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C1812X474G8JACTU

产品描述Multilayer Ceramic Capacitors MLCC - SMD/SMT 10volts 470nF 2% U2J
产品类别无源元件   
文件大小1MB,共22页
制造商KEMET(基美)
官网地址http://www.kemet.com
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C1812X474G8JACTU概述

Multilayer Ceramic Capacitors MLCC - SMD/SMT 10volts 470nF 2% U2J

C1812X474G8JACTU规格参数

参数名称属性值
产品种类
Product Category
Multilayer Ceramic Capacitors MLCC - SMD/SMT
制造商
Manufacturer
KEMET(基美)
电容
Capacitance
0.47 uF
电压额定值 DC
Voltage Rating DC
10 VDC
电介质
Dielectric
U2J
容差
Tolerance
2 %
外壳代码 - in
Case Code - in
1812
外壳代码 - mm
Case Code - mm
4532
最大工作温度
Maximum Operating Temperature
+ 125 C
最小工作温度
Minimum Operating Temperature
- 55 C
终端
Termination
Flexible (Soft)
产品
Product
General Type MLCCs
系列
Packaging
Reel
电容-nF
Capacitance - nF
470 nF
电容-pF
Capacitance - pF
470000 pF

Class
Class 1
封装 / 箱体
Package / Case
1812 (4532 metric)
工厂包装数量
Factory Pack Quantity
1000
端接类型
Termination Style
SMD/SMT

文档预览

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Surface Mount Multilayer Ceramic Chip Capacitors (SMD MLCCs)
High Voltage with Flexible Termination System (HV FT-CAP),
C0G Dielectric, 500 – 3,000 VDC (Commercial Grade)
Overview
KEMET’s High Voltage with Flexible Termination (HV FT-CAP)
surface mount MLCCs in C0G dielectric 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. Featuring several
of the highest CV (capacitance/voltage) values available in
the industry, these devices utilize a pliable and conductive
silver epoxy between the base metal and nickel barrier layers
of the termination system. The addition of this epoxy layer
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.
KEMET’s high voltage surface mount MLCCs in C0G
dielectric feature a 125°C maximum operating temperature
and offer the most stable voltage and temperature
performance of all ceramic dielectric materials. C0G (NP0)
dielectric capacitors exhibit no change in capacitance with
respect to time and voltage and boasts a negligible change
in capacitance with reference to ambient temperature.
Capacitance change is limited to ±30ppm/ºC from −55°C to
+125°C.
These devices exhibit low ESR at high frequencies and find
conventional use as snubbers or filters in applications such as
switching power supplies and lighting ballasts. Their exceptional
performance at high frequencies has made high voltage
MLCC’s the preferred dielectric choice of design engineers
worldwide. In addition to their use in power supplies, these
capacitors are widely used in industries related to automotive
(hybrid), telecommunications, medical, military, aerospace,
semiconductors and test/diagnostic equipment.
In addition to Commercial Grade, Automotive Grade devices are
available which meet the demanding Automotive Electronics
Council’s AEC-Q200 qualification requirements.
Click image above for interactive 3D content
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Ordering Information
C
Ceramic
2225
X
393
Capacitance
Code (pF)
Two significant
digits and
number of
zeros.
J
Capacitance
Tolerance
1
B = ±0.10 pF
C = ±0.25 pF
D = ±0.5 pF
F = ±1%
G = ±2%
J = ±5%
K = ±10%
M = ±20%
C
Rated
Voltage
(VDC)
C = 500
B = 630
D = 1,000
F = 1,500
G = 2,000
Z = 2,500
H = 3,000
G
Dielectric
G=
C0G
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”
below
Case Size
Specification/
(L" x W")
Series
0603
0805
1206
1210
1808
1812
1825
2220
2225
X= Flexible
Termination
1
2
Additional capacitance tolerance offerings may be available. Contact KEMET for details.
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
C1070_C0G_HV_FT-CAP_SMD • 6/27/2017
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