RT314F12 Overview
The RT314F12 is a high-performance integrated circuit designed for efficient power management and precise control in industrial electronics applications. This device features robust operational parameters, enabling reliable switching and voltage regulation under various load conditions. Its compact design and enhanced thermal characteristics make it suitable for space-constrained environments while maintaining optimal performance. Engineers and sourcing specialists will find the RT314F12 an ideal choice for applications requiring dependable power conversion and system stability. For further information, visit IC Manufacturer.
RT314F12 Technical Specifications
| Parameter | Specification | 
|---|---|
| Operating Voltage Range | 4.5 V to 13.2 V | 
| Maximum Output Current | 12 A | 
| Switching Frequency | 600 kHz | 
| Thermal Shutdown Temperature | 150 ??C | 
| Quiescent Current | 3.5 mA | 
| Package Type | Power SOP-8 | 
| Operating Temperature Range | -40 ??C to 85 ??C | 
| Efficiency | Up to 92% | 
RT314F12 Key Features
- High Current Capability: Supports up to 12 A output, enabling effective power delivery for demanding loads without overheating.
 - Fixed Switching Frequency: Operates at 600 kHz, providing consistent performance and minimizing electromagnetic interference in sensitive systems.
 - Thermal Protection: Built-in thermal shutdown prevents damage by disabling the device when junction temperature exceeds 150 ??C, ensuring system reliability.
 - Low Quiescent Current: Consumes only 3.5 mA in standby mode, contributing to energy efficiency in battery-powered or low-power designs.
 - Compact Package: The Power SOP-8 package reduces PCB footprint, facilitating integration into compact or space-constrained designs.
 
RT314F12 Advantages vs Typical Alternatives
Compared to typical power management ICs, this device delivers a higher current rating with excellent efficiency while maintaining low quiescent current, enhancing overall energy savings. Its integrated thermal protection and stable switching frequency improve reliability and reduce system noise, making it a superior choice for industrial-grade power conversion solutions.
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Typical Applications
- Industrial power supply modules, where stable voltage regulation and high current output are critical for equipment operation and longevity.
 - Embedded systems requiring efficient power conversion with minimal thermal footprint.
 - Communication devices that need reliable voltage control under varying load conditions.
 - Battery-powered instruments benefiting from low quiescent current to extend operational life.
 
RT314F12 Brand Info
This product is part of a line of power management ICs from a reputable semiconductor manufacturer focused on delivering high-quality, reliable integrated circuits for industrial applications. The RT314F12 exemplifies the brand??s commitment to efficiency, durability, and precision control, supporting advanced power electronics designs globally.
FAQ
What is the maximum output current supported by the RT314F12?
The device supports a maximum output current of 12 A, making it suitable for applications that require substantial power delivery without compromising thermal performance.
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What package type does this IC use, and how does it benefit design integration?
The RT314F12 comes in a Power SOP-8 package, which is compact and helps reduce PCB space requirements. This package type also aids in effective heat dissipation, beneficial for high-current applications.
How does the thermal shutdown feature enhance the device??s reliability?
Thermal shutdown automatically disables the device when the junction temperature reaches 150 ??C, preventing overheating damage and extending the lifespan of the circuit and connected components.
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What is the operating voltage range for this power management IC?
The device operates reliably within a voltage range of 4.5 V to 13.2 V, allowing it to be used in a variety of power supply scenarios and industrial environments.
How efficient is the RT314F12 in typical operating conditions?
It achieves efficiency levels up to 92%, which helps reduce power loss and heat generation, making it an energy-efficient solution for power conversion tasks.



