PD-97742 RevB
Integrated Power Hybrid IC for
Appliance Motor Drive Applications
Description
with Open Emitter Pins
IRAM136-1561A
Series
15A, 600V
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 V
CE (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
Integrated gate drivers and bootstrap diodes
Temperature monitor
Protection shutdown pin
Low V
CE (on)
Trench IGBT technology
Undervoltage lockout for all channels
Matched propagation delay for all channels
3.3V Schmitt-triggered input logic
Cross-conduction prevention logic
Motor Power up to 1.5kW / 85~253 Vac
Isolation 2000VRMS min and CTI> 600
RoHS Compliant
Recognized by UL (File Number: E252584)
Absolute Maximum Ratings
V
CES
/ V
RRM
V
I
o
@ T
C
=25°C
I
o
@ T
C
=100°C
I
pk
F
p
P
d
V
ISO
T
J
(IGBT & Diode & IC)
T
C
T
STG
+
IGBT/ FW Diode Blocking Voltage
Positive Bus Input Voltage
RMS Phase Current (Note 1)
RMS Phase Current (Note 1)
Maximum Peak Phase Current (Note 2)
Maximum PWM Carrier Frequency
Maximum Power dissipation per IGBT @ T
C
=25°C
Isolation Voltage (1min)
Maximum Operating Junction Temperature
Operating Case Temperature Range
Storage Temperature Range
600
450
15
7.5
22.5
20
32
2000
+150
-20 to +100
-40 to +125
V
A
kHz
W
V
RMS
°C
T
Mounting torque Range (M3 screw)
0.8 to 1.0
Nm
+
Note 1: Sinusoidal Modulation at V =320V, V
CC
=15V, T
J
=150°C, F
PWM
=16kHz, MI=0.8, PF=0.6, See Figure 4.
Note 2: t
P
<100ms, V
CC
=15V, T
C
=25°C, F
PWM
=16kHz.
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1
IRAM136-1561A
Internal Electrical Schematic – IRAM136-1561A
V+ (13)
Q1
D1
Q2
D2
Q3
D3
VRU (17)
VRV (19)
VRW (21)
Q4
D4
Q5
D5
Q6
D6
R1
VB1 (9)
U, VS1 (10)
VB2 (5)
V, VS2 (6)
VB3 (1)
W, VS3 (2)
D9
D8
D7
C1
R2
R3
C2
C3
R4
R5
R6
23 VS1
R9
24 HO1
25 VB1
1 VCC
22 21 20 19 18 17
VB2 HO2 VS2 VB3 HO3 VS3
LO1 16
LO2 15
Driver IC
LO3 14
HIN1 (20)
HIN2 (22)
HIN3 (23)
LIN1 (24)
LIN2 (25)
LIN3 (26)
ITRIP (16)
FLT/EN (18)
2 HIN1
3 HIN2
4 HIN3
LIN1 LIN2 LIN3
6
7
5
F ITRIP EN RCIN VSS
8
9
10 11 12
COM 13
R7
VTH (27)
VCC (28)
VSS (29)
C4
R8
C6
C5
2
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IRAM136-1561A
Absolute Maximum Ratings (Continued)
Symbol
I
BDF
P
BR Peak
V
S1,2,3
V
B1,2,3
V
CC
V
IN
Parameter
Bootstrap Diode Peak Forward
Current
Bootstrap Resistor Peak Power
(Single Pulse)
High side floating supply offset
voltage
High side floating supply voltage
Low Side and logic fixed supply
voltage
Input voltage LIN, HIN, I
Trip
,
FLT/EN
Min
---
---
V
B1,2,3
- 20
-0.3
-0.3
-0.3
Max
1.0
15.0
V
B1,2,3
+0.3
600
20
Lower of
(V
SS
+15V) or
V
CC
+0.3V
Units Conditions
A
W
V
V
V
V
t
P
=10ms,
T
J
=150°C, T
C
=100°C
t
P
=100μs, T
C
=100°C
ESR series
Inverter Section Electrical Characteristics
V
BIAS
(V
CC
, V
BS1,2,3
)=15V, T
J
=25ºC, unless otherwise specified.
