MOTOROLA PHPM6B10E60D3

Order this document
by MHPM6B15E60D3/D
SEMICONDUCTOR TECHNICAL DATA
Integrated Power Stage
for 230 VAC Motor Drives
Motorola Preferred Devices
These modules integrate a 3–phase inverter and 3–phase
rectifier in a single convenient package. They are designed for 0.5,
1.0, and 1.5 hp motor drive applications at frequencies up to 15
kHz. The inverter incorporates advanced E–Series insulated gate
bipolar transistors (IGBT) matched with ultrafast soft (UFS)
free–wheeling diodes to give optimum performance. The input
bridge uses rugged, efficient diodes with high surge capability. The
top connector pins are designed for easy interfacing to the user’s
control board.
• Short Circuit Rated 10 µs @ 125°C, 400 V
• Pin-to-Baseplate Isolation Exceeds 2500 Vac (rms)
• Compact Package Outline
• Access to Positive and Negative DC Bus
• Gate–Emitter Clamp Diodes for ESD Protection
• UL Recognition Pending
7.0, 10, 15 AMP, 600 VOLT
HYBRID POWER MODULES
ORDERING INFORMATION
Voltage
Rating
Current
Rating
Equivalent
Horsepower
PHPM6B7E60D3
600
7.0
0.5
PHPM6B10E60D3
600
10
1.0
PHPM6B15E60D3
600
15
1.5
Device
CASE 464–03
ISSUE B
MAXIMUM DEVICE RATINGS (TJ = 25°C unless otherwise noted)
Rating
Symbol
Value
Unit
Repetitive Peak Input Rectifier Reverse Voltage (TJ = 25°C to 150°C)
VRRM
900
V
IGBT Reverse Voltage
VCES
600
V
Gate-Emitter Voltage
VGES
± 20
V
Continuous IGBT Collector Current (TC = 25°C)
7E60
10E60
15E60
ICmax
7.0
10
15
A
Continuous IGBT Collector Current (TC = 80°C)
7E60
10E60
15E60
IC80
7.0
9.9
13
A
Repetitive Peak IGBT Collector Current (1)
7E60
10E60
15E60
IC(pk)
14
20
30
A
Continuous Free–Wheeling Diode Current (TC = 25°C)
7E60
10E60
15E60
IFmax
7.0
10
15
A
Continuous Free–Wheeling Diode Current (TC = 80°C)
7E60
10E60
15E60
IF80
5.2
6.8
10
A
Repetitive Peak Free–Wheeling Diode Current (1)
7E60
10E60
15E60
IF(pk)
14
20
30
A
(1) 1.0 ms = 1.0% duty cycle
This document contains information on a product under development. Motorola reserves the right to change or discontinue this product without notice.
Preferred devices are Motorola recommended choices for future use and best overall value.
IGBT
Device
Motorola
Motorola, Inc.
1998
Data
1
MAXIMUM DEVICE RATINGS (TJ = 25°C unless otherwise noted)
Rating
Symbol
Value
Unit
IOmax
20
A
IDC
20
A
IFSM
475
A
Average Converter Output Current (Peak–to–Average ratio of 10, TC = 95°C)
Continuous Input Rectifier Current (TC = 25°C)
Non–Repetitive Peak Input Rectifier Forward Surge Current (2)
(TJ = 95°C prior to start of surge)
IGBT Power Dissipation per die (TC = 95°C)
7E60
10E60
15E60
PD
14
17
23
W
Free–Wheeling Diode Power Dissipation per die (TC = 95°C)
7E60
10E60
15E60
PD
7.4
9.0
13
W
Input Rectifier Power Dissipation per die (TC = 95°C)
PD
13
W
Junction Temperature Range
TJ
– 40 to +150
°C
Short Circuit Duration (VCE = 400 V, TJ = 125°C)
tsc
10
ms
VISO
2500
Vac
Isolation Voltage, pin to baseplate
Operating Case Temperature Range
TC
– 40 to +95
°C
Storage Temperature Range
Tstg
– 40 to +150
°C
—
12
lb–in
Mounting Torque — Heat Sink Mounting Holes
ELECTRICAL CHARACTERISTICS (TJ = 25°C unless otherwise noted)
Characteristic
Symbol
Min
Typ
Max
Unit
Input Rectifier Forward Voltage (I = 15 A)
TJ = 125°C
VF
—
—
0.97
0.88
1.2
—
V
Maximum Instantaneous Reverse Current (V = 900 V)
TJ = 150°C
IR
—
—
50
3000
—
—
mA
IGES
—
—
±50
mA
DC AND SMALL SIGNAL CHARACTERISTICS
Gate–Emitter Leakage Current (VCE = 0 V, VGE = ± 20 V)
ICES
—
5.0
100
mA
VGE(th)
4.0
6.0
8.0
V
Collector–Emitter Breakdown Voltage (IC = 10 mA, VGE = 0 V)
V(BR)CES
600
—
—
V
Collector–Emitter Saturation Voltage (IC = ICmax, VGE = 15 V)
TJ = 125°C
VCE(SAT)
—
—
2.0
1.8
2.4
—
V
Free–Wheeling Diode Forward Voltage (IF = IFmax, VGE = 0 V)
TJ = 125°C
VF
—
—
2.0
1.8
2.3
—
V
7E60
10E60
15E60
Cies
—
—
—
780
1020
1605
