EEWORLDEEWORLDEEWORLD

Part Number

Search

820P405X2200S01

Description
Film Capacitor, Polyphenylene Sulphide, 200V, 2% +Tol, 2% -Tol, 4uF,
CategoryPassive components    capacitor   
File Size661KB,25 Pages
ManufacturerDearborn Electronics Inc
Download Datasheet Parametric View All

820P405X2200S01 Overview

Film Capacitor, Polyphenylene Sulphide, 200V, 2% +Tol, 2% -Tol, 4uF,

820P405X2200S01 Parametric

Parameter NameAttribute value
Objectid803489971
package instruction,
Reach Compliance Codeunknown
ECCN codeEAR99
capacitance4 µF
Capacitor typeFILM CAPACITOR
Custom functionsOther Capacitance,Voltage,Tol Available
diameter19.05 mm
dielectric materialsPOLYPHENYLENE SULPHIDE
length46.025 mm
negative tolerance2%
Number of terminals2
Maximum operating temperature125 °C
Minimum operating temperature-55 °C
Package formAxial
positive tolerance2%
Rated (AC) voltage (URac)126 V
Rated (DC) voltage (URdc)200 V
GuidelineMIL-C-39022
series820P(200 VOLT)

820P405X2200S01 Preview

electronics
,
inc.
P
OLYPHENYLENE SULFIDE
F
ILM
C
APACITORS
Metalized Polyphenylene Sulfide Film Capacitor Typical Characteristics...F3
Type 820P………………………………………………………………...F6
Type 832P………………………………………………………………...F9
Type 842P………………………………………………………………...F12
Type 859P………………………………………………………………...F15
Type 860P………………………………………………………………...F17
Type 880P………………………………………………………………...F20
Polyphenylene Sulfide Film/Foil Capacitor Typical Characteristics……….F22
Type 810P………………………………………………………………...F23
Type 882P………………………………………………………………...F25
F-1
electronics
,
inc.
POLYPHENYLENE SULFIDE FILM CAPACITORS
General Electrical, Physical, and Environmental Characteristics
Test Procedures:
Section J of the catalog covers the
applicable test procedures
Humidity Test:
The Non-Hermetically sealed units shall be
tested as outlined in section J “Humidity Test”
As a result of the test there shall be:
• No visible damage
• Max.
C of ± 5%
• Min. IR = 50% of initial limit
• Max. DF = .5%
Electrical Characteristics:
Capacitance, Dissipation Factor, Insulation
Resistance, and Dielectric Strength shall be
measured as specified in section J.
Physical Characteristics:
The Lead Strength shall be measured as
specified in section J.
DC Life:
810P, 820P, 842P & 860P: 140% of rated voltage at 125°C for 250 hours.
832P & 880P: 125% of rated voltage at 150C for 250 hours.
882P: 125% of rated voltage for 250 hours at 125C.
As a result of the test there shall be:
• No permanent open or short circuit
Environmental Characteristics:
Vibration Test: (Condition B)
No mechanical damage, short, open or
intermittent circuit
• No visible damage
• Max.
C of ± 5%
• Min. IR = 50% of initial limit
Moisture Resistance:
The hermetically sealed units shall be tested
as outlined in the Moisture Resistance testing
of section J.
As a result of the test there shall be:
• No visible damage
• Max.
C of ± 5%
• Min. IR = 50% of initial limit
• Max. DF = .5%
• Max. DF = 0.3%
AC Life:
The 859P shall be tested at 110% of the
rated rms voltage at 400 Hz for 250 hours at 85°C.
As a result of the test there shall be:
• No permanent open or short circuit
• No visible damage
• Max.
C of ± 5%
• Min. IR = 50% of initial limit
• Max. DF = 0.5%
F-2
electronics
,
inc.
METALIZED POLYPHENYLENE SULFIDE FILM CAPACITORS
F3
electronics
,
inc.
POLYPHENYLENE SULFIDE FILM CAPACITORS
STYLES FOR METAL-CASE FILM CAPACITORS
SECTION GROUNDED TO CASE
SECTION INSULATED FROM CASE
DIMENSIONS IN INCHES
DIMENSIONS IN INCHES
CASE STYLE 01
+1.00
-0
1.625
CASE STYLE 02
±0.031
0.172 MAX
L
±0.031
+1.00
-0
1.625
0.172
MAX
1.625
+1.00
-0.00
L
D
-0.005
±0.015
DIA
D
+0.015
-0.005
CASE STYLE 04
+1.00
-0
1.625
±0.015
0.020
1.625
+1.000
-0.000
CASE STYLE 03
+1.00
-0
1.625
±0.015
0.020
L
±0.062
L
±0.31
0.020
±0.015
0.172
MAX
0.172
MAX
INSULATING SLEEVE
0.0075 MAX THICKNESS
