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74LS273 Series

Octal D-Type Flip-Flops With Clear

Manufacturer: Texas Instruments

Catalog(3 parts)

PartVoltage - SupplyVoltage - SupplyTypeCurrent - Output High, LowCurrent - Output High, LowTrigger TypePackage / CasePackage / CasePackage / CaseNumber of Bits per ElementOperating TemperatureOperating TemperatureCurrent - Quiescent (Iq)Number of ElementsOutput TypeSupplier Device PackageMax Propagation Delay @ V, Max CLClock FrequencyMounting TypePackage / Case
Texas Instruments
SN74LS273N
Flip Flop 1 Element D-Type 8 Bit Positive Edge 20-DIP (0.300", 7.62mm)
4.75 V
5.25 V
D-Type
0.00800000037997961 A
0.00039999998989515007 A
Positive Edge
20-DIP
0.007619999814778566 m
0.007619999814778566 m
8 ul
70 °C
0 °C
0.027000000700354576 A
1 ul
Non-Inverted
20-PDIP
2.7000000457633178e-8 s
40000000 Hz
Through Hole
Texas Instruments
SN74LS273NSR
Flip Flop 1 Element D-Type 8 Bit Positive Edge 20-SOIC (0.209", 5.30mm Width)
4.75 V
5.25 V
D-Type
0.00800000037997961 A
0.00039999998989515007 A
Positive Edge
20-SOIC
8 ul
70 °C
0 °C
0.027000000700354576 A
1 ul
Non-Inverted
20-SO
2.7000000457633178e-8 s
40000000 Hz
Surface Mount
0.0052999998442828655 m, 0.005308600142598152 m
Texas Instruments
SN74LS273DW
Flip Flop 1 Element D-Type 8 Bit Positive Edge 20-SOIC (0.295", 7.50mm Width)
4.75 V
5.25 V
D-Type
0.00800000037997961 A
0.00039999998989515007 A
Positive Edge
20-SOIC
8 ul
70 °C
0 °C
0.027000000700354576 A
1 ul
Non-Inverted
20-SOIC
2.7000000457633178e-8 s
40000000 Hz
Surface Mount
0.007493000011891127 m, 0.007499999832361937 m

Key Features

Contains Eight Flip-Flops With Single-Rail OutputsBuffered Clock and Direct Clear InputsIndividual Data Input to Each Flip-FlopApplications Include:Buffer/Storage RegistersShift RegistersPattern GeneratorsContains Eight Flip-Flops With Single-Rail OutputsBuffered Clock and Direct Clear InputsIndividual Data Input to Each Flip-FlopApplications Include:Buffer/Storage RegistersShift RegistersPattern Generators

Description

AI
These monolithic, positive-edge-triggered flip-flops utilize TTL circuitry to implement D-type flip-flop logic with a direct clear input. Information at the D inputs meeting the setup time requirements is transferred to the Q outputs on the positive-going edge of the clock pulse. Clock triggering occurs at a particular voltage level and is not directly related to the transition time of the positive-going pulse. When the clock input is at either the high or low level, the D input signal has no effect at the output. These flip-flops are guaranteed to respond to clock frequencies ranging form 0 to 30 megahertz while maximum clock frequency is typically 40 megahertz. Typical power dissipation is 39 milliwatts per flip-flop for the ´273 and 10 milliwatts for the ´LS273. These monolithic, positive-edge-triggered flip-flops utilize TTL circuitry to implement D-type flip-flop logic with a direct clear input. Information at the D inputs meeting the setup time requirements is transferred to the Q outputs on the positive-going edge of the clock pulse. Clock triggering occurs at a particular voltage level and is not directly related to the transition time of the positive-going pulse. When the clock input is at either the high or low level, the D input signal has no effect at the output. These flip-flops are guaranteed to respond to clock frequencies ranging form 0 to 30 megahertz while maximum clock frequency is typically 40 megahertz. Typical power dissipation is 39 milliwatts per flip-flop for the ´273 and 10 milliwatts for the ´LS273.