SURFACE MOUNT HIGH EFFICIENCY RECTIFIER
VOLTAGE RANGE 50 to 600 Volts CURRENT 0.5 Ampere
MAXIMUM RATINGS AND ELECTRICAL CHARACTERISTICS
Ratings at 25 oC ambient temperature unless otherwise specified.
Single phase, half wave, 60 Hz, resistive or inductive load.
For capacitive load, derate current by 20%.
05H1
THRU
05H6
SOD-123F
MAXIMUM RATINGS
(@ TA=25
OC unless otherwise noted)
Dimensions in inches and (millimeters)
.150 (3.8)
.142 (3.6)
.035 (0.90)
.028 (0.70)
.053 (1.35)
.047 (1.20)
.077 (1.95)
.069 (1.75)
.030 (0.75)
.022 (0.55)
.008 (0.20)
.114 (2.9)
.106 (2.7)
FEATURES
* Low power loss, high efficiency
* Low leakage
* Low forward voltage
* High current capability
* High speed switching
* High surge capability
* High reliability
MECHANICAL DATA
* Epoxy: Device has UL flammability classification 94V-O
* Mounting position: Any
* Weight: 0.016 gram
RATINGS
Maximum Recurrent Peak Reverse Voltage
Maximum RMS Voltage
Maximum DC Blocking Voltage
Maximum Average Forward Rectified Current at T
A
= 55
o
C
Peak Forward Surge Current 8.3 ms single half sine-wave
superimposed on rated load (JEDEC method)
Typical Junction Capacitance (Note 2)
Typical Thermal Resistance (Note 4)
Operating and Storage Temperature Range
SYMBOL
V
RRM
V
DC
I
O
I
FSM
C
J
T
J
, T
STG
V
RMS
Amps0.5
15
130
30
15
RqJA
RqJL
-55 to + 150
Amps
pF
0
C
0
C/W
UNITS
50
35
50
100
70
100
Volts
Volts
Volts
12
200
140
200
600
420
600
400
280
400
300
210
300
05H1 05H2 05H3 05H4 05H5 05H6
ELECTRICAL CHARACTERISTICS
(At TA = 25oC unless otherwise noted)
NOTES : 1. Test Conditions: IF = 0.5A, IR = -1.0A, IRR = -0.25A
2. Measured at 1 MH
4. Thermal Resistance : Mounted on PCB.
Z
and applied reverse voltage of 4.0 volts
2006-11
50
at Rated DC Blocking Voltage T
A
= 25
o
C
CHARACTERISTICS
Maximum Full Load Reverse Current
Average, Full Cycle .375” (9.5mm) lead length at T
L
= 55
o
C
Maximum Reverse Recovery Time (Note 1)
V
F
SYMBOL
I
R
trr
5.0
100
75
uAmps
uAmps
nSec
Maximum DC Reverse Current
Maximum Instantaneous Forward Voltage at 0.5A DC Volts
UNITS
1.0 1.71.3
05H1 05H2 05H3 05H4 05H5 05H6
3. “Fully ROHS compliant”, “100% Sn plating (Pb-free)”.
AMBIENT TEMPERATURE, (OC)
INSTANTANEOUS REVERSE CURRENT, (mA)
25
1.0
00
0.5
7550 175100 125 150
RATING AND CHARACTERISTICS CURVES ( 05H1 THRU 05H6 )
FIG.2 TYPICAL FORWARD CURRENT
DERATING CURVE
FIG.1 TEST CIRCUIT DIAGRAM AND REVERSE RECOVERY TIME CHARACTERISTIC
PERCENT OF RATED PEAK REVERSE VOLTAGE, (%)
AVERAGE FORWARD CURRENT, (A)
0
0.01
1.0
0.1
100
10
6020 40 80 100 120 140
FIG.3 TYPICAL REVERSE
CHARACTERISTICS
trr
+0.5A
50 W
NONINDUCTIVE
10 W
NONINDUCTIVE
0
-0.25A
-1.0A
1cm
SET TIME BASE FOR 50/100 ns/cm
NOTES:
1 Rise Time = 7ns max. Input Impedance =
1 megohm. 22pF.
2. Rise Time = 10ns max. Source Impedance =
50 ohms.
D.U.T
25 Vdc
(approx)
( - )
( - )
( + )
( + )
1
NON-
INDUCTIVE
OSCILLOSCOPE
(NOTE 1)
PULSE
GENERATOR
(NOTE 2)
Single Phase
Half Wave 60Hz
Resistive or
Inductive Load
T
A
= 25 OC
T
A
= 100 OC
T
A
= 50 OC
NUMBER OF CYCLES AT 60Hz
PEAK FORWARD SURGE CURRENT, (A)
INSTANTANEOUS FORWARD VOLTAGE, (V)
1
0
12
9
6
3
15
18
21
INSTANTANEOUS FORWARD CURRENT, (A)
0.1
0.01
0.001
1.0
10
10 2052 50 100
1.41.21.00.80.60.40 0.2 1.6 1.8
RATING AND CHARACTERISTICS CURVES ( 05H1 THRU 05H6 )
FIG.4 TYPICAL INSTANTANEOUS FORWARD
CHARACTERISTICS
FIG.5 MAXIMUM NON-REPETITIVE FORWARD
SURGE CURRENT
REVERSE VOLTAGE, (V)
JUNCTION CAPACITANCE, (pF)
4
6
40
20
10
60
200
100
0.20.1
2
10.4 21.0 4 10 20 40 100
FIG.6 TYPICAL JUNCTION CAPACITANCE
Pulse Width=300mS
1% Duty Cycle
T
J
= 25 OC
50/100/200V
300/400V
600V
8.3ms Single Half Sine-Wave
(JEDED Method)
T
J
= 25
O
C
05H1~05H5
05H6
Mounting Pad Layout
Dimensions in inches and (millimeters)
0.035MIN.
(0.90 MIN.)
0.165
0.030 MIN.
(0.75 MIN.)
(
4.19) REF
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specification herein, to make corrections, modifications, enhancements or other
changes. Rectron Inc or anyone on its behalf assumes no responsibility or liabi-
lity for any errors or inaccuracies. Data sheet specifications and its information
contained are intended to provide a product description only. "Typical" paramet-
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n and do vary in different applications and actual performance may vary over ti-
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