EEWORLDEEWORLDEEWORLD

Part Number

Search

CGS312U150R4C

Description
CAPACITOR, ALUMINUM ELECTROLYTIC, NON SOLID, POLARIZED, 150 V, 3100 uF, CHASSIS MOUNT
CategoryPassive components   
File Size271KB,7 Pages
ManufacturerETC1
Download Datasheet Parametric View All

CGS312U150R4C Online Shopping

Suppliers Part Number Price MOQ In stock  
CGS312U150R4C - - View Buy Now

CGS312U150R4C Overview

CAPACITOR, ALUMINUM ELECTROLYTIC, NON SOLID, POLARIZED, 150 V, 3100 uF, CHASSIS MOUNT

CGS312U150R4C Parametric

Parameter NameAttribute value
Maximum operating temperature85 Cel
Minimum operating temperature-40 Cel
negative deviation10 %
positive deviation75 %
Rated DC voltage urdc150 V
Processing package descriptionROHS COMPLIANT
Lead-freeYes
EU RoHS regulationsYes
stateACTIVE
terminal coatingNOT SPECIFIED
Installation featuresCHASSIS MOUNT
Manufacturer SeriesCGS
capacitance3100 uF
packaging shapeCYLINDRICAL PACKAGE
Capacitor typeNON SOLID
Terminal shapeBINDING POST
equivalent series resistance0.038ohm
polarityPOLARIZED
ripple current5.8A
leakage current4.09mA
Type CGS
Computer Grade Aluminum Electrolytic Capacitor
High CV, Screw Terminal Capacitors
Type CGS screw terminal, computer grade aluminum
electrolytic capacitors have a high CV rating and are
suitable for use in most demanding applications requir-
ing high current filtering or energy storage.
Highlights
High CV rating
High current filtering
Screw Terminal
Specifications
Capacitance Range:
75 to 1,500,000 µF
Voltage Range:
6.3 to 500 WVdc
Capacitance Tolerance:
–10% +75% (6.3 - 150 WVdc)
–10% +50% (200 - 450 WVdc)
Operating Temperature:
–40 ºC to +85 ºC
Ripple Current Multipliers:
Ambient Temperature
+45 ºC
2.24
+55 ºC
2.00
+65 ºC
1.73
+75 ºC
1.41
+85 ºC
1.00
Rated
Voltage
16 to 150
200 to 500
60 Hz
0.9
0.9
1.0
1.0
Ripple Multiplier
120 Hz
300 Hz
1.15
1.25
1000 Hz
1.25
1.40
10 kHz
1.30
1.50
DC Leakage Current:
I = .006 √ CV
Not to exceed 6.0 mA max. after 5 minutes
C = Capacitance in µF
V = Rated Voltage
I = Leakage current in mA
Apply WVdc for 2000 h @ 85 ºC
• Capacitance change ± 10% from initial limits
• DC leakage current: 200% of limit
• ESR: 175% of limit
Temperature Characteristics - 4600 µF 100 Vdc
100
QA Stability Test:
Typical Performance Curves
100
ESR
Temperature Characteristics - 100,000 µF 10 Vdc Temperature Characteristics - 29,000 µF 50 Vdc
100
ESR
ESR
10
% C
1
Impedance
10
% C
1
Capacitance
10
Impedance
% C
1
Impedance
Capacitance
Capacitance
0.1
-5 5 -40
-20
-0
25 40 60
Temperature (gC)
85
105
0.1
-5 5 -40
-20
-0
25 40 60
Temperature (gC)
85
105
0.1
-5 5 -40
-20
-0
25 40 60
Temperature (gC)
85
105
CDE Cornell Dubilier • 1605 E. Rodney French Blvd. • New Bedford, MA 02744 • Phone: (508)996-8561 • Fax: (508)996-3830 • www.cde.com
Design analysis of TI chip bq24161+TPS2419 typical dual battery power supply solution
The power consumption of terminal products is also increasing, so standby time has become one of the key performance indicators of the product. As portable terminal equipment is limited by size, it is...
qwqwqw2088 Analogue and Mixed Signal
Is there a bug in the function in tim.c of STM32 library V3.3.0
* @file stm32f10x_tim.c* @author MCD Application Team* @version V3.3.0* @date 04/16/2010* @brief This file provides all the TIM firmware functions.1.void TIM_ClearFlag(TIM_TypeDef* TIMx, uint16_t TIM_...
louis920_2001 stm32/stm8
Questions about LCD
I've been debugging an LCD recently, and my problem is that after my LCD starts up normally, there's a very thin white line at the top that looks like a line under the taskbar underground going up and...
hehewyx Embedded System
How to implement callback function
class a { private: typedef void (CALLBACK * ONSERIALREAD)(CWnd *,BYTE * Buf, int bufLen); public: ONSERIALREAD m_OnSerialRead; } How to implement this callback function?...
shizhu72 Embedded System
A question about T2
The program is as follows: #include reg52.h sbit P0_0=P0^0; unsigned char times; void main() { times=0; TH2=60;TL2=176;//Initial value of count RCAP2H=60;RCAP2L=176;//Reload initial value EA=1;//Open ...
eeleader MCU
How to prevent dead waiting programs from causing other tasks to fail to run during development
[size=4]In embedded software development, such as microcontroller programs, we will definitely write a large infinite loop program, that is, polling the IO port. Usually, [/size] [size=4] [/size] [siz...
灞波儿奔 DSP and ARM Processors

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 438  1152  143  1875  348  9  24  3  38  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