHz
(2)Darlington
(3)Switching tests performed w/special application simulator circuit. See data sheet for details.
Devices listed in bold, italic are Motorola preferred devices.
STYLE 1:
PIN 1. BASE
2. COLLECTOR
3. EMITTER
1
3
2
CASE 221D
Isolated TO–220 Type
UL Recognized
File #E69369
Selector Guide
2–4 Motorola Bipolar Power Transistor Device Data
Table 2. Plastic TO–220AB
Device Type Resistive Switching
PD
ICCont
Amps
Max
VCEO(sus)
Volts
Min(8) NPN PNP hFE
Min/Max @ IC
Amp
ts
µs
Max
tf
µs
Max @ IC
Amp
fT
MHz
Min
PD
(Case)
Watts
@ 25°C
0.5 350 MJE2360T 15 min 0.1 10 typ 30
MJE2361T
40 min 0.1 10 typ 30
1 100 TIP29C TIP30C 15/75 1 0.6 typ 0.3 typ 1 3 30
250 TIP47 30/150 0.3 2 typ 0.18 typ 0.3 10 40
300 TIP48 MJE5730 30/150 0.3 2 typ 0.18 typ 0.3 10 40
350
TIP49 MJE5731
30/150 0.3 2 typ 0.18 typ 0.3 10 40
400
TIP50 MJE5731A
(7) 30/150 0.3 2 typ 0.18 typ 0.3 10 40
2 100
TIP112
(2)
TIP117
(2) 500 min 2 1.7 typ 1.3 typ 2 25(1) 50
400/700
BUL44
14/36 0.4 2.75(3) 0.175(3) 1 13 typ 50
450/1000
BUX85
30 0.1 3.5 1.4 1 4 50
450/1000
MJE18002
14/34 0.2 3(3) 0.17(3) 1 12 typ 40
900/1800
MJE1320
3 min 1 4 typ 0.8 typ 1 80
3 80 BD241B BD242B 25 min 1 3 40
100 BD241C BD242C 25 min 1 3 40
TIP31C TIP32C
25 min 1 0.6 typ 0.3 typ 1 3 40
150
MJE9780
50/200 0.5 5 typ 40
(1)|hFE| @ 1 MHz
(2)Darlington
(3)Switching tests performed w/special application simulator circuit. See data sheet for details.
(7)VCEO = 375 V
(8)When 2 voltages are given, the format is VCEO(sus)/VCES.
Devices listed in bold, italic are Motorola preferred devices.
STYLE 1:
PIN 1. BASE
2. COLLECTOR
3. EMITTER
4. COLLECTOR
CASE 221A–06
(TO–220AB)
123
4
2–5
Selector Guide
Motorola Bipolar Power Transistor Device Data
Table 2. Plastic TO–220AB (continued)
ICCont
Amps
Max
PD
(Case)
Watts
@ 25°C
fT
MHz
Min
Resistive Switching
@ IC
Amp
hFE
Min/Max
Device Type
VCEO(sus)
Volts
Min(8)
ICCont
Amps
Max
PD
(Case)
Watts
@ 25°C
fT
MHz
Min
@ IC
Amp
tf
µs
Max
ts
µs
Max
@ IC
Amp
hFE
Min/Max
PNPNPN
VCEO(sus)
Volts
Min(8)
4 40
MJE1123
45/100 4 5 75
60
MJE800
(2)
MJE700
(2) 750 min 1.5 1(1) 40
80
D44C12 D45C12
40/120 0.2 1 40 typ 30
400/700
MJE13005
6/30 3 3 0.7 3 4 60
5 100
TIP122
(2)
TIP127
(2) 1k min 3 1.5 typ 1.5 typ 4 4(1) 75
250 2N6497 10/75 2.5 1.8 0.8 2.5 5 80
300
2N6498
10/75 2.5 1.8 0.8 2.5 5 80
400/700
BUL45
14/34 0.3 1.7(3) 0.15(3) 1 12 typ 75
450/1000 MJE16002 5 min 5 3 0.3 3 80
450/850
MJE16004
7 min 5 2.7 0.35 3 80
450/1000
MJE18004
14/34 0.3 1.7 0.15 1.0 13 75
550/1200
MJE18204
18/35 0.5 2.75(3) 0.2(3) 2 12 75
6 80
BD243B BD244B
15 min 3 0.4 typ 0.15 typ 3 3 65
100
BD243C BD244C
15 min 30.4 typ 0.15 typ 3 3 65
TIP41C TIP42C
15/75 3 0.4 typ 0.15 typ 3 3 65
250/550
MJE16204
5 min 6 1.5(2) 0.15(2) 1 10 80
400/700
BUL146
14/34 0.5 1.75(3) 0.15(3) 3 14 typ 100
450/1000
MJE18006
14/34 0.5 3.2(3) 0.13(3) 3 14 typ 100
730 2N6288 2N6111 30/150 3 0.4 typ 0.15 typ 3 4 40
50 2N6109 30/150 2.5 0.4 typ 0.15 typ 3 4 40
70
2N6292 2N6107
30/150 2 0.4 typ 0.15 typ 3 4 40
100
BD801 BD802
15 min 3 3 65
150 BU407 30 min 1.5 0.75 5 10 60
200
BU406
30 min 1.5 0.75 5 10 60
450
BU522B
(2) 250 min 2.5 7.5 75
(1)|hFE| @ 1 MHz
(2)Darlington
(3)Switching tests performed w/special application simulator circuit. See data sheet for details.
(7)VCEO = 375 V
(8)When 2 voltages are given, the format is VCEO(sus)/VCES.
Devices listed in bold, italic are Motorola preferred devices.
Selector Guide
2–6 Motorola Bipolar Power Transistor Device Data
Table 2. Plastic TO–220AB (continued)
ICCont
Amps
Max
PD
(Case)
Watts
@ 25°C
fT
MHz
Min
Resistive Switching
@ IC
Amp
hFE
Min/Max
Device Type
VCEO(sus)
Volts
Min(8)
ICCont
Amps
Max
PD
(Case)
Watts
@ 25°C
fT
MHz
Min
@ IC
Amp
tf
µs
Max
ts
µs
Max
@ IC
Amp
hFE
Min/Max
PNPNPN
VCEO(sus)
Volts
Min(8)
8 60 2N6043(2) 2N6040(2) 1k/10k 4 1.5 typ 1.5 typ 3 4(1) 75
80
2N6044
(2)
2N6041
(2) 1k/10k 4 1.5 typ 1.5 typ 3 4(1) 75
BDX53B
(2)
BDX54B
(2) 750 min 3 4(1) 60
100
2N6045
(2)
2N6042
(2) 1k/10k 3 1.5 typ 1.5 typ 3 4(1) 75
BDX53C
(2)
BDX54C
(2) 750 min 3
TIP102
(2)
TIP107
(2) 1k/20k 3 1.5 typ 1.5 typ 3 4(1) 80
120 MJE15028 MJE15029 20 min 4 30 50
150
MJE15030 MJE15031
20 min 4 30 50
200
BU806
(2) 100 min 5 0.55 typ 0.2 typ 5 60
300/600 MJE5740(2) 200 min 4 8 typ 2 typ 6 4 80
MJE5850 15 min 2 2 0.5 4 80
350
MJE5741
(2) 200 min 4 8 typ 2 typ 6 80
MJE5851
15 min 2 2 0.5 4 80
MJE5742
(2) 200 min 4 8 typ 2 typ 6 80
MJE13007
5/30 5 3 0.7 5 80
MJE5852
15 min 2 2 0.5 4 80
400/650
MJE16106
6/22 8 2 typ 0.1 typ 5 100
400/700
BUL147
14/34 1 2.5(3) 0.18(3) 2 14 typ 125
450/1000
MJE18008
16/34 1 2.75(3) 0.18(3) 2 13 typ 125
10 20
BD808
15 min 4 1.5 90
60 D44H8 D45H8 40 min 4 50
MJE3055T MJE2955T
20/70 4 75
2N6387
(2)
2N6667
(2) 1k/20k 5 20(1) 65
80
BDX33B
(2)
BDX34B
(2) 750 min 3 3 70
BD809 BD810
15 min 4 1.5 90
2N6388
(2)
2N6668
(2) 1k/20k 5 20(1) 65
D44H10 D45H10 20 min 4 0.5 typ 0.14 typ 5 50 typ 50
D44H11 D45H11
40 min 4 0.5 typ 0.14 typ 5 50 typ 50
(1)|hFE| @ 1 MHz
(2)Darlington
(3)Switching tests performed w/special application simulator circuit. See data sheet for details.
(7)VCEO = 375 V
(8)When 2 voltages are given, the format is VCEO(sus)/VCES.
(9)Self protected Darlington
Devices listed in bold, italic are Motorola preferred devices.
2–7
Selector Guide
Motorola Bipolar Power Transistor Device Data
Table 2. Plastic TO–220AB (continued)
ICCont
Amps
Max
PD
(Case)
Watts
@ 25°C
fT
MHz
Min
Resistive Switching
@ IC
Amp
hFE
Min/Max
Device Type
VCEO(sus)
Volts
Min(8)
ICCont
Amps
Max
PD
(Case)
Watts
@ 25°C
fT
MHz
Min
@ IC
Amp
tf
µs
Max
ts
µs
Max
@ IC
Amp
hFE
Min/Max
PNPNPN
VCEO(sus)
Volts
Min(8)
10 100
BDX33C
(2)
BDX34C
(2) 750 min 3 3 70
450/1000
MJE18009
14/34 1.5 2.75(3) 0.2(3) 3 12 150
12 400/700
MJE13009
6/30 8 3 0.7 8 4 100
15 80
2N6488 2N6491
20/150 5 0.6 typ 0.3 typ 5 5 75
D44VH10 D45VH10
20 min 4 0.5 0.09 8 50 typ 83
100
BDW42
(2)
BDW47
(2) 1k min 5 1 typ 1.5 typ 5 4 85
Table 3. Plastic TO–218 Type
Device Type Resistive Switching
PD
ICCont
Amps
Max
VCEO(sus)
Volts
Min(8) NPN PNP hFE
Min/Max @ IC
Amp
ts
µs
Max
tf
µs
Max @ IC
Amp
fT
MHz
Min
PD
(Case)
Watts
@ 25°C
8 500/1000
MJH16006A
5 min 8 2.5 0.25 5 125
10 60 TIP140(2) TIP145(2) 500 min 10 2.5 typ 2.5 typ 5 4(1) 125
TIP141(2) TIP146(2) 500 min 10 2.5 typ 2.5 typ 5 4(1) 125
100
BDV65B
(2)
BDV64B
(2) 1k min 5 125
TIP33C TIP34C 20/100 3 3 80
TIP142
(2)
TIP147
(2) 500 min 10 2.5 typ 2.5 typ 5 4(1) 125
400
BU323AP
(2) 150/100 6 15 15 6 125
MJH10012
(2) 100/2k 6 15 15 6 118
(1)|hFE| @ 1 MHz
(2)Darlington
(8)When 2 voltages are given, the format is VCEO(sus)/VCES.
Devices listed in bold, italic are Motorola preferred devices.
STYLE 1:
PIN 1. BASE
2. COLLECTOR
3. EMITTER
4. COLLECTOR
CASE 340D
(TO–218 Type,
SOT–93)
1
3
2
4
Selector Guide
2–8 Motorola Bipolar Power Transistor Device Data
Table 3. Plastic TO–218 Type (continued)
ICCont
Amps
Max
PD
(Case)
Watts
@ 25°C
fT
MHz
Min
Resistive Switching
@ IC
Amp
hFE
Min/Max
Device Type
VCEO(sus)
Volts
Min(8)
ICCont
Amps
Max
PD
(Case)
Watts
@ 25°C
fT
MHz
Min
@ IC
Amp
tf
µs
Max
ts
µs
Max
@ IC
Amp
hFE
Min/Max
PNPNPN
VCEO(sus)
Volts
Min(8)
15 60
TIP3055 TIP2955
5 min 10 2.5 80
150 MJH11018(2) MJH11017(2) 400/15k 10 3 150
200 MJH11020(2) MJH11019(2) 400/15k 10 3 150
250
MJH11022
(2)
MJH11021
(2) 400/15k 10 3 150
400 BUV48 8 min 10 2 0.4 10 150
450
BUV48A
8 min 8 2 0.4 10 150
16 140 MJE4342 MJE4352 15 min 8 1.2 typ 1.2 typ 8 1 125
160
MJE4343 MJE4353
15 min 8 1.2 typ 1.2 typ 8 1 125
20 60 MJH6282(2) MJH6285(2) 750/18k 10 4 125
100
MJH6284
(2)
MJH6287
(2) 750/18k 10 4 125
25 80 TIP35A TIP36A 15/75 15 0.6 typ 0.3 typ 10 3 125
100
BD249C BD250C
10 min 15 3 125
TIP35C TIP36C
15/75 15 0.6 typ 0.3 typ 10 3 125
(2)Darlington
(8)When 2 voltages are given, the format is VCEO(sus)/VCES.
Table 4. Isolated Mounting Hole — Plastic TO–247 Type
Device Type Resistive Switching
PD
ICCont
Amps
Max
VCEO(sus)
Volts
Min
VCES
Volts
Min NPN PNP hFE
Min/Max @ IC
Amp
ts
µs
Max
tf
µs
Max @ IC
Amp
fT
MHz
Min
PD
(Case)
Watts
@ 25°C
10 650 1500
MJW16212
4/10 10 4(3) 0.5(3) 5.5 150
800 1500
MJW16018
4 min 5 4.5 typ 0.2 typ 5 3 typ 150
12 500 1200
MJW16206
5/13 10 2.25 0.25 6.5 3 typ 150
15 450 850
MJW16010
5 min 15 1.2 typ 0.2 typ 10 150
850
MJW16012
7 min 15 0.9 typ 0.15 typ 10 150
500 1000
MJW16010A
5 min 15 3 0.4 10 150
(3)Switching tests performed w/special application simulator circuit. See data sheet for details.
(10)Tested in Applications simulator: see Data Sheet.
Devices listed in bold, italic are Motorola preferred devices.
STYLE 2:
PIN 1. BASE
2. COLLECTOR
3. EMITTER
CASE 340F
(TO–247 Type)
1
3
2
2–9
Selector Guide
Motorola Bipolar Power Transistor Device Data
New Product New Product New Product New Product
Table 5. Large Plastic TO–264
Device Type Resistive Switching
PD
ICCont
Amps
Max
VCEO(sus)
Volts
Min NPN PNP hFE
Min/Max @ IC
Amp
ts
µs
Max
tf
µs
Max @ IC
Amp
fT
MHz
Min
PD
(Case)
Watts
@ 25°C
15 200
MJL3281A MJL1302A
60/175 0.1 30 typ 200
650/1500
MJL16218
4/11 12 2.5 typ 170
16 250
MJL21194 MJL21193
25/75 8 4 200
New Product New Product New Product New Product
Table 6. Plastic TO–225AA Type (Formerly TO–126 Type)
Device Type Resistive Switching
PD
ICCont
Amps
Max
VCEO(sus)
Volts
Min NPN PNP hFE
Min/Max @ IC
Amp
ts
µs
Max
tf
µs
Max @ IC
Amp
fT
MHz
Min
PD
(Case)
Watts
@ 25°C
0.3 350
MJE3439
40/160 0.02 15 15
0.5 150 MJE341 25/200 0.05 15 20.8
200
MJE344
30/300 0.05 15 20.8
250 2N5655 30/250 0.1 3.5 typ 0.24 typ 0.1 10 20
BD157 30/240 0.05 20
300
BD158
30/240 0.05 20
MJE340 MJE350
30/240 0.05 20.8
2N5656 30/250 0.1 3.5 typ 0.24 typ 0.1 10 20
Devices listed in bold, italic are Motorola preferred devices.
STYLE 2:
PIN 1. BASE
2. COLLECTOR
3. EMITTER
CASE 340G
(TO–264)
1
3
2
STYLE 1:
PIN 1. EMITTER
2. COLLECTOR
3. BASE
CASE 77
(TO–225AA)
31
2
STYLE 3:
PIN 1. BASE
2. COLLECTOR
3. EMITTER
Selector Guide
2–10 Motorola Bipolar Power Transistor Device Data
Table 6. Plastic TO–225AA Type (Formerly TO–126 Type) (continued)
ICCont
Amps
Max
PD
(Case)
Watts
@ 25°C
fT
MHz
Min
Resistive Switching
@ IC
Amp
hFE
Min/Max
Device Type
VCEO(sus)
Volts
Min
ICCont
Amps
Max
PD
(Case)
Watts
@ 25°C
fT
MHz
Min
@ IC
Amp
tf
µs
Max
ts
µs
Max
@ IC
Amp
hFE
Min/Max
PNPNPN
VCEO(sus)
Volts
Min
0.5 350
2N5657
30/250 0.1 3.5 typ 0.24 typ 0.1 10 20
BD159
30/240 0.05 20
1 40 2N4921 2N4918 20/100 0.5 0.6 typ 0.3 typ 0.5 3 30
60 2N4922 2N4919 20/100 0.5 0.6 typ 0.3 typ 0.5 3 30
80
2N4923 2N4920
20/100 0.5 0.6 typ 0.3 typ 0.5 3 30
1.5 45
BD165 BD166
15 min 0.5 6 20
BD135 BD136 40/250 0.15 12.5
60 BD137 BD138 40/250 0.15 12.5
80
BD169
15 min 0.5 6 20
BD139 BD140
40/250 0.15 12.5
BD140–10
63/160 0.15 12.5
300 MJE13002(11) 5/25 1 4 0.7 1 5 40
400
MJE13003
(11) 5/25 1 4 0.7 1 5 40
2 80
BD237 BD238
25 min 1 3 25
100
MJE270
(2)(11)
MJE271
(2)(11) 1.5k min 0.12 6 15
3 60 MJE181 MJE171 50/250 0.1 0.6 typ 0.12 typ 0.1 50 12.5
80
BD179 BD180
40/250 0.15 3 30
MJE182 MJE172
50/250 0.1 0.6 typ 0.12 typ 0.1 50 12.5
200
BUY49P
30 min 0.5 25 20
4 40
MJE521 MJE371
40 min 1 40
45
BD437 BD438
40 min 2 3 36
BD776
(2) 750 min 2 20 15
60
BD440
25 min 2 3 36
BD677
(2)
BD678
(2) 750 min 1.5 40
BD677A
(2)
BD678A
(2) 750 min 2 40
BD787 BD788
20 min 2 50 15
BD777
(2)
BD778
(2) 750 min 2 20 15
2N5191 2N5194
25/100 1.5 0.4 typ 0.4 typ 1.5 2 40
MJE800
(2)
MJE700
(2) 750 min 1.5 1(1) 40
2N6038
(2)
2N6035
(2) 750/18k 2 1.7 typ 1.2 typ 2 25 40
80
2N5192 2N5195
25/100 1.5 0.4 typ 0.4 typ 1.5 2 40
BD441 BD442
15 min 2 3 36
BD679
(2)
BD680
(2) 750 min 1.5 40
BD679A
(2)
BD680A
(2) 750 min 2 40
BD789 BD790
10 min 2 40 15
(1) |hFE| @ 1 MHz
(2)Darlington
(11)Case 77, Style 3
Devices listed in bold, italic are Motorola preferred devices.
2–11
Selector Guide
Motorola Bipolar Power Transistor Device Data
Table 6. Plastic TO–225AA Type (Formerly TO–126 Type) (continued)
ICCont
Amps
Max
PD
(Case)
Watts
@ 25°C
fT
MHz
Min
Resistive Switching
@ IC
Amp
hFE
Min/Max
Device Type
VCEO(sus)
Volts
Min
ICCont
Amps
Max
PD
(Case)
Watts
@ 25°C
fT
MHz
Min
@ IC
Amp
tf
µs
Max
ts
µs
Max
@ IC
Amp
hFE
Min/Max
PNPNPN
VCEO(sus)
Volts
Min
4 80
BD779
(2)
BD780
(2) 750 min 2 20 15
MJE802(2) MJE702(2) 750 min 1.5 1(1) 40
MJE803
(2)
MJE703
(2) 750 min 2 1(1) 40
2N6039
(2)
2N6036
(2) 750/18k 2 1.7 typ 1.2 typ 2 25 40
100
BD681
(2)
BD682
(2) 750 min 1.5 40
BD791 BD792
10 min 2 40 15
MJE243 MJE253
40/120 0.2 0.15 typ 0.07 typ 2 40 15
5 25
MJE200 MJE210
45/180 2 0.13 typ 0.035 typ 2 65 15
Table 7. DPAK – Surface Mount Power Packages
Device Type Resistive Switching
PD
ICCont
Amps
Max
VCEO(sus)
Volts
Min NPN PNP hFE
Min/Max @ IC
Amp
ts
µs
Max
tf
µs
Max @ IC
Amp
fT
MHz
Min
PD
(Case)
Watts
@ 25°C
0.5 300
MJD340 MJD350
30/240 0.05 15
1 250 MJD47 30/150 0.3 2 0.2 0.3 10 15
375
MJD5731
TBD TBD TBD TBD TBD TBD TBD
400
MJD50
30/150 0.3 2 0.2 0.3 10 15
1.5 400
MJD13003
5/25 1 4 0.7 1 4 15
(1)|hFE| @ 1 MHz
(2)Darlington
(12)Case 369–07 may be ordered by adding –1 suffix to part number.
(13)Case 369A–13 may be ordered as tape and reel by adding a “T4” suffix; 2500 units/reel.
Devices listed in bold, italic are Motorola preferred devices.
STYLE 1:
PIN 1. BASE
2. COLLECTOR
3. EMITTER
4. COLLECTOR
CASE 369(12)
1
3
2
1
3
2
4
4
CASE 369A(13)
Selector Guide
2–12 Motorola Bipolar Power Transistor Device Data
Table 7. DPAK – Surface Mount Power Packages (continued)
ICCont
Amps
Max
PD
(Case)
Watts
@ 25°C
fT
MHz
Min
Resistive Switching
@ IC
Amp
hFE
Min/Max
Device Type
VCEO(sus)
Volts
Min
ICCont
Amps
Max
PD
(Case)
Watts
@ 25°C
fT
MHz
Min
@ IC
Amp
tf
µs
Max
ts
µs
Max
@ IC
Amp
hFE
Min/Max
PNPNPN
VCEO(sus)
Volts
Min
2 100
MJD112
(2)
MJD117
(2) 1000 min 2 1.7 1.3 2 25(1) 20
340 MJD31 MJD32 10 min 1 0.6 0.3 1 3 15
100
MJD31C MJD32C
10 min 1 0.6 0.3 1 3 15
480
MJD6039
(2)
MJD6036
(2) 1k/12k 2 1.7 1.2 2 25 20
100
MJD243 MJD253
40/180 0.2 0.16 0.04 1 40 12.5
5 25
MJD200 MJD210
45/180 2 0.15 0.04 2 65 12.5
6 100
MJD41C MJD42C
15/75 3 0.4 0.15 3 3 20
880
MJD44H11 MJD45H11
40 min 4 0.5 0.14 5 50 typ 20
100
MJD122
(2)
MJD127
(2) 1k/12k 4 1.5 2 4 4(1) 20
10 60
MJD3055 MJD2955
20/100 4 1.5 1.5 3 2 20
80
MJD44E3
(2) 1k min 5 2 0.5 10 20
STYLE 1:
PIN 1. BASE
2. EMITTER
3. COLLECTOR
CASE 197A TO–204AE
(Used for high current types at end of
table. See types w/footnote(16).)
2
1
CASE 1–07
TO–204AA
.040.060
Table 8. Metal TO–204AA (Formerly TO–3), TO–204AE
Device Type Resistive Switching
PD
ICCont
Amps
Max
VCEO(sus)
Volts
Min(8) NPN PNP hFE
Min/Max @ IC
Amp
ts
µs
Max
tf
µs
Max @ IC
Amp
fT
MHz
Min
PD
(Case)
Watts
@ 25°C
4 200 MJ15018 30 min 1 20 150
250
MJ15020 MJ15021
30 min 1 20 150
5 700/1500
BU208A
2.5 min 4.5 8 typ 0.4 typ 4.5 4 typ 90
8 60 MJ1000(2) 1k min 3 90
2N6055(2) 750/18k 4 1.5 typ 1.5 typ 4 4(1) 100
80
MJ1001
(2) 1k min 3 90
2N6056
(2) 750/18k 4 1.5 typ 1.5 typ 4 4(1) 100
(1)|hFE| @ 1 MHz
(2)Darlington
(8)When 2 voltages are given, the format is VCEO(sus)/VCES.
(12)Case 369 may be ordered by adding –1 suffix to part number.
(13)Case 369A may be ordered as tape and reel by adding a “T4” suffix; 2500 units/reel.
Devices listed in bold, italic are Motorola preferred devices.
