ABSOLUTE MAXIMUM RATINGS
UNIT
l
FSM
I
F(AV)
A
SYMBOL
Maximum average forward
current
A
Non- repetitive avalanche energy per leg
PARAMETER
TEST CONDITIONS
150
300
22000
2500
15
mJ
l
AR
E
AS
VALUES
per leg
per device
50% duty cycle at T = 138 C, rectangular waveform
C
°
1
Maximum peak one cycle non-repetitive
surge current per leg
Repetitive avalanche current per leg
5 µs sine or 3 µs rect. pulse
10 ms sine or 6 ms rect. pulse
Following any rated load
condition and with rated
V applied
RRM
T =25 C, l =13A, L=0.2mH
J AS
°
Current decaying linearly to zero in 1 sµ
Frequency limited by T maximum V =1.5xV typical
J A R
ELECTRICAL SPECIFICATIONS
UNIT
V
FM
(1)
V
SYMBOL
Maximum forward voltage drop per leg
PARAMETER
TEST CONDITIONS
0.91
1.09
0.72
0.85
100
mA
l
RM
(1)
VALUES
50
pF
nH
V/ sµ
4150
6
10000
150A
300A
150A
300A
Maximum reverse leakage current per leg
T = 25 C
J
°
T = 125 C
J
°
Maximum junction capacitance per leg
Typical series inductance per leg
Maximum voltage rate of change
C
T
L
S
dV/dt
Rated V
R
From top of terminal hole to mounting plane
V = 5 V (test signal range 100 kHz to 1 MH ) 25 C
R DC
Z °
T = 25 C
J
°
T = 125 C
J
°
V = Rated V
R R
Note
(1) Pulse width < 300 µs, duty cycle < 2%
THERMAL-MECHANICAL SPECIFICATIONS
UNIT
SYMBOL
Maximum junction and storage temperature range
PARAMETER
lbf ∙ in
Thermal resistance, junction to case per leg
Thermal resistance, junction to case
per module
Thermal resistance, case to heatsink
Weight
TO-244 (non-insulated)
TO-244 (insulated)
T ,T
J Stg
R
thJC
R
thCS
MIN.
TYP.
MAX.
lbf ∙ in
(N∙m)
g(oz.)
ºC
ºC/W
175
0.28
0.14
-
-
-
53.1 (6)
40 (4.6)
44.2 (5)
80
35
-
-
-
100 (3.53)
85 (3)
0.10
-
-
-
-55
-
-
-
-
-
35.4 (4)
30 (3.4)
30 (3.4)
-
-
Mounting torque
Mounting torque center hole
Terminal torque
vertical pull
2
" lever pull
-
-
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Page 2 of 6
NKSD300-100 Series
RoHS
RoHS
V
1000 (1min)
Maximum RMS insulation voltage
(for insulated type)
V
INS
TO-244 (non-insulated)
TO-244 (insulated)
--
0.40
TO-244AA compatible
JEDEC
Case style
TO-244 (non-insulated)
TO-244 (insulated)
0.20
--
Nell High Power Products
R
thJC
μA