EEWORLDEEWORLDEEWORLD

Part Number

Search

NRSY330M16V12.5X20TBF

Description
Miniature Aluminum Electrolytic Capacitors
File Size115KB,2 Pages
ManufacturerNIC
Websitehttps://www.niccomp.com
Download Datasheet View All

NRSY330M16V12.5X20TBF Overview

Miniature Aluminum Electrolytic Capacitors

Miniature Aluminum Electrolytic Capacitors
REDUCED SIZE, LOW IMPEDANCE, RADIAL LEADS, POLARIZED
ALUMINUM ELECTROLYTIC CAPACITORS
FEATURES
• FURTHER REDUCED SIZING
• LOW IMPEDANCE AT HIGH FREQUENCY
• IDEALLY FOR SWITCHERS AND CONVERTERS
CHARACTERISTICS
Rated Voltage Range
Capacitance Range
Operating Temperature Range
Capacitance Tolerance
Max. Leakage Current
After 2 minutes At +20°C
6.3 ~ 50Vdc
22 ~ 15,000µF
-55 ~ +105°C
±20%(M)
0.01CV or 3µA, whichever is greater
W.V. (Vdc)
S.V. (Vdc)
C < 1,000µF
C = 2,200µF
C = 3,300µF
C = 4,700µF
C = 6,800µF
C = 10,000µF
C = 15,000µF
Z-40°C/Z+20°C
Z-55°C/Z+20°C
Capacitance Change
Tan
δ
Leakage Current
6.3
8
0.28
0.30
0.32
0.34
0.38
0.56
0.56
3
6
10
13
0.24
0.26
0.28
0.30
0.34
0.42
-
3
5
16
20
0.20
0.22
0.24
0.26
0.30
-
-
2
4
25
32
0.16
0.18
0.20
0.22
-
-
-
2
4
35
44
0.14
0.16
0.18
-
-
-
-
2
3
50
63
0.12
0.14
-
-
-
-
-
2
3
NRSY Series
includes all homogeneous materials
*See Part Number System for Details
RoHS
Compliant
Max. Tan
δ
@ 120Hz/+20°C
Low Temperature Stability
Impedance Ratio @ 120Hz
Load Life Test at Rated W.V.
+105°C 1,000 Hours = 8φ or less
+105°C 2,000 Hours = 10φ
+105°C 3,000 Hours = 12.5φ up
Within ±25% of initial measured value
Less than 200% of specified maximum value
Less than specified maximum value
MAXIMUM IMPEDANCE (Ω AT 100KHz AND 20 C)
o
MAXIMUM PERMISSIBLE RIPPLE CURRENT
(mA RMS AT 10KHz ~ 200KHz AND 105
O
C)
½½
½½½½
½½
½½
½½½½
½½½½
½½½½
½½½½
½½½½
½½½ ½
µ
½½
½½
½½
½½
½½½
½½½
½½½
½½½
½½½½
½½½½
½½½½
½½½½
½½½½
½½½½½
½½½½½
½½½½½½½ ½½½½½½½ ½½½½½
½½½
½
½
½
½
½½½
½½½
½½½
½½½
½½½
½½½½
½½
½½
½½½½
½½½½
½½½½
½½
½
½
½
½
½½½
½½½
½½½
½½½
½½½½
½½½½
½½½½
½½½½
½½½½
½
½½
½
½
½
½½½
½½½
½½½
½½½
½½½
½½½½
½½½½
½½½½
½½½½
½
½
½½
½
½
½
½½½
½½½
½½½
½½½
½½½½
½½½½
½½½½
½½½½
½
½
½
½½
½
½½½
½½½
½½½
½½½
½½½
½½½
½½½½
½½½½
½½½½
½
½
½
½
½½
½½½
½½½
½½½
½½½
½½½
½½½
½½½
½½½½
½½½½
½
½
½
½
½
½½½ ½
µ
½½
½½
½½
½½
½½½
½½½
½½½
½½½
½½½½
½½½½
½½½½
½½½½
½½½½
½½½½½
½½½½½
½½½½½½½ ½½½½½½½ ½½½½½
½½½
½
½
½
½
½½½½
½½½½
½½½½
½½½½
½½½½½
½½½½½
½½½½½
½½½½½
½½½½½
½½½½½
½½
½
½
½
½
½½½½
½½½½
½½½½
½½½½½
½½½½½
½½½½½
½½½½½
½½½½½
½½½½½
½
½½
½
½
½
½½½½
½½½½
½½½½
½½½½
½½½½½
½½½½½
½½½½½
½½½½½
½½½½½
½
½
½½
½
½
½
½½½½
½½½½
½½½½
½½½½½
½½½½½
½½½½½
½½½½½
½½½½½
½
½
½
½½
½
½½½½
½½½½
½½½½
½½½½
½½½½½
½½½½½
½½½½½
½½½½½
½½½½½
½
½
½
½
½½½½½
½½½½½
½
½
½
½
½
RIPPLE CURRENT CORRECTION FACTOR
Frequency (Hz)
22<C<100
Please review the notes on correct use, safety and precautions found on
pages T10
&
T11
of NIC’s
Electrolytic Capacitor catalog.
Also found at
www.niccomp.com/precautions
If in doubt or uncertainty, please review your specific application - process details with
NIC’s technical support personnel:
tpmg@niccomp.com
100<f<1K
0.55
0.7
0.9
1K<f<10K
0.8
0.9
0.95
10K<f
1.0
1.0
1.0
PRECAUTIONS
100<C<1000
1000<C
®
NIC COMPONENTS CORP.
www.niccomp.com
www.lowESR.com
www.RFpassives.com
www.SMTmagnetics.com
101
Specific analysis of DMA transmission data
#include "msp430x54x.h" //*************************************************************** const char testconst[6] = { 0x0, 0x3, 0x0, 0x3, 0x0, 0x3 }; void main(void) { WDTCTL = WDTPW + WDTHOLD; //Turn...
羽翼之杨勇0102 Microcontroller MCU
Reward: Looking for a solution to migrate hard disk recorders and surveillance cameras to the cloud platform. Is it feasible?
Now Alibaba Cloud, Baidu Cloud, and Qiniu are all developing big data cloud services. Has anyone done similar transplantation? 1. It is necessary to be able to upload the security hard disk recorder, ...
司龙云 Linux and Android
I don't know how to do the LED interface experiment...
Experimental requirements: Use the principle of 8255 parallel interface control. The TPC-H experiment has two seven-segment LED digital display tubes, which are required to be used as stopwatch displa...
linfeng413 Embedded System
Detailed explanation of the principle and law derivation of SVPWM and control algorithm
[backcolor=rgb(239, 245, 249)][font="][b]SVPWM principle and law derivation and control algorithm detailed explanation[/b][/font][/backcolor]...
fish001 DSP and ARM Processors
Zigbee c2530 needs to use two SPIs at the same time, how to configure it?
Now the project requires two serial communication interfaces to be configured as SPI, one is used to connect to DSP as a slave, and the other is to be connected to an external SPI Flash. However, ther...
会烧火的男人 Wireless Connectivity
Infrared remote control
I would like to ask: Has anyone used a microcontroller to program an infrared remote control? Can you give me some suggestions and advice? For example, what kind of microcontroller is better? Which pr...
liuxiaosheng Embedded System

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 153  2899  2589  1433  2824  4  59  53  29  57 
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