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PDF IRAM136-0461G Data sheet ( Hoja de datos )

Número de pieza IRAM136-0461G
Descripción Integrated Power Hybrid IC
Fabricantes International Rectifier 
Logotipo International Rectifier Logotipo



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PD-97271 RevA
IRAM136-0461G
Series
Plug N DriveTM Integrated Power
Module for Energy Efficient Motor Drives
4A, 600V
Description
International Rectifier’s IRAM136-0461G is an Integrated Power Module developed and optimized for elec-
tronic motor control in energy saving applications. Targeting the sub 300W three-phase motor drive
applications, such as fan or refrigerator compressor drives, this module offers the highest level of integra-
tion available in the market today. It features an input diode rectification bridge and a three-phase inverter,
complete with bootstrap diodes, high voltage gate driver IC, current shunt resistor and temperature
sensor. This high performance AC motor-driver is housed in a compact single-in-line isolated package for a
very simple design.
The internal shunt offers easy current feedback for precise control and safe operation. A built-in tem-
perature monitor and logic level shut-down function, along with the short-circuit rated IGBTs and
integrated under-voltage lockout function, deliver high level of protection and fail-safe operation.
Features
• Internal Rectifier Diode Bridge
• Internal Shunt Resistor
• Integrated Gate Drivers and Bootstrap Diodes
• Temperature Monitor
• Undervoltage lockout for all channels
• Matched propagation delay for all channels
• Schmitt-triggered input logic
• Cross-conduction prevention logic
• Lower di/dt gate driver for better noise immunity
• Motor Power range 0.1~0.3kW / up to 253V, 50/60Hz
• Isolation 2000VRMS /1min
1
23
Absolute Maximum Ratings
Parameter
VRRM
VCES
V+
IO @ TC=25°C
IO @ TC=100°C
IO PK
FPWM
Pd
VISO
TJ (IGBT & Diodes)
TJ (Driver IC)
T
Description
Input Bridge Blocking Voltage
IGBT Blocking Voltage
Positive Bus Input Voltage
RMS Phase Current (FPWM=20kHz)
RMS Phase Current (FPWM=20kHz)
Pulsed RMS Phase Current (tp<100ms, FPWM=20kHz)
PWM Carrier Frequency
Power dissipation per IGBT @ TC =25°C
Isolation Voltage (1min)
Operating Junction temperature Range
Operating Junction temperature Range
Mounting torque (M3 screw)
Max. Value
600
600
450
3.6
2
5
20
16
2000
-40 to +150
-40 to +150
1.0
Units
V
kHz
W
VRMS
°C
Nm
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IRAM136-0461G pdf
IRAM136-0461G
Inverter Section Switching Characteristics @ TJ= 25°C
Symbol
EON
EOFF
ETOT
EREC
tRR
EON
EOFF
ETOT
EREC
tRR
QG
RBSOA
Parameter
Turn-On Switching Loss
Turn-Off Switching Loss
Total Switching Loss
Diode Reverse Recovery energy
Diode Reverse Recovery time
Turn-on Swtiching Loss
Turn-off Switching Loss
Total Switching Loss
Diode Reverse Recovery energy
Diode Reverse Recovery time
Turn-On IGBT Gate Charge
Reverse Bias Safe Operating Area
Min Typ Max
--- 180 260
--- 65 140
--- 245 400
--- 5 15
--- 240 ---
--- 210 305
--- 80 150
--- 290 455
--- 15 35
--- 285 ---
--- 0.84 1.3
FULL SQUARE
Units Conditions
IC=2A, V+=400V
VCC=15V, L=1mH
µJ Energy losses include "tail" and
diode reverse recovery
ns See CT1
IC=2A, V+=400V
VCC=15V, L=1mH, TJ=150°C
µJ Energy losses include "tail" and
diode reverse recovery
ns See CT1
nC IC=2A, V+=400V, VGE=15V
TJ=150°C, IC=2A, VP=600V
V+= 450V
VCC=+15V to 0V
See CT3
SCSOA
ICSC
TJ=150°C, VP=600V,
Short Circuit Safe Operating Area 10 --- --- µs V+= 360V,
VCC=+15V to 0V
See CT2
Short Circuit Collector Current
--- 11 ---
TJ=150°C, VP=600V, tSC<10µs
A V+= 360V, VGE=15V
VCC=+15V to 0V
See CT2
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IRAM136-0461G arduino
IRAM136-0461G
Typical Application Connection IRAM136-0461G
AC
INPUT
DC BUS
CAPACITORS
In-Rush Control
BOOT-STRAP
CAPACITORS
3-Phase AC
MOTOR
CONTROLLER
+5V
Temperature Monitor
PWM in
PWM in
PWM in
PWM in
PWM in
PWM in
Itrip (Logc Level)
Current Sense
15V
10m
0.1µ
AC
AC
Vbus_1
Vbus_2
GND
VB3
W,VS3
VB2
V,VS2
VB1
U,VS1
VTH
VCC
HIN1
HIN2
HIN3
LIN1
LIN2
LIN3
ITRIP
Shunt+
VSS
1. Electrolytic bus capacitors should be mounted as close as possible to the module bus terminals to reduce ringing and
EMI problems. Additional high frequency ceramic capacitors mounted close to the module pins will improve perfor-
mance.
2. In order to provide good decoupling between VCC-VSS and VB-VS terminals, the capacitors connected between these
terminals should be located very close to the module pins. Additional high frequency capacitors, typically 0.1F, are
strongly recommended.
3. Value of the boot-strap capacitors depends upon the switching frequency. Their selection should be made based on
IR design tip DN 98-2a, application note AN-1044 or Figure 9.
4. Current sense signal can be obtained from pin 22 and pin 23
5. After approx. 9 ms the FAULT is reset
6. PWM generator must be disabled within Fault duration to guarantee shutdown of the system, and the overcurrent
condition must be cleared before resuming operation
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