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EECRF0H684N PDF预览

EECRF0H684N

更新时间: 2022-02-26 12:10:24
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松下 - PANASONIC /
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描述
Electric Double Layer Capacitors (Gold Capacitor)

EECRF0H684N 数据手册

  
Electric Double Layer Capacitors (Gold Capacitor)  
Stacked Coin Type  
Series : RF Low temperature assured product  
Features  
Endurance : +85 °C 2000 h  
Category temperature range : –40 °C to +85 °C  
RoHS compliant  
Recommended applications  
Backup of data/RTC of base station, electronic meter, and industrial equipment  
Specifications  
Category temp. range  
Maximum operating voltage  
Nominal capacitance  
–40 °C to +85 °C  
5.5 V.DC  
0.± F  
Capacitance change ±0 ꢁ of initial measured value at +20 °C (at –40 °C)  
Internal resistance 7 times of initial measured value at +20 °C (at –40 °C)  
0.68 F, ±.0 F  
Characteristics at  
low temperature  
<
After 2000 hours application of maximum operating voltage at +85 °C  
Capacitance change ±0 ꢁ of initial measured value at 20 °C  
Endurance  
Shelf life  
±50 Ω or less (0.± F)  
40 Ω or less (0.68 F, ±.0 F)  
Internal resistance  
After 2000 hours storage at +85 °C without load (voltage)  
Capacitance change Capacitance change shall meet the specified limits for Endurance  
Internal resistance Internal resistance shall meet the specified limits for Endurance  
Dimensions in mm(not to scale)  
±.2±0.±  
0.8±0.±  
Sleeve  
0D  
Cap (F)  
0.±  
(mm)  
±ꢀ.5 max  
2±.5 max  
0±.±±0.05  
0.68, ±.0  
Recommended  
(
)
PCB hole diameter  
+
9.5 max. 6±±  
(Unit : mm)  
Characteristics list  
Category Maximum  
Internal  
resistance  
(Initial specified value)  
(Ω) at ± kHz  
Min.  
packaging  
q'ty  
Capacitance  
tolerance  
(F)  
Mass  
(Reference value)  
(g)  
±  
temp.  
range  
(°C)  
operating Capacitance  
voltage  
(V.DC)  
Recommended  
Parts number  
(F)  
discharge current  
(pcs)  
0.±  
0.68  
±.0  
0.080 to 0.±80  
0.544 to ±.224  
0.8 to ±.8  
75  
20  
20  
ꢀ00 µA or less EECRF0H104N  
ꢀ.ꢀ  
200  
±00  
±00  
<
<
<
–40 to +85  
5.5  
± mA or less  
± mA or less  
EECRF0H684N  
EECRF0H105N  
±0.0  
±0.0  
± The recommended discharge current is a reference value. Please design your equipment(circuit) in consideration of IR drop.  
Do not use reflow soldering. Please refer to the page of “Application guidelines”.  
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.  
Should a safety concern arise regarding this product, please be sure to contact us immediately.  
01 Jan. 2016  

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