CREAT BY ART
P6KE SERIES
600 Watts Transient Voltage Suppressor
DO-15
Features
UL Recognized File # E-326243
Plastic package has Underwriters
Laboratory Flammability Classification 94V-0
600 watts surge capability at 10 x 1000 us waveform
Excellent clamping capability
Low Dynamic impedance
Fast response time: Typically less than 1.0ps from
0 volt to VBR for unidirectional and 5.0ns
for bidirectional
Typical I
R
less than 1uA above 10V
High temperature soldering guaranteed:
260℃ / 10 seconds
Green compound with suffix "G" on packing
code & prefix "G" on datecode
Mechanical Data
Case: Molded plastic
Lead: Pure tin plated lead free, solderable per
MIL-STD-202, Method 208
Polarity: Color band denotes cathode except bipolar
Weight: 0.42 gram
Ordering Information (example)
Part No.
P6KE6.8
Package
DO-15
Packing
1.5K / AMMO box
INNER
TAPE
52mm
Packing code
A0
Packing code
(Green)
A0G
Maximum Ratings and Electrical Characteristics
Rating at 25
℃
ambient temperature unless otherwise specified.
Parameter
Peak Power Dissipation at T
A
=25℃, Tp=1ms(Note 1)
Steady State Power Dissipation at T
L
=75℃
Lead Lengths .375", 9.5mm (Note 2)
Peak Forward Surge Current, 8.3ms Single Half
Sine-wave Superimposed on Rated Load
(JEDEC method)(Note 3)
Maximum Instantaneous Forward Voltage at 50A for
Unidirectional Only (Note 4)
Typical Thermal Resistance
Operating and Storage Temperature Range
Symbol
P
PK
P
D
Value
600
5
Unit
Watts
Watts
I
FSM
100
Amps
V
F
R
θJL
R
θJA
T
J
, T
STG
3.5 / 5.0
10
62
-55 to +175
Volts
℃/W
℃
Note 1: Non-repetitive Current Pulse Per Fig. 3 and Derated above T
A
=25℃ Per Fig. 2
Note 2: Mounted on Copper Pad Area 0.4" x 0.4"(10mm x 10mm)
Note 3: 8.3ms Single Half Sine-wave or Equivalent Square Wave, Duty Cycle=4 Pulses Per Minute Maximum
Note 4: V
F
=3.5V for Devices of V
BR
≦200V
and V
F
=5.0V Max. for Device V
BR
>200V
Devices for Bipolar Applications
1. For Bidrectional Use C or CA Suffix for Types P6KE6.8 through Types P6KE440
2. Electrical Characterstics Apply in Both Directions
Version:I13
RATINGS AND CHARACTERISTIC CURVES (P6KE SERIES)
FIG. 1 PEAK PULSE POWER RATING CURVE
100
NON-REPETITIVE
PULSE WAVEFORM
SHOWN in FIG.3
TA= 25℃
PEAK PULSE POWER(P
PP
) or CURRENT(I
PPM
)
DERATING IN PERCENTAGE(%)
125
100
75
50
25
0
0
25
50
75
100
125
150
175
200
FIG.2 PULSE DERATING CURVE
P
PPM
, PEAK PULSE POWER, KW
10
1
0.1
0.1
1
10
100
1000
10000
tp, PULSE WIDTH, (uS)
T
A
, AMBIENT TEMPERATURE (
o
C)
FIG. 3 CLAMPING POWER PULSE WAVEFORM
140
PEAK PULSE CURRENT (%)
120
100
80
60
40
20
0
0
td
0.5
1
1.5
2
t, TIME ms
2.5
3
3.5
4
PULSE WIDTH(td) is DEFINED
as the POINT WHERE the PEAK
CURRENT DECAYS to 50% OF IPPM
100
FIG. 4 MAXIMUM NON-REPETITIVE FORWARD SURGE
CURRENT UNIDIRECTIONAL ONLY
8.3mS Single Half Sine Wave
JEDEC Method
tr=10usec
Peak Value
IPPM
Half Value-IPPM/2
10/1000usec, WAVEFORM
as DEFINED by R.E.A.
