1.5KE6.8 THRU 1.5KE440CA
T
RANS
Z
ORB
TM TRANSIENT VOLTAGE SUPPRESSOR
Breakdown Voltage - 6.8 to 440 Volts Peak Pulse Power - 1500 Watts
FEATURES
Plastic package has Underwriters Laboratory
Flammability Classification 94V-0
Glass passivated junction
1500W peak pulse power
capability on 10/1000
s waveform
repetition rate (duty cycle): 0.05%
Excellent clamping capability
Low incremental surge resistance
Fast response time: typically less
than 1.0ps from 0 Volts to V
(BR)
for uni-directional
and 5.0ns for bi-directional types
For devices with V
(BR)
>10V, I
D
are typically less
than 1.0
A
High temperature soldering guaranteed:
265C/10 seconds, 0.375" (9.5mm) lead length,
5lbs. (2.3 kg) tension
Includes 1N6267 thru 1N6303
MECHANICAL DATA
Case: Molded plastic body over passivated junction
Terminals: Plated axial leads, solderable per MIL-STD-750,
Method 2026
Polarity: Color band denotes positive end (cathode) except
for bi-directional
Mounting Position: Any
Weight: 0.045 ounce, 1.2 grams
DEVICES FOR BI-DIRECTIONAL APPLICATIONS
For bidirectional use C or CA suffix for types 1.5KE6.8 thru types 1.5KE440A (e.g. 1.5KE6.8C, 1.5KE440CA).
Electrical characteristics apply in both directions.
MAXIMUM RATINGS AND ELECTRICAL CHARACTERISTICS
Ratings at 25C ambient temperature unless otherwise specified.
SYMBOL
VALUE
UNITS
Peak pulse power dissipation with a 10/1000
s
waveform
(NOTE 1, Fig. 1)
P
PPM
Minimum 1500
Watts
Peak pulse current with a 10/1000
s waveform
(NOTE 1)
I
PPM
SEE TABLE 1
Amps
Steady state power dissipation at T
L
=75C
lead lengths, 0.375" (9.5mm)
(NOTE 2)
P
M(AV)
6.5
Watts
Peak forward surge current, 8.3ms single half sine-wave
superimposed on rated load (JEDEC Method)
unidirectional only
(NOTE 3)
I
FSM
200
Amps
Maximum instantaneous forward voltage at 100A for
unidirectional only
(NOTE 4)
V
F
3.5/5.0
Volts
Operating junction and storage temperature range
T
J
, T
STG
-55 to +175
C
NOTES:
(1) Non-repetitive current pulse, per Fig. 3 and derated above T
A
=25C per Fig. 2
(2) Mounted on copper pad area of 1.6 x 1.6" (40 x 40mm) per Fig. 5
(3) Measured on 8.3ms single half sine-wave or equivalent square wave duty cycle=4 pulses per minute maximum
(4) V
F
=3.5V for devices of V
(BR)
220V and V
F
=5.0 Volt max. for devices of V
(BR)
>220V
1.0 (25.4)
MIN.
1.0 (25.4)
MIN.
0.375 (9.5)
0.285 (7.2)
0.210 (5.3)
0.190 (4.8)
DIA.
0.042 (1.07)
0.038 (0.96)
DIA.
Case Style 1.5KE
Dimensions in inches and (millimeters)
1/21/99
ELECTRICAL CHARACTERISTICS at (T
A
=25 C unless otherwise noted) TABLE 1 (Cont'd)
Breakdown Voltage
Maximum
Maximum
Maximum
General
V
(BR)
Test
Stand-off
Reverse
Peak Pulse
Clamping
Maximum
JEDEC
Semiconductor
(Volts)
(NOTE 1)
Current
Voltage
Leakage
Current I
PPM
Voltage at I
PPM
Temperature
TYPE
PART
at V
WM
at V
WM
(NOTE 2)
Vc
Coefficient of V
(BR)
NUMBER
NUMBER
Min
Max
(mA) I
T
(Volts)
I
D (NOTE 4)
(
A)
Amps
(Volts)
(% / C)
1N6291A
1.5KE68A
64.6
71.4
1.0
58.1
5.0
16.3
92.0
0.104
1N6292
1.5KE75
67.5
82.5
1.0
60.7
5.0
13.9
109
0.105
1N6292A
1.5KE75A
71.3
78.8
1.0
64.1
5.0
14.6
104
0.105
1N6293
1.5KE82
73.8
90.2
1.0
66.4
5.0
12.7
118
0.105
1N6293A
1.5KE82A
77.9
86.1
1.0
70.1
5.0
13.3
113
0.105
1N6294
1.5KE91
81.9
100.0
1.0
73.7
5.0
11.5
131
0.106
1N6294A
1.5KE91A
