Maximum Ratings Tj=25unless otherwise specified
Electrical Characteristics
VDRM
Repetitive Peak Off-State Voltage
800
8
V
Symbol Item Reference Ratings Unit
ITRMSR.M.S. On-State Current
ITSM Surge On-State Current
Tc105
One cycle, 50Hz/60Hz, Peak value non-repetitive
I2tI2tfor fusing
PGM
Peak Gate Power Dissipation
PGAV
Average Gate Power Dissipation
IGM Peak Gate Current
VGM Peak Gate Voltage
A
80/88 A
32
5
A2S
W
0.5
Tj
Operating Junction Temperature
Tstg Storage Temperature
Mass
2
W
A
10 V
40〜+125
40〜+150
2 g
Symbol Item Reference Ratings
Min. Typ. Max. Unit
IDRM
Repetitive Peak Off-State Current
VTM Peak On-State Voltage
VD=VDRM, Single phase, half wave, Tj125
IT12A, Inst. measurement
I
GT1
1
2
3
4
Gate Trigger Current
I
GT1
I
GT3
I
GT3
VGD Non-Trigger Gate Voltage
VD6VRL10Ω
mA
V
mA
0.2
10
15
2
1.4
30
30
30
1.5
1.5
1.5
2.0
V
GT1
1
2
3
4
Gate Trigger Voltage
V
GT1
V
GT3
V
GT3
V
Tj125℃,VD1
2VDRM
dv
/
dtc
Critical Rate of Rise of Off-State
Voltage at Commutation
IHHolding Current
Rth Thermal Resistance
Tj125℃,di/dtc
4A/msVD=400V
Junction to case
V
V/
μs
mA
/W

1(
    

2(

3(III

4(III
10.10 0.18
0.44
0.2
0.1
0.15
0.1
0.87
0.57
0.30
0.22
φ3.83
15.00
8.60
2.98±0.44
13.5±0.8
4.23±0.5
2.54 2.54
1.27±0.13
0.85±0.1 0.45
1.27±0.12
2.48±0.45
4.5
1
2
3
1 2
2
3
1T1
2T2
3Gate
Identifying CodeT8C8
TO-220AB
Unitmm
TMG8C80
TRIAC(Through Hole / Non-isolated)
Triac TMG8C80 is designed for full wave AC control applications.
It can be used as an ON/OFF function or for phase control operation.
Typical Applications
Home Appliances : Washing Machines, Vacuum Cleaners, Rice Cookers, Micro
Wave Ovens, Hair Dryers, other control applications
Industrial Use : SMPS, Copier Machines, Motor Controls, Dimmer, SSR,
Heater Controls, Vending Machines, other control
applications
Features
IT(RMS)=8A
High Surge Current
Low Voltage Drop
Lead-Free Package
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TMG8C80
GateCharacteristics
GateCurrent(mA)
0.1
1
0
0
0 0 0
VGM(10V)PGM(5W)
VGD(0.2V)
IGM(2A)
PG(AV)(0.5W)
25
1GT
1GT
1GT
GateVoltage(V)
On-StateVoltage(V)
On-StatePeakCurrent(A)
0.5 1.0 1.5 2.0 2.5 3.0 3.5
0
0
1
0.2
0
2
5
0
0
0.5
On-StateCharacteristics(MAX)
=2℃
=1℃
RMSOn-StateCurrent(A)
4
3
6
5
7
8
9
0
2
1
0
0 1 2 3 4 5 6 7 8
RMSOn-Statevs
MaximumPowerDissipation
PowerDissipation(W)
θ
θ
θ
θ
θ
θ
0
θ
θ
θConductionAngle
π
RMSOn-StateCurrent(A)
5
5
0
0
5
0
0 1 2 3 4 5 6 7 8
RMSOn-Statevs
AllowableCaseTemperature
AllowableCaseTemperature(℃)
0
θ
θ
θConductionAngle
π
θ= 3 0
θ= 9 0
θ= 150
θ= 180
θ= 120
θ= 6 0
0
0
0
0
0
0
1 2 5 0 0 00
Time(Cycles)
SurgeOn-StateCurrentRating
(Non-Repetitive
SurgeOn-StateCurrent(A)
0H Z
0H Z
0
0.1 1 0 0
0.1
1
0.01
Time(Sec.)
TransientThermalImpedance
TransientThermalImpedance(℃/W
JunctionTemp.Tj(℃)
0
0
0
0
0
0
0 0 0 0 0
IGT−TjTypical)
IGT(t
IGT(25℃ ×100(%)
IGT1
IGT1
IGT3
JunctionTemp.Tj(℃)
0
0
0
0
0
0
0
0 0 0 0 0
V
GT
−TjTypical)
VGT(t
VGT(25℃ ×100(%)
VGT1
VGT1
VGT3
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