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3M035AB M7R16TAJ 20100CT KB2720YW ICS90C65 LT3710 1N4623 MHW5382
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  silicon surge absorber silicon surge absorber silicon surge absorber silicon surge absorber silicon surge absorber zp/cp series the silicon surge absorber is available in five series that support the countermeasure against a wide range of surges from low to high, including electrostatic discharges and lightning surges. the device may also be used as a constant voltage device where high voltage or high power is required. silicon surge absorber silicon surge absorber silicon surge absorber silicon surge absorber silicon surge absorber zp/cp series ? ? ? ? ? features ? fast response to rapid surges (10 -12 sec). ? almost no performance degradation against repetitive surges. ? very low internal resistance during operation. ? very small leak current. ? mesa chip design provides high invulnerability to impulse surges. ? ? ? ? ? applications rssa a) protection against switching surge b) protection of dc/cd converter c) protection of interface rs485a from lighting surge e) protection of data line (arrayed surge absorbers) (surge absorber-composite surge protector) dc/cd converter device device
silicon surge absorber silicon surge absorber silicon surge absorber silicon surge absorber silicon surge absorber zp/cp series t ypical capacitance between absorber ? s leads vs. breakdown v oltage zero bias (f=100khz) ? breakdown voltage (v br ) voltage at which avalanche current may begin to flow, normally the voltage between the surge absorber?s leads when 1ma of current is applied. ? standoff voltage (v (r)so ) a maximum voltage that can be applied to the surge absorber continuously. ? reverse leakage current (i (r)so ) a maximum current flowing through the surge absorber when the standoff voltage is applied to the surge absorber. ? peak surge current (i (r)sm max. ) a maximum surge current that can flow through the surge absorber, but not repetitively. the waveform in the table is 8/20 sec. ? peak clamp voltage (v cl max. ) a maximum voltage that may be generated between the surge absorber?s leads when the peak surge current is applied to the surge absorber. ? maximum allowable power (p (r)sm max. ) (p (r)sm max. )= (v cl max. ) x (i (r)sm max. ) ? ? ? ? ? electrical characteristics capacitance between absorber?s leads voltage vs. current characteristics of model cp (two-way type) voltage vs. current characteristics of model zp (one-way type) breakdown voltage (v)
