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CD4340 Datasheet, PDF (3/4 Pages) Powerex Power Semiconductors – POW-R-BLOK Dual SCR Isolated Module 40 Amperes / Up to 1600 Volts
Powerex, Inc., Hillis Street, Youngwood, Pennsylvania 15697 (724) 925-7272
CD43__40
POW-R-BLOKTM
Dual SCR Isolated Module
40 Amperes / Up to 1600 Volts
Electrical Characteristics, TJ=25°C unless otherwise specified
Characteristics
Symbol
Test Conditions
Min.
Max. Units
Repetitive Peak Forward Leakage Current
Repetitive Peak Reverse Leakage Current
Peak On-State Voltage
Threshold Voltage, Low-level
Slope Resistance, Low-level
Threshold Voltage, High-level
Slope Resistance, High-level
VTM Coefficients, Full Range
Minimum dV/dt
Turn-Off Time (Typical)
Gate Trigger Current
Gate Trigger Voltage
Non-Triggering Gate Voltage
Non-Triggering Gate Current
Holding Current
Latching Current
IDRM
IRRM
VFM
V(TO)1
rT1
V(TO)2
rT2
dV/dt
t off
IGT
VGT
VGDM
IGDM
IH
IL
Up to 1600V, TJ=125°C
Up to 1600V, TJ=125°C
ITM=140A
TJ = 125°C, I = 16.7% x πIT(AV) to πIT(AV)
TJ = 125°C, I = πIT(AV) to ITSM
TJ = 125°C, I = 15% x IT(AV) to ITSM
VTM = A+ B Ln I +C I + D Sqrt I
Linear to 2/3 VDRM
Tj=125°C, Gate Open Circuit
TJ = 25°C, IT = 2A
Vr = 50V, -dI/dt=10 A/µs
Re-Applied dV/dt = 200 V/µs,
Linear to 900 V
Tj= -40°C, VD=6V, Resistive Load
Tj= 25°C, VD=6V, Resistive Load
Tj=125°C, VD=6V, Resistive Load
Tj= -40°C, VD=6V, Resistive Load
Tj= 25°C, VD=6V, Resistive Load
Tj=125°C, VD=6V, Resistive Load
Tj=125°C, VD=VDRM
Tj=125°C, VD=VDRM
VD=6V, Resistive Load, Gate Open
VD=6V, Resistive Load
15
15
1.81
0.88
5.90
0.91
5.74
A=
0.872
B = -1.86 E-3
C = 5.65 E-3
D = 4.33 E-3
500
40 - 100 (Typical)
270
150
80
4.0
2.5
1.7
0.25
6
200
400
mA
mA
V
V
mΩ
V
mΩ
V/µs
µs
mA
mA
mA
Volts
Volts
Volts
Volts
mA
mA
mA
Thermal Characteristics
Characteristics
Thermal Resistance, Junction to Case
DC Operation
Thermal Impedance Coefficients
Thermal Resistance, Case to Sink Lubricated
Symbol
RΘJ-C
ZΘJ-C
RΘC-S
Per Module, both conducting
Per Junction, both conducting
Max.
0.230
0.460
Units
°C/W
°C/W
ZΘJ-C= K1 (1-exp(-t/τ1))
+ K2 (1-exp(-t/τ2))
+ K3 (1-exp(-t/τ3))
+ K4 (1-exp(-t/τ4))
Per Module
K1 = 1.77 E-2
K2 = -1.00 E-2
K3 = 1.46 E-1
K4 = 3.07 E-1
τ1 = 4.73 E-4
τ2 = 1.67 E-3
τ3 = 9.77 E-3
τ4 = 8.76 E-2
0.1
°C/W
Revision Date: 11/1/2001