—
—
—
pF
Thermal Resistance — IGBT
7E60
10E60
15E60
RqJC
—
—
—
3.1
2.6
1.9
3.8
3.2
2.4
°C/W
Thermal Resistance — Free–Wheeling Diode
7E60
10E60
15E60
RqJC
—
—
—
6.0
4.8
3.4
7.5
6.1
4.2
°C/W
RqJC
—
3.4
4.2
°C/W
Collector–Emitter Leakage Current (VCE = 600 V, VGE = 0 V)
Gate–Emitter Threshold Voltage (VCE = VGE, IC = 1.0 mA)
Input Capacitance (VGE = 0 V, VCE = 10 V, f = 1.0 MHz)
THERMAL CHARACTERISTICS (EACH DIE)
Thermal Resistance — Input Rectifier
(2) 1.0 ms = 10% pulse width (tw 10%)
2
Motorola IGBT Device Data
U
+
C1
V
R1
NTC
W
1
2
D7
D9
D11
D8
D10
D12
3
4
5
D1
D2
16
THREE
PHASE
INPUT
MOTOR
OUTPUT
15
14
13
6
Q1
D3
Q2
12
7
D4
11
8
Q3
D5
Q4
D6
10
Q5
Q6
9
SENSE RESISTOR
Figure 1. Schematic of Module, Showing Pin–Out
and External Connections
Motorola IGBT Device Data
3
RECOMMENDED PCB LAYOUT
VIEW OF BOARD FROM HEAT SINK
(All Dimensions Typical)
NON–PLATED THRU–HOLE
0.140
0.265
0.175
KEEP–OUT ZONES (x4)
0.270
0.250
0.625
0.270
PIN 1
PLATED THRU–HOLES
(x16)
0.065
0.250
3.500
PACKAGE “SHADOW”
0.450
0.625
0.175
0.175
1.350
1.530
OPTIONAL NON–PLATED
THRU–HOLES FOR ACCESS
TO HEAT SINK MOUNTING
SCREWS (x2)
Figure 2. Package Footprint
NOTE:
1. Package is symmetrical, except for a polarizing plastic post near pin 1, indicated by a non–plated thru–hole in the footprint.
2. Dimension of plated thru–holes indicates net size after plating.
3. Access holes for mounting screws may or may not be necessary depending on assembly plan for finished product.
4
Motorola IGBT Device Data
PACKAGE DIMENSIONS
A
Q 3 PL
U
AA
NOTES:
1. DIMENSIONING AND TOLERANCING PER ANSI
Y14.5M, 1982.
2. CONTROLLING DIMENSION: MILLIMETER.
3. LEAD LOCATION DIMENSIONS (ie: G, S, R, H ...)
ARE TO THE CENTER OF THE LEAD.
Y 2 PL
1
2
3
4
5
6
7
J
8
H
B P N
F
R
16
15
14
13
12
11
10
9
DETAIL Z
16 PL
S
G 14 PL
M 4 PL
DETAIL Z
D 16 PL
AB
K
C X
E
V
L
W
DIM
A
B
C
D
E
F
G
H
J
K
L
M
N
P
Q
R
S
U
V
W
Y
X
AA
AB
MILLIMETERS
MIN
MAX
88.39
89.41
38.35
39.37
12.32
13.59
0.89
1.65
8.64
9.65
0.13
0.64
5.97
6.73
33.91
34.67
0.41
1.22
16.26
17.27
3.71
4.72
5.46
6.48
10.92
11.94
24.89
25.91
2.01
2.62
16.76
17.53
15.49
16.26
75.69
76.71
55.88
57.15
29.97
30.99
5.26
5.77
11.30
12.07
2.29
2.79
16.26
17.27
INCHES
MIN
MAX
3.480
3.520
1.510
1.550
0.485
0.535
0.035
0.065
0.340
0.380
0.005
0.025
0.235
0.265
1.335
1.365
0.016
0.048
0.640
0.680
0.146
0.186
0.215
0.255
0.430
0.470
0.980
1.020
0.079
0.103
0.660
0.690
0.610
0.640
2.980
3.020
2.200
2.250
1.180
1.220
0.207
0.227
0.445
0.475
0.090
0.110
0.640
0.680
CASE 464–03
ISSUE B
Motorola reserves the right to make changes without further notice to any products herein. Motorola makes no warranty, representation or guarantee regarding
the suitability of its products for any particular purpose, nor does Motorola assume any liability arising out of the application or use of any product or circuit, and
specifically disclaims any and all liability, including without limitation consequential or incidental damages. “Typical” parameters which may be provided in Motorola
data sheets and/or specifications can and do vary in different applications and actual performance may vary over time. All operating parameters, including “Typicals”
must be validated for each customer application by customer’s technical experts. Motorola does not convey any license under its patent rights nor the rights of
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arising out of, directly or indirectly, any claim of personal injury or death associated with such unintended or unauthorized use, even if such claim alleges that
Motorola was negligent regarding the design or manufacture of the part. Motorola and
are registered trademarks of Motorola, Inc. Motorola, Inc. is an Equal
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Motorola IGBT Device Data
◊
MHPM6B15E60D3/D
5