2–13
Selector Guide
Motorola Bipolar Power Transistor Device Data
Table 8. Metal TO–204AA (Formerly TO–3), TO–204AE (continued)
ICCont
Amps
Max
PD
(Case)
Watts
@ 25°C
fT
MHz
Min
Resistive Switching
@ IC
Amp
hFE
Min/Max
Device Type
VCEO(sus)
Volts
Min(8)
ICCont
Amps
Max
PD
(Case)
Watts
@ 25°C
fT
MHz
Min
@ IC
Amp
tf
µs
Max
ts
µs
Max
@ IC
Amp
hFE
Min/Max
PNPNPN
VCEO(sus)
Volts
Min(8)
10 60 2N3715 2N3791 30 min 3 0.3 typ 0.4 typ 5 4 150
MJ3000(2) MJ2500(2) 1k min 5 150
80 2N3716 2N3792 30 min 3 0.3 typ 0.4 typ 5 4 150
2N5878 20/100 4 1 0.8 4 4 150
MJ3001(2)
MJ2501
(2) 1k min 5 150
140 2N3442 20/70 4 117
250
MJ15011 MJ15012
20/100 2 200
325
MJ413
20/80 0.5 2.5 125
MJ423 30/90 1 2.5 125
400
BU323A
(2) 150 min 6 7.5 typ 5.2 typ 6 175
MJ10007
(2) 30/300 5 1.5 0.5 5 10(1) 150
MJ10012
(2) 100/2k 6 15 15 6 175
12 60 2N6057(2) 2N6050(2) 750/18k 6 1.6 typ 1.5 typ 6 4(1) 150
80 2N6058(2) 2N6051(2) 750/18k 6 1.6 typ 1.5 typ 6 4(1) 150
100
2N6059
(2)
2N6052
(2) 750/18k 6 1.6 typ 1.5 typ 6 4(1) 150
15 60
2N3055 MJ2955
20/70 4 0.7 typ 0.3 typ 4 2.5 115
2N3055A MJ2955A
20/70 4 0.8 115
2N6576(2) 2k/20k 4 2 7 10 10–200(1) 120
2N5881 2N5879 20/100 6 1 0.8 6 4 160
80
2N5882 2N5880
20/100 6 1 0.8 6 4 160
90 2N6577(2) 2k/20k 4 2 7 10 10–200(1) 120
120
MJ15015 MJ15016
20/70 4 0.7 typ 0.3 typ 4 1 180
2N6578
(2) 2k/20k 4 2 7 10 10–200(1) 120
140 MJ15001 MJ15002 25/150 4 2 200
150 MJ11018(2) MJ11017(2) 100 min 15 3(1) 175
200 MJ11020(2) 100 min 15 3(1) 175
MJ3281A MJ1302A
60/175 0.1 30 typ 250
250
MJ11022
(2) MJ11019(2) 100 min 15 3(1) 175
MJ11021(2)
6/30 10 4 0.7 10 6 to 24 175
400/850
BUX48
8 min 10 2 0.4 10 175
2N6547 6/30 10 4 0.7 10 6to24 175
400/650
MJ16110
6/20 15 0.8 typ 0.1 typ 10 175
450/1000
BUX48A
8 min 8 2 0.4 10 175
(1)|hFE| @ 1 MHz
(2)Darlington
(8)When 2 voltages are given, the format is VCEO(sus)/VCES.
Devices listed in bold, italic are Motorola preferred devices.
Selector Guide
2–14 Motorola Bipolar Power Transistor Device Data
Table 8. Metal TO–204AA (Formerly TO–3), TO–204AE (continued)
ICCont
Amps
Max
PD
(Case)
Watts
@ 25°C
fT
MHz
Min
Resistive Switching
@ IC
Amp
hFE
Min/Max
Device Type
VCEO(sus)
Volts
Min(8)
ICCont
Amps
Max
PD
(Case)
Watts
@ 25°C
fT
MHz
Min
@ IC
Amp
tf
µs
Max
ts
µs
Max
@ IC
Amp
hFE
Min/Max
PNPNPN
VCEO(sus)
Volts
Min(8)
15 450/850 MJ16010 5 min 15 1.2 typ 0.2 typ 10 175
MJ16012
7 min 15 0.9 typ 0.15 typ 10 175
16 140
2N3773
2N6609 15/60 8 1.1 typ 1.5 typ 8 4 150
2N5631 2N6031 15/60 8 1.2 typ 1.2 typ 8 1 200
200 MJ15022 MJ15023 15/60 8 5 250
250
MJ15024 MJ15025
15/60 8 5 250
MJ21194 MJ21193
25/75 8 4 250
20 60
2N3772
15/60 10 2 150
2N6282(2) 2N6285(2) 750/18k 10 2.5 typ 2.5 typ 10 4(1) 160
75 2N5039 20/100 10 1.5 0.5 10 60 140
80
2N6283
(2) 2N6286(2) 750/18k 10 2.5 typ 2.5 typ 10 4(1) 160
90 2N5038 20/100 12 1.5 0.5 12 60 140
100
2N6284
(2)
2N6287
(2) 750/18k 10 2.5 typ 2.5 typ 10 4(1) 160
140
MJ15003 MJ15004
25/150 5 2 250
200
BUV11
10 min 12 1.8 0.4 12 8 150
350
MJ10000
(2) 40/400 10 3 1.8 10 10(1) 175
400
MJ10005
(2) 40/400 10 1.5 0.5 10 10(1) 175
MJ13333
10/60 5 4 0.7 10 175
500
MJ10009
(2) 30/300 10 2 0.6 10 8(1) 175
25 60 2N5885 2N5883 20/100 10 1 0.8 10 4 200
80
2N5886 2N5884
20/100 10 1 0.8 10 4 200
2N6436 30/120 10 1 0.25 10 40 200
100 2N6338 2N6437 30/120 10 1 0.25 10 40 200
120 2N6339
2N6438
30/120 10 1 0.25 10 40 200
140 2N6340 30/120 10 1 0.25 10 40 200
150
2N6341
30/120 10 1 0.25 10 40 200
30 40
2N3771
15/60 15 2 150
2N5301 2N4398 15/60 15 2 1 10 2 200
60 2N5302 2N4399 15/60 15 2 1 10 2 200
MJ11012(2) MJ11011(2) 1k min 20 4(1) 200
90
MJ11014
(2)
MJ11013
(2) 1k min 20 4(1) 200
100 2N6328 6/30 30 3 200
MJ802 MJ4502
25/100 7.5 2 200
120
MJ11016
(2)
MJ11015
(2) 1k min 20 4(1) 200
(1)|hFE| @ 1 MHz
(2)Darlington
(8)When 2 voltages are given, the format is VCEO(sus)/VCES.
Devices listed in bold, italic are Motorola preferred devices.
2–15
Selector Guide
Motorola Bipolar Power Transistor Device Data
Table 8. Metal TO–204AA (Formerly TO–3), TO–204AE (continued)
Device Type Resistive Switching
PD
ICCont
Amps
Max
VCEO(sus)
Volts
Min(8) NPN PNP hFE
Min/Max @ IC
Amp
ts
µs
Max
tf
µs
Max @ IC
Amp
fT
MHz
Min
PD
(Case)
Watts
@ 25°C
30 325
BUV23
8 min 16 1.8 0.4 16 8 250
400/1000
BUS98
8 min 20 2.3 0.4 20 250
BUX98
8 min 20 3 0.8 20 250
450/850 MJ16020(16) 5 min 30 1.8 0.2 20 250
MJ16022
(16) 7 min 30 1.5 0.15 20 250
450/1000
BUS98A
8 min 16 2.3 0.4 16 250
BUX98A
8 min 16 3 0.8 16 250
40 200 BUV21(16) 10 min 25 1.8 0.4 25 8 150
250
BUV22
(16) 10 min 20 1.1 0.35 20 8 250
350 MJ10022(2)(16) 50/600 10 2.5 0.9 20 250
400
MJ10023
(2)(16) 50/600 10 2.5 0.9 20 250
50 60 2N5685(16) 15/60 25 0.5 typ 0.3 typ 25 2 300
80
2N5686
(16)
2N5684
(16) 15/60 25 0.5 typ 0.3 typ 25 2 300
90
MJ11030
(2)(16)
MJ11031
(2)(16) 400 min 50 300
100 2N6274(16) 30/120 20 0.8 0.25 20 30 250
120 2N6275(16)
2N6379
(16) 30/120 20 0.8 0.25 20 30 250
MJ11032
(2)(16)
MJ11033
(2)(16) 400 min 50 300
125
BUV20
(16) 10 min 50 1.2 0.25 50 8 250
BUV60
(16) 10 min 80 1.1 0.25 80 250
150
2N6277
(16) 30/120 20 0.8 0.25 20 30 250
400
MJ10015
(2)(16) 10 min 40 2.5 1 20 250
500
BUT34
(2)(16) 15 min 32 3 1.5 32 250
MJ10016
(2)(16) 10 min 40 2.5 1 20 250
56 400
BUT33
(2)(16) 20 min 36 3.3 1.6 36 250
60 60 MJ14001(16) 15/100 50 300
80
MJ14002
(16)
MJ14003
(16) 15/100 50 300
200 MJ10020(2)(16) 75 min 15 3.5 0.5 30 250
250
MJ10021
(2)(16) 75 min 15 3.5 0.5 30 250
70 125
BUS50
(16) 15 min 50 1.5 0.3 70 350
80 100
BUV18A
(16) 10 min 80 1.1 0.25 80 250
(1)|hFE| @ 1 MHz
(2)Darlington
(8)When 2 voltages are given, the format is VCEO(sus)/VCES.
(16)Case 197A–03 (TO–204AE)
Devices listed in bold, italic are Motorola preferred devices.
Selector Guide
2–16 Motorola Bipolar Power Transistor Device Data
Audio
GENERAL DESIGN CURVES FOR POWER AUDIO OUTPUT STAGES
500
300
100
70
50
30
1010 30 50 100 300 500 1000
16 OHMS
8 OHMS
4 OHMS
OUTPUT POWER (WATTS)
V(BR) CEO (VOLTS)
V(BR)CEO Required on Output and Driver Transistor
versus
Output Power for 4, 8 and 18 Ohm Loads
8 OHMS
4 OHMS
50
30
10
5.0
3.0
1.010 30 50 100 300 500 1000
OUTPUT POWER (WATTS)
PEAK OUTPUT CURRENT (AMPS)
Output Transistor Peak Collector Current
versus
Output Power for 4, 8 and 16 Ohm Loads
16 OHMS
Another important parameter that must be considered before selecting the output transistors is the safe–operating area these
devices must withstand. For a complete discussion see Application Note AN485.
Table 9. Recommended Power Transistors for Audio/Servo Loads
RMS
Power
Output NPN PNP Case
PD
Watts
@ 25°CVCEO hFE @
Min/Max IC
Amps
fT
MHz
Typ ISB
Volts/Amps
To 25W MJE15030 MJE15031 TO–220 50 150 20 min 4 30 14/3.6
MJE15032 MJE15033 TO–220 50 250 50 min 1 40 50/1
25 to 50W 2N3055A MJ2955A TO–204 120 120 20/70 4 3 60/2
MJ15001 MJ15002 TO–204 200 140 25/150 4 3 40/5
50 to 100W MJ15015 MJ15016 TO–204 180 120 20/70 4 3 60/3
MJ15003 MJ15004 TO–204 250 140 25/150 5 3 100/1
MJ15020 MJ15021 TO–204 150 250 30 min 1 20 50/3
Over 100W MJ15024 MJ15025 TO–204 250 250 15/60 8 8 80/2.2
MJ3281A MJ1302A TO–204 250 200 60/175 7 30 50/4
MJL3281A MJL1302A 340G–01 150 200 60/175 7 30 40/4
MJ21194 MJ21193 TO–204 250 250 25/75 8 7 100/2
MJL21194 MJL21193 340G–01 200 200 25/75 8 7 100/2
The Power Transistors shown are provided for reference only and show device capability . The final choice of the Power Transis-
tors used is left to the circuit designer and depends upon the particular safe–operating area required and the mounting and heat
sinking configuration used.
Surface Mount Package Information and Tape and Reel Specifications
4–2 Motorola Bipolar Power Transistor Device Data
INFORMATION FOR USING SURFACE MOUNT PACKAGES
RECOMMENDED FOOTPRINTS FOR SURFACE MOUNTED APPLICATIONS
Surface mount board layout is a critical portion of the total
design. The footprint for the semiconductor packages must
be the correct size to ensure proper solder connection inter-
face between the board and the package. With the correct
pad geometry, the packages will self align when subjected to
a solder reflow process.
POWER DISSIPATION FOR A SURFACE MOUNT DEVICE
The values for the equation are found in the maximum
ratings table on the data sheet. Substituting these values into
the equation for an ambient temperature T A of 25°C, one can
calculate the power dissipation of the device. For example,
for a D2PAK, PD is calculated as follows.
PD = 150°C – 25°C
50°C/W = 2.5 watts
The 50 °C/W for the D2PAK package assumes the use of
the recommended footprint on a glass epoxy printed circuit
board to achieve a power dissipation of 2.5 watts. There are
other alternatives to achieving higher power dissipation from
the surface mount packages. One is to increase the area of
the drain/collector pad. By increasing the area of the drain/
collector pad, the power dissipation can be increased.
Although the power dissipation can almost be doubled with
this method, area is taken up on the printed circuit board
which can defeat the purpose of using surface mount
technology. For example, a graph of RθJA versus drain pad
area is shown in Figures 1 and 2.
Another alternative would be to use a ceramic substrate or
an aluminum core board such as Thermal Clad. Using a
board material such as Thermal Clad, an aluminum core
board, the power dissipation can be doubled using the same
footprint.
DPAK
0.19
0
4.82
6
mm
inches
0.10
0
2.54 0.063
1.6
0.165
4.191 0.118
3.0
0.243
6.172
D2PAK mm
inches
0.33
8.38
0.08
2.032
0.04
1.016
0.63
17.02
0.42
10.6
6
0.1
2
3.0
5
0.24
6.096
1.75 Watts
Board Material = 0.0625
G–10/FR–4, 2 oz Copper
80
100
60
40
20 1086420
3.0 Watts
5.0 Watts
TA = 25°C
A, AREA (SQUARE INCHES)
TO AMBIENT ( C/W)°
RJA,
T
HERM
AL
RESIS
TA
NCE,
J
UNC
T
ION
θ
Figure 1. Thermal Resistance versus Drain Pad
Area for the DPAK Package (Typical) Figure 2. Thermal Resistance versus Drain Pad
Area for the D2PAK Package (Typical)
2.5 Watts
A, AREA (SQUARE INCHES)
Board Material = 0.0625
G–10/FR–4, 2 oz Copper TA = 25°C
60
70
50
40
30
20 16141210864
2
0
3.5 Watts
5 Watts
TO AMBIENT ( C/W)°
RJA,
T
HERM
AL
RESIS
TA
NCE,
J
UNC
T
ION
θ
4–3
Surface Mount Package Information and Tape and Reel Specifications
Motorola Bipolar Power Transistor Device Data
Prior to placing surface mount components onto a printed
circuit board, solder paste must be applied to the pads.
Solder stencils are used to screen the optimum amount.
These stencils are typically 0.008 inches thick and may be
made of brass or stainless steel. This is not the case with the
DPAK and D2PAK packages. If a 1:1 opening is used to
screen solder onto the drain pad, misalignment and/or “tomb -
stoning” may occur due to an excess of solder. For these two
packages, the opening in the stencil for the paste should be
approximately 50% of the tab area. The opening for the leads
is still a 1:1 registration. Figure 3 shows a typical stencil for
the DPAK and D2PAK packages. The pattern of the opening
in the stencil for the drain pad is not critical as long as it
allows approximately 50% of the pad to be covered with
paste.
ÇÇÇ
ÇÇÇ
ÇÇÇ
ÇÇÇ
ÇÇÇ
ÇÇÇ
ÇÇÇ
ÇÇÇ
ÇÇÇ
ÇÇÇ
ÇÇ
ÇÇ
ÇÇ
ÇÇ
ÇÇ
Figure 3. Typical Stencil for DPAK and
D2PAK Packages
SOLDER PASTE
OPENINGS
STENCIL
SOLDERING PRECAUTIONS
The melting temperature of solder is higher than the rated
temperature of the device. When the entire device is heated
to a high temperature, failure to complete soldering within a
short time could result in device failure. Therefore, the
following items should always be observed in order to mini-
mize the thermal stress to which the devices are subjected.
Always preheat the device.
The delta temperature between the preheat and soldering
should be 100°C or less.*
When preheating and soldering, the temperature of the
leads and the case must not exceed the maximum
temperature ratings as shown on the data sheet. When
using infrared heating with the reflow soldering method,
the difference should be a maximum of 10°C.
The soldering temperature and time should not exceed
260°C for more than 10 seconds.
When shifting from preheating to soldering, the maximum
temperature gradient shall be 5°C or less.
After soldering has been completed, the device should be
allowed to cool naturally for at least three minutes.
Gradual cooling should be used since the use of forced
cooling will increase the temperature gradient and will
result in latent failure due to mechanical stress.
Mechanical stress or shock should not be applied during
cooling.
* Soldering a device without preheating can cause excessive
thermal shock and stress which can result in damage to the
device.
* Due to shadowing and the inability to set the wave height to
incorporate other surface mount components, the D2PAK is
not recommended for wave soldering.
Surface Mount Package Information and Tape and Reel Specifications
4–4 Motorola Bipolar Power Transistor Device Data
TYPICAL SOLDER HEATING PROFILE
For any given circuit board, there will be a group of control
settings that will give the desired heat pattern. The operator
must set temperatures for several heating zones and a figure
for belt speed. Taken together, these control settings make
up a heating “profile” for that particular circuit board. On
machines controlled by a computer, the computer remem-
bers these profiles from one operating session to the next.
Figure 5 shows a typical heating profile for use when
soldering a surface mount device to a printed circuit board.
This profile will vary among soldering systems, but it is a
good starting point. Factors that can affect the profile include
the type of soldering system in use, density and types of
components on the board, type of solder used, and the type
of board or substrate material being used. This profile shows
temperature versus time. The line on the graph shows the
actual temperature that might be experienced on the surface
of a test board at or near a central solder joint. The two
profiles are based on a high density and a low density board.
The Vitronics SMD310 convection/infrared reflow soldering
system was used to generate this profile. The type of solder
used was 62/36/2 Tin Lead Silver with a melting point
between 177–189°C. When this type of furnace is used for
solder reflow work, the circuit boards and solder joints tend to
heat first. The components on the board are then heated by
conduction. The circuit board, because it has a large surface
area, absorbs the thermal energy more efficiently, then
distributes this energy to the components. Because of this
effect, the main body of a component may be up to 30
degrees cooler than the adjacent solder joints.
STEP 1
PREHEAT
ZONE 1
“RAMP”
STEP 2
VENT
“SOAK”
STEP 3
HEATING
ZONES 2 & 5
“RAMP”
STEP 4
HEATING
ZONES 3 & 6
“SOAK”
STEP 5
HEATING
ZONES 4 & 7
“SPIKE”
STEP 6
VENT STEP 7
COOLING
200°C
150°C
100°C
50°C
TIME (3 TO 7 MINUTES TOTAL) TMAX
SOLDER IS LIQUID FOR
40 TO 80 SECONDS
(DEPENDING ON
MASS OF ASSEMBLY)
205° TO 219°C
PEAK AT
SOLDER JOINT
DESIRED CUR VE FOR LOW
MASS ASSEMBLIES
100°C
150°C
160°C170°C
140°C
Figure 4. Typical Solder Heating Profile
DESIRED CURVE FOR HIGH
MASS ASSEMBLIES
4–5
Surface Mount Package Information and Tape and Reel Specifications
Motorola Bipolar Power Transistor Device Data
Mounting Hardware and Techniques
There are many methods available and options possible for installing power semiconductors. A complete discussion of
mounting is contained in Motorola Application Note AN1040,”Mounting Considerations for Power Semiconductors,” reprinted in
Section 6 of this data book. Various suppliers of mounting hardware, listed below, may be contacted for their catalogs which contain
considerable technical information.
Sources for Mounting Hardware
Insulators
Manufacturer Joint
Compound Adhesives BeO AIO2Anodize Mica Plastic
Film Silicone
Rubber Heatsinks Clips
Aavid Eng. X X X X
AHAM-TOR X
Asheville-
Schoonmaker X
Astrodynamics X X
Delbert Blinn X X X X X X
IERC X X
Staver X
Thermalloy X X X X X X X X X X
Tran-tec X X X X X X X
W akefield Eng. X X X X X X X
Other sources for silicone rubber pads: Chomerics, Berquist
Suppliers Addresses
Aavid Engineering, Inc., P.O. Box 400, Laconia, New
Hampshire 03247 (603) 528-1478
AHAM-TOR Heatsinks, 27901 Front Street, Rancho,
California 92390 (714) 676-4151
Asheville-Schoonmaker, 900 Jefferson Ave., Newport News,
VA 23607 (804) 244-7311
Astro Dynamics, Inc., 2 Gill St., Woburn, Massachusetts
01801 (617) 935-4944
Berquist, 5300 Edina Industrial Blvd., M inneapolis, Minnesota
55435 (612) 835-2322
Chomerics, Inc., 16 Flagstone Drive, Hudson, New Hamp-
shire 03051 1-800-633-8800
Delbert Blinn Company, P.O. Box 2007, Pomona, California
91769 (714) 623-1257
International Electronic Research Corporation, 135 West
Magnolia Boulevard, Burbank, California 91502
(213) 849-2481
The Staver Company, Inc., 41-51 Saxon Avenue, Bay Shore,
Long Island, New York 11706 (516) 666-8000
Thermalloy, Inc., P.O. Box 34829, 2021 West Valley View
Lane, Dallas, Texas 75234 (214) 243-4321
Tran-tec Corporation, P.O. Box 1044, Columbus, Nebraska
68601 (402) 564-2748
Wakefield Engineering, Inc., Wakefield, Massachusetts
01880 (617) 245-5900
Surface Mount Package Information and Tape and Reel Specifications
4–6 Motorola Bipolar Power Transistor Device Data
Tape and Reel Specifications
and Packaging Specifications
Embossed Tape and Reel is used to facilitate automatic pick and place equipment feed requirements. The tape is used as the
shipping container for various products and requires a minimum of handling. The antistatic/conductive tape provides a secure
cavity for the product when sealed with the “peel–back” cover tape.
Two Reel Sizes Available (7 and 13)
Used for Automatic Pick and Place Feed Systems
Minimizes Product Handling
EIA 481, –1, –2
DPAK SO–14, in 16 mm Tape
D2PAK in 24 mm Tape
Use the standard device title and add the required suffix as listed in the option table on the following page. Note that the individual
reels have a finite number of devices depending on the type of product contained in the tape. Also note the minimum lot size is
one full reel for each line item, and orders are required to be in increments of the single reel quantity.
OF FEED
D2PAK
DIRECTION
24
mm
16
mm
DPAK
Package Tape Width
(mm) Reel Size
(inch)
DPAK 16 8.0 ± 0.1 (.315 ± .004) 330 (13) 2,500 T4
D2PAK 24 16.0 ± 0.1 (.630 ± .004) 330 (13) 800 T4
Outline Dimensions and Leadform Options
5–2 Motorola Bipolar Power Transistor Device Data
Outline Dimensions
NOTES:
1. DIMENSIONING AND TOLERANCING PER ANSI
Y14.5M, 1982.
2. CONTROLLING DIMENSION: INCH.
3. ALL RULES AND NOTES ASSOCIATED WITH
REFERENCED TO–204AA OUTLINE SHALL APPLY.
STYLE 1:
PIN 1. BASE
2. EMITTER
CASE: COLLECTOR
DIM MIN MAX MIN MAX
MILLIMETERSINCHES
A1.550 REF 39.37 REF
B––– 1.050 ––– 26.67
C0.250 0.335 6.35 8.51
D0.038 0.043 0.97 1.09
E0.055 0.070 1.40 1.77
G0.430 BSC 10.92 BSC
H0.215 BSC 5.46 BSC
K0.440 0.480 11.18 12.19
L0.665 BSC 16.89 BSC
N––– 0.830 ––– 21.08
Q0.151 0.165 3.84 4.19
U1.187 BSC 30.15 BSC
V0.131 0.188 3.33 4.77
CASE 1–07
A
N
E
C
K
–T– SEATING
PLANE
2 PL
DM
Q
M
0.13 (0.005) Y M
T
M
Y
M
0.13 (0.005) T
–Q–
–Y–
2
1
UL
GB
V
H
STYLE 1:
PIN 1. EMITTER
2. COLLECTOR
3. BASE
NOTES:
1. DIMENSIONING AND TOLERANCING PER ANSI
Y14.5M, 1982.