Symbol
V
(BR)CES
(BR)CES
Parameter
Collector-to-Emitter Breakdown
Voltage
Temperature Coeff. Of
Breakdown Voltage
Collector-to-Emitter Saturation
Voltage
Zero Gate Voltage Collector
Current
Diode Forward Voltage Drop
Bootstrap Diode Forward Voltage
Drop
Bootstrap Resistor Value
Bootstrap Resistor Tolerance
V
CC
/ V
BS
Capacitor Value
Itrip Capacitor Value
Min
600
---
---
---
---
---
--
---
---
---
---
---
---
---
Typ
---
0.3
1.5
1.7
8
100
1.8
1.4
1.65
1.3
22
---
47
1
Max
---
---
1.75
---
80
---
2.4
---
1.8
---
---
±5
---
---
Units Conditions
V
V/°C
V
V
IN
=0V, I
C
=250μA
V
IN
=0V, I
C
=1mA
(25°C - 150°C)
I
C
=7.5A, T
J
=25°C
I
C
=7.5A, T
J
=150°C
V
IN
=0V, V
+
=600V
V
IN
=0V, V
+
=600V, T
J
=150°C
V
V
I
F
=7.5A
I
F
=7.5A, T
J
=150°C
I
F
=1A
I
F
=1A, T
J
=150°C
T
J
=25°C
%
nF
nF
T
J
=25°C
T
J
=25°C
T
J
=25°C
V
CE(ON)
I
CES
V
FM
V
BDFM
R
BR
BR
/R
BR
C
1,2,3,4
C
6
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3
IRAM136-1561A
Inverter Section Switching Characteristics
V
BIAS
(V
CC
, V
BS1,2,3
)=15V, T
J
=25ºC, unless otherwise specified.
Symbol
E
ON
E
OFF
E
TOT
E
REC
t
RR
E
ON
E
OFF
E
TOT
E
REC
t
RR
Q
G
RBSOA
SCSOA
SCSOA
SCSOA
I
CSC
Parameter
Turn-On Switching Loss
Turn-Off Switching Loss
Total Switching Loss
Diode Reverse Recovery energy
Diode Reverse Recovery time
Turn-on Switching 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
Short Circuit Safe Operating Area
Short Circuit Safe Operating Area
Short Circuit Safe Operating Area
Short Circuit Collector Current
5
3
2
16.5
Min
---
---
---
---
---
---
---
---
---
---
---
Typ
260
135
395
25
100
380
190
570
75
150
25
FULL SQUARE
---
---
---
---
---
---
---
---
μs
μs
μs
A
Max
490
230
720
50
---
---
---
---
---
---
38
ns
nC
μJ
Units Conditions
I
C
=7.5A, V
+
=400V
V
CC
=15V, L=1.2mH
μJ
Energy losses include "tail" and
diode reverse recovery
ns
See CT1
I
C
=7.5A, V
+
=400V
V
CC
=15V, L=1.2mH, T
J
=150°C
Energy losses include "tail" and
diode reverse recovery
See CT1
I
C
=12A, V =400V, V
GE
=15V
T
J
=150°C, I
C
=5A, V
P
=600V
V
+
= 450V,
See CT3
V
CC
=+15V to 0V
T
J
=25°C, V
+
= 400V,
V
GE
=+15V to 0V
T
J
=100°C, V
+
= 400V,
V
GE
=+15V to 0V
T
J
=150°C, V
+
= 360V,
V
GE
=+17.5V to 0V
T
J
=150°C, V
CE
= 50V, V
GE
=11V
+
Recommended Operating Conditions Driver Function
The Input/Output logic timing diagram is shown in Figure 1. For proper operation the device should be used within the
recommended conditions. All voltages are absolute referenced to COM. The V
S
offset is tested with all supplies biased
at 15V differential (Note 3)
Symbol
V
B1,2,3
V
S1,2,3
V
CC
V
ITRIP
V
IN
HIN
Deadtime
Definition
High side floating supply voltage
High side floating supply offset voltage
Low side and logic fixed supply voltage
I
TRIP
input voltage
Logic input voltage LIN, HIN, FLT/EN
High side PWM pulse width
External dead time between HIN and LIN
Min
V
S
+12.5
Note 4
13.5
V
SS
V
SS
1
1
Typ
V
S
+15
---
15
---
---
---
---
Max
V
S
+17.5
450
16.5
V
SS
+5
V
SS
+5
---
---
Units
V
V
V
V
V
μs
μs
Note 3: For more details, see IR21364 data sheet
Note 4: Logic operational for V
s
from COM-5V to COM+600V. Logic state held for V
s
from COM-5V to COM-V
BS
.
