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  s112s01 series/s116s01 series s112s01 series s116s01 series n outline dimensions ( unit : mm ) n features n applications 3. built-in zero-cross circuit 4. high repetitive peak off-state voltage v drm : 400v v drm : 600v 5. isolation voltage between input and output ( v iso 1. copiers, laser beam printers 2. automatic vending machines 3. fa equipment s112s01 / s112s02 / s116s01 / s116s02 s112s01 / s112s02 s116s01 / s116s02 s112s01 / s112s02 s116s01 / s116s02 for 100v lines for 200v lines s112s01 S212S01 s116s01 s216s01 s112s02 s212s02 s116s02 s216s02 for phase control no built-in zero-cross circuit built-in zero-cross circuit ( 36.0 ) ( 5.08 )( 7.62 )( 2.54 ) ( 1.4 ) + internal connection diagram * a b 123 4 12 34 12 34 3 input ( + ) 3 input ( + ) a ( model no. ) b s112s01 12a125vac s112s02 s116s01 16a125vac s116s02 S212S01 12a250vac s212s02 s216s01 16a250vac s216s02 data books, etc. contact sharp in order to obtain the latest version of the device specification sheets before using any sharp 's device. in the absence of confirmation by device specification sheets, sharp takes no responsibility for any defects that occur in equ ipment using any of sharp's devices, shown in catalogs, 1. compact, high radiation resin mold package 2. rms on-state current s112s01 series : 12arms at t c <= 70?c ( with heat sink ) s116s01 series : 16arms at t c <= 60?c are common to terminal 1 . ( ) : typical dimensions 1 output ( triac t2 ) 2 output ( triac t1 ) 1 output ( triac t2 ) 2 output ( triac t1 ) sip type ssr for medium power control h do not allow external connection. - 4 input ( - ) 4 input ( - ) circuit n model line-ups 7. approved by csa, no. 63705 ( with heat sink ) ( s112s02 / s212s02 / s116s02 / s216s02 ) S212S01 / s212s02 / s216s01 / s216s02 zero-cross 6. recognized by ul, file no. e94758 : 4 000v rms ) 18.5 0.2 16.4 0.3 f 3.2 0.2 3.2 0.2 5.5 0.2 5.0 0.3 19.6 0.2 h 0.2 max. 4 - 1.1 0.2 4 - 1.25 0.3 4 - 0.8 0.2 4.2 max. 11.2 min. 0.6 0.1 s112s01 / s116s01 S212S01 / s216s01 s112s02 / s116s02 s212s02 / s216s02 * the metal parts marked*
( ta = 25?c ) s112s01 series/s116s01 series n electrical characteristics parameter symbol conditions input forward voltage v f i f = 20ma reverse current i r v r =3v output repetitive peak off-state current i drm v d =v drm s112s01 series v t i f = 20ma, i t = 12arms s116s01 series i f = 20ma, i t = 16arms holding current i h v d = 2/3 v drm critical rate of rise of commutating off-state voltage v ox i f = 8ma zero-cross voltage transfer charac- teristics minimum trigger current i ft v d = 12v, r l =30 w v d = 6v, r l =30 w isolation resistance r iso dc500v, rh = 40 to 60 % turn-on time t on ac 50hz ac 50hz turn-off time t off thermal resistance ( between junction and case ) s112s01 series r th ( j-c ) s116s01 series r th ( j-a ) s116s01 series :di t /dt = - 8a/ms *6 s112s01 series :di t /dt = - 6a/ms on-state voltage critical rate of rise of off-state voltage min. typ. max. unit - 1.2 1.4 v --10 - 4 a --10 - 4 a - - 1.5 - - 1.5 - - - 50 ma 30 - - v/ m s 5--v/ m s - - 35 v --8ma --8ma 10 10 -- w --1ms - - 10 ms - - 10 ms - 3.8 - ?c/w - 3.3 - ?c/w - - - - 40 - ?c/w n absolute maximum ratings ( ta = 25?c ) t j = 125?c, v d = 400v, *6 s112s02 / s212s02 s116s02 / s216s02 s112s01 / S212S01 s116s01 / s216s01 s112s02 / s212s02 s116s02 / s216s02 s112s01 / S212S01 s112s02 / s212s02 s116s02 / s216s02 s116s01 / s216s01 parameter symbol rating unit input forward current i f 50 ma reverse voltage v r 6v output current rms on-state s112s01 series i t s116s01 series s112s01 series i surge 120 a 160 a s116s01 series repetitive peak off-state voltage s112s01 / s112s02 s116s01 / s116s02 v drm 400 v 600 v S212S01 / s212s02 s216s01 / s216s02 non-repetitive peak off-state voltage s112s01 / s112s02 s116s01 / s116s02 v dsm 400 v 600 v S212S01 / s212s02 s216s01 / s216s02 critical rate of rise of on-state current di/dt 50 a/ m s operating frequency f 45 to 65 hz *2 isolation