Product Description: SN7407N DIP Hex Buffer/Driver with 30V Open Collector Outputs
The SN7407N is a hex buffer/driver IC featuring six independent buffers with 30V open collector outputs. This DIP (Dual In-line Package) IC is designed to provide signal buffering and driving capabilities with the added advantage of open collector outputs. Each buffer in the SN7407N can drive outputs up to 30V, making it an ideal choice for high-voltage interfacing, signal conditioning, and digital control applications.
The open collector output configuration allows the buffer to pull the output low, but it requires an external pull-up resistor to generate a valid high-level signal. This enables the SN7407N to be used in wired-AND logic configurations, voltage level shifting, and digital signal driving, especially in systems requiring the ability to interface with both TTL and CMOS circuits. The 30V output voltage rating further enhances the versatility of this device, making it suitable for applications that need to interface with high-voltage logic circuits or drive higher power devices.
With its low power consumption, high-speed performance, and robust design, the SN7407N is a highly versatile and reliable component for use in signal buffering, driving, and level-shifting tasks across a variety of digital systems, including industrial control, communication systems, and digital logic applications.
Key Features:
- Hex Buffer/Driver: Contains six independent buffers, providing signal buffering and driving capabilities for a variety of digital systems.
- 30V Open Collector Outputs: Capable of driving output voltages up to 30V, making it suitable for high-voltage logic interfacing or driving power components.
- Wide Voltage Range: Operates with a supply voltage from 4.5V to 5.5V, ensuring compatibility with TTL logic levels and CMOS systems.
- High-Current Driving Capability: The open collector output allows the buffer to drive higher currents, making it suitable for high-power applications.
- Low Power Consumption: Designed for low-power operation, ideal for use in battery-powered systems or energy-efficient designs.
- High-Speed Performance: Features fast switching speeds, enabling efficient digital signal driving and reliable signal propagation in high-speed systems.
- Compact DIP Package: The DIP (Dual In-line Package) form factor makes it easy to integrate into breadboards, PCBs, and through-hole designs.
- TTL Compatibility: Fully compatible with TTL logic, ensuring reliable interfacing with other TTL-based components and systems.
Applications:
- High-Voltage Signal Driving: With its 30V open collector outputs, the SN7407N is ideal for driving high-voltage logic circuits, power devices, or controlling actuators in industrial applications.
- Voltage Level Shifting: Used for level shifting between different voltage logic families, such as TTL and CMOS, or between low-voltage and high-voltage systems.
- Signal Buffering: Acts as a buffer to provide isolation between low-power logic circuits and high-power outputs, ensuring reliable signal transmission and minimizing interference.
- Wired-AND Logic: The open collector outputs allow for creating wired-AND logic circuits, where multiple outputs can be connected to a single signal line without conflict.
- Control Systems: Commonly used in control circuits for signal isolation, power driving, and controlling higher-power devices or relay drivers.
- Digital Communication Systems: Used in digital communication systems for driving signals over long distances or at higher voltage levels, ensuring the integrity of transmitted signals.
- Signal Conditioning: Ideal for signal conditioning applications where inversion, buffering, or driving capabilities are needed in digital circuits.
- Microcontroller Interfacing: Can be used to interface a microcontroller with higher voltage systems or for driving outputs that require open collector logic.
Package Included:
1 x SN7407N DIP Hex Buffer/Driver with 30V Open Collector Outputs
Please note that the product image is for illustrative purposes only. The actual product may vary slightly in appearance.
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