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  sogc 01, 03, 05 vishay dale thick film resistor networks, dual-in-line, wide body, small outline, molded dip, surface mount www.vishay.com for technical questions, contact: ff2aresistors@vishay.com document number: 31506 406 revision: 27-apr-10 features ? isolated, bussed and dual terminator schematics available ? 0.110" (2.79 mm) maximum seated height ? rugged, molded case construction ? 0.050" (1.27 mm) lead spacing ? reduces total assembly costs ? compatible with automatic surface mounting equipment ? uniform performance characteristics ? meets eia pdp 100, sogn -0003 outline dimensions ? available in tube pack or tape and reel pack ? compliant to rohs directive 2002/95/ec notes ? 100 m maximum on 0 -jumper. (1) 2 % standard, 1 % and 5 % available. (2) continuous working voltage shall be or maximum working voltage, whichever is less. * pb containing terminations are not rohs compliant, excemptions may apply standard electrical specifications global model schematic power rating tolerance (1) % resistance range maximum working voltage (2) v dc temperature coefficient ppm/c element p 70 c w pac k ag e p 70 c w sogc16 01 0.1 1.6 1, 2, 5 10 to 1m 50 100 03 0.19 1.6 1, 2, 5 10 to 1m 50 100 05 0.1 1.6 2, 5 10 to 1m 50 100 sogc20 01 0.1 2.0 1, 2, 5 10 to 1m 50 100 03 0.19 2.0 1, 2, 5 10 to 1m 50 100 05 0.1 2.0 2, 5 10 to 1m 50 100 global part number information new global part numbering: sogc200310k0gdc (preferred part number format) global model pin count schematic resistance value tolerance code packaging special sogc 16 20 01 = bussed 03 = isolated 00 = special r = k = k m = m 10r0 = 10 680k = 680 k 1m00 = 1.0 m f = 1 % g = 2 % s = special z = 0 jumper ej = lead (pb)-free, tube ea = lead (pb)-free, tape and reel dc = tin/lead, tube rz = tin/lead, tape and reel blank = standard (dash number) (up to 3 digits) from 1 to 999 as applicable historical part number example: sogc2003103g (will continue to be accepted) sogc 20 03 103 g d02 historical model pin count schematic resistance value tolerance code packaging new global part numbering: sogc1605131agrz (preferred part number format) global model pin count schematic resistance value tolerance code packaging special sogc 16 20 05 = dual terminator 3 digit impedance code, followed by alpha modifier (see impedance codes table) f = 1 % g = 2 % j = 5 % ej = lead (pb)-free, tube ea = lead (pb)-free, tape and reel dc = tin/lead, tube rz = tin/lead, tape and reel blank = standard (dash number) (up to 3 digits) from 1 to 999 as applicable historical part number example: sogc1605221331g (will continue to be accepted) sogc 16 05 221 331 g r61 historical model pin count schematic resistance value 1 resistance value 2 tolerance code packaging p x r c d g 0 k 0 1 3 0 0 2 c g o s z r g a 1 3 1 5 0 6 1 c g o s
document number: 31506 for technical questions, contact: ff2aresistors@vishay.com www.vishay.com revision: 27-apr-10 407 sogc 01, 03, 05 thick film resistor networ ks, dual-in-line, wide body, small outline, molded dip, surface mount vishay dale dimensions in inches (millimeters) global model ab sogc16 0.440 (11.18) 0.350 (8.89) sogc20 0.540 (13.72) 0.450 (11.43) 0.105 (2.67) 0.100 (2.54) 0.010 0.005 (0.254 0.127) 0.406 0.012 (10.31 0.305) 0.02 8 0.010 (0.711 0.254) typ. 0.00 8 (0.203) 0.295 (7.49) 0.045 (1.14) ref. pin 1 0.045 (1.14) a 0.050 (1.27) non-accum. t yp. 0.01 8 (0.457) typ. b sogc 0.006 (0.152) max. typ. technical specifications parameter unit sogc16 sogc20 package power rating (max. at + 70 c) w 1.6 2.0 tcr tracking (- 55 c to + 125 c) ppm/c 50 voltage coefficient of resistance ppm/v < 50 typical maximum operating voltage v dc 50 operating temperature range c - 55 to + 125 storage temperature range c - 55 to + 150 mechanical specifications marking model number, schematic number, value tolerance, pin 1 indicator, date code marking resistance to solvents permanency testing per mil-std-202, method 215 maximum solder reflow temperature + 255 c solderability per mil-std-202, method 208e terminals copper alloy. solder dipped terminal body molded epoxy
