EEWORLDEEWORLDEEWORLD

Part Number

Search

VJ2225A102JBOAP5Z

Description
Surface Mount Multilayer Ceramic Chip Capacitors Prohibit Surface Arc-over in High Voltage Applications
File Size138KB,16 Pages
ManufacturerVishay
Websitehttp://www.vishay.com
Download Datasheet View All

VJ2225A102JBOAP5Z Overview

Surface Mount Multilayer Ceramic Chip Capacitors Prohibit Surface Arc-over in High Voltage Applications

VJ Non-Magnetic Series C0G (NP0)/X7R/X5R Dielectric
Vishay Vitramon
Surface Mount Multilayer Ceramic Chip Capacitors
for Non-Magnetic Applications
FEATURES
Manufactured with non-magnetic materials
Speciality: Non-magnetic MLCCs
Safety screened for magnetic properties
Wide range of case sizes, voltage ratings and
capacitance values
Surface mount, wet build process
Reliable Noble Metal Electrode (NME) system
Halogen-free according to IEC 61249-2-21 definition
APPLICATIONS
Magnetic Resonance Imaging (MRI)
Medical test and diagnostic equipment
High Rel medical systems
High Rel aviation systems
Laboratory analysis systems
Navigation and electronic test equipment
Audio amplifiers
ELECTRICAL SPECIFICATIONS
NON-MAGNETIC C0G (NP0)
GENERAL SPECIFICATIONS
Note
Electrical characteristics at + 25 °C unless otherwise specified
NON-MAGNETIC X7R/X5R
GENERAL SPECIFICATIONS
Note
Electrical characteristics at + 25 °C unless otherwise specified
Operating Temperature:
- 55 °C to + 125 °C
Capacitance Range:
0.5 pF to 0.056 µF
Voltage Range:
10 V
DC
to 3000 V
DC
Temperature Coefficient of Capacitance (TCC):
0 ppm/°C ± 30 ppm/°C from - 55 °C to + 125 °C
Dissipation Factor (DF):
0.1 % maximum at 1.0 V
RMS
and
1 MHz for values
1000 pF
0.1 % maximum at 1.0 V
RMS
and
1 kHz for values > 1000 pF
Aging Rate:
0 % maximum per decade
Insulating Resistance:
At + 25 °C 100 000 MΩ min. or 1000
ΩF
whichever is less
At + 125 °C 10 000 MΩ min. or 100
ΩF
whichever is less
Dielectric Strength Test:
Performed per Method 103 of EIA 198-2-E.
Applied test voltages:
200 % of rated voltage
500 V
DC
-rated:
150 % of rated voltage
630 Vdc/1000 V
DC
-rated:
1500 Vdc to 3000 V
DC
-rated: 120 % of rated voltage
Operating Temperature:
- 55 °C to + 125 °C
Capacitance Range:
100 pF to 6.8 µF
Voltage Range:
6.3 V
DC
to 3000 V
DC
Temperature Coefficient of Capacitance (TCC):
X5R: ± 15 % from - 55 °C to + 85 °C, with 0 V
DC
applied
X7R: ± 15 % from - 55 °C to + 125 °C, with 0 V
DC
applied
Dissipation Factor (DF):
6.3 V, 10 V ratings: 5 % maximum at 1.0 V
RMS
and 1 kHz
16 V, 25 V ratings: 3.5 % maximum at 1.0 V
RMS
and 1 kHz
50 V ratings: 2.5 % maximum at 1.0 V
RMS
and 1 kHz
Aging Rate:
1 % maximum per decade
Insulating Resistance:
At + 25 °C 100 000 MΩ min. or 1000
ΩF
whichever is less
At + 125 °C 10 000 MΩ min. or 100
ΩF
whichever is less
Dielectric Strength Test:
Performed per Method 103 of EIA 198-2-E.
Applied test voltages:
200 % of rated voltage
500 V
DC
-rated:
150 % of rated voltage
630 Vdc/1000 V
DC
-rated:
1500 Vdc to 3000 V
DC
-rated: 120 % of rated voltage
Document Number: 45128
Revision: 26-Feb-10
For technical questions, contact:
mlcc@vishay.com
www.vishay.com
1
[Atmel SAM R21 Creative Competition Weekly Plan] + WSNdemo Test
I got the board for a long time. My daughter was born last month and I went back to my hometown. I haven't had a chance to test it. Sorry! I tested the WSNdemo test of R21 last night. I just slightly ...
pleasemissme Microchip MCU
Found a batch of modules and boards programmed with .net
[i=s]This post was last edited by lcofjp on 2016-5-12 23:27[/i] By chance, I found a group of modules that can be programmed using C# or VB.NET ([color=#333333][size=2].NET Micro Framework[/size][/col...
lcofjp MicroPython Open Source section
Learn simulation + "Operational amplifier noise optimization" 1TIna simulation software
I downloaded the simulation software mentioned in the book and tried it. I feel that it is OK. It is similar to multisim. I feel that the fonts in many places are a bit small, which is awkward. There ...
lidonglei1 Analogue and Mixed Signal
AT90can128 related IO
Has anyone used the at90can128 series processors? I have never used this chip, so I can't figure out many simple things, such as judging the level of a pin. Ahhhh, confused. Please give me some advice...
xinjitmzy stm32/stm8
Power supply design that achieves low leakage current while ensuring EMI performance Haha, look at it·
Power supply design that achieves low leakage current while maintaining EMI performance[ Print ][ Return ]在AC-DC开关电源中,漏电流最主要的来源是Y类电容。通过使用变压器屏蔽绕组或在输入级加入一个扼流圈,可以显著地降低Y电容的数值或在某些场合去除它,从而降低漏电流并且仍满足有一定裕量的传导...
fighting Analog electronics
LoopCount count problem in WatchDog routine
[color=#000]I am currently using the watchdog routine. As shown in the figure, before entering the watchdog interrupt, it is always in the for loop. The watchdog timer is 8 bits and should only count ...
寒风吹彻 Microcontroller MCU

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 995  376  2351  2489  2011  21  8  48  51  41 
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