RTS3TF12 Overview
The RTS3TF12 is a highly integrated semiconductor device designed to deliver precise control and efficient performance in industrial electronic applications. It features robust electrical characteristics suitable for demanding environments, ensuring stable operation and long-term reliability. With a focus on compact design and ease of integration, this device addresses the needs of engineers seeking dependable components for power management and signal processing tasks. The RTS3TF12??s combination of performance and durability makes it a preferred choice for system designers optimizing both functionality and cost-effectiveness. For detailed technical support and procurement, visit Fabricant de circuits intégrés.
RTS3TF12 Technical Specifications
Paramètres | Spécifications |
---|---|
Plage de tension d'alimentation | 2,7 V à 5,5 V |
Plage de température de fonctionnement | De -40°C à +85°C |
Maximum Continuous Current | 12 A |
On-Resistance (RDS(on)) | Typically 3 m?? at VGS = 4.5 V |
Gate Threshold Voltage (VGS(th)) | 1.0 V to 2.5 V |
Charge totale de la porte (Qg) | 22 nC |
Input Capacitance (Ciss) | 1,100 pF |
Type d'emballage | Surface Mount, TO-263 |
RTS3TF12 Key Features
- Faible résistance à l'allumage : Provides minimal conduction losses, enhancing energy efficiency and reducing heat generation during high-current switching.
- Large gamme de tensions de fonctionnement : Supports flexible system design by accommodating voltages from 2.7 V up to 5.5 V, making it suitable for various power rails.
- High Current Handling Capability: Enables reliable operation under continuous loads up to 12 A, ensuring robustness in demanding power applications.
- Compact Surface Mount Package: Facilitates easy PCB layout and space-saving integration, critical for dense industrial designs.
RTS3TF12 Advantages vs Typical Alternatives
This device stands out with its low on-resistance and high current capacity, providing superior efficiency compared to typical MOSFETs with higher conduction losses. Its wide voltage range and thermal reliability improve system stability and reduce the need for additional cooling solutions. The compact package enhances integration flexibility, making it a practical and reliable choice over bulkier or less efficient equivalents.
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Applications typiques
- Power management in industrial control systems where efficient switching and thermal performance are critical for system reliability and energy savings.
- Battery-powered devices requiring low voltage operation combined with high current capability.
- Load switching in automotive electronics where robust operation under varying temperatures is essential.
- Motor driver circuits demanding high current handling and low power dissipation for optimized performance.
RTS3TF12 Brand Info
The RTS3TF12 is developed by a leading semiconductor manufacturer known for delivering high-quality power devices tailored for industrial applications. This product exemplifies the brand??s commitment to innovation, providing engineers with reliable components that meet stringent performance and durability standards. The brand supports its devices with comprehensive technical documentation and customer assistance to facilitate seamless integration and optimized system designs.
FAQ
What is the maximum current the RTS3TF12 can handle continuously?
The device supports a continuous current of up to 12 A, making it suitable for applications that require robust current handling without compromising device reliability or thermal stability.
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Can the RTS3TF12 operate in harsh temperature environments?
Yes, it is designed to operate reliably within a temperature range from -40??C to +85??C, ensuring stable performance in demanding industrial and automotive conditions.
What package type does this device use, and why is it beneficial?
The RTS3TF12 comes in a TO-263 surface mount package, which allows for efficient heat dissipation and easy PCB mounting, supporting compact and cost-effective assembly in high-density layouts.
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How does the low on-resistance of this device benefit system designers?
Low on-resistance reduces conduction losses