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  ace 74hc04 6v high speed inverter ver 1. 3 1 d escription ACE74HC04 is cmos single inverter gate. the device is fabricated with advanced cmos technology to achieve ultra high speed with high output drive while maintaining low static power dissipation over a very broad vcc operating range. the device is specified to operate over the 1.65 v to 6.0 v vcc range. inputs tolerate v oltage up to 6v independent of vcc operating voltage. features ? ultra high speed; tpd 8.5 ns typ into 50 pf at 5v v cc ? high output drive; 16 ma at 5 v v cc ? broad v cc operating range; 1.65 v to 6.0 v ? low power consumption, 1a max icc ? schmitt trigger action at input makes the circuit tolerant for slower input rise and fall time application ? cell phone and other portable device ? 3g module function diagram absolute m aximum ratings parameter symbol max unit supply voltage range v cc - 0.5~7 v input voltage range v in output voltage range v out dc input diode current i ik 20 ma dc output diode current i ok dc output current i ol /i oh 25 storage temperature range tstg - 40~150 o c package power dissipation @ +70 o c pd 200 mw
ace 74hc04 6v high speed inverter ver 1. 3 2 packaging type sc - 70 - 5 5 4 1 2 3 ordering information ace 74hc04 xx + h thermal resistance rating parameter device symbol limit unit package thermal impedance sc - 70 - 5 ja 142 o c/w recommended operating condition parameter symbol min max units supply voltage v cc 1.65 6 v input voltage v in 0 v cc output voltage v out 0 v cc high - level input voltage v cc =2v v ih 1.3 v cc = 3 v 1.8 v cc = 6 v 3.2 low - level input voltage v cc =2v v il 0.7 v cc = 3 v 1.0 v cc = 6 v 2.2 high - level output current v cc =2v i oh - 50 a v cc = 3 .3 0.3v - 8 ma v cc = 6 0.5v - 16 low - level output current v cc =2v i ol 50 a v cc = 3.3 0.3v 8 ma sc - 70 - 5 description 1 nc 2 a 3 gnd 4 y 5 v cc hn: sc - 70 - 5 pb - free halogen - free
ace 74hc04 6v high speed inverter ver 1. 3 3 v cc = 6 0.5v 16 input transition rise or fall rate v cc = 3.3 0.3v t/ v 100 ns/v v cc = 6 0.5v 20 operation temperature t a - 40~85 electrical characteristics (unless otherwise noted) parameter test condition vcc min. max. unit ii vi=6.0v or gnd 0v to 6.0v 1 a icc vi=vcc or gnd, io=0 6.0v 1 a ci vi=vcc or gnd 5.0v 10 pf voh ioh= - 50 a 2.0v 1.9 v 3.0v 2.9 5.0v 4.9 ioh= - 8ma 3.0v 2.6 ioh= - 16ma 5.0v 4.5 vol ioh= - 50 a 2.0v 0.1 3.0v 0.1 5.0v 0.1 ioh= - 8ma 3.0v 0.4 ioh= - 16ma 5.0v 0.5 switching characteristics (vcc=3.3v parameter input output load capacitance min. max. unit tplh a y cl=15pf 1 8.5 ns tphl tplh a y cl=50pf 1 12 tphl switching characteristics (vcc=6.0v parameter input output load capacitance min. max. unit tplh a y cl=15pf 1 6.5 ns tphl tplh a y cl=50pf 1 8.5 tphl
ace 74hc04 6v high speed inverter ver 1. 3 4 switching characteristics (vcc=5.0v, t a =25 ) parameter symbol test condition typ. unit power dissipation capacitance cpd no load, f=1mhz 12 pf parameter measurement information n ote: a. the outputs are measured one at a time, with one input transition per measurement. b. all parameters and waveforms are not applicable to all devices. c. cl includes probe and jig capacitance d. all input pulses are supplied by generators having the following c haracteristics: prr 1 mhz, zo = 50 , tr 3 ns, tf 3 ns
ace 74hc04 6v high speed inverter ver 1. 3 5 packing information sc - 70 - 5
ace 74hc04 6v high speed inverter ver 1. 3 6 notes ace does not assume any responsibility for use as critical components in l ife support devices or systems without the express written approval of the president and general counsel of ace electronics co., ltd. as sued herein: 1. life support devices or systems are devices or systems which, (a) are intended for surgical implant into t he body, or (b) support or sustain life, and shoes failure to perform when properly used in accordance with instructions for use provided in the labeling, can be reasonably expected to result in a significant injury to the user. 2. a critical component is any component of a life support device or system whose failure to perform can be reasonably expected to cause the failure of the life support device or system, or to affect its safety or effectiveness. ace technology co., ltd. http://www.ace - ele.com/


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