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MC14081BDTR2
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MC14081BDTR2 Description
MC14081BDTR2 Description
The MC14081BDTR2 is a 4-channel AND gate logic IC chip manufactured by onsemi. It is part of the 4000B series and is designed for surface mount applications. This IC features a maximum propagation delay of 100ns at 15V with a capacitive load of 50pF. It operates within a supply voltage range of 3V to 18V and has a quiescent current of only 1 µA. The input logic levels are specified as 1.5V to 4V for low and 3.5V to 11V for high, ensuring compatibility with a wide range of digital systems. Each AND gate has two inputs, and the IC contains four circuits in total. The output current capability is 8.8mA for both high and low states. The MC14081BDTR2 is packaged in a 14TSSOP format on tape and reel (TR), making it suitable for automated assembly processes. It is classified under ECCN EAR99 and HTSUS 8542.39.0001. The product is REACH unaffected and has a moisture sensitivity level (MSL) of 1, indicating unlimited storage conditions.
MC14081BDTR2 Features
- Low Propagation Delay: With a maximum propagation delay of 100ns at 15V and 50pF, the MC14081BDTR2 ensures fast signal processing, making it ideal for high-speed digital circuits.
- Wide Operating Voltage Range: The IC operates reliably within a supply voltage range of 3V to 18V, providing flexibility in power supply requirements.
- Low Quiescent Current: A maximum quiescent current of 1 µA minimizes power consumption, making it suitable for battery-powered and low-power applications.
- Robust Input Logic Levels: The input logic levels of 1.5V to 4V for low and 3.5V to 11V for high ensure compatibility with various digital systems, enhancing its versatility.
- High Output Current Capability: The ability to source and sink 8.8mA per output allows the MC14081BDTR2 to drive multiple loads or interface with other digital circuits without additional buffering.
- Surface Mount Packaging: The 14TSSOP package format on tape and reel (TR) is ideal for automated assembly processes, ensuring efficient manufacturing and high reliability.
- REACH Compliance: The REACH unaffected status ensures that the MC14081BDTR2 meets environmental and safety regulations, making it suitable for a wide range of applications.
- Unlimited Moisture Sensitivity Level: An MSL of 1 allows for unlimited storage conditions, reducing the risk of moisture-related damage during handling and storage.
MC14081BDTR2 Applications
The MC14081BDTR2 is well-suited for a variety of applications due to its robust performance and versatile features. Some specific use cases include:
- Digital Signal Processing: The low propagation delay and high-speed operation make it ideal for processing digital signals in real-time applications.
- Control Logic Circuits: The AND gate functionality and high output current capability allow it to be used in control logic circuits for industrial automation and robotics.
- Consumer Electronics: The wide operating voltage range and low quiescent current make it suitable for consumer electronics, such as portable devices and home appliances.
- Automotive Systems: The robustness and reliability of the MC14081BDTR2 make it a good fit for automotive applications, where high performance and low power consumption are critical.
- Telecommunications: The ability to interface with various digital systems and drive multiple loads makes it useful in telecommunications infrastructure for signal routing and control.
Conclusion of MC14081BDTR2
The MC14081BDTR2 is a versatile AND gate logic IC chip that offers a combination of high performance, low power consumption, and robust features. Its low propagation delay, wide operating voltage range, and high output current capability make it suitable for a wide range of applications, from digital signal processing to automotive systems. The surface mount packaging and REACH compliance further enhance its suitability for modern manufacturing processes and regulatory requirements. Despite being marked as obsolete, the MC14081BDTR2 remains a reliable choice for engineers and designers looking for a high-quality AND gate solution.



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