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HD74LV574A Datasheet

Part Number HD74LV574A
Manufacturers Renesas
Logo Renesas
Description Octal D-type Flip-Flops
Datasheet HD74LV574A DatasheetHD74LV574A Datasheet (PDF)

HD74LV574A Octal D-type Flip-Flops with 3-state Outputs Description REJ03D0520–0100 Rev.1.00 Feb. 01, 2005 The HD74LV574A has eight edge trigger D type flip flops with three state outputs in a 20 pin package. Data at the D inputs meeting set up requirements, are transferred to the Q outputs on positive going transitions of the clock input. When the clock input goes low, data at the D inputs will be retained at the outputs until clock input returns high again. When a high logic level is appli.

  HD74LV574A   HD74LV574A






Part Number HD74LV574A
Manufacturers Hitachi Semiconductor
Logo Hitachi Semiconductor
Description Octal Edge-Triggered D-type Flip-Flops with 3-state Outputs
Datasheet HD74LV574A DatasheetHD74LV574A Datasheet (PDF)

HD74LV574A Octal Edge-Triggered D-type Flip-Flops with 3-state Outputs ADE-205-280 (Z) 1st Edition April 1999 Description The HD74LV574A has eight edge-triggered D-type flip-flops with three-state outputs in a 20-pin package. Data at the D inputs meeting set up requirements, are transferred to the Q outputs on positive going transitions of the clock input. When the clock input goes low, data at the D inputs will be retained at the outputs until clock input returns high again. When a high logic .

  HD74LV574A   HD74LV574A







Octal D-type Flip-Flops

HD74LV574A Octal D-type Flip-Flops with 3-state Outputs Description REJ03D0520–0100 Rev.1.00 Feb. 01, 2005 The HD74LV574A has eight edge trigger D type flip flops with three state outputs in a 20 pin package. Data at the D inputs meeting set up requirements, are transferred to the Q outputs on positive going transitions of the clock input. When the clock input goes low, data at the D inputs will be retained at the outputs until clock input returns high again. When a high logic level is applied to the output control input, all outputs go to a high impedance state, regardless of what signals are present at the other inputs and the state of the storage elements. 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 • VCC = 2.0 V to 5.5 V operation • All inputs VIH (Max.) = 5.5 V (@VCC = 0 V to 5.5 V) • All outputs VO (Max.) = 5.5 V (@VCC = 0 V) • Typical.


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