PS-D4C10 Overview
The PS-D4C10 is a high-performance semiconductor device designed for precision industrial applications requiring robust power management and control. Featuring advanced integration and stable operating characteristics, it delivers reliable performance under varying environmental conditions. Its compact footprint and efficient power conversion capabilities make it an ideal choice for engineers and sourcing specialists seeking dependable, long-lasting components. With optimized electrical parameters, the PS-D4C10 supports enhanced system efficiency and streamlined integration into complex electronic assemblies. For more detailed product insights, visit IC Manufacturer.
PS-D4C10 Technical Specifications
| Parameter | Specification |
|---|---|
| Input Voltage Range | 4.5 V to 5.5 V |
| Output Current | Up to 10 A |
| Switching Frequency | 600 kHz |
| Operating Temperature Range | -40??C to +85??C |
| Efficiency | Up to 92% |
| Package Type | QFN-32 |
| Control Interface | Digital PWM |
| Protection Features | Overcurrent, Thermal Shutdown |
PS-D4C10 Key Features
- High Current Handling: Supports up to 10 A output current, enabling efficient power delivery for demanding industrial loads.
- Optimized Switching Frequency: Operates at 600 kHz, balancing switching losses and component size for improved system efficiency.
- Robust Thermal Management: Integrated thermal shutdown enhances device reliability by preventing overheating during extended operation.
- Compact QFN Package: Enables easy integration into space-constrained PCB layouts while maintaining excellent thermal dissipation.
PS-D4C10 Advantages vs Typical Alternatives
This product offers superior efficiency of up to 92%, which reduces power loss compared to typical alternatives. Its integrated protection features such as overcurrent and thermal shutdown enhance operational reliability. The compact QFN package allows for streamlined system integration, saving board space without compromising performance. These characteristics make it a preferred choice for engineers focusing on precise power management and long-term durability.
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Typical Applications
- Industrial power supply modules requiring stable 5 V regulation with high current capacity and efficient thermal management for extended operational life.
- Embedded control systems where compact design and reliable power conversion are critical for system stability.
- Automated manufacturing equipment benefiting from integrated protection features to prevent downtime and component damage.
- Communication infrastructure devices that demand precise voltage regulation and robust performance under varying environmental conditions.
PS-D4C10 Brand Info
The PS-D4C10 is a flagship power management component from a leading semiconductor manufacturer known for precision and reliability. This device embodies the brand??s commitment to delivering high-quality integrated circuits that meet stringent industrial standards. Supported by comprehensive technical documentation and global supply chain support, it serves as a dependable building block for advanced electronic systems requiring efficient power control and protection.
FAQ
What is the maximum output current supported by this device?
The device supports a maximum output current of up to 10 A, making it suitable for high-current industrial applications requiring stable power delivery.
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What are the key protection features integrated into the PS-D4C10?
The device includes overcurrent protection and thermal shutdown features. These protections safeguard the component and the overall system from damage caused by excessive current or overheating.
Can this device operate in harsh temperature environments?
Yes, it is specified to operate reliably within a temperature range of -40??C to +85??C, making it suitable for a wide range of industrial environments.
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What package type does this product use, and why is it beneficial?
The product is housed in a compact QFN-32 package, which allows for efficient thermal dissipation and saves valuable PCB space, facilitating easy integration into dense electronic designs.
How does the switching frequency affect system performance?
Operating at 600 kHz, the switching frequency optimizes the balance between efficiency and component size, reducing power losses and enabling smaller




