EEWORLDEEWORLDEEWORLD

Part Number

Search

C1206X7R101-223MN6P

Description
Ceramic Capacitor, Multilayer, Ceramic, 100V, 20% +Tol, 20% -Tol, X7R, 15% TC, 0.022uF, Surface Mount, 1206, CHIP, ROHS COMPLIANT
CategoryPassive components    capacitor   
File Size1023KB,14 Pages
ManufacturerVENKEL LTD
Environmental Compliance  
Download Datasheet Parametric View All

C1206X7R101-223MN6P Overview

Ceramic Capacitor, Multilayer, Ceramic, 100V, 20% +Tol, 20% -Tol, X7R, 15% TC, 0.022uF, Surface Mount, 1206, CHIP, ROHS COMPLIANT

C1206X7R101-223MN6P Parametric

Parameter NameAttribute value
Is it lead-free?Lead free
Is it Rohs certified?conform to
MakerVENKEL LTD
package instruction, 1206
Reach Compliance Codecompli
ECCN codeEAR99
capacitance0.022 µF
Capacitor typeCERAMIC CAPACITOR
dielectric materialsCERAMIC
high1.778 mm
JESD-609 codee3
length3.2 mm
Manufacturer's serial numberC1206
Installation featuresSURFACE MOUNT
multi-layerYes
negative tolerance20%
Number of terminals2
Maximum operating temperature125 °C
Minimum operating temperature-55 °C
Package shapeRECTANGULAR PACKAGE
Package formSMT
method of packingTR, PAPER, 7 INCH
positive tolerance20%
Rated (DC) voltage (URdc)100 V
seriesC
size code1206
surface mountYES
Temperature characteristic codeX7R
Temperature Coefficient15% ppm/°C
Terminal surfaceMatte Tin (Sn) - with Nickel (Ni) barrie
Terminal shapeWRAPAROUND
width1.6 mm
Ceramic Chip Capacitors
Multilayer chip capacitors have a low residual inductance, an excellent frequency
response and minimal stray capacitance since there are no leads. These characteristics
enable design to be very close to the theoretical values of the capacitors.
NP0/C0g:
15%
10%
5%
0%
-5%
-10%
-15%
-55°C
-25°C
0°C
SPECIFICATIONS:
Typical Capacitance Change vs. Temperature
OPERATING TEMPERATURE RANGE:
TEMPERATURE COEFFICIENT:
TEMPERATURE VOLTAGE COEFFICIENT:
DISSIPATION FACTOR:
INSULATION RESISTANCE:
AGEING:
WITHSTANDING VOLTAGE:
TEST PARAMETERS:
25°C
50°C
75°C
100°C
125°C
CAPACITANCE TOLERANCE:
OPERATING TEMPERATURE RANGE:
TEMPERATURE COEFFICIENT:
TEMPERATURE VOLTAGE COEFFICIENT:
DISSIPATION FACTOR:
-55°C to +125°C
0 ±30PPM/°C
0 ±30PPM/°C
0.1% MAX.
>1000 ohms F or 100 G ohms, whichever is less at 25°C, VDCW.
(The IR at 125°C is 10% of the value at 25°C)
None
>2.5 times VDCW
1MHz ± 100KHz at 1.0 ± 0.2 Vrms
100 pF, 25°C
1KHz ± 100Hz at 1.0 ± 0.2 Vrms > 100 pF, 25°C
B,C,D,F,G,J,K
-55°C to +125°C
0 ±15%∆°C MAX.
X7R not applicable
For 50 volts and 100 volts: 2.5% MAX.;
For 25 Volts 3.5 %( 0201, 0402, 0603, sizes
If 7% Max, for Values
0.33uF) for 16 Volts: 3.5% Max (except 0402
0.33uF & 0603
0.15uF DF is 5% Max)
For 10 Volts: 5% Max
For 6.3 Volts: 10% Max
For Values
10uF For all voltage offerings, the DF is 10% Max
>1000 ohms F or 100 G ohms, whichever is less at 25°C, VDCW.
(The IR at 125°C is 10% of the value at 25°C)
2.5% per decade hour, typical
>2.5 times VDCW
1KHz ± 100Hz at 1.0 ± 0.2 Vrms > 100 pF, 25°C
J,K,M
-55°C to +85°C
0 ±15%∆°C MAX.
X5R not applicable
For 50 Volts and 100 Volts 2.5% Max
For 25 Volts: 3.5% Max (0201, 0402, 0603,
0.33uF DF is 7% Max)
For 16 Volts: 3.5% Max (except 0402
0.33uF & 0603
0.15uF DF is
5% Max)
For 10 Volts 5.0% Max; For 4.0 Volts and 6.3Volts: 10% Max
For values
10uF the D.F. is 10% Max.
>1000 ohms F or 100 G ohms, whichever is less
at 25°C, VDCW. (10,000 ohms at 125°C)
2.5% per decade hour, typical
>2.5 times VDCW
1KHZ ± 100Hz at 1.0 ± 0.2 Vrms > 100 pF, 25°C
K,M
+10°C to +85°C
+22% - 56%∆°C MAX.
4.0% MAX.
>100 ohms F or 10 G ohms, whichever is less at 25°C, VDCW.
5% per decade hour, typical
>2.5 times VDCW
1KHz ± 100Hz at 0.5 ± 0.1 Vrms, 25°C
