SEMICONDUCTOR
RoHS
NKD135A/NKJ135A/NKC135A Series
RoHS
Nell High Power Products
Standard Recovery Diodes, 135 A
(INT-A-PAK
Power Modules)
24
23
23
1
34+2
-
12+1
-
3
2
15+1
80+1
94+1
2−Ø6.3
3-M6 SCREWS
36+2
-
High voltage
Electrically isolated by DBC ceramic (Al
2
O
3
)
3000 V
RMS
isolating voltage
lndustrial standard package
High surge capability
Modules uses high voltage power diodes
in four basic configurations
Simple mounting
UL approved file E320098
Compliant to RoHs
Designed and qualified for multiple level
29+1
-
FEATURES
All dimensions in millimeters
BENEFITS
DC motor control and drives
Battery charges
Welders
Power converters
~
1
+
2
-
3
-
1
+
2
+
3
0.8
PRODUCT SUMMARY
I
F(AV)
Type
135A
Modules-Diode, High Voltage
+
1
-
2
-
3
MAJOR RATINGS AND CHARACTERISTICS
SYMBOL
I
F(AV)
I
F(RMS)
I
FSM
I
2
t
9
7+0.5
NKD
NKJ
NKC
CHARACTERISTICS
VALUES
135
UNIT
A
ºC
T
C
100
212
50 HZ
60 HZ
50 HZ
60 HZ
3800
3979
72.2
65.7
722
A
kA
2
s
I
2
√t
V
RRM
t
J
Range
kA
2
√s
V
ºC
400 to 1600
-40 to 150
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Page 1 of 4
SEMICONDUCTOR
RoHS
NKD135A/NKJ135A/NKC135A Series
RoHS
Nell High Power Products
ELECTRICAL SPECIFICATIONS
VOLTAGE RATINGS
TYPE
NUMBER
VOLTAGE
CODE
V
RRM
,
MAXIMUM REPETITIVE
PEAK REVERSE VOLTAGE
V
400
800
1200
1400
1600
V
RSM
, MAXIMUM NON-REPETITIVE
PEAK REVERSE VOLTAGE
V
l
RRM
AT T
J
= 150°
C
mA
04
NKD135
NKJ135
NKC135
08
12
14
16
500
900
1300
1500
1700
8
FORWARD CONDUCTION
PARAMETER
Maximum average on-state current
at case temperature
Maximum RMS on-state current
Maximum peak, one-cycle, on-state
non-reptitive surge current
SYMBOL
I
F(AV)
I
F(RMS)
I
FSM
TEST CONDITIONS
180° conduction, half sine wave
VALUES
135
100
UNIT
A
ºC
DC at 100°C case temperature
t
= 10ms
t
= 8.3ms
t
= 10ms
No voltage
reapplied
212
3800
3979
A
Sine half wave,
initial T
J
= T
J
maximum
72.2
65.7
50.5
46
722
1.4
kA
2
√
s
kA
2
s
Maximum
l
2
t
for fusing
I
2
t
t
= 8.3ms
t
= 10ms
t
= 8.3ms
100%V
RRM
reapplied
Maximum l
2
√t
for fusing
Maximum forward voltage drop
I
2
√t
V
FM
t = 0.1 to 10 ms, no voltage reapplied
l
FM
= 400A, T
J
= 25°C
,
180°
conduction
V
BLOCKING
PARAMETER
Maximum peak reverse and
off-state leakage current
RMS insulation Voltage
SYMBOL
l
RRM
V
ISO
TEST CONDITIONS
T
J
= 150°C
50 Hz, circuit to base, all terminals shorted, t = 1s
t = 60s
VALUES
8
3000
2500
UNITS
mA
V
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Page 2 of 4
SEMICONDUCTOR
RoHS
NKD135A/NKJ135A/NKC135A Series
RoHS
Nell High Power Products
THERMAL AND MECHANICAL SPECIFICATIONS
PARAMETER
Maximum junction operating
temperature range
Maximum thermal resistance,
junction to case per junction
Maximum thermal resistance,
case to heatsink per module
SYMBOL
T
J
,T
stg
TEST CONDITIONS
VALUES
-40 to 150
UNIT
°C
R
thJC
DC operation
Mounting surface, smooth,
flat and greased
A mounting compound is recommended
and the torque should be rechecked after
a period of 3 hours to allow for the spread
of the compound. Lubricated threads.
0.31
°C/W
R
thCS
0.09
Mounting torque,
±10%
IAP to heatsink, M6
busbar to IAP, M6
4 to 6
N.m
Approximate weight
Case style
220
7.8
New INT-A-PAK
g
oz.
Ordering Information Tabel
Device code
NKD
1
135
2
/
16
A
3
4
1
2
3
4
-
Module type, NKD, NKJ and NKC for ( Diode + Diode ) module
-
Current rating : I
F(AV)
-
Voltage code x 100 = V
RRM
-
Assembly type,
''A''
for soldering type
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Page 3 of 4
SEMICONDUCTOR
RoHS
NKD135A/NKJ135A/NKC135A Series
RoHS
Nell High Power Products
Fig.1 On-state current vs. voltage characteristic
4.0
3.5
On-state peak voltage (V)
3.0
2.5
2.0
1.5
1.0
0.5
10
T
J
= 150°C
Fig.2 Transient thermal impedance
(junction-case)
0.32
Transient thermal impedance (°C/W)
0.28
0.24
0.02
0.16
0.12
0.08
0.04
0.00
0.001
100
1000
10000
0.01
0.1
Time (s)
1
10
On-state current (A)
Fig.3 Power consumption vs. average current
Fig.4 Case temperature vs. on-state average
current
250
Maximum power consumption (W)
180
º
90
º
160
140
Conduction Angle
200
Conduction Angle
30
º
Case temperature (°C)
120
100
80
60
40
150
100
50
30
º
90
º
180
º
0
0
30
60
90
120
150
180
0
40
80
120
160
200
240
On-state average current (A)
On-state average current (A)
Fig.5 On-state surge current vs cycles
4.5
90
80
On-state surge current (KA)
4
I
2
t ( KA
2
S )
70
60
50
40
30
2
20
10
1
1
10
Cycles @50Hz
100
0
1
3
Fig.6 I
2
t Characteristic
10
Time (ms)
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Page 4 of 4