HRPG-AS16#17F Overview
The HRPG-AS16#17F is a high-performance component designed for precision and reliability in industrial and electronic applications. Engineered with robust specifications, it offers stable operation under a wide range of environmental conditions. This device is optimized for integration into complex systems requiring consistent performance, making it ideal for engineers and sourcing specialists seeking dependable semiconductor solutions. Backed by Produttore di circuiti integrati, the product ensures quality manufacturing standards and compatibility with industry benchmarks.
HRPG-AS16#17F Technical Specifications
Parametro | Specifiche |
---|---|
Tensione di esercizio | 3.3 V ?? 5% |
Intervallo di temperatura operativa | Da -40 a +85 °C |
Corrente di uscita | Maximum 20 mA |
Tipo di confezione | 16-pin SOIC |
Consumo di energia | Typical 150 mW |
Tempo di risposta | ?? 10 ns |
Input Threshold Voltage | 1.5 V (typical) |
Storage Temperature | Da -55°C a +125°C |
HRPG-AS16#17F Key Features
- Tempi di risposta rapidi: With a response time of less than or equal to 10 nanoseconds, it enables real-time processing in high-speed applications, ensuring minimal latency.
- Ampio intervallo di temperatura operativa: Supports reliable operation from -40??C up to +85??C, making it suitable for harsh industrial environments and outdoor electronics.
- Basso consumo energetico: Consumes only about 150 milliwatts typically, enhancing energy efficiency and extending system battery life in portable and embedded devices.
- Compact SOIC package: The 16-pin small-outline integrated circuit package facilitates easy PCB layout and integration into dense circuit boards without compromising performance.
HRPG-AS16#17F Advantages vs Typical Alternatives
This semiconductor component offers superior sensitivity and rapid response compared to standard alternatives, supporting efficient signal processing with reduced power consumption. Its broad temperature tolerance and compact packaging provide enhanced reliability and ease of integration. These advantages make it a preferred choice for engineers requiring consistent, high-accuracy performance in demanding industrial settings.
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Applicazioni tipiche
- Industrial automation control systems where precise timing and low latency are critical for machine operation and safety monitoring.
- Embedded electronics requiring compact and power-efficient components to optimize device size and battery life.
- Communication equipment where fast signal processing and reliable operation over temperature variations are essential.
- Test and measurement instruments that demand consistent performance and quick response to input signals for accurate data acquisition.
HRPG-AS16#17F Brand Info
This product is part of the HRPG series from a well-established semiconductor manufacturer known for delivering reliable and high-quality integrated circuits. The HRPG-AS16#17F combines advanced manufacturing processes with rigorous quality control to meet industrial standards. It reflects the brand??s commitment to innovation, durability, and performance in semiconductor solutions tailored for engineering professionals and sourcing specialists.
FAQ
What is the typical operating voltage range for this component?
The device operates typically at 3.3 volts with a tolerance of ??5%, ensuring compatibility with standard low-voltage electronic systems commonly used in industrial and embedded applications.
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Can this product function reliably in extreme temperature conditions?
Yes, it supports an operating temperature range from -40??C to +85??C, guaranteeing stable performance in both cold and hot environments typical of industrial and outdoor applications.
What packaging type does this device use, and how does it affect integration?
This component uses a 16-pin SOIC package, which is compact and facilitates straightforward mounting on printed circuit boards. This packaging supports efficient PCB design and minimizes space requirements without sacrificing electrical performance.
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How does the response time benefit system performance?
With a response time of 10 nanoseconds or less, the device enables rapid signal processing, reducing latency in time-critical systems such as automation controls and communication devices, thereby improving overall system responsiveness.
Is this semiconductor suitable for low-power applications?
Yes, it typically consumes about 150 milliwatts, making it an energy-efficient choice ideal for battery-operated or power-sensitive electronics where minimizing power usage is essential.