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  7 1 f o 1 e g a p 0 0 . 1 . v e r 0 0 1 0 j e 0 6 0 0 s d 8 0 r apr 26, 2013 t e e h s a t a d ps9324l, PS9324L2 high c m r, 1 0 m bps o pen c o l l e c t o r out p u t t y pe, 6 - p in s di p p hot ocoup l e r descrip tion t h e p s 9 324l a n d p s 9 3 24l 2 are optical cou p le d h ig h - s peed , activ e lo w t y pe is o la tors con t a in i ng a ga al a s l e d o n t h e in p u t s ide a n d a p h o todiode a n d a s igna l processi n g c ircu it o n th e o u tp u t s ide o n o n e c h ip . t h e p s 9 324l i s lead ben d i ng t y pe (gu ll - w i n g ) f o r s u r f ace m oun t i n g . t h e p s 9 324l 2 is lead ben d i ng t y pe f o r lon g creepag e dis ta n ce (gu ll - w i n g ) f o r su r f ace mount. f e a tu r es ? hig h c o mmo n m o d e tr a n s ie n t i mmu n ity ( c m h , c m l = 1 5 k v/ s m i n . ) ? half s ize o f 8 - p i n di p ? l ong creepag e d is ta n ce (8 mm min. : p s 9324l 2) ? hig h - s peed (10 m b p s ) ? hig h - s peed res pon s e ( t p h l = 75 n s m a x., t p l h = 75 n s m a x . ) ? l o w p o w e r con s u m p tio n ( v cc = 3.3/5 v ) ? open collector ou tpu t ? hig h is o la tio n v o lta g e (bv = 5 000 vr.m . s .) ? e m bosse d ta pe produ c t : p s 932 4 l - e 3 : 2 000 pcs /reel : p s 932 4 l 2 - e3: 2 000 pcs /reel ? p b -fr ee p r o d u c t ? s a f e t y sta n d a r d s ? ul approv ed: no . e72 422 ? c s a approv ed: no. c a 101391 ( c a 5 a , c a n/ c s a- c 22.2 6006 5, 6 095 0) ? s e m ko approv ed (en 6 006 5 , e n 609 50) ? di n e n 6074 7 - 5 - 5 ( vde 088 4 - 5) appr o v ed ( op tio n ) a p plic a tions ? meas u r e m ent equ ip m e n t ? p dp ? f a ne t w o r k r08d s 0 0 6 0 e j 010 0 rev . 1 .0 0 a p r 2 6 , 2 013 6 4 1 3 2 5 1. anode 2. nc 3. cathode 4. gnd 5. v o 6. v cc pin connection (top view) shield a bu s i n e ss par tne r o f r e n esas elec t ro nics c orp o r a tio n .
ps9324l, PS9324L2 r08ds0060ej0100 rev.1.00 page 2 of 17 apr 26, 2013 package dimensions (unit: mm) lead bending type (gull-wing) for surface mount 0.250.15 9.70.3 3.70.25 0.80.25 0.20.15 7.62 3.50.2 6.80.25 4.580.3 (0.82) ps9324l 0.40.1 0.25 m 1.27 lead bending type (gull-wing) for long creepage distance (surface mount) 0.20.15 PS9324L2 11.50.3 6.80.25 4.580.3 0.250.15 0.750.25 (0.82) 3.70.25 3.50.2 7.62 0.40.1 0.25 m 1.27 a b usine ss par tn er o f ren esas ele ctro nics c or pora ti on.
ps9324l, PS9324L2 r08ds0060ej0100 rev.1.00 page 3 of 17 apr 26, 2013 block diagram marking example rank code year assembled (last 1 digit) week assembled n 3 31 9324 n331 no. 1 pin mark assembly lot type number r company initial photocoupler construction parameter ps9324l PS9324L2 air distance (min.) 7 mm 8 mm outer creepage distance (min.) 7 mm 8 mm isolation distance (min.) 0.4 mm 0.4 mm 6 a b usine ss par tn er o f ren esas ele ctro nics c or pora ti on.
