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e^E.ml-dona.ucto'i LPioaucti, One..
\s
U
20 STERN AVE.
SPRINGFIELD, NEW JERSEY 07081
U.S.A.
TELEPHONE: (973) 376-2922
(212)227-6005
FAX: (973) 376-8960
5KP SERIES
VRM : 5.0-180 Volts
PPK : 5000 Watts
FEATURES :
* 5000W Peak Pulse Power
* Excellent clamping capability
* Low incremental surge resistance
* Fast response time : typically less
then 1.0 ps from 0 volt to V
BR(min
>
* Typical I
R
less then 1 uA above 10V
TRANSIENT VOLTAGE
SUPPRESSOR
0.360(9.1)
0.340 (8.6)
1.00(25.4)
-
MIN.
0.360(9.1)
0.340 (8.6)
MECHANICAL DATA
* Case : Molded plastic
* Epoxy : UL94V-0 rate flame retardant
* Lead : Axial lead solderable per MIL-STD-202,
Method 208 guaranteed
* Polarity : Cathode polarity band
* Mounting position : Any
* Weight: 2.1 grams
0.052(1.32)
0.048(1.22)
1.00(25.4)
WIN.
Dimensions in inches and (millimeters )
DEVICES FOR BIPOLAR APPLICATIONS
For Bi-directional use C or CA Suffix
Electrical characteristics apply in both directions
MAXIMUM RATINGS
Rating at 25 °C ambient temperature unless otherwise specified.
Rating
Peak Pulse Power Dissipation at tp = 1ms
(Notel, Fig. 4)
Steady State Power Dissipation at TL = 75 °C
Symbol
PPK
Value
Minimum 5000
Unit
w
PD
Lead Lengths 0.375", (9.5mm) (Note 2)
Peak Forward Surge Current, 8.3ms Single Half
Sine-Wave Superimposed on Rated Load
(JEDEC Method) (Note 3)
Operating and Storage Temperature Range
Tji T
STG
'FSM
8.0
w
400
A
-55 to + 150
°C
Notes:
(1) Non-repetitive Current pulse, per Fig. 5 and derated above Ta = 25 °C per Fig. 1
(2) Mounted on Copper Leaf area of 0.79 in
2
(20mm
2
).
(3) Measured on 8.3 ms single half sine-wave or equivalent square wave, duty cycle = 4 pulses per minutes maximum.
ELECTRICAL CHARACTERISTICS
Rating at 25 °C ambient temperature unless otherwise specified
Breakdown Voltage @ IT
( Note 1 )
Reverse
Stand off
Voltage
Maximum
Reverse Leakage
@ VRM
Maximum
Peak Pulse
Current (Noi»2)
I PPM
TYPE
VSR (V)
Min
5KP36
5KP36A
5KP40
5KP40A
6KP43
SKP43A
5KP45
6KP45A
5KP48
5KP48A
5KP51
5KP51A
40.0
40.0
44.4
44.4
47.8
47.8
50.0
50.0
53.3
53.3
56.7
56.7
Maximum
Clamping
Voltage @ I PPM
IT
Max.
