®
LS41__60
POW-R-BLOK
TM
Single Diode Isolated Module
600 Amperes / Up to 2600 Volts
Powerex, Inc., 173 Pavilion Lane, Youngwood, Pennsylvania 15697 (724) 925-7272
www.pwrx.com
CONNECTION
DIAGRAM
CONNECTION
DIAGRAM
OUTLINE DRAWING
T
D
G
A
K
H
E
B
J
Description:
Powerex Single Diode Modules are
designed for use in applications
requiring rectification and isolated
packaging. The modules are isolated
for easy mounting with other
components on a common heatsink.
TM
POW-R-BLOK
has been tested and
recognized by the Underwriters
Laboratories.
LS41__60
Single Diode
TM
POW-R-BLOK Module
600 Amperes / 800-2600 Volts
"Q"
M
N
"P"
Features:
Electrically Isolated Heatsinking
Aluminum Nitride Isolator
Compression Bonded Elements
Metal Baseplate
Low Thermal Impedance
for Improved Current Capability
UL Recognized
K
A
L
C
F
R
LS41 Outline Dimensions
Dimension
A
B
C
Inches
3.15
1.50
2.05
3.62
1.97
0.39
0.24
0.75
0.99
0.48
0.12
1.45
1.76
M10 Metric
0.250 Dia.
0.99
3.99
Millimeters
80.0
38.0
52.1
92.0
50.0
9.9
6.1
19.0
25.1
12.2
3.1
36.8
44.7
M10
6.35 Dia.
25.1
101.3
Benefits:
No Additional Insulation
Components Required
Easy Installation
No Clamping Components
Required
Reduce Engineering Time
K
A
D
E
CONNECTION DIAGRAM
F
G
H
Ordering Information:
Select the complete eight-digit
module part number from the table
below.
Example: LS412660 is a 2600V,
600 Ampere Single Diode Isolated
TM
POW-R-BLOK
Module.
J
K
L
M
N
P
Q
R
Applications:
Bridge Circuits
AC & DC Motor Drives
Battery Supplies
Power Supplies
Large IGBT Circuit Front Ends
Type
LS41
Voltage
Volts
(x100)
08
10
12 Thru 26
Current
Amperes
(x10)
60
T
Note: Dimensions are for reference only.
Revision Date: 02/29/2012
®
LS41__60
POW-R-BLOK
TM
Single Diode Isolated Module
600 Amperes / Up to 2600 Volts
Powerex, Inc., 173 Pavilion Lane, Youngwood, Pennsylvania 15697 (724) 925-7272
www.pwrx.com
Absolute Maximum Ratings
Characteristics
Repetitive Peak Reverse Blocking Voltage
Non-Repetitive Peak Reverse Blocking Voltage
(t < 5 msec)
RMS Forward Current
Average Forward Current
Peak One Cycle Surge Current, Non-Repetitive
180° Conduction, T
C
=106°C
60 Hz, V
r
=V
RRM
, Tj=150C
50 Hz, V
r
=V
RRM
, Tj=150C
60 Hz, V
r
=V
RRM
, Tj=25C
50 Hz, V
r
=V
RRM
, Tj=25C
60 Hz, V
r
=0 Tj=150C
50 Hz, V
r
=0, Tj=150C
60 Hz, V
r
=0, Tj=25C
50 Hz, V
r
=0, Tj=25C
Peak Three Cycle Surge Current, Non-Repetitive
60 Hz, V
r
=0 Tj=150C
50 Hz, V
r
=0, Tj=150C
60 Hz, V
r
=0, Tj=25C
50 Hz, V
r
=0, Tj=25C
Peak Ten Cycle Surge Current, Non-Repetitive
60 Hz, V
r
=0 Tj=150C
50 Hz, V
r
=0, Tj=150C
60 Hz, V
r
=0, Tj=25C
50 Hz, V
r
=0, Tj=25C
I t for Fusing for One Cycle
2
Conditions
Symbol
V
RRM
V
RSM
I
F(RMS)
I
F(AV)
I
FSM
I
FSM
I
FSM
I
FSM
I
FSM
I
FSM
I
FSM
I
FSM
I
FSM
I
FSM
I
FSM
I
FSM
I
FSM
I
FSM
I
FSM
I
FSM
It
2
It
2
It
2
It
T
J
T
stg
2
Units
up to 2600
V
RRM
+ 100
950
600
21,000
19,000
24,360
22,040
31,500
28,500
36,540
33,060
25,285
22,875
29,330
26,535
19,865
17,975
23,045
20,850
4,100,000
5,500,000
4,000,000
5,400,000
-40 to +150
-40 to +150
55
6
110
12
816
1.80
2
V
V
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A
A sec
2
A sec
2
A sec
2
A sec
°C
°C
in. – Lb.
Nm
in. – Lb.
