NL17SZ07DFT2G Overview
The NL17SZ07DFT2G is a high-speed, low-power buffer gate designed to drive and buffer signals in a variety of digital circuits. This component excels in providing reliable signal integrity, making it ideal for applications where performance is critical. Its compact design and efficiency make it suitable for integration into space-constrained environments, ensuring optimal functionality in various electronic systems. For more information, visit IC Manufacturer.
NL17SZ07DFT2G Key Features
- High-speed operation: This buffer gate achieves rapid signal transitions, enhancing overall system performance and reducing latency in digital applications.
- Low power consumption: The device operates efficiently, minimizing energy usage while maintaining high performance, which is crucial for battery-powered and energy-sensitive applications.
- Wide voltage range: The buffer supports a broad supply voltage range, making it versatile for various circuit designs and enhancing compatibility across different platforms.
- Compact package size: Its small footprint allows for easy integration into densely packed circuit boards, optimizing space without compromising functionality.
NL17SZ07DFT2G Technical Specifications
| Parameter | Value |
|---|---|
| Supply Voltage (Vcc) | 2.0V to 5.5V |
| Input Voltage Range | 0V to Vcc |
| Output Voltage Swing | 0V to Vcc |
| Propagation Delay (tpd) | 4.5 ns (typical) |
| Input Capacitance (Cin) | 3.5 pF (typical) |
| Output Drive Capability | ??24 mA |
| Operating Temperature Range | -40??C to +125??C |
| Package Type | DFN-8 |
NL17SZ07DFT2G Advantages vs Typical Alternatives
This device stands out against typical alternatives due to its superior signal integrity, low power consumption, and fast switching capabilities. Users can expect enhanced reliability in various applications, making it an ideal choice for modern electronic designs that demand efficiency and performance.
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Typical Applications
- High-speed digital circuits where signal buffering is essential for maintaining data integrity and reducing signal degradation over long distances.
- Consumer electronics, including smartphones and tablets, where space is limited and efficient power management is crucial.
- Automotive electronics, supporting various communication protocols that require reliable signal transmission under harsh conditions.
- Industrial automation systems that benefit from robust signal processing for control and monitoring functions.
NL17SZ07DFT2G Brand Info
The NL17SZ07DFT2G is part of a comprehensive line of advanced semiconductor products designed for high-performance applications. Known for its commitment to quality and innovation, the manufacturer ensures that each component meets stringent reliability standards and performance metrics, making this buffer gate a trusted choice among engineers and designers.
FAQ
What are the key benefits of using the NL17SZ07DFT2G in my design?
Using this buffer gate in your design provides high-speed operation with low power consumption, ensuring that your electronic devices perform efficiently while minimizing energy use. Its compact size also helps in space-constrained applications.
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Can the NL17SZ07DFT2G be used in automotive applications?
Yes, the NL17SZ07DFT2G is suitable for automotive applications due to its wide operating temperature range and robust performance, which meets the stringent requirements of automotive electronics.
What is the maximum output drive capability of this device?
The buffer gate can drive up to ??24 mA, providing sufficient current to ensure reliable signal transmission in various digital applications.
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How does this device compare to other buffer gates?
This device offers faster propagation delays and lower power consumption compared to many alternative buffer gates, making it an excellent option for high-speed digital applications.
Is the NL17SZ07DFT2G suitable for battery-powered devices?
Yes, its low power consumption makes it highly suitable for battery-powered devices, allowing for extended battery life while maintaining excellent performance.







