电子工程世界电子工程世界电子工程世界

关键词

搜索

型号

搜索

1825J1K00472KXR

产品描述CAP CER 4700PF 1KV X7R 1825
产品类别无源元件   
文件大小554KB,共6页
制造商Knowles
官网地址http://www.knowles.com
标准
下载文档 详细参数 全文预览

1825J1K00472KXR概述

CAP CER 4700PF 1KV X7R 1825

1825J1K00472KXR规格参数

参数名称属性值
电容4700pF
容差±10%
电压 - 额定1000V(1kV)
温度系数X7R(2R1)
工作温度-55°C ~ 125°C
应用通用
安装类型表面贴装,MLCC
封装/外壳1825(4564 公制)
大小/尺寸0.177" 长 x 0.252" 宽(4.50mm x 6.40mm)
厚度(最大值)0.098"(2.50mm)
通知这些产品类型目前有市场需求,因此提前期会变动、延长。提前期可能不同。

文档预览

下载PDF文档
MLCC
Standard MLCC Ranges
Surface Mount MLC Capacitors
Electrical Details
Capacitance Range
Temperature Coefficient of
Capacitance (TCC)
C0G/NP0
X7R
C0G/NP0
X7R
Insulation Resistance (IR)
Dielectric Withstand Voltage (DWV)
C0G/NP0
X7R
0.47pF to 22µF
0 ± 30ppm/˚C
±15% from -55˚C to +125˚C
Cr > 50pF
≤0.0015
Cr
50pF = 0.0015(15÷Cr+0.7)
0.025
100G or 1000secs (whichever is the less)
Voltage applied for 5 ±1 seconds, 50mA
charging current maximum
Zero
<2% per time decade
A range of dc rated multi-layer chip capacitors from
0.47pF to 22µF and in case sizes 0603 to 8060 in
C0G/NP0 and X7R dielectrics. Suitable for all general
purpose and high reliability applications where package
size and reliability are important. All are manufactured
using Syfer’s unique wet process and incorporate
precious metal electrodes.
Dissipation Factor
Ageing Rate
Range Dimensions – Standard MLCC Ranges
Length
(L1)
mm/inches
1.6 ± 0.2
0.063 ± 0.008
2.0 ± 0.3
0.08 ± 0.012
3.2 ± 0.3
0.126 ± 0.012
3.2 ± 0.3
0.126 ± 0.012
4.5 ± 0.35
0.18 ± 0.014
4.5 ± 0.35
0.18 ± 0.014
4.5 ± 0.35
0.18 ± 0.014
5.7 ± 0.4
0.225 ± 0.016
5.7 ± 0.4
0.225 ± 0.016
9.2 ± 0.5
0.36 ± 0.02
14.0 ± 0.5
0.55 ± 0.02
20.3 ± 0.5
0.8 ± 0.02
Width
(W)
mm/inches
0.8 ± 0.2
0.031 ± 0.008
1.25 ± 0.2
0.05 ± 0.008
1.6 ± 0.2
0.063 ± 0.008
2.5 ± 0.3
0.1 ± 0.012
2.0 ± 0.3
0.08 ± 0.012
3.2 ± 0.3
0.126 ± 0.012
6.30 ± 0.4
0.25 ± 0.016
5.0 ± 0.4
0.197 ± 0.016
6.3 ± 0.4
0.25 ± 0.016
10.16 ± 0.5
0.4 ± 0.02
12.7 ± 0.5
0.5 ± 0.02
15.24 ± 0.5
0.6 ± 0.02
Max. Thickness
(T)
mm/inches
0.8
0.013
1.3
0.051
1.6
0.063
2.0
0.08
2.0
0.08
2.5
0.1
2.5
0.1
4.2
0.16
4.2
0.16
2.5
0.1
4.2
0.16
2.5
0.1
Termination Band
(L2)
mm/inches
min
0.10
0.004
0.13
0.005
0.25
0.01
0.25
0.01
0.25
0.01
0.25
0.01
0.25
0.01
0.25
0.01
0.25
0.01
0.5
0.02
0.5
0.02
0.5
0.02
max
0.40
0.015
0.75
0.03
0.75
0.03
0.75
0.03
1.0
0.04
1.0
0.04
1.0
0.04
1.0
0.04
1.0
0.04
1.5
0.06
1.5
0.06
1.5
0.06
Size
0603
0805
1206
1210
1808
1812
1825
2220
2225
3640
5550
8060
Custom chip sizes not included in the table, but larger than 2225, can be considered with minimum tooling charges. Please refer specific requests direct to the sales office.
Max thickness relates to standard components and actual thickness may be considerably less. Thicker parts, or components with reduced maximum thickness, can be considered by request – please refer
requests to the sales office.
Ordering Information – Standard MLCC Range
1210
Chip Size
0603
0805
1206
1210
1808
1812
1825
2220
2225
3640
5550
8060
Y
Termination
Y
= FlexiCap
TM
termination base with
nickel barrier (100%
matte tin plating).
RoHS compliant.
H
= FlexiCap
termination base with
nickel barrier (tin/lead
plating with min. 10%
lead).
Not RoHS compliant.
F
= Silver Palladium.
RoHS compliant
J
= Silver base with
nickel barrier (100%
matte tin plating).
RoHS compliant
A
= Silver base with
nickel barrier (tin/lead
plating with min. 10%
lead).
Not RoHS compliant
TM
100
Voltage d.c.
(marking code)
010
= 10V
016
= 16V
025
= 25V
050
= 50V
063
= 63V
100
= 100V
200
= 200V
250
= 250V
500
= 500V
630
= 630V
1K0
= 1kV
1K2
=1.2kV
1K5
=1.5kV
2K0
= 2kV
2K5
=2.5kV
3K0
=3kV
4K0
=4kV
5K0
=5kV
6K0
=6kV
8K0
=8kV
10K
=10kV
12K
=12kV
0103
Capacitance in Pico
farads (pF)
<1.0pF
Insert a P for the decimal
point as the first character.
e.g.,
P300
= 0.3pF
Values in 0.1pF steps
≥1.0pF
& <10pF
Insert a P for the decimal
point as the second
character.
e.g.,
8P20
= 8.2pF
Values are E24 series
≥10pF
First digit is 0.
Second and third digits are
significant figures of
capacitance code.
The fourth digit is the
number of zeros following.
e.g.,
0101
= 100 pF
Values are E12 series
J
Capacitance
Tolerance
H:
± 0.05pF
(only available for
values <4.7pF)
<10pF
B:
± 0.10pF
C:
± 0.25pF
D:
± 0.5pF
F:
± 1.0pF
≥10pF
F:
± 1%
G:
± 2%
J:
± 5%
K:
± 10%
M:
± 20%
X
Dielectric
Codes
C
= C0G/NP0
(1B)
X
= X7R
(2R1)
P
= X5R
T
Packaging
T
= 178mm
(7”) reel
R
= 330mm
(13”) reel
B
= Bulk pack
– tubs or trays