D
+0.015
-0.005
D
+0.015
-0.037 DIA.
INSULATING SLEEVE
0.0075 MAX THICKNESS
CASE STYLE 12
1.625
+1.00
-0
CASE STYLE 13
1.625
+1.00
-0
1.625
+1.000
-0.000
WRAP-AROUND
APPROX. 135°
FOR 0.400 DIA.,
AND APPROX.
225° FOR LARGER DIA.
DIA
0.172
MAX
L
D
±0.031
L
±0.031
+0.015 DIA
-0.005
C
L
0.172
MAX
C
L
D
-0.005
±0.015
A
±0.005
DIA
C B
W
±0.015
0.033
±0.005
FOR 0.400 DIA.,
0.051
±0.005
FOR DIA. 0.500
AND LARGER
±0.005
A
DIA
C B
W
±0.015
0.033
±0.005
FOR 0.400
DIA., 0.051
±0.005
FOR
DIA. 0.500 AND LARGER
Bracket Dimensions (Style 12 & 13)
Inches
D
0.400
0.500
0.562
0.670
0.750
1.000
W
0.250
0.500
0.500
0.500
0.500
0.500
A
0.144
0.156
0.156
0.156
0.156
0.156
B
0.187±0.015
0.250±0.031
0.250±0.031
0.250±0.031
0.250±0.031
0.250±0.031
C
0.312±0.031
0.437±0.062
0.437±0.062
0.437±0.062
0.437±0.062
0.437±0.062
dimensionsbrac style 12 and 13
F4
electronics
,
inc.
POLYPHENYLENE SULFIDE FILM CAPACITORS
TYPICAL TAB TERMINAL DIMENSIONS
0.020
c
L
±0.005
0.125
±0.015
c
L
SLOT 0.062 x 0.125
A
B
0.296
±0.062
Dwg. No A-9525
A = 0.156 ± 0.015" (3.96 ± 0.38mm)
B = 0.187 ± 0.015" (4.75 ± 0.38mm)
Tab Terminal available only on case diameters equal to or greater than 0.400 inches.
T1 & T3 s t y l e s a r e s u p p l i e d w i t h o n e t a b t e r m i n a l o n t h e i n s u l a t e d e n d a n d a g r o u n d lead on the opposite end.
CATALOG NUMBERING SYSTEM
EXAMPLE:
859P
183
X9
165
S
02
STYLE NUMBER.
SEE PAGE 4 FOR STYLE VARIATIONS
AND CORRESPONDING DIMENSIONS. (Metal case only)
TERMINAL.
S = WIRE LEADS, T = SOLDERING TAB*
*SOLDERING TABS ARE A VAILABLE ONLY ON CASE
DIAMETERS EQUAL TO OR GREATER THAN 0.400
INCHES. (Metal case only)
AC or DC VOLTAGE RATING.
EXPRESSED IN VOLTS. SEE STANDARD
RATINGS CHARTS FOR VOLTAGE CODE.
CAPACITANCE TOLERANCE.
X0 = ±20%; X9 = ±10%
X5 = ± 5%; X2 = ±2%
X1 = ± 1%
CAPACITANCE.
EXPRESSED IN PICOFARADS. THE FIRST TWO DIGITS ARE SIGNIFICANT
FIGURES; THE THIRD IS THE NUMBER OF ZEROS FOLLOWING. SEE STANDARD RATINGS
TABLES FOR CAP ACITANCE CODE. e.g. 183 = 18000pf or 0.018µf
DEARBORN TYPE NUMBER.
IDENTIFIES THE BASIC CAPACITOR.
F5
Problems encountered when using packer sniffer
Today I tried to use TI's packet sniffer to observe the sent and received data: 1. Connect the CC1110 node module to the PC, and the sniffer quickly captured the device: SmartRFo4EB (USB Device ID=005...
qiwan Programming Basics
How to install tens of billions of transistors into a chip?
Today's 7nm EUV chips have more than 10 billion transistors. How are they installed?Transistors are not installed. Chip manufacturing is actually divided into processes such as sand-wafer and wafer-ch...
btty038 RF/Wirelessly
Land on the other side of the strait (watering)
A few dozen miles out to sea from the mouth of the Minjiang River, there is a small island called Chuanshi Island. Child: Is that black in the distance Taiwan? Navy: No, that is Matsu Island. Child: M...
richiefang Talking
Electricians, how do you do your calculations when designing circuits?
I will post my calculation method first:I am a bit lazy, so I forgot the formula. How did you calculate it? Post it and let us see...
dontium Analog electronics
LPCXpresso Entry-level Experience
I got the LPCXpresso board in early May, and it's already January. It's hard to get started, and I can only do it in my spare time. Fortunately, there are great people like tiankai001 sharing. IO driv...
ulan NXP MCU
Algorithm to improve ADC linearity
I was recently debugging an ADC and testing its linearity. I found that its output and input voltages are as shown in the following table. I wonder which algorithm can be used to make the subsequent l...
fx-sg MCU

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 2457  1731  1508  105  2303  50  35  31  3  47 
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