silicon surge absorber silicon surge absorber silicon surge absorber silicon surge absorber silicon surge absorber zp/cp series ? ? ? ? ? 1000 series electrical specifications ?? = zp or cp models available ? ? ? ? ? 2000 series electrical specifications ?? = zp or cp models available *test current = 10ma ? ? ? ? ? physical dimensions operating temp.: -40 o c ~+125 o c power dissipation: 3watt(18kw @8/20usec) operating temp.: -40 o c ~+125 o c power dissipation: 1watt(6kw @8/20usec) s e i r e sdwdl 0 0 0 1 8 . 20 . 56 . 00 2 0 0 0 2 3 . 57 . 90 . 10 2 0 0 0 3 5 . 86 . 80 . 10 2 0 0 0 5 7 . 93 . 2 12 . 10 2 m r o f e v a w e g r u s c e s u 0 2 / 8 k a e p e s l u p e g a t l o v ) v ( k a e p e s l u p t n e r r u c ) a ( 6 0 0 2 p z * 8 . 60 5 . 50 0 0 24 . 3 10 . 2 4 3 1 7 0 0 2 p c * 5 . 75 0 . 60 0 0 15 . 4 10 . 1 4 2 1 ? ?? ? ? ? ? ?? ? 8 0 0 2 * 2 . 83 6 . 60 0 45 . 5 10 . 1 6 1 1 ? ?? ? ? ? ? ?? ? 0 1 0 2 0 10 1 . 80 26 . 8 10 . 8 6 9 ? ?? ? ? ? ? ?? ? 2 1 0 2 2 12 7 . 957 . 1 20 . 9 2 8 ? ?? ? ? ? ? ?? ? 5 1 0 2 5 10 1 . 2 152 . 7 20 . 2 6 6 ? ?? ? ? ? ? ?? ? 8 1 0 2 8 10 5 . 4 155 . 2 30 . 4 5 5 ? ?? ? ? ? ? ?? ? 2 2 0 2 2 20 8 . 7 153 . 9 30 . 8 5 4 ? ?? ? ? ? ? ?? ? 7 2 0 2 7 20 8 . 1 253 . 8 40 . 3 7 3 ? ?? ? ? ? ? ?? ? 3 3 0 2 3 30 8 . 6 250 . 9 50 . 5 0 3 ? ?? ? ? ? ? ?? ? 9 3 0 2 9 30 6 . 1 357 . 9 60 . 8 5 2 ? ?? ? ? ? ? ?? ? 7 4 0 2 7 40 1 . 8 350 . 4 80 . 4 1 2 ? ?? ? ? ? ? ?? ? 6 5 0 2 6 50 5 . 5 450 . 0 0 10 . 0 8 1 ? ?? ? ? ? ? ?? ? 8 6 0 2 8 60 1 . 5 550 . 1 2 10 . 8 4 1 ? ?? ? ? ? ? ?? ? 2 8 0 2 2 80 4 . 6 650 . 6 4 10 . 3 2 1 ? ?? ? ? ? ? ?? ? 0 0 1 2 0 0 10 0 . 1 850 . 8 7 10 . 1 0 1 ? ?? ? ? ? ? ?? ? 0 2 1 2 0 2 10 0 . 7 950 . 2 1 20 . 5 8 ? ?? ? ? ? ? ?? ? 0 5 1 2 0 5 10 0 . 1 2 150 . 5 6 20 . 8 6 ? ?? ? ? ? ? ?? ? 0 8 1 2 0 8 10 0 . 6 4 150 . 7 1 30 . 7 5 ? ?? ? ? ? ? ?? ? 0 2 2 2 0 2 20 0 . 5 7 150 . 8 8 35 . 6 4 ? ?? ? ? ? ? ?? ? 0 5 2 2 0 5 20 0 . 2 0 250 . 2 4 47 . 0 4 ? ?? ? ? ? ? ?? ? 0 0 3 2 0 0 30 0 . 3 4 250 . 9 2 50 . 4 3 ? ?? ? ? ? ? ?? ? 0 5 3 2 0 5 30 0 . 4 8 250 . 8 1 61 . 9 2 ? ?? ? ? ? ? ?? ? 0 0 4 2 0 0 40 0 . 4 2 350 . 6 0 75 . 5 2 ? ?? ? ? ? ? ?? ? 0 4 4 2 0 4 40 0 . 6 5 350 . 6 7 72 . 3 2 0 0 5 2 p z 0 0 50 0 . 5 0 450 . 4 8 83 . 0 2 0 0 6 2 p z 0 0 60 0 . 6 8 450 . 8 5 0 10 . 7 1 0 0 7 2 p z 0 0 70 0 . 7 6 550 . 6 3 2 15 . 4 1 0 0 8 2 p z 0 0 80 0 . 8 4 650 . 2 1 4 17 . 2 1 0 8 8 2 p z 0 8 80 0 . 3 1 750 . 2 5 5 17 . 1 1 l e d o m m r o f e v a w e g r u s c e s u 0 2 / 8 k a e p e s l u p e g a t l o v ) v ( k a e p e s l u p t n e r r u c ) a ( ? ?? ? ? ? ? ?? ? 