86.5
95.5
1.0
77.8
5.0
12.0
125
0.106
1N6295
1.5KE100
90.0
110
1.0
81.0
5.0
10.4
144
0.106
1N6295A
1.5KE100A
95.0
105
1.0
85.5
5.0
10.9
137
0.106
1N6296
1.5KE110
99.0
121
1.0
89.2
5.0
9.5
158
0.107
1N6296A
1.5KE 110A
105
116
1.0
94.0
5.0
9.9
152
0.107
1N6297
1.5KE120
108
132
1.0
97.2
5.0
8.7
173
0.107
1N6297A
1.5KE120A
114
126
1.0
102
5.0
9.1
165
0.107
1N6298
1.5KE130
117
143
1.0
105
5.0
8.0
187
0.107
1N6298A
1.5KE130A
124
137
1.0
111
5.0
8.4
179
0.107
1N6299
1.5KE150
136
165
1.0
121
5.0
7.0
215
0.108
1N6299A
1.5KE150A
143
158
1.0
128
5.0
7.2
207
0.106
1N6300
1.5KE160
144
176
1.0
130
5.0
6.5
230
0.106
1N6300A
1.5KE160A
152
168
1.0
136
5.0
6.8
219
0.108
1N6301
1.5KE170
153
187
1.0
138
5.0
6.1
244
0.108
1N6301A
1.5KE170A
162
179
1.0
145
5.0
6.4
234
0.108
1N6302
1.5KE180
162
198
1.0
146
5.0
5.8
258
0.108
1N6302A
1.5KE180A
171
189
1.0
154
5.0
6.1
246
0.108
1N6303
1.5KE200
180
220
1.0
162
5.0
5.2
287
0.108
1N6303A
1.5KE200A*
190
210
1.0
171
5.0
5.5
274
0.108
1.5KE220
198
242
1.0
175
5.0
4.4
344
0.108
1.5KE220A*
209
231
1.0
185
5.0
4.6
328
0.108
1.5KE250
225
275
1.0
202
5.0
4.2
360
0.110
1.5KE250A
237
263
1.0
214
5.0
4.4
344
0.110
1.5KE300
270
330
1.0
243
5.0
3.5
430
0.110
1.5KE300A
285
315
1.0
256
5.0
3.6
414
0.110
1.5KE350
315
385
1.0
284
5.0
3.0
504
0.110
1.5KE350A
333
368
1.0
300
5.0
3.1
482
0.110
1.5KE400
360
440
1.0
324
5.0
2.6
574
0.110
1.5KE400A
380
420
1.0
342
5.0
2.7
548
0.110
1.5KE440
396
484
1.0
356
5.0
2.4
631
0.110
1.5KE440A
418
462
1.0
376
5.0
2.5
602
0.110
NOTES:
(1) V
(BR)
measured after I
T
applied for 300
s, I
T
=square wave pulse or equivalent
(2) Surge current waveform per Fig. 3 and derate per Fig. 2
(3) All terms and symbols are consistent with ANSI/IEEE CA62.35
(4) For bidirectional types with V
R
10 volts and less the I
D
limit is doubled
* Bidirectional versions are UL approved under component across the line protection, ULV1414 file number E108274
(1.5KE200CA, 1.5KE220CA)
+ UL listed for Telecom applications protection, 497B, file number E136766 for both uni-directional and bi-directional devices
APPLICATION
This series of Silicon Transient Suppressors is used in applications where large voltage transients can permanently damage voltage-sensitive components.
The TVS diode can be used in applications where induced lightning on rural or remote transmission lines presents a hazard to electronic circuitry
(ref: R.E.A. specification P.E. 60).
This Transient Voltage Suppressor diode has a pulse power rating of 1500 watts for one millisecond. The response time of TVS diode clamping action is effectively instan-
taneous (1 x 10
-9
seconds bidirectional); therefore, they can protect integrated circuits, MOS devices, hybrids, and other voltage sensitive semiconductors and components.
TVS diodes can also be used in series or parallel to increase the peak power ratings.
0
1.0
2.0
3.0
4.0
0
100
150
50
0.1
s
1.0
s
10
s
100
s
1.0ms
10ms
0.1
1.0
10
100
0
50
100
150
200
0
25
50
75
100
25
75
125
175
5
10
100
500
10
100
1,000
10,000
1
10
100
10
100
200
0
25
50
75
100
125
150
175
200
0
1.0
2.0
3.0
5.0
4.0
6.0
8.0
7.0
RATINGS AND CHARACTERISTIC CURVES 1.5KE6.8 THRU 1.5KE440CA
FIG. 1 - PEAK PULSE POWER RATING CURVE
P
PPM
, PEAK PULSE POWER, kW
td, PULSE WIDTH, sec.
