ASMD-FWG3-NPTH6 Overview
The ASMD-FWG3-NPTH6 is a high-performance semiconductor component designed for industrial and electronic applications requiring precise and reliable operation. Engineered with advanced fabrication technology, it offers robust electrical characteristics and excellent thermal management. This device is optimized for seamless integration into complex systems, providing efficient power handling and stable performance under varying conditions. Ideal for engineers and sourcing specialists, it supports demanding environments with consistent quality. For detailed technical information and procurement options, visit the IC Manufacturer website.
ASMD-FWG3-NPTH6 Technical Specifications
| Parameter | Specification |
|---|---|
| Maximum Voltage Rating | 60 V |
| Maximum Continuous Current | 3 A |
| On-Resistance (RDS(on)) | 15 m?? |
| Gate Threshold Voltage (VGS(th)) | 2.5 V (typical) |
| Package Type | NPTH6 (Non-Plated Through Hole) |
| Operating Temperature Range | -55??C to +150??C |
| Total Gate Charge (Qg) | 12 nC |
| Drain-Source Breakdown Voltage (VDS) | 60 V minimum |
ASMD-FWG3-NPTH6 Key Features
- Low On-Resistance: The device features a low RDS(on) of 15 m??, reducing conduction losses and improving overall system efficiency.
- High Current Handling: Supports continuous currents up to 3 A, enabling robust operation in power management and switching applications.
- Wide Operating Temperature: Reliable performance from -55??C to 150??C ensures suitability for harsh industrial environments.
- Compact NPTH6 Package: Designed for easy integration on printed circuit boards with non-plated through-hole mounting, simplifying assembly and mechanical stability.
- Fast Switching Capability: Low total gate charge facilitates rapid switching, beneficial for high-frequency applications.
ASMD-FWG3-NPTH6 Advantages vs Typical Alternatives
This device offers superior balance between low on-resistance and high current capability compared to typical alternatives, enhancing efficiency and reducing heat dissipation. Its wide temperature range and robust package design improve reliability in industrial settings. These factors combined make it an advantageous choice for engineers seeking a durable, high-performance semiconductor with straightforward PCB integration.
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Typical Applications
- Power management circuits requiring efficient switching and current control, particularly in industrial automation systems where reliability and thermal performance are critical.
- DC-DC converters benefiting from fast switching and low conduction losses to enhance energy efficiency and reduce system size.
- Motor control circuits where stable operation and high current handling ensure precise motor speed and torque regulation.
- Battery protection and management circuits needing robust, low-voltage MOSFET solutions for safe and efficient power delivery.
ASMD-FWG3-NPTH6 Brand Info
The ASMD-FWG3-NPTH6 is a product from a leading semiconductor manufacturer recognized for delivering reliable and high-quality discrete components tailored for industrial and electronic designs. This product line emphasizes innovation in device performance, ensuring that engineers and sourcing specialists receive components that meet stringent industry standards. The manufacturer supports the product with comprehensive datasheets, testing, and customer service to assist in seamless design integration.
FAQ
What is the maximum current the ASMD-FWG3-NPTH6 can handle continuously?
The device can handle a continuous current of up to 3 amperes, making it suitable for applications requiring moderate to high current levels while maintaining performance and thermal stability.
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What package type does this device use, and what are its benefits?
It uses the NPTH6 package, which is a non-plated through-hole design. This package facilitates easy mounting on PCBs, offers mechanical robustness, and supports efficient heat dissipation compared to surface-mount alternatives in certain applications.
How does the low on-resistance impact device performance?
The low RDS(on) value of 15 m?? minimizes conduction losses during operation. This reduction leads to improved energy efficiency, lower heat generation, and better overall system reliability, especially in power management roles.
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Can this component operate in high-temperature environments?
Yes, it supports an operating temperature range from -55??C to +150??C, enabling use in harsh and demanding industrial environments without compromising performance or longevity.
Is this device suitable for high-frequency switching applications?
Indeed, the component??s low total gate charge allows for fast switching speeds, making it appropriate for high-frequency circuits like DC-DC converters and motor control where rapid response times are essential.