ps9324l, PS9324L2 r08ds0060ej0100 rev.1.00 page 4 of 17 apr 26, 2013 ordering information part number order number solder plating specification packing style safety standard approval application part number ? 1 ps9324l ps9324l-ax pb-free 20 pcs (tape 20 pcs cut) standard products ps9324l ps9324l-e3 ps9324l-e3-ax (ni/pd/au) embossed tape 2 000 ul, csa ,semko pcs/reel approval) PS9324L2 PS9324L2-ax 20 pcs (tape 20 pcs cut) standard products PS9324L2 PS9324L2-e3 PS9324L2-e3-ax embossed tape 2 000 ul, csa ,semko pcs/reel approval) ps9324l-v ps9324l-v-ax 20 pcs (tape 20 pcs cut) din en 60747-5-5 ps9324l ps9324l-v-e3 ps9324l-v-e3-ax embosse d tape 2 000 (vde 0884-5) pcs/reel approved (option) PS9324L2-v PS9324L2-v-ax 20 pcs (tape 20 pcs cut) din en 60747-5-5 PS9324L2 PS9324L2-v-e3 PS9324L2-v-e3-ax embossed tape 2 000 pcs/reel (vde 0884-5) approved (option) note: ? 1. for the application of the safety standard, following part number should be used. a b usine ss par tn er o f ren esas ele ctro nics c or pora ti on.
ps9324l, PS9324L2 r08ds0060ej0100 rev.1.00 page 5 of 17 apr 26, 2013 absolute maximum ratings (t a = 25 c, unless otherwise specified) parameter symbol ratings unit diode forward current ? 1 i f 25 ma reverse voltage v r 5 v detector supply voltage v cc 7 v output voltage v o 7 v output current i o 25 ma power dissipation ? 2 p c 200 mw isolation voltage ? 3 bv 5 000 vr.m.s. operating ambient temperature t a ? 40 to +110 c storage temperature t stg ? 55 to +125 c notes: ? 1. reduced to 0.2 ma/ c at t a = 25 c or more. ? 2. reduced to 4.0 mw/ c at t a = 75 c or more. ? 3 ac voltage for 1 minute at t a = 25 c, rh = 60% between input and output. pins 1-3 shorted together, 4-6 shorted together. recommended operating conditions parameter symbol min. typ. max. unit low level input current v fl 0 0.8 v high level input current i fh 3.8 6 7.5 ma supply voltage v cc 2.7 5.5 v ttl (r l = 1 k , loads) n 5 pull-up resistor r l 330 4k a b usine ss par tn er o f ren esas ele ctro nics c or pora ti on.
ps9324l, PS9324L2 r08ds0060ej0100 rev.1.00 page 6 of 17 apr 26, 2013 electrical characteristics (t a = ? 40 to +110 c, unless otherwise specified) parameter symbol conditions min. typ. *1 max. unit diode forward voltage v f i f = 10 ma, t a = 25 c 1.3 1.55 1.8 v reverse current i r v r = 3 v, t a = 25 c 10 a terminal capacitance c t f = 1 mhz, v f = 0 v, t a = 25 c 30 pf detector v cc = v o = 3.3 v, v f = 0.8 v 1 80 high level output current i oh v cc = v o = 5.5 v, v f = 0.8 v 1 100 a v cc = 3.3 v, i f = 4.5 ma, i ol = 13 ma low level output voltage v ol v cc = 5.5 v, i f = 4.5 ma, i ol = 13 ma 0.2 0.6 v v cc = 3.3 v, i f = 0 ma, v o = open high level supply current i cch v cc = 5.5 v, i f = 0 ma, v o = open 4 7 ma v cc = 3.3 v, i f = 4.5 ma, v o = open 6 10 low level supply current i ccl v cc = 5.5 v, i f = 4.5 ma, v o = open 7 10 ma v cc = 3.3 v, r l = 350 , v o = 0.8 v coupled threshold input voltage (h l) i fhl v cc = 5.0 v, r l = 350 , v o = 0.8 v 1 3 ma isolation resistance r i-o v i-o = 1 kv dc , rh = 40 to 60% 10 11 isolation capacitance c i-o v i-o = 0 v, f = 1 mhz, t a = 25 c 0.6 pf propagation delay time t a = 25 c 40 75 v cc = 3.3 v, i f = 4.5 ma, r l = 350 , c l = 15 pf 100 (h l) *2 t a = 25 c 40 75 t phl v cc = 5 v, i f = 4.5 