sogc 01, 03, 05 vishay dale thick film resistor networ ks, dual-in-line, wide body, small outline, molded dip, surface mount www.vishay.com for technical questions, contact: ff2aresistors@vishay.com document number: 31506 408 revision: 27-apr-10 impedance codes code r 1 ( )r 2 ( )coder 1 ( )r 2 ( ) 500b 82 130 141a 270 270 750b 120 200 181a 330 390 800c 130 210 191a 330 470 990a 160 260 221b 330 680 101c 180 240 281b 560 560 111c 180 270 381b 560 1.2k 121b 180 390 501c 620 2.7k 121c 220 270 102a 1.5k 3.3k 131a 220 330 202b 3k 6.2k circuit applications 01 schematic 15 or 19 resistors with one pin common the sogcxx01 circuit provides a choice of 15 or 19 nominally equal resistors, each connected between a common lead (16 or 20) and a discrete pc board pin. commonly used in the following applications: ? mos/rom pull-up/pull-down ? ttl input pull-down ? open collector pull-up ? digital pulse squaring ? ?wired or? pull-up ? ttl unused gate pull-up ? power driven pull-up ? hi gh speed parallels pull-up 03 schematic 8 or 10 isolated resistors the sogcxx03 circuit provides a choice of 8 or 10 nominally equal resistors with each resistor isolated from all ot hers and wired directly across. commonly used in the following applications: ? ?wired or? pull-up ? long- line impedance balancing ? power driven pull-up ? led current limiting ? powergate pull-up ? ecl output pull-down ? line termination ? ttl input pull-down 05 schematic ttl dual-line terminator; pulse squar ing, 14 or 18 pairs of resistors (r 1 resistors are common to leads 16 or 20) (r 2 resistors are common to leads 8 or 10) the sogcxx05 circuit contains 14 or 18 pairs of resistors. each pair is connected between ground and a common line. the junctions of these resistor pairs are connected to the input leads. the 05 circuits are designed for ttl du al-line termination and pulse squaring. sogc16 sogc20 pin 1 sogc16 sogc20 pin 1 r1 r1 r1 r1 r1 r1 r1 r2 r2 r2 r2 r2 r2 r1 r1 r1 r1 r1 r1 r1 r2 r2 r2 r2 r2 r2 r2 r2 sogc16, sogc20 pin 1
document number: 31506 for technical questions, contact: ff2aresistors@vishay.com www.vishay.com revision: 27-apr-10 409 sogc 01, 03, 05 thick film resistor networ ks, dual-in-line, wide body, small outline, molded dip, surface mount vishay dale ambient temperature c 2.0 1.6 1.0 0.19 0.10 sin g le resistor sogcxx03 sogcxx01 & 05 sogc2001, 03, 05 pk g . sogc1601, 03, 05 pk g . deratin g power ratin g (w) - 50 0 + 25 + 70 + 125 + 150 performance test max. r (typical test lots) power conditioning 0.50 % r thermal shock 0.50 % r short time overload 0.25 % r low temperature operation 0.25 % r moisture resistance 0.50 % r resistance to soldering heat 0.25 % r shock 0.25 % r vibration 0.25 % r load life 0.50 % r terminal strength 0.25 % r insulation resistance 10 000 m (minimum) dielectric withstanding voltage no evidence of arcing or damage (200 v rms for 1 min)
document number: 91000 www.vishay.com revision: 18-jul-08 1 disclaimer legal disclaimer notice vishay all product specifications and data are subject to change without notice. vishay intertechnology, inc., its affiliates, agents, and employees, and all persons acting on its or their behalf (collectively, ?vishay?), disclaim any and all liability fo r any errors, inaccuracies or incompleteness contained herein or in any other disclosure relating to any product. vishay disclaims any and all li ability arising out of the use or application of any product describ ed herein or of any information provided herein to the maximum extent permit ted by law. the product specifications do not expand or otherwise modify vishay?s terms and conditions of purcha se, including but not limited to the warranty expressed therein, which apply to these products. no license, express or implied, by estoppel or otherwise, to any intellectual property rights is granted by this document or by any conduct of vishay. the products shown herein are not designed for use in medi cal, life-saving, or life-sustaining applications unless otherwise expressly indicated. customers using or selling vishay products not expressly indicated for use in such applications do so entirely at their own risk and agree to fully indemnify vishay for any damages arising or resulting from such use or sale. please contact authorized vishay personnel to obtain written terms and conditions regarding products designed for such applications. product names and markings noted herein may be trademarks of their respective owners.


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