EEWORLDEEWORLDEEWORLD

Part Number

Search

NREHR47M400V12.5X20F

Description
CAPACITOR, ALUMINUM ELECTROLYTIC, NON SOLID, POLARIZED, 250 V, 2.2 uF, THROUGH HOLE MOUNT
CategoryPassive components   
File Size122KB,1 Pages
ManufacturerNIC
Websitehttps://www.niccomp.com
Download Datasheet Parametric View All

NREHR47M400V12.5X20F Overview

CAPACITOR, ALUMINUM ELECTROLYTIC, NON SOLID, POLARIZED, 250 V, 2.2 uF, THROUGH HOLE MOUNT

NREHR47M400V12.5X20F Parametric

Parameter NameAttribute value
negative deviation20 %
Minimum operating temperature-40 Cel
Maximum operating temperature85 Cel
positive deviation20 %
Rated DC voltage urdc250 V
Processing package descriptionRADIAL LEADED, ROHS COMPLIANT
each_compliYes
EU RoHS regulationsYes
China RoHS regulationsYes
stateActive
Capacitor typeALUMINUM ELECTROLYTIC CAPACITOR
capacitance2.2 µF
esr__mohm_151000
jesd_609_codee3
leakage_current__ma_.0315
Manufacturer SeriesNRE-H
Installation featuresTHROUGH HOLE MOUNT
packaging shapeCYLINDRICAL PACKAGE
polarityPOLARIZED
ipple_current__ma_35
tangent angle0.2
terminal coatingTIN
Terminal shapeWIRE
Miniature Aluminum Electrolytic Capacitors
HIGH VOLTAGE, RADIAL LEADS, POLARIZED
FEATURES
• HIGH VOLTAGE (UP THROUGH 450VDC)
• NEW REDUCED SIZES
CHARACTERISTICS
Rated Voltage Range
Capacitance Range
Operating Temperature Range
Capacitance Tolerance
After 1 min.
Max. Leakage Current @ (20
o
C)
After 2 min.
Max. Tan
δ
@ 120Hz/20°C
Low Temperature Stability
Impedance Ratio @ 120Hz
Load Life Test at Rated W.V.
85°C 2,000 Hours
Shelf Life Test
85°C 1,000 Hours
No Load
NRE-H Series
includes all homogeneous materials
*See Part Number System for Details
RoHS
Compliant
160 ~ 450 VDC
0.47 ~ 330
µF
-40 ~ +85°C:160~ 250V or -25 ~ +85°C:315 ~ 450V
+
20% (M)
CV <
1000
µ
F = 0.03CV+ 15
µA
CV > 1000
µ
F = 0.02CV+ 25
µA
W.V. (Vdc)
160
200
250
350
400
450
Tan
δ
0.20
0.20
0.20
0.25
0.25
0.25
Z-25°C/Z+20°C
3
3
3
10
12
12
Z-40°C/Z+20°C
6
6
6
-
-
-
Capacitance Change
Within +
20% of initial measured value
Tan
δ
Less than 200% of specified maximum value
Leakage Current
Less than specified maximum value
Capacitance Change
Within +
20% of initial measured value
Tan
δ
Less than 200% of specified maximum value
Leakage Current
Less than specified maximum value
MAXIMUM RIPPLE CURRENT
(mA rms AT 120Hz AND 85
o
C)
½½½ ½
µ
½½
RIPPLE CURRENT FREQUENCY PART NUMBER SYSTEM
CORRECTION FACTOR
NREH 100 M 350V 10X16 F
.
½½½½½½½½½ ½½½½
½½½
½½½
½½½
½½½½½½½ ½½½½½½½ ½½½½½
½½
½½½
½½½½
½½½
½½½
½½½
½½½
½½½
½½½½
½½½
½½½
½½½
½½½
½½
½½
½½
½½
½½
½½½
½½½
½½½
½½½
½½
½½
½½
½½
½½
½½
½½½
½½½
½½½
½½½
½½½
½½½
½½½
½½½
½½
½½
½½
½½
½½
½½
½½½
½½½
½½½
½½½
½½½
½½½
½½½
½
½½
½½
½½
½½
½½
½½
½½½
½½
½
½½½
½½½
½½½
½½½
½½½
½
½½
½½
½½
½½
½½
½½½
½½½
½½½
½½½
½½½
½½½
½
½
½
½½
½½
½½
½½
½½
½½½
½½½
½½½
½½½
½½½
½½½
½
½
½
½½½
½
½½
½½
½½
½½
½½½
½½½
½½½
½½½
½½½
½
½
½
½
½½½½½½½½½½
½
½½
µ½
½½½½½½
½ ½½
µ½
½½½
½½½½
½½½½
½½½
½½½½
½½½½
LEAD SPACING & DIAMETER (mm)
Case Dia. (D
∅)
Leads Dia. (d
∅)
Lead Spacing (F)
Dim.
α
Polarity Marking
RoHS Compliant
Case Size (Dφ x L)
Working Voltage (Vdc)
Tolerance Code (M=20%)
Capacitance Code: First 2 characters
significant, third character is multiplier
Series
5
0.5
