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  1 photocouplers LTV-0601 (preliminary version) bnc-od-c131/a4 created date : 9/18/2009 revison : 12/5/2011 photocouplers ltv -0601 (preliminary version) data sheet created date : 01/ 02/ 2012 revision : 1.0, 01/ 02/ 2012 lite-on technology corp. optoelectronics sbg http://www.liteon.com/opto
2 photocouplers LTV-0601 (preliminary version) bnc-od-c131/a4 created date : 9/18/2009 revison : 12/5/2011 1. description the LTV-0601 consists of a high efficient algaas li ght emitting diode and a high speed optical detecto r. this design provides excellent ac and dc isolation between the input and output sides of the optocoupler. the output of the optical detector features an open collector schottky clamped transistor. the ena ble function allows the optical detector to be stro bed. a guaranteed common mode transient immunity is up to 15,000v/ s. the optocoupler operational parameters are guarante ed over the temperature range from -40 o c ~ +85 o c. 1.1 features  so8 package  high speed C 10mbd typical  guaranteed ac and dc performance over temperature -40 o c ~ +85 o c.  lsttl/ttl compatible.  strobable output. 1.2 applications  isolation in line receivers  ground loop elimination  feedback element in switching mode power supplier  high speed logic ground isolation C ttl/ttl, ttl/c mos, ttl/lsttl  pulse transformer replacement  power transistor isolation in motor drives  interface between microprocessor system, computer and their peripheral 1.3 functional diagram truth table (positive logic) led enable out on h l off h h on l h off l h on nc l off nc h a 0.1 f bypass capacitor must be c onnected between pin8 and pin5
3 photocouplers LTV-0601 (preliminary version) bnc-od-c131/a4 created date : 9/18/2009 revison : 12/5/2011 2. package dimensions part no : LTV-0601 notes : 1. date code 2. v to represent vde0884 3. date code 4. dimensions are all in millimeters.
4 photocouplers LTV-0601 (preliminary version) bnc-od-c131/a4 created date : 9/18/2009 revison : 12/5/2011 3. taping dimensions quantities per reel package type LTV-0601 quantities (pcs) 2000 description symbol dimension in mm (inch) tape wide w 160.3 (0.63) pitch of sprocket holes p 0 40.1 (0.15) f 7.50.1 (0.295) distance of compartment p 2 20.1 (0.079) distance of compartment to compartment p 1 80.1 (0.47)
5 photocouplers LTV-0601 (preliminary version) bnc-od-c131/a4 created date : 9/18/2009 revison : 12/5/2011 4. rating and characteristics 4.1 absolute maximum ratings at ta=25c *1 parameter symbol rating unit average forward input current i f 20 ma reverse input voltage v r 5 v power dissipation p i 35 mw enable input voltage v e vcc+5 v input enable input current i e 5 ma output collector current i o 50 ma output collector voltage v o 7 v output output collector power dissipation p o 85 mw isolation voltage v iso 3750 v rms supply voltage v cc 7 v operating temperature t opr -55 ~ +85 storage temperature t stg -55 ~ +125 lead solder temperature *2 t sol 260 1. ambient temperature = 25 o c, unless otherwise specified. stresses exceeding t he absolute maximum ratings can cause permanent damage to the device. expo sure to absolute maximum ratings for long periods o f time can adversely affect reliability. 2. 260 o c for 10 seconds. refer to lead free reflow profil e.
6 photocouplers LTV-0601 (preliminary version) bnc-od-c131/a4 created date : 9/18/2009 revison : 12/5/2011 4.2 recommended operating conditions parameter symbol min max unit operating temperature t a -40 85 o c supply voltage v cc 4.5 5.5 v low level input current i fl 0 250 a high level input current i fh 5 15 ma low level enable voltage v el 0 0.8 v high level enable voltage v eh 2 v cc v output pull-up resistor r l 330 4k fan out (at r l =1k per channel) n 5 ttl loads
7 photocouplers LTV-0601 (preliminary version) bnc-od-c131/a4 created date : 9/18/2009 revison : 12/5/2011 4.3 electrical optical characteristics at ta=25c specified over recommended temperature (t a = -40 o c to +85 o c) unless otherwise specified. typical values appli es to v cc = 5v, t a = 25 o c. see note 1. parameter symbol min. typ. max. unit test condition input input forward voltage v f 1.38 1.8 v i f = 10ma input forward voltage temperature coefficient v f / t -1.6 mv/ o c i f = 10ma input reverse voltage bv r 5.0 v i r = 10 a 1.35 5 ma input threshold current i th 2 (1) 3 ma v e = 2v, v cc = 5.5v, i ol (sinking) = 13ma input capacitance c in 34 pf f = 1mhz, v f = 0v detector high level supply current i cch 7.4 10 ua v e = 0.5v, v cc = 5.5v, i f = 0ma low level supply current i ccl 10 13 ma v e = 0.5v, v cc = 5.5v, i f =10ma high level enable current i eh -0.6 -1.6 ma v e = 2v low level enable current i el -0.9 -1.6 ma v e = 0.5v high level enable voltage v eh 2 v low level enable voltage v el 0.8 v high level output current i oh 100 a v e = 2v, v cc = 5.5v, v o = 5.5v, i f = 250 a low level output voltage v ol 0.25 0.60 v v e = 2v, v cc =5.5v, i f = 5ma, i ol (sinking) = 13ma
