

Torex Semiconductor Ltd.
XC74UL08AAMR
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XC74UL08AAMR Description
XC74UL08AAMR Description
The XC74UL08AAMR is a single-channel, dual-input AND gate logic IC from Torex Semiconductor Ltd., designed for a wide range of digital applications. This IC is part of the 74UL series and is housed in a Surface Mount package, specifically in a Tape & Reel (TR) format. The device operates within a supply voltage range of 2V to 5.5V, making it suitable for various power supply configurations. It features a maximum propagation delay of 7.9ns at 5V with a load capacitance of 50pF, ensuring high-speed performance.
The XC74UL08AAMR has two input channels, each with defined logic levels: low input logic level ranges from 0.5V to 1.65V, and high input logic level ranges from 1.5V to 3.85V. This precise input logic level specification ensures reliable operation in digital circuits. The IC also boasts a low quiescent current of 1µA, making it energy-efficient and suitable for low-power applications. Additionally, it can source and sink up to 8mA of current at both high and low output states.
The XC74UL08AAMR is RoHS3 compliant and REACH unaffected, adhering to stringent environmental and safety standards. It is also classified under ECCN EAR99 and HTSUS 8542.39.0001. Despite its obsolete status, the XC74UL08AAMR remains a reliable choice for applications requiring a single AND gate with high performance and low power consumption.
XC74UL08AAMR Features
- High-Speed Performance: With a maximum propagation delay of 7.9ns at 5V and 50pF, the XC74UL08AAMR ensures rapid signal processing, making it ideal for high-frequency digital circuits.
- Wide Operating Voltage Range: The IC operates within a supply voltage range of 2V to 5.5V, providing flexibility in power supply requirements.
- Low Power Consumption: The device features a maximum quiescent current of 1µA, making it suitable for low-power applications and battery-operated devices.
- Robust Input Logic Levels: The input logic levels are well-defined, with low input levels ranging from 0.5V to 1.65V and high input levels from 1.5V to 3.85V, ensuring reliable operation in digital circuits.
- High Output Current Capability: The XC74UL08AAMR can source and sink up to 8mA of current, making it capable of driving various loads.
- Environmental Compliance: The IC is RoHS3 compliant and REACH unaffected, adhering to environmental and safety standards.
- Surface Mount Packaging: The Tape & Reel (TR) package format is suitable for automated assembly processes, enhancing manufacturing efficiency.
XC74UL08AAMR Applications
The XC74UL08AAMR is ideal for a variety of digital applications that require a single AND gate with high performance and low power consumption. Some specific use cases include:
- Digital Signal Processing: The high-speed performance of the XC74UL08AAMR makes it suitable for processing digital signals in applications such as data acquisition systems and digital communication circuits.
- Control Systems: The low power consumption and robust input logic levels make it ideal for use in control systems, where reliability and energy efficiency are critical.
- Consumer Electronics: The wide operating voltage range and surface mount packaging make the XC74UL08AAMR suitable for consumer electronics, where compact design and low power usage are essential.
- Industrial Automation: The device's ability to source and sink significant current makes it suitable for driving actuators and sensors in industrial automation applications.
Conclusion of XC74UL08AAMR
The XC74UL08AAMR from Torex Semiconductor Ltd. is a high-performance, low-power AND gate logic IC that offers significant advantages over similar models. Its high-speed performance, wide operating voltage range, and low power consumption make it suitable for a variety of digital applications. The robust input logic levels and high output current capability further enhance its reliability and versatility. Despite its obsolete status, the XC74UL08AAMR remains a reliable choice for applications requiring a single AND gate with high performance and low power consumption.



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