ASMW-PWG4-NMQDE Overview
The ASMW-PWG4-NMQDE is a high-performance semiconductor device designed for precision industrial applications requiring reliable switching and signal control. Engineered to deliver consistent electrical characteristics, this component supports complex circuit designs with enhanced durability and efficient power management. Its robust construction makes it suitable for environments demanding stable operation and low power dissipation. The ASMW-PWG4-NMQDE stands out for its optimized packaging and thermal performance, enabling seamless integration into advanced electronic assemblies. For sourcing specialists and engineers seeking dependable functionality in semiconductor solutions, this device offers a balance of performance and reliability. Learn more at IC Manufacturer.
ASMW-PWG4-NMQDE Technical Specifications
| Parameter | Value | Unit |
|---|---|---|
| Supply Voltage (VCC) | 5.0 | V |
| Operating Temperature Range | -40 to +85 | ??C |
| Input Voltage Range | 0 to 5 | V |
| Output Current | 20 | mA |
| Switching Frequency | Up to 1 | MHz |
| Power Dissipation | 200 | mW |
| Input Threshold Voltage | 1.2 | V |
| Package Type | QFN-16 | ?C |
ASMW-PWG4-NMQDE Key Features
- Precision Switching: Delivers high-speed switching with minimal signal distortion, enabling accurate control in complex circuits.
- Wide Operating Temperature: Supports reliable operation across a broad temperature range, ensuring stability in harsh industrial environments.
- Low Power Dissipation: Enhances energy efficiency and reduces thermal stress, which extends device longevity and system reliability.
- Compact QFN-16 Package: Facilitates high-density PCB layouts and improves thermal conduction for better heat management.
ASMW-PWG4-NMQDE Advantages vs Typical Alternatives
This semiconductor component offers superior switching precision and lower power dissipation compared to typical alternatives. Its wide operating temperature range and compact packaging provide enhanced integration flexibility and robust reliability, making it ideal for demanding industrial applications. These advantages translate into improved system efficiency and reduced maintenance requirements.
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Typical Applications
- Industrial automation control systems requiring precise signal switching and reliable operation under varying environmental conditions.
- Power management modules where low power dissipation is critical to maintaining overall system efficiency.
- Embedded systems needing compact and thermally efficient semiconductor devices for high-density board designs.
- Communication equipment that demands stable switching performance and signal integrity.
ASMW-PWG4-NMQDE Brand Info
The ASMW-PWG4-NMQDE is developed by a leading semiconductor manufacturer known for delivering advanced integrated circuits tailored to industrial and commercial applications. This product exemplifies the brand??s commitment to quality, innovation, and performance consistency. Designed with exacting standards, it supports engineers and sourcing specialists in achieving reliable and cost-effective solutions across various electronic system designs.
FAQ
What is the maximum operating temperature for this device?
The device supports a maximum operating temperature of +85??C, allowing it to function reliably in industrial environments with elevated ambient temperatures without performance degradation.
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Which package type is used for this component?
It is housed in a QFN-16 package, which offers a compact footprint and excellent thermal conductivity. This package type is ideal for high-density PCB layouts requiring efficient heat dissipation.
How does this device manage power dissipation?
The semiconductor is designed with low power dissipation characteristics, rated at 200 mW. This feature reduces thermal stress on the device, enhancing its reliability and extending operational life within electronic systems.
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What is the typical switching frequency supported?
The device can support switching frequencies up to 1 MHz, enabling its use in high-speed signal control applications where rapid response times are critical.
Is this component suitable for harsh industrial applications?
Yes, its wide operating temperature range from -40??C to +85??C and robust electrical specifications make it well-suited for harsh industrial environments requiring consistent and stable semiconductor performance.





