SN74LVC2G241YZPR

8.00

Characteristics of the SN74LVC2G241YZPR

  • Texas Instruments offers it. 
  • Packaged in NanoFreeTM 
  • Supports Operation at 5-V VCC 
  • Voltage Acceptance to 5.5 V for Inputs 
  • 4.1 ns maximum tpd at 3.3 V 
  • Low Power Consumption, ICC at most 10-A 
  • 3.3 V, 24-mA Output Drive 
  • At VCC = 3.3 V, TA = 25?C, the typical VOLP (Output Ground Bounce) is 0.8 V. Standard VOHV (Output VOH Undershoot) 
  • VCC = 3.3 V, TA = 25?C, >2 V 
  • Live Insertion, Partial-Power-Down Mode, and Back-Drive Protection are supported by Ioff. 
  • Can Translate Inputs From a Max of 5.5 V Down to the VCC Level When Used as a Down Translator 
  • Performance of the Latch-Up Exceeds 100 mA Per JESD 78, Class II 
  • JESD 22 Exceeds ESD Protection

 

Applications of SN74LVC2G241YZPR

  • A/V Receivers
  • Home theatre systems with Blu-ray players
  • DVD players and recorders
  • Desktop or laptop computers 
  • Internet or digital radio players
  • Digital cameras with video (DVC)
  • Integrated PCs
  • Personal Navigation Systems (GPS)
  • Devices for mobile internet
  • ?Front-ends for network projectors
  • Media Players Portables
  • Pro audio mixers

3000 in stock

SKU: CML-0008 Category:
Description

Description of SN74LVC2G241YZPR

The operating range of this dual buffer and line driver is 1.65-V to 5.5-V VCC.

Clock drivers, bus-oriented receivers and transmitters, 3-state memory-address drivers, and clock drivers are among the applications for which the SN74LVC2G241 chip is specifically intended to enhance performance and density.

A significant development in SN74LVC2G241YZPR packaging ideas is the NanoFree package technology, which uses the die as the package.

Two 1-bit line drivers with distinct output-enable (1OE, 2OE) inputs make up the SN74LVC2G241 device. The device transfers data from the A inputs to the Y outputs when 1OE and 2OE are both low. The outputs are in the high-impedance state when 1OE is high and 2OE is low.

Pullup and pulldown resistors should be used to connect OE to VCC and GND, respectively, to assure the high-impedance state during power-up and power-down. The minimum value of the resistor depends on the driver’s ability to source or sink current.

This device meets the requirements for Ioff applications involving partial power reduction. When a device is turned off, the Ioff circuitry turns off the outputs to stop potentially harmful current backflow through the device.

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