2. CONTROLLING DIMENSION: INCH.
CASE 77–08
–B–
–A– M
K
FC
Q
H
V
G
S
D
JR
U
132
2 PL
M
A
M
0.25 (0.010) B M
M
A
M
0.25 (0.010) B M
DIM MIN MAX MIN MAX
MILLIMETERSINCHES
A0.425 0.435 10.80 11.04
B0.295 0.305 7.50 7.74
C0.095 0.105 2.42 2.66
D0.020 0.026 0.51 0.66
F0.115 0.130 2.93 3.30
G0.094 BSC 2.39 BSC
H0.050 0.095 1.27 2.41
J0.015 0.025 0.39 0.63
K0.575 0.655 14.61 16.63
M5 TYP 5 TYP
Q0.148 0.158 3.76 4.01
R0.045 0.055 1.15 1.39
S0.025 0.035 0.64 0.88
U0.145 0.155 3.69 3.93
V0.040 ––– 1.02 –––
__
(TO–204AA)
(TO–225AA)
CASE 152-02
EBC
123
Q
GN
F
K
D
A
C
L
BR
H
J
J
NOTES:
1. LEADS WITHIN 0.15 (0.006) TOTAL OF TRUE
POSITION AT CASE, AT MAXIMUM MATERIAL
CONDITION.
DIM MIN MAX MIN MAX
INCHESMILLIMETERS
A9.14 9.53 0.360 0.375
B6.60 7.24 0.260 0.285
C5.41 5.66 0.213 0.223
D0.38 0.53 0.015 0.021
F3.18 3.33 0.125 0.131
G2.54 BSC 0.100 BSC
H3.94 4.19 0.155 0.165
J0.36 0.41 0.014 0.016
K11.63 12.70 0.458 0.500
L24.58 25.53 0.968 1.005
N5.08 BSC 0.200 BSC
Q2.39 2.69 0.094 0.106
R1.14 1.40 0.045 0.055
STYLE 1:
PIN 1. EMITTER
2. BASE
3. COLLECTOR
(COLLECTOR CONNECTED TO TAB)
5–3
Outline Dimensions and Leadform Options
Motorola Bipolar Power Transistor Device Data
Outline Dimensions (continued)
NOTES:
1. DIMENSIONING AND TOLERANCING PER ANSI
Y14.5M, 1982.
2. CONTROLLING DIMENSION: INCH.
STYLE 1:
PIN 1. BASE
2. EMITTER
CASE: COLLECTOR
DIM MIN MAX MIN MAX
MILLIMETERSINCHES
A1.530 REF 38.86 REF
B0.990 1.050 25.15 26.67
C0.250 0.335 6.35 8.51
D0.057 0.063 1.45 1.60
E0.060 0.070 1.53 1.77
G0.430 BSC 10.92 BSC
H0.215 BSC 5.46 BSC
K0.440 0.480 11.18 12.19
L0.665 BSC 16.89 BSC
N0.760 0.830 19.31 21.08
Q0.151 0.165 3.84 4.19
U1.187 BSC 30.15 BSC
V0.131 0.188 3.33 4.77
CASE 197A–05
A
N
E
C
K
–T– SEATING
PLANE
2 PL
DM
Q
M
0.30 (0.012) Y M
T
M
Y
M
0.25 (0.010) T
–Q–
–Y–
2
1
L
GB
V
H
U
NOTES:
1. DIMENSIONING AND TOLERANCING PER ANSI
Y14.5M, 1982.
2. CONTROLLING DIMENSION: INCH.
3. DIMENSION Z DEFINES A ZONE WHERE ALL
BODY AND LEAD IRREGULARITIES ARE
ALLOWED.
STYLE 1:
PIN 1. BASE
2. COLLECTOR
3. EMITTER
4. COLLECTOR
DIM MIN MAX MIN MAX
MILLIMETERSINCHES
A0.570 0.620 14.48 15.75
B0.380 0.405 9.66 10.28
C0.160 0.190 4.07 4.82
D0.025 0.035 0.64 0.88
F0.142 0.147 3.61 3.73
G0.095 0.105 2.42 2.66
H0.110 0.155 2.80 3.93
J0.018 0.025 0.46 0.64
K0.500 0.562 12.70 14.27
L0.045 0.060 1.15 1.52
N0.190 0.210 4.83 5.33
Q0.100 0.120 2.54 3.04
R0.080 0.110 2.04 2.79
S0.045 0.055 1.15 1.39
T0.235 0.255 5.97 6.47
U0.000 0.050 0.00 1.27
V0.045 ––– 1.15 –––
Z––– 0.080 ––– 2.04
B
Q
H
Z
L
V
G
N
A
K
F
123
4
D
SEATING
PLANE
–T–
C
S
T
U
R
J
CASE 221A–06
NOTES:
1. DIMENSIONING AND TOLERANCING PER ANSI
Y14.5M, 1982.
2. CONTROLLING DIMENSION: INCH.
STYLE 1:
PIN 1. BASE
2. EMITTER
CASE: COLLECTOR
CASE 197–05
A
N
E
C
K
D2 PL
SEATING
PLANE
–T–
UL
M
Q
M
0.25 (0.010) Y M
T
–Y–
HGB
–Q–
2
1
DIM MIN MAX MIN MAX
MILLIMETERSINCHES
A1.510 1.550 38.35 39.37
B0.980 1.050 24.89 26.67
C0.250 0.335 6.35 8.51
D0.057 0.063 1.45 1.60
E0.060 0.135 1.52 3.43
G0.420 0.440 10.67 11.18
H0.205 0.225 5.21 5.72
K0.440 0.480 11.18 12.19
L0.655 0.675 16.64 17.15
N0.760 0.830 19.30 21.08
Q0.151 0.175 3.84 4.19
U1.177 1.197 29.90 30.40
(TO220–AB)
(TO–204AA)
(TO–204AE)
Outline Dimensions and Leadform Options
5–4 Motorola Bipolar Power Transistor Device Data
Outline Dimensions (continued)
STYLE 1:
PIN 1. BASE
2. COLLECTOR
3. EMITTER
4. COLLECTOR
NOTES:
1. DIMENSIONING AND TOLERANCING PER ANSI
Y14.5M, 1982.
2. CONTROLLING DIMENSION: MILLIMETER.
A
D
VG
K
SL
U
BQEC
JHCASE 340D–01
DIM MIN MAX MIN MAX
INCHESMILLIMETERS
A19.00 19.60 0.749 0.771
B14.00 14.50 0.551 0.570
C4.20 4.70 0.165 0.185
D1.00 1.30 0.040 0.051
E1.45 1.65 0.058 0.064
G5.21 5.72 0.206 0.225
H2.60 3.00 0.103 0.118
J0.40 0.60 0.016 0.023
K28.50 32.00 1.123 1.259
L14.70 15.30 0.579 0.602
Q4.00 4.25 0.158 0.167
S17.50 18.10 0.689 0.712
U3.40 3.80 0.134 0.149
V1.50 2.00 0.060 0.078
123
4
DIM
AMIN MAX MIN MAX
INCHES
20.40 20.90 0.803 0.823
MILLIMETERS
B15.44 15.95 0.608 0.628
C4.70 5.21 0.185 0.205
D1.09 1.30 0.043 0.051
E1.50 1.63 0.059 0.064
F1.80 2.18 0.071 0.086
G5.45 BSC 0.215 BSC
H2.56 2.87 0.101 0.113
J0.48 0.68 0.019 0.027
K15.57 16.08 0.613 0.633
L7.26 7.50 0.286 0.295
P3.10 3.38 0.122 0.133
Q3.50 3.70 0.138 0.145
R3.30 3.80 0.130 0.150
U5.30 BSC 0.209 BSC
V3.05 3.40 0.120 0.134
STYLE 3:
PIN 1. BASE
2. COLLECTOR
3. EMITTER
4. COLLECTOR
CASE 340F–03
R
P
A
K
V
F
DG
UL
E
0.25 (0.010) MTBM
0.25 (0.010) MYQS
JH
C4
123
–T–
–B–
–Y–
–Q–
NOTES:
1. DIMENSIONING AND TOLERANCING PER ANSI
Y14.5M, 1982.
2. CONTROLLING DIMENSION: INCH.
STYLE 2:
PIN 1. BASE
2. COLLECTOR
3. EMITTER
DIM
AMIN MAX MIN MAX
MILLIMETERS
0.621 0.629 15.78 15.97
INCHES
B0.394 0.402 10.01 10.21
C0.181 0.189 4.60 4.80
D0.026 0.034 0.67 0.86
F0.121 0.129 3.08 3.27
G0.100 BSC 2.54 BSC
H0.123 0.129 3.13 3.27
J0.018 0.025 0.46 0.64
K0.500 0.562 12.70 14.27
L0.045 0.060 1.14 1.52
N0.200 BSC 5.08 BSC
Q0.126 0.134 3.21 3.40
R0.107 0.111 2.72 2.81
S0.096 0.104 2.44 2.64
U0.259 0.267 6.58 6.78
–B–
–Y–
G
N
DL
KH
A
F
Q
3 PL
123
M
B
M
0.25 (0.010) Y
SEATING
PLANE
–T–
U
CS
JR
CASE 221D–02
(TO–218)
(TO–220)
(TO–247AE)
NOTES:
1. DIMENSIONING AND TOLERANCING PER ANSI
Y14.5M, 1982.
2. CONTROLLING DIMENSION: MILLIMETER.
5–5
Outline Dimensions and Leadform Options
Motorola Bipolar Power Transistor Device Data
Outline Dimensions (continued)
STYLE 1:
PIN 1. BASE
2. COLLECTOR
3. EMITTER
4. COLLECTOR
NOTES:
1. DIMENSIONING AND TOLERANCING PER ANSI
Y14.5M, 1982.
2. CONTROLLING DIMENSION: INCH.
123
4
V
S
A
K
–T–
SEATING
PLANE
R
B
F
GD3 PL
M
0.13 (0.005) T
C
E
JH
DIM MIN MAX MIN MAX
MILLIMETERSINCHES
A0.235 0.250 5.97 6.35
B0.250 0.265 6.35 6.73
C0.086 0.094 2.19 2.38
D0.027 0.035 0.69 0.88
E0.033 0.040 0.84 1.01
F0.037 0.047 0.94 1.19
G0.090 BSC 2.29 BSC
H0.034 0.040 0.87 1.01
J0.018 0.023 0.46 0.58
K0.350 0.380 8.89 9.65
R0.175 0.215 4.45 5.46
S0.050 0.090 1.27 2.28
V0.030 0.050 0.77 1.27
CASE 369–07
STYLE 1:
PIN 1. BASE
2. COLLECTOR
3. EMITTER
4. COLLECTOR
CASE 369A–13
D
A
K
B
R
V
S
FL
G
2 PL
M
0.13 (0.005) T
E
C
U
J
H
–T– SEATING
PLANE
Z
DIM MIN MAX MIN MAX
MILLIMETERSINCHES
A0.235 0.250 5.97 6.35
B0.250 0.265 6.35 6.73
C0.086 0.094 2.19 2.38
D0.027 0.035 0.69 0.88
E0.033 0.040 0.84 1.01
F0.037 0.047 0.94 1.19
G0.180 BSC 4.58 BSC
H0.034 0.040 0.87 1.01
J0.018 0.023 0.46 0.58
K0.102 0.114 2.60 2.89
L0.090 BSC 2.29 BSC
R0.175 0.215 4.45 5.46
S0.020 0.050 0.51 1.27
U0.020 ––– 0.51 –––
V0.030 0.050 0.77 1.27
Z0.138 ––– 3.51 –––
NOTES:
1. DIMENSIONING AND TOLERANCING PER ANSI
Y14.5M, 1982.
2. CONTROLLING DIMENSION: INCH.
123
4
STYLE 2:
PIN 1. BASE
2. COLLECTOR
3. EMITTER
DIM
AMIN MAX MIN MAX
INCHES
2.8 2.9 1.102 1.142
MILLIMETERS
B19.3 20.3 0.760 0.800
C4.7 5.3 0.185 0.209
D0.93 1.48 0.037 0.058
E1.9 2.1 0.075 0.083
F2.2 2.4 0.087 0.102
G5.45 BSC 0.215 BSC
H2.6 3.0 0.102 0.118
J0.43 0.78 0.017 0.031
K17.6 18.8 0.693 0.740
L11.0 11.4 0.433 0.449
N3.95 4.75 0.156 0.187
P2.2 2.6 0.087 0.102
Q3.1 3.5 0.122 0.137
R2.15 2.35 0.085 0.093
U6.1 6.5 0.240 0.256
W2.8 3.2 0.110 0.125
NOTES:
1. DIMENSIONING AND TOLERANCING PER ANSI
Y14.5M, 1982.
2. CONTROLLING DIMENSION: MILLIMETER.
0.25 (0.010) MTBM
CASE 340G–02
J
R
H
NU
L
P
A
K
CE
F
D
G
W
2 PL
3 PL
0.25 (0.010) MYQS
123
–B– –Q–
–Y–
–T–
(TO–3PBL)
Outline Dimensions and Leadform Options
5–6 Motorola Bipolar Power Transistor Device Data
Leadform Options — TO–220 (Case 221A)
Leadform options require assignment of a special part number before ordering.
Contact your local Motorola representative for special part number and pricing.
10,000 piece minimum quantity orders are required.
Leadform orders are non–cancellable after processing.
Leadforms apply to both Motorola Case 221A–04 and 221A–06 except as noted.
LEADFORM BC
LEADFORM AS
.100 REF. .20 REF.
.125 ± .010
0.100 TYP.
0.100 TYP.
MOUNTING
SURFACE
0.750 MAX.
.736 ± .010
.620 ± .015
.950 MIN. 1.00 MIN.
LEADFORM AJ
CASE
221A–04
221A–06
A
0.360 ±0.010
.100 REF.
.200 REF.
.050 REF.
.06R
.017
±.004
Lead Not Trimmed
0.300 Min.
.580
±.010
.765
±.01
A
LEADFORM AU
CASE
221A–04
221A–06
A
0.920 Min.
0.885 Min.
LEADFORM 3 LEADS
.190 ± .020
.095 REF.
.574
±.01
A
5–7
Outline Dimensions and Leadform Options
Motorola Bipolar Power Transistor Device Data
TO–220 Leadform Options (continued)
LEADFORM BA
LEADFORM AN
LEADFORM AK
MOUNTING
SURFACE
.285
± 0.020
0.040 RAD
±0.015
.240
± 0.015
.186
±.03
CASE
221A–04
221A–06
A
0.220 Min.
0.190 Min.
B
0.325 Min.
0.290 Min.
MOUNTING
SURFACE
0.020 RAD.
TYP.
0.100
TYP.
0.100 TYP.
±0.020
.150 MIN
.100 REF
.200 REF
.140
±.010
.017
REF
.032 REF
.050 REF
.06 R
.580
±.010
A
0.586
0.616
.380
±.02
.590
±.010 .775
± 0.015
B
LEADFORM BG
0.620 REF. 0.780 ±0.015
Outline Dimensions and Leadform Options
5–8 Motorola Bipolar Power Transistor Device Data
TO–220 Leadform Options (continued)
LEADFORM BV
LEADFORM BU
LEADFORM BD LEADFORM DW
UNDERSIDE
OF LEAD
MOUNTING
SURFACE
.094 ± .01 .005 ±.005
.102 ± .003
0.005
±0.005
.223
±.010
.20 REF.
.100 REF.
0.102 ± 0.005
0.680 ± 0.005
.735
±.010
.610
±.010
.680 ±.005
.800 ± .050
3 LEADS
5–9
Outline Dimensions and Leadform Options
Motorola Bipolar Power Transistor Device Data
TO–220 Leadform Options (continued)
LEADFORM BS
LEADFORM AF
.050 REF.
.200 REF. .100 REF.
MOUNTING
SURFACE
LEAD
.040 MIN.
0.018
± .005
0.080
±0.015
0.296
±0.020
.557
(REF.)
.660
±.02
0.607
±0.015
0.325
±0.020
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Index and Cross Reference
1–2 Motorola Bipolar Power Transistor Device Data
INDEX AND CROSS REFERENCE
The following table represents an index and cross–reference guide for all low–frequency power transistors which are either
manufactured directly by Motorola or for which Motorola manufactures a suitable equivalent. Where the Motorola part number
differs from the industry part number, the Motorola device is a “form, fit and function” replacement for the industry type number
— however, subtle differences in characteristics and/or specifications may exist. Where multiple replacement parts appear for a
given industry part number, the page number represents the first replacement device listed.
40251 2N3055 3–2
40325 2N3055 3–2
40363 2N5878 3–74
40369 2N5878 3–74
40411 MJ802 3–421
40513 MJE3055T 3–628
40514 MJE3055T 3–628
40542 MJE3055T 3–628
40543 MJE3055T 3–628
40613 TIP31B 3–873
40618 TIP31B 3–873
40621 TIP31B 3–873
40622 TIP31B 3–873
40624 TIP41B 3–883
40627 TIP41B 3–883
40629 TIP31B 3–873
40630 TIP31B 3–873
40631 TIP31B 3–873
40632 TIP41B 3–883
40636 2N5878 3–74
40853 2N6547 3–140
40854 2N6547 3–140
40871 TIP41C 3–883
40872 TIP42C 3–883
40873 TIP41B 3–883
40874 TIP41B 3–883
40875 TIP41C 3–883
40876 TIP41B 3–883
40887 MJE340 3–602
41012 2N5038 3–42
41013 2N6339 3–117
41500 TIP31B 3–873
41501 TIP32B 3–873
41504 TIP31B 3–873
43104 2N5631 3–59
1SI10A–100 MJ16018 3–520
2N1487 2N5878 3–74
2N1488 2N5878 3–74
2N1489 2N5878 3–74
2N1490 2N5878 3–74
2N1702 2N5878 3–74
2N3021 2N3792 3–25
2N3022 2N3792 3–25
2N3023 2N3792 3–25
2N3024 2N3792 3–25
2N3025 2N3792 3–25
2N3026 2N3792 3–25
2N3055 2N3055 3–2
2N3055A 2N3055A 3–5
2N3055H 2N3055A 3–5
2N3055SD 2N3055A 3–5
2N3055UB 2N3055A 3–5
2N3076 BUV23 3–388
2N3171 2N3792 3–25
2N3172 2N3792 3–25
2N3173 2N3792 3–25
2N3174 MJ15016 3–5
2N3183 2N3792 3–25
2N3184 2N3792 3–25
2N3185 2N3792 3–25
2N3186 MJ15016 3–5
2N3195 2N3792 3–25
2N3196 2N3792 3–25
2N3198 MJ15016 3–5
2N3232 2N5878 3–74
2N3233 2N5882 3–77
2N3234 2N3442 3–9
2N3235 2N3055 3–2
2N3236 2N5882 3–77
2N3237 2N5302 3–54
2N3238 2N5882 3–77
2N3239 2N5882 3–77
2N3240 2N5882 3–77
2N3441 2N3442 3–9
2N3442 2N3442 3–9
2N3445 2N3716 3–12
2N3446 2N3716 3–12
2N3447 2N3716 3–12
2N3448 2N3716 3–12
2N3667 2N5882 3–77
2N3713 2N5882 3–77
2N3714 2N3716 3–12
2N3715 2N3716 3–12
2N3716 2N3716 3–12
2N3771 2N3771 3–17
2N3772 2N3772 3–17
2N3773 2N3773 3–21
2N3789 2N3792 3–25
2N3790 2N3792 3–25
2N3791 2N3792 3–25
2N3792 2N3792 3–25
2N3863 2N3716 3–12
2N3864 2N5882 3–77
2N3865 MJ15001 3–497
2N3902 BUX48A 3–401
2N4002 2N6274 3–108
2N4032 2N6274 3–108
2N4111 2N3716 3–12
Industry
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Number
1–3
Index and Cross Reference
Motorola Bipolar Power Transistor Device Data
INDEX AND CROSS REFERENCE (continued)
2N4113 2N3716 3–12
2N4347 2N3055A 3–5
2N4348 2N5631 3–59
2N4398 2N4399 3–29
2N4399 2N4399 3–29
2N4901 MJ15016 3–5
2N4902 MJ15016 3–5
2N4903 MJ15016 3–5
2N4904 MJ15016 3–5
2N4905 MJ15016 3–5
2N4906 MJ15016 3–5
2N4907 2N3792 3–25
2N4908 2N3792 3–25
2N4909 2N3792 3–25
2N4918 2N4918 3–34
2N4919 2N4919 3–34
2N4920 2N4920 3–34
2N4921 2N4921 3–38
2N4922 2N4922 3–38
2N4923 2N4923 3–38
2N5034 2N3055 3–2
2N5035 2N3055 3–2
2N5036 2N3055 3–2
2N5037 2N3055 3–2
2N5038 2N5038 3–42
2N5039 2N5038 3–42
2N5157 BUX48A 3–401
2N5190 2N5191 3–44
2N5191 2N5191 3–44
2N5192 2N5192 3–44
2N5193 2N5194 3–49
2N5194 2N5194 3–49
2N5195 2N5195 3–49
2N5240 BUX48A 3–401
2N5241 BUX48A 3–401
2N5264 BUV23 3–388
2N5293 TIP31B 3–873
2N5294 TIP31B 3–873
2N5295 TIP31B 3–873
2N5296 TIP31B 3–873
2N5297 TIP31B 3–873
2N5298 TIP31B 3–873
2N5301 2N5302 3–54
2N5302 2N5302 3–54
2N5303 2N5303 3–54
2N5386 2N5038 3–42
2N5387 2N6547 3–140
2N5388 2N6547 3–140
2N5389 2N6547 3–140
2N5466 BUX48A 3–401
2N5467 BUX48A 3–401
2N5490 MJE3055T 3–628
2N5491 MJE3055T 3–628
2N5492 2N6292 3–101
2N5493 2N6292 3–101
2N5494 MJE3055T 3–628
2N5495 MJE3055T 3–628
2N5496 2N6292 3–101
2N5497 2N6292 3–101
2N5559 MJ15001 3–497
2N5575 2N5685 3–66
2N5578 2N5685 3–66
2N5614 2N3716 3–12
2N5616 2N3716 3–12
2N5618 2N3716 3–12
2N5629 2N5631 3–59
2N5630 2N5631 3–59
2N5631 2N5631 3–59
2N5632 2N5882 3–77
2N5633 MJ15001 3–497
2N5634 MJ15001 3–497
2N5655 2N5657 3–63
2N5656 2N5657 3–63
2N5657 2N5657 3–63
2N5659 2N5631 3–59
2N5683 2N5684 3–66
2N5684 2N5684 3–66
2N5685 2N5685 3–66
2N5686 2N5686 3–66
2N5733 2N6274 3–108
2N5734 2N6338 3–117
2N5737 2N5878 3–74
2N5738 2N5880 3–77
2N5739 2N5878 3–74
2N5740 2N5880 3–77
2N5741 2N5884 3–81
2N5742 2N6031 3–59
2N5743 2N5884 3–81
2N5744 MJ4502 3–431
2N5745 2N5745 3–29
2N5758 2N5758 3–70
2N5759 2N3055A 3–5
2N5760 2N3442 3–9
2N5867 2N3792 3–25
2N5868 2N3792 3–25
2N5869 2N3716 3–12
2N5870 2N3716 3–12
2N5871 2N3792 3–25
2N5872 2N3792 3–25
2N5873 2N3716 3–12
2N5874 2N3716 3–12
2N5877 2N5878 3–74
2N5878 2N5878 3–74
2N5879 2N5880 3–77
2N5880 2N5880 3–77
2N5881 2N5882 3–77
2N5882 2N5882 3–77
2N5883 2N5884 3–81
2N5884 2N5884 3–81
2N5885 2N5886 3–81
2N5886 2N5886 3–81
2N5929 2N6338 3–117
2N5930 2N6338 3–117
2N5931 2N6341 3–117
2N5932 2N6338 3–117
2N5933 2N6338 3–117
2N5935 2N6341 3–117
2N5936 2N6338 3–117
2N5937 2N6341 3–117
2N5970 2N5882 3–77
2N5971 2N5882 3–77
2N5972 MJ15003 3–500
2N5973 2N5886 3–81
2N5974 MJE2955T 3–628
2N5975 MJE2955T 3–628
2N5976 MJE2955T 3–628
Industry
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Motorola
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Number
Index and Cross Reference
1–4 Motorola Bipolar Power Transistor Device Data
INDEX AND CROSS REFERENCE (continued)
2N5977 MJE3055T 3–628
2N5978 MJE3055T 3–628
2N5979 MJE3055T 3–628
2N5980 MJE2955T 3–628