7 0 0 1 5 . 75 0 . 60 0 23 . 4 10 . 9 1 4 0 1 0 1 p z 0 10 1 . 80 15 . 9 10 . 1 1 3 ? ?? ? ? ? ? ?? ? 2 1 0 1 2 12 7 . 957 . 2 20 . 7 6 2 6 1 0 1 p z 6 10 9 . 2 154 . 8 20 . 3 1 2 ? ?? ? ? ? ? ?? ? 8 1 0 1 8 10 5 . 4 150 . 4 30 . 8 7 1 7 2 0 1 p z 7 20 8 . 1 255 . 0 50 . 0 2 1 0 4 0 1 p z 0 40 4 . 2 350 . 3 70 . 3 8 ? ?? ? ? ? ? ?? ? 0 5 0 1 0 50 5 . 0 450 . 8 89 . 8 6 0 6 0 1 p z 0 60 6 . 8 450 . 4 1 16 . 2 5 5 7 0 1 p z 5 70 7 . 0 650 . 2 4 12 . 2 4 model breakdown voltage (v br ) +10% @1ma standoff voltage (v (r)so ) reverse leakage current (i (r)so ) ( a) breakdown voltage (v br ) +10% @1ma standoff voltage (v (r)so ) reverse leakage current (i (r)so ) ( a)
silicon surge absorber silicon surge absorber silicon surge absorber silicon surge absorber silicon surge absorber zp/cp series okaya electric america inc. 503 wall st., valparaiso, in 46383 phone: 800-852-0122, 219-477-4488 fax: 219-477-4856 http://www.okaya.com ? ? ? ? ? 4000 series electrical specifications ?? = zp or cp models available * t est current = 10ma ? ? ? ? ? 3000 series electrical specifications ?? = zp or cp models available * t est current = 10ma operating temp.: -40 o c ~+125 o c power dissipation: 5watt(34kw @8/20usec) operating temp.: -40 o c ~+125 o c power dissipation: 6watt(44kw @8/20usec) m r o f e v a w e g r u s c e s u 0 2 / 8 k a e p e s l u p e g a t l o v ) v ( k a e p e s l u p t n e r r u c ) a ( 6 0 0 5 p z * 8 . 60 5 . 50 0 0 56 . 3 10 . 3 8 2 3 7 0 0 5 p c * 5 . 75 0 . 60 0 0 21 . 5 10 . 3 6 9 2 ? ?? ? ? ? ? ?? ? 8 0 0 5 * 2 . 83 6 . 60 0 0 29 . 5 10 . 9 1 8 2 ? ?? ? ? ? ? ?? ? 0 1 0 5 0 10 1 . 80 0 15 . 8 10 . 6 2 4 2 ? ?? ? ? ? ? ?? ? 2 1 0 5 2 12 7 . 90 11 . 2 20 . 4 3 0 2 ? ?? ? ? ? ? ?? ? 5 1 0 5 5 10 1 . 2 10 16 . 7 20 . 1 2 6 1 ? ?? ? ? ? ? ?? ? 8 1 0 5 8 10 5 . 4 10 11 . 5 30 . 2 5 3 1 ? ?? ? ? ? ? ?? ? 2 2 0 5 2 20 8 . 7 10 15 . 0 40 . 4 0 1 1 ? ?? ? ? ? ? ?? ? 7 2 0 5 7 20 8 . 1 20 17 . 9 40 . 1 0 9 ? ?? ? ? ? ? ?? ? 3 3 0 5 3 30 8 . 6 20 17 . 0 60 . 7 3 7 ? ?? ? ? ? ? ?? ? 9 3 0 5 9 30 6 . 1 30 19 . 1 70 . 2 2 6 ? ?? ? ? ? ? ?? ? 7 4 0 5 7 40 1 . 8 30 15 . 6 80 . 7 1 5 ? ?? ? ? ? ? ?? ? 6 5 0 5 6 50 5 . 5 40 10 . 3 0 10 . 4 3 4 ? ?? ? ? ? ? ?? ? 8 6 0 5 8 60 1 . 5 50 10 . 6 2 10 . 8 5 3 ? ?? ? ? ? ? ?? ? 2 8 0 5 2 80 4 . 6 60 10 . 0 5 10 . 8 9 2 ? ?? ? ? ? ? ?? ? 0 0 1 5 0 0 10 0 . 1 80 10 . 4 8 10 . 4 4 2 ? ?? ? ? ? ? ?? ? 0 2 1 5 0 2 10 0 . 7 90 10 . 1 2 20 . 2 0 2 ? ?? ? ? ? ? ?? ? 0 5 1 5 0 5 10 0 . 1 2 10 10 . 6 7 20 . 2 6 1 ? ?? ? ? ? ? ?? ? 0 8 1 5 0 8 10 0 . 