Suffix Code
Used for specific
customer
requirements
© Knowles 2014
StandardMLCCDatasheet Issue 4 (P109801) Release Date 04/11/14
Page 1 of 6
Tel: +44 1603 723300 | Email SyferSales@knowles.com | www.knowlescapacitors.com/syfer
【TIDesigns】推荐5款汽车电子参考设计
汽车摄像机模块中图像传感器的电源参考设计描述 该参考设计可为汽车摄像头模块中的 Aptina AR0132 图像传感器提供紧凑型电源解决方案(电路板尺寸为 20 x 20mm)。该设计附带电源板和滤波板。 ......
EEWORLD社区 微控制器 MCU
广州诚聘LINUX嵌入式工程师(工作3年可技术入股)
职位名称: 嵌入式LINUX软件工程师工作地点:广州市荔湾区 薪酬面议 工作职责:1. 基于TI OMAP-L138芯片的嵌入式LINUX软件开发设计;2. 基于QT的图形界面开发设计;3. 嵌入式Linux驱动设计开发 ......
davidshenlie 求职招聘
怎么判断ADC结束和ADC的转换周期对精度有什么影响?
1、我的程序用DMA1传输,怎么判断ADC结束? 是在 void DMA1_Channel1_IRQHandler(void) { } 这个函数里判断么? 该怎么做? 2、ADC的转换周期对精度有什么影响?...
lingr stm32/stm8
【allegro】两元件间走线推挤不正
如图位置: 224072 这个地方走线怎么没办法推挤正啊啊??求助求助~~ ...
ohahaha PCB设计
找了篇讲A/D噪声性能方面的资料,大家看下(2)
使用噪声抖动提高ADC的无杂散动态范围 无杂散动态范围(SFDR)是RMS信号幅度与最大杂散频谱分量RMS值的比率。在高速ADC中,使SFDR达到最大的两个基本限制是前端放大器和采样保持电路产生的失真,以 ......
linda_xia 模拟电子
关于《基于运算放大器和模拟集成电路的电路设计》有个极点的概念搞不清楚
本帖最后由 sunboy25 于 2020-10-8 23:15 编辑 504554我想问一下,上图我画红圈的地方书上讲的对不对?我怎么觉得极点应该是原点? ...
sunboy25 模拟电子

 
EEWorld订阅号

 
EEWorld服务号

 
汽车开发圈

 
机器人开发圈

About Us 关于我们 客户服务 联系方式 器件索引 网站地图 最新更新 手机版

站点相关: 大学堂 TI培训 Datasheet 电子工程 索引文件: 1540  2108  886  848  2653  56  3  5  15  59 

器件索引   0 1 2 3 4 5 6 7 8 9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z

北京市海淀区中关村大街18号B座15层1530室 电话:(010)82350740 邮编:100190

电子工程世界版权所有 京B2-20211791 京ICP备10001474号-1 电信业务审批[2006]字第258号函 京公网安备 11010802033920号 Copyright © 2005-2026 EEWORLD.com.cn, Inc. All rights reserved