2N5981 MJE2955T 3–628
2N5982 2N6490 3–132
2N5983 MJE3055T 3–628
2N5984 MJE3055T 3–628
2N5985 2N6488 3–132
2N5986 2N6490 3–132
2N5987 2N6490 3–132
2N5988 2N6490 3–132
2N5989 2N6486
2N5990 2N6488 3–132
2N5991 2N6488 3–132
2N6021 TIP32C 3–873
2N6022 TIP32C 3–873
2N6023 TIP32B 3–873
2N6024 TIP32B 3–873
2N6025 TIP32B 3–873
2N6026 TIP32B 3–873
2N6029 2N6031 3–59
2N6030 2N6031 3–59
2N6031 2N6031 3–59
2N6032 2N6275 3–108
2N6033 2N6277 3–108
2N6034 2N6035 3–85
2N6035 2N6035 3–85
2N6036 2N6036 3–85
2N6037 2N6038 3–85
2N6038 2N6038 3–85
2N6039 2N6039 3–85
2N6040 2N6041 3–89
2N6041 2N6041 3–89
2N6042 2N6042 3–89
2N6043 2N6044 3–89
2N6044 2N6044 3–89
2N6045 2N6045 3–89
2N6049 2N6049
2N6050 2N6052 3–93
2N6051 2N6052 3–93
2N6052 2N6052 3–93
2N6055 2N6056 3–97
2N6056 2N6056 3–97
2N6057 2N6059 3–93
2N6058 2N6059 3–93
2N6059 2N6059 3–93
2N6098 2N6487 3–132
2N6099 2N6487 3–132
2N6100 2N6487 3–132
2N6101 2N6488 3–132
2N6102 2N6488 3–132
2N6103 2N6487 3–132
2N6106 2N6107 3–101
2N6107 2N6107 3–101
2N6108 2N6109 3–101
2N6109 2N6109 3–101
2N6110 2N6107 3–101
2N6111 2N6107 3–101
2N6121 TIP31B 3–873
2N6122 TIP31B 3–873
2N6123 TIP31B 3–873
2N6124 TIP32B 3–873
2N6125 TIP32B 3–873
2N6126 TIP32C 3–873
2N6127 2N6437 3–128
2N6128 2N6338 3–117
2N6129 TIP41B 3–883
2N6130 TIP41B 3–883
2N6131 TIP41B 3–883
2N6132 TIP42C 3–883
2N6133 TIP42C 3–883
2N6134 TIP42C 3–883
2N6177 MJE340 3–602
2N6226 MJ15016 3–5
2N6227 MJ15016 3–5
2N6228 MJ15016 3–5
2N6229 2N5880 3–77
2N6230 MJ15002 3–497
2N6231 MJ15002 3–497
2N6246 2N5880 3–77
2N6247 2N5880 3–77
2N6248 MJ15016 3–5
2N6249 BUV23 3–388
2N6250 BUV23 3–388
2N6253 2N5878 3–74
2N6254 2N5878 3–74
2N6257 2N5886 3–81
2N6258 2N5686 3–66
2N6259 2N5631 3–59
2N6262 2N3442 3–9
2N6270 2N6338 3–117
2N6271 2N6338 3–117
2N6272 2N6338 3–117
2N6273 2N6338 3–117
2N6274 2N6274 3–108
2N6275 2N6275 3–108
2N6276 2N6275 3–108
2N6277 2N6277 3–108
2N6278 2N6274 3–108
2N6279 2N6275 3–108
2N6280 2N6275 3–108
2N6281 2N6277 3–108
2N6282 2N6283 3–112
2N6283 2N6283 3–112
2N6284 2N6284 3–112
2N6285 2N6286 3–112
2N6286 2N6286 3–112
2N6287 2N6287 3–112
2N6288 2N6292 3–101
2N6289 2N6292 3–101
2N6290 2N6292 3–101
2N6291 2N6292 3–101
2N6292 2N6292 3–101
2N6293 2N6292 3–101
2N6302 2N5631 3–59
2N6322 MJ10015 3–461
2N6323 MJ10015 3–461
2N6324 MJ10015 3–461
2N6325 MJ10015 3–461
2N6326 2N6328
2N6327 2N6328
2N6328 2N6328
2N6329 2N5884 3–81
2N6330 2N5884 3–81
2N6331 2N5884 3–81
Industry
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Number
1–5
Index and Cross Reference
Motorola Bipolar Power Transistor Device Data
INDEX AND CROSS REFERENCE (continued)
2N6338 2N6338 3–117
2N6339 2N6339 3–117
2N6340 2N6341 3–117
2N6341 2N6341 3–117
2N6354 2N6339 3–117
2N6355 2N6059 3–93
2N6356 2N6059 3–93
2N6357 2N6059 3–93
2N6358 2N6059 3–93
2N6359 2N5886 3–81
2N6371 2N3055 3–2
2N6372 2N6316
2N6373 2N6315
2N6374 2N6315
2N6379 2N6379 3–120
2N6382 2N6379 3–120
2N6383 MJ3001 3–425
2N6384 MJ3001 3–425
2N6385 MJ3001 3–425
2N6386 TIP101 3–891
2N6387 2N6387 3–124
2N6388 2N6388 3–124
2N6406 MJE171 3–589
2N6407 MJE172 3–589
2N6408 MJE181 3–589
2N6409 MJE182 3–589
2N6410 MJE200 3–592
2N6411 MJE210 3–592
2N6412 MJE181 3–589
2N6413 MJE181 3–589
2N6414 MJE171 3–589
2N6415 MJE171 3–589
2N6416 MJE243 3–596
2N6417 MJE243 3–596
2N6418 MJE253 3–596
2N6419 MJE253 3–596
2N6436 2N6437 3–128
2N6437 2N6437 3–128
2N6438 2N6438 3–128
2N6465 MJE15030 3–684
2N6466 MJE15030 3–684
2N6467 MJE15031 3–684
2N6468 MJE15031 3–684
2N6469 2N5880 3–77
2N6470 2N5882 3–77
2N6471 2N5882 3–77
2N6472 2N5882 3–77
2N6473 MJE15028 3–684
2N6474 MJE15028 3–684
2N6475 MJE15029 3–684
2N6476 MJE15029 3–684
2N6477 MJE15028 3–684
2N6478 MJE15030 3–684
2N6486 2N6487 3–132
2N6487 2N6487 3–132
2N6488 2N6488 3–132
2N6489 2N6490 3–132
2N6490 2N6490 3–132
2N6491 2N6491 3–132
2N6492 2N6056 3–97
2N6493 2N6056 3–97
2N6494 2N6056 3–97
2N6495 2N6316
2N6496 2N6339 3–117
2N6497 2N6497 3–136
2N6498 2N6497 3–136
2N6499 MJE13005 3–661
2N6512 BUX48A 3–401
2N6513 BUX48A 3–401
2N6514 BUX48A 3–401
2N6530 TIP101 3–891
2N6531 TIP102 3–891
2N6532 TIP102 3–891
2N6535 TIP102 3–891
2N6536 TIP102 3–891
2N6544 BUX48A 3–401
2N6545 BUX48A 3–401
2N6546 2N6547 3–140
2N6547 2N6547 3–140
2N6548 MJE800 3–612
2N6549 MJE800 3–612
2N6551 2N4923 3–38
2N6552 2N4923 3–38
2N6553 2N4923 3–38
2N6554 2N4919 3–34
2N6555 2N4919 3–34
2N6556 2N4919 3–34
2N6557 MJE340 3–602
2N6558 MJE340 3–602
2N6559 MJE340 3–602
2N6569 2N3055 3–2
2N6573 2N6547 3–140
2N6574 2N6547 3–140
2N6575 2N6547 3–140
2N6576 2N6577 3–144
2N6577 2N6577 3–144
2N6578 2N6578 3–144
2N6609 2N6609 3–21
2N6648 MJ2501 3–425
2N6667 2N6667 3–147
2N6668 2N6668 3–147
2N6836 2N6836 MJ16012 3–151
2SA1001 2N6438 3–128
2SA1002 2N6438 3–128
2SA1003 2N6438 3–128
2SA1007 MJ15002 3–497
2SA1008 TIP32C 3–873
2SA1010 TIP42C 3–883
2SA1011 MJE15031 3–684
2SA1012 TIP42B 3–883
2SA1020 TIP32B 3–873
2SA1040 2N6438 3–128
2SA1041 2N6438 3–128
2SA1042 2N6437 3–128
2SA1043 2N6438 3–128
2SA1044 2N6437 3–128
2SA1045 2N6052 3–93
2SA1046 2N6052 3–93
2SA1063 MJ15016 3–5
2SA1064 MJ15002 3–497
2SA1065 MJ15002 3–497
2SA1067 MJ15002 3–497
2SA1068 MJ15002 3–497
2SA1069 TIP42B 3–883
2SA1110 MJE350 3–606
2SA1111 MJE15031 3–684
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Index and Cross Reference
1–6 Motorola Bipolar Power Transistor Device Data
INDEX AND CROSS REFERENCE (continued)
2SA1112 MJE15031 3–684
2SA1197L MJD117–1 3–558
2SA1197S MJD117 3–558
2SA1201 MJD32 3–542
2SA1204 MJD32 3–542
2SA1213 MJD32C 3–542
2SA1241 MJD45H11–1 3–550
2SA1242 MJD210–1 3–569
2SA1243 MJD210–1 3–569
2SA1244 MJD45H11–1 3–550
2SA1307 TIP42B 3–883
2SA1314 MJD32 3–542
2SA1328 2N6490 3–132
2SA1329 2N6491 3–132
2SA1357 TIP42B 3–883
2SA1375 MJD350 3–577
2SA1385 MJD2955 3–580
2SA1552 MJD350–1 3–577
2SA1562 MJD210–1 3–569
2SA1568 MJF2955 3–794
2SA1592 MJD32C1 3–542
2SA1593 MJD32C1 3–542
2SA489 TIP32C 3–873
2SA490 TIP32B 3–873
2SA496 2N4918 3–34
2SA505 2N4919 3–34
2SA623 2N4918 3–34
2SA624 2N4919 3–34
2SA626 MJ15016 3–5
2SA627 MJ15016 3–5
2SA633 2N4918 3–34
2SA634 2N4919 3–34
2SA635 2N4919 3–34
2SA636 2N4919 3–34
2SA645 MJE182 3–589
2SA646 2N4919 3–34
2SA647 2N4919 3–34
2SA648 MJ15002 3–497
2SA656 MJ15016 3–5
2SA657 MJ15016 3–5
2SA658 MJ15016 3–5
2SA663 MJ15016 3–5
2SA670 TIP32B 3–873
2SA671 TIP32B 3–873
2SA679 MJ15016 3–5
2SA680 2N5880 3–77
2SA681 MJE253 3–596
2SA682 MJE253 3–596
2SA698 MJE350 3–606
2SA699 2N4918 3–34
2SA700 TIP32B 3–873
2SA703 2N4918 3–34
2SA714 MJ15016 3–5
2SA715 MJE171 3–589
2SA738 MJE171 3–589
2SA755 TIP32B 3–873
2SA756 MJ15016 3–5
2SA757 MJ15016 3–5
2SA758 MJ15016 3–5
2SA768 TIP32B 3–873
2SA769 TIP32C 3–873
2SA770 2N6109 3–101
2SA771 2N6107 3–101
2SA775 TIP32C 3–873
2SA779 2N4918 3–34
2SA780 2N4919 3–34
2SA794 MJE253 3–596
2SA795 MJE253 3–596
2SA807 2N3792 3–25
2SA808 2N3792 3–25
2SA814 TIP32C 3–873
2SA815 TIP32C 3–873
2SA816 TIP32B 3–873
2SA818 MJE350 3–606
2SA835 MJE350 3–606
2SA837 MJ15016 3–5
2SA839 TIP32C 3–873
2SA843 MJE15031 3–684
2SA878 MJ15002 3–497
2SA882 MJ15002 3–497
2SA887 2N4919 3–34
2SA898 MJE350 3–606
2SA899 MJE350 3–606
2SA900 MJE210 3–592
2SA907 MJ15016 3–5
2SA908 MJ15002 3–497
2SA909 MJ15003 3–500
2SA922 2N4918 3–34
2SA939 MJE350 3–606
2SA940 MJE15031 3–684
2SA949 MJE15031 3–684
2SA957 MJE15031 3–684
2SA958 MJE15031 3–684
2SA963 MJE171 3–589
2SA965 MJE15029 3–684
2SA966 TIP32B 3–873
2SA968 MJE15031 3–684
2SA969 MJE15031 3–684
2SA971 2N6609 3–21
2SA980 2N5880 3–77
2SA981 MJ15002 3–497
2SA982 MJ15002 3–497
2SB1020 2N6042 3–89
2SB1022 2N6041 3–89
2SB1024 TIP127 3–900
2SB1047L MJD117–1 3–558
2SB1047S MJD117 3–558
2SB1072L MJD6036–1 3–584
2SB1072S MJD6036 3–584
2SB1179 MJD6036–1 3–584
2SB1179A MJD6036–1 3–584
2SB1180 MJD127–1 3–563
2SB1180A MJD127–1 3–563
2SB1201 MJD45H11–1 3–550
2SB1202 MJD45H11–1 3–550
2SB1203 MJD45H11–1 3–550
2SB1204 MJD45H11–1 3–550
2SB1205 MJD210–1 3–569
2SB1214 MJD6036–1 3–584
2SB1215 MJD45H11–1 3–550
2SB1216 MJD45H11–1 3–550
2SB506 MJ15016 3–5
2SB507 TIP32B 3–873
2SB509 TIP32C 3–873
2SB511 TIP32B 3–873
2SB513 TIP32C 3–873
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Number
1–7
Index and Cross Reference
Motorola Bipolar Power Transistor Device Data
INDEX AND CROSS REFERENCE (continued)
2SB514 TIP32B 3–873
2SB515 TIP32B 3–873
2SB518 MJ15016 3–5
2SB519 MJ15016 3–5
2SB520 MJ15016 3–5
2SB521 TIP42B 3–883
2SB522 TIP42B 3–883
2SB523 2N5194 3–49
2SB524 2N5194 3–49
2SB526 2N4920 3–34
2SB527 2N4920 3–34
2SB528 2N4920 3–34
2SB529 2N5194 3–49
2SB530 MJ15002 3–497
2SB531 MJ15016 3–5
2SB532 MJ15016 3–5
2SB536 TIP32C 3–873
2SB537 TIP32C 3–873
2SB539 MJ15002 3–497
2SB541 MJ15002 3–497
2SB546 MJE15031 3–684
2SB546 MJE15031 3–684
2SB547 MJE15031 3–684
2SB548 2N4920 3–34
2SB549 2N4920 3–34
2SB552 MJ15025 3–509
2SB553 2N6107 3–101
2SB554 MJ15025 3–509
2SB555 MJ15012 3–502
2SB556 MJ15012 3–502
2SB557 MJ15002 3–497
2SB558 2N5880 3–77
2SB559 2N4918 3–34
2SB565 TIP32B 3–873
2SB566 TIP32C 3–873
2SB567 MJE15031 3–684
2SB568 MJE15031 3–684
2SB569 2N6035 3–85
2SB570 2N6035 3–85
2SB571 2N6036 3–85
2SB572 2N5194 3–49
2SB573 2N5194 3–49
2SB574 2N5195 3–49
2SB575 2N5194 3–49
2SB576 2N5194 3–49
2SB577 2N5195 3–49
2SB578 MJE2955T 3–628
2SB579 MJE2955T 3–628
2SB580 MJE2955T 3–628
2SB581 MJE2955T 3–628
2SB582 2N6041 3–89
2SB583 2N6041 3–89
2SB584 2N6041 3–89
2SB587 2N6052 3–93
2SB588 2N6052 3–93
2SB589 2N6052 3–93
2SB595 TIP42C 3–883
2SB596 TIP32C 3–873
2SB600 MJ15012 3–502
2SB604 TIP32C 3–873
2SB628 MJE15031 3–684
2SB630 MJE15031 3–684
2SB631 2N4920 3–34
2SB632 2N4918 3–34
2SB633 TIP42C 3–883
2SB648 MJE350 3–606
2SB649 MJE350 3–606
2SB653 MJ15016 3–5
2SB654 MJ15016 3–5
2SB655 MJ15002 3–497
2SB656 MJ15002 3–497
2SB668 TIP32B 3–873
2SB669 TIP32B 3–873
2SB673 2N6042 3–89
2SB674 2N6041 3–89
2SB675 2N6041 3–89
2SB676 TIP127 3–900
2SB677 TIP125 3–900
2SB679 TIP117 3–895
2SB681 MJ15002 3–497
2SB686 TIP42C 3–883
2SB688 MJE15029 3–684
2SB689 TIP42C 3–883
2SB690 TIP42C 3–883
2SB691 MJE4352 3–632
2SB692 MJE4352 3–632
2SB693 2N6287 3–112
2SB694 MJ11015 3–478
2SB695 MJE4352 3–632
2SB696 MJ15002 3–497
2SB697 MJ15002 3–497
2SB707 2N6107 3–101
2SB708 2N6107 3–101
2SB711 2N6041 3–89
2SB712 2N6042 3–89
2SB713 MJE4352 3–632
2SB717 MJE350 3–606
2SB718 MJE350 3–606
2SB719 MJE15031 3–684
2SB720 MJE15031 3–684
2SB722 MJ15002 3–497
2SB723 MJ15025 3–509
2SB724 TIP32B 3–873
2SB727 MJE15029 3–684
2SB743 MJE171 3–589
2SB744 MJE172 3–589
2SB750 TIP116 3–895
2SB751 TIP126 3–900
2SB753 TIP42C 3–883
2SB754 2N6109 3–101
2SB772 MJE171 3–589
2SB906 MJD32C1 3–542
2SB907 MJD6036–1 3–584
2SB908 MJD6036–1 3–584
2SB962 MJD45H11–1 3–550
2SB963 MJD117–1 3–558
2SB967 MJD210 3–569
2SB968 MJD210 3–569
2SC1004 BU208A 3–226
2SC1004A BU208A 3–226
2SC1005 BU208A 3–226
2SC1013 MJE181 3–589
2SC1014 MJE181 3–589
2SC1025 2N6233
2SC1030 2N3442 3–9
2SC1034 BU208A 3–226
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Index and Cross Reference
1–8 Motorola Bipolar Power Transistor Device Data
INDEX AND CROSS REFERENCE (continued)
2SC1036 BU208A 3–226
2SC1050 MJ423 3–419
2SC1051 2N3442 3–9
2SC1060 TIP31B 3–873
2SC1061 TIP31B 3–873
2SC1078 BU208A 3–226
2SC1079 MJ15001 3–497
2SC1080 MJ15001 3–497
2SC1086 BU208A 3–226
2SC1088 MJE3439 3–630
2SC1089 MJE3439 3–630
2SC1096 MJE181 3–589
2SC1098 2N4923 3–38
2SC1099 BU208A 3–226
2SC1100 BU208A 3–226
2SC1101 BU208A 3–226
2SC1107 TIP31B 3–873
2SC1108 TIP31B 3–873
2SC1109 TIP31B 3–873
2SC1110 TIP31B 3–873
2SC1111 MJ15001 3–497
2SC1112 MJ15001 3–497
2SC1113 MJE15030 3–684
2SC1115 MJ15001 3–497
2SC1116 MJ15011 3–502
2SC1132 BU208A 3–226
2SC1140 2N6547 3–140
2SC1141 2N6547 3–140
2SC1151 BU208A 3–226
2SC1153 BU208A 3–226
2SC1154 BU208A 3–226
2SC1155 MJE182 3–589
2SC1157 2N4923 3–38
2SC1162 MJE181 3–589
2SC1167 BU208A 3–226
2SC1170 BU208A 3–226
2SC1170A BU208A 3–226
2SC1171 BU208A 3–226
2SC1172 BU208A 3–226
2SC1173 TIP31B 3–873
2SC1174 BU208A 3–226
2SC1184 BU208A 3–226
2SC1224 MJE341 3–604
2SC1226 MJE800 3–612
2SC1227 MJ10007 3–445
2SC1228 MJ16010 3–512
2SC1229 MJ10007 3–445
2SC1237 TIP31B 3–873
2SC1243 MJE800 3–612
2SC1295 BU208A 3–226
2SC1309 BU208A 3–226
2SC1322 BUV23 3–388
2SC1325 MJ16018 3–520
2SC1343 MJ15011 3–502
2SC1348 BU208A 3–226
2SC1358 BU208A 3–226
2SC1367 BU208A 3–226
2SC1381 MJE182 3–589
2SC1382 MJE182 3–589
2SC1402 MJ15001 3–497
2SC1403 MJ15001 3–497
2SC1409 TIP47 3–887
2SC1410 TIP47 3–887
2SC1413 BU208A 3–226
2SC1418 TIP31B 3–873
2SC1419 TIP31B 3–873
2SC1433 MJ423 3–419
2SC1434 2N6547 3–140
2SC1436 BUV23 3–388
2SC1440 MJ15001 3–497
2SC1441 BUV23 3–388
2SC1447 TIP47 3–887
2SC1448 TIP47 3–887
2SC1449 MJE181 3–589
2SC1454 MJ423 3–419
2SC1468 MJ16010 3–512
2SC1469 MJ16010 3–512
2SC1477 MJ10007 3–445
2SC1501 MJE3439 3–630
2SC1505 TIP48 3–887
2SC1506 TIP48 3–887
2SC1507 TIP48 3–887
2SC1514 MJE3439 3–630
2SC1516 2N6038 3–85
2SC1517 2N4922 3–38
2SC1519 MJE340 3–602
2SC1520 MJE340 3–602
2SC1521 MJE340 3–602
2SC1576 MJ16010 3–512
2SC1577 MJ16010 3–512
2SC1584 BUV23 3–388
2SC1585 BUV23 3–388
2SC1586 BUV23 3–388
2SC1609 2N6341 3–117
2SC1610 2N6341 3–117
2SC1617 MJ423 3–419
2SC1629 MJ1001 3–423
2SC1669 TIP47 3–887
2SC1672 2N6341 3–117
2SC1683 TIP47 3–887
2SC1722 TIP48 3–887
2SC1723 TIP48 3–887
2SC1749 MJE340 3–602
2SC1755 MJE2360T 3–626
2SC1756 MJE2360T 3–626
2SC1757 MJE2360T 3–626
2SC1777 2N5882 3–77
2SC1782 MJ15001 3–497
2SC1783 BUV23 3–388
2SC1784 MJ15001 3–497
2SC1785 BUV23 3–388
2SC1786 BUV23 3–388
2SC1818 2N6341 3–117
2SC1819 MJE2361T 3–626
2SC1826 TIP41B 3–883
2SC1827 TIP41C 3–883
2SC1830 2N6578 3–144
2SC1831 2N6056 3–97
2SC1832 MJ10009 3–451
2SC1846 MJE181 3–589
2SC1847 MJE181 3–589
2SC1848 MJE182 3–589
2SC1866 2N3442 3–9
2SC1868 MJ16010 3–512
2SC1869 MJ15001 3–497
2SC1870 2N6547 3–140
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Number
1–9
Index and Cross Reference
Motorola Bipolar Power Transistor Device Data
INDEX AND CROSS REFERENCE (continued)
2SC1875 BU208A 3–226
2SC1880 TIP112 3–895
2SC1881 TIP111 3–895
2SC1883 TIP122 3–900
2SC1891 BU208A 3–226
2SC1892 BU208A 3–226
2SC1893 BU208A 3–226
2SC1894 BU208A 3–226
2SC1895 MJ16018 3–520
2SC1896 MJ16018 3–520
2SC1903 MJE341 3–604
2SC1904 MJE341 3–604
2SC1905 MJE2361T 3–626
2SC1922 BU208A 3–226
2SC1929 TIP48 3–887
2SC1942 BU208A 3–226
2SC1943 TIP111 3–895
2SC1944 TIP112 3–895
2SC1945 TIP41B 3–883
2SC1948 TIP41C 3–883
2SC1983 TIP111 3–895
2SC1984 TIP112 3–895
2SC1985 TIP41B 3–883
2SC1986 TIP41C 3–883
2SC2024 2N4923 3–38
2SC2027 MJ16018 3–520
2SC2068 MJE340 3–602
2SC2071 MJE3439 3–630
2SC2073 TIP47 3–887
2SC2080 MJE181 3–589
2SC2085 MJE2361T 3–626
2SC2121 MJ423 3–419
2SC2122 MJ423 3–419
2SC2126 MJE13005 3–661
2SC2127 BUV23 3–388
2SC2128 MJ10015 3–461
2SC2138 MJ16010 3–512
2SC2139 MJ16010 3–512
2SC2140 MJ16010 3–512
2SC2147 MJ10015 3–461
2SC2148 MJ16010 3–512
2SC2159 MJ10015 3–461
2SC2167 MJE15030 3–684
2SC2168 MJE15030 3–684
2SC2169 MJ15001 3–497
2SC2190 BUX48A 3–401
2SC2191 2N6547 3–140
2SC2204 MJ10016 3–461
2SC2209 MJE181 3–589
2SC2220 MJ10016 3–461
2SC2229 TIP47 3–887
2SC2230 TIP47 3–887
2SC2233 2N6497 3–136
2SC2235 TIP47 3–887
2SC2236 TIP31B 3–873
2SC2238 TIP47 3–887