IFSM, PEAK FORWARD SURGE CURRENT
(A)
10
1
10
NUMBER OF CYCLES AT 60 Hz
100
FIG. 5 TYPICAL JUNCTION CAPACITANCE
10000
CJ, JUNCTION CAPACITANCE (pF)
A
VR=0
1000
100
TA=25℃
f=1.0MHz
Vsig=50mVp-p
10
1
MEASURED at
STAND-OFF
VOLTAGE,Vwm
10
V(
BR
), BREAKDOWN VOLTAGE (V)
100
Version:I13
ELECTRICAL CHARACTERISTICS (TA=25℃ unless otherwise noted)
General
Part
Number
Nominal
Voltage
Breakdown Voltage
(Note 1)
V
BR
(V)
Min
P6KE68
P6KE68A
P6KE75
P6KE75A
P6KE82
P6KE82A
P6KE91
P6KE91A
P6KE100
P6KE100A
P6KE110
P6KE110A
P6KE120
P6KE120A
P6KE130
P6KE130A
P6KE150
P6KE150A
P6KE160
P6KE160A
P6KE170
P6KE170A
P6KE180
P6KE180A
P6KE200
P6KE200A
P6KE220
P6KE220A
P6KE250
P6KE250A
P6KE300
P6KE300A
P6KE350
P6KE350A
P6KE400
P6KE400A
P6KE440
P6KE440A
68
68
75
75
82
82
91
91
100
100
110
110
120
120
130
130
150
150
160
160
170
170
180
180
200
200
220
220
250
250
300
300
350
350
400
400
440
440
61.2
64.6
67.5
71.3
73.8
77.9
81.9
86.5
90
95
99
105
108
114
117
124
135
143
144
152
153
162
162
171
180
190
198
209
225
237
270
285
315
332
360
380
396
418
(V)
Max
74.8
71.4
82.5
78.8
90.2
86.1
100
95.5
110
105
121
116
132
126
143
137
165
158
176
168
187
179
198
189
220
210
242
231
275
263
330
315
385
368
440
420
484
462
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
55.1
58.1
60.7
64.1
66.4
70.1
73.7
77.8
81.0
85.5
89.2
94.0
97.2
102
105
111
121
128
130
136
138
145
146
154
162
171
175
185
202
214
243
256
284
300
324
342
356
376
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
Test
Current
I
T
(mA)
Stand-Off
Voltage
V
WM
(V)
Maximum
@ V
WM
I
D
(uA)
Maximum
Current
I
PPM
(A)
(Note 2)
6.4
6.8
5.8
6.1
5.3
5.5
4.8
5.0
4.3
4.5
3.9
4.1
3.6
3.8
3.3
3.5
2.9
3.0
2.7
2.8
2.5
2.6
2.4
2.5
2.1
2.2
1.8
1.9
1.7
1.8
1.4
1.5
1.2
1.3
1.0
1.1
1.0
1.04
98.0
92.0
108
103
118
113
131
125
144
137
158
152
173
165
187
179
215
207
230
219
244
234
258
246
287
274
344
328
360
344
430
414
504
482
574
548
631
602
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
0.108
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
0.110
0.110
0.110
0.110
0.110
Maximum
@ I
PPM
Vc
(V)
Maximum
Coefficient
of V
BR
(%/℃)
Reverse Leakage Peak Surge Clamping Voltage Temperature
Notes:
1. V
BR
measure after I
T
applied for 300us, I
T
=square wave pulse or equivalent.
2. Surge current waveform per Figure. 3 and derate per Figure. 2.
3. For bipolar types having V
WM
of 10 volts and under, the I
D
limit is doubled.
4. All terms and symbols are consistent with ANSI/IEEE C62.35.
Version:I13