RT134012F Overview
The RT134012F is a highly integrated semiconductor device designed for efficient power management and precise control in industrial applications. Offering robust performance with low power consumption, it is engineered to optimize system reliability and enhance operational efficiency. This component is suitable for engineers and sourcing specialists seeking a reliable solution for complex power conversion tasks. Available through IC Manufacturer, it supports various industrial implementations with a focus on stability and integration.
RT134012F Technical Specifications
| Parameter | Specification |
|---|---|
| Input Voltage Range | 4.5 V to 18 V |
| Output Voltage | Adjustable from 0.8 V to 5 V |
| Switching Frequency | 500 kHz typical |
| Maximum Output Current | 2 A |
| Operating Temperature Range | -40 ??C to +85 ??C |
| Quiescent Current | 45 ??A typical |
| Package Type | SOP-8 |
| Protection Features | Overcurrent, Thermal Shutdown |
RT134012F Key Features
- Adjustable output voltage: Enables precise voltage regulation from 0.8 V to 5 V, allowing tailored power supply for diverse circuit requirements.
- High switching frequency: Operating at around 500 kHz, it supports compact external components, reducing board space and improving efficiency.
- Low quiescent current: Minimizes power loss during standby, which enhances overall system power efficiency and extends battery life in portable applications.
- Built-in protection mechanisms: Overcurrent and thermal shutdown safeguard the device and the system, increasing reliability under abnormal conditions.
RT134012F Advantages vs Typical Alternatives
This device offers superior integration with built-in protection and a wide input voltage range, making it more adaptable than typical alternatives. Its low quiescent current reduces standby power consumption, while the high switching frequency enables smaller, cost-effective external components. Together, these features provide enhanced reliability, efficiency, and design flexibility for demanding industrial power management applications.
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Typical Applications
- Power supply modules in industrial automation equipment, requiring stable voltage regulation and robust protection under varying load conditions.
- Battery-powered instruments where low quiescent current extends operational life and reduces energy waste.
- Embedded controllers in automotive electronics that benefit from compact design and reliable thermal management.
- Communication devices that demand efficient power conversion and minimal electromagnetic interference due to high-frequency operation.
RT134012F Brand Info
This product is part of a trusted semiconductor line known for quality and precision in industrial power management. Designed with stringent manufacturing standards, it reflects a commitment to durability and performance. The brand behind this device specializes in delivering integrated power solutions that meet the rigorous demands of modern electronic systems, supporting engineers and sourcing specialists with reliable, high-performance components.
FAQ
What is the typical input voltage range supported by this device?
The device supports an input voltage range from 4.5 V up to 18 V, making it suitable for a wide variety of power sources commonly found in industrial and embedded applications.
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How does the adjustable output voltage benefit system design?
Adjustable output voltage allows engineers to precisely set the power supply level required by specific components or subsystems, improving flexibility and enabling optimized performance across different applications.
What protection features are integrated into this device?
Built-in overcurrent protection prevents damage caused by excessive load, while thermal shutdown safeguards the device against overheating, ensuring system safety and enhancing overall reliability.
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Why is the switching frequency important in this product?
The switching frequency, typically 500 kHz, determines the size of external components such as inductors and capacitors. Higher frequency operation allows the use of smaller components, reducing board space and overall system cost.
Can this device be used in battery-powered applications?
Yes, with a low quiescent current of around 45 ??A, it minimizes power



