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C657C103MGG5TA

更新时间: 2024-01-01 21:45:27
品牌 Logo 应用领域
基美 - KEMET 电容器
页数 文件大小 规格书
14页 923K
描述
Ceramic Capacitor, Ceramic, 2000V, C0G, -/+30ppm/Cel TC, 0.01uF, 6727

C657C103MGG5TA 技术参数

是否无铅: 不含铅是否Rohs认证: 符合
生命周期:Active包装说明:,
Reach Compliance Code:compliant风险等级:5.72
电容:0.01 µF电容器类型:CERAMIC CAPACITOR
介电材料:CERAMIC高度:15.24 mm
JESD-609代码:e3长度:17.02 mm
安装特点:THROUGH HOLE MOUNT多层:Yes
负容差:20%端子数量:2
最高工作温度:125 °C最低工作温度:-55 °C
封装形式:Radial包装方法:Bulk
正容差:20%额定(直流)电压(URdc):2000 V
表面贴装:NO温度特性代码:C0G
温度系数:-/+30ppm/Cel ppm/ °C端子面层:Matte Tin (Sn) - with Nickel (Ni) barrier
端子节距:14.6 mm端子形状:WIRE
宽度:6.89 mmBase Number Matches:1

C657C103MGG5TA 数据手册

 浏览型号C657C103MGG5TA的Datasheet PDF文件第1页浏览型号C657C103MGG5TA的Datasheet PDF文件第3页浏览型号C657C103MGG5TA的Datasheet PDF文件第4页浏览型号C657C103MGG5TA的Datasheet PDF文件第5页浏览型号C657C103MGG5TA的Datasheet PDF文件第6页浏览型号C657C103MGG5TA的Datasheet PDF文件第7页 
APPLICATION NOTES FOR MULTILAYER  
CERAMIC CAPACITORS  
The variation of a capacitor’s impedance with frequency  
determines its effectiveness in many applications.  
ELECTRICAL CHARACTERISTICS  
The fundamental electrical properties of multilayer  
ceramic capacitors are as follows:  
Dissipation Factor: Dissipation Factor (DF) is a mea-  
sure of the losses in a capacitor under AC application. It is the  
ratio of the equivalent series resistance to the capacitive reac-  
tance, and is usually expressed in percent. It is usually mea-  
sured simultaneously with capacitance, and under the same  
conditions. The vector diagram in Figure 2 illustrates the rela-  
tionship between DF, ESR, and impedance. The reciprocal of  
the dissipation factor is called the “Q”, or quality factor. For  
convenience, the “Q” factor is often used for very low values  
of dissipation factor. DF is sometimes called the “loss tangent”  
or “tangent ”, as derived from this diagram.  
Polarity: Multilayer ceramic capacitors are not polar,  
and may be used with DC voltage applied in either direction.  
Rated Voltage: This term refers to the maximum con-  
tinuous DC working voltage permissible across the entire  
operating temperature range. Multilayer ceramic capacitors  
are not extremely sensitive to voltage, and brief applications  
of voltage above rated will not result in immediate failure.  
However, reliability will be reduced by exposure to sustained  
voltages above rated.  
Capacitance: The standard unit of capacitance is the  
farad. For practical capacitors, it is usually expressed in  
ESR  
Figure 2  
-6  
-9  
microfarads (10 farad), nanofarads (10 farad), or picofarads  
-12  
(10 farad). Standard measurement conditions are as  
O
ESR  
follows:  
DF =  
X
c
Class I (up to 1,000 pF):  
1MHz and 1.2 VRMS  
maximum.  
δ
X
Ζ
c
Class I (over 1,000 pF):  
1kHz and 1.2 VRMS  
maximum.  
1
2πfC  
=
X
Class II:  
Class III:  
1 kHz and 1.0 0.2 VRMS.  
1 kHz and 0.5 0.1 VRMS.  
c
Like all other practical capacitors, multilayer ceramic  
capacitors also have resistance and inductance. A simplified  
schematic for the equivalent circuit is shown in Figure 1.  
Other significant electrical characteristics resulting from  
these additional properties are as follows:  
Insulation Resistance: Insulation Resistance (IR) is the  
DC resistance measured across the terminals of a capacitor,  
represented by the parallel resistance (Rp) shown in Figure 1.  
For a given dielectric type, electrode area increases with  
capacitance, resulting in a decrease in the insulation resis-  
tance. Consequently, insulation resistance is usually specified  
as the “RC” (IR x C) product, in terms of ohm-farads or  
megohm-microfarads. The insulation resistance for a specific  
capacitance value is determined by dividing this product by  
the capacitance. However, as the nominal capacitance values  
become small, the insulation resistance calculated from the  
RC product reaches values which are impractical.  
Consequently, IR specifications usually include both a mini-  
mum RC product and a maximum limit on the IR calculated  
from that value. For example, a typical IR specification might  
read “1,000 megohm-microfarads or 100 gigohms, whichever  
is less.”  
R
Figure 1  
P
R
L
S
C
C = Capacitance  
L = Inductance  
R
R
= Equivalent Series Resistance (ESR)  
= Insulation Resistance (IR)  
S
P
Impedance: Since the parallel resistance (Rp) is nor-  
mally very high, the total impedance of the capacitor is:  
Insulation Resistance is the measure of a capacitor to  
resist the flow of DC leakage current. It is sometimes referred  
to as “leakage resistance.” The DC leakage current may be  
calculated by dividing the applied voltage by the insulation  
resistance (Ohm’s Law).  
2
RS + (XC - XL)2  
Z =  
Dielectric Withstanding Voltage: Dielectric withstand-  
ing voltage (DWV) is the peak voltage which a capacitor is  
designed to withstand for short periods of time without dam-  
age. All KEMET multilayer ceramic capacitors will withstand a  
test voltage of 2.5 x the rated voltage for 60 seconds.  
Where Z =Total Impedance  
RS = Equivalent Series Resistance  
1
XC = Capacitive Reactance =  
2πfC  
KEMET specification limits for these characteristics at  
standard measurement conditions are shown in Table 1 on  
page 4. Variations in these properties caused by changing  
conditions of temperature, voltage, frequency, and time are  
covered in the following sections.  
XL = Inductive Reactance = 2πfL  
© KEMET Electronics Corporation, P.O. Box 5928, Greenville, S.C. 29606, (864) 963-6300  
5

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