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

C330C223P1U5TA

产品描述Ceramic Capacitor, Multilayer, Ceramic, 100V, 0% +Tol, 100% -Tol, Z5U, -56/+22% TC, 0.022uF, Through Hole Mount, 3015, RADIAL LEADED
产品类别无源元件    电容器   
文件大小965KB,共16页
制造商KEMET(基美)
官网地址http://www.kemet.com
标准  
下载文档 详细参数 全文预览

C330C223P1U5TA概述

Ceramic Capacitor, Multilayer, Ceramic, 100V, 0% +Tol, 100% -Tol, Z5U, -56/+22% TC, 0.022uF, Through Hole Mount, 3015, RADIAL LEADED

C330C223P1U5TA规格参数

参数名称属性值
是否无铅不含铅
是否Rohs认证符合
Objectid2000004088
包装说明, 3015
Reach Compliance Codecompliant
ECCN代码EAR99
YTEOL7.05
电容0.022 µF
电容器类型CERAMIC CAPACITOR
介电材料CERAMIC
高度9.14 mm
JESD-609代码e3
长度7.62 mm
制造商序列号C330
安装特点THROUGH HOLE MOUNT
多层Yes
负容差
端子数量2
最高工作温度85 °C
最低工作温度10 °C
封装形状RECTANGULAR PACKAGE
封装形式Radial
包装方法BULK
正容差100%
额定(直流)电压(URdc)100 V
系列C(SIZE)C-GOLDMAX
尺寸代码3015
表面贴装NO
温度特性代码Z5U
温度系数-56/+22% ppm/°C
端子面层MATTE TIN OVER NICKEL
端子节距5.08 mm
端子形状WIRE
宽度3.81 mm

文档预览

下载PDF文档
MULTILAYER CERAMIC CAPACITORS/AXIAL
& RADIAL LEADED
Multilayer ceramic capacitors are available in a
variety of physical sizes and configurations, including
leaded devices and surface mounted chips. Leaded
styles include molded and conformally coated parts
with axial and radial leads. However, the basic
capacitor element is similar for all styles. It is called a
chip and consists of formulated dielectric materials
which have been cast into thin layers, interspersed
with metal electrodes alternately exposed on opposite
edges of the laminated structure. The entire structure is
fired at high temperature to produce a monolithic
block which provides high capacitance values in a
small physical volume. After firing, conductive
terminations are applied to opposite ends of the chip to
make contact with the exposed electrodes.
Termination materials and methods vary depending on
the intended use.
TEMPERATURE CHARACTERISTICS
Ceramic dielectric materials can be formulated with
Class III:
General purpose capacitors, suitable
a wide range of characteristics. The EIA standard for
for by-pass coupling or other applications in which
ceramic dielectric capacitors (RS-198) divides ceramic
dielectric losses, high insulation resistance and
dielectrics into the following classes:
stability of capacitance characteristics are of little or
no importance. Class III capacitors are similar to Class
Class I:
Temperature compensating capacitors,
II capacitors except for temperature characteristics,
suitable for resonant circuit application or other appli-
which are greater than ± 15%. Class III capacitors
cations where high Q and stability of capacitance char-
have the highest volumetric efficiency and poorest
acteristics are required. Class I capacitors have
stability of any type.
predictable temperature coefficients and are not
affected by voltage, frequency or time. They are made
KEMET leaded ceramic capacitors are offered in
from materials which are not ferro-electric, yielding
the three most popular temperature characteristics:
superior stability but low volumetric efficiency. Class I
C0G:
Class I, with a temperature coefficient of 0 ±
capacitors are the most stable type available, but have
30 ppm per degree C over an operating
the lowest volumetric efficiency.
temperature range of - 55°C to + 125°C (Also
known as “NP0”).
Class II:
Stable capacitors, suitable for bypass
X7R:
Class II, with a maximum capacitance
or coupling applications or frequency discriminating
change of ± 15% over an operating temperature
circuits where Q and stability of capacitance char-
range of - 55°C to + 125°C.
acteristics are not of major importance. Class II
Z5U:
Class III, with a maximum capacitance
capacitors have temperature characteristics of ± 15%
change of + 22% - 56% over an operating tem-
or less. They are made from materials which are
perature range of + 10°C to + 85°C.
ferro-electric, yielding higher volumetric efficiency but
less stability. Class II capacitors are affected by
Specified electrical limits for these three temperature
temperature, voltage, frequency and time.
characteristics are shown in Table 1.
SPECIFIED ELECTRICAL LIMITS
Parameter
Dissipation Factor: Measured at following conditions.
C0G – 1 kHz and 1 vrms if capacitance >1000pF
1 MHz and 1 vrms if capacitance 1000 pF
X7R – 1 kHz and 1 vrms* or if extended cap range 0.5 vrms
Z5U – 1 kHz and 0.5 vrms
Dielectric Stength: 2.5 times rated DC voltage.
Insulation Resistance (IR): At rated DC voltage,
whichever of the two is smaller
Temperature Characteristics: Range, °C
Capacitance Change without
DC voltage
* MHz and 1 vrms if capacitance
100 pF on military product.
Temperature Characteristics
C0G
X7R
2.5%
(3.5% @ 25V)
Z5U
0.10%
4.0%
Pass Subsequent IR Test
1,000 M
F
or 100 G
-55 to +125
0 ± 30 ppm/°C
1,000 M
F
or 100 G
-55 to +125
± 15%
1,000 M
or 10 G
F
+ 10 to +85
+22%,-56%
Table I
4
© KEMET Electronics Corporation, P.O. Box 5928, Greenville, S.C. 29606, (864) 963-6300
为什么由运算放大器组成的放大电路一般都采样反相输入方式?
(1)反相输入法与同相输入法的重大区别是: 反相输入法,由于在同相端接一个平衡电阻到地,而在这个电阻上是没有电流的(因为运算放大器的输入电阻极大),所以这个同相端就近似等于地电位,称为 ......
fish001 模拟与混合信号
菜鸟提问
工作需要,刚刚接触+uclinux。看到一些讲linux的资料,提到“在PC上安装linux”,linux不是下载到arm的flash中吗? 如果是,那bootloader不也是下载到flash中吗,不会覆盖吗? 我现在的状态是找 ......
woshiyulei 嵌入式系统
请教下面的ADC采样的数据转换成对应的电压值在1602液晶上显示
下面是程序 /********************************************************* 程序功能:MCU的片内ADC对P6.0端口的电压进行转换 将模拟电压值显示在1602液晶上。 ---------------- ......
koenlee93 微控制器 MCU
【电源问答】+Vor电压计数问题
327535 如图中,反推回去Vor的值,在有多个绕组的情况下,计数Vor是使用图中的公式1、还是公式2,还是其他?(二极管压降忽略情况)。 ...
yangweiping2011 模拟与混合信号
路由协议问题
谁有路由协议源代码,小弟急用,有的话发到我邮箱rongtinghong@163.com在此先谢过了。...
rongtinghong 无线连接
PIC IIC接口程序
PIC IIC接口程序...
lorant Microchip MCU

技术资料推荐更多

 
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: 651  434  100  2763  553  14  9  3  56  12 

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