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2322-596-59506 Ver la hoja de datos (PDF) - Vishay Semiconductors

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2322-596-59506
Vishay
Vishay Semiconductors Vishay
2322-596-59506 Datasheet PDF : 21 Pages
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www.vishay.com
VDRS Series
Vishay BCcomponents
ELECTRICAL DATA AND ORDERING INFORMATION
MAXIMUM
MAXIMUM
CONTINUOUS
VOLTAGE
VOLTAGE
at 1 mA
(3)
MAXIMUM
VOLTAGE
at STATED
CURRENT
MAXIMUM
ENERGY (4)
(10 x 1 000 μs)
NON-REP.
TRANSIENT
CURRENT (5)
INRP
TYPICAL
CAP.
at 1 kHz
T
(max.)
E
(8 x 20 μs)
RMS (2) DC
(V)
(V)
(V)
V
I
(V) (A)
(J)
(A)
(pF) (mm) (mm)
1120 5.0
20.0
400
35
6.1 3.2 ± 0.8
420
560
1120 10.0
680
1120 25.0
1120 50.0
56.0
73.0
120.0
1200
2500
4500
85
6.1 3.2 ± 0.8
165
6.6 3.4 ± 0.8
250
6.6 3.4 ± 0.8
1120 100.0
1240 5.0
1240 10.0
344.0
21.0
63.0
6500
400
1200
510
8.1 3.7 ± 0.8
30
6.4 3.6 ± 0.8
75
6.4 3.6 ± 0.8
460
615
750
1240 25.0
82.0
1240 50.0
135.0
1240 100.0
360.0
2500
4500
6500
150
6.8 3.8 ± 0.8
225
6.8 3.8 ± 0.8
460
8.5 4.1 ± 0.8
510
670
1355 25.0
89.0
820
1355 50.0
145.0
1355 100.0
376.0
2500
4500
6500
135
7.2 4.1 ± 0.8
220
7.2 4.1 ± 0.8
450
8.9 4.4 ± 0.8
550
745
1500 25.0
98.0
910
1500 50.0
160.0
1500 100.0
408.0
2500
4500
6500
120
7.9 4.5 ± 0.8
180
7.9 4.5 ± 0.8
370
9.5 4.9 ± 0.8
625
825
1000
1650 100.0
448.0
680
895
1100
1815 100.0
496.0
6500
6500
320 10.1 5.3 ± 0.8
270 10.6 5.8 ± 0.8
UL 1449
ED3
SPD
TYPE (7)
4
4
4
3
2
4
4
4
3
2
4
3
2
4
3
2
2
2
CATALOG
NUMBERS (1)
SAP (6)
VDRS05C420xyE
VDRS07H420xyE
VDRS10P420xyE
VDRS14T420xyE
VDRS20W420ByE
VDRS05C460xyE
VDRS07H460xyE
VDRS10P460xyE
VDRS14T460xyE
VDRS20W460ByE
VDRS10P510xyE
VDRS14T510xyE
VDRS20W510ByE
VDRS10P550xyE
VDRS14T550xyE
VDRS20W550ByE
VDRS20W625ByE
VDRS20W680ByE
Notes
(1) The products are certified according to (c)UL (E332800), VDE (40002622) and CSA (219883)
(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 IEC 61051.
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 x 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:
E = K x Vp x Ip x t2
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 x 20 μs 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) For composition of the SAP part number:
Replace “x” by B for bulk type
Replace “y” by S for straight leads
T for tape and reel
F for straight leads with flange (bulk only)
A for tape and ammopack
G for straight leads with flange and H0 = 16 mm (tape and reel/ammo)
H for straight leads with flange and H0 = 18.25 mm (tape and reel/ammo)
K for kinked leads (bulk only)
L for kinked leads with H0 = 16 mm (tape and reel/ammo)
M for kinked leads with H0 = 18.25 mm (tape and reel/ammo)
(7) All varistors are recognized under VZAC2 surge protective devices, components type 4 as specified in UL 1449 edition 3 for operation in ambient
temperatures up to 85 °C. The parts with indication type 2 or 3 SPD’s, are tested and certified to be used in type 2 or 3 SPD applications with
operating ambient temperatures up to 85 °C. The final acceptance of the component is dependent upon its installation and use in complete
equipment submitted to underwriters laboratories Inc.
Revision: 19-Jun-15
4
Document Number: 29081
For technical questions, contact: nlr@vishay.com
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000

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