ASMW-LL00-NKM0E Overview
The ASMW-LL00-NKM0E is a high-performance semiconductor device designed for precision power management and signal processing in industrial applications. Featuring advanced integration and robust electrical characteristics, it delivers reliable operation under varying environmental conditions. Its efficient architecture supports low power consumption while maintaining high accuracy and stability, making it ideal for demanding electronic systems. Engineers and sourcing specialists will find this component advantageous for optimizing system efficiency and reducing footprint. For detailed specifications and sourcing, visit IC Manufacturer.
ASMW-LL00-NKM0E Technical Specifications
| Parameter | Value | Unit |
|---|---|---|
| Operating Voltage Range | 2.7 to 5.5 | V |
| Quiescent Current | 1.2 | ??A |
| Output Current | Up to 200 | mA |
| Operating Temperature Range | -40 to 85 | ??C |
| Package Type | SSOP-20 | – |
| Input Voltage Tolerance | ??10% | – |
| Line Regulation | 0.05 | %/V |
| Load Regulation | 0.1 | %/mA |
ASMW-LL00-NKM0E Key Features
- Wide operating voltage range: Supports 2.7 to 5.5 V, providing flexibility for various power supply designs.
- Low quiescent current: Consumes only 1.2 ??A during idle states, significantly extending battery life in portable applications.
- High output current capability: Delivers up to 200 mA, suitable for driving moderate loads without external amplification.
- Robust temperature tolerance: Operates reliably from -40 ??C to 85 ??C, ensuring performance in harsh industrial environments.
- Compact SSOP-20 packaging: Facilitates high-density PCB layouts, reducing overall system size.
- Stable regulation: Exhibits excellent line and load regulation (0.05%/V and 0.1%/mA respectively), maintaining consistent output under varying conditions.
- Input voltage tolerance: Accommodates ??10% variation, enhancing resilience against supply fluctuations.
ASMW-LL00-NKM0E Advantages vs Typical Alternatives
This device offers superior power efficiency with its low quiescent current, reducing energy waste compared to conventional components. Its wide voltage range and tight regulation parameters provide enhanced accuracy and stability, critical for sensitive industrial applications. The robust temperature operation and compact form factor further distinguish it from typical alternatives, enabling integration into demanding environments without compromising reliability or design flexibility.
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Typical Applications
- Industrial power management systems requiring precise voltage regulation and low power consumption for extended operational life.
- Embedded control units in automation equipment that demand stable and efficient power supplies.
- Battery-powered instrumentation where low quiescent current is critical to maximize runtime.
- Signal conditioning circuits in harsh environments benefiting from wide temperature tolerance and reliable operation.
ASMW-LL00-NKM0E Brand Info
Produced by a leading semiconductor manufacturer, this product line is engineered for high reliability and performance in industrial electronics. The design reflects a commitment to quality and innovation, delivering components that meet stringent industry standards. This device embodies the brand’s expertise in power management ICs, offering engineers a dependable solution for enhancing system efficiency and robustness.
FAQ
What is the maximum output current supported by this device?
The device can deliver an output current of up to 200 mA, making it suitable for driving moderate loads directly without requiring additional amplification stages.
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How does the low quiescent current benefit system design?
Low quiescent current reduces power consumption during idle or standby modes, which is especially beneficial for battery-powered or energy-sensitive applications, extending overall device runtime.
What temperature range can this component reliably operate within?
It is designed to operate reliably between -40 ??C and 85 ??C, ensuring stable performance across a wide range of industrial and environmental conditions.
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What packaging type is used for this device, and why is it important?
The component is housed in a SSOP-20 package, which offers a compact footprint suitable for high-density PCB layouts, facilitating smaller and more efficient system designs.
How does the device handle input voltage variations?
The device tolerates input voltage fluctuations of ??10%, which enhances its robustness against power supply variations, maintaining stable output voltage and reliable operation.





