Automotive Quad 2-Input OR Gate
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ROHM Semiconductor BD74C32FV-C SemiconductorsDescription
The ROHM Semiconductor BD74C32FV-C is designed for 1.65V to 5.5V power supply voltage operation and features a low current consumption of 10µA. It includes an output tolerant circuit that protects against backflow current during power down. This OR gate is ideal for automotive applications with a maximum propagation delay of 12ns at 3V.
ROHM Semiconductor BD74C32FV-C Automotive Quad 2-Input OR Gate
Introduction
The ROHM Semiconductor BD74C32FV-C is a high-performance automotive quad 2-input OR gate designed to operate efficiently within a power supply voltage range of 1.65V to 5.5V. With its low current consumption and robust features, this component is ideal for various automotive applications.
Part Description
The BD74C32FV-C OR gate boasts a maximum propagation delay of just 12ns at 3V, making it a fast and reliable choice for digital logic applications. It features an output tolerant circuit that protects against backflow current during power down, ensuring the safety and integrity of connected systems. With a low current consumption of only 10µA, this OR gate is designed to minimize power usage while maintaining high performance. The component is packaged in a compact SSOP-B14 format, measuring 5mm x 6.4mm x 1.35mm, making it suitable for space-constrained applications.
Applications
- Automotive control systems
- Sensor signal processing
- Logic level shifting
- Power management circuits
- Signal routing in automotive electronics
Industries
- Automotive
- Electronics
- Telecommunications
- Industrial automation
- Consumer electronics
Usage Ideas
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Automotive Lighting Control: Use the BD74C32FV-C to create a logic circuit that controls the activation of headlights based on various sensor inputs, ensuring optimal visibility and safety.
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Battery Management System: Implement the OR gate in a battery management system to manage power distribution and monitor battery status, enhancing the efficiency of electric vehicles.
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Signal Conditioning: Design a signal conditioning circuit that utilizes the OR gate to combine multiple sensor outputs, allowing for more accurate data interpretation in automotive applications.
Conclusion
The ROHM Semiconductor BD74C32FV-C Automotive Quad 2-Input OR Gate is a versatile and efficient component that meets the demanding requirements of automotive applications. With its low power consumption, fast propagation delay, and protective features, it is an excellent choice for engineers looking to enhance the performance and reliability of their automotive electronic systems.