2SC2242 MJE2361T 3–626
2SC2244 BUX48A 3–401
2SC2245 MJ16010 3–512
2SC2246 2N6547 3–140
2SC2248 BUX48A 3–401
2SC2249 MJ10015 3–461
2SC2250 MJ10016 3–461
2SC2256 BUV23 3–388
2SC2260 BUV23 3–388
2SC2261 BUV23 3–388
2SC2262 BUV23 3–388
2SC2270 2N5194 3–49
2SC2278 MJE3439 3–630
2SC2292 MJ16010 3–512
2SC2293 MJ16010 3–512
2SC2298 MJE270 3–600
2SC2311 2N4922 3–38
2SC2321 MJ15001 3–497
2SC2322 MJ15015 3–5
2SC2323 MJ15001 3–497
2SC2324 2N6038 3–85
2SC2331 MJE13005 3–661
2SC2333 MJE13005 3–661
2SC2334 MJE15030 3–684
2SC2335 MJE13007 3–667
2SC2337 MJ15001 3–497
2SC2344 TIP47 3–887
2SC2356 2N6547 3–140
2SC2366 MJ10016 3–461
2SC2371 MJE3439 3–630
2SC2373 MJE13007 3–667
2SC2397 MJE3055T 3–628
2SC240 2N3055A 3–5
2SC2402 2N6547 3–140
2SC2403 MJ10015 3–461
2SC242 2N3055A 3–5
2SC2428 BUV23 3–388
2SC2429 MJ16010 3–512
2SC243 MJ410 3–417
2SC2430 MJ15001 3–497
2SC2431 MJ15015 3–5
2SC2432 2N5882 3–77
2SC2433 MJ11016 3–478
2SC2434 2N6328
2SC2435 2N6059 3–93
2SC2436 2N6059 3–93
2SC2442 MJ10016 3–461
2SC2443 MJ10016 3–461
2SC2448 MJ16010 3–512
2SC2449 MJ16010 3–512
2SC245 2N3055A 3–5
2SC2450 MJ16010 3–512
2SC2451 MJ16010 3–512
2SC2452 MJ16010 3–512
2SC2453 MJ16010 3–512
2SC246 MJ410 3–417
2SC2482 MJE2361T 3–626
2SC2487 MJ15001 3–497
2SC2488 MJ15001 3–497
2SC2489 MJ15001 3–497
2SC2492 MJ15001 3–497
2SC2493 MJ15001 3–497
2SC2500 TIP31B 3–873
2SC2516 2N6497 3–136
2SC2534 MJE13003 3–655
2SC2535 MJE13005 3–661
2SC2536 MJE13005 3–661
2SC2541 MJ16010 3–512
2SC2555 MJW16206 3–855
2SC2562 TIP42B 3–883
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Index and Cross Reference
1–10 Motorola Bipolar Power Transistor Device Data
INDEX AND CROSS REFERENCE (continued)
2SC2569 2N3442 3–9
2SC2590 MJE341 3–604
2SC270 MJ423 3–419
2SC2792 MJE1320 3–620
2SC2870L MJD340–1 3–577
2SC2870S MJD340 3–577
2SC2871L MJD112–1 3–558
2SC2871S MJD112 3–558
2SC2873 MJD31C 3–542
2SC2881 MJD47 3–554
2SC2882 MJD31C 3–542
2SC2884 MJD31 3–542
2SC2924 MJD340 3–577
2SC2982 MJD31 3–542
2SC3074 MJD41C 3–546
2SC3076 MJD31C 3–542
2SC3132L MJD6039–1 3–584
2SC3132S MJD6039 3–584
2SC3148 MJW16018 3–520
2SC3257 MJE13009 3–676
2SC3281 MJL3281A 3–843
2SC3294 TIP41B 3–883
2SC3306 MJE13009 3–676
2SC3307 MJW16018 3–520
2SC3309 BUX48 3–401
2SC3310 MJE16002 3–688
2SC3346 MJE13009 3–676
2SC3386L MJD44H11–1 3–550
2SC3386S MJD44H11 3–550
2SC3405 MJE1320 3–620
2SC3419 TIP31B 3–873
2SC3420 TIP41B 3–883
2SC3421 TIP47 3–887
2SC3425 TIP50 3–887
2SC3474 MJD112 3–558
2SC3540 MJE15028 3–684
2SC3559 MJW16018 3–520
2SC3621 MJE13005 3–661
2SC4027 MJD340–1 3–577
2SC4028 MJW16018 3–520
2SC4053 MJE18004 3–715
2SC4065 MJF3055 3–794
2SC407 MJ15011 3–502
2SC408 MJ15011 3–502
2SC409 BUV23 3–388
2SC41 MJ410 3–417
2SC410 BUV23 3–388
2SC411 2N6547 3–140
2SC412 2N6547 3–140
2SC4134 MJD31C1 3–542
2SC4135 MJD31C1 3–542
2SC42 MJ410 3–417
2SC42A MJ410 3–417
2SC43 2N3055A 3–5
2SC431 2N6341 3–117
2SC432 2N6341 3–117
2SC433 MJ15024 3–506
2SC434 MJ15024 3–506
2SC435 MJ10000 3–433
2SC436 MJ10000 3–433
2SC44 2N3055A 3–5
2SC492 2N3055A 3–5
2SC493 2N3055A 3–5
2SC495 2N4923 3–38
2SC496 2N4921 3–38
2SC518 2N3716 3–12
2SC518A 2N3716 3–12
2SC519 2N3055A 3–5
2SC520 2N3716 3–12
2SC520A 2N3716 3–12
2SC521A 2N3716 3–12
2SC558 BUX48A 3–401
2SC586 MJ410 3–417
2SC642 BU208A 3–226
2SC643 BU208A 3–226
2SC647 2N3716 3–12
2SC665 2N3442 3–9
2SC681 MJ15011 3–502
2SC687 MJ410 3–417
2SC736 2N3055A 3–5
2SC768 2N3055 3–2
2SC769 MJ15001 3–497
2SC770 MJ15011 3–502
2SC771 MJ15011 3–502
2SC789 TIP31B 3–873
2SC790 TIP31B 3–873
2SC806 MJ423 3–419
2SC807 MJ413 3–419
2SC808 MJ423 3–419
2SC861 BUX48A 3–401
2SC862 BUX48A 3–401
2SC887 MJ410 3–417
2SC888 MJ410 3–417
2SC889 MJ410 3–417
2SC902 MJ15001 3–497
2SC931 MJE3055T 3–628
2SC932 MJE3055T 3–628
2SC936 BU208A 3–226
2SC937 BU208A 3–226
2SC939 MJ15001 3–497
2SC940 BUV23 3–388
2SC961 2N3055A 3–5
2SC999 BU208A 3–226
2SD041 2N3716 3–12
2SD107 2N6056 3–97
2SD1077L MJD31–1 3–542
2SD1077S MJD31 3–542
2SD108 2N6056 3–97
2SD1080L MJD47–1 3–554
2SD1080S MJD47 3–554
2SD1081L MJD47–1 3–554
2SD1081S MJD47 3–554
2SD110 MJ15001 3–497
2SD111 2N5882 3–77
2SD1112 MJD340 3–577
2SD113 MJ802 3–421
2SD114 2N5686 3–66
2SD1164 MJD112–1 3–558
2SD117 2N3442 3–9
2SD1178 MJD112–1 3–558
2SD1178A MJD112–1 3–558
2SD118 2N3442 3–9
2SD1187 TIP33C 3–877
2SD1222 MJD6039 3–584
2SD126 2N3442 3–9
2SD1281L MJD44H11–1 3–550
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1–11
Index and Cross Reference
Motorola Bipolar Power Transistor Device Data
INDEX AND CROSS REFERENCE (continued)
2SD1281S MJD44H11 3–550
2SD1295 MJD200 3–569
2SD133 2N6338 3–117
2SD1412 2N6292 3–101
2SD1413 MJE800T 3–612
2SD1414 TIP122 3–900
2SD1415 TIP120 3–900
2SD1417 TIP101 3–891
2SD1465L MJD112–1 3–558
2SD1465S MJD112 3–558
2SD1520L MJD6039–1 3–584
2SD1520S MJD6039 3–584
2SD1590 MFJ6388
2SD161 MJ15001 3–497
2SD163 2N3716 3–12
2SD164 2N5882 3–77
2SD165 MJ15001 3–497
2SD166 MJ15011 3–502
2SD168 MJ3001 3–425
2SD17 2N3442 3–9
2SD172 2N5878 3–74
2SD173 2N5882 3–77
2SD174 2N5878 3–74
2SD1748 MJD112–1 3–558
2SD1748A MJD112–1 3–558
2SD1749 MJD6039–1 3–584
2SD1749A MJD6039–1 3–584
2SD175 2N5882 3–77
2SD176 2N5882 3–77
2SD177 MJ15001 3–497
2SD1799 MJD6039–1 3–584
2SD18 MJ15011 3–502
2SD1800 MJD112–1 3–558
2SD1801 MJD44H11–1 3–550
2SD1802 MJD44H11–1 3–550
2SD1803 MJD44H11–1 3–550
2SD1804 MJD44H11–1 3–550
2SD1805 MJD44H11–1 3–550
2SD181 MJ15001 3–497
2SD1815 MJD44H11–1 3–550
2SD1816 MJD44H11–1 3–550
2SD1817 MJD6039–1 3–584
2SD199 BU208A 3–226
2SD200 BU208A 3–226
2SD202 2N3055A 3–5
2SD203 2N3442 3–9
2SD206 2N5878 3–74
2SD207 2N5882 3–77
2SD208 MJ15001 3–497
2SD211 2N5878 3–74
2SD212 2N5882 3–77
2SD213 MJ15001 3–497
2SD214 MJ15001 3–497
2SD217 MJ15001 3–497
2SD218 MJ15001 3–497
2SD231 2N5302 3–54
2SD232 2N6275 3–108
2SD233 TIP31B 3–873
2SD235 TIP31B 3–873
2SD243 MJE15030 3–684
2SD244 MJE15030 3–684
2SD246 BU208A 3–226
2SD249 2N5302 3–54
2SD250 2N6328
2SD258 MJE15030 3–684
2SD259 MJE15030 3–684
2SD262 2N6547 3–140
2SD265 BUX48A 3–401
2SD266 BUX48A 3–401
2SD26C 2N3442 3–9
2SD271 MJE13005 3–661
2SD272 MJE13005 3–661
2SD273 BUX48A 3–401
2SD274 BUX48A 3–401
2SD283 MJE15030 3–684
2SD284 MJE15030 3–684
2SD285 MJE15030 3–684
2SD286 MJ15011 3–502
2SD287 MJ15011 3–502
2SD288 TIP31B 3–873
2SD289 TIP31B 3–873
2SD293 2N6547 3–140
2SD294 2N6547 3–140
2SD297 MJE15030 3–684
2SD299 BU208A 3–226
2SD300 BU208A 3–226
2SD301 MJ3001 3–425
2SD310 2N6547 3–140
2SD311 2N6547 3–140
2SD313 TIP31B 3–873
2SD314 TIP31B 3–873
2SD317 TIP31B 3–873
2SD318 TIP31B 3–873
2SD319 MJ15001 3–497
2SD322 MJ15011 3–502
2SD323 MJ15011 3–502
2SD325 TIP31B 3–873
2SD330 TIP31B 3–873
2SD331 TIP31B 3–873
2SD334 2N3055A 3–5
2SD340 MJ15015 3–5
2SD341 MJ15015 3–5
2SD342 TIP31B 3–873
2SD343 TIP31B 3–873
2SD344 TIP31B 3–873
2SD345 TIP31B 3–873
2SD347 TIP41B 3–883
2SD348 MJ16018 3–520
2SD350 BU208A 3–226
2SD351 BUX48A 3–401
2SD356 2N4923 3–38
2SD357 2N4923 3–38
2SD358 2N4923 3–38
2SD359 2N5191 3–44
2SD360 2N5191 3–44
2SD361 2N5191 3–44
2SD363 MJ10015 3–461
2SD364 MJ10016 3–461
2SD365 TIP31B 3–873
2SD366 TIP31B 3–873
2SD368 MJ16018 3–520
2SD369 2N3716 3–12
2SD372 MJ10015 3–461
2SD373 MJ10015 3–461
2SD374 MJ10016 3–461
2SD375 BUV23 3–388
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Index and Cross Reference
1–12 Motorola Bipolar Power Transistor Device Data
INDEX AND CROSS REFERENCE (continued)
2SD376 BUV23 3–388
2SD380 MJ16018 3–520
2SD381 MJE15030 3–684
2SD382 MJE15030 3–684
2SD383 MJ423 3–419
2SD386 MJE13005 3–661
2SD387 MJE13005 3–661
2SD388 MJ15011 3–502
2SD389 TIP31B 3–873
2SD390 TIP31B 3–873
2SD393 MJ16010 3–512
2SD394 MJ16010 3–512
2SD395 MJ16010 3–512
2SD396 2N6547 3–140
2SD401 TIP47 3–887
2SD402 TIP47 3–887
2SD404 TIP120 3–900
2SD414 MJE341 3–604
2SD415 MJE341 3–604
2SD416 MJ16018 3–520
2SD418 MJ16018 3–520
2SD422 MJE13005 3–661
2SD423 MJE13005 3–661
2SD424 MJ15001 3–497
2SD425 MJ15001 3–497
2SD426 MJ15001 3–497
2SD427 2N3055A 3–5
2SD429 2N6547 3–140
2SD430 2N3055A 3–5
2SD431 MJ15001 3–497
2SD432 MJ15001 3–497
2SD433 MJ15011 3–502
2SD434 BUV23 3–388
2SD435 MJ13333 3–487
2SD436 MJ13333 3–487
2SD437 MJ16010 3–512
2SD45 2N3442 3–9
2SD457 MJ10015 3–461
2SD458 MJ16010 3–512
2SD459 TIP121 3–900
2SD46 2N3442 3–9
2SD460 TIP122 3–900
2SD461 MJ423 3–419
2SD463 2N6056 3–97
2SD464 2N6056 3–97
2SD475 TIP31B 3–873
2SD476 TIP31B 3–873
2SD478 TIP47 3–887
2SD479 2N6038 3–85
2SD480 2N6038 3–85
2SD481 2N6039 3–85
2SD482 2N5657 3–63
2SD483 2N5657 3–63
2SD484 2N5657 3–63
2SD485 2N5191 3–44
2SD486 2N5191 3–44
2SD487 2N5192 3–44
2SD488 2N4921 3–38
2SD489 2N4922 3–38
2SD490 2N4923 3–38
2SD491 MJE3055T 3–628
2SD492 2N3055 3–2
2SD493 MJE3055T 3–628
2SD494 MJE3055T 3–628
2SD495 MJE3055T 3–628
2SD496 2N6044 3–89
2SD497 2N6044 3–89
2SD498 2N6045 3–89
2SD499 MJE3055T 3–628
2SD500 MJE3055T 3–628
2SD501 2N6488 3–132
2SD502 2N6056 3–97
2SD503 2N6056 3–97
2SD504 2N6059 3–93
2SD505 2N6059 3–93
2SD506 2N6059 3–93
2SD517 BU208A 3–226
2SD518 MJE13005 3–661
2SD522 2N5882 3–77
2SD523 2N6056 3–97
2SD524 2N6056 3–97
2SD525 TIP41C 3–883
2SD526 TIP41B 3–883
2SD53 2N3055A 3–5
2SD531 TIP41C 3–883
2SD533 MJ423 3–419
2SD538 MJ16010 3–512
2SD544 TIP41C 3–883
2SD549 TIP111 3–895
2SD55 2N6328
2SD552 BUV23 3–388
2SD553 TIP41B 3–883
2SD570 TIP31B 3–873
2SD574 MJ11016 3–478
2SD577 BU208A 3–226
2SD589 MJ16018 3–520
2SD598 2N3055A 3–5
2SD60 2N3442 3–9
2SD600 2N4923 3–38
2SD605 MJ10012 3–457
2SD608 TIP47 3–887
2SD610 TIP47 3–887
2SD612 MJE521 3–610
2SD613 TIP41C 3–883
2SD622 MJE13005 3–661
2SD626 MJ10012 3–457
2SD627 BU208A 3–226
2SD628 2N6059 3–93
2SD629 2N6059 3–93
2SD630 2N5302 3–54
2SD631 2N5302 3–54
2SD633 TIP122 3–900
2SD634 TIP121 3–900
2SD635 TIP120 3–900
2SD640 BUX48A 3–401
2SD642 MJ10016 3–461
2SD643 MJ10015 3–461
2SD644 MJ10016 3–461
2SD645 MJ10016 3–461
2SD646 MJ10016 3–461
2SD649 BU208A 3–226
2SD650 MJ10012 3–457
2SD663 MJ10012 3–457
2SD665 BUV23 3–388
2SD668 MJE344 3–604
2SD669 MJE344 3–604
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1–13
Index and Cross Reference
Motorola Bipolar Power Transistor Device Data
INDEX AND CROSS REFERENCE (continued)
2SD67 2N3055A 3–5
2SD670 2N6578 3–144
2SD673 2N3055A 3–5
2SD674 2N3055A 3–5
2SD675 2N3442 3–9
2SD676 2N3442 3–9
2SD678 TIP111 3–895
2SD679 TIP111 3–895
2SD686 TIP122 3–900
2SD687 MJE800T 3–612
2SD689 TIP112 3–895
2SD69 2N3442 3–9
2SD692 2N6056 3–97
2SD693 MJ10012 3–457
2SD694 MJ10015 3–461
2SD695 MJ10015 3–461
2SD696 MJ10015 3–461
2SD702 MJ10015 3–461
2SD703 MJ10016 3–461
2SD705 MJ10012 3–457
2SD710 MJ10005 3–439
2SD716 TIP41C 3–883
2SD717 D44H10 3–411
2SD718 MJE15028 3–684
2SD721 2N6045 3–89
2SD722 2N6045 3–89
2SD723 TIP31C 3–873
2SD724 MJE13005 3–661
2SD725 MJ16018 3–520
2SD726 TIP31C 3–873
2SD727 2N3055A 3–5
2SD728 2N3442 3–9
2SD729 2N6284 3–112
2SD733 MJ15001 3–497
2SD74 2N3442 3–9
2SD751 MJ423 3–419
2SD752 MJ15001 3–497
2SD753 BUV23 3–388
2SD757 MJE3439 3–630
2SD758 MJE3439 3–630
2SD759 TIP47 3–887
2SD760 TIP47 3–887
2SD761 TIP47 3–887
2SD762 TIP31B 3–873
2SD764 BU208A 3–226
2SD765 BU208A 3–226
2SD768 2N6045 3–89
2SD793 MJE181 3–589
2SD794 MJE182 3–589
2SD797 MJE802 3–612
2SD801 BUX48A 3–401
2SD802 BUX48A 3–401
2SD803 2N6059 3–93
2SD805 MJ10016 3–461
2SD823 MJE15030 3–684
2SD83 2N3442 3–9
2SD836 TIP111 3–895
2SD837 TIP120 3–900
2SD839 MJE800T 3–612
2SD84 MJ15011 3–502
2SD840 TIP121 3–900
2SD843 MJE15028 3–684
2SD844 MJE3055T 3–628
2SD867 MJ15001 3–497
2SD872 MJE3055T 3–628
2SD873 2N3773 3–21
2SD878 2N3055 3–2
2SD88 2N5758 3–70
2SD880 TIP31B 3–873
2SD882 MJE181 3–589
2SD903 MJ16018 3–520
2SD950 BU208A 3–226
2SD951 BU208A 3–226
2SD952 BU208A 3–226
2SD953 MJ16018 3–520
2SD992 MJD31–1 3–542
BD127 MJE340 3–602
BD128 MJE340 3–602
BD129 MJE340 3–602
BD130 2N3055 3–2
BD131 BD787 3–194
BD132 BD788 3–194
BD132 BD788 3–194
BD133 BD787 3–194
BD135 BD135 3–158
BD135.10 BD135 3–158
BD135.16 BD135 3–158
BD135.6 BD135 3–158
BD136 BD136 3–160
BD136.10 BD136 3–160
BD136.16 BD136 3–160
BD136.6 BD136 3–160
BD137 BD137 3–158
BD137.10 BD137 3–158
BD137.16 BD137 3–158
BD137.6 MJE181 3–589
BD138 BD138 3–160
BD138.10 BD138 3–160
BD138.16 BD138 3–160
BD138.6 BD138 3–160
BD139 BD139 3–158
BD139.10 BD139 3–158
BD139.16 BD139 3–158
BD139.6 BD139 3–158
BD140 BD140 3–160
BD140.10 BD140.10 3–160
BD140.16 BD140 3–160
BD140.6 BD140 3–160
BD157 MJE340 3–602
BD158 MJE340 3–602
BD159 MJE340 3–602
BD165 2N4921 3–38
BD166 2N4918 3–34
BD167 2N4922 3–38
BD168 2N4919 3–34
BD169 2N4923 3–38
BD170 2N4920 3–34
BD175 2N4923 3–38
BD175.10 2N4923 3–38
BD175.16 2N4923 3–38
BD175.6 2N4923 3–38
BD176 BD180 3–170
BD176.10 BD180 3–170
BD176.16 BD180 3–170
BD176.6 BD180 3–170
BD177 BD179 3–168
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Index and Cross Reference
1–14 Motorola Bipolar Power Transistor Device Data
INDEX AND CROSS REFERENCE (continued)
BD177.10 BD179 3–168
BD177.16 BD179 3–168
BD177.6 BD179 3–168
BD178 2N4919 3–34
BD178.10 BD180 3–170
BD178.16 BD180 3–170
BD178.6 BD180 3–170
BD179 BD179 3–168
BD179.10 BD179 3–168
BD179.16 BD179 3–168
BD179.6 BD179 3–168
BD180 BD180 3–170
BD180.10 BD180 3–170
BD180.16 BD180 3–170
BD180.6 BD180 3–170
BD185 BD787 3–194
BD186 BD186
BD187 BD187
BD188 BD188
BD189 BD787 3–194
BD190 BD788 3–194
BD195 MJE3055T 3–628
BD196 MJE2955T 3–628
BD197 MJE3055T 3–628
BD198 MJE2955T 3–628
BD199 MJE3055T 3–628
BD200 MJE2955T 3–628
BD202 BD796
BD206 MJE2955T 3–628
BD207 MJE3055T 3–628
BD208 MJE2955T 3–628
BD220 BD537
BD223 BD538
BD226 BD135 3–158
BD227 BD136 3–160
BD228 BD137 3–158
BD229 BD138 3–160
BD230 BD139 3–158
BD231 BD140 3–160
BD232 BD159 3–162
BD237 BD237 2N4923 3–172
BD238 2N4920 3–34
BD240C TIP32C 3–873
BD241 BD241B 3–174
BD241A BD241B 3–174
BD241B BD241B 3–174
BD241C BD241C 3–174
BD242 BD242B 3–174
BD242A BD242B 3–174
BD242B BD242B 3–174
BD242C BD242C 3–174
BD243 BD243B 3–178
BD243A BD243B 3–178
BD243B BD243B 3–178
BD243C BD243C 3–178
BD244 BD244B 3–178
BD244A BD244B 3–178
BD244B BD244B 3–178
BD244C BD244C 3–178
BD249C BD249C
BD250C BD250C
BD262 BD678 3–190
BD262A BD680 3–190
BD262B BD682 3–190
BD263 BD677 3–188
BD263A BD679 3–188
BD263B BD681 3–188
BD268A BDW46 3–212
BD275 BD537
BD276 BD538
BD278 MJE3055T 3–628
BD278A MJE3055T 3–628
BD279 2N6035 3–85
BD291 BD243B 3–178
BD292 BD244B 3–178
BD293 BD243B 3–178
BD294 BD244B 3–178
BD295 BD243B 3–178
BD296 BD244B 3–178
BD306A BD787 3–194
BD306B BD787 3–194
BD307A BD787 3–194
BD307B BD787 3–194
BD311 2N3716 3–12
BD312 2N3792 3–25
BD329 MJE200 3–592
BD330 MJE210 3–592
BD337 BDX33D
BD338 BDX34D
BD342 2N3055 3–2
BD343 MJE2955T 3–628
BD344 BD138 3–160
BD345 BD137 3–158
BD348 BD140 3–160
BD349 BD139 3–158
BD361 MJE200 3–592
BD361A MJE200 3–592
BD362 MJE210 3–592
BD362A MJE210 3–592
BD375 BD787 3–194
BD376 BD788 3–194
BD377 BD787 3–194
BD378 BD788 3–194
BD379 BD789 3–198
BD380 BD790 3–198
BD385 MJE181 3–589
BD385–1 MJE181 3–589
BD385–2 MJE181 3–589
BD385–5 MJE181 3–589
BD385–8 MJE181 3–589
BD386 MJE171 3–589
BD386–1 MJE171 3–589
BD386–2 MJE171 3–589
BD386–5 MJE171 3–589
BD386–8 MJE171 3–589
BD387 MJE182 3–589
BD387–1 MJE182 3–589
BD387–2 MJE182 3–589
BD387–5 MJE182 3–589
