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T520X337M010ASE025 PDF预览

T520X337M010ASE025

更新时间: 2024-02-28 09:55:09
品牌 Logo 应用领域
基美 - KEMET 电容器
页数 文件大小 规格书
9页 197K
描述
CAPACITOR, TANTALUM, SOLID POLYMER, POLARIZED, 10V, 330uF, SURFACE MOUNT, 2917, CHIP

T520X337M010ASE025 技术参数

是否Rohs认证: 符合生命周期:Obsolete
包装说明:, 2917Reach Compliance Code:compliant
ECCN代码:EAR99HTS代码:8532.21.00.50
风险等级:5.4电容:330 µF
电容器类型:TANTALUM CAPACITOR介电材料:TANTALUM (SOLID POLYMER)
JESD-609代码:e3漏电流:0.33 mA
安装特点:SURFACE MOUNT负容差:20%
端子数量:2最高工作温度:105 °C
最低工作温度:-55 °C封装形状:RECTANGULAR PACKAGE
包装方法:TR, EMBOSSED PLASTIC, 7/13 INCH极性:POLARIZED
正容差:20%额定(直流)电压(URdc):10 V
纹波电流:800 mA尺寸代码:2917
表面贴装:YESDelta切线:0.1
端子面层:Matte Tin (Sn)端子形状:J BEND
Base Number Matches:1

T520X337M010ASE025 数据手册

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KEMET®  
POLYMER TANTALUM CHIP CAPACITORS  
COMPONENT PERFORMANCE CHARACTERISTICS  
Introduction  
4. Voltage Ratings  
KEMET has developed a new type of tantalum capacitor  
that replaces the solid manganese dioxide electrode with  
a solid conductive polymer. This product is named the  
KO-CAP for KEMET Organic Capacitor. The basic fami-  
lies are the T520 and T530 series. A separate detail of  
performance characteristics is presented here as there  
are some differences between the polymer tantalums and  
the standard MnO2 types. Like all KEMET tantalum  
chips, these series are 100% screened for all electrical  
parameters: Capacitance @ 120 Hz, Dissipation Factor  
(DF) @ 120 Hz, ESR @ 100 kHZ and DC Leakage. It is  
also 100% surge current tested at full rated voltage  
through a low impedance circuit. The advantages of the  
polymer include very low ESR and elimination of the  
potentially catastrophic failure mode that may occur with  
standard tantalum capacitors in a high surge current  
application. Although the natural KO-CAP series failure  
mechanism is a short circuit, it does not exhibit an explo-  
sive failure mode.  
2V-16V DC Rated Voltage  
This is the maximum peak DC operating voltage  
from -55ºC to +85ºC for continuous duty. Above  
85ºC, this voltage is derated linearly to 0.8 times  
the rated voltage for operation at 105ºC.  
Surge Voltage Ratings  
Surge voltage is the maximum voltage to which the  
part can be subjected under transient conditions  
including the sum of peak AC ripple, DC bias and  
any transients. Surge voltage capability is demon-  
strated by application of 1000 cycles of the relevant  
voltage, at 25ºC, 85ºC or 105ºC. The parts are  
charged through a 33 ohm resistor for 30 seconds  
and then discharged through a 33 ohm resistor for  
30 seconds for each cycle.  
Voltage Ratings • Table 1  
Rated  
Surge  
Voltage  
Derated  
Voltage  
Derated  
Surge  
Voltage  
Voltage  
-55ºC to +85ºC  
+105ºC  
ELECTRICAL  
2V  
2.5V  
2.6V  
3.3V  
1.6V  
2.0V  
2.4V  
3.3V  
5V  
6.4V  
8V  
12.8V  
2.1V  
2.8V  
1. Operating Temperature Range  
-55ºC to +105ºC  
3V  
4V  
6.3V  
8V  
3.9V  
5.2V  
8V  
10.4V  
13V  
3.1V  
4.3V  
6.5V  
8.7V  
10.4V  
Above 85ºC, the voltage rating is reduced linearly  
from 1.0 x rated voltage to 0.8 x rated voltage at  
105ºC.  
10V  
2. Non-Operating Temperature Range  
16V  
20.8V  
16.6V  
-55ºC to +105ºC  
5. Reverse Voltage Rating & Polarity  
Polymer tantalum capacitors are polar devices and  
may be permanently damaged or destroyed if con-  
nected in the wrong polarity. The positive terminal  
is identified by a laser-marked stripe and may also  
include a beveled edge. These capacitors will with-  
stand a small degree of transient voltage reversal  
for short periods as shown in the following table.  
Please note that these parts may not be operated  
continuously in reverse, even within these limits.  
3. Capacitance and Tolerance  
33µF to 1500µF  
±20% Tolerance  
Capacitance is measured at 120 Hz, up to 1.0 volt rms  
maximum and up to 2.5V DC maximum. DC bias caus-  
es only a small reduction in capacitance, up to about  
2% when full rated voltage is applied. DC bias is not  
commonly used for room temperature measurements  
but is more commonly used when measuring at tem-  
perature extremes.  
Table 2  
Temperature  
25ºC  
Permissible Transient Reverse Voltage  
Capacitance does decrease with increasing frequency,  
but not nearly as much or as quickly as standard tanta-  
lums. Figure 1 compares the frequency induced cap roll-  
off between the KO-CAP and traditional MnO2 types.  
Capacitance also increases with increasing tempera-  
ture. See s ection 12 for temperature coefficients .  
15% of Rated Voltage  
10% of Rated Voltage  
5% of Rated Voltage  
3% of Rated Voltage  
55ºC  
85ºC  
105ºC  
6. DC Leakage Current  
Because of the high conductivity of the polymer,  
the KO-CAP family has higher leakage currents  
than traditional MnO2 type Tantalum caps. The DC  
Leakage limits at 25ºC are calculated as 0.1 x C x  
V, where C is cap in µF and V is rated voltage in  
Volts. Limits for all part numbers are listed in the  
ratings tables.  
Capacitance (uF)  
150  
100  
Polymer  
MnO2  
50  
DC Le a ka ge c urre nt is the c urre nt tha t flows  
through the capacitor dielectric after a five minute  
charging period at rated voltage. Leakage is mea-  
sured at 25ºC with full rated voltage applied to the  
capacitor through a 1000 ohm resistor in series  
with the capacitor.  
0
10  
1,000  
100,000  
10,000,000  
1,000,000 100,000,000  
100  
10,000  
Frequency (Hz)  
FIGURE 1  
KEMET Electronics Corporation, P.O. Box 5928, Greenville, S.C. 29606, (864) 963-6300  
33  

T520X337M010ASE025 替代型号

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