EEWORLDEEWORLDEEWORLD

Part Number

Search

055U110C251ST

Description
Ceramic Capacitor, Multilayer, Ceramic, 250V, 2.2727% +Tol, 2.2727% -Tol, NP0, -/+30ppm/Cel TC, 0.000011uF, 0606,
CategoryPassive components    capacitor   
File Size134KB,3 Pages
ManufacturerCapax Technologies Inc
Websitehttp://www.capaxtechnologies.com/
Download Datasheet Parametric View All

055U110C251ST Overview

Ceramic Capacitor, Multilayer, Ceramic, 250V, 2.2727% +Tol, 2.2727% -Tol, NP0, -/+30ppm/Cel TC, 0.000011uF, 0606,

055U110C251ST Parametric

Parameter NameAttribute value
ECCN codeEAR99
YTEOL8
Objectid892764648
Reach Compliance CodeCompliant
Country Of OriginUSA
Is SamacsysN
package instruction, 0606
Installation featuresSURFACE MOUNT
negative tolerance2.2727%
capacitance0.000011 µF
Capacitor typeCERAMIC CAPACITOR
positive tolerance2.2727%
Rated (DC) voltage (URdc)250 V
size code0606
Temperature characteristic codeC0G
dielectric materialsCERAMIC
multi-layerYes
high0.889 mm
length1.4 mm
width1.4 mm
JESD-609 codee0
Number of terminals2
Package formSMT
method of packingTR
surface mountYES
Terminal surfaceTin/Lead (Sn/Pb) - with Nickel (Ni) barrier
Terminal shapeWRAPAROUND
Maximum operating temperature125 °C
Minimum operating temperature-55 °C
Temperature Coefficient30ppm/Cel ppm/°C
Is it Rohs certified?No
Q-Max / ULTRA Q-Max
Technologies, Inc
RF/ Microwave Porcelain Multi-Layer Capacitors (MLC)
The Q-Max/Ultra Q-Max series of porcelain and ceramic dielectric capacitors are ideally suited for
RF/Microwave frequency application from 10MHz to 4.2 GHz. The combination of high density, high purity
dielectric material impervious to moisture, heavy pure palladium internal electrodes and strict statistical
process controls allows Q-Max/Ultra Q-Max MLCs to meet or exceed applicable performance characteristics
of MIL-PRF-55681/4.
These capacitors are suitable solutions for applications
that require:
Extremely High Quality Factors
Very Low Equivalent Series Resistance
Very High Series Resonance
High Current Carrying Capabilities
Greatest Stability Under Changing Factors
M
ECHANICAL
D
IMENSIONS
in
Case Size
0402
0603
055
111
Length (L)
.040±.010
(1.02±.250)
.063±.006
(1.60±.152)
.055±.015
(1.40±.381)
.110±.020
(2.79±.508)
Width (W)
.020±.005
(.510±.120)
.032±.006
(.813±.152)
.055±.015
(1.40±.381)
.110±.020
(2.79±.508)
Inches (mm)
Thickness (T)
.020±.006
(.510±.152)
Max: .035
Max: (.889)
.035±.010
(.889±.25)
.100±.020
(2.54±.508)
Bandwidth (bw)
.010±.005
(.250±.120)
.014±.006
(.357±.152)
.015±.005
(.381±.120)
.015±.010
(.381±.254)
O
RDERING
I
NFORMATION
Case Size
Dielectric
Capacitance
111
Example:
0402
0603
055
111
Tolerance
J
A ±0.05pF
B ±0.10pF
C ±0.25pF
F ±1%
G ±2%
J ±5%
K ±10%
M ±20%
Voltage
201
Termination
S
Packaging
T
T Tape
and Reel
W Waffle
Pack
Marking
M
(Optional)
M = Marking
Hi-Reli Testing
Q
Q High Q
(Porcelain
Dielectric)
U Hi-Q
(Porcelain
NPO
Dielectric)
201
First 2 digits are
Significant; Third
digit indicates
number of Zeros
Examples:
201 = 200pF
2R2 = 2.2pF
- A
(Optional
)
A = Group A
B = Group B
C = Group C
Tested and
Screened
First 2 digits are
P Pd/Ag Plated
Significant; Third
(
RoHS Compliant)
digit indicates
S Solder Plated
number of Zeros
Over Nickel
SN Tin over
Examples:
Nickel Plated
(RoHS Compliant)
201 = 200V
G Gold over
151 = 150V
Nickel Plated
202 = 2000V
(RoHS Compliant)
Performance
Resonant Frequency - GHz
.
Typical Resonant Frequency vs. Capacitance
80
1000
60
100
10
40
1.0
20
0.1
Typical Q and ESR vs. Capacitance
10000
Q or ESR - ohms
1000
100
10
1.0
0.1
0.01
1
10
100
Capacitance (pF)
1000
055 Parallel
111 Parallel
055 Series
111 Series
0.1
1
10
100
Capacitance (pF)
1000
Q
ESR
0
C
APAX
T
ECHNOLOGIES
, I
NC
º
24842 A
VE
T
IBBITTS
º
V
ALENCIA
, C
A
º
91355
º
661.257.7666
º
F
AX
: 661.257.4819
WWW
.C
APAX
T
ECHNOLOGIES
.C
OM
º
P
AGE
1
º
How to calculate the service life of nand flash?
I use SQLite in a 32M nand flash. I download a file from a remote server every day, parse the file and insert it into the database. I need to insert about 5,000 records every day. Will it cause the na...
hongliang Embedded System
SWIM pin problem
Now my MCU program is complete. In order to set the SWIM pin as a normal I/O port, I get an error inmain(){CFG_GCR = 0x01;}, so how can I set the SWIM pin as a normal I/O port in my program?The proble...
caviler stm32/stm8
This may be a solution to the error in connecting the STM32 VCP host computer to the serial port
This problem has troubled me for several days. When using the USB HS CDC of the STM32 microcontroller, the following prompt often appears when using the serial port assistant or other serial port soft...
littleshrimp stm32/stm8
[Discussion] Which expert can briefly explain the uniformity in lighting design?
I have been reading some knowledge related to optics recently, but I am still a layman.What is the principle of the light diffuser?...
吾妻思萌 Discrete Device
Limitations of Flash_API for C2000 Series (28335) DSP
[size=4]The API can:[/size] [size=4]1. Can run in static internal SARAM[/size] [size=4]2. Configure the correct CPU frequency[/size] [size=4]3. Integrate the API into the application according to the ...
Jacktang Microcontroller MCU
When does the P0 port need an external pull-up resistor, and when does it not?
Today, I was reading the datasheet of AT89S51. After reading the following text, I am still not very clear about when P0 port needs an external pull-up resistor and when it does not. Please answer me,...
liutao2011 MCU

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 2033  874  2669  155  2186  41  18  54  4  45 
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