BD387–8 MJE182 3–589
BD388 MJE172 3–589
BD388–1 MJE172 3–589
BD388–2 MJE172 3–589
BD388–5 MJE172 3–589
BD388–8 MJE172 3–589
BD389 MJE243 3–596
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1–15
Index and Cross Reference
Motorola Bipolar Power Transistor Device Data
INDEX AND CROSS REFERENCE (continued)
BD389–1 MJE243 3–596
BD389–2 MJE243 3–596
BD389–5 MJE243 3–596
BD389–8 MJE243 3–596
BD390 MJE253 3–596
BD390–1 MJE253 3–596
BD390–2 MJE253 3–596
BD390–5 MJE253 3–596
BD390–8 MJE253 3–596
BD410 MJE340 3–602
BD411 2N6038 3–85
BD411–1 2N6038 3–85
BD411–2 2N6038 3–85
BD411–5 2N6038 3–85
BD411–8 2N6038 3–85
BD412 2N6038 3–85
BD412–1 2N6038 3–85
BD412–2 2N6038 3–85
BD412–5 2N6038 3–85
BD412–8 2N6038 3–85
BD413 2N6035 3–85
BD413–1 2N6035 3–85
BD413–2 2N6035 3–85
BD413–5 2N6035 3–85
BD413–8 2N6035 3–85
BD414 2N6035 3–85
BD414–1 2N6035 3–85
BD414–2 2N6035 3–85
BD414–5 2N6035 3–85
BD414–8 2N6035 3–85
BD415 MJE181 3–589
BD415–1 MJE181 3–589
BD415–2 MJE181 3–589
BD415–8 MJE181 3–589
BD416 MJE171 3–589
BD416–1 MJE171 3–589
BD416–2 MJE171 3–589
BD416–5 MJE171 3–589
BD417 MJE182 3–589
BD417–1 MJE182 3–589
BD417–2 MJE182 3–589
BD417–5 MJE182 3–589
BD417–8 MJE182 3–589
BD418 MJE172 3–589
BD418–1 MJE172 3–589
BD418–2 MJE172 3–589
BD418–5 MJE172 3–589
BD418–8 MJE172 3–589
BD419 MJE243 3–596
BD419–1 MJE243 3–596
BD419–2 MJE243 3–596
BD419–8 MJE243 3–596
BD420 MJE253 3–596
BD420–1 MJE253 3–596
BD420–2 MJE253 3–596
BD420–5 MJE253 3–596
BD420–8 MJE253 3–596
BD424 BD791 3–198
BD429 MJE200 3–592
BD430 MJE210 3–592
BD433 BD437 3–182
BD434 BD438 3–185
BD435 BD437 3–182
BD436 BD438 3–185
BD438 BD438 3–185
BD440 BD440 3–185
BD442 BD442 3–185
BD443 BD179 3–168
BD443A BD179 3–168
BD466A 2N6038 3–85
BD466B 2N6038 3–85
BD477A 2N6035 3–85
BD477B 2N6035 3–85
BD537 TIP31B 3–873
BD538 TIP32B 3–873
BD539 BD243B 3–178
BD539A BD243B 3–178
BD539B BD243B 3–178
BD539C BD243C 3–178
BD540 BD244B 3–178
BD540A BD244B 3–178
BD540B BD244B 3–178
BD540C BD244C 3–178
BD544 BD808 3–206
BD544A BD808 3–206
BD544B BD810 3–206
BD561 BD187
BD575 BD241B 3–174
BD576 BD242B 3–174
BD577 BD241B 3–174
BD578 BD242B 3–174
BD579 BD241B 3–174
BD580 BD242B 3–174
BD581 BD241C 3–174
BD582 BD242C 3–174
BD589 BD537
BD590 BD538
BD591 BD241C 3–174
BD592 BD242C 3–174
BD601 BD801 3–202
BD602 BD802 3–204
BD606 BD808 3–206
BD608 BD808 3–206
BD610 BD810 3–206
BD611 BD433
BD612 BD434
BD613 BD435
BD614 BD436
BD615 BD437 3–182
BD616 BD438 3–185
BD617 BD439
BD618 BD440 3–185
BD619 BD441 3–182
BD620 BD442 3–185
BD633 BD241B 3–174
BD634 BD242B 3–174
BD635 BD241B 3–174
BD636 BD242B 3–174
BD637 BD241B 3–174
BD638 BD242B 3–174
BD661 BD189
BD662 BD186
BD675 BD677 3–188
BD675A BD677A 3–188
BD676 BD678 3–190
BD676A BD678A 3–190
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Index and Cross Reference
1–16 Motorola Bipolar Power Transistor Device Data
INDEX AND CROSS REFERENCE (continued)
BD677 BD677 3–188
BD677A BD677A 3–188
BD678 BD678 3–190
BD678A BD678A 3–190
BD679 BD679 3–188
BD679A BD679A 3–188
BD680 BD680 3–190
BD680A BD680A 3–190
BD681 BD681 3–188
BD682 BD682 3–190
BD743D MJE15030 3–684
BD744 BD808 3–206
BD744A BD808 3–206
BD744B BD810 3–206
BD744D MJE15031 3–684
BD775 BD777 3–192
BD776 BD776 3–192
BD777 BD777 3–192
BD778 BD778 3–192
BD780 BD780 3–192
BD785 BD787 3–194
BD786 BD788 3–194
BD787 BD787 3–194
BD788 BD788 3–194
BD789 BD789 3–198
BD790 BD790 3–198
BD791 BD791 3–198
BD792 BD792 3–198
BD801 BD801 3–202
BD802 BD802 3–204
BD806 BD808 3–206
BD808 BD808 3–206
BD809 BD810 3–206
BD810 BD810 3–206
BD813 MJE181 3–589
BD814 MJE171 3–589
BD815 MJE182 3–589
BD816 MJE172 3–589
BD817 MJE243 3–596
BD818 MJE253 3–596
BD825 MJE181 3–589
BD826 MJE171 3–589
BD827 MJE182 3–589
BD828 MJE172 3–589
BD829 MJE243 3–596
BD830 MJE253 3–596
BD833 BD787 3–194
BD834 BD788 3–194
BD835 BD787 3–194
BD836 BD788 3–194
BD837 BD789 3–198
BD838 BD790 3–198
BD839 BD790 3–198
BD861 BD677 3–188
BD862 BD678 3–190
BD863 BD677 3–188
BD864 BD678 3–190
BD865 BD679 3–188
BD866 BD680 3–190
BD875 BD775
BD876 BD776 3–192
BD877 BD777 3–192
BD878 BD778 3–192
BD880 BD780 3–192
BD905 2N6487 3–132
BD906 2N6490 3–132
BD907 2N6487 3–132
BD908 2N6490 3–132
BD909 2N6488 3–132
BD910 2N6491 3–132
BD933 BD241B 3–174
BD934 BD242B 3–174
BD935 BD241B 3–174
BD936 BD242B 3–174
BD937 BD241B 3–174
BD938 BD242B 3–174
BD939 BD241C 3–174
BD940 BD242C 3–174
BD941 MJE15030 3–684
BD942 MJE15031 3–684
BD951 BD537
BD952 BD538
BD953 BD241C 3–174
BD954 BD242C 3–174
BD955 MJE15030 3–684
BD956 MJE15031 3–684
BD957 BD775
BD977 BD777 3–192
BD978 BD778 3–192
BD980 BD780 3–192
BDT29 TIP31B 3–873
BDT29A TIP32B 3–873
BDT29B TIP31B 3–873
BDT29C TIP31C 3–873
BDT30 TIP30A
BDT30B TIP30B 3–871
BDT30C TIP30C 3–871
BDT31 TIP31B 3–873
BDT31A TIP31B 3–873
BDT31B TIP31B 3–873
BDT31C TIP31C 3–873
BDT32 TIP32B 3–873
BDT32A TIP32B 3–873
BDT32B TIP32B 3–873
BDT32C TIP32C 3–873
BDT41 TIP41B 3–883
BDT41A TIP41B 3–883
BDT41B TIP41B 3–883
BDT41C TIP41C 3–883
BDT42 TIP42B 3–883
BDT42A TIP42B 3–883
BDT42B TIP42B 3–883
BDT42C TIP42C 3–883
BDT60 TIP125 3–900
BDT60A TIP126 3–900
BDT60B TIP127 3–900
BDT60C BDX53D
BDT61 TIP120 3–900
BDT61A TIP121 3–900
BDT61B TIP122 3–900
BDT61C BDX53D
BDT62A BDW46 3–212
BDT62B BDW47 3–212
BDT62C BDW47 3–212
BDT63B BDW42 3–212
BDT63C BDW42 3–212
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Index and Cross Reference
Motorola Bipolar Power Transistor Device Data
INDEX AND CROSS REFERENCE (continued)
BDT64B BDW46 3–212
BDT64C BDW47 3–212
BDT65B BDW42 3–212
BDT65C BDW42 3–212
BDT92 BD808 3–206
BDT94 BD810 3–206
BDV64 BDV64A
BDV64A BDV64B 3–208
BDV64B BDV64B 3–208
BDV64C BDV64B 3–208
BDV65 BDV65A
BDV65A BDV65B 3–208
BDV65B BDV65B 3–208
BDV65C BDV65B 3–208
BDV66C MJH11018 3–825
BDV66D MJH11019 3–825
BDV67D MJH11020 3–825
BDV91 MJE3055T 3–628
BDV92 TIP34B 3–877
BDV93 TIP34C 3–877
BDV94 TIP2955 3–908
BDV95 TIP33B 3–877
BDV96 TIP33C 3–877
BDW21 2N3716 3–12
BDW21A 2N3716 3–12
BDW21B 2N3716 3–12
BDW21C 2N5882 3–77
BDW22 2N3792 3–25
BDW22B 2N3792 3–25
BDW22C 2N5880 3–77
BDW23 BDX53B 3–221
BDW23A BDX53B 3–221
BDW23B BDX53B 3–221
BDW23C BDX53C 3–221
BDW24 BDX54B 3–221
BDW24A BDX54B 3–221
BDW24B BDX54B 3–221
BDW24C BDX54C 3–221
BDW42 BDW42 3–212
BDW43 BDW42 3–212
BDW46 BDW46 3–212
BDW47 BDW47 3–212
BDW48 BDW47 3–212
BDW51 2N3716 3–12
BDW51A 2N3716 3–12
BDW51B 2N3716 3–12
BDW51C 2N5882 3–77
BDW52 2N3792 3–25
BDW52A 2N3792 3–25
BDW52B 2N3792 3–25
BDW52C 2N5880 3–77
BDW53 TIP120 3–900
BDW53A TIP120 3–900
BDW53B TIP121 3–900
BDW53C BDX53C 3–221
BDW53D BDX53D
BDW54 TIP125 3–900
BDW54A TIP125 3–900
BDW54B TIP126 3–900
BDW54C BDX54C 3–221
BDW54D BDX54D
BDW55 BD135 3–158
BDW56 BD136 3–160
BDW57 BD137 3–158
BDW58 BD138 3–160
BDW59 BD139 3–158
BDW60 BD140 3–160
BDW63 BDX53B 3–221
BDW63A BDX53B 3–221
BDW63B BDX53B 3–221
BDW63C BDX53C 3–221
BDW63D BDX53D
BDW64 BDX54B 3–221
BDW64A BDX54B 3–221
BDW64B BDX54B 3–221
BDW64C BDX54C 3–221
BDW73D BDX33D
BDW74D BDX34D
BDW83 BDV65A
BDW83A BDV65A
BDW83B BDV65A
BDW83C BDV65B 3–208
BDW84 BDV64A
BDW84A BDV64A
BDW84B BDV64A
BDW84C BDV64B 3–208
BDW93C BDW42 3–212
BDW94B BDW46 3–212
BDW94C BDW47 3–212
BDX10 2N3055A 3–5
BDX10–4 2N3055A 3–5
BDX10–6 2N3055A 3–5
BDX10–7 2N3055A 3–5
BDX10C 2N3055A 3–5
BDX18 MJ2955 3–2
BDX33B BDX33B 3–217
BDX33C BDX33C 3–217
BDX33D BDX33C 3–217
BDX34B BDX34B 3–217
BDX34C BDX34C 3–217
BDX34D BDX34C 3–217
BDX35 TIP42C 3–883
BDX36 TIP42D
BDX37 TIP42D
BDX42 BD775
BDX43 BD777 3–192
BDX45 BD776 3–192
BDX46 BD778 3–192
BDX53 BDX53B 3–221
BDX53A BDX53B 3–221
BDX53B BDX53B 3–221
BDX53C BDX53C 3–221
BDX53D BDX53C 3–221
BDX54 BDX54B 3–221
BDX54A BDX54B 3–221
BDX54B BDX54B 3–221
BDX54C BDX54C 3–221
BDX54D BDX54C 3–221
BDX70 2N6487 3–132
BDX71 2N6487 3–132
BDX72 2N6488 3–132
BDX73 2N6488 3–132
BDX74 2N6487 3–132
BDX75 2N6487 3–132
BDX83 MJ3001 3–425
BDX83A MJ3001 3–425
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Index and Cross Reference
1–18 Motorola Bipolar Power Transistor Device Data
INDEX AND CROSS REFERENCE (continued)
BDX83B MJ3001 3–425
BDX83C MJ4035
BDX84 MJ2501 3–425
BDX84A MJ2501 3–425
BDX84B MJ2501 3–425
BDX84C MJ4032
BDX91 2N3716 3–12
BDX92 2N3792 3–25
BDX93 2N3716 3–12
BDX94 2N3792 3–25
BDX95 2N5882 3–77
BDX96 2N5880 3–77
BDY29 2N5303 3–54
BDY34 BD787 3–194
BDY37 2N3773 3–21
BDY96 BUX48 3–401
BDY96–1 BUX48 3–401
BDY96/01 BUX48 3–401
BDY97 BUX48 3–401
BDY97–1 BUX48 3–401
BU1008ADF MJF16018+DIODE
BU1008AF MJF16018
BU104P BU406 3–244
BU105 BU208A 3–226
BU108 BU208A 3–226
BU109P BU407 3–244
BU124 BU426
BU126 BUX48A 3–401
BU134 MJ423 3–419
BU137 MJ16018 3–520
BU157 MJ16018 3–520
BU180 MJE5741 3–640
BU180A MJE5742 3–640
BU204 BU208A 3–226
BU205 BU208A 3–226
BU205A BU208A 3–226
BU207 BU208A 3–226
BU208 BU208A 3–226
BU208A BU208A 3–226
BU208D MJF16018+DIODE
BU223 MJ423 3–419
BU223A MJ423 3–419
BU322 BU323A 3–231
BU322A BU323A 3–231
BU323 BU323A 3–231
BU323A BU323A 3–231
BU323AP BU323AP 3–235
BU323P BU323AP 3–235
BU323Z BU323Z 3–239
BU326A
BU406 BU406 3–244
BU407 BU407 3–244
BU426 BUV48 3–391
BU426A BUV48A 3–391
BU433 BUV48 3–391
BU500 BU500
BU522 BU522B 3–246
BU522A BU522B 3–246
BU522B BU522B 3–246
BU806 BU806 3–249
BU808 BU208A 3–226
BUD43B BUD43B 3–251
BUD44D2 BUD44D2 3–253
BUF420A MJW18020
BUH100 BUH100 3–278
BUH150 BUH150 3–287
BUH50 BUH50 3–262
BUH51 BUH51 3–270
BUL146 BUL146 3–335
BUL146F BUL146F 3–335
BUL147 BUL147 3–343
BUL147F BUL147F 3–343
BUL382 BUL45 3–316
BUL43B BUL43B 3–304
BUL44 BUL44 3–296
BUL44D2 BUL44D2 3–306
BUL44F BUL44F 3–296
BUL45 BUL45 3–316
BUL45D2 BUL45D2 3–325
BUL45F BUL45F 3–316
BUS11 MJE16002 3–688
BUS12 BUX48 3–401
BUS12A BUX48A 3–401
BUS13 BUX48 3–401
BUS13A BUX48A 3–401
BUS14 BUX98
BUS14A BUX98A
BUS46P MJE16002 3–688
BUS47 BUX48 3–401
BUS47A BUX48A 3–401
BUS47AP BUV47A
BUS47P BUV47
BUS48 BUX48 3–401
BUS48A BUX48A 3–401
BUS48AP MJW16010A 3–847
BUS48P MJW16010A 3–847
BUS50 BUS50 3–351
BUS52 BUS52
BUS97 MJ16010 3–512
BUS98 BUX98 3–353
BUS98A BUX98A 3–353
BUT11AF BUT11AF 3–360
BUT33 BUT33 3–364
BUT34 BUT34 3–370
BUT35 BUT35
BUT56A BUT56A
BUT90 BUS50 3–351
BUT91 BUS52
BUT92 BUS52
BUV10 BUV10
BUV10N BUV10
BUV11 BUV11 3–376
BUV11N BUV11 3–376
BUV12 BUV11 3–376
BUV18 BUS50 3–351
BUV19 BUS50 3–351
BUV20 BUV20 3–379
BUV21 BUV21 3–382
BUV21N BUV21 3–382
BUV22 BUV22 3–385
BUV23 BUV23 3–388
BUV24 BUX98
BUV25 BUX98A
BUV44 BUX48 3–401
BUV45 BUX48A 3–401
BUV46 BUV46
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Index and Cross Reference
Motorola Bipolar Power Transistor Device Data
INDEX AND CROSS REFERENCE (continued)
BUV47 BUV48 3–391
BUV47A BUV48A 3–391
BUV48 BUV48 3–391
BUV48A BUV48A 3–391
BUV60 BUV60
BUV98A MJW18020
BUW13 MJW16010A 3–847
BUW13A MJW16010A 3–847
BUW34 BUX48 3–401
BUW35 BUX48 3–401
BUW36 BUX48A 3–401
BUW44 BUX48 3–401
BUW45 BUX48 3–401
BUW46 BUX48A 3–401
BUW72 MJE13009 3–676
BUW74 BUX48 3–401
BUW75 BUX48 3–401
BUW76 BUX48 3–401
BUW77 BUX48 3–401
BUW84 MJE13003 3–655
BUW85 MJE13003 3–655
BUX11 BUX11
BUX12 BUV11 3–376
BUX13 BUX48 3–401
BUX14 BUX48 3–401
BUX15 BUX48A 3–401
BUX17 BUX48 3–401
BUX17A BUX48 3–401
BUX17B BUX48 3–401
BUX17C BUX48 3–401
BUX18 2N6544
BUX18A 2N6544
BUX18B BUX48A 3–401
BUX18C BUX48A 3–401
BUX21 BUV21 3–382
BUX41 BUX41 3–398
BUX41N BUX41 3–398
BUX42 BUX48 3–401
BUX43 BUX48 3–401
BUX47 BUX48 3–401
BUX47A BUX48A 3–401
BUX48 BUX48 3–401
BUX48A BUX48A 3–401
BUX48S BUX48 3–401
BUX82 BUX48A 3–401
BUX83 BUX48A 3–401
BUX84 BUX85 3–408
BUX85 BUX85 3–408
BUX86 MJE13003 3–655
BUX87 MJE13003 3–655
BUX8O 2N6547 3–140
BUX98 BUX98
BUX98A BUX98A
BUY29 MJ410 3–417
BUY30 MJ423 3–419
BUY49P MJE340 3–602
BUY69A BUX48A 3–401
BUY69B BUX48 3–401
D40C1 MJE800 3–612
D40C2 MJE800 3–612
D40C4 MJE800 3–612
D40C5 MJE800 3–612
D40D1 MJE181 3–589
D40D10 MJE182 3–589
D40D11 MJE182 3–589
D40D13 MJE182 3–589
D40D14 MJE182 3–589
D40D2 MJE181 3–589
D40D3 MJE181 3–589
D40D4 MJE181 3–589
D40D5 MJE181 3–589
D40D7 MJE181 3–589
D40D8 MJE181 3–589
D40E1 MJE181 3–589
D40E5 MJE181 3–589
D40E7 MJE182 3–589
D40K1 MJE800 3–612
D40K2 MJE800 3–612
D40K3 MJE800 3–612
D40K4 MJE800 3–612
D40N1 MJE340 3–602
D40N2 MJE340 3–602
D40N3 MJE340 3–602
D40N4 MJE340 3–602
D40P1 MJE341 3–604
D40P3 MJE344 3–604
D40P5 MJE340 3–602
D41C2 D44H8 3–411
D41D1 2N4918 3–34
D41D10 2N4920 3–34
D41D11 2N4920 3–34
D41D13 2N4920 3–34
D41D14 2N4920 3–34
D41D2 2N4918 3–34
D41D4 2N4919 3–34
D41D5 2N4919 3–34
D41D7 2N4919 3–34
D41D8 2N4919 3–34
D41E1 2N4918 3–34
D41E5 2N4919 3–34
D41E7 2N4920 3–34
D41K1 MJE700 3–612
D41K2 MJE700 3–612
D41K3 MJE700 3–612
D41K4 MJE700 3–612
D42C1 MJE181 3–589
D42C2 MJE181 3–589
D42C3 MJE181 3–589
D42C4 MJE171 3–589
D42C5 MJE171 3–589
D42C6 MJE171 3–589
D42C7 MJE171 3–589
D42C8 MJE171 3–589
D42C9 MJE171 3–589
D43C1 MJE181 3–589
D43C2 MJE181 3–589
D43C3 MJE181 3–589
D43C4 MJE171 3–589
D43C5 MJE171 3–589
D43C6 MJE171 3–589
D43C7 MJE171 3–589
D43C8 MJE171 3–589
D43C9 MJE171 3–589
D44D1 TIP101 3–891
D44D2 TIP101 3–891
D44D3 2N6044 3–89
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Index and Cross Reference
1–20 Motorola Bipolar Power Transistor Device Data
INDEX AND CROSS REFERENCE (continued)
D44D4 2N6044 3–89
D44D5 2N6044 3–89
D44D6 2N6044 3–89
D44H1 D44H8 3–411
D44H10 D44H10 3–411
D44H11 D44H11 3–411
D44H2 D44H8 3–411
D44H4 D44H8 3–411
D44H5 D44H8 3–411
D44H7 D44H8 3–411
D44H8 D44H8 3–411
D44R1 TIP47 3–887
D44R2 TIP47 3–887
D44R3 TIP48 3–887
D44R4 TIP48 3–887
D44R5 TIP47 3–887
D44R6 TIP48 3–887
D44TD3 MJE16002 3–688
D44TD4 MJE16002 3–688
D44TD5 MJE16002 3–688
D44TE3 MJE16002 3–688
D44TE4 MJE16002 3–688
D44TE5 MJE16002 3–688
D44VH1 D44VH10 3–413
D44VH10 D44VH10 3–413
D44VH4 D44VH10 3–413
D44VH7 D44VH10 3–413
D45C1 D45C12 3–415
D45C10 D45C12 3–415
D45C11 D45C12 3–415
D45C12 D45C12 3–415
D45C2 D45C12 3–415
D45C3 D45C12 3–415
D45C4 D45C12 3–415
D45C5 D45C12 3–415
D45C6 D45C12 3–415
D45C7 D45C12 3–415
D45C8 D45C12 3–415
D45C9 D45C12 3–415
D45E1 TIP125 3–900
D45E2 TIP126 3–900
D45E3 TIP126 3–900
D45H1 D45H11 3–411
D45H10 D45H10 3–411
D45H11 D45H11 3–411
D45H12 D45H11 3–411
D45H2 D45H8 3–411
D45H4 D45H8 3–411
D45H5 D45H8 3–411
D45H7 D45H8 3–411
D45H8 D45H8 3–411
D45H9 D45H11 3–411
D45VH1 D45VH10 3–413
D45VH10 D45VH10 3–413
D45VH4 D45VH10 3–413
D45VH7 D45VH10 3–413
D56W1 BU208A 3–226
D56W2 BU208A 3–226
D56W3 BU208A 3–226
D56W4 BU208A 3–226
D64VP4 MJ16010 3–512
D64VP5 MJ16010 3–512
D72F5T1 MJD44H11–1 3–550
D72F5T2 MJD44H11 3–550
D72FYD MJD6039 3–584
D72FYD1 MJD6039–1 3–584
D72K1.5D1 MJD6039–1 3–584
D72K1.5D2 MJD6039 3–584
D72K3D1 MJD6039–1 3–584
D72K3D2 MJD6039 3–584
D73F5T1 MJD44H11–1 3–550
D73F5T2 MJD44H11 3–550
D73FY4D MJD6039 3–584
D73FY4D1 MJD6039–1 3–584
D73K3D1 MJD6039–1 3–584
D73K3D2 MJD6039 3–584
DTS1010 2N6056 3–97
DTS1020 MJ3001 3–425
DTS401 BUX48A 3–401
DTS402 BUX48A 3–401
DTS4026 MJ10012 3–457
DTS4039 MJ10000 3–433
DTS4040 MJ10000 3–433
DTS4041 MJ10000 3–433
DTS4045 MJ10000 3–433
DTS4059 MJ10000 3–433
DTS4061 MJ10000 3–433
DTS4066 MJ10000 3–433
DTS4067 MJ10000 3–433
DTS4074 MJ10005 3–439
DTS4075 MJ10005 3–439
DTS410 MJ410 3–417
DTS411 MJ423 3–419
DTS413 MJ413 3–419