T
A
, AMBIENT TEMPERATURE, C
FIG. 4 - TYPICAL JUNCTION CAPACITANCE
FIG. 3 - PULSE WAVEFORM
t, TIME,ms
V
(BR)
, BREAKDOWN VOLTAGE, VOLTS
T
L,
LEAD TEMPERATURE,C
NUMBER OF CYCLES AT 60 H
Z
I
PPM,
PEAK PULSE CURRENT
, %
PEAK PULSE POWER (P
PP
) or CURRENT
(I
PP
)
DERA
TING IN PERCENT
AGE, %
C
J
, CAP
ACIT
ANCE , pF
PEAK FOR
W
ARD SURGE CURRENT
,
AMPERES
NON-REPETITIVE
PULSE WAVEFORM
SHOWN in FIG. 3
T
A
=25C
PULSE WIDTH (td) is DEFINED
as the POINT WHERE the PEAK
CURRENT DECAYS to 50% of I
PP
tr=10
sec.
UNIDIRECTIONAL
BIDIRECTIONAL
V
R
=0
V
R
=RATED
STAND-OFF
VOLTAGE
f=1 MHz
Vsig=50mV
P-P
T
J
=25
C
1.6 x 1.6 x 0.040"
(40 x 40 x 1mm.)
COPPER HEAT SINKS
60 H
Z
RESISTIVE OR
INDUCTIVE LOAD
8.3ms SINGLE HALF SINE-WAVE
(JEDEC Method)
T
J
=T
J
max.
td
HALF VALUE - I
PP
2
10/1000
sec. WAVEFORM
as DEFINED by R.E.A.
FIG. 6 - MAXIMUM NON-REPETITIVE PEAK FORWARD
SURGE CURRENT UNI-DIRECTIONAL ONLY
PEAK VALUE
I
PPM
FIG. 5 - STEADY STATE POWER DERATING CURVE
PM
(A
V),
STEADY
ST
A
TE POWER DISSIP
A
TION,
W
A
TTS
FIG. 2 - PULSE DERATING CURVE
= 0.375" (9.5mm)
LEAD LENGTHS
L
0.5
1
2.0
10
50
0.1
0.2
1.0
2.0
10
20
100
0.5
1
2.0
10
20
50
0.1
0.2
1.0
2.0
10
20
100
0.5
1
2.0
10
20
50
0.1
0.2
1.0
2.0
10
20
100
0.5
1
2.0
10
20
50
0.1
0.2
1.0
2.0
10
20
100
RATINGS AND CHARACTERISTIC CURVES 1.5KE6.8 THRU 1.5KE440CA
FIG. 7 - INCREMENTAL CLAMPING VOLTAGE CURVE
UNI-DIRECTIONAL
FIG. 8 - INCREMENTAL CLAMPING VOLTAGE CURVE
UNI-DIRECTIONAL
FIG. 9 - INCREMENTAL CLAMPING VOLTAGE CURVE
BI-DIRECTIONAL
FIG. 10 - INCREMENTAL CLAMPING VOLTAGE CURVE
BI-DIRECTIONAL
WAVEFORM:
8 X 20 IMPULSE
V
C
=V
C
-V
(BR)
VC, INCREMENT
AL
CLAMPING VOL
T
AGE
VC, INCREMENT
AL
CLAMPING VOL
T
AGE
VC, INCREMENT
AL
CLAMPING VOL
T
AGE
1.5KE200
I
PP,
PEAK PULSE CURRENT, AMPS
WAVEFORM:
10 X 1000 IMPULSE
V
C
=V
C
-V
(BR)
I
PP,
PEAK PULSE CURRENT, AMPS
WAVEFORM:
8 X 20 IMPULSE
V
C
=V
C
-V
(BR)
I
PP,
PEAK PULSE CURRENT, AMPS
I
PP,
PEAK PULSE CURRENT, AMPS
WAVEFORM:
10 X 1000 IMPULSE
V
C
=V
C
-V
(BR)
1.5KE130
1.5KE100
1.5KE75
1.5KE39
1.5KE33
1.5KE6.8
1.5KE9.1
1.5KE18
1.5KE12
1.5KE200
1.5KE130
1.5KE75
1.5KE39
1.5KE33
1.5KE6.8
1.5KE9.1
VC, INCREMENT
AL
CLAMPING VOL
T
AGE
1.5KE200C
1.5KE7.5C
1.5KE75C
1.5KE39C
1.5KE30C
1.5KE15C
1.5KE11C
1.5KE200C
1.5KE7.5C
1.5KE75C
1.5KE39C
1.5KE30C
1.5KE15C
1.5KE11C