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1.5KExxA TRANSILTM. 1.5KExxA Datasheet

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1.5KExxA TRANSILTM. 1.5KExxA Datasheet
















1.5KExxA TRANSILTM. Datasheet pdf. Equivalent













Part

1.5KExxA

Description

(1.5KExxA) TRANSILTM



Feature


www.DataSheet4U.com ® 1.5KE6V8A/440A 1.5KE6V8CA/440CA TRANSILTM FEATURES s s s s s s PEAK PULSE POWER : 1500 W (10/1000µs) BREAKDOWN VOLTAGE RANGE : From 6.8V to 440 V UNI AND BIDIRECTI ONAL TYPES LOW CLAMPING FACTOR FAST RES PONSE TIME UL RECOGNIZED DESCRIPTION T ransil diodes provide high overvoltage protection by clamping action. Their in stantaneous response.
Manufacture

ST Microelectronics

Datasheet
Download 1.5KExxA Datasheet


ST Microelectronics 1.5KExxA

1.5KExxA; to transient overvoltages makes them pa rticularly suited to protect voltage se nsitive devices such as MOS Technology and low voltage supplied IC’s. ABSOLU TE MAXIMUM RATINGS (Tamb = 25°C) Symbo l PPP P IFSM Tstg Tj TL Parameter Peak pulse power dissipation (see note 1) Po wer dissipation on infinite heatsink No n repetitive surge peak forward current for unidirectional t.


ST Microelectronics 1.5KExxA

ypes Storage temperature range Maximum j unction temperature Maximum lead temper ature for soldering during 10s at 5mm f rom case Tj initial = Tamb Tamb = 75°C tp = 10ms Tj initial = Tamb Value 1500 5 200 - 65 to + 175 175 230 Unit W W A °C °C °C DO-201 Note 1 : For a su rge greater than the maximum values, th e diode will fail in short-circuit. TH ERMAL RESISTANCES Symb.


ST Microelectronics 1.5KExxA

ol Rth (j-l) Rth (j-a) Junction to leads Junction to ambient on printed circuit . Llead = 10 mm Parameter Value 20 75 U nit °C/W °C/W www.DataSheet4U.com Fe bruary 2002- Ed: 3A 1/6 www.DataSheet 4U.com 1.5KExx ELECTRICAL CHARACTERIST ICS (Tamb = 25°C) I Symbol VRM VBR VC L IRM IPP Parameter Stand-off voltage Breakdown voltage Clamping voltage Leak age current @ VRM Pea.





Part

1.5KExxA

Description

(1.5KExxA) TRANSILTM



Feature


www.DataSheet4U.com ® 1.5KE6V8A/440A 1.5KE6V8CA/440CA TRANSILTM FEATURES s s s s s s PEAK PULSE POWER : 1500 W (10/1000µs) BREAKDOWN VOLTAGE RANGE : From 6.8V to 440 V UNI AND BIDIRECTI ONAL TYPES LOW CLAMPING FACTOR FAST RES PONSE TIME UL RECOGNIZED DESCRIPTION T ransil diodes provide high overvoltage protection by clamping action. Their in stantaneous response.
Manufacture

ST Microelectronics

Datasheet
Download 1.5KExxA Datasheet




 1.5KExxA
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1.5KE6V8A/440A
® 1.5KE6V8CA/440CA
TRANSILTM
FEATURES
s PEAK PULSE POWER : 1500 W (10/1000µs)
s BREAKDOWN VOLTAGE RANGE :
From 6.8V to 440 V
s UNI AND BIDIRECTIONAL TYPES
s LOW CLAMPING FACTOR
s FAST RESPONSE TIME
s UL RECOGNIZED
DESCRIPTION
Transil diodes provide high overvoltage protection
by clamping action. Their instantaneous response
to transient overvoltages makes them particularly
suited to protect voltage sensitive devices such
as MOS Technology and low voltage supplied
IC’s.
DO-201
ABSOLUTE MAXIMUM RATINGS (Tamb = 25°C)
Symbol
Parameter
PPP Peak pulse power dissipation (see note 1) Tj initial = Tamb
P Power dissipation on infinite heatsink
Tamb = 75°C
IFSM Non repetitive surge peak forward current tp = 10ms
for unidirectional types
Tj initial = Tamb
Tstg Storage temperature range
Tj Maximum junction temperature
TL Maximum lead temperature for soldering during 10s at 5mm
from case
Note 1 : For a surge greater than the maximum values, the diode will fail in short-circuit.
Value
1500
5
200
- 65 to + 175
175
230
Unit
W
W
A
°C
°C
°C
THERMAL RESISTANCES
Symbol
Parameter
Rth (j-l)
Rth (j-a)
Junction to leads
Junction to ambient on printed circuit. Llead = 10 mm
Value
20
75
Unit
°C/W
°C/W
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February 2002- Ed: 3A
1/6




