EEWORLDEEWORLDEEWORLD

Part Number

Search

1206Y1000821FCT

Description
CAP CER 820PF 100V C0G/NP0 1206
CategoryPassive components   
File Size554KB,6 Pages
ManufacturerKnowles
Websitehttp://www.knowles.com
Environmental Compliance
Download Datasheet Parametric View All

1206Y1000821FCT Online Shopping

Suppliers Part Number Price MOQ In stock  
1206Y1000821FCT - - View Buy Now

1206Y1000821FCT Overview

CAP CER 820PF 100V C0G/NP0 1206

1206Y1000821FCT Parametric

Parameter NameAttribute value
capacitance820pF
Tolerance±1%
Voltage - Rated100V
Temperature CoefficientC0G,NP0(1B)
Operating temperature-55°C ~ 125°C
characteristicSoft terminal
grade-
applicationBoardflex sensitive
failure rate-
Installation typeSurface mount, MLCC
Package/casing1206 (3216 metric)
size/dimensions0.126" long x 0.063" wide (3.20mm x 1.60mm)
Height - Installation (maximum)-
Thickness (maximum)0.063"(1.60mm)
lead spacing-
Lead form-
MLCC
Standard MLCC Ranges
Surface Mount MLC Capacitors
Electrical Details
Capacitance Range
Temperature Coefficient of
Capacitance (TCC)
C0G/NP0
X7R
C0G/NP0
X7R
Insulation Resistance (IR)
Dielectric Withstand Voltage (DWV)
C0G/NP0
X7R
0.47pF to 22µF
0 ± 30ppm/˚C
±15% from -55˚C to +125˚C
Cr > 50pF
≤0.0015
Cr
50pF = 0.0015(15÷Cr+0.7)
0.025
100G or 1000secs (whichever is the less)
Voltage applied for 5 ±1 seconds, 50mA
charging current maximum
Zero
<2% per time decade
A range of dc rated multi-layer chip capacitors from
0.47pF to 22µF and in case sizes 0603 to 8060 in
C0G/NP0 and X7R dielectrics. Suitable for all general
purpose and high reliability applications where package
size and reliability are important. All are manufactured
using Syfer’s unique wet process and incorporate
precious metal electrodes.
Dissipation Factor
Ageing Rate
Range Dimensions – Standard MLCC Ranges
Length
(L1)
mm/inches
1.6 ± 0.2
0.063 ± 0.008
2.0 ± 0.3
0.08 ± 0.012
3.2 ± 0.3
0.126 ± 0.012
3.2 ± 0.3
0.126 ± 0.012
4.5 ± 0.35
0.18 ± 0.014
4.5 ± 0.35
0.18 ± 0.014
4.5 ± 0.35
0.18 ± 0.014
5.7 ± 0.4
0.225 ± 0.016
5.7 ± 0.4
0.225 ± 0.016
9.2 ± 0.5
0.36 ± 0.02
14.0 ± 0.5
0.55 ± 0.02
20.3 ± 0.5
0.8 ± 0.02
Width
(W)
mm/inches
0.8 ± 0.2
0.031 ± 0.008
1.25 ± 0.2
0.05 ± 0.008
1.6 ± 0.2
0.063 ± 0.008
2.5 ± 0.3
0.1 ± 0.012
2.0 ± 0.3
0.08 ± 0.012
3.2 ± 0.3
0.126 ± 0.012
6.30 ± 0.4
0.25 ± 0.016
5.0 ± 0.4
0.197 ± 0.016
6.3 ± 0.4
0.25 ± 0.016
10.16 ± 0.5
0.4 ± 0.02
12.7 ± 0.5
0.5 ± 0.02
15.24 ± 0.5
0.6 ± 0.02
Max. Thickness
(T)
mm/inches
0.8
0.013
1.3
0.051
1.6
0.063
2.0
0.08
2.0
0.08
2.5
0.1
2.5
0.1
4.2
0.16
4.2
0.16
2.5
0.1
4.2
0.16
2.5
0.1
Termination Band
(L2)
mm/inches
min
0.10
0.004
0.13
0.005
0.25
0.01
0.25
0.01
0.25
0.01
0.25
0.01
0.25
0.01
0.25
0.01
0.25
0.01
0.5
0.02
0.5
0.02
0.5
0.02
max
0.40
0.015
0.75
0.03
0.75
0.03
0.75
0.03
1.0
0.04
1.0
0.04
1.0
0.04
1.0
0.04
1.0
0.04
1.5
0.06
1.5
0.06
1.5
0.06
Size
0603
0805
1206
1210
1808
1812
1825
2220
2225
3640
5550
8060
Custom chip sizes not included in the table, but larger than 2225, can be considered with minimum tooling charges. Please refer specific requests direct to the sales office.
Max thickness relates to standard components and actual thickness may be considerably less. Thicker parts, or components with reduced maximum thickness, can be considered by request – please refer
requests to the sales office.
Ordering Information – Standard MLCC Range
1210
Chip Size
0603
0805
1206
1210
1808
1812
1825
2220
2225
3640
5550
8060
Y
Termination
Y
= FlexiCap
TM
termination base with
nickel barrier (100%
matte tin plating).
RoHS compliant.
H
= FlexiCap
termination base with
nickel barrier (tin/lead
plating with min. 10%
lead).
Not RoHS compliant.
F
= Silver Palladium.
RoHS compliant
J
= Silver base with
nickel barrier (100%
matte tin plating).
RoHS compliant
A
= Silver base with
nickel barrier (tin/lead
plating with min. 10%
lead).
Not RoHS compliant
TM
100
Voltage d.c.
(marking code)
010
= 10V
016
= 16V
025
= 25V
050
= 50V
063
= 63V
100
= 100V
200
= 200V
250
= 250V
500
= 500V
630
= 630V
1K0
= 1kV
1K2
=1.2kV
1K5
=1.5kV
2K0
= 2kV
2K5
=2.5kV
3K0
=3kV
4K0
=4kV
5K0
=5kV
6K0
=6kV
8K0
=8kV
10K
=10kV
12K
=12kV
0103
Capacitance in Pico
farads (pF)
<1.0pF
Insert a P for the decimal
point as the first character.
e.g.,
P300
= 0.3pF
Values in 0.1pF steps
≥1.0pF
& <10pF
Insert a P for the decimal
point as the second
character.
e.g.,
8P20
= 8.2pF
Values are E24 series
≥10pF
First digit is 0.
Second and third digits are
significant figures of
capacitance code.
The fourth digit is the
number of zeros following.
e.g.,
0101
= 100 pF
Values are E12 series
J
Capacitance
Tolerance
H:
± 0.05pF
(only available for
values <4.7pF)
<10pF
B:
± 0.10pF
C:
± 0.25pF
D:
± 0.5pF
F:
± 1.0pF
≥10pF
F:
± 1%
G:
± 2%
J:
± 5%
K:
± 10%
M:
± 20%
X
Dielectric
Codes
C
= C0G/NP0
(1B)
X
= X7R
(2R1)
P
= X5R
T
Packaging
T
= 178mm
(7”) reel
R
= 330mm
(13”) reel
B
= Bulk pack
– tubs or trays

