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  r04ds0037ej0400 rev.4.00 page 1 of 8 jan 10, 2014 data sheet hd74lv1gw97a configurable multiple?function gate description the hd74lv1gw97a has configurable multiple?function gate in a 6 pin package. the output state is determined by eight patterns of 3?bit input. the user can choose the logic functions and, nand, or, nor, inverter, non? invert buffer, data selector. low voltage and high-speed operation is suitable for the battery powered products (e.g., notebook computers), and the low power consumption extends the battery life. features ? the basic gate function is lined up as renesas uni logic series. ? supplied on emboss taping for high-speed automatic mounting. ? supply voltage range : 1.65 to 5.5 v operating temperature range : ?40 to +85c ? all inputs v ih (max.) = 5.5 v (@v cc = 0 v to 5.5 v) all outputs v o (max.) = 5.5 v (@v cc = 0 v) ? output current 6 ma (@v cc = 3.0 v to 3.6 v), 12 ma (@v cc = 4.5 v to 5.5 v) ? all the logical input has hysteresis voltage for the slow transition. ? ordering information part name package type package code (previous code) package abbreviation taping abbreviation (quantity) hd74lv1gw97acme cmpak-6 pin ptsp0006ja-a (cmpak-6v) cm e (3,000 pcs / reel) outline and article indication ? hd74lv1gw97a marking = control code w 2 index band cmpak?6 r04ds0037ej0400 rev.4.00 jan 10, 2014
hd74lv1gw97a r04ds0037ej0400 rev.4.00 page 2 of 8 jan 10, 2014 function table inputs output in2 in1 in0 y l l l l l l h l l h l h l h h h h l l l h l h h h h l l h h h h h : high level l : low level pin arrangement (top view) v cc 2 5 gnd 6 in2 1 in1 3 in0 4 y logic diagram in0 in1 in2 y
hd74lv1gw97a r04ds0037ej0400 rev.4.00 page 3 of 8 jan 10, 2014 function selection table logic function figure no. 2 to 1 data selector 1 2?inputs and 2 2?inputs or with one input inverted 3 2?inputs nand with one input inverted 3 2?inputs and with one input inverted 4 2?inputs nor with one input inverted 4 2?inputs or 5 inverter 6 non?inverter buffer 7 logic configurations figure 1. 2 to 1 data selecter a b 1 (in1) (in2) 6 2 (gnd) (v cc ) 5 3 (in0) (y) 4 a/b v cc y y a a/b b figure 2. 2?inputs and gate b 1 (in1) (in2) 6 2 (gnd) (v cc ) 5 3 (in0) (y) 4 a v cc y y a b y a b figure 4. 2?inputs and gate with a input inverted y b a b 1 (in1) (in2) 6 2 (gnd) (v cc ) 5 3 (in0) (y) 4 a v cc y y a b y a 1 (in1) (in2) 6 2 (gnd) (v cc ) 5 3 (in0) (y) 4 a v cc y figure 6. inverter y a 1 (in1) (in2) 6 2 (gnd) (v cc ) 5 3 (in0) (y) 4 a v cc y figure 7. non?invert butter figure 3. 2?inputs or gate with a input inverted b 1 (in1) (in2) 6 2 (gnd) (v cc ) 5 3 (in0) (y) 4 a v cc y y y a b a b b y a b y a b 1 (in1) (in2) 6 2 (gnd) (v cc ) 5 3 (in0) (y) 4 a v cc y figure 5. 2?inputs or gate
