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  vor1142b6, VOR1142A6 www.vishay.com vishay semiconductors rev. 1.1, 17-nov-15 1 document number: 84300 for technical questions, contact: optocoupleranswe rs@vishay.com this document is subject to change without notice. the products described herein and this document are subject to specific disclaimers, set forth at www.vishay.com/doc?91000 1 form a solid-state relay description the vor1142 is an spst normally open switch (1 form a) that can replace electromechanical relays in many applications. it is constructed using a gaalas ired actuation control and mosfets for the switch output. features ? current limit protection ? isolation test voltage 5300 v rms ? typical r on 22 ? load voltage 400 v ? load current 140 ma / 270 ma ? high surge capability ? clean bounce free switching ? low power consumption ? high temperature range ? material categorization: fo r definitions of compliance please see www.vishay.com/doc?99912 applications ? general telecom switching ? metering ? security equipment ? instrumentation ? industrial controls ? battery management systems ? automatic measurement equipment agency approvals ? ul1577, file no. e52744 ? din en 60747-5-5 (vde0884-5) 6 s 2 s 1 dc 5 2 4 3 1 a c ordering information vor1142#6# part number package configuration package ul, vde smd-6, tape and reel vor1142b6t smd-6, tube vor1142b6 dip-6, tube VOR1142A6 7.62 mm dip-6 > 0.7 mm s md-6
vor1142b6, VOR1142A6 www.vishay.com vishay semiconductors rev. 1.1, 17-nov-15 2 document number: 84300 for technical questions, contact: optocoupleranswe rs@vishay.com this document is subject to change without notice. the products described herein and this document are subject to specific disclaimers, set forth at www.vishay.com/doc?91000 notes ? stresses in excess of the absolu te maximum ratings can ca use permanent damage to the device. functional operation of the devic e is not implied at these or any other conditions in excess of those give n in the operational sections of this document. exposure to abs olute maximum ratings for extended periods of th e time can adversely affect reliability. (1) for continuous negative potential from output side to input side only 85 c is allowed. note ? minimum and maximum values are testing requirements. typical values are characteristics of the device and are the result of en gineering evaluations. typical values are for information only and are not part of the testing requirements. pin configuration fig. 1 - pin configuration absolute maximum ratings (t amb = 25 c, unless otherwise specified) parameter condition symbol value unit input ired continuous forward current i f 50 ma ired reverse voltage v r 5v input power dissipation p diss 80 mw output dc or peak ac load voltage v l 400 v continuous load current (ac/dc configuration) i l 140 ma continuous load current (dc only configuration) i l 270 ma ssr output power diss ipation (continuous) p diss 550 mw ssr ambient temperature range (1) t amb -40 to +100 c storage temperature range t stg -40 to +150 c soldering temperature t = 10 s max. t sld 260 c electrical characteristics (t amb = 25 c, unless otherwise specified) parameter test condition symbol min. typ. max. unit input ired forward current, switch turn-on i l = 100 ma, t = 10 ms i fon -0.272 ma ired forward current, switch turn-off v l = 350 v i foff 0.05 0.15 - ma ired forward voltage i f = 10 ma v f - 1.36 1.5 v ired reverse current v r = 5 v i r --10a output on-resistance (ac/dc configuration) i f = 5 ma, i l = 50 ma r on -2227 on-resistance (dc only configuration) i f = 5 ma, i l = 100 ma r on -5.27 off-resistance i f = 0 ma, v l = 100 v r off 0.5 5000 - g off-state leakage current i f = 0 ma, v l = 100 v i o -< 1100na i f = 0 ma, v l = 400 v i o -6500na output capacitance (ac/dc configuration) i f = 0 ma, v l = 1 v, 1 mhz c o -39-pf i f = 0 ma, v l = 50 v, 1 mhz c o -6-pf current limit (ac/dc configuration) i f = 5 ma, t = 5 ms, v l = 6 v i limit 170 300 450 ma transfer capacitance (input to output) v iso = 1 v c io -0.4- pf ac/dc configuration 6 load () load () do not connect 5 2 4 3 1 a c dc only configuration 6 load (+) load (-) 5 2 4 3 1 a c
vor1142b6, VOR1142A6 www.vishay.com vishay semiconductors rev. 1.1, 17-nov-15 3 document number: 84300 for technical questions, contact: optocoupleranswe rs@vishay.com this document is subject to change without notice. the products described herein and this document are subject to specific disclaimers, set forth at www.vishay.com/doc?91000 fig. 2 - timing schematic note ? as per iec 60747-5-5, 7.4.3.8.2, this opto coupler is suitable for saf e electrical insulation only within the safety rating s. compliance with the safety ratings shall be ensured by means of protective circuits. switching characteristics (t amb = 25 c, unless otherwise specified) parameter test condition symbol min. typ. max. unit turn-on time i f = 5 ma, i l = 50 ma t on - 0.13 0.5 ms turn-off time i f = 5 ma, i l = 50 ma t off - 0.05 0.2 ms safety