M,Z
-30°C to +85°C
+22% - 82%∆°C MAX.
For 25 volts and 50 volts: 5% MAX.;
For 16 volts: 7% MAX.; For 10 volts: 9% MAX.;
For 6.3 volts: 11% MAX.
For higher Cap values > 10µF, the D.F. is 20% MAX.
>100 ohms F or 10 G ohms, whichever is less at 25°C, VDCW.
7% per decade hour, typical
>2.5 times VDCW
1KHz ± 100Hz at 1.0 ± 0.2 Vrms, 25°C
M,Z
X7R:
15%
10%
5%
0%
-5%
-10%
-15%
-55°C
-25°C
0°C
SPECIFICATIONS:
Typical Capacitance Change vs. Temperature
INSULATION RESISTANCE:
25°C
50°C
75°C
100°C
125°C
AGEING:
WITHSTANDING VOLTAGE:
TEST PARAMETERS:
*
CAPACITANCE TOLERANCE:
OPERATING TEMPERATURE RANGE:
TEMPERATURE COEFFICIENT:
TEMPERATURE VOLTAGE COEFFICIENT:
DISSIPATION FACTOR:
X5R:
15%
10%
5%
0%
-5%
-10%
-15%
-55°C
-25°C
0°C
SPECIFICATIONS:
Typical Capacitance Change vs. Temperature
INSULATION RESISTANCE:
25°C
50°C
75°C
100°C
125°C
Z5U:
20%
0%
-20%
-40%
-60%
-80%
AGEING:
WITHSTANDING VOLTAGE:
TEST PARAMETERS:
*
CAPACITANCE TOLERANCE:
OPERATING TEMPERATURE RANGE:
TEMPERATURE COEFFICIENT:
DISSIPATION FACTOR:
INSULATION RESISTANCE:
AGEING:
WITHSTANDING VOLTAGE:
TEST PARAMETERS:
CAPACITANCE TOLERANCE:
OPERATING TEMPERATURE RANGE:
TEMPERATURE COEFFICIENT:
DISSIPATION FACTOR:
SPECIFICATIONS:
Typical Capacitance Change vs. Temperature
-55°C
-25°C
0°C
25°C
50°C
75°C
100°C
125°C
Y5V:
40%
20%
0%
-20%
-40%
-60%
-80%
-100%
-55°C
-25°C
0°C
SPECIFICATIONS:
Typical Capacitance Change vs. Temperature
25°C
50°C
75°C
100°C
125°C
INSULATION RESISTANCE:
AGEING:
WITHSTANDING VOLTAGE:
TEST PARAMETERS:
*
CAPACITANCE TOLERANCE:
5
1KHz ± 100Hz at 1.0 ± 0.2 Vrms
<
10uF (10 V min.)
1KHz ± 100Hz at 0.5 ± 0.1 Vrms
<
10uF (6.3V max.)
120Hz ± 24Hz at 0.5 ± 0.1 Vrms
10uF
All components in this section are RoHS compliant per the EU directives and definitions.
*
Test parameters for High Value Caps - X7R, X5R and Y5V:
Dear experts, can you help me see the circuit diagram of the op amp and the transistor?
Dear experts, I have encountered a problem, but I really can't solve it now due to my lack of ability. Please help me. This figure is a signal transmission diagram. After Vin (left end of the figure) ...
小喇叭 Analog electronics
EEWORLD Assessment Rules
EEWORLD Evaluation Channel is officially online! [/size][/align] [align=center][size=4][b]General Rules for Evaluation Activities[/b][/size][/align] [align=left][size=4][color=#ff0000][b]Evaluation Pr...
okhxyyo Suggestions & Announcements
How to use Android system to create a smart home based on WIFI?
I want to build a smart home system recently. I want to control my home appliances with my phone. The cost should not be too high. I want a DIY system, not a finished product. Where should I start? Ca...
qq21467004 DIY/Open Source Hardware
I2C communication problem with tm4c123gh6pm
I recently worked on a small project that required the use of the GY30 light intensity sensor, which I guess many people have used before, and uses I2C communication. I don't want to use the GPIO simu...
Psyclonus Microcontroller MCU
[Low Power] Power consumption of FPGA architecture - the present and future of low power FPGA design
This article will introduce the power consumption of Xilinx FPGAs, popular low-power features, and user options that affect power consumption, and explore recent low-power research to gain insight int...
hangsky FPGA/CPLD
PCB diagram of Dr. Dot micro quadcopter
PCB diagram of Dr. Dot micro quadcopter...
圆点博士 DIY/Open Source Hardware

Technical ResourceMore

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 2821  1084  758  629  573  57  22  16  13  12 
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