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V85MLA1210WA

Description
varistors 85v 250a 260pf
CategoryPassive components    The resistor   
File Size961KB,8 Pages
ManufacturerLittelfuse
Websitehttp://www.littelfuse.com
Environmental Compliance
Download Datasheet Parametric View All

V85MLA1210WA Overview

varistors 85v 250a 260pf

V85MLA1210WA Parametric

Parameter NameAttribute value
Is it Rohs certified?conform to
MakerLittelfuse
package instructionCHIP, 1210, LEAD FREE
Reach Compliance Codeunknow
ECCN codeEAR99
Circuit maximum DC voltage85 V
Circuit RMS maximum voltage67 V
Maximum energy absorption capacity2.5 J
JESD-609 codee3
Manufacturer's serial numberML
Installation featuresSURFACE MOUNT
Number of terminals2
Maximum operating temperature125 °C
Minimum operating temperature-55 °C
Package shapeRECTANGULAR PACKAGE
Package formChip / Die
method of packingBULK
Rated power dissipation(P)0.15 W
Rated temperature150 °C
Resistor typeVARISTOR
surface mountYES
technologyMETAL OXIDE FILM
Terminal surfaceMatte Tin (Sn) - with Nickel (Ni) barrie
Terminal locationDUAL ENDED
Terminal shapeWRAPAROUND
Varistor Products
Surface Mount Multilayer Varistors (MLVs) > MLA Series
MLA Varistor Series
Description
RoHS
Size Table
Metric
1005
1608
2012
3216
3225
EIA
0402
0603
0805
1206
1210
The wide operating voltage and energy range make the
MLA Series suitable for numerous applications on power
supply, control and signal lines.
The MLA Series is manufactured from semiconducting
ceramics, and is supplied in a leadless, surface mount
package. The MLA Series is compatible with modern
reflow and wave soldering procedures.
It can operate over a wider temperature range than Zener
diodes, and has a much smaller footprint than plastic-
housed components.
Littelfuse Inc. manufactures other multilayer series
products. See the MLE Series data sheet for ESD
applications, MHS Series data sheet for high-speed ESD
applications, the MLN Series for multiline protection and
the AUML Series for automotive applications.
Features
• RoHS compliant
• Leadless 0402, 0603,
0805, 1206 and
1210 chip sizes
• Multilayer ceramic
construction technology
• -55°C to +125°C
operating temp. range
• Operating voltage range
V
M(DC)
= 5.5V to 120V
• ated for surge
R
current (8 x 20µs)
• Rated for energy
(10 x 1000µs)
• nherent bi-directional
I
clamping
• Standard low capacitance
types available
• ESD rated to IEC
61000-4-2, Level 4: Air
Discharge 15KV and
Contact Discharge 8KV
Applications
• Suppression of inductive
switching or other
transient events such as
EFT and surge voltage at
the circuit board level
• ESD protection for IEC
61000-4-2 (Level 4),
MIL
-STD-883c method
3015.7
, and other industry
specifications (see also
the MLE or MLN Series)
• Provides on-board
transient voltage
protection for ICS
and transistors
• Used to help achieve
electromagnetic
compliance of
end products
• Replace larger surface
mount TVS Zeners in
many applications
Absolute Maximum Ratings
For ratings of individual members of a series, see device ratings and specifications table
.
Continuous
Steady State Applied Voltage:
DC Voltage Range (V
M(DC)
)
AC Voltage Range (V
M(AC)RMS
)
Transient:
Non-Repetitive Surge Current, 8/20µs Waveform, (I
TM
)
Non-Repetitive Surge Energy, 10/1000µs Waveform, (W
TM
)
Operating Ambient Temperature Range (T
A
)
Storage Temperature Range (T
STG
)
Temperature Coefficient (αV) of Clamping Voltage (V
C
) at
Specified Test Current
© 2013 Littelfuse, Inc.
Specifications are subject to change without notice.
Please refer to www.littelfuse.com/series/ML.html or MLA.html for current information.
ML Series
3.5 to 120
2.5 to 107
4 to 500
0.02 to 2.5
-55 to +125
-55 to +150
<0.01
Units
V
V
A
J
ºC
ºC
%/º C
39
Revised: December 16, 2013
MLA Varistor Series
MLA Series
The MLA Series (also known as "ML" series) family of
transient voltage surge suppression devices is based on
the Littelfuse Multilayer fabrication technology. These
components are designed to suppress a variety of
transient events, including those specified in IEC 61000-4-2
or other standards used for Electromagnetic Compliance
(EMC). The MLA Series is typically applied to protect
integrated circuits and other components at the circuit
board level.

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