hd74lv1gw97a r04ds0037ej0400 rev.4.00 page 4 of 8 jan 10, 2014 absolute maximum ratings item symbol ratings unit test conditions supply voltage range v cc ?0.5 to 7.0 v input voltage range *1 v i ?0.5 to 7.0 v output voltage range *1, 2 v o ?0.5 to v cc + 0.5 v output : h or l ?0.5 to 7.0 v cc : off input clamp current i ik ?20 ma v i < 0 output clamp current i ok 50 ma v o < 0 or v o > v cc continuous output current i o 25 ma v o = 0 to v cc continuous current through v cc or gnd i cc or i gnd 50 ma maximum power dissipation at ta = 25c (in still air) *3 p t 200 mw storage temperature tstg ?65 to 150 c notes: the absolute maximum ratings are values, which must not individually be exceeded, and furthermore no two of which may be realized at the same time. 1. the input and output voltage rati ngs may be exceeded if the input and output clamp-current ratings are observed. 2. this value is limited to 5.5 v maximum. 3. the maximum package power dissipation was calc ulated using a junction temperature of 150c. recommended operating conditions item symbol min max unit conditions supply voltage range v cc 1.65 5.5 v input voltage range v i 0 5.5 v output voltage range v o 0 v cc v output current i ol ? 1 ma v cc = 1.65 to 1.95 v ? 2 v cc = 2.3 to 2.7 v ? 6 v cc = 3.0 to 3.6 v ? 12 v cc = 4.5 to 5.5 v i oh ? ?1 v cc = 1.65 to 1.95 v ? ?2 v cc = 2.3 to 2.7 v ? ?6 v cc = 3.0 to 3.6 v ? ?12 v cc = 4.5 to 5.5 v input transition rise or fall rate t / v 0 300 ns / v v cc = 1.65 to 1.95 v 0 200 v cc = 2.3 to 2.7 v 0 100 v cc = 3.0 to 3.6 v 0 20 v cc = 4.5 to 5.5 v operating free-air temperature t a ?40 85 c note: unused or floating inputs must be held high or low.
hd74lv1gw97a r04ds0037ej0400 rev.4.00 page 5 of 8 jan 10, 2014 electrical characteristics ta = ?40 to 85c item symbol v cc (v) min typ max unit test condition threshold voltage v t + 1.65 to 1.95 ? ? v cc 0.75 v 2.5 ? ? 1.75 3.3 ? ? 2.31 5.0 ? ? 3.50 v t ? 1.65 to 1.95 v cc 0.25 ? ? 2.5 0.75 ? ? 3.3 0.99 ? ? 5.0 1.5 ? ? v t 1.65 to 1.95 0.1 ? v cc 0.4 2.5 0.25 ? 1.0 3.3 0.33 ? 1.32 5.0 0.5 ? 2.0 output voltage v oh min to max v cc ?0.1 ? ? v i oh = ?50 a 1.65 1.4 ? ? i oh = ?1 ma 2.3 2.0 ? ? i oh = ?2 ma 3.0 2.48 ? ? i oh = ?6 ma 4.5 3.8 ? ? i oh = ?12 ma v ol min to max ? ? 0.1 i ol = 50 a 1.65 ? ? 0.3 i ol = 1 ma 2.3 ? ? 0.4 i ol = 2 ma 3.0 ? ? 0.44 i ol = 6 ma 4.5 ? ? 0.55 i ol = 12 ma input current i in 0 to 5.5 ? ? 1 a v in = 5.5 v or gnd quiescent supply current i cc 5.5 ? ? 10 a v in = v cc or gnd, i o = 0 output leakage current i off 0 ? ? 5 a v in or v o = 0 to 5.5 v input capacitance c in 3.3 ? 3.0 ? pf v in = v cc or gnd note: for conditions shown as min or max, use the appropriate values under recommended operating conditions.