8 photocouplers LTV-0601 (preliminary version) bnc-od-c131/a4 created date : 9/18/2009 revison : 12/5/2011 5. switching specification t a =0~70 , vcc=5v, unless otherwise specified. *all typical at t a =25 parameter symbol min. typ. max. unit test condition note propagation delay time to low output level t phl 25 40 100 ns r l = 350 , c l =15pf 3 propagation delay time to high output level t plh 25 27 100 ns r l = 350 , c l =15pf 4 pulse width distortion |t plh - t phl | 12 ns r l = 350 , c l =15pf propagation delay skew t psk r l = 350 , c l =15pf output rise time (10 to 90%) t r 20 ns r l = 350 , c l =15pf output fall time (90 to 10%) t f 6.6 ns r l = 350 , c l =15pf propagation delay time of enable from v eh to v el t elh 28 ns r l = 350 , c l =15pf, v el = 0v, v eh = 3v 5 propagation delay time of enable from v el to v eh t ehl 12 v/ s r l = 350 , c l =15pf, v el = 0v, v eh = 3v 6 logic high common mode transient immunity |cm h | 1,000 v/ s |v cm | = 20v, v cc =5v, i f = 0ma, v o(min) =2v, r l = 350 , t a = 25 o c 7,9 logic low common mode transient immunity |cm l | 1,000 ns |v cm | = 20v, v cc =5v, i f =7.5ma,v o(min) =0v, r l = 350 , t a = 25 o c 8,9
9 photocouplers LTV-0601 (preliminary version) bnc-od-c131/a4 created date : 9/18/2009 revison : 12/5/2011 6. isolation characteristic specified over recommended temperature (t a = -40 o c to +85 o c) unless otherwise specified. typical values appli es to t a = 25 o c notes 1. a 0.1f or bigger bypass capacitor for v cc is needed as shown in fig.1 2. peaking driving circuit may be used to speed up the led. the peak drive current of led may go up to 50ma and maximum pulse width 50ns, as long as average current doesn t exceed 20ma. 3. t plh (propagation delay) is measured from the 3.75 ma p oint on the falling edge of the input pulse to the 1.5 v point on the rising edge of the output pulse. 4. t phl (propagation delay) is measured from the 3.75 ma p oint on the rising edge of the input pulse to the 1 .5 v point on the falling edge of the output pulse. 5. the t elh enable propagation delay is measured from the 1.5 v point on the falling edge of the enable input puls e to the 1.5 v point on the rising edge of the output pulse. 6. the t ehl enable propagation delay is measured from the 1.5 v point on the rising edge of the enable input puls e to the 1.5 v point on the falling edge of the output pulse. 7. cm h is the maximum tolerable rate of rise of the commo n mode voltage to assure that the output will remai n in a high logic state (i.e., vo > 2.0 v). 8. cm l is the maximum tolerable rate of fall of the commo n mode voltage to assure that the output will remai n in a low logic state (i.e., vo < 0.8 v). 9. no external pull up is required for a high logic state on the enable input. if the enable pin is no t used, tying it to v cc . 10. device is considered a two-terminal device: pin s 1, 2, 3, and 4 shorted together, and pins 5, 6, 7 , and 8 shorted together. 11. in accordance with ul1577, each optocoupler is proof tested by applying an insulation test voltage 3000 v rms for one second (leakage current less than 5 ua). this test is perf ormed before the 100% production test for partial d ischarge parameter symbol min. typ. max. unit test condition note input-output insulation leakage current i i-o 1.0 a 45% rh, t = 5s, v i-o = 3kv dc, t a =25 o c 10,11 withstand insulation test voltage v iso 3750 v rms rh 50%, t = 1min, t a = 25 o c 10,11,12 input-output resistance r i-o 10 12 v i-o = 500v dc 10 input-output capacitance c i-o 1.0 p f = 1mhz, t a = 25 o c 10
10 photocouplers LTV-0601 (preliminary version) bnc-od-c131/a4 created date : 9/18/2009 revison : 12/5/2011 7. switching time test circuit figure 1: single channel test circuit for t phl and t plh figure 2: single channel test circuit for common mo de transient immunity figure 3: single channel test circuit for common mo de transient immunity
11 photocouplers LTV-0601 (preliminary version) bnc-od-c131/a4 created date : 9/18/2009 revison : 12/5/2011 8. temperature profile of soldering 8.1 ir reflow soldering (jedec-std-020c compliant) one time soldering reflow is recommended within the condition of temperature and time profile shown be low. do not solder more than three times. profile item conditions preheat - temperature min (t smin ) - temperature max (t smax ) - time (min to max) (ts) 150?c 200?c 9030 sec soldering zone - temperature (t l ) - time (t l ) 217?c 60 sec peak temperature (t p ) 260?c ramp-up rate 3?c / sec max. ramp-down rate 3~6?c / sec 60 ~ 120 sec 25 c 150 c 200 c 260 c 217 c 60 sec time (sec) temperature ( c) 20 sec tsmax ts (preheat) tl (soldering) tsmin tl tp ramp-down ramp-up 35~70 sec
12 photocouplers LTV-0601 (preliminary version) bnc-od-c131/a4 created date : 9/18/2009 revison : 12/5/2011 8.2 wave soldering (jedec22a111 compliant) one time soldering is recommended within the condit ion of temperature. temperature: 260+0/-5?c time: 10 sec. preheat temperature:25 to 140?c preheat time: 30 to 80 sec . 8.3 hand soldering by soldering iron allow single lead soldering in every single proce ss. one time soldering is recommended. temperature: 380+0/-5?c time: 3 sec max. 9. notes: specifications of the products displayed herein are subject to change without notice. the products shown in this publication are designed for the general use in electronic applications suc h as office automation equipment, communications devices, audio/visual equ ipment, electrical instrumentation and application. for equipment/devices where high reliability or safety is required, such as space applications, nuclear power control equipm ent, medical equipment, etc, please contact our sales representatives.
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