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C1812F473M2RACAUTO7411

产品描述Ceramic Capacitor, Multilayer, Ceramic, 200V, 20% +Tol, 20% -Tol, X7R, -/+15ppm/Cel TC, 0.047uF, 1812,
产品类别无源元件    电容器   
文件大小3MB,共23页
制造商KEMET(基美)
官网地址http://www.kemet.com
标准
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C1812F473M2RACAUTO7411概述

Ceramic Capacitor, Multilayer, Ceramic, 200V, 20% +Tol, 20% -Tol, X7R, -/+15ppm/Cel TC, 0.047uF, 1812,

C1812F473M2RACAUTO7411规格参数

参数名称属性值
是否Rohs认证符合
Objectid274794662
包装说明, 1812
Reach Compliance Codecompliant
ECCN代码EAR99
YTEOL7.8
电容0.047 µF
电容器类型CERAMIC CAPACITOR
介电材料CERAMIC
高度1 mm
长度4.5 mm
多层Yes
负容差20%
端子数量2
最高工作温度125 °C
最低工作温度-55 °C
封装形式SMT
包装方法TR, Plastic, 13 Inch
正容差20%
额定(直流)电压(URdc)200 V
参考标准AEC-Q200
系列C(SIZE)F
尺寸代码1812
温度特性代码X7R
温度系数15% ppm/°C
宽度3.2 mm

文档预览

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Surface Mount Multilayer Ceramic Chip Capacitors (SMD MLCCs)
Open Mode Design (FO-CAP), X7R Dielectric, 16 – 200 VDC
(Commercial & Automotive Grade)
Overview
KEMET’s Ceramic Open Mode capacitor in X7R dielectric is
designed to significantly minimize the probability of a low IR or
short circuit condition when forced to failure in a board stress
flex situation, thus reducing the potential for catastrophic failure.
The Open Mode capacitor may experience a drop in capaci-
tance; however, a short is unlikely because a crack will not
typically propagate across counter electrodes within the device’s
“active area.” Since there will not be any current leakage associ-
ated with a typical Open Mode flex crack, there is no localized
heating and therefore little chance for a catastrophic and poten-
tially costly failure event.
Driven by the demand for a more robust and reliable com-
ponent, the Open Mode capacitor was designed for critical
applications where higher operating temperatures and mechani-
cal stress are a concern. These capacitors are widely used in
automotive circuits as well as power supplies (input and output
filters) and general electronic 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 flex-
ible termination technology does not eliminate the potential for
mechanical damage that may propagate during extreme envi-
ronmental and handling conditions, it does provide superior flex
performance over standard termination systems. When combined
with flexible termination technology these devices offer the ultimate
level of protection against a low IR or short circuit condition. Open
Mode devices compliment KEMET's Floating Electrode (FE-
CAP) and Floating Electrode with Flexible Termination (FF-CAP)
product lines by providing a fail-safe design optimized for mid to
high range capacitance values. These devices exhibit a predict-
able change in capacitance with respect to time and voltage and
boast a minimal change in capacitance with reference to ambient
temperature. Capacitance change is limited to ±15% from -55°C
to +125°C.
Click image above for interactive 3D content
Open PDF in Adobe Reader for full functionality
Ordering Information
C
Ceramic
1210
Case Size
(L" x W")
0805
1206
1210
1812
J
Specification/
Series
685
Capacitance
Code (pF)
K
Capacitance
Tolerance
K = ±10%
M = ±20%
3
Voltage
4 = 16 V
3 = 25 V
5 = 50 V
1 = 100 V
2 = 200 V
R
Dielectric
R = X7R
A
Failure Rate/
Design
A = N/A
C
Termination
Finish
1
C = 100%
Matte Sn
L = SnPb
(5% minimum)
TU
Packaging/Grade
(C-Spec)
2
See "Packaging
C-Spec
Ordering
Options Table"
below
F = Open Mode Two significant
J = Open Mode digits + number of
with Flexible
zeros
Termination
Additional termination finish options may be available. Contact KEMET for details.
1, 2
SnPb termination finish option is not available on automotive grade product.
2
Additional reeling or packaging options may be available. Contact KEMET for details.
1
One world. One KEMET
© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com
C1012_X7R_OPENMODE_SMD • 2/11/2015
1

 
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