ASM6-SWD1-NPSBH Overview
The ASM6-SWD1-NPSBH is a high-performance semiconductor device designed for efficient power switching and control in industrial applications. Featuring robust electrical characteristics and a compact package, this component ensures reliable operation under demanding conditions. Its optimized switching speed and low on-resistance contribute to reduced power loss and enhanced system efficiency. Engineered for seamless integration, the device supports various power management designs requiring high current handling and thermal stability. Available through IC Manufacturer, it suits engineers and sourcing specialists seeking dependable, high-quality semiconductor components.
ASM6-SWD1-NPSBH Technical Specifications
| Parameter | Specification |
|---|---|
| Maximum Drain-Source Voltage (VDS) | 30 V |
| Continuous Drain Current (ID) | 6 A |
| Gate Threshold Voltage (VGS(th)) | 1.0 ?C 2.5 V |
| On-Resistance (RDS(on)) | 8 m?? @ VGS = 4.5 V |
| Total Gate Charge (Qg) | 15 nC |
| Input Capacitance (Ciss) | 850 pF |
| Operating Junction Temperature (Tj) | -55 to +150 ??C |
| Package Type | SO-8 Surface Mount |
ASM6-SWD1-NPSBH Key Features
- Low On-Resistance: Minimizes conduction losses, enhancing overall power efficiency and reducing heat dissipation in high-current applications.
- Fast Switching Speed: Enables rapid transitions, improving switching efficiency and supporting high-frequency operation for advanced power conversion designs.
- Wide Operating Temperature Range: Ensures reliable performance in harsh industrial environments, supporting temperatures from -55 ??C up to 150 ??C.
- Compact SO-8 Package: Facilitates high-density PCB layouts and ease of assembly in space-constrained applications.
ASM6-SWD1-NPSBH Advantages vs Typical Alternatives
This device offers lower on-resistance and faster switching compared to many alternatives, resulting in improved power efficiency and reduced thermal stress. Its wide temperature range and robust packaging enhance reliability in industrial settings. These advantages make it a preferred choice for engineers seeking high performance and durability without compromising integration flexibility.
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Typical Applications
- DC-DC converters and power management modules requiring efficient switching and thermal stability to optimize energy use in industrial and automotive systems.
- Load switching circuits that benefit from low gate charge and fast response for precise control.
- Battery management systems where reliable current handling and protection are critical for safe operation.
- Motor control applications demanding durable components capable of handling variable loads and temperatures.
ASM6-SWD1-NPSBH Brand Info
The ASM6-SWD1-NPSBH is produced by a leading semiconductor manufacturer known for delivering high-quality discrete components tailored for power electronics. This product exemplifies the brand??s commitment to combining advanced technology with rigorous quality standards, providing engineers with components that support efficiency, reliability, and ease of integration across diverse industrial power applications.
FAQ
What is the maximum current rating of this device?
The device supports a continuous drain current of up to 6 amperes, making it suitable for moderate to high current applications in power switching circuits.
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What package type does this component use?
It is housed in a SO-8 surface-mount package, which is widely used for its compact size and ease of mounting on printed circuit boards.
Can this device operate in high-temperature environments?
Yes, it supports an operating junction temperature range from -55 ??C to +150 ??C, allowing it to function reliably in harsh industrial and automotive conditions.
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How does the low on-resistance benefit my application?
Low on-resistance reduces conduction losses when the device is switched on, which improves energy efficiency and reduces heat generation, thereby enhancing system reliability and longevity.
What is the significance of the gate threshold voltage range?
The gate threshold voltage between 1.0 and 2.5 volts indicates the voltage level needed to begin turning the device on, enabling compatibility with various gate drive circuits and facilitating efficient switching control.






