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File name: | SC [Radial] 2009 Full.pdf [preview SC [Radial] 2009 Full] |
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Mfg: | SC [Son Jiu] |
Model: | SC [Radial] 2009 Full 🔎 |
Original: | SC [Radial] 2009 Full 🔎 |
Descr: | . Electronic Components Datasheets Passive components capacitors SC [Son Jiu] SC [Radial] 2009 Full.pdf |
Group: | Electronics > Components > Capacitors |
Uploaded: | 28-08-2021 |
User: | Anonymous |
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File name SC [Radial] 2009 Full.pdf List of the Products Series Type Feature Operation Working Capacitance Leakage Current Load Temperature Voltage 1(uA) Life Range Hrs GSR Radia General purpose -40 to +85 6.3~100V 0.1~15000uF 0.01CV or 3uA 2000 -25 to +85 160~450V 0.47~470uF 0.03uA GSA Axia General purpose -40 to +85 6.3~100V 0.1~15000uF 0.01CV or 3uA 2000 -40 to +85 160~450V 0.47~470uF 0.03uA KM Radia High Temperature -40 to +105 6.3~100V 0.1~15000uF 0.01CV or 3uA 2000 -25 to +105 160~450V 0.47~220uF 0.03CV or 3uA SM Radia 7mm, standard -40 to +85 4~50V 0.1~470uF 0.01CV or 3uA 1000 SK Radia 7mm, high -40 to +105 4~63V 0.1~470uF 0.01CV or 3uA 1000 temperature LL Radia Low leakage current -40 to +85 10~63V 0.1~1000uF 0.002CV or 2000 0.4uA GL Radia Low lmpedance & -40 to +105 6.3~63V 4.7~4700uF 0.01CV or 2uA 2000~ LOW ESR 3000 NP Sadia Non-Polarized -40 to +85 10~100V 0.47~1000uF 0.03CV or 3uA 2000 -20 to +85 160~250V LP Snap-in Snap-in Terminal -40 to +85 10~100V 470~68000uF 0.03CV or 3uA 2000 -25 to +85 160~450V 47~2700uF HP Snap-in Snap-in Terminal -40 to +105 10~100V 330~68000uF 0.03CV or 3uA 2000 High Temperature -25 to +105 160~450V 33~2200uF taping SMD STG General Purpose, -40 to +85 4~450V 0.1~4700uF 2000 85 SMD STK General Purpose, -40 to +105 4~450V 0.1~4700uF 1000~ 105 2000 SMD STR Low Impedance -40 to +105 6.3~50V 1.0~1500uF 0.01CV or 3uA &ESR Application Notes When you use aluminum electrolytic capacitors, remember the follow: 1. Polarity Regular electrolytic Capacitor has polarity. Reverse voltage causes short circuit breakage of the capacitor or leakage of electrolyte. Where the polarity in a circuit sometimes reversed or unknown, a bi-polar capacitor should be used. 2. Over voltage Do not apply over voltage continuously. When over voltage is applied to the capacitor, leakage current increase drastically. Applied working voltage to capacitors should not exceed the rated working voltage of capacitor. 3. Operating |
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