ma, r l = 350 , c l = 15 pf 100 ns propagation delay time t a = 25 c 50 75 v cc = 3.3 v, i f = 4.5 ma, r l = 350 , c l = 15 pf 100 (l h) *2 t a = 25 c 45 75 t plh v cc = 5 v, i f = 4.5 ma, r l = 350 , c l = 15 pf 100 ns pulse width distortion (pwd) *2 ? t phl- t plh ? v cc = 3.3/5 v, i f = 4.5 ma, r l = 350 , c l = 15 pf 5 35 ns propagation delay skew *2 t psk v cc = 3.3/5 v, i f = 4.5 ma, r l = 350 , c l = 15 pf 40 ns rise time *3 t r v cc = 3.3/5 v, i f = 4.5 ma, r l = 350 , c l = 15 pf 20 ns fall time *3 t f v cc = 3.3/5 v, i f = 4.5 ma, r l = 350 , c l = 15 pf 5 ns common mode transient immunity at high level output *4 ? cm h ? v cc = 3.3/5 v, i f = 0 ma, v o > 2 v, r l = 350 , v cm = 1.5 kv, t a = 25 c 15 20 kv/ s common mode transient immunity at low level output *4 ? cm l ? v cc = 3.3/5 v, i f = 4.5 ma, v o < 0.8 v, r l = 350 , v cm = 1.5 kv, t a = 25 c 15 20 kv/ s a b usine ss par tn er o f ren esas ele ctro nics c or pora ti on.
ps9324l, PS9324L2 r08ds0060ej0100 rev.1.00 page 7 of 17 apr 26, 2013 notes: *1. typical values at t a = 25 c *2. test circuit for propagation delay time remark c l includes probe and stray wiring capacitance. *3. test circuit for switching time remark c l includes probe and stray wiring capacitance. *4. test circuit for common mode transient immunity 90% 10% 0 v v oh 2 v 0.8 v v ol v cm v o (i f = 0 ma) v o (i f = 7.5 ma) t r t f (v cm = 1.5 kv) sw i f r l = 350 v o (monitor) v cc = 3.3/5 v 0.1 f c l = 15 pf 6 5 4 shield 2 1 3 + ? v cm = 1.5 kv remark c l includes probe and stray wiring capacitance. output input input (monitor) pulse input (i f ) (pw = 1 s, duty cycle = 1/10) 1.5 v v oh v ol t phl t plh (i f = on) 50% 47 r l = 350 v o (monitor) v cc = 3.3/5 v 0.1 f c l = 15 pf 6 5 4 shield 1 2 3 input (monitor) pulse input (i f ) (pw = 1 s, duty cycle = 1/10) t f 47 r l = 350 v o (monitor) v cc = 3.3/5 v 0.1 f c l = 15 pf 6 5 4 shield 1 2 3 90% 10% 90% 10% t r i f v o a b usine ss par tn er o f ren esas ele ctro nics c or pora ti on.
ps9324l, PS9324L2 r08ds0060ej0100 rev.1.00 page 8 of 17 apr 26, 2013 typical characteristics (t a = 25 c, unless otherwise specified) ambient temperature t a (c) maximum forward current i f (ma) maximum forward current vs. ambient temperature ambient temperature t a (c) detector power dissipation p c (mw) detector power dissipation vs. ambient temperature ambient temperature t a (c) high level supply current i cch (ma) low level supply current i ccl (ma) supply current vs. ambient temperature 25 50 75 125 100 110 110 25 50 75 125 100 0 30 25 20 15 10 5 0 300 250 200 150 100 50 10 8 6 4 2 0 ? 50 ? 25 0 25 50 75 100 125 forward current i f (ma) output voltage v o (v) output voltage vs. forward current 1 024 35 4 3.5 3 2.5 2 1.5 1 0.5 forward voltage v f (v) forward current i f (ma) forward current vs. forward voltage 1.0 0.01 0.1 1 10 100 1.2 1.4 1.6 1.8 2.0 forward current i f (ma) output voltage v o (v) output voltage vs. forward current 1 024 35 6 5 4 3 2 1 i ccl (i f = 10 ma) i cch (i f = 0 ma) t a = 110c 85c 50c 25c 0c ? 4 0c v cc = 3.3 v v cc = 5.5 v v cc = 3.3 v r l = 350 r l = 4.0 k r l = 1.0 k v cc = 5.5 v r l = 350 r l = 4.0 k r l = 1.0 k remark the graphs indicate nominal characteristics. a b usine ss par tn er o f ren esas ele ctro nics c or pora ti on.
