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C1210X182K4HACTU

产品描述多层陶瓷电容器MLCC - SMD/SMT 16V 1800pF X8R 1210 10%
产品类别无源元件    电容器    陶瓷电容器    MLCC - 多层陶瓷电容器    多层陶瓷电容器MLCC - SMD/SMT   
文件大小1MB,共21页
制造商KEMET(基美)
官网地址http://www.kemet.com
标准
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C1210X182K4HACTU概述

多层陶瓷电容器MLCC - SMD/SMT 16V 1800pF X8R 1210 10%

C1210X182K4HACTU规格参数

参数名称属性值
厂商名称KEMET(基美)
产品种类多层陶瓷电容器MLCC - SMD/SMT
发货限制Mouser目前不销售该产品。
终端Flexible (Soft)
电容1800 pF
电压额定值 DC16 VDC
电介质X8R
容差10 %
外壳代码 - in1210
外壳代码 - mm3225
高度0.78 mm
最小工作温度- 55 C
最大工作温度+ 150 C
产品General Type MLCCs
端接类型SMD/SMT
系列SMD Comm X8R HT150C Flex
封装Cut Tape
封装MouseReel
封装Reel
长度3.3 mm
封装 / 箱体1210 (3225 metric)
类型Ultra Stable Ceramic Capacitors
宽度2.6 mm
电容-nF1.8 nF
电容-uF0.0018 uF
Class 2
工厂包装数量4000

文档预览

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Surface Mount Multilayer Ceramic Chip Capacitors (SMD MLCCs)
Flexible Termination System (FT-CAP), Ultra-Stable X8R
Dielectric, 10 – 100 VDC (Commercial & Automotive Grade)
Overview
KEMET’s Flexible Termination (FT-CAP) Multilayer Ceramic
Capacitor in Ultra-Stable X8R 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.
Combined with the stability of KEMET’s Ultra-Stable high
temperature dielectric technology, these flex-robust devices
are RoHS Compliant, offer up to 5 mm of flex-bend capability
and feature a 150°C maximum operating temperature.
Ultra-Stable X8R dielectric offers the same temperature
capability as conventional X8R, but without the capacitance
loss due to applied DC voltage. These devices exhibit no
change in capacitance with respect to voltage and boast a
minimal change in capacitance with reference to ambient
temperature. They are also suitable replacements for higher
capacitance and larger footprint devices that fail to offer
capacitance stability. Capacitance change with respect to
temperature is limited to ±15% from −55°C to +150°C.
In addition to Commercial Grade, Automotive Grade devices
are available which meet the demanding Automotive
Electronics Council's AEC-Q200 qualification requirements.
Ordering Information
C
1206
X
104
J
3
H
Dielectric
Reated
Capacitance
Voltage
Tolerance
(VDC)
B = ±0.10 pF
C = ±0.25 pF
D = ±0.5 pF
F = ±1%
G = ±2%
J = ±5%
K = ±10%
M = ±20%
8 = 10
4 = 16
3 = 25
5 = 50
1 = 100
Click image above for interactive 3D content
Open PDF in Adobe Reader for full functionality
A
Failure
Rate/
Design
A=
N/A
C
Termination Finish
1
AUTO
Packaging/
Grade
(C-Spec)
See
"Packaging
C-Spec
Ordering
Options Table"
below
Case Size
Specification/
Capacitance
Ceramic
(L" x W")
Series
Code (pF)
0603
0805
1206
1210
1812
X = Flexible
Termination
Two
significant
digits +
number of
zeros.
H = Ultra-
Stable X8R
C = 100% Matte Sn
L = SnPb (5% Pb minimum)
1
1
Additional termination finish options may be available. Contact KEMET for details.
SnPb termination finish option is not available on Automotive Grade product.
One world. One KEMET
C1063_X8R_FT-CAP_SMD • 10/2/2017
1
© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 • 864-963-6300 • www.kemet.com
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