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  product specification date:12/17/2012 no.62p32006 rev cosmo electronics corporation photocoupler: KP1510H sheet 1 of 9 2 high noise immunity, 2.5a output current, gate drive optocoupler z feature: 1: high noise immunity characterized by 25kv/ s minimum common mode rejection(cmr)at vcm=1500v 2: 2.5a maximum peak output current 3: icc = 5ma maximun supply current 4: wide supply voltage range from 15v to 30v 5: fast power switching application ? 500ns max. propagation delay ? 100ns min. pwd protection scheme 6: under voltage lock-out (uvlo) with hysteresis 7: industrial temperature range: -30c to 115c 8: agency approvals ? ul ul1577 / cul c22.2 no.1 & ntc no.5 file no. e169586 ? vde en 60747-5-2 file no. 40020973 z application 1. industrial inverters 2. switch mode power supply 3. ac/brushless dc motor drives 4. igbt/power mosfet gate drive z truth table the use of a 0.1 f bypass capacitor must be connected between pins 8 and 5 is recommended. led output q1 q2 on high level on off off low level off on 3 2 5 6,7 8 q2 q1 if icc io
product specification date:12/17/2012 no.62p32006 rev cosmo electronics corporation photocoupler: KP1510H sheet 2 of 9 2 0.3 1.20 0.5 3.00 3.50 2.54 2.54 2.54 2.70 date code 9.68 xxx 1510 2.top view: 1.output dimensions : unit (mm) pin 1: n.c. pin 2: anode pin 3: cathode pin 4: n.c. pin 5: gnd pin 6: vo (voltage output) pin 7: vo (voltage output) pin 8: vcc 4 3 2 1 5 6 7 8
product specification date:12/17/2012 no.62p32006 rev cosmo electronics corporation photocoupler: KP1510H sheet 3 of 9 2 absolute maximum ratings (ta = 25c) parameter symbol rating unit storage temperature t stg -55 to +125 operating temperature t opr -30 to +115 junction temperature t j -30 to +125 lead wave solder temperature t sol 260 for 10 sec average input current i f(avg) 20 ma peak transient forward current (10) i f(peak) 1 a operating frequency (11) f 50 khz reverse input voltage v r 5 v peak output current (1) i o(peak) 2.5 a supply voltage 0 to 35 t a R 90c v cc -v ee 0 to 30 v peak output voltage v o(peak) 0 to v cc v input signal rise and fall time t r(in) ? t f(in) 500 ns input power dissipation (2)(4) pd i 45 mw output power dissipation (3)(4) pd o 250 mw recommended operating conditions parameter symbol rating unit ambient operating temperature t a -30 to +115 power supply v cc -v ee 15 to 30 v input current (on) i f(on) 7 to 16 ma input voltage (off) v f(off) -3.6 to 0.8 v isolation characteristics parameter symbol rating min. typ. max. unit input-output isolation voltage v iso v a =25 ,r.h.<50%, t-1.0min, i 1-o Q 10ua,50hz (5)(6) 5000 v rms isolation resistance r iso v 1-o =500v (5) 10 11 isolation capacitance c iso v 1-o =0v, freq=1.0mhz (5) 1 pf
product specification date:12/17/2012 no.62p32006 rev cosmo electronics corporation photocoupler: KP1510H sheet 4 of 9 2 electrical characteristics (ta = 25 ,unless otherwise specified) parameter symbol test condition min. typ. max. unit input forward voltage v f if=10ma 1.2 1.5 1.8 v temperature coefficient of forward voltage (v f / t a)) -1.8 mv/ input reverse breakdown voltage bv r i r =10ua 5 v input capacitance c in f=1mhz , v=0 60 pf v o =v cc -2.5v 0.5 1.5 ?h? level (1) i oh v o =v cc -4v 2.0 a v o =v ee +2.5v 0.5 2.0 output current (*a) ?l? level (1) i ol v o =v ee +4v 2.0 a ?h? level v oh i f =10ma, i o =-100ma v cc -4v v cc -3v output voltage ?l? level v ol i f =0ma, i o =100ma v ee +0.1v v ee +0.5v v ?h? level i cch v o =open ,i f =7 to 16ma 2.5 5.0 supply current ?l? level i ccl v o =open ,v f =-3.0 to 0.8v 2.5 5.0 ma threshold input current ?output l h? i flh i o =0ma ,v o >5v 2.3 5.0 ma threshold input voltage ?output h l? v fhl i o =0ma ,v o <5v 0.7 v v uvlo+ i f =10ma ,v o >5v 11.0 12.3 13.5 under voltage lockout threshold v uvlo- i f =10ma ,v o <5v 9.0 10.7 12.0 v under voltage lockout threshold hysteresis uvlo hys 1.6 v