Nm
g
lb
V
8.3 milliseconds, Tj=150C
8.3 milliseconds, Tj=25C
10 milliseconds, Tj=150C
10 milliseconds, Tj=25C
Operating Temperature
Storage Temperature
Max. Mounting Torque, M6 Mounting Screw
Max. Mounting Torque, M10 Terminal Screw
Module Weight, Typical
V Isolation @ 25C
V
rms
3000
Revision Date: 02/29/2012
®
LS41__60
POW-R-BLOK
TM
Single Diode Isolated Module
600 Amperes / Up to 2600 Volts
Powerex, Inc., 173 Pavilion Lane, Youngwood, Pennsylvania 15697 (724) 925-7272
www.pwrx.com
Electrical Characteristics, T
J
=25°C unless otherwise specified
Characteristics
Repetitive Peak Reverse Leakage Current
Peak On-State Voltage
Threshold Voltage, Low-level
Slope Resistance, Low-level
Threshold Voltage, High-level
Slope Resistance, High-level
V
TM
Coefficients, Full Range
Symbol
I
RRM
V
FM
V
(TO)1
r
T1
V
(TO)2
r
T2
Test Conditions
Up to 2600V, T
J
=150°C
T
J
=25°C, I
FM
=1500A
T
J
= 150°C, I = 15%I
F(AV)
to
πI
F(AV)
T
J
= 150°C, I =
πI
F(AV)
to I
FSM
T
J
= 150°C, I = 15%I
F(AV)
to I
FSM
V
TM
= A + B Ln I +C I + D Sqrt I
A=
B=
C=
D=
Min.
Max.
40
1.18
0.747
0.243
0.914
0.145
5.05E-01
3.44E-02
8.13E-05
6.57E-03
Units
mA
V
V
mΩ
V
mΩ
Thermal Characteristics
Characteristics
Thermal Resistance, Junction to Case
Thermal Impedance Coefficients
Symbol
R
ΘJ-C
Z
Θ
J-C
Per Module / Junction
Z
Θ
J-C
= K
1
(1-exp(-t/
1
))
+ K
2
(1-exp(-t/
2
))
+ K
3
(1-exp(-t/
3
))
Thermal Resistance, Case to Sink Lubricated
R
ΘC-S
+ K
4
(1-exp(-t/
4
))
Per Module
K
1
= 8.03E-04
K
2
= 1.03E-02
K
3
= 1.64E-02
K
4
= 3.75E-02
Max.
0.0650
1
= 3.39E-04
2
= 3.15E-03
3
= 1.06E-01
4
= 2.066
0.02
°C/W
Units
°C/W
Information presented is based upon manufacturers testing and projected capabilities.
This information is subject to change without notice.
The manufacturer makes no claim as to the suitability of use, reliability, capability,
or future availability of this product.
Revision Date: 02/29/2012
®
LS41__60
POW-R-BLOK
TM
Single Diode Isolated Module
600 Amperes / Up to 2600 Volts
Powerex, Inc., 173 Pavilion Lane, Youngwood, Pennsylvania 15697 (724) 925-7272
www.pwrx.com
Maximum On-State Forward Voltage Drop
( Tj = 150 °C )
5.00
Maximum Transient Thermal Impedance
(Junction to Case)
0.07
0.06
On-State Voltage - Vfm - Volts
Thermal Impedance - Zjc - °C/W
10
100
1000
10000
100000
4.00
0.05
0.04
0.03
0.02
0.01
3.00
2.00
1.00
0.00
0
0.001
0.01
0.1
1
10
100
Instantaneous On-State Current - Ifm - Amperes
Time - t - Seconds
Maximum On-State Power Dissipation
(Sinusoidal Waveform)
700
120°
600
Max. Power Dissipation - Watts
90°
500
400
300
200
100
0
0
100
200
300
400
500
600
700
Average On-State Current - If(av) - Amperes
15°
60°
30°
180°
Maximum Allowable Case Temperature
(Sinusoidal Waveform)
150
145
Max. Case Temperature - Tcase -°C
140
135
130
125
120
115
110
105
100
0
100
200
300
400
500
600
700
90°
120°
180°
15°
30°
60°
0
180
360
CONDUCTION ANGLE
0
180
360
CONDUCTION ANGLE
Average On-State Current - If(av) - Amperes
Maximum On-State Power Dissipation
(Rectangular Waveform)
1000
900
Max. Power Dissipation - Watts
800
700
600
500
400
300
200
100
0
0
200
400
600
800
1000
15°
30°
60°
90°
120°
180°
270°
360°
Maximum Allowable Case Temperature
(Rectangular Waveform)
150
Max. Case Temperature - Tcase -°C
140
130
15°
120
110
100
90
80
30°
60°
90°
120°
180°
270°
360°
0
180
360
CONDUCTION ANGLE
0
CONDUCTION ANGLE
180
360
0
200
400
600
800
1000
Average On-State Current - If(av) - Amperes
Average On-State Current - If(av) - Amperes
Revision Date: 02/29/2012