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 MITSUBISHI HYBRID ICs
M57959L
HYBRID IC FOR DRIVING IGBT MODULES
Block Diagram
4 VCC 14 185 Timer and Reset Circuit Interface 5 VOUT Detect Circuit 1 Detect Pin
Hybrid Integrated Circuit For Driving IGBT Modules
Description: M57959L is a hybrid integrated circuit designed for driving n-channel IGBT modules in any gate amplifier application. This device operates as an isolation amplifier for these modules and provides the required electrical isolation between the input and output with an opto-coupler. Short circuit protection is provided by a built in desaturation detector. A fault signal is provided if the short circuit protection is activated. Features: Built in high CMRR optocoupler (VCMR : Typical 30kV/s, Min. 15kV/s) Electrical Isolation between input and output with opto-couplers (Viso = 2500, VRMS for 1 min.) TTL compatible input interface
VIN 8 1 DZ1 30V 5 Rext VOUT tr tf 90% D1
- 13 Opto-Coupler 6 VEE Gate Shutdown Circuit 8 Fault Output
Outline Drawing
43.0 MAX
Dimensions in mm
22.0 MAX
4.5 1.5 0.35 0.2 11.0 MAX 5.5 MAX 14 3.5 MAX 8.5 MAX
0.55 0.2 2.54 max 5.5 MAX 1 2.54 x 13 = 33.02
Test Circuit
R 4.7 k
Two supply drive topology Built in short circuit protection circuit with a pin for fault output Application: To drive IGBT modules for inverter, AC Servo systems, UPS, CVCF inverter, and welding applications. Recommended Modules: VCES = 600V Series (up to 200A Class) VCES = 1200V Series (up to 100A Class) VCES = 1400V Series (up to 100A Class)
VIN 14
4
+ 47F + 47F
+ VCC + VEE VCC = 15 V VEE = 10V Rext = RECOMMENDED VALUE tPLH tPHL 0 10%
13 TTL, etc. VIN = 5V
6
Sep.1998
MITSUBISHI HYBRID ICs
M57959L
HYBRID IC FOR DRIVING IGBT MODULES Absolute Maximum Ratings, Ta = 25C unless otherwise specified
Item Supply Voltage* Symbol VCC VEE Input Voltage Output Voltage Output Current VI VO IOHP IOLP Output Current Isolation Voltage Junction Temperature Operating Temperature Storage Temperature Fault Output Current Input Voltage
*20 Volts VCC + VEE 28 Volts
Test Conditions DC DC
Limit 18 -15 -1 ~ 7
Units Volts Volts Volts Volts Amperes Amperes Amperes Volts C C C mA Volts
Output Voltage "H" Pulse Width 2s, f = 20kHz Pulse Width 2s, f = 20kHz f = 20kHz, 50% Duty Cycle Sinewave Voltage 60Hz, 1 min.
VCC -2 2 0.2 2500 85
IOH VRMS Tj Topr Tstg IFO VR1
(Differs from H/C Condition)
-20 ~ 60 -25 ~ 100 20 50
Electrical Characteristics, Ta = 25C, VCC = 15V, -VEE = 10V unless otherwise specified
Characteristics Supply Voltage Symbol VCC VEE Pull-up Voltage on Input Side "H" Input Current "H" Output Voltage "L" Output Voltage Internal Power Dissipation VIN IIH VOH VOL PD tPLH tr tPHL tr tRESET IFO VSC f = 20kHz, Module 200A, 600V IGBT "L-H" Propagation Time "L-H" Rise Time "H-L" Propagation Time "H-L" Rise Time Reset Time of Protection Fault Output Current SC Voltage VI = 0 to 4V, Tj = 85C VI = 0 to 4V, Tj = 85C VI = 0 to 4V, Tj = 85C VI = 0 to 4V, Tj = 85C -- -- -- -- 1 -- 15 0.8 0.5 1.0 0.3 -- 5 -- 1.5 1.0 1.5 0.6 2 -- -- s s s s ms mA Volts Test conditions Recommended Range Recommended Range Recommended Range VIN = 5V, R = 185 Min. 14 -7 4.75 -- 13 -8 -- Typ. 15 -- 5.00 16 14 -9 0.86 Max. -- -10 5.25 -- -- -- -- Unit Volts Volts Volts mA Volts Volts Watts
Sep.1998


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