ps9324l, PS9324L2 r08ds0060ej0100 rev.1.00 page 9 of 17 apr 26, 2013 ambient temperature t a (c) threshold input current i fhl (ma) threshold input current vs. ambient temperature ambient temperature t a (c) propagation delay time t phl , t plh (ns) propagation delay time vs. ambient temperature ambient temperature t a (c) threshold input current i fhl (ma) threshold input current vs. ambient temperature ambient temperature t a (c) propagation delay time t phl , t plh (ns) propagation delay time vs. ambient temperature ? 25 0 25 50 10075 ? 50 125 120 0.0 20 40 60 80 100 ? 25 0 25 50 10075 ? 50 125 120 0.0 20 40 60 80 100 ? 25 0 25 50 10075 ? 50 125 ? 25 0 25 50 10075 ? 50 125 ? 25 0 25 50 10075 ? 50 125 ? 25 0 25 50 10075 ? 50 125 ambient temperature t a (c) low level output voltage v ol (v) low level output voltage vs. ambient temperature 0.5 0.0 0.1 0.2 0.3 0.4 5 0 1 2 3 4 5 0 1 2 3 4 0.5 0.0 0.1 0.2 0.3 0.4 v cc = 3.3 v, i f = 4.5 ma v cc = 3.3 v, i f = 4.5 ma v cc = 5 v, i f = 4.5 ma v cc = 3.3 v, v o = 0.8 v v cc = 5 v, v o = 0.8 v v cc = 5.5 v, i f = 4.5 ma ambient temperature t a (c) low level output voltage v ol (v) low level output voltage vs. ambient temperature i ol = 16.0 ma 13.0 ma 10.0 ma 6.0 ma i ol = 16.0 ma 13.0 ma 10.0 ma 6.0 ma t plh :r l = 4 k t plh :r l = 4 k t plh :r l = 1 k t plh :r l = 1 k t phl :r l = 1 k, 4 k t plh :r l = 350 t phl :r l = 350 ,1 k, 4k t phl :r l = 350 t plh :r l = 350 r l = 1 k r l = 4 k r l = 350 r l = 1 k r l = 4 k r l = 350 remark the graphs indicate nominal characteristics. a b usine ss par tn er o f ren esas ele ctro nics c or pora ti on.
ps9324l, PS9324L2 r08ds0060ej0100 rev.1.00 page 10 of 17 apr 26, 2013 ambient temperature t a (c) switching time vs. ambient temperature ambient temperature t a (c) pulse width distortion vs. ambient temperature ? 25 0 25 50 10075 ? 25 0 25 50 100 125 75 ? 50 125 ambient temperature t a (c) pulse width distortion |t phl ? t plh | (ns) pulse width distortion |t phl ? t plh | (ns) pulse width distortion vs. ambient temperature 120 20 0 ? 20 40 60 80 100 ? 50 ? 25 0 25 50 100 125 75 ? 50 ? 25 0 25 50 100 125 75 ? 50 120 20 0 40 60 80 100 forward current i f (ma) forward current i f (ma) propagation delay time t phl , t plh (ns) propagation delay time vs. forward current 5 10 20 15 25 5 10 20 15 25 100 0 40 30 20 10 50 60 70 80 90 100 0 40 30 20 10 50 60 70 80 90 50 0 20 15 10 5 25 30 35 40 45 50 0 20 15 10 5 25 30 35 40 45 ambient temperature t a (c) switching time t r , t f (ns) switching time t r , t f (ns) switching time vs. ambient temperature propagation delay time t phl , t plh (ns) propagation delay time vs. forward current v cc = 3.3 v, i f = 4.5 ma v cc = 3.3 v, t a = 25c, r l = 350 v cc = 3.3 v, i f = 4.5 ma, r l = 350 v cc = 5 v, i f = 4.5 ma, r l = 350 v cc = 5 v, t a = 25c, r l = 350 v cc = 5v, i f = 4.5 ma r l = 1 k r l = 350 r l = 1 k r l = 350 r l = 4 k r l = 4 k t plh t plh t phl t r t f t r t f t phl remark the graphs indicate nominal characteristics. a b usine ss par tn er o f ren esas ele ctro nics c or pora ti on.