product specification date:12/17/2012 no.62p32006 rev cosmo electronics corporation photocoupler: KP1510H sheet 5 of 9 2 switching characteristics (ta = 2 5 ,unless otherwise specified) parameter symbol test condition min. typ. max. unit ?l h? t plh 0.1 0.3 0.5 us propagation delay time ?h l? t phl 0.1 0.3 0.5 us pulse width distortion t phl- t plh pwd 0.3 us propagation delay difference between any two parts or channels (t phl- t plh ) (7) pdd (skew) -0.35 0.35 us output rise time (10%-90%) t r 0.1 us output fall time (90%-10%) t f if=7ma to 16ma rg=1 0 ,cg=10nf f=10khz,duty cycle=50% 0.1 us uvlo turn on delay t uvlo on i f =10ma, v o >5v 0.8 us uvlo turn off delay t uvlo off i f =10ma, v o <5v 0.6 us common mode transient immunity at high level output O c mh O t a =25 , v cc =30v, i f =10ma to 16ma v cm =1500v (8) 25 35 kv / s common mode transient immunity at low level output O c ml O t a =25 , v cc =30v, v f =0v v cm =1500v (9) 25 35 kv / s notes: 1. maximum pulse width = 10 s, maximum duty cycle = 1.1% 2. derate linearly above 87c, free air temperature at a rate of 0.77mw/c 3. no derating required across temperature range. 4. functional operation under these conditions is not implied. permanent damage may occur if the device is subjected to conditions outside these ratings. 5. device is considered a two terminal device: pins 2 and 3 are shorted together and pins 5, 6, 7 and 8 are shorted together. 6. 5,000 v rms for 1 minute duration is equivalent to 6,000 vac rms for 1 second duration. 7. the difference between t phl and t plh between any two kp1510 parts under same test conditions. 8. common mode transient immunity at output high is the maximum tolerable negative dvcm/dt on the trailing edge of the common mode impulse signal, vcm, to assure that the output will remain high (i.e. v o > 15.0v). 9. common mode transient immunity at output low is the maximum tolerable positive dvcm/dt on the leading edge of the common pulse signal, vcm, to assure that the output will remain low (i.e. v o < 1.0v). 10. pulse width, p w 1 s, 300pps 11. exponential waveform, i o(peak) Q | 2.5a | ( Q 0.3 s)
product specification date:12/17/2012 no.62p32006 rev cosmo electronics corporation photocoupler: KP1510H sheet 6 of 9 2 fig.1 forward current vs. forward voltage fig.2 ootput voltage vs. forward current forward current i f (ma) 1.1 1.2 1.3 1.4 1.5 1.6 1000 100 10 1.0 0.1 0.01 0.001 ta=25 c output voltage vo(v) 01 2 3 45 0 5 10 15 20 25 30 forward voltage v f (v) forward current i f (ma) fig.3 output high current vs. ambient temperature fig.4 output high voltage vs. output high current output high current i oh (a) -40 -20 0 1.0 1.2 1.4 1.6 1.8 2.0 i f = 7 to 16ma v out = (v cc -2.5v) v cc = 15 to 30v v ee = 0v 20 40 60 80 100 120 output high voltage drop 0 -6 -5 -4 -3 -2 -1 0.5 1.0 1.5 2.0 2.5 i f = 7 to 16ma v cc = 15 to 30v v ee = 0v 115 c 25 c -30 c ambient temperature ta ( ) output high current i oh (a) fig.5 output low current vs. ambient temperature fig.6 output low voltage vs. output low current output low current i ol (a) -40 -20 0 1.0 1.2 1.4 1.6 1.8 2.0 v f (off) = -3.0 to 0.8v v out = 2.5v v cc = 15 to 30v v ee = 0v 20 40 60 80 100 120 output low voltage 0 0 1 2 3 4 0.5 1.0 1.5 2.0 v f (off) = -3.0 to 0.8v v cc = 15 to 30v v ee = 0v 115 c 25 c -30 c ambient temperature ta ( ) output low current i ol (a)