voltage v iso operating temperature t opr - 25 to + 100 ?c storage temperature t stg - 30 to + 125 ?c *3 soldering temperature t sol 260 ?c thermal resistance ( between junction and ambience ) *4 12 *5 16 *1 ac 60hz sine wave, t j = 25?c start input and output by the dielectric withstand voltage tester with zero-cross circuit. ( input and output shall be short- ed respectively ) . ( note ) *1 peak one cycle surge current when the isolation voltage is necessary at using external *3 for 10 seconds *4 t c <=70?c *5 t c <=60?c sulation sheet. a rms a rms v rms v rms v rms dv/dt ( dv/dt ) c heat sink, please use the in- resistance load resistance load 4 000 *2 ac 60hz for 1 minute, 40 to 60 % rh. apply voltages between
s112s01 series/s116s01 series ambient temperature t a ( ?c ) - 25 0 25 50 75 100 125 0 2 4 6 8 10 12 ( 1 ) ( 2 ) ( 3 ) ( 4 ) ( 5 ) ambient temperature t a ( ?c ) - 25 0 25 50 75 100 125 0 2 4 6 8 10 12 14 16 18 ( 1 ) ( 2 ) ( 3 ) ( 4 ) ( 5 ) fig. 1 rms on-state current vs. ambient fig. 2 rms on-state current vs. ambient 125 ambient temperature t a ( ?c ) forward current i f ( ma ) 25 -25 0 075 50 100 50 10 20 30 40 60 case temperature t ( ?c ) - 25 0 25 50 75 100 125 0 2 4 6 8 10 12 14 16 s116s01series s112s01series fig. 3 rms on-state current vs. case temperature fig. 4 forward current vs. ambient temperature temperature temperature rms on-state current i t rms on-state current i t ( arms ) ( s112s01series )( s116s01series ) rms on-state current i t ( arms ) ( note ) with the al heat sink set up vertically,tighten the device at the center of the al heat sink with a torque shall not be carried out. c ( arms ) of 0.4n m and apply thermal conductive silicone grease on the heat sink mounting plate. forcible cooling ( 1 ) with infinite heat sink ( 2 ) with heat sink ( 280 x 280 x 2 mm al plate ) ( 3 ) with heat sink ( 200 x 200 x 2 mm al plate ) ( 4 ) with heat sink ( 100 x 100 x 2 mm al plate ) ( 5 ) without heat sink ( 1 ) with infinite heat sink ( 2 ) with heat sink ( 280 x 280 x 2 mm al plate ) ( 3 ) with heat sink ( 200 x 200 x 2 mm al plate ) ( 4 ) with heat sink ( 100 x 100 x 2 mm al plate ) ( 5 ) without heat sink
5 1.0 2 1 0 2.0 20 10 50 100 50?c 75?c - 25?c 25?c 0?c 210 0 20 40 60 80 100 120 140 160 180 200 1 5 20 50 100 s116s01series s112s01series maximum on-state power dissipation ( w ) 0246810121416 0 2 4 6 8 10 12 14 16 18 20 maximum on-state power dissipation ( w ) 0246810121416 0 2 4 6 8 10 12 14 16 18 20 fig. 5 forward current vs. forward voltage - 25 0 25 50 75 100 0 2 4 6 8 10 s112s01/S212S01 s116s01/s216s01 s112s02/s212s02 s116s02/s216s02 fig. 9 minimum trigger current vs. ambient temperature fig. 8 maximum on-state power dissipation vs. rms on-state current ( s116s01series ) fig. 7 maximum on-state power dissipation vs. rms on-state current ( s112s01series ) fig. 6 surge current vs. power-on cycle power-on cycle ( times ) ( ( v d = 12v s112s01, S212S01 s116s01,s216s01 v d = 6v s112s02,s212s02 s116s02,s216s02 ) ) rms on-state current i t ( arms ) ambient temperature t a ( ?c ) rms on-state current i t ( arms ) forward voltage v f ( v ) s112s01 series/s116s01 series f= 60h z t j = 25?c start t a = 25?c r l =30 w t a = 25?c t a = 100?c forward current i f ( ma ) surge current i surge ( a ) minimum trigger current i ft ( ma ) - 25 0 25 50 75 100 s112s02 s116s02 s112s01 s116s01 ( s112s01/ s112s02/ s116s01/ s116s02 ) ambient temperature fig.10 repetitive peak off-state current vs. repetitive peak off-state current i drm ( a ) 10 -9 10 -8 10 -7 10 -6 10 -5 10 -4 ambient temperature t a ( ?c ) v d = 400v
s112s01 sreies/s116s01 series - 25 0 25 50 75 100 s212s02 s216s02 S212S01 s216s01 ( S212S01/ s212s02/ s216s01/ s216s02 ) fig.11 repetitive peak off-state current vs. ambient temperature ambient temperature t a ( ?c ) repetitive peak off-state current i drm ( a ) 10 -9 10 -8 10 -7 10 -6 10 -5 10 -4 v d = 600v l please refer to the chapter precautions for use.


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