6 4 10 10 . 1 3 30 . 5 3 1 ? ?? ? ? ? ? ?? ? 0 2 2 5 0 2 20 0 . 5 7 10 10 . 4 0 40 . 0 1 1 ? ?? ? ? ? ? ?? ? 0 5 2 5 0 5 20 0 . 2 0 20 10 . 0 6 41 . 7 9 ? ?? ? ? ? ? ?? ? 0 0 3 5 0 0 30 0 . 3 4 20 10 . 2 5 57 . 9 7 ? ?? ? ? ? ? ?? ? 0 5 3 5 0 5 30 0 . 4 8 20 10 . 4 4 63 . 8 6 ? ?? ? ? ? ? ?? ? 0 0 4 5 0 0 40 0 . 4 2 30 10 . 6 3 77 . 9 5 ? ?? ? ? ? ? ?? ? 0 4 4 5 0 4 40 0 . 6 5 30 10 . 9 0 83 . 4 5 m r o f e v a w e g r u s c e s u 0 2 / 8 k a e p e s l u p e g a t l o v ) v ( k a e p e s l u p t n e r r u c ) a ( 6 0 0 3 p z * 8 . 60 5 . 50 0 0 53 . 3 10 . 6 5 5 2 7 0 0 3 p c * 5 . 75 0 . 60 0 0 27 . 4 10 . 3 1 3 2 ? ?? ? ? ? ? ?? ? 8 0 0 3 * 2 . 83 6 . 60 0 0 24 . 5 10 . 8 0 2 2 ? ?? ? ? ? ? ?? ? 0 1 0 3 0 10 1 . 80 0 18 . 9 10 . 7 1 7 1 ? ?? ? ? ? ? ?? ? 2 1 0 3 2 12 7 . 90 18 . 3 20 . 9 2 4 1 ? ?? ? ? ? ? ?? ? 5 1 0 3 5 10 1 . 2 10 17 . 9 20 . 5 4 1 1 ? ?? ? ? ? ? ?? ? 8 1 0 3 8 10 5 . 4 10 16 . 5 30 . 5 9 9 ? ?? ? ? ? ? ?? ? 2 2 0 3 2 20 8 . 7 10 16 . 3 40 . 0 8 7 ? ?? ? ? ? ? ?? ? 7 2 0 3 7 20 8 . 1 20 16 . 3 50 . 6 3 6 ? ?? ? ? ? ? ?? ? 3 3 0 3 3 30 8 . 6 20 15 . 3 60 . 1 2 5 ? ?? ? ? ? ? ?? ? 9 3 0 3 9 30 6 . 1 30 12 . 7 70 . 0 4 4 ? ?? ? ? ? ? ?? ? 7 4 0 3 7 40 1 . 8 30 11 . 3 90 . 5 6 3 ? ?? ? ? ? ? ?? ? 6 5 0 3 6 50 5 . 5 40 10 . 1 1 10 . 7 0 3 ? ?? ? ? ? ? ?? ? 8 6 0 3 8 60 1 . 5 50 10 . 5 3 10 . 2 5 2 ? ?? ? ? ? ? ?? ? 2 8 0 3 2 80 4 . 6 60 10 . 2 6 10 . 0 1 2 ? ?? ? ? ? ? ?? ? 0 0 1 3 0 0 10 0 . 1 80 10 . 8 9 10 . 2 7 1 ? ?? ? ? ? ? ?? ? 0 2 1 3 0 2 10 0 . 7 90 10 . 8 3 20 . 3 4 1 ? ?? ? ? ? ? ?? ? 0 5 1 3 0 5 10 0 . 1 2 10 10 . 7 9 20 . 4 1 1 ? ?? ? ? ? ? ?? ? 0 8 1 3 0 8 10 0 . 6 4 10 10 . 6 5 30 . 6 9 ? ?? ? ? ? ? ?? ? 0 2 2 3 0 2 20 0 . 5 7 10 10 . 6 3 40 . 0 8 ? ?? ? ? ? ? ?? ? 0 5 2 3 0 5 20 0 . 2 0 20 10 . 5 9 40 . 9 6 ? ?? ? ? ? ? ?? ? 0 0 3 3 0 0 30 0 . 3 4 20 10 . 4 9 52 . 7 5 ? ?? ? ? ? ? ?? ? 0 5 3 3 0 5 30 0 . 4 8 20 10 . 3 9 61 . 9 4 ? ?? ? ? ? ? ?? ? 0 0 4 3 0 0 40 0 . 4 2 30 10 . 2 9 74 . 2 4 ? ?? ? ? ? ? ?? ? 0 4 4 3 0 4 40 0 . 6 5 30 10 . 1 7 80 . 9 3 0 0 5 3 p z 0 0 50 0 . 5 0 40 10 . 0 9 95 . 4 3 0 0 6 3 p z 0 0 60 0 . 6 8 40 10 . 8 8 1 15 . 8 2 0 0 7 3 p z 0 0 70 0 . 7 6 50 10 . 6 8 3 15 . 4 2 0 0 8 3 p z 0 0 80 0 . 8 4 60 10 . 4 8 5 12 . 1 2 0 8 8 3 p z 0 8 80 0 . 3 1 70 10 . 2 4 7 15 . 9 1 model breakdown voltage (v br ) +10% @1ma standoff voltage (v (r)so ) reverse leakage current (i (r)so ) ( a) model breakdown voltage (v br ) +10% @1ma standoff voltage (v (r)so ) reverse leakage current (i (r)so ) ( a)


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