NCP12510ASN65T1G Overview
The NCP12510ASN65T1G is a high-performance power supply controller designed for efficient operation in various applications. It features a robust architecture that ensures reliable performance while maintaining low power consumption. Ideal for engineers and sourcing specialists, this device is suitable for compact designs requiring high efficiency and stability, making it a preferred choice in the semiconductor market. Explore more about this component at IC Manufacturer.
NCP12510ASN65T1G Key Features
- High Efficiency Operation: The NCP12510ASN65T1G achieves high efficiency in power conversion, reducing thermal management requirements and enhancing overall system reliability.
- Integrated Protection Features: This device includes built-in protections against over-voltage and over-current conditions, which are critical for safeguarding connected components and ensuring longevity.
- Compact Design: The compact package size allows for easy integration into space-constrained applications, enabling designers to optimize layout without compromising performance.
- Wide Input Voltage Range: With its ability to operate over a broad input voltage range, the NCP12510ASN65T1G is versatile and suitable for various power supply designs.
NCP12510ASN65T1G Technical Specifications
| Parameter | Value |
|---|---|
| Input Voltage Range | 85V to 265V AC |
| Output Voltage | Adjustable |
| Switching Frequency | 100 kHz |
| Maximum Output Power | 75W |
| Efficiency | Up to 85% |
| Operating Temperature Range | -40??C to 125??C |
| Package Type | DIP-8 |
| Protection Features | Over-voltage, Over-current |
NCP12510ASN65T1G Advantages vs Typical Alternatives
Compared to typical alternatives, this device excels in efficiency and reliability, providing superior performance in power management applications. Its integrated protection features enhance operational safety, while the compact design facilitates integration into various systems.
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Typical Applications
- Switching Power Supplies: The NCP12510ASN65T1G is ideal for use in switching power supplies, where efficient power conversion is crucial for system performance and reliability.
- LED Drivers: This device can be utilized in LED driver applications, enabling precise control of output current and voltage to ensure consistent lighting performance.
- Telecommunications Equipment: Its robustness makes it suitable for telecommunications equipment, where reliable power supply is essential for uninterrupted service.
- Consumer Electronics: The compact form factor allows integration into various consumer electronics, enhancing user experience through efficient power management.
NCP12510ASN65T1G Brand Info
The NCP12510ASN65T1G is manufactured by ON Semiconductor, a leading supplier in the semiconductor industry. Known for their commitment to innovation and quality, ON Semiconductor provides a wide range of solutions that meet the demands of modern electronic applications. The NCP12510ASN65T1G exemplifies their dedication to delivering high-performance components for power management.
FAQ
What is the maximum output power of the NCP12510ASN65T1G?
The maximum output power of this device is 75W, making it suitable for various applications requiring significant power management capabilities.
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What protection features does the NCP12510ASN65T1G include?
This power supply controller includes built-in protection against over-voltage and over-current conditions, which helps safeguard connected components and enhance reliability.
What is the switching frequency of the NCP12510ASN65T1G?
The NCP12510ASN65T1G operates at a switching frequency of 100 kHz, which contributes to its efficient power conversion capabilities in various applications.
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What is the operating temperature range for this device?
The device can operate within a temperature range of -40??C to 125??C, allowing it to function reliably in diverse environmental conditions.
Is the output voltage adjustable?
Yes, the output voltage of the NCP12510ASN65T1G is adjustable, providing flexibility for designers to meet specific application requirements.



