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PS22053 データシートの表示(PDF) - Powerex

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PS22053 Datasheet PDF : 10 Pages
1 2 3 4 5 6 7 8 9 10
Powerex, Inc., 200 E. Hillis Street, Youngwood, Pennsylvania 15697-1800 (724) 925-7272
PS22053
Intellimod™ Module
Dual-In-Line Intelligent Power Module
10 Amperes/1200 Volts
Electrical and Mechanical Characteristics, Tj = 25°C unless otherwise specified
Characteristics
Symbol
Test Conditions
Min.
Typ. Max. Units
IGBT Inverter Sector
Collector-Emitter Saturation Voltage
VCE(sat) IC = 10A, Tj = 25°C, VD = VDB = 15V, VIN = 5V —
2.7
3.4
Volts
IC = 10A, Tj = 125°C, VD = VDB = 15V, VIN = 5V —
2.5
3.2
Volts
Diode Forward Voltage
VEC
-IC = 10A, VIN = 0V
2.5
3.0
Volts
Inductive Load Switching Times
ton
0.8
1.5
2.2
µs
trr
VCC = 600V, VD = VDB = 15V,
0.2
µs
tC(on)
IC = 10A, Tj = 125°C, VIN = 0 5V,
0.4
0.7
µs
toff
Inductive Load (Upper-Lower Arm)
2.8
3.8
µs
tC(off)
0.4
0.7
µs
Collector-Emitter Cutoff Current
ICES
VCE = VCES, Tj = 25°C
1.0
mA
VCE = VCES, Tj = 125°C
10
mA
Control Sector
Circuit Current
ID VIN = 5V
Total of VP1-VPC, VN1-VNC
3.70
mA
VD = VDB = 15V
VUFB-VUFS, VVFB-VVFS, VWFB-VWFS
1.30
mA
VIN = 0V
Total of VP1-VPC, VN1-VNC
3.50
mA
VUFB-VUFS, VVFB-VVFS, VWFB-VWFS
1.30
mA
Fault Output Voltage
VFOH VSC = 0V, FO Terminal Pull-up to 5V by 10kΩ 4.9
Volts
VFOL
VSC = 1V, IFO = 1mA
1.10 Volts
Input Current
IIN
VIN = 5V
0.70
1.5
2.00
mA
Short Circuit Trip Level*
VSC(ref)
VD = 15V
0.43 0.48 0.53 Volts
Supply Circuit Under-voltage
UVDBt
Trip Level, Tj 125°C
10.0
12.0 Volts
UVDBr
Reset Level, Tj 125°C
10.5
12.5 Volts
UVDt
Trip Level, Tj 125°C
10.3
12.5 Volts
UVDr
Reset Level, Tj 125°C
10.8
13.0 Volts
Fault Output Pulse Width**
tFO
CFO = 22nF
1.6
2.4
ms
ON Threshold Voltage
Vth(on)
Applied between UP, VP, WP-VPC,
2.5
3.0
4.2
Volts
OFF Threshold Voltage
Vth(off)
UN, VN, WN-VNC
0.8
1.4
2.0
Volts
* Short Circuit protection is functioning only for N-side IGBTs. Please select the value of the external shunt resistance such that the SC trip level is less than 1.7 times the current rating.
**Fault output is asserted when the lower arms short circuit or control supply under-voltage protection function operates. The fault output pulse-width tFO depends on the capacitance value
of CFO according to the following approximate equation: CFO = (9.3 x 10-6) x tFO {F} .
Rev. 10/05
3

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