ps9324l, PS9324L2 r08ds0060ej0100 rev.1.00 page 11 of 17 apr 26, 2013 taping specifications (unit: mm) ps9324l-e3 3302.0 1001.0 2.00.5 13.00.2 r 1.0 21.00.8 2.00.5 17.51.0 21.51.0 2.00.1 4.00.1 5.080.1 8.00.1 1.5 +0.1 ?0 1.750.1 4.5 max. 7.50.1 10.20.1 16.00.3 0.35 1.5 +0.1 ?0 4.050.1 outline and dimensions (tape) tape direction outline and dimensions (reel) packing: 2 000 pcs/reel 15.9 to 19.4 outer edge of flange a b usine ss par tn er o f ren esas ele ctro nics c or pora ti on.
ps9324l, PS9324L2 r08ds0060ej0100 rev.1.00 page 12 of 17 apr 26, 2013 PS9324L2-e3 3302.0 1001.0 2.00.5 13.00.2 r 1.0 21.00.8 2.00.5 25.51.0 29.51.0 2.00.1 4.00.1 5.080.1 8.00.1 2.0 +0.1 ?0 1.5 +0.1 ?0 4.050.1 1.750.1 4.5 max. 0.35 11.50.1 outline and dimensions (tape) outline and dimensions (reel) tape direction packing: 2 000 pcs/reel 23.9 to 27.4 outer edge of flange 24.00.3 12.00.1 a b usine ss par tn er o f ren esas ele ctro nics c or pora ti on.
ps9324l, PS9324L2 r08ds0060ej0100 rev.1.00 page 13 of 17 apr 26, 2013 recommended mount pad dimensions (unit: mm) part number ps9324l PS9324L2 lead bending a lead bending type (gull-wing) for long creepage distance (surface mount) lead bending type (gull-wing) for surface mount 9.2 10.2 b 1.27 1.27 c 0.8 0.8 d 2.2 2.2 d c b a a b usine ss par tn er o f ren esas ele ctro nics c or pora ti on.
ps9324l, PS9324L2 r08ds0060ej0100 rev.1.00 page 14 of 17 apr 26, 2013 notes on handling 1. recommended soldering conditions (1) infrared reflow soldering ? peak reflow temperature 260 c or below (package surface temperature) ? time of peak reflow temperature 10 seconds or less ? time of temperature higher than 220 c 60 seconds or less ? time to preheat temperature from 120 to 180 c 120 30 s ? number of reflows three ? flux rosin flux containing small amount of chlorine (the flux with a maximum chlorine content of 0.2 wt% is recommended.) 12030 s (preheating) 220c 180c package surface temperature t (c) time (s) recommended temperature profile of infrared reflow (heating) to 10 s to 60 s 260c max. 120c (2) wave soldering ? temperature 260 c or below (molten solder temperature) ? time 10 seconds or less ? preheating conditions 120 c or below (package surface temperature) ? number of times one (allowed to be dipped in solder including plastic mold portion.) ? flux rosin flux containing small amount of chlorine (the flux with a maximum chlorine content of 0.2 wt% is recommended.) (3) soldering by soldering iron ? peak temperature (lead part temperature) 350 c or below ? time (each pin) 3 seconds or less ? flux rosin flux containing small amount of chlorine (the flux with a maximum chlorine content of 0.2 wt% is recommended.) (a) soldering of leads should be made at the point 1.5 to 2.0 mm from the root of the lead. a b usine ss par tn er o f ren esas ele ctro nics c or pora ti on.
