Product Overview: 74AUP2G00RA3-7 from Diodes Incorporated
The 74AUP2G00RA3-7 is a high-performance, dual-input NAND gate integrated circuit from Diodes Incorporated, designed to operate in the advanced ultra-low power (AUP) range. This component is part of the 74AUP family, which is renowned for its low-power consumption and high-speed operation, making it an ideal choice for battery-powered and energy-efficient applications.
With its ultra-low static and dynamic power consumption, the 74AUP2G00RA3-7 is optimized for use in mobile phones, PDAs, and other portable devices where power efficiency is critical. Its operation is guaranteed over a wide voltage range of 0.8V to 3.6V, allowing for flexible design options and compatibility with various logic levels.
The device is housed in a compact 8-pin XSON8 package, with dimensions of just 1.35mm x 1.45mm, making it suitable for space-constrained applications. Its small footprint does not compromise its performance, as the 74AUP2G00RA3-7 boasts Schmitt-trigger inputs that enhance noise immunity and allow for slow input transition. This feature is particularly useful in environments with a high degree of electrical noise or when using long wires that may introduce signal distortion.
Key features of the 74AUP2G00RA3-7 include:
- Low-power consumption: Ideal for battery-operated and power-sensitive designs.
- Wide operating voltage range: 0.8V to 3.6V, accommodating various logic level requirements.
- High-speed operation: Ensures quick response times even in low-voltage conditions.
- Schmitt-trigger inputs: Provides enhanced noise immunity and tolerance to input rise and fall times.
- Lead-free and RoHS compliant: Meets environmental standards, reducing hazardous substances in electronic devices.
Diodes Incorporated has designed the 74AUP2G00RA3-7 with reliability in mind, ensuring that it meets the stringent requirements for industrial and commercial applications. Whether you're designing a complex microprocessor system or a simple logic gate circuit, the 74AUP2G00RA3-7 offers a balance of power efficiency and performance that makes it a standout choice for your digital logic needs.