DTS423 MJ423 3–419
DTS425 BUX48A 3–401
DTS431 MJ423 3–419
DTS660 2N6233
DTS663 2N6235
DTS665 2N6235
DTS701 BU208A 3–226
DTS702 BU208A 3–226
DTS712 BU208A 3–226
DTS714 BU208A 3–226
DTS801 BU208A 3–226
DTS802 BU208A 3–226
DTS804 BU208A 3–226
DTS812 BU208A 3–226
DTS814 BU208A 3–226
FT2955 MJE2955T 3–628
FT3055 MJE3055T 3–628
FT317 MJE15028 3–684
FT317A MJE15028 3–684
FT317B MJE15030 3–684
FT401B BUX48A 3–401
FT402 BUX48A 3–401
FT410 MJ410 3–417
FT411 MJ423 3–419
FT413 MJ413 3–419
FT417 MJE15029 3–684
FT417A MJE15029 3–684
FT417B MJE15031 3–684
FT423 MJ423 3–419
FT431 MJ423 3–419
FT47 TIP47 3–887
FT48 TIP48 3–887
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1–21
Index and Cross Reference
Motorola Bipolar Power Transistor Device Data
INDEX AND CROSS REFERENCE (continued)
FT49 TIP49 3–887
FT50 TIP50 3–887
GE5060 MJ10000 3–433
GE5061 MJ10000 3–433
GE6060 MJ10015 3–461
GE6061 MJ10015 3–461
GE6062 MJ10015 3–461
GE6251 MJ10005 3–439
GE6252 MJ10005 3–439
GE6253 MJ10005 3–439
IR1000 MJ1000 3–423
IR1001 MJ1001 3–423
IR1010 2N6056 3–97
IR1020 MJ3001 3–425
IR2500 MJ2501 3–425
IR2501 MJ2501 3–425
IR3000 MJ3001 3–425
IR3001 MJ3001 3–425
IR3771 2N3771 3–17
IR3772 2N3772 3–17
IR3777 2N3773 3–21
IR401 BUX48A 3–401
IR402 BUX48A 3–401
IR4039 MJ10000 3–433
IR4040 MJ10000 3–433
IR4041 MJ10000 3–433
IR4045 MJ10000 3–433
IR4050 MJ10000 3–433
IR4055 MJ10000 3–433
IR4059 MJ10000 3–433
IR4061 MJ10000 3–433
IR410 MJ410 3–417
IR411 MJ423 3–419
IR413 MJ413 3–419
IR423 MJ423 3–419
IR425 BUX48A 3–401
IR431 MJ423 3–419
IR4502 MJ4502 3–431
IR5000 MJ10000 3–433
IR5001 MJ10000 3–433
IR5060 MJ10000 3–433
IR5061 MJ10000 3–433
IR515 BUV23 3–388
IR516 BUV23 3–388
IR517 2N6251 3–104
IR518 2N6547 3–140
IR519 2N6547 3–140
IR5252 MJ10007 3–445
IR5261 MJ10007 3–445
IR6000 MJ10005 3–439
IR6001 MJ10005 3–439
IR6002 MJ10005 3–439
IR6060 MJ10005 3–439
IR6061 MJ10005 3–439
IR6062 MJ10005 3–439
IR6251 MJ10007 3–445
IR6252 MJ10007 3–445
IR6302 2N5631 3–59
IR640 MJ3001 3–425
IR641 MJ3001 3–425
IR642 2N6578 3–144
IR645 MJ2501 3–425
IR646 MJ2501 3–425
IR647 2N6052 3–93
IR660 MJ410 3–417
IR663 MJ423 3–419
IR665 BU208A 3–226
IR701 BU208A 3–226
IR801 BU208A 3–226
IR802 MJ802 3–421
KDT410 MJ410 3–417
KDT411 MJ423 3–419
KDT413 MJ413 3–419
KDT423 MJ423 3–419
KDT431 MJ423 3–419
KP3946 2N6274 3–108
KP3948 2N6274 3–108
KSA1010 MJE15029 3–684
KSA1220A MJE350 3–606
KSA614 TIP42B 3–883
KSA940 MJE15031 3–684
KSB546 MJE15031 3–684
KSB596 TIP32B 3–873
KSB601 BDX34C 3–217
KSB707 D45H11 3–411
KSB744 MJE171 3–589
KSB744A MJE171 3–589
KSB772 MJE171 3–589
KSB794 MJE703 3–612
KSB795 MJE703 3–612
KSB834 TIP32B 3–873
KSC1507 MJE2360T 3–626
KSC1520 MJE3439 3–630
KSC1520A MJE2360T 3–626
KSC2073 MJE15030 3–684
KSC2233 TIP41C 3–883
KSC2334 MJE15028 3–684
KSC2335 MJE13007 3–667
KSC2517 TIP41C 3–883
KSC2688 MJE3439 3–630
KSC2690 MJE340 3–602
KSC2690A MJE340 3–602
KSC2752 2N5657 3–63
KSD288 TIP41B 3–883
KSD362 D44H11 3–411
KSD363 MJE15028 3–684
KSD401 MJE15030 3–684
KSD526 TIP31B 3–873
KSD560 BDX33C 3–217
KSD568 D44H11 3–411
KSD569 D44H11 3–411
KSD708 D45H11 3–411
KSD73 D44H8 3–411
KSD794 MJE181 3–589
KSD794A MJE181 3–589
KSD818 MJW16018 3–520
KSD819 MJW16018 3–520
KSD820 MJW16018 3–520
KSD821 MJW16018 3–520
KSD868 MJW16018 3–520
KSD869 MJW16018 3–520
KSD870 MJW16018 3–520
KSD871 MJW16018 3–520
KSD880 TIP31B 3–873
KSD882 MJE181 3–589
KSD985 MJE803 3–612
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Index and Cross Reference
1–22 Motorola Bipolar Power Transistor Device Data
INDEX AND CROSS REFERENCE (continued)
KSD986 MJE803 3–612
MDS1678 MJE181 3–589
MDS20 2N5657 3–63
MDS21 2N5657 3–63
MDS26 MJE181 3–589
MDS27 MJE181 3–589
MDS60 MJE350 3–606
MDS73 MJE171 3–589
MDS74 MJE172 3–589
MDS75 MJE253 3–596
MDS76 MJE181 3–589
MDS77 MJE171 3–589
MJ1000 MJ1001 3–423
MJ10000 MJ10000 3–433
MJ10002 MJ10007 3–445
MJ10003 MJ10007 3–445
MJ10004 MJ10005 3–439
MJ10005 MJ10005 3–439
MJ10006 MJ10007 3–445
MJ10007 MJ10007 3–445
MJ10009 MJ10009 3–451
MJ1001 MJ1001 3–423
MJ10012 MJ10012 3–457
MJ10015 MJ10015 3–461
MJ10016 MJ10016 3–461
MJ10020 MJ10020 3–466
MJ10021 MJ10021 3–466
MJ10022 MJ10022 3–472
MJ10023 MJ10023 3–472
MJ105 BU208A 3–226
MJ11011 MJ11013 3–478
MJ11012 MJ11014 3–478
MJ11013 MJ11013 3–478
MJ11014 MJ11014 3–478
MJ11015 MJ11015 3–478
MJ11016 MJ11016 3–478
MJ11017 MJ11017 3–481
MJ11018 MJ11018 3–481
MJ11021 MJ11021 3–481
MJ11022 MJ11022 3–481
MJ11028 MJ11030 3–485
MJ11029 MJ11031 3–485
MJ11030 MJ11030 3–485
MJ11031 MJ11031 3–485
MJ11032 MJ11032 3–485
MJ11033 MJ11033 3–485
MJ12002 BU208A 3–226
MJ12003 BU208A 3–226
MJ12004 BU208A 3–226
MJ12005 MJ16018 3–520
MJ12022 MJ16012 3–512
MJ13010 2N6547 3–140
MJ13018 BUV23 3–388
MJ13019 BUV23 3–388
MJ1302A MJ1302A 3–427
MJ13080 MJE16106 3–696
MJ13090 MJ16110 3–529
MJ13091 MJ16010 3–512
MJ13330 BUV23 3–388
MJ13331 BUV23 3–388
MJ13332 MJ13333 3–487
MJ13333 MJ13333 3–487
MJ14000 MJ14002 3–493
MJ14001 MJ14003 3–493
MJ14002 MJ14002 3–493
MJ14003 MJ14003 3–493
MJ15001 MJ15001 3–497
MJ15002 MJ15002 3–497
MJ15003 MJ15003 3–500
MJ15004 MJ15004 3–500
MJ15011 MJ15011 3–502
MJ15012 MJ15012 3–502
MJ15015 MJ15015 3–5
MJ15016 MJ15016 3–5
MJ15018 MJ15020 3–504
MJ15019 MJ15021 3–504
MJ15020 MJ15020 3–504
MJ15021 MJ15021 3–504
MJ15022 MJ15024 3–506
MJ15023 MJ15025 3–509
MJ15024 MJ15024 3–506
MJ15025 MJ15025 3–509
MJ15026 MJ15024 3–506
MJ15027 MJ15025 3–509
MJ16008 MJ16010 3–512
MJ16010 MJ16010 3–512
MJ16012 MJ16012 3–512
MJ16014 MJ16018 3–520
MJ16016 MJ16018 3–520
MJ16018 MJ16018 3–520
MJ16020 MJ16020 3–526
MJ16022 MJ16022 3–526
MJ16110 MJ16110 3–529
MJ205 BU208A 3–226
MJ21193 MJ21193 3–537
MJ21194 MJ21194 3–537
MJ2267 MJ15016 3–5
MJ2268 MJ2955 3–2
MJ2300 MJE270 3–600
MJ2305 MJE271 3–600
MJ2500 MJ2501 3–425
MJ2501 MJ2501 3–425
MJ2801 2N3055 3–2
MJ2802 2N5882 3–77
MJ2840 2N5878 3–74
MJ2841 2N5878 3–74
MJ2901 MJ15016 3–5
MJ2955 MJ2955 3–2
MJ2955A MJ2955A 3–5
MJ3000 MJ3001 3–425
MJ3001 MJ3001 3–425
MJ3029 BUX48A 3–401
MJ3030 BUX48A 3–401
MJ3042 MJ10012 3–457
MJ3055 2N3055 3–2
MJ3055A 2N3055A 3–5
MJ3237 MJE15031 3–684
MJ3238 MJE15031 3–684
MJ3247 MJE15030 3–684
MJ3248 MJE15030 3–684
MJ3281A MJ3281A 3–427
MJ4030 MJ11013 3–478
MJ4031 MJ11013 3–478
MJ4032 MJ11015 3–478
MJ4033 MJ11014 3–478
MJ4034 MJ11014 3–478
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1–23
Index and Cross Reference
Motorola Bipolar Power Transistor Device Data
INDEX AND CROSS REFERENCE (continued)
MJ4035 MJ11016 3–478
MJ410 MJ410 3–417
MJ411 MJ423 3–419
MJ413 MJ413 3–419
MJ423 MJ423 3–419
MJ4237 MJ15012 3–502
MJ4238 MJ15012 3–502
MJ4247 MJ15011 3–502
MJ4248 MJ15011 3–502
MJ425 BUX48A 3–401
MJ431 MJ423 3–419
MJ4360 MJE13002 3–655
MJ4361 MJE13003 3–655
MJ4380 MJE13005 3–661
MJ4381 MJE13005 3–661
MJ4400 MJE13005 3–661
MJ4401 MJE13005 3–661
MJ4502 MJ4502 3–431
MJ480 2N3055 3–2
MJ481 2N3055 3–2
MJ490 2N3792 3–25
MJ491 2N3792 3–25
MJ701 BU208A 3–226
MJ702 BU208A 3–226
MJ704 BU208A 3–226
MJ721 BU208A 3–226
MJ723 BU208A 3–226
MJ802 MJ802 3–421
MJ804 BU208A 3–226
MJ8500 BU208A 3–226
MJ8501 BU208A 3–226
MJ8502 BU208A 3–226
MJ8503 BU208A 3–226
MJ8504 MJ16018 3–520
MJ8505 MJ16018 3–520
MJD112 MJD112 3–558
MJD112–1 MJD112–1 3–558
MJD117 MJD117 3–558
MJD117–1 MJD117–1 3–558
MJD117RL MJD117T4 3–558
MJD122 MJD122 3–563
MJD122–1 MJD122–1 3–563
MJD127 MJD127 3–563
MJD127–1 MJD127–1 3–563
MJD127RL MJD127T4 3–563
MJD200 MJD200 3–569
MJD200–1 MJD200–1 3–569
MJD210 MJD210 3–569
MJD210–1 MJD210–1 3–569
MJD210RL MJD210T4 3–569
MJD243 MJD243 3–573
MJD243–1 MJD243–1 3–573
MJD253 MJD253
MJD253–1 MJD253–1
MJD29 MJD31 3–542
MJD29–1 MJD31–1 3–542
MJD2955 MJD2955 3–580
MJD2955–1 MJD2955–1 3–580
MJD2955RL MJD2955T4 3–580
MJD29C MJD31C 3–542
MJD29C1 MJD31C1 3–542
MJD30 MJD32 3–542
MJD30–1 MJD32–1 3–542
MJD3055 MJD3055 3–580
MJD3055–1 MJD3055–1 3–580
MJD30C MJD32C 3–542
MJD30C1 MJD32C1 3–542
MJD31 MJD31 3–542
MJD31–1 MJD31–1 3–542
MJD31C MJD31C 3–542
MJD31C1 MJD31C1 3–542
MJD32 MJD32 3–542
MJD32–1 MJD32–1 3–542
MJD32C MJD32C 3–542
MJD32C1 MJD32C1 3–542
MJD32CRL MJD32CT4 3–542
MJD32RL MJD32RL
MJD340 MJD340 3–577
MJD340–1 MJD340–1 3–577
MJD350 MJD350 3–577
MJD350–1 MJD350–1 3–577
MJD350RL MJD350T4 3–577
MJD41C MJD41C 3–546
MJD41C1 MJD41C1 3–546
MJD42C MJD42C 3–546
MJD42C–1 MJD42C–1 3–546
MJD42CRL MJD42CT4 3–546
MJD44H11 MJD44H11 3–550
MJD44H11–1 MJD44H11–1 3–550
MJD45H11 MJD45H11 3–550
MJD45H11–1 MJD45H11–1 3–550
MJD45H11RL MJD45H11T4 3–550
MJD47 MJD47 3–554
MJD47–1 MJD47–1 3–554
MJD50 MJD50 3–554
MJD50–1 MJD50–1 3–554
MJD6036 MJD6036 3–584
MJD6036–1 MJD6036–1 3–584
MJD6036RL MJD6036T4 3–584
MJD6039 MJD6039 3–584
MJD6039–1 MJD6039–1 3–584
MJE101 MJE2955T 3–628
MJE102 MJE2955T 3–628
MJE103 MJE2955T 3–628
MJE104 MJE2955T 3–628
MJE105 TIP42B 3–883
MJE1090 TIP106 3–891
MJE1091 TIP107 3–891
MJE1092 TIP106 3–891
MJE1093 TIP107 3–891
MJE1100 TIP101 3–891
MJE1101 TIP101 3–891
MJE1102 TIP102 3–891
MJE1103 TIP102 3–891
MJE1123 MJE1123 3–616
MJE12007 MJE1320 3–620
MJE1290 2N6491 3–132
MJE1291 2N6491 3–132
MJE13002 MJE13002 3–655
MJE13003 MJE13003 3–655
MJE13004 MJE13005 3–661
MJE13005 MJE13005 3–661
MJE13006 MJE13007 3–667
MJE13007 MJE13007 3–667
MJE13008 MJE13009 3–676
MJE13009 MJE13009 3–676
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Index and Cross Reference
1–24 Motorola Bipolar Power Transistor Device Data
INDEX AND CROSS REFERENCE (continued)
MJE13070 MJE16002 3–688
MJE13071 MJE16002 3–688
MJE1320 MJE1320 3–620
MJE15020 MJE13007 3–667
MJE15028 MJE15028 3–684
MJE15029 MJE15029 3–684
MJE15030 MJE15030 3–684
MJE15031 MJE15031 3–684
MJE15032 MJE15032
MJE15033 MJE15033
MJE16002 MJE16002 3–688
MJE16004 MJE16004 3–688
MJE16032 MJW16018 3–520
MJE16034 MJW16018 3–520
MJE16080 MJW16206 3–855
MJE16081 MJW16206 3–855
MJE16106 MJE16106 3–696
MJE16204 MJE16204 3–814
MJE1660 2N6487 3–132
MJE1661 2N6487 3–132
MJE170 MJE171 3–589
MJE171 MJE171 3–589
MJE172 MJE172 3–589
MJE180 MJE181 3–589
MJE18002 MJE18002 3–704
MJE18002D2 MJE18002D2 3–712
MJE18004 MJE18004 3–715
MJE18004D2 MJE18004D2 3–724
MJE18006 MJE18006 3–734
MJE18008 MJE18008 3–742
MJE18009 MJE18009 3–750
MJE181 MJE181 3–589
MJE182 MJE182 3–589
MJE18204 MJE18204 3–759
MJE18206 MJE18206 3–769
MJE18604D2 MJE18604D2 3–779
MJE200 MJE200 3–592
MJE201 MJE3055T 3–628
MJE2010 TIP42B 3–883
MJE2011 TIP42B 3–883
MJE202 MJE3055T 3–628
MJE2020 TIP41B 3–883
MJE2021 TIP41B 3–883
MJE203 MJE3055T 3–628
MJE204 MJE3055T 3–628
MJE205 MJE3055T 3–628
MJE2050 MJE200 3–592
MJE2055 MJE3055T 3–628
MJE205K TIP41B 3–883
MJE2090 TIP125 3–900
MJE2091 TIP125 3–900
MJE2092 TIP126 3–900
MJE2093 TIP126 3–900
MJE210 MJE210 3–592
MJE2100 TIP120 3–900
MJE2101 TIP120 3–900
MJE2102 TIP121 3–900
MJE2103 TIP121 3–900
MJE2150 MJE210 3–592
MJE2160 TIP48 3–887
MJE220 MJE181 3–589
MJE221 MJE181 3–589
MJE222 MJE181 3–589
MJE223 MJE182 3–589
MJE224 MJE182 3–589
MJE225 MJE182 3–589
MJE230 MJE171 3–589
MJE231 MJE171 3–589
MJE232 MJE171 3–589
MJE233 MJE172 3–589
MJE234 MJE172 3–589
MJE235 MJE172 3–589
MJE2360 MJE2360T 3–626
MJE2360T MJE2360T 3–626
MJE2361 MJE2361T 3–626
MJE2361T MJE2361T 3–626
MJE2370 TIP32B 3–873
MJE2371 TIP32B 3–873
MJE242 MJE243 3–596
MJE243 MJE243 3–596
MJE244 MJE243 3–596
MJE2480 TIP31B 3–873
MJE2481 TIP31B 3–873
MJE2482 TIP31B 3–873
MJE2483 TIP31B 3–873
MJE2490 TIP32B 3–873
MJE2491 TIP32B 3–873
MJE252 MJE253 3–596
MJE2520 TIP31B 3–873
MJE2521 TIP31B 3–873
MJE2522 TIP31B 3–873
MJE2523 TIP31B 3–873
MJE253 MJE253 3–596
MJE254 MJE253 3–596
MJE270 MJE253 3–596
MJE271 MJE271 3–600
MJE2801 2N6107 3–101
MJE2801K MJE3055T 3–628
MJE2801T MJE3055T 3–628
MJE29 TIP31B 3–873
MJE2901 MJE2955T 3–628
MJE2901K MJE2955T 3–628
MJE2901T MJE2955T 3–628
MJE2955 MJE2955T 3–628
MJE2955K MJE2955T 3–628
MJE2955T MJE2955T 3–628
MJE29A TIP31B 3–873
MJE29B TIP31B 3–873
MJE29C TIP31C 3–873
MJE30 TIP32B 3–873
MJE3055 2N6107 3–101
MJE3055K MJE3055T 3–628
MJE3055T MJE3055T 3–628
MJE30A TIP32B 3–873
MJE30B TIP32B 3–873
MJE30C TIP32C 3–873
MJE31 TIP31B 3–873
MJE31A TIP31B 3–873
MJE31B TIP31B 3–873
MJE31C TIP31C 3–873
MJE32 TIP32B 3–873
MJE32A TIP32B 3–873
MJE32B TIP32B 3–873
MJE32C TIP32C 3–873
MJE33 TIP41B 3–883
MJE3300 2N6038 3–85
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1–25
Index and Cross Reference
Motorola Bipolar Power Transistor Device Data
INDEX AND CROSS REFERENCE (continued)
MJE3301 2N6038 3–85
MJE3302 2N6039 3–85
MJE3310 2N6035 3–85
MJE3311 2N6035 3–85
MJE3312 2N6036 3–85
MJE3370 MJE371 3–608
MJE3371 2N5194 3–49
MJE33A TIP41B 3–883
MJE33B TIP41B 3–883
MJE33C TIP41C 3–883
MJE34 TIP42B 3–883
MJE340 MJE340 3–602
MJE340K TIP48 3–887
MJE341 MJE341 3–604
MJE341K TIP47 3–887
MJE3439 MJE3439 3–630
MJE344 MJE344 3–604
MJE3440 MJE3439 3–630
MJE344K TIP47 3–887
MJE345 MJE3439 3–630
MJE34A TIP42B 3–883
MJE34B TIP42B 3–883
MJE34C TIP42C 3–883
MJE350 MJE350 3–606
MJE3520 MJE521 3–610
MJE3521 2N5191 3–44
MJE370 MJE371 3–608
MJE370K TIP32B 3–873
MJE371 MJE371 3–608
MJE371K TIP32B 3–873
MJE3738 TIP47 3–887
MJE3739 TIP48 3–887
MJE41 TIP41B 3–883
MJE41A TIP41B 3–883
MJE41B TIP41B 3–883
MJE41C TIP41C 3–883
MJE42 TIP42B 3–883
MJE42A TIP42B 3–883
MJE42B TIP42B 3–883
MJE42C TIP42C 3–883
MJE4340 MJE4342 3–632
MJE4341 MJE4342 3–632
MJE4342 MJE4342 3–632
MJE4343 MJE4343 3–632
MJE4350 MJE4352 3–632
MJE4351 MJE4352 3–632
MJE4352 MJE4352 3–632
MJE4353 MJE4353 3–632
MJE47 TIP47 3–887
MJE48 TIP48 3–887
MJE482 2N5191 3–44
MJE483 2N5191 3–44
MJE484 2N5192 3–44
MJE488 2N5191 3–44
MJE49 TIP49 3–887
MJE4918 TIP32B 3–873
MJE4919 TIP32B 3–873
MJE492 2N5194 3–49
MJE4920 TIP32B 3–873
MJE4921 TIP31B 3–873
MJE4922 TIP31B 3–873
MJE4923 TIP31B 3–873
MJE493 2N5194 3–49
MJE494 2N5195 3–49
MJE51 2N6497 3–136
MJE5170 MJE15031 3–684
MJE5171 MJE15031 3–684
MJE5172 MJE15031 3–684
MJE5180 MJE15030 3–684
MJE5181 MJE15030 3–684
MJE5182 MJE15030 3–684
MJE5190 TIP31B 3–873
MJE5191 TIP31B 3–873
MJE5192 TIP31B 3–873
MJE5193 TIP32B 3–873
MJE5194 TIP32B 3–873
MJE5195 TIP32C 3–873
MJE51T 2N6497 3–136
MJE52 2N6498 3–136
MJE520 MJE521 3–610
MJE520K TIP31B 3–873
MJE521 MJE521 3–610
MJE521K TIP31B 3–873
MJE5220 D44H10 3–411
MJE5221 D44H10 3–411
MJE5230 D45H10 3–411
MJE5231 D45H10 3–411
MJE52T 2N6498 3–136
MJE53 MJE13005 3–661
MJE53T MJE13005 3–661
MJE5655 TIP47 3–887
MJE5656 TIP48 3–887
MJE5657 TIP49 3–887
MJE5730 MJE5730 3–636
MJE5731 MJE5731 3–636
MJE5731A MJE5731A 3–636
MJE5732 MJE5731A 3–636
MJE5740 MJE5742 3–640
MJE5741 MJE5742 3–640
MJE5742 MJE5742 3–640
MJE5850 MJE5851 3–644
MJE5851 MJE5851 3–644
MJE5852 MJE5852 3–644
MJE5960 2N6490 3–132
MJE5974 TIP42B 3–883
MJE5975 TIP42B 3–883
MJE5976 TIP42B 3–883
MJE5977 TIP41B 3–883
MJE5978 TIP41B 3–883
MJE5979 TIP41B 3–883
MJE5980 2N6490 3–132
MJE5981 2N6490 3–132
MJE5982 2N6491 3–132
MJE5983 2N6487 3–132
MJE5984 2N6487 3–132
MJE5985 2N6488 3–132
MJE6040 2N6041 3–89
MJE6041 2N6041 3–89
MJE6042 2N6041 3–89
MJE6043 2N6044 3–89
MJE6044 2N6044 3–89
MJE6045 2N6045 3–89
MJE700 MJE700 3–612
MJE700T MJE700T 3–612
MJE701 MJE703 3–612
MJE701T MJE703 3–612
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Index and Cross Reference
