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2322594 Datenblatt(PDF) 4 Page - Vishay Siliconix

Teilenummer 2322594
Bauteilbeschribung  Varistors
Download  18 Pages
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Hersteller  VISHAY [Vishay Siliconix]
Direct Link  http://www.vishay.com
Logo VISHAY - Vishay Siliconix

2322594 Datenblatt(HTML) 4 Page - Vishay Siliconix

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Document Number: 29081
For technical questions contact: nlr.europe@vishay.com
www.vishay.com
Revision: 28-Apr-04
29
2322 59. .....
Varistors
Vishay BCcomponents
Notes
1. Lists with products certified according to UL (E98144), VDE (122380E + 40002622), CSA (219883) and CECC (42201-001) are available at
www.vishay.com or on request.
2. The sinusoidal voltage is assumed as the normal operating condition. If a non-sinusoidal voltage is present, type selection should be based
on multiplying the peak voltage by a factor of 0.707.
3. The voltage measured at 1 mA meets the requirements of “paragraph 4.3 of CECC specification 42000”.
The tolerance on the voltage at 1 mA is ±10%.
4. High energy surges are generally of longer duration. The maximum energy for one pulse of 10 × 1000 µs is given as a reference for longer
duration pulses. This pulse can be characterised by peak current (Ip) and pulse width t2 (virtual time of half Ip value, following “IEC 60060-2,
section 6” ). If Vp is the clamping voltage corresponding to Ip, the energy absorbed in the varistor is determined by the formula:
where:
a) K is dependent on the value of t2 when the value of t1 is between 8 µs and 10 µs; see Peak Current as a Function of Pulse Width drawing.
5. A current wave of 8 × 20 µs (requirement of “paragraph B.2.10.1 of CECC specification 42000” ) is used as a standard for pulse current and
clamping voltage ratings. The maximum non-repetitive transient current is given for one pulse applied during the life of the component.
6. Replace the last digit of the catalog number with a ‘7’ for ordering on tape in ammopack.
350
460
560
940
5.0
19.5
400
42
592 .3516(6)
920
10.0
39.0
1200
110
593 .3516(6)
920
25.0
78.0
2500
200
594 .3516(6)
920
50.0
156.0
4500
325
595 .3516(6)
920
100.0
312.0
6500
660
596 .3516
385
505
620
1000
5.0
18.0
400
40
592 .3816(6)
1025
10.0
51.0
1200
95
593 .3816(6)
1025
25.0
67.0
2500
180
594 .3816(6)
1025
50.0
110.0
4500
280
595 .3816(6)
1025
100.0
328.0
6500
570
596 .3816
420
560
680
1100
5.0
20.0
400
35
592 .4216(6)
1120
10.0
56.0
1200
85
593 .4216(6)
1120
25.0
73.0
2500
165
594 .4216(6)
1120
50.0
120.0
4500
250
595 .4216(6)
1120
100.0
344.0
6500
510
596 .4216
460
615
750
1200
5.0
21.0
400
30
592 .4616(6)
1240
10.0
63.0
1200
75
593 .4616(6)
1240
25.0
82.0
2500
150
594 .4616(6)
1240
50.0
135.0
4500
225
595 .4616(6)
1240
100.0
360.0
6500
460
596 .4616
510
670
820
1355
25.0
89.0
2500
135
594 .5116(6)
1355
50.0
145.0
4500
220
595 .5116(6)
1355
100.0
376.0
6500
450
596 .5116
550
745
910
1500
25.0
98.0
2500
120
594 .5516(6)
1500
50.0
160.0
4500
180
595 .5516(6)
1500
100.0
408.0
6500
370
596 .5516
625
825
1000
1650
100.0
448.0
6500
320
596 .6216
680
895
1100
1815
100.0
496.0
6500
270
596 .6816
ELECTRICAL DATA AND ORDERING INFORMATION
MAXIMUM
CONTINUOUS
VOLTAGE
VOLTAGE(3)at
1 mA
MAXIMUM
VOLTAGE at
STATED
CURRENT
MAXIMUM
ENERGY(4)
(10 ×
×
×
× 1000 µs)
MAXIMUM
NON-REP.
TRANSIENT
CURRENT(5)
Inrp (8 ××
×
× 20 µs)
TYPICAL
CAPACITANCE at
1 kHZ
CATALOG
NUMBERS(1)
RMS(2)
(V)
DC
(V)
(V)
V
(V)
I
(A)
(J)
(A)
(pF)
2322 ... .....
EK
V
p
×
I
p
×
t
2
×
=


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