EEWORLDEEWORLDEEWORLD

Part Number

Search

1812Y0160822GFR

Description
CAP CER 8200PF 16V C0G/NP0 1812
CategoryPassive components   
File Size540KB,9 Pages
ManufacturerKnowles
Websitehttp://www.knowles.com
Environmental Compliance
Download Datasheet Parametric View All

1812Y0160822GFR Overview

CAP CER 8200PF 16V C0G/NP0 1812

1812Y0160822GFR Parametric

Parameter NameAttribute value
capacitance8200pF
Tolerance±2%
Voltage - Rated16V
Temperature CoefficientC0G,NP0
Operating temperature-55°C ~ 125°C
characteristicSoft terminal
grade-
applicationBoardflex sensitive
failure rate-
Installation typeSurface mount, MLCC
Package/casing1812 (4532 metric)
size/dimensions0.177" long x 0.126" wide (4.50mm x 3.20mm)
Height - Installation (maximum)-
Thickness (maximum)0.098"(2.50mm)
lead spacing-
Lead form-
MLCC
High Reliability IECQ-CECC Ranges
IECQ-CECC MLCC 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 6.8µF
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 specialist high reliability MLCCs for use in
critical or high reliability environments. All fully
tested/approved and available with a range of suitable
termination options, including tin/lead plating and Syfer
FlexiCap™.
Dissipation Factor
Ageing Rate
IECQ-CECC – maximum capacitance values
0603
16V
C0G/NP0
X7R
C0G/NP0
X7R
C0G/NP0
X7R
C0G/NP0
X7R
C0G/NP0
X7R
C0G/NP0
X7R
C0G/NP0
X7R
1.5nF
100nF
1.0nF
56nF
470pF
47nF
330pF
10nF
100pF
5.6nF
n/a
n/a
n/a
n/a
0805
6.8nF
330nF
4.7nF
220nF
2.7nF
220nF
1.8nF
47nF
680pF
27nF
330pF
8.2nF
n/a
n/a
1206
22nF
1.0μF
15nF
820nF
10nF
470nF
6.8nF
150nF
2.2nF
100nF
1.5nF
33nF
470pF
4.7nF
1210
33nF
1.5μF
22nF
1.2μF
18nF
1.0μF
12nF
470nF
4.7nF
220nF
3.3nF
100nF
1.0nF
15nF
1808
33nF
1.5μF
27nF
1.2μF
18nF
680nF
12nF
330nF
4.7nF
180nF
3.3nF
100nF
1.2nF
18nF
1812
100nF
3.3μF
68nF
2.2μF
33nF
1.5μF
27nF
1.0μF
12nF
470nF
10nF
270nF
3.3nF
56nF
2220
150nF
5.6μF
100nF
4.7μF
68nF
2.2μF
47nF
1.5μF
22nF
1.0μF
15nF
560nF
8.2nF
120nF
2225
220nF
6.8μF
150nF
5.6μF
100nF
3.3μF
68nF
1.5μF
27nF
1.0μF
22nF
820nF
10nF
150nF
25V
50/63V
100V
200/250V
500V
1kV
Ordering Information – IECQ-CECC Range
1210
Chip Size
0603
0805
1206
1210
1808
1812
2220
2225
Y
Termination
Y
= FlexiCap™
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.
100
Rated Voltage
016
= 16V
025
= 25V
050
= 50V
063
= 63V
100
= 100V
200
= 200V
250
= 250V
500
= 500V
1K0
= 1kV
0103
Capacitance in Pico
farads (pF)
First digit is 0.
Second and third digits are
significant figures of
capacitance code. The fourth
digit is number of zeros
following. Example:
0103
= 10nF
J
Capacitance
Tolerance
<10pF
B
= ±0.1pF
C
= ±0.25pF
D
= ±0.5pF
10pF
F
= ±1%
G
= ±2%
J
= ±5%
K
= ±10%
M
= ±20%
D
Dielectric
Codes
D
= X7R (2R1) with
IECQCECC release
F
= C0G/NP0
(1B/NP0) with
IECQCECC release
B
= 2X1/BX
released in
accordance with
IECQ-CECC
R
= 2C1/BZ
released in
accordance with
IECQ-CECC
For
B
and
R
codes
please refer to
TCC/VCC range for
full capacitance
values
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
IECQ-CECCDatasheet Issue 4 (P109796) Release Date 04/11/14
Page 1 of 9
Tel: +44 1603 723300 | Email SyferSales@knowles.com | www.knowlescapacitors.com/syfer
Circuit Diagram
This is the circuit diagram...
376039329 MCU
Let's discuss some tips on using CCS
Compared with other compilers, CCS has its own strengths, and some of its highlights are unmatched by other compilers. What are its specific features? I have discovered some tricks in my use. I hope y...
dontium Microcontroller MCU
Overview of the process of drawing PCB with KiCad
[i=s]This post was last edited by qwqwqw2088 on 2021-3-12 08:47[/i]1. Import the netlist2. Draw the PCB borderThe PCB outline is placed in the Edge.Cuts layer.Descriptive comments can be placed as req...
qwqwqw2088 PCB Design
Who has used FreeScale's i.MX31? In ADS1.2, the interrupts are not working!
I use FreeScale's i.MX31 (ARM11) to build an embedded system. I can use interrupts under WinCE, but I can't see the code for initializing interrupts in winCE! I built a BootLoader in ADS1.2, but I can...
tosstaryt Embedded System
How to use BOOT1 as IO after system reset?
The reason is that my board is missing an IO output line, and I can't find it no matter what I say. The only one that can be used through the jumper is BOOT1/PB2, because now the pin is pulled down to...
hero362631780 stm32/stm8
Does anyone have information about mc9ks08ka2?
Does anyone have the information about mc9ks08ka2? And the development environment?...
zcs_zcs NXP MCU

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 2285  2883  1861  1324  2359  47  59  38  27  48 
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