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  vde 0884 option for plastic optocoupler technical data option 060 description optocouplers are frequently used to provide high voltage insulation. because optocouplers perform this safety function, they are regulated by many country safety agencies, both at the component level and the equipment level. standard 8 pin dip optocouplers with option 060, are tested according to vde 0884 (june 1992 revision) at v iorm = 630 vpeak. surface mount so8 optocouplers with option 060, are tested at v iorm = 560 vpeak. agilent also offers other various vde 0884 approved products at different levels of v iorm such as v iorm = 1414 vpeak (hcnwxxxx series) and v iorm = 891 vpeak (hcpl-jxxx series). refer to the front of the opto- coupler section of the isolation and control component designers catalog , under product safety regulations section, for a detailed description of vde 0884 and the partial discharge tests for production and type testing. option 060 is available on the following products: standard 8 pin dip product (v iorm = 630 vpeak) (vde file 6591.23-4880-1005) hcpl-2211 hcpl-2212 hcpl-2219 hcpl-2300 hcpl-2400 hcpl-2611 hcpl-261a hcpl-261n hcpl-3120 hcpl-3150 hcpl-4503 hcpl-4504 hcpl-4506 hcpl-4701 hcpl-7840 surface mount so8 product (tuv certificate r9650938: v iorm = 560 vpeak) hcpl-0211 hcpl-0454 hcpl-0466 hcpl-0611 hcpl-061a hcpl-061n hcpl-070a contact your local agilent sales representative concerning availability of this option for optocouplers not listed. ordering information specify part number followed by option number. example: hcpl-3120#060 this option may also be combined with option #300 (gullwing surface mount) or #500 (gullwing in tape and reel). to obtain these combinations, order option #360 or #560 respectively. examples: hcpl-3120 #360 (gullwing surface mount and vde0884 approved) hcpl-3120 #560 (gullwing surface mount and vde0884 approved in tape and reel) marking information a xxxxv yyww date code last 4 digits of part number option 060 8 pin dip package xxxv yww date code last 3 digits of part number option 060 so8 package ur ul recognition* * no ul marking on hcpl-261a/261n/ 3120/3150/4701/7840.
2 insulation related specifications value parameter symbol dip so8 units conditions minimum external air l(101) 7.1 4.9 mm measured from input terminals to output gap (external clearance) terminals, shortest distance through air. minimum external track- l(102) 7.4 4.8 mm measured from input terminals to output ing (external creepage) terminals, shortest distance path along body. minimum internal 0.08 0.08 mm through insulation distance, conductor to plastic gap conductor, usually the direct distance between (internal clearance) the photo- emitter and photodetector inside the optocoupler cavity. tracking resistance cti 175 175 v din iec 112/vde 0303 part 1 (comparative tracking index) isolation group iiia iiia material group (din vde 0110, 1/89, table 1) figure 1. thermal derating curve, dependence of safety limiting value with case temperature per vde 0884. output power ?p s , input current ?i s 0 0 t a ?case temperature ?? 200 50 400 125 25 75 100 150 600 800 200 100 300 500 700 175 (150) p s (mw) i s (ma) surface mount so8 product output power ?p s , input current ?i s 0 0 t a ?case temperature ?? 200 50 400 125 25 75 100 150 600 800 200 100 300 500 700 175 (230) p s (mw) i s (ma) standard 8 pin dip product all agilent data sheets report the creepage and clearance inherent to the optocoupler component itself. these dimensions are needed as a starting point for the equipment designer when determining the circuit insulation requirements. however, once mounted on a printed circuit board, minimum creepage and clearance requirements must be met as specified for individual equipment standards. for creepage, the shortest distance path along the surface of a printed circuit board between the solder fillets of the input and output leads must be considered. there are recommended techniques such as grooves and ribs which may be used on a printed circuit board to achieve desired creepage and clearances. creepage and clearance distances will also change depending on factors such as pollution degree and insulation level.
3 vde 0884 insulation related characteristics (option 060) standard 8 pin dip package *85 c: hcpl-2211, hcpl-2212, hcpl-2219, hcpl-2300, hcpl-2400, hcpl-2611, hcpl-261a, hcpl-261n, hcpl-4701, hcpl-7840. **100 c: hcpl-3120, hcpl-3150, hcpl-4503, hcpl-4504, hcpl-4506. so8 package *85 c: hcpl-0211, hcpl-0611, hcpl-061a, hcpl-061n, hcpl-070a. **100 c: hcpl-0454, hcpl-0466. description symbol std. 8 pin dip so8 units installation classification per din vde 0110/1.89, table 1 for rated mains voltage 150 v rms i-iv i-iv for rated mains voltage 300 v rms i-iv i-iii for rated mains voltage 450 v rms i-iii climatic classification 55/85/21* 55/85/21* 55/100/21** 55/100/21** pollution degree (din vde 0110/1.89) 2 2 maximum working insulation voltage v iorm 630 560 v peak input to output test voltage, method b? v pr 1181 1050 v peak v iorm x 1.875 = v pr , 100% production test with t m = 1 sec, partial discharge < 5 pc input to output test voltage, method a? v pr 945 840 v peak v iorm x 1.5 = v pr , type and sample test, t m = 60 sec, partial discharge < 5 pc highest allowable overvoltage? v iotm 6000 4000 v peak (transient overvoltage, t ini = 10 sec) safety limiting values (maximum values allowed in the event of a failure, also see thermal derating curve, figure 1.) case temperature t s 175 150 c input current i s,input 230 150 ma output power p s,output 600 600 mw insulation resistance at t s , v 10 = 500 v r io 3 10 9 3 10 9 w ?refer to the front of the optocoupler section of the isolation and control component designers catalog , under product safety regulations section (vde 0884), for a detailed description. note: these optocouplers are suitable for safe electrical isolation only within the safety limit data. maintenance of the safety data shall be ensured by means of protective circuits. note: the surface mount classification is class a in accordance with cecc 00802.
www.semiconductor.agilent.com data subject to change. copyright ? 1999 agilent technologies obsoletes 5965-8101e 5968-1307e (11/99)


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