V660LT100B Littelfuse Inc, V660LT100B Datasheet - Page 4

Metal-Oxide Varistor (MOV),660V V(RMS),6.5kA I(TM),Radial

V660LT100B

Manufacturer Part Number
V660LT100B
Description
Metal-Oxide Varistor (MOV),660V V(RMS),6.5kA I(TM),Radial
Manufacturer
Littelfuse Inc
Series
LTr
Datasheet

Specifications of V660LT100B

Varistor Voltage
1100V (1.1kV)
Current-surge
6.5kA
Number Of Circuits
1
Maximum Ac Volts
660VAC
Maximum Dc Volts
850VDC
Energy
250J
Package / Case
Disc 20mm
Product
MOV
Voltage Rating Dc
850 V
Voltage Rating Ac
660 V
Clamping Voltage
1.65 KV
Peak Surge Current
6.5 KA
Surge Energy Rating
250 J
Capacitance
400 pF
Operating Temperature Range
- 55 C to + 85 C
Mounting
Radial
Current Rating
100 A
Termination Style
Radial
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant, Lead free / RoHS Compliant
LA Varistor Series
Power Dissipation Ratings
Should transients occur in rapid succession, the average
power dissipation is the energy (watt-seconds) per pulse
times the number of pulses per second. The power so
developed must be within the specifications shown on the
Device Ratings and Specifications Table for the specific
device.The operating values of a MOV need to be derated
at high temperatures as shown in the diagram below.
Because varistors only dissipate a relatively small amount
of average power they are not suitable for repetitive
applications that involve substantial amounts of average
power dissipation.
Current Energy and Power Derating Curve
Figure 1
100
90
80
70
60
50
40
30
20
10
0
-55
50
60
70
AMBIENT TEMPERATURE (
80
90
100
110
o
120
C)
Radial Lead Varistors > LA Series
130
140 150
Varistor Products
Revision: August 4, 2010
Peak Pulse Current Test Waveform
Figure 2
0
T = Time from 10% to 90% of Peak
T
T
Example - For an 8/20 μs Current Waveform:
1
1
2
= Virtual Origin of Wave
O
= Rise Time = 1.25 x T
= Decay Time
100
1
90
50
10
8μs = T
20μs = T
Please refer to www.littelfuse.com/series/la.html for current information.
1
2
= Rise Time
= Decay Time
T
T
1
T
2
Specifications are subject to change without notice.
TIME
©2010 Littelfuse, Inc.

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