Suffix Code
Used for specific
customer
requirements
© Knowles 2014
StandardMLCCDatasheet Issue 4 (P109801) Release Date 04/11/14
Page 1 of 6
Tel: +44 1603 723300 | Email SyferSales@knowles.com | www.knowlescapacitors.com/syfer
[Silicon Labs BG22-EK4108A Bluetooth Development Evaluation] Part 4: NCP Mode Host Computer Development
[i=s]This post was last edited by jj1989 on 2022-2-9 09:04[/i][Silicon Labs BG22-EK4108A Bluetooth Development Evaluation] Part 4: NCP Mode Host Computer Development Preface I originally planned to do...
jj1989 Development Kits Review Area
About adding new header files, .lib files and dll under evc
Masters! I have a problem. I want to develop a program to read IC card reader on Arm board. IC card reader provides Windows.dll driver. There are three files: Mwic_32.dll, Mwic_32.lib, Mwic_32.h. I fi...
twobyte Embedded System
Is it possible that the DCO clock cannot be accurately configured?
For example, if I want to get an 8MHz MCLK or SMCLK, when I use XT1 or the internal REFCLK as the reference source and multiply it through the FLL frequency-locked loop, I change the value of FLLN and...
黄河五路 Microcontroller MCU
A simple MCU experiment developer suitable for classroom teaching
The course of single-chip microcomputer application system is one of the main courses of electrical majors at present. It is very practical. For college students, classroom teaching alone is far from ...
songbo MCU
I would like to ask a question about expanding RAM based on 51 microcontroller!
My system is based on 8051 microcontroller, with 32K SRAM expansion, and its address space is 0x0000-0x7FFF, so only 15 address lines are needed. I use A15 (P2_7) as chip select signal, and expand 2 I...
zhouliyong11 Embedded System
EPC Launches High-Efficiency Power Conversion Solution Based on Gallium Nitride Devices
[align=left][url=https://www.eeworld.com.cn/dygl/2018/ic-news071028607.html][b][color=black][font=宋体][size=14.0pt]GaN-based devices[/size][/font][/color][/b][b][font=宋体][size=14.0pt]48 V[/size][/font]...
EEWORLD社区 Power technology

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 1097  537  2132  2795  2409  23  11  43  57  49 
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