SN74AUP2G126YFPR

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Mfr.Part #
SN74AUP2G126YFPR
Manufacturer
Texas Instruments
Package / Case
8-XFBGA, DSBGA
Datasheet
Download
Description
IC BUF NON-INVERT 3.6V 8DSBGA
Stock
32,142
In Stock :
32,142

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Manufacturer :
Texas Instruments
Product Category :
Buffers, Drivers, Receivers, Transceivers
Terminal Form :
Ball
Base Part Number :
74AUP2G126
Supply Voltage-Max (Vsup) :
3.6V
Count Direction :
Unidirectional
Number of Pins :
8
Terminal Pitch :
0.5mm
Quiescent Current :
500nA
Packing Method :
TR
Length :
0m
Peak Reflow Temperature (Cel) :
260
Number of Terminations :
8
Control Type :
ENABLE HIGH
RoHS Status :
ROHS3 Compliant
Thickness :
0m
Radiation Hardening :
No
Polarity :
Non-Inverting
Moisture Sensitivity Level (MSL) :
1 (Unlimited)
Packaging :
Tape and Reel (TR)
Lead Free :
Lead Free
JESD-609 Code :
e1
Number of Gates :
4
Factory Lead Time :
6 Weeks
Family :
AUP/ULP/V
Lifecycle Status :
ACTIVE (Last Updated: 3 days ago)
Mounting Type :
Surface Mount
Operating Temperature :
-40°C~85°C TA
Pbfree Code :
yes
Translation :
n/a
ECCN Code :
EAR99
Height :
500μm
Load Capacitance :
30pF
Current - Output High, Low :
4mA 4mA
Supply Voltage :
1.1V
Propagation Delay :
30.8 ns
Output Type :
3-STATE
Terminal Position :
BOTTOM
Package / Case :
8-XFBGA, DSBGA
Number of Functions :
1
Number of Bits per Element :
1
Mount :
Surface Mount
Terminal Finish :
Tin/Silver/Copper (Sn/Ag/Cu)
Power Supply Current-Max (ICC) :
0.0009mA
Number of Ports :
2
Series :
74AUP
Pin Count :
8
Voltage - Supply :
0.8V~3.6V
Logic Type :
Buffer, Non-Inverting
Number of Outputs :
2
Width :
0m
Logic Function :
Buffer, Inverting
Datasheets
SN74AUP2G126YFPR
Introducing Buffers, Drivers, Receivers, Transceivers Texas Instruments SN74AUP2G126YFPR from Chip IC,where excellence meets affordability. This product stands out with its Base Part Number:74AUP2G126, Number of Pins:8, Number of Terminations:8, Mounting Type:Surface Mount, Operating Temperature:-40°C~85°C TA, Package / Case:8-XFBGA, DSBGA, SN74AUP2G126YFPR pinout, SN74AUP2G126YFPR datasheet PDF, SN74AUP2G126YFPR amp .Beyond Buffers, Drivers, Receivers, Transceivers Texas Instruments SN74AUP2G126YFPR ,we also offer SN74LVC244APWR, SN74AUP1G07DCKR, SN74LVC2G125DCUR, Our vast inventory has you covered. Contact us now for immediate solutions.

Texas Instruments SN74AUP2G126YFPR


Buffers, Drivers, Receivers, Transceivers Texas Instruments SN74AUP2G126YFPR Overview

The SN74AUP2G126YFPR by Texas Instruments represents the pinnacle of modern buffering technologies, embodying a high-performance, dual non-inverting buffer designed to meet the stringent demands of power-sensitive and space-constrained applications. This component operates with a power supply range of 0.8V to 3.6V, which enables it to support the latest portable and low-voltage devices while maintaining signal integrity. The minuscule 8-DSBGA package is engineered to fit into the most compact PCB layouts, making it an invaluable tool for designers who require the efficiency and reliability synonymous with Texas Instruments' components. The [Buffers, Drivers, Receivers, Transceivers Texas Instruments SN74AUP2G126YFPR] is not merely a component; it's a robust solution to empower your next-generation electronic designs.

SN74AUP2G126YFPR Features

  • Operates from 0.8V to 3.6V
  • Low static-power consumption (ICC = 0.9 µA max)
  • ±8-mA output drive at 3.3 V
  • Low power-down leakage current of less than 1 µA
  • Schmitt-trigger action at all inputs makes the circuit tolerant to slower input rise and fall times
  • 8-DSBGA package for minimal footprint

SN74AUP2G126YFPR Applications

  • Smartphones and Tablets: As a power-conservative buffer that ensures clear signal transmission in compact and multi-function devices.
  • Portable Medical Devices: For its low power consumption and small form factor, ensuring reliable performance where space and power are limited.
  • Wearable Technology: The component's small size and low power requirements are ideal for the compact PCBs prevalent in wearable tech.
  • Energy-Efficient Logic Level Translation: Utilized for interfacing between different voltage domains within environmentally sensitive power budgets.
  • Industrial Control Systems: In industrial environments where space-saving without compromising signal integrity is crucial.
  • Embedded Systems: Critical for maintaining signal integrity in densely packed systems that demand low power consumption.
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