(please refer to DT97-3 for more details)
4
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IRAM136-1561A
Static Electrical Characteristics Driver Function
V
BIAS
(V
CC
, V
BS1,2,3
)=15V, T
J
=25ºC, unless otherwise specified. The V
IN
and I
IN
parameters are referenced to COM and
are applicable to all six channels. (Note 3)
Symbol
V
IN,th+
V
IN,th-
V
CCUV+,
V
BSUV+
V
CCUV-,
V
BSUV-
V
CCUVH,
V
BSUVH
I
QBS
I
QCC
I
LK
I
IN+
I
IN-
I
TRIP+
I
TRIP-
V(I
TRIP
)
V(I
Trip,
HYS)
R
on_FLT
Definition
Positive going input threshold for LIN, HIN, FLT/EN
Negative going input threshold for LIN, HIN, FLT/EN
V
CC
/V
BS
supply undervoltage, Positive going threshold
V
CC
/V
BS
supply undervoltage, Negative going threshold
V
CC
and V
BS
supply undervoltage lock-out hysteresis
Quiescent V
BS
supply current
Quiescent V
CC
supply current
Offset Supply Leakage Current
Input bias current V
IN
=3.3V for LIN, HIN, FLT/EN
Input bias current V
IN
=0V for LIN, HIN, FLT/EN
I
TRIP
bias current V
T/ITRIP
=3.3V
I
TRIP
bias current V
T/ITRIP
=0V
I
TRIP
threshold Voltage
I
TRIP
Input Hysteresis
Fault low on resistance
Min
2.5
---
10.6
10.4
---
---
---
---
---
-1
---
-1
0.44
---
---
Typ
---
---
11.1
10.9
0.2
---
---
---
100
--
3.3
---
0.49
0.07
50
Max
---
0.8
11.6
11.4
---
150
3.2
50
195
---
6
---
0.54
---
100
Units
V
V
V
V
V
μA
mA
μA
μA
μA
μA
μA
V
V
Dynamic Electrical Characteristics
V
BIAS
(V
CC
, V
BS1,2,3
)=15V, T
J
=25ºC, unless otherwise specified. Driver only timing unless otherwise specified.
Symbol
T
ON
T
OFF
T
FILIN
T
FILEN
T
EN
T
FLT
T
BLT-ITRIP
T
ITRIP
D
T
M
T
T
FLT-CLR
Parameter
Input to Output propagation turn-
on delay time (see fig.11)
Input to Output propagation turn-
off delay time (see fig. 11)
Input filter time (HIN,LIN)
Input filter time (FLT/EN)
EN low to six switch turn-off
propagation delay (see fig. 3)
I
TRIP
to Fault propagation delay
I
TRIP
Blanking Time
I
TRIP
to six switch turn-off
propagation delay (see fig. 2)
Internal Dead Time injected by
driver
Matching Propagation Delay Time
(On & Off) all channels
Post I
TRIP
to six switch turn-off
clear time (see fig. 2)
Min
---
---
---
100
---
400
100
---
220
---
1.17
1
Typ
---
---
310
200
---
600
150
---
290
40
1.7
1.5
Max
1.15
1.15
---
---
1.35
800
---
1.5
360
75
2.19
1.9
Units Conditions
μs
μs
ns
ns
μs
ns
ns
μs
ns
ns
ms
V
IN
=0 or V
IN
=5V
V
IN
=0 or V
IN
=5V
V
IN
=0 or V
IN
=5V, V
EN
=0
V
IN
=0 or V
IN
=5V, V
ITRIP
=5V
V
IN
=0 or V
IN
=5V, V
ITRIP
=5V
I
C
=7.5A, V
+
=300V
V
IN
=0 or V
IN
=5V
External dead time> 400ns
T
C
= 25°C
T
C
= 100°C
I
C
=7.5A, V
+
=300V
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