EEWORLDEEWORLDEEWORLD

Part Number

Search

502S58E151GG3S

Description
CAPACITOR, CERAMIC, MULTILAYER, 5000 V, C0G, 0.00015 uF, SURFACE MOUNT, 3838, CHIP, ROHS COMPLIANT
CategoryPassive components    capacitor   
File Size886KB,11 Pages
ManufacturerJohanson Dielectrics
Environmental Compliance  
Download Datasheet Parametric View All

502S58E151GG3S Overview

CAPACITOR, CERAMIC, MULTILAYER, 5000 V, C0G, 0.00015 uF, SURFACE MOUNT, 3838, CHIP, ROHS COMPLIANT

502S58E151GG3S Parametric

Parameter NameAttribute value
Is it lead-free?Lead free
Is it Rohs certified?conform to
MakerJohanson Dielectrics
package instruction, 3838
Reach Compliance Codecompli
ECCN codeEAR99
capacitance0.00015 µF
Capacitor typeCERAMIC CAPACITOR
dielectric materialsCERAMIC
JESD-609 codee4
Manufacturer's serial numberE
Installation featuresSURFACE MOUNT
multi-layerYes
negative tolerance2%
Number of terminals2
Maximum operating temperature125 °C
Minimum operating temperature-55 °C
Package shapeRECTANGULAR PACKAGE
method of packingBULK
positive tolerance2%
Rated (DC) voltage (URdc)5000 V
size code3838
surface mountYES
Temperature characteristic codeC0G
Temperature Coefficient-/+30ppm/Cel ppm/°C
Terminal surfaceGold (Au)
Terminal shapeWRAPAROUND
M
ulti
-l
ayer
H
igH
-Q C
apaCitors
These lines of multilayer capacitors have been developed for
High-Q and microwave applications.
The
S-Series
(R03S, R07S, R14S, R15S) capacitors give an
ultra-high Q performance, and exhibit NP0 temperature char-
acteristics.
The
L-Series
(R05L) capacitors give mid-high Q performance,
and exhibit NP0 temperature characteristics.
The
E-Series
(S42E, S48E, S58E) capacitors give excellent
high-Q performance from HF to Microwave frequencies.
Typical uses are high voltage, high current applications. They
are offered in chip (Ni barrier or Non-Magnetic Pt.-Ag) or in
Non-Magnetic leaded form.
The
W-Series
(R05W) capacitors offer a large capacitance
value in an ultra-small 0201 package size. These exhibit a X7R
temperature characteristic.
RoHS compliance is standard for all unleaded parts (see
termination options box).
H
ow To
o
rder
252
VOLTAGE (DC)
6R3 = 6 .3 V
101 = 100 V
160 = 16 V
250 = 25 V
500 = 50 V
201 = 200 V
251 = 250 V
301 = 300 V
501 = 500 V
102 = 1000 V
152 = 1500 V
202 = 2000 V
252 = 2500 V
362 = 3600 V
502 = 5000 V
722 = 7200 V
S48
CASE SIZE
R03 (01005)
R05 (0201)
R07 (0402)
R14 (0603)
R15 (0805)
S42 (1111)
S48 (2525)
S58 (3838)
E
470
CAPACITANCE (pF)
1st two digits are
significant; third digit
denotes number of
zeros, R = decimal .
100 = 10 pF
101 = 100 pF
K
TOLERANCE
A = ± 0 .05 pF
B = ± 0 .10 pF
C = ± 0 .25 pF
D = ± 0 .50 pF
F = ±1 %
G = ±2%
J = ±5%
K = ± 10%
For tolerance
availability, see chart .
V
TERMINATION
Nickel Barrier
V = Ni/Sn (Green)
T = Ni/SnPb
G = Ni/Au (Green)
Non-Mag*
U = Cu/Sn (Green)
C = Cu/SnPb
Leaded (All Non-Mag)*
1 = Microstrip
2 = Axial Ribbon
3 = Axial Wire
4 = Radial Ribbon
5 = Radial Wire
4
E
PACKAGING
S = Bulk
W = Waffle Pack
01005 - 0603
Y = Paper 5” Reel
T = Paper 7” Reel
*R = Paper 13” Reel
*J = Paper 5” Reel -
Horizontally Oriented Electrodes
*N = Paper 5” Reel -
Vertically Oriented Electrodes
DIELECTRIC
S = Ultra High Q NPO
L = High Q NPO
E = Ultra High Q NPO,
High Voltage, High Power,
*T = High Temp (175C)
Ultra High Q NPO
W= X7R
*L = Paper 7” Reel -
Horizontally Oriented Electrodes
*V = Paper 7” Reel -
Vertically Oriented Electrodes
Part Number written:
252S48E470KV4E
MARKING
3 = Cap Code
& Tolerance
4 = No Marking
6 = EIA Code
(Marking on
0805 and
larger only)
0805 - 3838
Z = Embossed 5” Reel
E = Embossed 7” Reel
*U = Embossed 13” Reel
*M = Embossed 5” Reel -
Horizontally Oriented Electrodes
*Q = Embossed 5” Reel -
Vertically Oriented Electrodes
*G = Embossed 7” Reel -
Horizontally Oriented Electrodes
*P = Embossed 7” Reel -
Vertically Oriented Electrodes
Tape specifications
conform to EIA RS481
“*” - Not available for all MLCC - Call factory for info.
www.johansontechnology.com
7
Dual port ram problem
I would like to ask a question, can I use two areas of a dual-port RAM to perform data ping-pong operations?...
hitszjia FPGA/CPLD
In spi communication, when stm32 is the master, how to make mosi high when not sending data.
As the title says. Because under normal circumstances, mosi does not send data at low level. I want to set it to high level. Is there a way to set it?...
spark2013 stm32/stm8
Huawei Analog Circuit Classic Textbook
Huawei Analog Circuit Classic Textbook [[i] This post was last edited by aishuang on 2011-7-16 08:45 [/i]]...
aishuang Analog electronics
.NET Compact Framework 1.0 C# How to implement DateTimePicker?
How to implement DateTimePicker in .NET Compact Framework 1.0 C#? Create it by calling API? How to write it specifically?...
nmylx Embedded System
DIY emergency light--control part
I didn't succeed last night, I was very depressed! I didn't bring a multimeter and couldn't check it. Today, I carefully checked it myself and found that the soldering chip was cold! First, the PWM de...
solidwants DIY/Open Source Hardware
Failed to set breakpoint when debugging program in ccs
When I was debugging the program in single step, when I set the 8th breakpoint, the prompt "insufficient resources" appeared, and then I couldn't set the breakpoint. No matter which sentence I was in,...
下雨天不洗澡 Microcontroller MCU

Technical ResourceMore

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 2694  1777  2596  2397  1846  55  36  53  49  38 
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