EEWORLDEEWORLDEEWORLD

Part Number

Search

500SC07T126MDJC-ROHS

Description
Ceramic Capacitor, Ceramic,
CategoryPassive components    capacitor   
File Size2MB,25 Pages
ManufacturerEXXELIA Group
Download Datasheet Parametric View All

500SC07T126MDJC-ROHS Overview

Ceramic Capacitor, Ceramic,

500SC07T126MDJC-ROHS Parametric

Parameter NameAttribute value
Objectid7212222066
package instruction,
Reach Compliance Codeunknown
ECCN codeEAR99
Capacitor typeCERAMIC CAPACITOR
dielectric materialsCERAMIC
Number of terminals2
CERAMIC CAPACITORS
High Capacitance Stacked Capacitors
General characteristics
SC / SV Series
FEATURES
• Multilayer stacked ceramic capacitors
• Dielectric type II
• Capacitance range: 47nf to 390
µF
• Voltage range: 50 V
DC
to 500 V
DC
• SV Series: 2 wires components
• SC Series: 4 wires (W4), Dual In Line (DIL) or ribbons
terminations
MARKING
Size
Marking codes
«TA» logo
Cap code + Tolerance code
Rated voltage value
Example
TA
105M
100 V
ELECTRICAL SPECIFICATIONS
Description
CECC
EIA
Exxelia Temex Code
Operating temperature range
Maximun ∆C/°C over Temperature
range without voltage applied
Ageing
Dissipation Factor (DF)
Voltage proof
Insulation Resistance
(IR) at 25°C under Ur
Insulation Resistance
(IR) at 125°C under Ur
«X» Series (type II)
2R1
X7R
X
–55°C to +125°C
± 15%
≤2.5% per decade hour
≤ 2.5%
U
R
≤ 200 V: 2.5 x U
R
U
R
> 200 V: 2.0 x U
R
100GΩ or 1000Ω.F
whichever is the less
10GΩ or 100Ω.F
whichever is the less
≤ 100pF: 1MHz / 1Vrms (no bias)
> 100pF: 1KHz / 1Vrms (no bias)
See page 68
«T» Series (type II)
2R1
X7R
T
–55°C to +125°C
± 15%
≤2.5% per decade hour
≤ 2.5%
U
R
≤ 200 V: 2.5 x U
R
U
R
> 200 V: 2.0 x U
R
100GΩ or 1000Ω.F
whichever is the less
10GΩ or 100Ω.F
whichever is the less
≤ 100pF: 1MHz / 1Vrms (no bias)
> 100pF: 1KHz / 1Vrms (no bias)
See page 68
All sizes
PACKAGING
«Blister» boxes:
For all products, special «blister» boxes are used to optimize
the protection of the parts during the carriage and the stor-
age. Depending upon the termination (with or without con-
nection) and the size, the number of the parts in each box
is defined. Please, consult us for more details.
Measurement Conditions
for C and DF at 20°C
Capacitance versus applied
Voltage and Temperature
HOW TO ORDER
201
Rated
voltage
SV
Series
01
Exxelia
size code
X
Dielectric
code
105
Capacitance
K
Tolerance
R
Termination
-
Coating
-RoHS
RoHS
Compliant
500:
50 V
101:
100 V
201:
200 V
501:
500 V
SC
SV
00
(SC only)
01
02
03
04
05
06
07
10
(SC only)
11
(SC only)
12
(SC only)
18
(SC only)
X
= X7R
T
= X7R
1
st
two digits represent
significant figures; last
digit specifies the num-
ber of zeros to follow.
Examples:
104:
0.1µF
335:
3.3µF
156:
15µF
107:
10µF
K
= ±10%
M
= ±20%
DN
DJ
DL
DIL N type
DIL J type
DIL L type
SC Series
RoHS
= 100% tinned phosphor bronze, non magnetic.
Lead status:
0% Pb.
Non RoHS
= Sn (60%) Pb (40%) plated phosphor bronze,
non magnetic.
Lead status:
Pb 40% of the plated layer.
RoHS
= 100% tinned copper, non magnetic.
Lead status:
0% Pb
RoHS
= 100% tinned copper, non magnetic.
Lead status:
0% Pb.
W4
Radial 4 wires
Non RoHS
= Sn (70%) Pb (30%) plated Copper,
non magnetic.
Lead status:
Pb 30% of the plated layer.
SV Series
W2
Radial 2 wires
See
W4
- =
uncoated and no
marking
U =
uncoated and
marked
C =
coated and
marked
-
= non-RoHS compliant
Both RoHS and non-RoHS versions
exist. This is due to the wishes of
some customers who still need
non-RoHS components in their
applications. This suffix must be
required for RoHS compliancy.
RL
Ribbon L type
RJ
Ribbon J type
www.exxelia.com
81
info@exxelia.com
Page revised 06/20
HIGH CAPACITANCE
Are there any differences between AT series microcontrollers and STC series microcontrollers and 485 communications that I should pay attention to?
Are there any differences between AT series microcontrollers and STC series microcontrollers and 485 communication that I need to pay attention to? My program can communicate with AT89S52, but garbled...
lc123300798 Embedded System
Audio: Huang Jianxiang went crazy and the owner went crazy too
[wma play=true]HTTP://ent.bokee.com/images/y/fengle.mp3[/wma]...
zz123 Talking
Some questions about constant current source circuit
Dear experts, I have a question. When referring to the op amp + transistor constant current circuit, what is the use of the resistor between the op amp output and the transistor base? Why is it includ...
liling1984825 Analog electronics
EDMA transmits data, but the data received is incorrect
I use EDMA to transfer data. I first set up four arrays, pingr, pongr, pingx, and pongx, assign values to pingx and pongx, and then use mcbsp to transfer the data in pingx and pongx. Then, I use mcbsp...
shyhard Embedded System
【Fully handmade】Low noise amplifier
[backcolor=rgb(255, 255, 255)][/backcolor][size=5][color=#ff0000]I have been idle these days, so I have been researching RF amplifiers. I am a college graduate, so my level is limited. I can only do t...
RF-刘海石 RF/Wirelessly
Xilinx FPGA block RAM usage problem
Xilinx's block RAM is limited to 18K, but I only use 9K in each block RAM. Can one block RAM be divided into two 9K ones? ??? ??? ??? ??? ??? ???...
mlk123 FPGA/CPLD

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 1760  2343  9  843  1605  36  48  1  17  33 
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