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IRAM136-1561A Schematic ( PDF Datasheet ) - IRF

Teilenummer IRAM136-1561A
Beschreibung Open Emitter Pins
Hersteller IRF
Logo IRF Logo 




Gesamt 17 Seiten
IRAM136-1561A Datasheet, Funktion
PD-97742 RevB
IRAM136-1561A
Series
Integrated Power Hybrid IC for
Appliance Motor Drive Applications
15A, 600V
with Open Emitter Pins
Description
International Rectifier's IRAM136-1561A is a 15A, 600V Integrated Power Hybrid IC with Open Emitter pins
for advanced Appliance Motor Drives applications such as energy efficient Washing Machine and Refrigerator
Compressor Drivers. IR's technology offers an extremely compact, high performance AC motor-driver in a
single isolated package to simplify design.
This advanced HIC is a combination of IR's low VCE (on) Trench IGBT technology and the industry benchmark
3 phase high voltage, high speed driver (3.3V compatible) in a fully isolated thermally enhanced package. A
built-in high precision temperature monitor and over-current protection feature, along with the short-circuit
rated IGBTs and integrated under-voltage lockout function, deliver high level of protection and fail-safe
operation. Using a Single in line package with full transfer mold structure and CTI>600 minimizes PCB space
and resolves isolation problems to heatsink.
Features
x Integrated gate drivers and bootstrap diodes
x Temperature monitor
x Protection shutdown pin
x Low VCE (on) Trench IGBT technology
x Undervoltage lockout for all channels
x Matched propagation delay for all channels
x 3.3V Schmitt-triggered input logic
x Cross-conduction prevention logic
x Motor Power up to 1.5kW / 85~253 Vac
x Isolation 2000VRMS min and CTI> 600
x RoHS Compliant
x Recognized by UL (File Number: E252584)
Absolute Maximum Ratings
VCES / VRRM
V+
IGBT/ FW Diode Blocking Voltage
Positive Bus Input Voltage
600
450
V
Io @ TC=25°C
RMS Phase Current (Note 1)
15
Io @ TC=100°C
RMS Phase Current (Note 1)
7.5 A
Ipk Maximum Peak Phase Current (Note 2)
22.5
Fp Maximum PWM Carrier Frequency
20 kHz
Pd
Maximum Power dissipation per IGBT @ TC =25°C
32
W
VISO Isolation Voltage (1min)
2000
VRMS
TJ (IGBT & Diode & IC) Maximum Operating Junction Temperature
+150
TC Operating Case Temperature Range
-20 to +100
°C
TSTG Storage Temperature Range
-40 to +125
T Mounting torque Range (M3 screw)
0.8 to 1.0
Nm
Note 1: Sinusoidal Modulation at V+=320V, VCC=15V, TJ=150°C, FPWM=16kHz, MI=0.8, PF=0.6, See Figure 4.
Note 2: tP<100ms, VCC=15V, TC=25°C, FPWM=16kHz.
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IRAM136-1561A Datasheet, Funktion
IRAM136-1561A
Thermal and Mechanical Characteristics
Symbol
Parameter
Min Typ
Rth(J-C)
Rth(J-C)
Rth(C-S)
CTI
Thermal resistance, per IGBT
Thermal resistance, per Diode
Thermal resistance, C-S
Comparative Tracking Index
--- 3.2
--- 5.0
--- 0.1
600 ---
BKCurve
Curvature of module backside
0 80
Max
3.8
6.0
---
---
---
Units Conditions
°C/W
Inverter Operating Condition
Flat, greased surface. Heatsink
compound thermal conductivity
1W/mK
V
NjP Convex only
Internal NTC - Thermistor Characteristics
Parameter Definition
Min Typ
R25 Resistance
R125 Resistance
B B-constant (25-50°C)
44.65
1.27
3989
47
1.41
4050
Temperature Range
-40 ---
Typ. Dissipation constant
--- 1
Max Units Conditions
49.35
1.56
4111
125
TC = 25°C
TC = 125°C
k R2 = R1e [B(1/T2 - 1/T1)]
°C
--- mW/°C TC = 25°C
Input-Output Logic Level Table
V+
HIN1,2,3
(20,22,23)
LIN1,2,3
(24,25,26)
Ho
IC
Driver
Lo
U,V,W
(10,6,2)
FLT/EN
1
1
1
1
1
0
ITRIP HIN1,2,3 LIN1,2,3 U,V,W
0 1 0 V+
0010
0 0 0 Off
0 1 1 Off
1 X X Off
X X X Off
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IRAM136-1561A pdf, datenblatt
IRAM136-1561A
160
140
120
100
FPWM = 12kHz
80
FPWM = 16kHz
FPWM = 20kHz
60
40
0123456789
Output Phase Current - ARMS
Figure 8. Maximum Allowable Case Temperature vs. Output RMS Current per Phase
Sinusoidal Modulation, V+=400V, TJ=150°C, MI=0.8, PF=0.6, fmod=50Hz
10
160
TJ avg = 1.14 x TTherm + 26
150
140
130
120
110
100
109
90
65 70 75 80 85 90 95 100 105 110 115
Internal Thermistor Temperature Equivalent Read Out - °C
Figure 9. Estimated Maximum IGBT Junction Temperature vs. Thermistor Temperature
Sinusoidal Modulation, V+=400V, Iphase=6Arms, fsw=16kHz, fmod=50Hz, MI=0.8, PF=0.6
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SeitenGesamt 17 Seiten
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