 1.5KExxA
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1.5KExx
ELECTRICAL CHARACTERISTICS (Tamb = 25°C)
Symbol
Parameter
VRM Stand-off voltage
VBR Breakdown voltage
VCL Clamping voltage
IRM Leakage current @ VRM
IPP Peak pulse current
αT Voltage temperature coefficient
VF Forward voltage drop
I
IF
VCL VBR
VRM
VF
I RM
I PP
V
Types
Unidirectional Bidirectional
1.5KE6V8A
1.5KE6V8CA
1.5KE7V5A
1.5KE7V5CA
1.5KE10A
1.5KE10CA
1.5KE12A
1.5KE12CA
1.5KE15A
1.5KE15CA
1.5KE18A
1.5KE18CA
1.5KE22A
1.5KE22CA
1.5KE24A
1.5KE24CA
1.5KE27A
1.5KE27CA
1.5KE30A
1.5KE30CA
1.5KE33A
1.5KE33CA
1.5KE36A
1.5KE36CA
1.5KE39A
1.5KE39CA
1.5KE47A
1.5KE47CA
1.5KE56A
1.5KE56CA
1.5KE62A
1.5KE62CA
1.5KE68A
1.5KE68CA
1.5KE82A
1.5KE82CA
1.5KE100A
1.5KE100CA
1.5KE120A
1.5KE120CA
1.5KE150A
1.5KE150CA
1.5KE180A
1.5KE180CA
IRM @ VRM
max
µA V
1000 5.8
500 6.4
10 8.55
5 10.2
1 12.8
1 15.3
1 18.8
1 20.5
1 23.1
1 25.6
1 28.2
1 30.8
1 33.3
1 40.2
1 47.8
1 53.0
1 58.1
1 70.1
1 85.5
1 102
1 128
1 154
VBR @ IR
min nom max
VCL @ IPP VCL @ IPP
max max
αT
max
C
typ
note2
10/1000µs 8/20µs note3 note4
V V V mA V A V A 10-4/ °C pF
6.45 6.8 7.14 10 10.5 143 13.4 746 5.7 9500
7.13 7.5 7.88 10 11.3 132 14.5 690 6.1 8500
9.5 10 10.5 1 14.5 100 18.6 538 7.3 7000
11.4 12 12.6 1 16.7 90 21.7 461 7.8 6000
14.3 15 15.8 1 21.2 71 27.2 368 8.4 5000
17.1 18 18.9 1 25.2 59.5 32.5 308 8.8 4300
20.9 22 23.1 1 30.6 49 39.3 254 9.2 3700
22.8 24 25.2 1 33.2 45 42.8 234 9.4 3500
25.7 27 28.4 1 37.5 40 48.3 207 9.6 3200
28.5 30 31.5 1 41.5 36 53.5 187 9.7 2900
31.4 33 34.7 1 45.7 33 59.0 169 9.8 2700
34.2 36 37.8 1 49.9 30 64.3 156 9.9 2500
37.1 39 41.0 1 53.9 28 69.7 143 10.0 2400
44.7 47 49.4 1 64.8 23.2 84 119 10.1 2050
53.2 56 58.8 1 77 19.5 100 100 10.3 1800
58.9 62 65.1 1 85 17.7 111 90 10.4 1700
64.6 68 71.4 1 92 16.3 121 83 10.4 1550
77.9 82 86.1 1 113 13.3 146 69 10.5 1350
95.0 100 105 1 137 11 178 56 10.6 1150
114 120 126 1 165 9.1 212 47 10.7 1000
143 150 158 1 207 7.2 265 38 10.8 850
171 180 189 1 246 6.1 317 31.5 10.8 725
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 1.5KExxA
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1.5KExx
Types
Unidirectional Bidirectional
1.5KE200A
1.5KE200CA
1.5KE220A
1.5KE220CA
1.5KE250A
1.5KE250CA
1.5KE300A
1.5KE300CA
1.5KE350A
1.5KE350CA
1.5KE400A
1.5KE400CA
1.5KE440A
1.5KE440CA
IRM @ VRM
max
µA
1
1
1
1
1
1
1
V
171
188
213
256
299
342
376
VBR @ IR
min nom max
VCL @ IPP VCL @ IPP
max max
αT
max
C
typ
note2
10/1000µs 8/20µs note3 note4
V V V mA V A V A 10-4/ °C pF
190 200 210 1 274 5.5 353 28 10.8 675
209 220 231 1 328 4.6 388 26 10.8 625
237 250 263 1 344 5.0 442 23 11 560
285 300 315 1 414 5.0 529 19 11 500
332 350 368 1 482 4.0 618 16 11 430
380 400 420 1 548 4.0 706 14 11 390
418 440 462 1 603 3.5 776 13 11 360
% I PP
100
10 s
PULSE WAVEFORM 10/1000 s
50
Fig. 1: Peak pulse power dissipation versus
initial junction temperature (printed circuit
0
1000 s
Note 2 :
Note 3 :
Note 4 :
Pulse test: tp < 50 ms.
VBR = αT * (Tamb - 25) * VBR(25°C).
VR = 0 V, F = 1 MHz. For bidirectional types,
capacitance value is divided by 2.
t
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