JUCOE105MHD [NICHICON]

ELECTRIC DOUBLE LAYER CAPACITORS; 双电层电容器
JUCOE105MHD
型号: JUCOE105MHD
厂家: NICHICON CORPORATION    NICHICON CORPORATION
描述:

ELECTRIC DOUBLE LAYER CAPACITORS
双电层电容器

电容器
文件: 总1页 (文件大小:92K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
ELECTRIC DOUBLE LAYER CAPACITORS "EVerCAP "  
Radial Lead Type  
UCseries  
Excellent in voltage holding property.  
Suitable for quick charge and discharge.  
+
70  
~ °C).  
Wide temperature range (  
25  
Adapted to the RoHS directive (2002/95/EC).  
Specifications  
Item  
Performance Characteristics  
– 25 ~ +70°C  
2.5V  
Category  
Temperature Range  
Rated  
Rated  
Voltage Range  
See Note  
0.47 ~ 47F  
Capacitance Range  
±20% (20°C)  
Capacitance Tolerance  
Leakage Current  
0.5C (mA) [ C : Rated Capacitance(F) ](After 30 minutes' application of rated voltage, 2.5V)  
Stability at Low Temperature  
+
– 25°C) /  
20°C)  
×
100  
70%  
Capacitance (  
Capacitance (  
ESR, DCR*  
Endurance  
20°C  
Refer to the list below (  
). DC internal resistance  
*
Capacitance change  
Internal resistance (ESR)  
Leakage current  
Within ±30% of initial value  
After an application of DC voltage for 1000 hours at 70°C  
capacitors meet the characteristic requirements listed at right.  
,
300% or less of initial specified value  
Initial specified value or less  
Capacitance change  
Internal resistance (ESR)  
Leakage current  
Within ±30% of initial value  
After storing the capacitors under no load at 70°C for 1000hours,  
they will meet the characteristic requirements listed at right.  
Shelf Life  
Marking  
300% or less of initial specified value  
Initial specified value or less  
Printed with white color letter on black sleeve.  
Type numbering system (Example : 2.5V 1F)  
Drawing  
• Please refer to page 21 for end seal configulation.  
Dimensions  
Note :  
To calculate capacitance, the capacitor must be charged at  
the rated voltage of 2.5V for 30 minutes. Measure the time of  
duration T (sec.) it takes go from 2V to 1V when a constant  
current discharge of i (A) = 0.01 × nominal capacitance is  
carried out. It is then possible to calculate capacitance based  
on the calculation provided below.  
Capacitance (F) = I × ∆T  
CAT.8100V  

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