CD74HC7266M96G4 Description
The CD74HC7266M96G4 is a 4-channel XNOR (Exclusive NOR) logic gate IC, designed for high-speed, low-power applications. Manufactured by Texas Instruments, this device features a robust 74HC series architecture, ensuring reliable performance across a wide range of operating conditions. The CD74HC7266M96G4 is housed in a surface-mount package, specifically in a Tape & Reel (TR) format, making it suitable for automated assembly processes. With a maximum propagation delay of 30ns at 6V and a maximum load capacitance of 50pF, this IC delivers exceptional speed and efficiency. The device operates within a supply voltage range of 2V to 6V, and it maintains low quiescent current, maxing out at 2 µA. Each of the four circuits includes two inputs, with input logic levels ranging from 0.5V to 1.8V for low and 1.5V to 4.2V for high. The output current capability is balanced at 5.2mA for both high and low states. The CD74HC7266M96G4 is RoHS3 compliant and REACH unaffected, ensuring environmental and regulatory compliance. It also has a moisture sensitivity level (MSL) of 1, indicating unlimited storage conditions without degradation.
CD74HC7266M96G4 Features
- High-Speed Performance: With a maximum propagation delay of 30ns at 6V and 50pF, the CD74HC7266M96G4 is optimized for high-speed digital applications, ensuring minimal latency and rapid signal processing.
- Wide Operating Voltage Range: The device operates reliably within a 2V to 6V supply voltage range, making it versatile for various power supply configurations.
- Low Power Consumption: The IC maintains a maximum quiescent current of 2 µA, contributing to energy efficiency and extended battery life in portable and low-power applications.
- Balanced Output Current: The CD74HC7266M96G4 provides balanced output current capabilities of 5.2mA for both high and low states, ensuring consistent performance across different load conditions.
- Robust Input Logic Levels: The input logic levels are well-defined, with low levels ranging from 0.5V to 1.8V and high levels from 1.5V to 4.2V, ensuring compatibility with a variety of digital systems.
- Environmental Compliance: The device is RoHS3 compliant and REACH unaffected, adhering to stringent environmental regulations and ensuring safe usage in various industries.
- Moisture Sensitivity Level 1: The CD74HC7266M96G4 has an MSL of 1, indicating unlimited storage conditions without the risk of moisture-related degradation, enhancing its reliability and longevity.
CD74HC7266M96G4 Applications
The CD74HC7266M96G4 is ideal for a range of applications where high-speed, low-power XNOR logic functionality is required. Some specific use cases include:
- Digital Signal Processing: The high-speed performance and low power consumption make it suitable for processing digital signals in real-time applications, such as in communication systems and data transmission.
- ** SystemsControl**: The device can be used in control systems where precise and rapid decision-making is necessary, such as in industrial automation and robotics.
- Consumer Electronics: The CD74HC7266M96G4 can be integrated into consumer electronics for tasks like signal conditioning and logic operations, enhancing the functionality and performance of devices.
- Automotive Electronics: The robustness and reliability of the device make it suitable for automotive applications, where it can be used for signal processing and control in various electronic systems.
- Medical Devices: The environmental compliance and low power consumption make it a good fit for medical devices, where reliability and safety are paramount.
Conclusion of CD74HC7266M96G4
The CD74HC7266M96G4 is a high-performance, low-power XNOR logic gate IC that offers a range of benefits for digital applications. Its high-speed operation, wide voltage range, and low power consumption make it a versatile choice for various industries. The device's robust design, environmental compliance, and balanced output current capabilities further enhance its reliability and performance. While the product is marked as obsolete, its unique features and advantages make it a valuable component for specific applications where its characteristics are well-suited.