ps9324l, PS9324L2 r08ds0060ej0100 rev.1.00 page 15 of 17 apr 26, 2013 (4) cautions ? fluxes avoid removing the residual flux with freon-based and chlorine-based cleaning solvent. 2. cautions regarding noise be aware that when voltage is applied suddenly between the photocoupler?s input and output or between collector- emitters at startup, the output side may enter the on state, even if the voltage is within the absolute maximum ratings. usage cautions 1. this product is weak for static electricity by designed w ith high-speed integrated circuit so protect against static electricity when handling. 2. by-pass capacitor of more than 0.1 f is used between v cc and gnd near device. also, ensure that the distance between the leads of the photocoupler and capacitor is no more than 10 mm. 3. when v dd is lower than around 2 v, the output(v o ) of this product is unstable, and this might produce undesirable operation. be sure to check the operation of an ic or a di screte component that is connected to this product during power-up and power-down process. and we recommend to use a disable function (shutdown function ) of the connected ic or a reset ic to avoid this undesirable operation. 4. pin 2 (which is an nc *1 pin) can either be connected directly to the gnd pin on the led side or left open. unconnected pins should not be used as a bypass for signals or for any other similar purpose because this may degrade the internal noise environment of the device. note: *1. nc: non-connection (no connection). 5. avoid storage at a high temperature and high humidity. a b usine ss par tn er o f ren esas ele ctro nics c or pora ti on.
ps9324l, PS9324L2 r08ds0060ej0100 rev.1.00 page 16 of 17 apr 26, 2013 specification of vde marks license document parameter symbol spec. unit climatic test class (iec 60068-1/din en 60068-1) 40/110/21 dielectric strength maximum operating isolation voltage test voltage (partial discharge test, procedure a for type test and random test) u pr = 1.6 u iorm , p d < 5 pc u iorm u pr 1 130 1 808 v peak v peak test voltage (partial discharge test, procedure b for all devices) u pr = 1.875 u iorm , p d < 5 pc u pr 2 119 v peak highest permissible overvoltage u tr 8 000 v peak degree of pollution (din en 60664-1 vde0110 part 1) 2 comparative tracking index (iec 60112/din en 60112 (vde 0303 part 11)) cti 175 material group (din en 60664-1 vde0110 part 1) iii a storage temperature range t stg ?55 to +125 c operating temperature range t a ?40 to +110 c isolation resistance, minimum value v io = 500 v dc at t a = 25c v io = 500 v dc at t a max. at least 100c ris min. ris min. 10 12 10 11 safety maximum ratings (maximum permissible in case of fault, see thermal derating curve) package temperature current (input current i f , psi = 0) power (output or total power dissipation) isolation resistance v io = 500 v dc at t a = tsi tsi isi psi ris min. 175 400 700 10 9 c ma mw a b usine ss par tn er o f ren esas ele ctro nics c or pora ti on.
ps9324l, PS9324L2 r08ds0060ej0100 rev.1.00 page 17 of 17 apr 26, 2013 caution gaas products this product uses gallium arsenide (gaas). gaas vapor and powder are hazardous to human health if inhaled or ingested, so please observe the following points. ? follow related laws and ordinances when disposing of the product. if there are no applicable laws and/or ordinances, dispose of the product as recommended below. 1. commission a disposal company able to (with a license to) collect, transport and dispose of materials that contain arsenic and other such industrial waste materials. 2. exclude the product from general industrial waste and household garbage, and ensure that the product is controlled (as industrial waste subject to special control) up until final disposal. ? do not burn, destroy, cut, crush, or chemically dissolve the product. ? do not lick the product or in any way allow it to enter the mouth. a b usine ss par tn er o f ren esas ele ctro nics c or pora ti on.
all trademarks and registered trademarks are the property of their respective owners. c - 1 revision history ps9324l, PS9324L2 data sheet description rev. date page summary 1.00 apr 26, 2013 ? first edition issued


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