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  fig.8 v oltage vs. current characteristics of output at mos fet portion measured portion: across terminals 5,7 and 6,8 pin load voltage (v) off state leakage current fig.9 off state leakage current across terminals 5,7 and 6,8 pin led forward current (ma) tu rn on time msec fig.11 led forward current vs. turn off time across terminals 5,7 and 6,8 pin; load voltage: 400v (dc); continuous load current: 130ma (dc); applied voltage (v) output capacitance (pf) fig.12 applied voltage vs. output capacitance across terminals 5,7 and 6,8 pin frequency: 1mhz ambient temperature t a led operate current (ma) fig.5 led operate vs. ambient temperature load voltage: 400v(dc) continuous load current: 130ma(dc) ambient temperature t a led turn off current (ma) fig.6 led turn off current vs. ambient temperature load voltage: 400v(dc) continuous load current: 130ma(dc) ambient temperature t a load current (ma) fig.1 load current vs. ambient temperature allowable ambient temperature: ambient temperature t a on resistonce ( ) fig.2 on resistance vs. ambient temperature across terminals 5,7 and 6,8 pin led current: 5ma continuous load current: 130ma(dc) ambient temperature t a tu rn on time msec fig.3 t urn on time vs. ambient temperature load voltage: 400v(dc) led current: 5ma continuous load current: 130ma(dc) ambient temperature t a t un off time msec fig.4 t urn off time vs. ambient temperature led current: 5ma; load voltage: 400v(dc) continuous load current: 130ma(dc) ambient temperature t a led dropout voltage (v) fig.7 led dropout voltage vs. ambient temperature led current: 5 to 50ma led forward current (ma) t urn on time msec fig.10 led forward current vs. turn on time across terminals 5,7 and 6,8 pin; load voltage: 400v (dc); continuous load current: 130ma (dc); KAQW212/212a http://www.cosmo-ic.com c 2004 cosmo electronics corpora tion 92 data curve v
fig.8 v oltage vs. current characteristics of output at mos fet portion measured portion: across terminals 5,7 and 6,8 pin load voltage (v) off state leakage current fig.9 off state leakage current across terminals 5,7 and 6,8 pin led forward current (ma) tu rn on time msec fig.11 led forward current vs. turn off time across terminals 5,7 and 6,8 pin; load voltage: 400v (dc); continuous load current: 130ma (dc); applied voltage (v) output capacitance (pf) fig.12 applied voltage vs. output capacitance across terminals 5,7 and 6,8 pin frequency: 1mhz ambient temperature t a led operate current (ma) fig.5 led operate vs. ambient temperature load voltage: 400v(dc) continuous load current: 130ma(dc) ambient temperature t a led turn off current (ma) fig.6 led turn off current vs. ambient temperature load voltage: 400v(dc) continuous load current: 130ma(dc) ambient temperature t a load current (ma) fig.1 load current vs. ambient temperature allowable ambient temperature: ambient temperature t a on resistonce ( ) fig.2 on resistance vs. ambient temperature across terminals 5,7 and 6,8 pin led current: 5ma continuous load current: 130ma(dc) ambient temperature t a tu rn on time msec fig.3 t urn on time vs. ambient temperature load voltage: 400v(dc) led current: 5ma continuous load current: 130ma(dc) ambient temperature t a t un off time msec fig.4 t urn off time vs. ambient temperature led current: 5ma; load voltage: 400v(dc) continuous load current: 130ma(dc) ambient temperature t a led dropout voltage (v) fig.7 led dropout voltage vs. ambient temperature led current: 5 to 50ma led forward current (ma) t urn on time msec fig.10 led forward current vs. turn on time across terminals 5,7 and 6,8 pin; load voltage: 400v (dc); continuous load current: 130ma (dc); KAQW212/212a c 2004 cosmo electronics corporation http://www .cosmo-ic.com 93 data curve v


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