hd74lv1gw97a r04ds0037ej0400 rev.4.00 page 6 of 8 jan 10, 2014 switching characteristics v cc = 1.80.15 v item symbol ta = 25c ta = ?40 to 85c unit test conditions from (input) to (output) min typ max min max propagation delay time t plh t phl ? 15.8 29.4 1.0 33.0 ns c l = 15 pf in y ? 22.6 40.9 1.0 45.0 c l = 50 pf v cc = 2.50.2 v item symbol ta = 25c ta = ?40 to 85c unit test conditions from (input) to (output) min typ max min max propagation delay time t plh t phl ? 9.4 17.6 1.0 21.0 ns c l = 15 pf in y ? 12.6 22.6 1.0 26.5 c l = 50 pf v cc = 3.30.3 v item symbol ta = 25c ta = ?40 to 85c unit test conditions from (input) to (output) min typ max min max propagation delay time t plh t phl ? 7.0 11.0 1.0 13.0 ns c l = 15 pf in y ? 9.5 14.5 1.0 16.5 c l = 50 pf v cc = 5.00.5 v item symbol ta = 25c ta = ?40 to 85c unit test conditions from (input) to (output) min typ max min max propagation delay time t plh t phl ? 4.8 6.8 1.0 8.0 ns c l = 15 pf in y ? 6.3 8.8 1.0 10.0 c l = 50 pf operating characteristics c l = 50 pf item symbol v cc (v) ta = 25c unit test conditions min typ max power dissipation capacitance c pd 3.3 ? 8.5 ? pf f = 10 mhz 5.0 ? 10.0 ?
hd74lv1gw97a r04ds0037ej0400 rev.4.00 page 7 of 8 jan 10, 2014 test circuit c l measurement point note: c l includes probe and jig capacitance. * input in phase output 90% 50% 10% t plh t phl v cc gnd v oh v ol t phl t plh 90% 50% 10% 50% 50% 50% 50% ? waveforms out of phase output v oh v ol notes: 1. input waveform : prr 1 mhz, zo = 50 , t r 3 ns, t f 3 ns. 2. the output are measured one at a time with one transition per measurement. t r t f
hd74lv1gw97a r04ds0037ej0400 rev.4.00 page 8 of 8 jan 10, 2014 package dimensions mass (typ) [g] 0.006 previous code renesas code ptsp0006ja-a cmpak-6 / cmpak-6v jeita package code sc-88 ? 2013 renesas electronics corporation. all rights reserved. a a 1 a 2 a 3 b c d e e h e l l 1 l p x y q 0.8 0 0.8 ? 0.15 0.1 1.8 1.15 ? 2.0 0.3 0.1 0.2 ? ? ? min nom dimensions in millimeters reference symbol max ? ? 0.9 0.25 0.2 0.15 2.0 1.25 0.65 2.1 ? ? ? ? ? 0.25 1.1 0.1 1.0 ? 0.25 0.25 2.2 1.35 ? 2.2 0.7 0.5 0.6 0.05 0.05 ? s y e a eh e l l 1 q c d b aa a 3 l p s a a 2 a 1 as m x b a-a section c
notice 1. descriptions of circuits, software and other related information in this document are provided only to illustrate the operat ion of semiconductor products and application examples. you are fully responsible for the incorporation of these circuits, software, and information in the design of your equipment. renesas electronics assumes no responsibility for any losses incurred by you or third parties arising from the use of these circuits, software, or information. 2. renesas electronics has used reasonable care in preparing the information included in this document, but renesas electronics does not warrant that such information is error free. renesas electronics assumes no liability whatsoever for any damages incurred by you resulting from errors in or omissions from the information incl uded herein. 3. renesas electronics does not assume any liability for infringement of patents, copyrights, or other intellectual property ri ghts of third parties by or arising from the use of renesas electronics products or technical information described in this document. no license, express, implied or otherwise, is granted hereby under any paten ts, copyrights or other intellectual property rights of renesas electronics or others. 4. you should not alter, modify, copy, or otherwise misappropriate any renesas electronics product, whether in whole or in part . renesas electronics assumes no responsibility for any losses incurred by you or third parties arising from such alteration, modification, copy or otherwise misappropriation of renesas electronics product. 5. renesas electronics products are classified according to the following two quality grades: "standard" and "high quality". t he recommended applications for each renesas electronics product depends on the product's quality grade, as indicated below. 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