AR49-M25S-P12H Overview
The AR49-M25S-P12H is a high-performance semiconductor device designed for industrial applications requiring robust operation and precise control. Engineered with advanced technology, it delivers reliable performance in demanding environments while maintaining energy efficiency. This device integrates seamlessly into complex systems, offering stable electrical characteristics and long-term durability. Ideal for engineers and sourcing specialists focusing on power management and signal integrity, the AR49-M25S-P12H supports optimized system designs with its compact footprint and consistent quality. For detailed technical data and procurement options, visit IC Manufacturer.
AR49-M25S-P12H Technical Specifications
| Parameter | Specification |
|---|---|
| Operating Voltage | 12 V |
| Package Type | Surface-Mount (SMD) |
| Core Configuration | Single-Core |
| Max Power Dissipation | 25 W |
| Operating Temperature Range | -40??C to +125??C |
| Typical Switching Frequency | Up to 1 MHz |
| Input Control Type | Pulse Width Modulation (PWM) |
| Thermal Resistance | 0.8 ??C/W |
AR49-M25S-P12H Key Features
- Single-Core Design: Enables precise control and efficient power handling, enhancing overall system stability.
- Wide Operating Temperature Range: Ensures reliable performance in harsh industrial environments, reducing failure rates.
- Compact Surface-Mount Package: Facilitates easy PCB integration and supports high-density circuit layouts.
- High Power Dissipation Capacity: Allows operation under demanding loads without thermal overload, improving reliability.
- Thermal Efficiency: Low thermal resistance supports effective heat dissipation, protecting the device against overheating.
AR49-M25S-P12H Advantages vs Typical Alternatives
This device offers superior thermal management and stable switching performance compared to typical alternatives. Its compact surface-mount design allows for better PCB integration, saving valuable board space. The robust operating voltage and temperature range improve system reliability, making it a preferred choice for industrial power management applications where durability and efficiency are critical.
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Typical Applications
- Industrial power conversion systems requiring efficient voltage regulation and thermal stability in harsh environments.
- Signal processing circuits demanding precise PWM control for optimized performance.
- Embedded systems that benefit from compact component footprints and high reliability.
- Automated machinery controllers needing robust semiconductor devices to withstand temperature fluctuations.
AR49-M25S-P12H Brand Info
The AR49-M25S-P12H is developed by a leading semiconductor manufacturer specializing in high-quality industrial components. This product line is recognized for innovative design, rigorous quality control, and consistent performance under challenging conditions. The manufacturer supports this device with comprehensive documentation and technical assistance, ensuring seamless integration into engineering projects and supply chains.
FAQ
What is the maximum operating voltage of the AR49-M25S-P12H?
The device operates at a maximum voltage of 12 volts, making it suitable for a wide range of industrial power management applications that require stable voltage handling.
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Can this device operate in extreme temperature conditions?
Yes, it supports an operating temperature range from -40??C to +125??C, ensuring reliable performance in harsh or fluctuating environmental conditions common in industrial settings.
What package type does the AR49-M25S-P12H use?
It uses a surface-mount device (SMD) package, which is ideal for automated PCB assembly and supports compact, high-density circuit designs.
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How does the AR49-M25S-P12H manage heat dissipation?
The device has a thermal resistance of 0.8 ??C/W, allowing efficient heat transfer and preventing thermal overload during high power dissipation, which enhances reliability and longevity.
Is the AR49-M25S-P12H suitable for PWM control applications?
Yes, it is designed with input control optimized for Pulse Width Modulation (PWM), enabling precise switching and control in power electronics and signal processing systems.













