Product Overview - 74AHCT1G126SE-7 from Diodes Incorporated
The 74AHCT1G126SE-7 is a high-performance, single buffer gate with 3-state output from Diodes Incorporated, designed to operate in a wide range of applications where buffer gate logic is required. This integrated circuit is part of the 74AHCT family, known for its high-speed CMOS technology and compatibility with TTL (Transistor-Transistor Logic) levels.
This particular model is housed in a space-saving SOT-353 package, making it an excellent choice for applications where board space is at a premium. The compact design does not compromise on performance, with the device offering a robust feature set that includes a wide operating voltage range of 4.5V to 5.5V, which makes it suitable for interfacing with 5V logic systems.
Key Features
- Logic Type: Single non-inverting buffer with 3-state output, ensuring versatility in its application.
- Operating Voltage: 4.5V to 5.5V, which allows for seamless integration into 5V logic systems.
- Output Capability: Capable of driving up to 8mA at 5V, providing sufficient current for a variety of loads.
- High Noise Immunity: Enhanced noise immunity characteristics inherent to CMOS technology.
- Power-Off Disable: Outputs in high-impedance state during power-off, which helps prevent erroneous signals.
- Temperature Range: Operates within the -40°C to +85°C temperature range, ensuring reliability in diverse operating environments.
- Package: Supplied in a SOT-353 package for space-saving advantages.
Applications
The 74AHCT1G126SE-7 is ideal for use in a variety of electronic systems, including:
- Logic level translation
- Bus line driving
- Memory address driving
- Switching circuits
- Line termination with temporary power-down
With its robust design and high-level performance, the 74AHCT1G126SE-7 from Diodes Incorporated is a reliable choice for designers looking to incorporate a single buffer gate with 3-state output into their digital logic applications. Its compatibility with TTL levels, along with its CMOS technology, ensures that it can be used in a wide range of systems while maintaining signal integrity and reducing power consumption.