and insulation ratings parameter test condition symbol value unit climatic classifica tion according to iec 68 part 1 40/100/21 pollution degr ee according to din vde 0109 2 comparative tracking index i nsulation grou p iiia cti 175 maximum rated withstanding isolation voltage according to ul1577, t = 1 min v iso 5300 v rms maximum transient isol ation voltage according to din en 60747-5-5 v iotm 8000 v peak maximum repetitive peak isolation voltage according to din en 60747-5-5 v iorm 890 v peak isolation resistance v io = 500 v, t amb = 25 c r io 10 12 v io = 500 v, t amb = 100 c r io 10 11 output safety power p so 720 mw input safety current i si 240 ma safety temperature t s 175 c creepage distance dip-6 7mm clearance distance dip-6 7mm creepage distance smd-6 8mm clearance distance smd-6 8mm insulation thickness dti 0.4 mm input to output test voltage, method b v iorm x 1.875 = v pr , 100 % production test with t m = 1 s, partial discharge < 5 pc v pr 1669 v peak input to output test voltage, method a v iorm x 1.6 = v pr , 100 % sample test with t m = 10 s, partial discharge < 5 pc v pr 1424 v peak 6 output v l 5 2 4 3 1 a c input output 90 % 10 % t on t off
vor1142b6, VOR1142A6 www.vishay.com vishay semiconductors rev. 1.1, 17-nov-15 4 document number: 84300 for technical questions, contact: optocoupleranswe rs@vishay.com this document is subject to change without notice. the products described herein and this document are subject to specific disclaimers, set forth at www.vishay.com/doc?91000 fig. 3 - safety power dissipation vs . ambient temperature fig. 4 - safety input current vs. ambient temperature typical characteristics (t amb = 25 c, unless otherwise specified) fig. 5 - maximum load current vs. ambient temperature fig. 6 - forward voltage vs. ambient temperature fig. 7 - forward current vs. forward voltage fig. 8 - normalized forward current for switch turn-on vs. ambient temperature 0 200 400 600 800 -50-250 255075100125150175 p s o -output s afety power (mw) t amb - ambient temperature ( c) 0 50 100 150 200 250 -50-250 255075100125150175 i s i - input s afety current (ma) t amb - ambient temperature ( c) 0 30 60 90 120 150 - 40 - 20 0 20 40 60 80 100 i l - load current (ma) t amb - ambient temperature ( c) i f >5 ma 1.0 1.1 1.2 1.3 1.4 1.5 1.6 1.7 -40-200 20406080100 v f - forward voltage (v) t amb - ambient temperature ( c) i f = 10 ma i f = 5 ma i f = 2 ma 0 20 40 60 0 0.5 1.0 1.5 2.0 i f - forward current (ma) v f - forward voltage (v) t = 100 c t = 25 c t = -40 c 0 0.5 1.0 1.5 2.0 2.5 -40-200 20406080100 normalized forward current for s witch turn-on t amb - ambient temperature ( c) normalized to t amb = 25 c i l = 100 ma
vor1142b6, VOR1142A6 www.vishay.com vishay semiconductors rev. 1.1, 17-nov-15 5 document number: 84300 for technical questions, contact: optocoupleranswe rs@vishay.com this document is subject to change without notice. the products described herein and this document are subject to specific disclaimers, set forth at www.vishay.com/doc?91000 fig. 9 - normalized on-resistance vs. ambient temperature fig. 10 - output capaci tance vs. load voltage fig. 11 - off-state leakage current vs. load voltage fig. 12 - turn-on time vs. forward current fig. 13 - normalized turn-on time vs. ambient temperature fig. 14 - turn-off time vs. forward current 0 0.5 1.0 1.5 2.0 -40-200 20406080100 normalized on-re s i s tance t amb - ambient temperature ( c) normalized to t amb = 25 c i f = 5.0 ma i l = 50 ma 0 10 20 30 40 50 60 0 102030405060 c o - output capacitance (pf) v l - load voltage (v) i f = 0 ma f = 1 mhz 0.01 0.1 1 10 100 0100200300 off- s tate leakage current (na) v l -load voltage (v) t = 100 c t = 25 c t = -40 c i f = 0 ma 0 0.5 1.0 1.5 2.0 0 1020304050 turn-on time (m s ) i f - forward current (ma) t = 100 c t = 25 c t = -40 c i l = 50 ma 0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 1.8 2.0 -40 -20 0 20 40 60 80 100 normalized turn-on time t amb - ambient temperature ( c) normalized to t amb = 25 c i f = 5 ma 0 0.04 0.08 0.12 0.16 0.20 0 1020304050 turn-off time (m s ) i f - forward current (ma) t = 100 c t = 25 c t = -40 c i l = 50 ma
vor1142b6, VOR1142A6 www.vishay.com vishay semiconductors rev. 1.1, 17-nov-15 6 document number: 84300 for technical questions, contact: optocoupleranswe rs@vishay.com this document is subject to change without notice. the products described herein and this document are subject to specific disclaimers, set forth at www.vishay.com/doc?91000 fig. 15 - normalized turn-off time vs. ambient temperature package dimensions (in millimeters) smd-6 0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 1.8 2.0 -40-200 20406080100 normalized turn-off time t amb - ambient temperature ( c) normalized to t amb = 25 c i f = 5.0 ma 7.60 max. 7.25 0.10 0.79 typ. 1.00 0.10 2.54 nom. 2 x 2.54 = 5.08 3.55 0.25 0.25 0.20 9.80 0.25 6.65 0.15 7.62 typ. 0.25 0.10 lead s coplanarity 0.1 max. 8.00 min. 0.60 min. pin one i.d. 654 12 3 8.0 min. 11.00 1.50 2.54 1.50 5.08 recommended footprint