2.0
0.5
6.3
0.5
2.5
0.5
8
0.6
3.5
0.5
10
0.6
5.0
0.5
12.5
0.6
5.0
0.5
16
0.8
7.5
0.5
18
0.8
7.5
0.5
Insulation Sleeve
dφ ± 0.05
F ± 0.5
L +
β
max.
15mm Min.
4mm
Min.
Dφ ±
α
STANDARD PRODUCT AND CASE SIZE TABLE Dφ x L (mm)
½½½
µ½
½½½½
½½½
½½½
½½½
½½½
½½
½½
½½
½½
½½
½½½
½½½
½½½
½½½
MAXIMUM ESR
(Ω AT 120HZ AND 20
°
C)
½½½ ½
µ
½½
½½½½
½½½
½½½
½½½
½½½
½½
½½
½½
½½
½½
½½½
½½½
½½½
½½½
½½½½
½½½
½½½
½½½
½½½
½½½
½½½
½½½
½½½
½½½
½½½
½½½
½½½
½½½
½½½
½½½½½½½ ½½½½½½½ ½½½½½
½½½
½ ½ ½½
½ ½ ½½
½½½ ½ ½½
½½½ ½ ½½
½½½ ½ ½½
½ ½ ½½½½
½½ ½ ½½½½
½½ ½ ½½
½½½½ ½ ½½
½½½½ ½ ½½
½½½½ ½ ½½
½½ ½ ½½
½½ ½ ½½
½½ ½ ½½
½½½½ ½½½½½
½½½½½½½
½½½½½½½
½½½
½½½
½½½
½½½
½½½
½½½
½½½
½½½
½½½½
½½½½
½½½½
½½½½
½½½½
½½½½
½½½½
½½½½
½½½½
½½½½
½½½½
½½½½
½½½½
½½½½
½
½½½½
½
½½½½
½
½½½½
½½½
½ ½ ½½
½ ½ ½½
½½½ ½ ½½
½½½ ½ ½½
½ ½ ½½½½
½ ½ ½½½½
½½ ½ ½½
½½ ½ ½½
½½½½ ½ ½½
½½½½ ½ ½½
½½ ½ ½½
½½ ½ ½½
½½ ½ ½½
½
½½½
½ ½ ½½
½ ½ ½½
½½½ ½ ½½
½ ½ ½½½½
½ ½ ½½½½
½½ ½ ½½½½
½½ ½ ½½
½½½½ ½ ½½
½½½½ ½ ½½
½½ ½ ½½
½½ ½ ½½
½½ ½ ½½
½½ ½ ½½
½
½½½
½½½ ½ ½½
½½½ ½ ½½
½ ½ ½½½½
½ ½ ½½½½
½½ ½ ½½½½
½½ ½ ½½
½½½½ ½ ½½
½½½½ ½ ½½
½½ ½ ½½
½½ ½ ½½
½½ ½ ½½
½
½
½
½½½
½½½ ½ ½½
½ ½ ½½½½
½ ½ ½½½½
½½ ½ ½½½½
½½ ½ ½½
½½ ½ ½½
½½½½ ½ ½½
½½ ½ ½½
½½ ½ ½½
½½ ½ ½½
½½ ½ ½½
½
½
½
½½½
½
½ ½ ½½½½
½½ ½ ½½
½½ ½ ½½
½½½½ ½ ½½
½½½½ ½ ½½
½½ ½ ½½
½½ ½ ½½
½½ ½ ½½
½½ ½ ½
½
½
½
½
½
®
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
PRECAUTIONS
NIC COMPONENTS CORP.
www.niccomp.com
www.lowESR.com
www.RFpassives.com
www.SMTmagnetics.com
β
= L < 20mm = 1.5mm, L > 20mm = 2.0mm
51
Some issues with "battery balancing"
[size=4] "Battery balancing" is not a new term. It has been used on nickel-cadmium batteries for at least 30 years. It's just that the early technology was simple and inefficient. Its principle and me...
qwqwqw2088 Analogue and Mixed Signal
How do you know if an 8-bit microcontroller is enough?
I made a pressure tester that needs to display 20000HPA. The unit must be HPA, and the output rate must not be less than 10KHZ....
qiangxiaochao MCU
Ask for help from high frequency wireless master
[i=s] This post was last edited by dontium on 2015-1-23 13:27 [/i] The frequency of the wireless transmitter module circuit is known to be 30MHZ. Now it needs to be changed to 10MHZ. How should it be ...
1017527621 Analogue and Mixed Signal
Small DC-DC boost power supply solution development requirements
[align=left][font=微软雅黑]Requirements for commissioned development of small DC-DC boost power supply solutions: [/font][/align][align=left][font=微软雅黑]1. Input voltage is 6-10Vdc. Maximum supply current ...
chdk11 Power technology
What is the problem with wireless?
What does it mean when using Protues to automatically lay out the first and then out? The simulation program is correct. Why does this happen?...
圈在指尖 PCB Design
MSP430 and SI446X
I want to ask everyone, has anyone done this before? What suggestions do you have for MSP430+SI446X? How much storage space and memory space is needed? Can the general 430 chip meet the requirements?...
newnew0601 Microcontroller MCU

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 1796  781  1703  1915  1108  37  16  35  39  23 
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