EEWORLDEEWORLDEEWORLD

Part Number

Search

3186EC152M350MPA2

Description
aluminum electrolytic capacitors - screw terminal 350v 1500uf case 2.000 x 3.125in
CategoryPassive components   
File Size329KB,9 Pages
ManufacturerAll Sensors
Environmental Compliance
Download Datasheet Parametric View All

3186EC152M350MPA2 Online Shopping

Suppliers Part Number Price MOQ In stock  
3186EC152M350MPA2 - - View Buy Now

3186EC152M350MPA2 Overview

aluminum electrolytic capacitors - screw terminal 350v 1500uf case 2.000 x 3.125in

3186EC152M350MPA2 Parametric

Parameter NameAttribute value
ManufactureCornell Dubilie
Product CategoryAluminum Electrolytic Capacitors - Screw Terminal
RoHSYes
Capacitance1500 uF
Voltage Rating DC350 V
Tolerance20 %
Minimum Operating Temperature- 40 C
Maximum Operating Temperature+ 85 C
Load Life1500 h
Diamete50.8 mm (2 in)
Length79 mm (3.125 in)
Lead Spacing22 mm (0.875 in)
PackagingBulk
ProducComputer Grade Electrolytic Capacitors
Termination StyleScrew
Type 3186 85 °C Aluminum Electrolytic, Screw Terminal
Best Value 85 °C High Capacitance Screw Terminal Type
While Type 3186’s standard encasement is by compression with the
capacitor element captured on an aluminum peg in the can bottom
and a phenolic peg in the top, rilled construction is available. With
rilled construction the element is secured by rills, spoon shaped
dimples in the side of the can. Rilled construction offers the
industry’s highest vibration and shock withstanding and excellent
heat transfer. Besides increasing ripple current handling, the rilled
construction extends the great value of the Type 3186 into military
and transportation applications that require rugged mechanical
capability.
Highlights
Specifications
Temperature Range
Rated Voltage Range
Capacitance Range
Capacitance Tolerance
Leakage Current
Ripple Current Multipliers
- Rilled cans withstand high shock and vibration
- High ripple current capability
- High capacitance per can
–40 ºC to +85 ºC
16 Vdc to 500 Vdc
220 uF to 1.0 F
–10% +75% ≤ 160 Vdc
–10% +50% ≥ 200 Vdc
≤6√CV µA (6 mA max.) at 5 minutes
Ambient Temperature
45 °C
2.24
Frequency
60 Hz 120 Hz
16 – 100 V
0.90
1.00
1.00
200 – 500 V
0.90
300 Hz
1.15
1.25
1000 Hz
1.25
1.40
≥10
kHz
1.30
1.50
55 °C
2.00
65 °C
1.73
75 °C
1.41
85 °C
1.00
Low Temperature Characteristics
Impedance ratio: Z
–20 ⁰C
∕ Z
+25 ⁰C
≤ 8 (16–50 Vdc)
≤ 4 (63–100 Vdc)
≤ 3 (150–500 Vdc)
1,500 h @ full load at 85 °C
∆Capacitance ±10%
ESR 200% of limit
DCL 100% of limit
500 h @ 85 °C
∆Capacitance ±10%
ESR 175% of limit
DCL 100% of limit
10 to 500 Hz, 0.75 mm or 10 g* if less,
3 directions, 2 h ea
Δ Capacitance: ±5%
no visible damage or leakage
*15 g if rilled construction
RoHS Compliant
Endurance Life Test
Shelf Life Test
Vibration
CDM Cornell Dubilier • 140 Technology Place • Liberty, SC 29657 • Phone: (864)843-2277 • Fax: (864)843-3800
[TI Recommendations] [Summary] I2C module summary post
According to my suggestion, the posts are categorized as follows: I2C Module: 1: LM3s learning notes I2C learning to drive the water lamp https://bbs.eeworld.com.cn/viewthread.php?tid=305399extra=page...
cat3902982 Microcontroller MCU
How do electronic components cope with high power levels?
How much power can it handle? This is an inevitable question asked of most components in a transmitter, and it is usually asked of passive components such as filters, couplers and antennas. But as the...
Jacktang Analogue and Mixed Signal
Welcome all embedded developers working in Hangzhou
Usually, people who do embedded development face computers all day long, so they are relatively blocked from socializing. Therefore, they lack other consultations such as local work in Hangzhou. In or...
congyue Embedded System
A simple amplifier circuit for a novice, please help me...
Finally, I amplified it from 1mV to 3V. The static operating point was estimated according to what was said in the book. I wonder if this is correct? How should I calculate the static operating point ...
电子几何 Analog electronics
12864 initialization under GCCAVR, 12864 no response after downloading, please help me
#include #include #define Enable_0() (PORTC=~_BV(PC2)) #define Enable_1() (PORTC|=_BV(PC2)) #define RW_0() (PORTC=~_BV(PC1)) #define RW_1() (PORTC|=_BV(PC1)) #define Di_0() (PORTC=~_BV(PC0)) #define D...
windboy121 Embedded System
CC2530 Timer 1 configuration problem
I just started learning CC2530. I learned that the configuration of timer 1 is different from the STC89c51 I learned before. Here are my questions: 1. When setting timer 1, why do we need to set the c...
一条乐 51mcu

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 278  804  2459  2404  2122  6  17  50  49  43 
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