1–26 Motorola Bipolar Power Transistor Device Data
INDEX AND CROSS REFERENCE (continued)
MJE702 MJE702 3–612
MJE702T TIP126 3–900
MJE703 MJE703 3–612
MJE703T TIP126 3–900
MJE710 2N4918 3–34
MJE711 2N4919 3–34
MJE712 2N4920 3–34
MJE720 2N4921 3–38
MJE721 2N4923 3–38
MJE722 2N4923 3–38
MJE800 MJE800 3–612
MJE800T MJE800T 3–612
MJE801 MJE803 3–612
MJE801T MJE803 3–612
MJE802 MJE802 3–612
MJE802T TIP121 3–900
MJE803 MJE803 3–612
MJE803T TIP121 3–900
MJE8500 MJE1320 3–620
MJE8501 MJE1320 3–620
MJE8503A MJE8503A 3–650
MJE9780 MJE9780 3–653
MJF102 MJF6388 3–802
MJF107 MJF6668 3–802
MJF122 MJF122 3–788
MJF127 MJF127 3–788
MJF13007 MJF13007 3–667
MJF13009 MJF13009
MJF15030 MJF15030 3–809
MJF15031 MJF15031 3–809
MJF18002 MJF18002 3–704
MJF18004 MJF18004 3–715
MJF18006 MJF18006 3–734
MJF18008 MJF18008 3–742
MJF18009 MJF18009 3–750
MJF18204 MJF18204 3–759
MJF18206 MJF18206 3–769
MJF2955 MJF2955 3–794
MJF3055 MJF3055 3–794
MJF31C MJF31C
MJF32C MJF32C
MJF44H11 MJF44H11
MJF45H11 MJF45H11
MJF47 MJF47 3–783
MJF6107 MJF6107 3–797
MJF6284 MJH6284 3–821
MJF6287 MJH6287 3–821
MJF6668 MJF6668 3–802
MJH10012 MJH10012 3–457
MJH11017 MJH11017 3–825
MJH11018 MJH11018 3–825
MJH11019 MJH11019 3–825
MJH11020 MJH11020 3–825
MJH11021 MJH11021 3–825
MJH11022 MJH11022 3–825
MJH16006A MJH16006A 3–830
MJH16010 MJW16010 3–512
MJH16010A MJW16010A 3–847
MJH16012 MJW16010 3–512
MJH16018 MJW16018 3–520
MJH16032 MJW16018 3–520
MJH16034 MJW16018 3–520
MJH16106 MJE16106 3–696
MJH16110 MJW16110 3–529
MJH16206 MJW16206 3–855
MJH16212 MJW16212 3–864
MJH6282 MJH6283 3–821
MJH6283 MJH6283 3–821
MJH6285 MJH6286 3–821
MJH6286 MJH6286 3–821
MJL1302A MJL1302A 3–851
MJL21193 MJL21193 3–838
MJL21194 MJL21194 3–838
MJL3281A MJL3281A 3–843
MJW16012 MJW16012 3–512
MJW16018 MJW16018 3–520
MJW16206 MJW16206 3–855
MPC900 2N6052 3–93
NSD102 2N4923 3–38
NSD103 2N4923 3–38
NSD104 2N4923 3–38
NSD105 2N4923 3–38
NSD106 2N4923 3–38
NSD131 MJE340 3–602
NSD132 MJE340 3–602
NSD133 MJE340 3–602
NSD134 MJE340 3–602
NSD135 MJE340 3–602
NSD151 MJE800 3–612
NSD152 MJE800 3–612
NSD202 2N4919 3–34
NSD203 2N4919 3–34
NSD204 2N4919 3–34
NSD205 2N4919 3–34
NSD206 2N4919 3–34
NSD3439 MJE3439 3–630
NSD3440 MJE3439 3–630
NSE170 MJE171 3–589
NSE171 MJE171 3–589
NSE180 MJE181 3–589
NSE181 MJE181 3–589
NSP105 TIP42B 3–883
NSP2010 TIP42B 3–883
NSP2011 TIP42B 3–883
NSP2021 TIP41B 3–883
NSP205 TIP41B 3–883
NSP2090 TIP125 3–900
NSP2091 TIP125 3–900
NSP2092 TIP126 3–900
NSP2093 TIP126 3–900
NSP2100 TIP120 3–900
NSP2101 TIP120 3–900
NSP2102 TIP121 3–900
NSP2103 TIP121 3–900
NSP2370 TIP32B 3–873
NSP2480 TIP31B 3–873
NSP2481 TIP31B 3–873
NSP2490 TIP32B 3–873
NSP2491 TIP32B 3–873
NSP2520 TIP31B 3–873
NSP2955 MJE2955T 3–628
NSP3054 TIP31B 3–873
NSP3055 MJE3055T 3–628
NSP370 TIP32B 3–873
NSP371 TIP32B 3–873
NSP41 TIP41B 3–883
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1–27
Index and Cross Reference
Motorola Bipolar Power Transistor Device Data
INDEX AND CROSS REFERENCE (continued)
NSP41A TIP41B 3–883
NSP41B TIP41B 3–883
NSP41C TIP41C 3–883
NSP42 TIP42B 3–883
NSP42A TIP42B 3–883
NSP42B TIP42B 3–883
NSP42C TIP42C 3–883
NSP4918 TIP32B 3–873
NSP4919 TIP32B 3–873
NSP4920 TIP32B 3–873
NSP4921 TIP31B 3–873
NSP4922 TIP31B 3–873
NSP4923 TIP31B 3–873
NSP5190 TIP31B 3–873
NSP5191 TIP31B 3–873
NSP5192 TIP31B 3–873
NSP5193 TIP32B 3–873
NSP5194 TIP32B 3–873
NSP5195 TIP32C 3–873
NSP520 TIP31B 3–873
NSP521 TIP31B 3–873
NSP575 TIP31B 3–873
NSP576 TIP32B 3–873
NSP577 TIP31B 3–873
NSP578 TIP32B 3–873
NSP579 TIP31B 3–873
NSP580 TIP32B 3–873
NSP581 TIP31C 3–873
NSP582 TIP32C 3–873
NSP585 TIP31B 3–873
NSP586 TIP32B 3–873
NSP587 TIP31B 3–873
NSP588 TIP32B 3–873
NSP589 TIP31B 3–873
NSP590 TIP32B 3–873
NSP595 TIP31B 3–873
NSP596 TIP32B 3–873
NSP597 TIP31B 3–873
NSP5974 TIP42B 3–883
NSP5975 TIP42B 3–883
NSP5976 TIP42B 3–883
NSP5977 TIP41B 3–883
NSP5978 TIP41B 3–883
NSP5979 TIP41B 3–883
NSP598 TIP32B 3–873
NSP5980 2N6490 3–132
NSP5981 2N6490 3–132
NSP5982 2N6491 3–132
NSP5983 2N6487 3–132
NSP5984 2N6487 3–132
NSP5985 2N6488 3–132
NSP599 TIP31B 3–873
NSP600 TIP32B 3–873
NSP695 TIP120 3–900
NSP695A TIP101 3–891
NSP696 TIP125 3–900
NSP696A TIP106 3–891
NSP697 TIP120 3–900
NSP697A TIP101 3–891
NSP698 TIP125 3–900
NSP698A TIP106 3–891
NSP699 TIP121 3–900
NSP699A TIP101 3–891
NSP700 TIP126 3–900
NSP700A TIP106 3–891
NSP701 TIP122 3–900
NSP702 TIP127 3–900
PMD10K–100 2N6059 3–93
PMD10K–40 2N6059 3–93
PMD10K–60 2N6059 3–93
PMD10K–80 2N6059 3–93
PMD11K–100 2N6052 3–93
PMD11K–40 2N6052 3–93
PMD11K–60 2N6052 3–93
PMD11K–80 2N6052 3–93
PMD12K–100 2N6059 3–93
PMD12K–40 MJ1000 3–423
PMD12K–60 MJ1000 3–423
PMD12K–80 MJ1001 3–423
PMD13K–100 2N6052 3–93
PMD1600K 2N6283 3–112
PMD1601K 2N6283 3–112
PMD1602K 2N6283 3–112
PMD1603K 2N6284 3–112
PMD16K–100 2N6284 3–112
PMD16K–40 2N6283 3–112
PMD16K–60 2N6283 3–112
PMD16K–80 2N6283 3–112
PMD1700K 2N6286 3–112
PMD1701K 2N6286 3–112
PMD1702K 2N6286 3–112
PMD1703K 2N6287 3–112
PMD17K–100 2N6287 3–112
PMD17K–40 2N6286 3–112
PMD17K–60 2N6284 3–112
PMD17K–80 2N6286 3–112
PMD20K–120 2N6578 3–144
PMD25K–120 2N6578 3–144
RCA1000 MJ1000 3–423
RCA1001 MJ1001 3–423
RCA120 TIP120 3–900
RCA121 TIP121 3–900
RCA122 TIP122 3–900
RCA125 TIP125 3–900
RCA126 TIP126 3–900
RCA1B01 2N5878 3–74
RCA1B04 MJ15024 3–506
RCA1B05 MJ15024 3–506
RCA1B06 MJ15003 3–500
RCA1B09 MJ15024 3–506
RCA1C03 MJE15028 3–684
RCA1C04 MJE15029 3–684
RCA1C05 TIP41B 3–883
RCA1C06 TIP42C 3–883
RCA1C07 MJE3055T 3–628
RCA1C08 MJE2955T 3–628
RCA1C09 MJE3055T 3–628
RCA1C10 2N6292 3–101
RCA1C11 2N6107 3–101
RCA1C12 MJE15028 3–684
RCA1C13 MJE15029 3–684
RCA1C14 2N6290
RCA1C15 2N6388 3–124
RCA1C16 2N6668 3–147
RCA29 TIP31B 3–873
RCA29A TIP31B 3–873
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Index and Cross Reference
1–28 Motorola Bipolar Power Transistor Device Data
INDEX AND CROSS REFERENCE (continued)
RCA29B TIP31B 3–873
RCA29C TIP31C 3–873
RCA30 TIP32B 3–873
RCA3054 TIP31B 3–873
RCA3055 2N6487 3–132
RCA30A TIP32B 3–873
RCA30B TIP32B 3–873
RCA30C TIP32C 3–873
RCA31 TIP31B 3–873
RCA31A TIP31B 3–873
RCA31B TIP31B 3–873
RCA31C TIP31C 3–873
RCA32 TIP32B 3–873
RCA32A TIP32B 3–873
RCA32B TIP32B 3–873
RCA32C TIP32C 3–873
RCA3441 MJE15030 3–684
RCA41 TIP41B 3–883
RCA410 MJ410 3–417
RCA411 MJ423 3–419
RCA413 MJ413 3–419
RCA41A TIP41B 3–883
RCA41B TIP41B 3–883
RCA41C TIP41C 3–883
RCA42 TIP42B 3–883
RCA423 MJ423 3–419
RCA42A TIP42B 3–883
RCA42B TIP42B 3–883
RCA42C TIP42C 3–883
RCA431 MJ423 3–419
RCA6263 MJE15030 3–684
RCA8203 TIP106 3–891
RCA8203A 2N6667 3–147
RCA8203B 2N6668 3–147
RCA8350 MJ2501 3–425
RCA8766 MJ10007 3–445
RCA8766A MJ10007 3–445
RCA8766B MJ10007 3–445
RCA8766C MJ10007 3–445
RCA8766D MJ10007 3–445
RCA8766E MJ10007 3–445
RCA8767 2N6547 3–140
RCA8767A 2N6547 3–140
RCA8767B 2N6547 3–140
RCA9113 2N6547 3–140
RCA9113A 2N6547 3–140
RCA9113B 2N6547 3–140
RCP111A MJE340 3–602
RCP111B MJE340 3–602
RCP111C MJE340 3–602
RCP111D MJE340 3–602
RCP113A MJE340 3–602
RCP113B MJE340 3–602
RCP113C MJE340 3–602
RCP113D MJE340 3–602
RCP115 MJE341 3–604
RCP115B MJE340 3–602
RCP117 MJE341 3–604
RCP117B MJE340 3–602
RCP131A MJE344 3–604
RCP131B MJE344 3–604
RCP131C MJE340 3–602
RCP131D MJE340 3–602
RCP133A MJE344 3–604
RCP133B MJE344 3–604
RCP133C MJE340 3–602
RCP133D MJE340 3–602
RCP135 2N4923 3–38
RCP135B MJE340 3–602
RCP137 2N4923 3–38
RCP137B MJE340 3–602
RCS617 2N5882 3–77
RCS618 2N5880 3–77
SDM20301 2N6283 3–112
SDM20302 2N6283 3–112
SDM20303 2N6283 3–112
SDM20304 2N6286 3–112
SDM20311 2N6283 3–112
SDM20312 2N6283 3–112
SDM20313 2N6283 3–112
SDM20314 2N6286 3–112
SDM20321 2N6283 3–112
SDM20322 2N6283 3–112
SDM20323 2N6283 3–112
SDM20324 2N6286 3–112
SDM21301 2N6286 3–112
SDM21302 2N6286 3–112
SDM21303 2N6286 3–112
SDM21304 2N6287 3–112
SDM21311 2N6286 3–112
SDM21312 2N6286 3–112
SDM21313 2N6286 3–112
SDM21314 2N6287 3–112
SDM6000 MJ10012 3–457
SDM6001 MJ10012 3–457
SDM6002 MJ10012 3–457
SDM6003 MJ10012 3–457
SDN1010 2N6056 3–97
SDN1020 MJ3001 3–425
SDN4040 MJ10000 3–433
SDN4045 MJ10000 3–433
SDN6000 MJ10000 3–433
SDN6001 MJ10000 3–433
SDN6060 MJ10000 3–433
SDN6061 MJ10000 3–433
SDN6062 MJ10000 3–433
SDN6251 MJ10007 3–445
SDN6252 MJ10007 3–445
SDN6253 MJ10007 3–445
SDT1056 BUX48A 3–401
SDT1057 BUX48A 3–401
SDT1058 BUX48A 3–401
SDT1059 BUX48A 3–401
SDT1061 BUX48A 3–401
SDT1062 BUX48A 3–401
SDT1063 BUX48A 3–401
SDT1064 BUX48A 3–401
SDT13301 2N6547 3–140
SDT13302 2N6547 3–140
SDT13303 2N6547 3–140
SDT13304 MJ16010 3–512
SDT410 MJ410 3–417
SDT411 MJ423 3–419
SDT413 MJ413 3–419
SDT423 MJ423 3–419
SDT425 BUX48A 3–401
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1–29
Index and Cross Reference
Motorola Bipolar Power Transistor Device Data
INDEX AND CROSS REFERENCE (continued)
SDT431 MJ423 3–419
SDT5101 TIP41B 3–883
SDT5102 TIP41B 3–883
SDT5103 TIP41B 3–883
SDT5111 TIP42B 3–883
SDT5112 TIP42B 3–883
SDT5113 TIP42B 3–883
SDT7206 2N6341 3–117
SDT7603 2N6338 3–117
SDT7604 2N6339 3–117
SDT7605 2N6341 3–117
SDT7609 2N6338 3–117
SDT7610 2N6339 3–117
SDT7611 2N6341 3–117
SDT7612 BUV23 3–388
SDT7731 2N5882 3–77
SDT7732 2N5882 3–77
SDT7733 2N5882 3–77
SDT7734 2N5629
SDT7735 2N5631 3–59
SDT7736 2N5631 3–59
SDT9201 2N3055 3–2
SDT9202 2N5878 3–74
SDT9205 2N3055 3–2
SDT9206 2N3055 3–2
SDT9207 2N5878 3–74
SDT9208 2N5882 3–77
SDT9209 MJ15001 3–497
SDT9210 2N3055 3–2
SDT9307 2N3716 3–12
SDT9308 2N3716 3–12
SDT9309 2N3716 3–12
SDT9701 2N5303 3–54
SDT9702 2N5629
SDT9703 2N5631 3–59
SDT9704 2N5882 3–77
SDT9705 2N5629
SDT9706 2N5631 3–59
SDT9707 2N3055 3–2
SE9300 2N6387 3–124
SE9301 2N6388 3–124
SE9302 BDX33C 3–217
SE9303 MJ1000 3–423
SE9304 MJ1001 3–423
SE9306 2N6287 3–112
SE9307 2N6283 3–112
SE9308 2N6286 3–112
SE9400 2N6667 3–147
SE9401 2N6668 3–147
SE9402 BDX34C 3–217
SE9406 2N6286 3–112
SE9407 2N6286 3–112
SE9408 2N6287 3–112
SGSF564 MJ16018 3–520
SV7056 MJE340 3–602
SVT100–5C 2N5882 3–77
SVT200–10C MJ15024 3–506
SVT250–10C MJ15024 3–506
SVT300–10C MJ16110 3–529
SVT350–12 2N6547 3–140
SVT350–3 BUX48A 3–401
SVT350–5C MJE16106 3–696
SVT400–12 MJ16110 3–529
SVT400–3 BUX48A 3–401
SVT400–5C BUX48A 3–401
SVT450–3 BUX48A 3–401
SVT450–5C MJE16106 3–696
SVT6000 MJ10005 3–439
SVT6001 MJ10005 3–439
SVT6002 MJ10005 3–439
SVT6060 MJ10005 3–439
SVT6061 MJ10005 3–439
SVT6062 MJ10005 3–439
SVT6251 MJ10007 3–445
SVT6252 MJ10007 3–445
SVT6253 MJ10007 3–445
SVT6546 MJ16110 3–529
SVT6547 MJ16110 3–529
SVT7531 MJE16106 3–696
SVT7533 MJE16106 3–696
SVT7534 MJE16106 3–696
SVT7543 MJE16106 3–696
SVT7544 MJE16106 3–696
SVT7550 MJ16010 3–512
SVT7551 MJ16010 3–512
SVT7552 MJ16010 3–512
SVT7553 MJ16110 3–529
SVT7554 MJ16010 3–512
SVT7555 MJ16010 3–512
SVT7560 MJ16010 3–512
SVT7561 MJ16012 3–512
SVT7563 MJ16110 3–529
SVT7564 MJ16110 3–529
SVT7565 MJ16110 3–529
SVT7570 MJ16010 3–512
SVT7571 MJ16012 3–512
SVT7573 MJ16110 3–529
SVT7574 MJ16110 3–529
SVT7575 MJ16012 3–512
TIP100 TIP101 3–891
TIP101 TIP101 3–891
TIP102 TIP102 3–891
TIP105 TIP106 3–891
TIP106 TIP106 3–891
TIP107 TIP107 3–891
TIP110 TIP111 3–895
TIP111 TIP111 3–895
TIP112 TIP112 3–895
TIP115 TIP116 3–895
TIP116 TIP116 3–895
TIP117 TIP117 3–895
TIP120 TIP120 3–900
TIP121 TIP121 3–900
TIP122 TIP122 3–900
TIP125 TIP125 3–900
TIP126 TIP126 3–900
TIP127 TIP127 3–900
TIP140 TIP141 3–904
TIP140T TIP101 3–891
TIP141 TIP141 3–904
TIP141T TIP101 3–891
TIP142 TIP142 3–904
TIP142T TIP102 3–891
TIP145 TIP146 3–904
TIP145T TIP106 3–891
TIP146 TIP146 3–904
Industry
Part Number
Motorola
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Replacement
Motorola
Similar
Replacement Page
Number Industry
Part Number
Motorola
Nearest
Replacement
Motorola
Similar
Replacement Page
Number
Index and Cross Reference
1–30 Motorola Bipolar Power Transistor Device Data
INDEX AND CROSS REFERENCE (continued)
TIP146T TIP106 3–891
TIP147 TIP147 3–904
TIP147T TIP107 3–891
TIP150 MJE13007 3–667
TIP151 MJE13007 3–667
TIP152 MJE13007 3–667
TIP160 MJE5742 3–640
TIP161 MJE5742 3–640
TIP162 MJE5742 3–640
TIP29 TIP29C 3–871
TIP2955 TIP2955 3–908
TIP29A TIP29C 3–871
TIP29B TIP29C 3–871
TIP29C TIP29C 3–871
TIP29D MJE15030 3–684
TIP29E MJE15030 3–684
TIP29F MJE15030 3–684
TIP30 TIP30C 3–871
TIP3055 TIP3055 3–908
TIP30A TIP30C 3–871
TIP30B TIP30C 3–871
TIP30C TIP30C 3–871
TIP30D MJE15031 3–684
TIP30E MJE15031 3–684
TIP30F MJE15031 3–684
TIP31 TIP31B 3–873
TIP31A TIP31B 3–873
TIP31B TIP31B 3–873
TIP31C TIP31C 3–873
TIP31D MJE15030 3–684
TIP31E MJE15030 3–684
TIP31F MJE15030 3–684
TIP32 TIP32B 3–873
TIP32A TIP32B 3–873
TIP32B TIP32B 3–873
TIP32C TIP32C 3–873
TIP32D MJE15031 3–684
TIP32E MJE15031 3–684
TIP32F MJE15031 3–684
TIP33C TIP33C 3–877
TIP35A TIP35B 3–879
TIP35C TIP35C 3–879
TIP36A TIP36B 3–879
TIP36C TIP36C 3–879
TIP41 TIP41B 3–883
TIP41A TIP41B 3–883
TIP41B TIP41B 3–883
TIP41C TIP41C 3–883
TIP41D MJE15030 3–684
TIP41E MJE15030 3–684
TIP41F MJE15030 3–684
TIP42 TIP42B 3–883
TIP42A TIP42B 3–883
TIP42B TIP42B 3–883
TIP42C TIP42C 3–883
TIP42D MJE15031 3–684
TIP42E MJE15031 3–684
TIP42F MJE15031 3–684
TIP47 TIP47 3–887
TIP48 TIP48 3–887
TIP49 TIP49 3–887
TIP50 TIP50 3–887
TIP510 MJ15011 3–502
TIP511 MJ15011 3–502
TIP512 MJ15011 3–502
TIP513 MJ15012 3–502
TIP514 MJE15030 3–684
TIP517 2N6339 3–117
TIP518 2N6341 3–117
TIP519 MJ15012 3–502
TIP520 MJ15012 3–502
TIP523 MJ15012 3–502
TIP524 2N6497 3–136
TIP525 MJ15011 3–502
TIP526 MJ15011 3–502
TIP527 MJ15012 3–502
TIP528 MJ15012 3–502
TIP545 MJ15016 3–5
TIP546 MJ15016 3–5
TIP550 BU208A 3–226
TIP551 BU208A 3–226
TIP552 BU208A 3–226
TIP553 BU208A 3–226
TIP554 MJE16106 3–696
TIP555 MJE16106 3–696
TIP556 MJE16106 3–696
TIP562 MJ16012 3–512
TIP563 MJ16012 3–512
TIP565 MJ10009 3–451
TIP575 MJE16106 3–696
TIP575A MJE16106 3–696
TIP575B MJE16106 3–696
TIP575C MJE16106 3–696
TIP600 TIP101 3–891
TIP601 TIP101 3–891
TIP602 TIP102 3–891
TIP605 TIP106 3–891
TIP606 TIP106 3–891
TIP607 TIP107 3–891
TIP61 TIP31C 3–873
TIP61A TIP31C 3–873
TIP61B TIP31C 3–873
TIP61C TIP31C 3–873
TIP62 TIP32C 3–873
TIP620 TIP120 3–900
TIP621 TIP121 3–900
TIP622 TIP122 3–900
TIP625 TIP125 3–900
TIP626 TIP126 3–900
TIP627 TIP127 3–900
TIP62A TIP32C 3–873
TIP62B TIP32C 3–873
TIP62C TIP32C 3–873
TIP63 TIP47 3–887
TIP64 TIP48 3–887
TIP640 MJ3001 3–425
TIP641 MJ3001 3–425
TIP660 MJ10007 3–445
TIP661 MJ10007 3–445
TIP662 MJ10007 3–445
TIP665 MJ10009 3–451
TIP666 MJ10007 3–445
TIP667 MJ10007 3–445
TIP701 MJE16106 3–696
TIP73 TIP48 3–887
TIP73A 2N6487 3–132
Industry
Part Number
Motorola
Nearest
Replacement
Motorola
Similar
Replacement Page
Number Industry
Part Number
Motorola
Nearest
Replacement
Motorola
Similar
Replacement Page
Number
1–31
Index and Cross Reference
Motorola Bipolar Power Transistor Device Data
INDEX AND CROSS REFERENCE (continued)
TIP73B 2N6488 3–132
TIP74 2N6490 3–132
TIP74A 2N6490 3–132
TIP74B 2N6491 3–132
TIP75 MJE13005 3–661
TIP75A MJE13005 3–661
TIP75B MJE13005 3–661
TIP75C MJE13005 3–661
TIPL752 MJE16106 3–696
TIPL752A MJE16106 3–696
TIPL753 MJE16106 3–696
TIPL753A MJE16106 3–696
TIPL755 MJ16110 3–529
TIPL755A MJ16010 3–512
TIPL760 MJE16002 3–688
TIPL760A MJE16002 3–688