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C0603X273J3RACAUTO3191

Description
Ceramic Capacitor, Ceramic,
CategoryPassive components    capacitor   
File Size2MB,23 Pages
ManufacturerKEMET
Websitehttp://www.kemet.com
Download Datasheet Parametric View All

C0603X273J3RACAUTO3191 Overview

Ceramic Capacitor, Ceramic,

C0603X273J3RACAUTO3191 Parametric

Parameter NameAttribute value
Objectid7036230476
package instruction, 0603
Reach Compliance Codecompliant
ECCN codeEAR99
capacitance0.027 µF
Capacitor typeCERAMIC CAPACITOR
dielectric materialsCERAMIC
high0.8 mm
JESD-609 codee3
length1.6 mm
Installation featuresSURFACE MOUNT
multi-layerYes
negative tolerance5%
Number of terminals2
Maximum operating temperature125 °C
Minimum operating temperature-55 °C
Package formSMT
method of packingTR, PUNCHED PAPER, 13 INCH
positive tolerance5%
Rated (DC) voltage (URdc)25 V
GuidelineAEC-Q200
size code0603
surface mountYES
Temperature characteristic codeX7R
Temperature Coefficient15% ppm/°C
Terminal surfaceMatte Tin (Sn) - with Nickel (Ni) barrier
Terminal shapeWRAPAROUND
width0.8 mm
Surface Mount Multilayer Ceramic Chip Capacitors (SMD MLCCs)
Flexible Termination System (FT-CAP) X7R Dielectric,
6.3 – 250 VDC (Automotive Grade)
Overview
KEMET’s Automotive Grade Flexible Termination (FT-CAP)
multilayer ceramic capacitor in X7R dielectric incorporates
a unique, flexible termination system that is integrated with
KEMET’s standard termination materials. A conductive silver
epoxy is utilized between the base metal and nickel barrier layers
of KEMET’s standard termination system in order to establish
pliability while maintaining terminal strength, solderability and
electrical performance. This technology was developed in order to
address the primary failure mode of MLCCs– flex cracks, which
are typically the result of excessive tensile and shear stresses
produced during board flexure and thermal cycling. Flexible
termination technology inhibits the transfer of board stress to the
rigid ceramic body, therefore mitigating flex cracks which can
result in low IR or short circuit failures.
Although this technology does not eliminate the potential
for mechanical damage that may propagate during extreme
environmental and handling conditions, it does provide superior
flex performance over standard termination systems. FT-CAP
complements KEMET’s Open Mode, Floating Electrode (FE-
CAP), Floating Electrode with Flexible Termination (FF-CAP)
and KEMET Power Solutions (KPS) product lines by providing a
complete portfolio of flex mitigation solutions.
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Combined with the stability of an X7R dielectric and designed to
accommodate all capacitance requirements, these flex-robust
devices are RoHS-compliant, offer up to 5mm of flex-bend capability
and exhibit a predictable change in capacitance with respect to
time and voltage. Capacitance change with reference to ambient
temperature is limited to ±15% from -55°C to +125°C.
Whether under-hood or in-cabin, these capacitors are designed
to provide reliable performance in mission and safety critical
automotive circuits. Stricter testing protocol and inspection criteria
have been established for automotive grade products in recognition
of potentially harsh environmental conditions. KEMET automotive
grade series capacitors meet the demanding Automotive Electronics
Council's AEC-Q200 qualification requirements.
Ordering Information
C
Ceramic
1206
X
106
Capacitance
Code (pF)
2 significant
digits +
number of
zeros
K
Capacitance
Tolerance
J = ±5%
K = ±10%
M = ±20%
4
Rated Voltage
(VDC)
9 = 6.3
8 = 10
4 = 16
3 = 25
5 = 50
1 = 100
2 = 200
A = 250
R
Dielectric
R = X7R
A
Failure Rate/
Design
A = N/A
C
Termination
Finish
1
C = 100%
Matte Sn
AUTO
Packaging/Grade
(C-Spec)
2
See
"Packaging
C-Spec
Ordering
Options Table"
below
Case Size
Specification/
(L" x W")
Series
0603
0805
1206
1210
1808
1812
1825
2220
2225
X = Flexible
Termination
1
Additional termination finish options may be available. Contact KEMET for details.
One world. One KEMET
© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com C1078_X7R_FT-CAP_AUTO_SMD • 9/30/2015
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