AR25-AS1B-A18T Overview
The AR25-AS1B-A18T is a high-performance semiconductor device designed for demanding industrial applications requiring precise analog signal processing. Engineered with robust specifications, it offers reliable operation across a wide temperature range, ensuring stability in harsh environments. This product is optimized for integration into complex electronic systems where accuracy and durability are critical. Its compact form factor and efficient power management make it suitable for space-constrained designs without compromising performance. For sourcing and technical details, refer to IC Manufacturer.
AR25-AS1B-A18T Technical Specifications
| Parameter | Specification |
|---|---|
| Package Type | 18-pin SOIC |
| Operating Voltage | 3.3 V to 5 V |
| Operating Temperature Range | -40??C to +85??C |
| Input Signal Range | 0 to 3.0 V |
| Output Type | Single-ended analog output |
| Power Consumption | Max 10 mW |
| Response Time | 5 ??s typical |
| Dimensions | 10 mm ?? 7 mm ?? 2.5 mm |
AR25-AS1B-A18T Key Features
- Precision Analog Processing: Provides accurate signal conversion, reducing measurement errors in control systems.
- Wide Temperature Operation: Ensures consistent functionality in industrial environments from -40??C to +85??C, crucial for outdoor or automotive use.
- Low Power Consumption: Supports energy-efficient designs, extending device longevity and reducing thermal load.
- Compact SOIC Packaging: Simplifies PCB layout in space-constrained applications without sacrificing performance.
- Fast Response Time: Enables real-time data acquisition and control, enhancing system responsiveness.
- Robust Input Range: Accommodates a variety of analog signals, increasing versatility in diverse system architectures.
AR25-AS1B-A18T Advantages vs Typical Alternatives
This device offers superior integration of low power consumption and fast response time compared to typical analog processing ICs. Its broad operating temperature range enhances reliability in industrial settings, while the compact SOIC package allows easier incorporation into dense PCB designs. These factors collectively provide enhanced accuracy and stability, making it a preferred choice over alternatives lacking such balanced performance features.
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Typical Applications
- Industrial automation control systems requiring precise analog signal measurement and processing under varying environmental conditions.
- Automotive electronics where low power and temperature tolerance are essential for sensor signal conditioning.
- Environmental monitoring devices that demand reliable analog output over wide temperature ranges.
- Consumer electronics with space constraints that benefit from compact, low-power analog components.
AR25-AS1B-A18T Brand Info
The AR25-AS1B-A18T is produced by a leading manufacturer known for delivering high-quality, reliable semiconductor components tailored for industrial and automotive applications. Emphasizing precision engineering and durability, the product line supports advanced electronic system designs that demand consistent performance and integration flexibility. This device reflects the brand??s commitment to innovation and stringent quality standards in analog signal processing solutions.
FAQ
What is the maximum operating temperature range for this device?
The device operates reliably within a temperature range of -40??C to +85??C, making it suitable for harsh industrial and automotive environments where temperature extremes are common.
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Can this component handle low voltage power supplies?
Yes, it supports operating voltages as low as 3.3 V, enabling compatibility with modern low-voltage electronic systems while maintaining stable performance.
What package type does it use, and why is it beneficial?
It comes in an 18-pin SOIC package, which is compact and facilitates easy PCB layout in space-constrained applications. This package type also supports automated assembly processes common in high-volume manufacturing.
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How does the device??s power consumption affect system design?
With a maximum power consumption of approximately 10 mW, it allows designers to develop energy-efficient systems. This low power draw helps reduce thermal management requirements and extends battery life in portable applications.
Is the device suitable for fast-response applications?
Yes, it features a typical response time of 5 microseconds, which supports real-time signal processing and control in applications requiring rapid data acquisition and response.






