AR25-AB1B-A12T Overview
The AR25-AB1B-A12T is a high-performance industrial semiconductor device designed for precision and reliability in demanding electronic applications. Engineered to support robust operation under varying environmental conditions, this component offers exceptional stability and integration capabilities. With its optimized electrical characteristics and compact form factor, it delivers efficient performance for system designers aiming to enhance power management and signal integrity. Trustworthy and versatile, it is an ideal solution for engineers and sourcing specialists seeking a dependable device from a reputable source like IC Manufacturer.
AR25-AB1B-A12T Technical Specifications
| Parameter | Specification |
|---|---|
| Operating Voltage | 12 V DC |
| Maximum Current | 1.5 A |
| Power Dissipation | 3 W |
| Operating Temperature Range | -40??C to +85??C |
| Package Type | Surface Mount (SMD) |
| Switching Frequency | Up to 1 MHz |
| Input Impedance | 10 k?? |
| Output Voltage Accuracy | ??2% |
AR25-AB1B-A12T Key Features
- High Switching Frequency: Supports up to 1 MHz operation allowing for compact circuit designs and improved power efficiency.
- Wide Operating Temperature Range: Ensures reliable performance in harsh industrial environments from -40??C to +85??C.
- Low Power Dissipation: Enhances energy efficiency and thermal management in constrained system layouts.
- Precision Output Voltage Regulation: Maintains ??2% accuracy for consistent device performance under varying load conditions.
AR25-AB1B-A12T Advantages vs Typical Alternatives
This device offers superior voltage accuracy and switching capabilities compared to standard counterparts, delivering enhanced system stability and efficiency. Its broad temperature tolerance and low power dissipation ensure robust operation in industrial settings where reliability and integration flexibility are critical. These advantages make it a preferred choice over alternatives with narrower operating ranges or higher thermal losses.
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Typical Applications
- Industrial automation control systems requiring precise voltage regulation and stable operation across wide temperature ranges, ensuring process reliability and reduced downtime.
- Power management modules in embedded electronics where efficient switching and thermal performance are essential.
- Signal conditioning circuits in measurement and instrumentation devices demanding stable output characteristics.
- Communication equipment that benefits from compact form factor and high-frequency switching capabilities for improved data integrity.
AR25-AB1B-A12T Brand Info
This product is part of the IC Manufacturer??s portfolio of industrial-grade semiconductor components, specifically engineered to meet rigorous quality and performance standards. The AR25-AB1B-A12T exemplifies the brand??s commitment to innovation, durability, and precision, supporting engineers with reliable building blocks for advanced electronic designs. Backed by extensive testing and quality assurance, it reflects the brand??s leadership in semiconductor technology for industrial applications.
FAQ
What is the maximum operating temperature for this device?
The maximum operating temperature is +85??C, allowing the device to function reliably in environments with elevated temperatures common in industrial settings.
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Can this device handle continuous current loads above 1 A?
The device supports a maximum continuous current of 1.5 A, making it suitable for moderate current applications while maintaining thermal and electrical stability.
What package type does this component use?
It is supplied in a surface mount device (SMD) package, facilitating automated assembly and compatibility with modern PCB manufacturing processes.
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How accurate is the output voltage regulation?
The output voltage accuracy is maintained within ??2%, ensuring consistent performance and minimizing deviations under typical operating conditions.
Is this device suitable for high-frequency switching applications?
Yes, it supports switching frequencies up to 1 MHz, enabling efficient power conversion and compact circuit design in high-speed electronic systems.