48.9
44.2
54.3
49.1
58.4
52.8
61.1
55.3
65.2
58.9
69.3
62.7
73.3
66.3
76.1
68.8
78.7
71.2
81.5
73.7
96.9
78.6
95.1
86.0
(mA)
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0 _j
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5,0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
|
VRM
(V)
36
36
40
40
43
43
45
45
48
48
51
51
54
54
56
56
58
58
60
60
64
64
70
70
75
75
78
78
85
85
90
90
100
100
110
110
120
120
150
150
160
160
180
180
IR
(MA)
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
(A)
78
86
70
78
65
72
62
69
58
65
55
61
52
57
50
55
49
53
47
52
44
49
40
44
37
41
36
40
33
36
31
34
28
31
26
28
24
26
19
21
18
19
16
17
Vc
(V)
64.3
58.1
71.4
64.5
76,7
69.4
80.3
72.7
85.5
77.4
91.1
82,4
96.3
87.1
Maximum
Temperature
Coefficient
OfVBR
<%/•«
0.104
0.104
0.105
0.105
0.105
0.105
0.106
0.106
0.106
0.106
0.107
0.107
0.107
0.107
0.107
0.107
0.107
0.107
0.108
0.108
0.108
0.108
0,108
0.108
0.108
0.108
0,108
0.108
0.108
0.110
0.110
0.110
0.110
0.110
0.112
0.112
0.112
0.112
0.112
0.112
0.114
0,114
0.114
0.114
60.0
SKP54
60.0
5KP54A
5KP56
62.2
5KPS6A
62.2
64.4
SKP58
64.4
SKP58A
66.7
5KP60
66.7
SKP60A
71.1
5KP64
71.1
5KP64A
77.6
5KP70
77.6
5KP70A
83.3
5KP75
5KP75A
83.3
86.7
5KP78
86.7
SKP78A
94.4
5KP86
5KP85A
94.4
100
SKP90
5KP90A
100
SKP100
111
111
SKP100A
122
SKP110
122
SKP110A
133
5KP120
SKP120A
133
167
SKP150
167
5KP150A
5KP160
178
5KP160A
178
200
5KP180
200
5KP180A
Notes:
(1) VBR measured after IT applied
100
91
103
94
107
97
114
103
125
113
134
121
139
126
151
137
160
146
179
162
196
177
211
194
263
242
281
258
316
290
102
92.1
106
95.8
115
104
122
111
136
123
149
135
163
147
204
184
217
196
244
221
for 300 |is., IT = square wave pulse or equivalent.
(2) Surge Current waveform per Fig. 3 and Derate per Fig. 2
(3) VF = 3.5 Volts max. for devices of VR < 100 V, and VF = 5 Volts max. for devices of VR > 100 V.
(4) For Bi-directional devices having VR of 10 Volts and under the IR limit is doubled.
KA i
m\a
ANU onAKAu i era
FIG.1 - PULSE DERATING CURVE
EAK PULSE POWER OR CURRENT
DERATING IN PERCENTAGE, %
rvr OEIMEO
)
c
C
«
J
FIG.2 - MAXIMUM NON-REPETITIVE
PEAK FORWARD SURGE CURRENT
^l
PEAK FORWARD SURGE
CURRENT, AMPERES
8
\
3 m> SINGLE HALF SINE WAVE
JED6C METHOD
t~
j—
I
8
"^
~*""
O O
8
"•-.
**,
jj
^.
j
O O
8
^••s
i
--,
^
"-s
•^
° 8§
\
25
50
75
100
128
150
175
8
H.
!
Ii
8
.L
1
2
4
8
10
i
JO
40
O
^-
0
(SO
100
Ta, AMBIENT TEMPERATURE, ( °C)
NUMBER OF CYCLES AT 60Hz
FIG.3 - STEADY STATE POWER DERATING
3, STEADY STATE POWER DISSIPATION
(WATTS)
FIG.4 - PEAK PULSE POWER RATING CURVE
\
CD
s
t
\
\
N
10
*.
0)
\0
0.1ns
10,15
10m
100)i»
1.0ms
10ms
150
175
200
0
to
0
25
50
75
100
125
tp, PULSE WIDTH
TL, LEAD TEMPERATURE (°C)
FIG.5 - PULSE WAVEFORM
J
#
K
—
>
\t
—
100
Ta=25 "C
M
.<—
:Peak\p
\s
\
—
Pi
Ise Width (Id) is defined
as
mat point where the peak
mm decays to 50%
of In*
I
Im
2
o:
lU
cc.
UJ
CO
=>
IP —
Half Value-
>
*^
5°
^
^\
10x1 000 MS Waveform
as defined by R E A
^^*-»^
.
iS
Q.
0
0
1.0
2.0
3.0
4.0
T, TIME(ms)