MITSUBISHI M57958L

MITSUBISHI HYBRID ICs
M57958L
HYBRID IC FOR DRIVING IGBT MODULES
Hybrid Integrated Circuit
For Driving IGBT Modules
Block Diagram
5
6
Description:
M57958L 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.
2
185Ω
7
1
8
Outline Drawing
Features:
u Built in high CMRR optocoupler (VCMR : Typical
30kV/µs, Min. 15kV/µs)
Dimensions in mm
10.0 MAX
51.3 MAX
M57958L
u Electrical Isolation between input and output with opto-couplers (Viso = 2500,
VRMS for 1 min.)
29 MAX
4.5 ± 1.5
15.5 MAX
2.54 ± 0.1
0.55 ± 0.1
2.54 × 7 =
17.78 ± 0.2
19 MAX
u TTL compatible input interface
0.35 ± 0.2
u Two supply drive topology
10.0 MAX
1.8 MAX
1
8
u Short differential of propagation time (tPLH, tPHL to Max.
1.5µs, Typical 1.0µs)
8.5 MAX
Test Circuit
VIN
VIN
MEASUREMENT
POINT
M57958L
1
2
16mA
5
6
7
8
47µF
Rext
VOUT
tr
tf
90%
18V
Cext = 47µF
10%
0
Application:
To drive IGBT modules for inverter,
AC Servo systems, UPS, CVCF inverter, and welding applications.
TTL, etc.
VCC
VEE
= 15V = 10V
tPLH
tPHL
Precaution:
The value of “Rext” should be selected according to the guidelines in
Section 4.6.2 of Application Notes.
Also, the value of “Rext” should be selected so that maximum limits, IOHP
and IOLP are not exceeded.
Recommended Modules:
VCES = 600V Series
(up to 400A Class)
VCES = 1200V Series
(up to 200A Class)
VCES = 1400V Series
(up to 200A Class)
Sep.1998
MITSUBISHI HYBRID ICs
M57958L
HYBRID IC FOR DRIVING IGBT MODULES
Absolute Maximum Ratings, Ta = 25°C unless otherwise specified
Item
Supply Voltage
Symbol
Ta (°C)
Test Conditions
Limit
Units
VCC
25
VEE
25
DC
18
Volts
DC
-12
Volts
Input Voltage
VI
25
Between Terminal 1 and 2
-1 ~ 7
Volts
Output Voltage
VO
25
Output Voltage “H”
VCC
Volts
Output Current
IOHP
25
Pulse Width 2µs, f = 30kHz
-5
Amperes
IOLP
25
Pulse Width 2µs, f = 30kHz
5
Amperes
Output Current
IOH
25
f = 30kHz, DF = 50%
0.8
Amperes
Isolation Voltage
Viso
25
Sinewave Voltage 60Hz, 1 min.
2500
Vrms
Tj
—
100
°C
Operating Temperature
Topr
—
-20 ~ 70
°C
Storage Temperature
tstg
—
*-25 ~ 100
°C
Junction Temperature
*But differs from H/C condition.
Electrical Characteristics, Ta = 25°C, VCC = 15V, VEE = –10V unless otherwise specified
Characteristics
Symbol
VCC/VEE
(°C)
Ta
(°C)
Test Conditions
Min.
Typ.
Max.
Units
Supply Voltage
VCC
—
25
Recommended Range
14
15
—
Volts
VEE
—
25
Recommended Range
-9
-10
—
Volts
VIN
—
25
Recommended Range
4.75
5.00
5.25
Volts
VIN = 5V, R = 185Ω
—
16
—
mA
13
14
—
Volts
Pull-up Voltage on Input Side
“H” Input Current
IIH
15/-10
25
“H” Output Voltage
VOH
15/-10
25
“L” Output Voltage
VOL
15/-10
25
Internal Power Dissipation
PD
15/-10
25
tPLH
15/-10
—
-8
-9
—
Volts
—
1.2
—
Watts
VI = 0 to 4V, Tj = 100°C
—
1.0
1.5
µs
f = 30kHz, DF = 50%,
Module 200A, 600V IGBT
“L-H” Propagation Time
“L-H” Rise Time
“H-L” Propagation Time
Fall Time
tr
15/-10
—
VI = 0 to 4V, Tj = 100°C
—
0.6
1.0
µs
tPHL
15/-10
—
VI = 5 to 0V, Tj = 100°C
—
1.0
1.5
µs
tf
15/-10
—
VI = 5 to 0V, Tj = 100°C
—
0.4
1.0
µs
Sep.1998