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CD54HC244FTI,TIN/a500avaiHigh Speed CMOS Logic Non-Inverting Octal Buffer/Line Drivers with 3-State Outputs
CD54HC244F3ATI,TIN/a500avaiHigh Speed CMOS Logic Non-Inverting Octal Buffer/Line Drivers with 3-State Outputs


CD54HC244F ,High Speed CMOS Logic Non-Inverting Octal Buffer/Line Drivers with 3-State OutputsMaximum Ratings Thermal InformationDC Supply Voltage, V . . . . . . . . . . . . . . . . . . . . . . ..
CD54HC244F3A ,High Speed CMOS Logic Non-Inverting Octal Buffer/Line Drivers with 3-State OutputsFeatures Ordering Information• HC/HCT240 InvertingTEMP. RANGEoPART NUMBER ( C) PACKAGE• HC/HCT241 N ..
CD54HC245F ,High Speed CMOS Logic Non-Inverting Octal-Bus Transceiver with 3-State OutputsMaximum Ratings Thermal InformationoDC Supply Voltage, V . . . . . . . . . . . . . . . . . . . . . ..
CD54HC245F3A ,High Speed CMOS Logic Non-Inverting Octal-Bus Transceiver with 3-State OutputsMaximum Ratings Thermal InformationoDC Supply Voltage, V . . . . . . . . . . . . . . . . . . . . . ..
CD54HC245F3A. ,High Speed CMOS Logic Non-Inverting Octal-Bus Transceiver with 3-State OutputsCD54HC245, CD74HC245,CD54HCT245, CD74HCT245Data sheet acquired from Harris SemiconductorSCHS119AHig ..
CD54HC251F. ,High Speed CMOS Logic 8-Input Multiplexer with 3-State Outputsfeatures both true (Y) and complement (Y)HCT25- Standard Outputs . . . . . . . . . . . . . . . 10 L ..
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CD54HC244F-CD54HC244F3A
High Speed CMOS Logic Non-Inverting Octal Buffer/Line Drivers with 3-State Outputs
CD54/74HC240, CD54/74HCT240, CD74HC241, CD54/74HCT241, CD54/74HC244, CD54/74HCT244 SCHS167E High-Speed CMOS Logic November 1997 - Revised October 2004 Octal Buffer/Line Drivers, Three-State Features Ordering Information • HC/HCT240 Inverting TEMP. RANGE o PART NUMBER ( C) PACKAGE • HC/HCT241 Non-Inverting [ /Title • HC/HCT244 Non-Inverting CD54HC240F3A -55 to 125 20 Ld CERDIP (CD74 = 5V, • Typical Propagation Delay = 8ns at V HC240 CC CD54HC244F3A -55 to 125 20 Ld CERDIP o C = 15pF, T = 25 C for HC240 L A , CD54HCT240F3A -55 to 125 20 Ld CERDIP • Three-State Outputs D74 C CD54HCT241F3A -55 to 125 20 Ld CERDIP • Buffered Inputs HCT24 • High-Current Bus Driver Outputs 0, CD54HCT244F3A -55 to 125 20 Ld CERDIP CD74 • Fanout (Over Temperature Range) CD74HC240E -55 to 125 20 Ld PDIP - Standard Outputs . . . . . . . . . . . . . . . 10 LSTTL Loads HC241 CD74HC240M -55 to 125 20 Ld SOIC - Bus Driver Outputs . . . . . . . . . . . . . 15 LSTTL Loads , o o C to 125 C • Wide Operating Temperature Range . . . -55 CD74HC240M96 -55 to 125 20 Ld SOIC D74 C HCT24 • Balanced Propagation Delay and Transition Times CD74HC241E -55 to 125 20 Ld PDIP 1, • Significant Power Reduction Compared to LSTTL CD74HC241M -55 to 125 20 Ld SOIC Logic ICs CD74 CD74HC241M96 -55 to 125 20 Ld SOIC • HC Types HC244 - 2V to 6V Operation , CD74HC244E -55 to 125 20 Ld PDIP - High Noise Immunity: N = 30%, N = 30% of V IL IH CC D74 C CD74HC244M -55 to 125 20 Ld SOIC at V = 5V CC • HCT Types CD74HC244M96 -55 to 125 20 Ld SOIC - 4.5V to 5.5V Operation CD74HCT240E -55 to 125 20 Ld PDIP - Direct LSTTL Input Logic Compatibility, V = 0.8V (Max), V = 2V (Min) CD74HCT240M -55 to 125 20 Ld SOIC IL IH ≤ 1µA at V , V - CMOS Input Compatibility, I l OL OH CD74HCT240M96 -55 to 125 20 Ld SOIC CD74HCT240PW -55 to 125 20 Ld TSSOP Description CD74HCT240PWR -55 to 125 20 Ld TSSOP The ’HC240 and ’HCT240 are inverting three-state buffers having two active-low output enables. The CD74HC241, CD74HCT240PWT -55 to 125 20 Ld TSSOP ’HCT241, ’HC244 and ’HCT244 are non-inverting three- state buffers that differ only in that the 241 has one active- CD74HCT241E -55 to 125 20 Ld PDIP high and one active-low output enable, and the 244 has two CD74HCT241M -55 to 125 20 Ld SOIC active-low output enables. All three types have identical pinouts. CD74HCT241M96 -55 to 125 20 Ld SOIC CD74HCT244E -55 to 125 20 Ld PDIP CD74HCT244M -55 to 125 20 Ld SOIC CD74HCT244M96 -55 to 125 20 Ld SOIC NOTE: When ordering, use the entire part number. The suffixes 96 and R denote tape and reel. The suffix T denotes a small-quantity reel of 250. CAUTION: These devices are sensitive to electrostatic discharge. Users should follow proper IC Handling Procedures. Copyright © 2004, 1
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