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IRAMS10UP60A Datasheet, PDF (1/18 Pages) International Rectifier – Plug N DriveTM Integrated Power Module for Appliance Motor Drive
PD-94640
Plug N DriveTM Integrated Power
Module for Appliance Motor Drive
IRAMS10UP60A
Series
Description
International Rectifier's IRAMS10UP60A is an Integrated Power Module developed and optimized for elec-
tronic motor control in appliance applications such as washing machines and refrigerators. Plug N Drive
technology offers an extremely compact, high performance AC motor-driver in a single isolated package for
a very simple design.
A built-in temperature monitor and over-temperature/over-current protection, along with the short-circuit
rated IGBTs and integrated under-voltage lockout function, deliver high level of protection and fail-safe
operation.
The integration of the bootstrap diodes for the high-side driver section, and the single polarity power
supply required to drive the internal circuitry, simplify the utilization of the module and deliver further cost
reduction advantages.
Features
• Integrated Gate Drivers and Bootstrap Diodes.
• Temperature Monitor
• Temperature and Overcurrent shutdown
• Fully Isolated Package.
• Low VCE (on) Non Punch Through IGBT Technology.
• Undervoltage lockout for all channels
• Matched propagation delay for all channels
• Low side IGBT emitter pins for current conrol
• Schmitt-triggered input logic
• Cross-conduction prevention logic
• Lower di/dt gate driver for better noise immunity
• Motor Power range 0.4~0.75kW / 85~253 Vac
Absolute Maximum Ratings
Parameter
VCES
Io @ TC - 25oC
Io @TC - 100oC
Ipk
Fp
Pd
Viso
TJ (IGBT & Diodes)
TJ (Driver IC)
T
Description
Maximum IGBT Blocking Voltage
RMS Phase Current
RMS Phase Current
Maximum Peak Phase Current (tp<100ms)
Maximum PWM Carrier Frequency
Maximum Power dissipation per Phase
Isolation Voltage (1min)
Operating Junction temperature Range
Operating Junction temperature Range
Mounting torque Range (M3 screw)
www.irf.com
Max. Value
600
10
5
15
20
20
2000
-40 to +150
-40 to +150
0.8 to 1.0
Units
V
A
kHz
W
VRMS
°C
Nm
1
2/24/03