vor1142b6, VOR1142A6 www.vishay.com vishay semiconductors rev. 1.1, 17-nov-15 7 document number: 84300 for technical questions, contact: optocoupleranswe rs@vishay.com this document is subject to change without notice. the products described herein and this document are subject to specific disclaimers, set forth at www.vishay.com/doc?91000 dip-6 fig. 16 - package drawings package marking fig. 17 - vor1142 note ? package configuration (t, a, b) are not part of the package marking. 7.60 max. 2 x 2.54 = 5.08 7.25 0.10 2.54 nom. 0.50 0.10 1.00 0.10 0.79 typ. 3.55 0.25 0.70 0.20 65 4 123 pin one i.d. 6.65 0.15 7.62 typ. 3.04 0.25 6.09 0.25 3 to 9 0.25 0.10 1142 v yww 68
vor1142b6, VOR1142A6 www.vishay.com vishay semiconductors rev. 1.1, 17-nov-15 8 document number: 84300 for technical questions, contact: optocoupleranswe rs@vishay.com this document is subject to change without notice. the products described herein and this document are subject to specific disclaimers, set forth at www.vishay.com/doc?91000 packing information (in millimeters) fig. 18 - tape and reel pa cking (1000 pieces on reel) solder profiles fig. 19 - wave soldering double wave profile according to j-std-020 for dip devices fig. 20 - lead (pb)-free reflow solder profile according to j-std-020 for smd devices handling and storage conditions esd level: hbm class 2 floor life: unlimited conditions: t amb < 30 c, rh < 85 % moisture sensitivity level 1, according to j-std-020 device per tube type units/tube tubes/box units/box smd-6 50 40 2000 dip-6 50 40 2000 note: ? cummulative tolerance of 10 s pocket hole s i s 0.20 mm c l 0.35 0.05 7.77 0.1 3.9 0.1 4.4 0.1 1.75 0.1 7.77 0.1 12.0 0.1 10.3 0.1 1.5 0.1 pin 1 2.0 0.1 4.0 0.1 1.5 0.1 7.5 0.1 16.0 0.3 2 k/s second wave first wave wave ca. 5 k/s 5 s full line: typical dotted line: process limits time (s) temperature (c) 300 250 200 150 100 50 0 050100 150 200 250 94 8626 lead temperature 235 c to 260 c 100 c to 130 c ca. 200 k/s forced cooling ca. 2 k/s 0 50 100 150 200 250 300 0 50 100 150 200 250 300 time (s) temperature (c) 240 c 245 c max. 260 c max. 120 s max. 100 s 217 c max. 30 s max. ramp up 3 c/s max. ramp down 6 c/s 19841 255 c
legal disclaimer notice www.vishay.com vishay revision: 13-jun-16 1 document number: 91000 disclaimer ? all product, product specifications and data ar e subject to change with out notice to improve reliability, function or design or otherwise. vishay intertechnology, inc., its affiliates, agents, and employee s, and all persons acting on it s or their behalf (collectivel y, vishay), disclaim any and all liability fo r any errors, inaccuracies or incompleteness contained in any datasheet or in any o ther disclosure relating to any product. vishay makes no warranty, representation or guarantee regarding the suitability of th e products for any particular purpose or the continuing production of any product. to the maximum extent permitted by applicable law, vi shay disclaims (i) any and all liability arising out of the application or use of any product , (ii) any and all liability, including without limitation specia l, consequential or incidental damages, and (iii) any and all implied warranties, includ ing warranties of fitness for particular purpose, non-infringement and merchantability. statements regarding the suitability of products for certain types of applicatio ns are based on vishays knowledge of typical requirements that are often placed on vishay products in generic applications. such statements are not binding statements about the suitability of products for a particular applic ation. it is the customers responsibility to validate tha t a particular product with the prope rties described in the product sp ecification is suitable for use in a particular application. parameters provided in datasheets and / or specifications may vary in different ap plications and perfor mance may vary over time. all operating parameters, including ty pical parameters, must be va lidated for each customer application by the customer s technical experts. product specifications do not expand or otherwise modify vishays term s and conditions of purchase, including but not limited to the warranty expressed therein. except as expressly indicated in writing, vishay products are not designed for use in medical, life-saving, or life-sustaining applications or for any other application in which the failure of the vishay product could result in personal injury or death. customers using or selling vishay product s not expressly indicated for use in such applications do so at their own risk. please contact authorized vishay personnel to obtain writ ten terms and conditions rega rding products designed for such applications. no license, express or implied, by estoppel or otherwise, to any intellectual property rights is gran ted by this document or by any conduct of vishay. product names and markings noted herein may be trademarks of their respective owners.


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