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BCR3KM-12LA 데이터 시트보기 (PDF) - Kersemi Electronic Co., Ltd.

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BCR3KM-12LA
KERSEMI
Kersemi Electronic Co., Ltd. KERSEMI
BCR3KM-12LA Datasheet PDF : 7 Pages
1 2 3 4 5 6 7
BCR3KM-12LA
Parameter
RMS on-state current
Surge on-state current
I2t for fusing
Peak gate power dissipation
Average gate power dissipation
Peak gate voltage
Peak gate current
Junction temperature
Storage temperature
Mass
Isolation voltage
Notes: 1. Gate open.
Symbol
IT (RMS)
ITSM
I2t
PGM
PG (AV)
VGM
IGM
Tj
Tstg
Viso
Ratings
3
30
3.7
3
0.3
6
0.5
– 40 to +125
– 40 to +125
2.0
2000
Unit
Conditions
A
Commercial frequency, sine full wave
360° conduction, Tc = 109°C
A
60Hz sinewave 1 full cycle, peak value,
non-repetitive
A2s
Value corresponding to 1 cycle of half
wave 60Hz, surge on-state current
W
W
V
A
°C
°C
g
Typical value
V
Ta = 25°C, AC 1 minute,
T1·T2·G terminal to case
Electrical Characteristics
Parameter
Symbol Min. Typ. Max. Unit
Test conditions
Repetitive peak off-state current
IDRM
On-state voltage
VTM
Gate trigger voltageNote2
Ι
VFGTΙ
ΙΙ
VRGTΙ
ΙΙΙ
VRGTΙΙΙ
Gate trigger currentNote2
Ι
IFGTΙ
ΙΙ
IRGTΙ
ΙΙΙ
IRGTΙΙΙ
Gate non-trigger voltage
VGD
0.2
Thermal resistance
Rth (j-c)
Critical-rate of rise of off-state
commutating voltageNote4
(dv/dt)c
5
2.0
mA Tj = 125°C, VDRM applied
1.5
V
Tc = 25°C, ITM = 4.5 A,
Instantaneous measurement
1.5
V
Tj = 25°C, VD = 6 V, RL = 6 ,
1.5
V
RG = 330
1.5
V
20Note5
mA Tj = 25°C, VD = 6 V, RL = 6 ,
20Note5
mA RG = 330
20Note5
mA
V
Tj = 125°C, VD = 1/2 VDRM
4.0
°C/W Junction to caseNote3
V/µs Tj = 125°C
Notes: 2. Measurement using the gate trigger characteristics measurement circuit.
3. The contact thermal resistance Rth (c-f) in case of greasing is 0.5°C/W.
4. Test conditions of the critical-rate of rise of off-state commutating voltage is shown in the table below.
5. High sensitivity (IGT 10 mA) is also available. (IGT item: 1)
Test conditions
1. Junction temperature
Tj = 125°C
2. Rate of decay of on-state commutating current
(di/dt)c = –1.5 A/ms
3. Peak off-state voltage
VD = 400 V
Commutating voltage and current waveforms
(inductive load)
Supply Voltage
Time
Main Current
Main Voltage
(dv/dt)c
(di/dt)c
Time
Time
VD
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