product specification date:12/17/2012 no.62p32006 rev cosmo electronics corporation photocoupler: KP1510H sheet 7 of 9 2 fig.7 propagation delay vs. forward current fig.8 propagation delay vs. ambient temperature propagation delay t p (ns) 6 100 200 300 400 500 8101214 v cc = 30v , v ee = 0v rg = 10 ? , cg = 10nf t plh t phl 16 ta = 25c duty cycle = 50% f = 10khz propagation delay t p (ns) -40 100 200 300 400 500 020 t plh t phl -20 40 60 80 100 v cc = 30v , v ee = 0v rg = 10 ? , cg = 10nf if = 10ma duty cycle = 50% f = 10khz 120 forward current i f (ma) ambient temperature ta ( ) fig.9 propagation delay vs. series load resistance fig.10 propagation delay vs. load capacitance propagation delay t p (ns) 0 100 200 300 400 500 10 20 30 40 t plh t phl 50 v cc = 30v , v ee = 0v cg = 10nf , ta = 25c if = 10ma duty cycle = 50% f = 10khz propagation delay t p (ns) 0 100 200 300 400 500 20 40 60 80 t plh t phl 100 v cc = 30v , v ee = 0v rg=10 ? , ta = 25c if = 10ma duty cycle = 50% f = 10khz series load resistance rg () load capacitance cg( nf) test circuit: fig.1 : top view fig.2 : i opl measure 4 3 2 1 5 6 7 8 4 3 2 1 5 6 7 8 c1 0.1uf c2 47uf + v cc = 15v to 30v + c3 0.1uf c4 47uf + v v ol + iol a
product specification date:12/17/2012 no.62p32006 rev cosmo electronics corporation photocoupler: KP1510H sheet 8 of 9 2 fig.3: i oph measure fig.4: v ol measure fig.5: v oh measure fig.6: tp lh ,tp hl ,t r ,t f measure. fig.7: cmr . measure. 4 3 2 1 5 6 7 8 c1 0.1uf c2 47uf + c3 0.1uf c4 47uf + ioh v oh v cc = 15v to 30v + v + if a 4 3 2 1 5 6 7 8 c1 0.1uf v cc = 15v to 30v + v o 100ma if=7 to 16ma 4 3 2 1 5 6 7 8 0.1uf v cc = 15v to 30v + v o 100ma 4 3 2 1 5 6 7 8 0.1uf v cc = 15v to 30v + v o f = 10khz dc = 50% + - cg=10nf rg=10 ? t r i f v out t plh t phl t f 90% 50% 10% 4 3 2 1 5 6 7 8 0.1uf v cc = 30v + v o 5v + - v cm = 2000v + - b a t vcm 0v v o v o v oh v ol switch at a: i f =10ma switch at b: i f = 0ma i f
product specification date:12/17/2012 no.62p32006 rev cosmo electronics corporation photocoupler: KP1510H sheet 9 of 9 2 notice the information contained in this document is a general product description and is subject to change without notice. please contact cosmo in order to obtain the latest device data sheets before using any cosmo device. cosmo does not assume any responsibility for use of any circuitry described. no circuit patent licenses are implied. this publication is the property of cosmo. no part of this publication may be reproduced or copied in any form or by any means, or transferred to any third party without the prior written consent of cosmo electronics corporation. the devices listed in this document are designed for general applications only in electronic equipment. no devices shall be deployed which require higher level of reliability such as: -- medical and other life support equipments. -- space application. -- telecommunication equipment (trunk lines). -- nuclear power control equipment. unless it received prior written approval from cosmo. cosmo takes no responsibility for damages arise form the improper usage of our device. please contact cosmo for further information regarding the above notices


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