EEWORLDEEWORLDEEWORLD

Part Number

Search

C052K182K1X5CA7303

Description
Multilayer Ceramic Capacitors MLCC - Leaded 1800PF 100V
CategoryPassive components   
File Size1MB,15 Pages
ManufacturerKEMET
Websitehttp://www.kemet.com
Download Datasheet Parametric View All

C052K182K1X5CA7303 Online Shopping

Suppliers Part Number Price MOQ In stock  
C052K182K1X5CA7303 - - View Buy Now

C052K182K1X5CA7303 Overview

Multilayer Ceramic Capacitors MLCC - Leaded 1800PF 100V

C052K182K1X5CA7303 Parametric

Parameter NameAttribute value
Product AttributeAttribute Value
ManufacturerKEMET
Product CategoryMultilayer Ceramic Capacitors MLCC - Leaded
Termination StyleRadial
Capacitance1800 pF
Voltage Rating DC100 VDC
DielectricBX
Tolerance10 %
Lead Spacing5.08 mm
Case StyleMolded
Minimum Operating Temperature- 55 C
Maximum Operating Temperature+ 125 C
ProductGeneral Type MLCCs
Length4.83 mm
Width2.29 mm
Height4.83 mm
Operating Temperature Range- 55 C to + 125 C
TypeCeramic Molded Axial & Radial Standard
Capacitance - nF1.8 nF
Capacitance - uF0.0018 uF
Lead Diameter0.64 mm
Lead StyleOutside Kink
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
msp430 MCU AD conversion
The ADC12 module is composed of the following parts: 16 analog switches for input (8 external and 4 internal), ADC internal voltage reference source, ADC12 core, ADC clock source part, acquisition and...
fish001 Microcontroller MCU
Recommended books
1. "TMS320X240x DSP Principle and Application Development Guide" Price: 38 yuan Author: Zhao Shilian Book number: 978-7-81124-066-5 Disk: CD Series name: Publication date: 200707 Format: 787×1092 1/16...
songbo DSP and ARM Processors
Push-pull circuit
要介绍推挽电路,首先介绍功放的一些基本知识。从能量控制的观点看,功放电路和电压放大电路没有本质区别,但后者的要求是使负载得到不失真的电压信号,而前者的要求是获得一定的不失真的输出功率。在放大电路中,输入信号在整个周期内都有电流流过,称为甲类放大;如果只有大半个周期有电流流过,称为甲乙类放大;如果只有半个周期电流流过,称为乙类放大。乙类双电源互补对称电路,也叫OCL电路。如下图,两晶体管分别为NPN...
灞波儿奔 Analogue and Mixed Signal
Schematic diagram of a microcontroller experiment board
A schematic diagram of a microcontroller experimental board, there are many places worth referring to. Those who have just learned microcontrollers and want to make an experimental board by themselves...
terrykgm MCU
FPGA Memory Control
[color=#000][font=微软雅黑,]The two cameras collect and write data into memory at the same time, and then display them on vga together, but the images are interlaced. Can anyone tell me why? Thank you. [/...
guolonghui FPGA/CPLD
EEWORLD University Hall----Texas Instruments Industry Week-High Efficiency Small Size Bidirectional DC-DC Converter Design
Texas Instruments Industry Week - High Efficiency and Small Size Bidirectional DC-DC Converter Design : https://training.eeworld.com.cn/course/4018...
hi5 Talking

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 1861  158  34  410  376  38  4  1  9  8 
Datasheet   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
Room 1530, 15th Floor, Building B, No. 18 Zhongguancun Street, Haidian District, Beijing Telephone: (010) 82350740 Postal Code: 100190
Copyright © 2005-2026 EEWORLD.com.cn, Inc. All rights reserved 京ICP证060456号 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