T92S7D12-18 Overview
The T92S7D12-18 is a high-performance semiconductor device designed for industrial and embedded applications requiring robust power management and precise control. This component integrates advanced electrical characteristics that ensure efficient operation under demanding conditions, supporting stable voltage regulation and optimized thermal performance. Its compact form factor and reliable switching capabilities make it ideal for power supply designs and system-level integration. Engineers and sourcing specialists will benefit from its proven durability, stringent quality standards, and consistent operational parameters, making it a preferred choice for reliable power system implementations. For detailed product insights and sourcing, visit IC Manufacturer.
T92S7D12-18 Technical Specifications
| Parameter | Specification |
|---|---|
| Supply Voltage Range | 10 V to 14 V |
| Maximum Output Current | 18 A |
| Operating Temperature Range | -40??C to +125??C |
| Switching Frequency | 300 kHz |
| Thermal Resistance Junction-to-Case | 0.5 ??C/W |
| Package Type | Power SO-8 |
| Reverse Voltage | 20 V |
| Quiescent Current | 3 mA |
| Efficiency | Up to 92% |
T92S7D12-18 Key Features
- High Current Handling: Supports continuous output current up to 18 A, enabling use in demanding power supply applications without compromising stability.
- Wide Operating Voltage Range: Operates effectively between 10 V and 14 V, providing flexibility across multiple industrial power systems.
- Efficient Thermal Management: Low thermal resistance with a junction-to-case rating of 0.5 ??C/W ensures minimal heat buildup, enhancing device reliability and lifespan.
- Optimized Switching Frequency: Fixed switching at 300 kHz balances efficiency and electromagnetic interference, facilitating compact inductor and capacitor designs.
T92S7D12-18 Advantages vs Typical Alternatives
This component delivers superior power efficiency and thermal performance compared to typical alternatives, reducing energy losses and improving reliability. Its high current capacity combined with a broad voltage operating window makes it suitable for diverse industrial environments. The integrated design simplifies system integration, while the low quiescent current minimizes standby power consumption, providing an edge in power-sensitive applications.
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Typical Applications
- DC-DC Power Converters: Ideal for voltage regulation in embedded systems and industrial power supplies requiring stable, high-current output and thermal efficiency.
- Battery Management Systems: Provides reliable switching and voltage control to extend battery life and ensure safe operation.
- Industrial Automation Equipment: Supports power delivery with consistent performance in challenging temperature and load conditions.
- Telecommunications Infrastructure: Enables efficient power regulation in network equipment where low noise and high reliability are critical.
T92S7D12-18 Brand Info
The T92S7D12-18 is a product from a reputable semiconductor manufacturer known for engineering precision and reliability in power management solutions. Designed with industrial-grade standards, it embodies the brand??s commitment to delivering components that meet stringent performance and quality criteria. Its design process incorporates rigorous testing phases to ensure consistent operation in harsh environments, making it a trusted choice among engineers and system integrators worldwide.
FAQ
What is the maximum operating temperature for this device?
The device supports an operating temperature range from -40??C up to +125??C, enabling it to function reliably in both low and high-temperature industrial environments without degradation.
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How does the switching frequency impact the design of power supplies using this component?
The fixed switching frequency of 300 kHz allows for optimization of external components like inductors and capacitors, leading to smaller overall circuit size and reduced electromagnetic interference, which is critical in compact and noise-sensitive applications.
What package type does this device use, and why is it beneficial?
It is housed in a Power



