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C1206X275K4NAC7210

Description
Ceramic Capacitor, Ceramic,
CategoryPassive components    capacitor   
File Size2MB,22 Pages
ManufacturerKEMET
Websitehttp://www.kemet.com
Environmental Compliance
Download Datasheet Parametric View All

C1206X275K4NAC7210 Overview

Ceramic Capacitor, Ceramic,

C1206X275K4NAC7210 Parametric

Parameter NameAttribute value
Is it Rohs certified?conform to
Objectid7081624782
package instruction, 1206
Reach Compliance Codecompliant
ECCN codeEAR99
YTEOL6.9
capacitance2.7 µF
Capacitor typeCERAMIC CAPACITOR
dielectric materialsCERAMIC
high1.6 mm
JESD-609 codee3
length3.3 mm
Installation featuresSURFACE MOUNT
multi-layerYes
negative tolerance10%
Number of terminals2
Maximum operating temperature150 °C
Minimum operating temperature-55 °C
Package formSMT
method of packingTR, Embossed Plastic, 13 Inch
positive tolerance10%
Rated (DC) voltage (URdc)16 V
size code1206
surface mountYES
Temperature characteristic codeX8L
Temperature Coefficient15% ppm/°C
Terminal surfaceMatte Tin (Sn) - with Nickel (Ni) barrier
Terminal shapeWRAPAROUND
width1.6 mm
Surface Mount Multilayer Ceramic Chip Capacitors (SMD MLCCs)
High Temperature 150°C, X8L Dielectric, 10 – 50 VDC
(Commercial & Automotive Grade)
Overview
KEMET’s X8L dielectric features a 150°C maximum
operating temperature and is considered “general
purpose high temperature.” These components are
fixed, ceramic dielectric capacitors suited for high
temperature bypass and decoupling applications or
frequency discriminating circuits where Q and stability of
capacitance characteristics are not critical. X8L exhibits a
predictable change in capacitance with respect to time and
voltage and boasts a minimal change in capacitance with
reference to ambient temperature up to 125°C. Beyond
125°C X8L displays a wider variation in capacitance.
Capacitance change is limited to ±15% from −55°C to
+125°C and +15, −40% from 125°C to 150°C.
Driven by the demand for a more robust and reliable
component, X8L dielectric capacitors were developed for
critical applications where reliability at higher operating
temperatures are a concern. These capacitors are widely
used in automotive circuits as well as general high
temperature applications. Concerned with flex cracks
resulting from excessive tensile and shear stresses
produced during board flexure and thermal cycling?
These devices are available with KEMET's Flexible
termination technology which 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 flexible termination 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.
In addition to commercial grade, automotive grade
devices are available and meet the demanding Automotive
Electronics Council's AEC–Q200 qualification requirements.
Click image above for interactive 3D content
Ordering Information
C
Ceramic
Open PDF in Adobe Reader for full functionality
1210
X
106
K
8
Rated
Voltage
(VDC)
9 = 6.3
8 = 10
4 = 16
3 = 25
5 = 50
N
Dielectric
N = X8L
A
Failure
Rate/
Design
A = N/A
C
Termination Finish
2
C = 100% Matte Sn
L = SnPb (5% Pb minimum)
TU
Packaging/Grade
(C-Spec)
See "Packaging
C-Spec Ordering
Options Table"
Case Size
Specification/
Capacitance Capacitance
Code (pF)
(L" x W")
Series
1
Tolerance
0402
0603
0805
1206
1210
C = Standard
X = Flexible
termination
Two
significant
digits and
number of
zeros
J = ±5%
K = ±10%
M = ±20%
The flexible termination option is not available on EIA 0402 case size product. "C" must be used in the 6th character position when ordering this case
size.
2
Additional termination finish options may be available. Contact KEMET for details.
2
SnPb termination finish option is not available on Automotive Grade product.
1
One world. One KEMET
© KEMET Electronics Corporation • KEMET Tower • One East Broward Boulevard
Fort Lauderdale, FL 33301 USA • 954-766-2800 • www.kemet.com
C1008_X8L_150C_SMD • 4/15/2019
1

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