AR35-S12 Overview
The AR35-S12 is a high-performance semiconductor device designed to meet demanding industrial and electronic applications requiring precise control and efficient power management. With a focus on reliability and integration, this component offers robust functionality in a compact form factor, making it ideal for use in complex circuitry where space and power efficiency are critical. This device is engineered to deliver stable operation under varying environmental conditions, ensuring consistent performance. Available through IC Manufacturer, the AR35-S12 provides a dependable solution for engineers and sourcing specialists targeting advanced electronic designs.
AR35-S12 Technical Specifications
| Parameter | Specification |
|---|---|
| Operating Voltage | 3.0 V to 3.6 V |
| Switching Frequency | 12 MHz |
| Maximum Output Current | 1.2 A |
| Power Dissipation | 1.5 W |
| Package Type | Surface-Mount SMD |
| Operating Temperature Range | -40??C to +85??C |
| Input Logic Level | TTL Compatible |
| Rise Time | 15 ns |
AR35-S12 Key Features
- High-Frequency Operation: The 12 MHz switching capability enables efficient power conversion and fast response times, critical for high-speed electronics.
- Low Power Consumption: Operating within a 3.0 V to 3.6 V range ensures minimal energy usage, extending device life and reducing thermal stress.
- Robust Current Handling: With a maximum output current rating of 1.2 A, this device effectively supports demanding load requirements without compromising performance.
- Compact Surface-Mount Package: The SMD format facilitates seamless integration into densely packed circuit boards, saving valuable PCB real estate.
AR35-S12 Advantages vs Typical Alternatives
Compared to standard components in its class, this device offers enhanced switching frequency and superior current capacity, enabling more precise control and better power efficiency. Its TTL-compatible input logic simplifies integration with existing digital systems. The wide operating temperature range and low power dissipation provide greater reliability and durability in harsh industrial environments, making it a preferred choice over less robust alternatives.
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Typical Applications
- Power management modules in industrial control systems, where stable voltage regulation and efficient switching are essential to maintain operational integrity under variable loads.
- Embedded systems requiring compact and reliable semiconductor devices for signal processing and power control.
- Automotive electronics that demand resilient components capable of functioning across broad temperature ranges and fluctuating power conditions.
- Consumer electronics featuring compact layouts that benefit from the device??s small footprint and efficient power consumption.
AR35-S12 Brand Info
This product is part of the AR35 series offered by IC Manufacturer, a trusted name in semiconductor solutions. The AR35-S12 exemplifies the brand??s commitment to innovation, quality, and performance, serving engineers and sourcing specialists with reliable components tailored for industrial-grade applications. Designed to meet stringent quality standards, it supports a wide range of electronic designs requiring precision and durability.
FAQ
What is the maximum operating voltage for this device?
The device operates safely within a voltage range of 3.0 V to 3.6 V. Staying within this range ensures optimal performance and prevents damage due to overvoltage conditions.
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Can this component handle high current loads?
Yes, it supports a maximum output current of 1.2 A, allowing it to manage moderately high load demands without compromising stability or risking thermal overload.
Is the package suitable for automated PCB assembly?
The surface-mount device (SMD) package is specifically designed for automated pick-and-place assembly, facilitating efficient manufacturing processes and reliable soldering.
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What temperature range can this device reliably operate in?
It is rated for operation from -40??C to +85??C, making it suitable for a wide variety of industrial and environmental conditions where temperature extremes are common.
How does the TTL-compatible input logic benefit system integration?
TTL-compatible inputs allow the device to interface directly with standard digital logic circuits without additional level shifting, simplifying design and reducing component count.





