MX81A004PF1 Overview
The MX81A004PF1 is a high-performance semiconductor device designed for precision industrial applications requiring robust signal processing and efficient power management. It offers a compact footprint with advanced integration that simplifies system design while ensuring stable operation under varying environmental conditions. Engineered for reliability and consistency, this component supports enhanced functionality in embedded systems and control units. The device??s specifications enable superior performance in demanding industrial environments, making it a preferred choice among engineers and sourcing specialists looking for dependable semiconductor solutions. For complete product details, visit IC Manufacturer.
MX81A004PF1 Technical Specifications
| Parameter | Specification |
|---|---|
| Operating Voltage | 3.0 V to 3.6 V |
| Operating Temperature Range | -40??C to +85??C |
| Supply Current (Typical) | 1.2 mA |
| Input Logic Levels | TTL/CMOS Compatible |
| Output Configuration | Open Drain |
| Package Type | 4-Pin SOT-23 |
| Maximum Switching Frequency | 1 MHz |
| Static Noise Margin | ??0.8 V |
| ESD Protection | ??2 kV HBM |
MX81A004PF1 Key Features
- Low Power Consumption: The device operates at a typical supply current of 1.2 mA, reducing overall system power usage and extending battery life in portable and embedded applications.
- Wide Operating Voltage Range: Supports 3.0 V to 3.6 V supply voltage, allowing compatibility with a variety of industrial power rails and ensuring stable operation.
- Robust Environmental Tolerance: Rated for -40??C to +85??C, this component is suitable for harsh industrial environments, guaranteeing reliability across temperature extremes.
- Compact 4-Pin SOT-23 Package: Facilitates space-efficient PCB layouts and ease of integration into dense system designs without sacrificing performance.
MX81A004PF1 Advantages vs Typical Alternatives
This semiconductor device stands out with its optimized low power profile and wide operating voltage range, offering enhanced energy efficiency and flexible deployment in industrial applications. Its robust environmental ratings and compact packaging provide superior reliability and integration benefits compared to typical alternatives, making it ideal for engineers prioritizing system stability and footprint reduction.
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Typical Applications
- Embedded control systems requiring reliable signal processing and low power consumption, such as industrial automation controllers and motor drivers.
- Power management modules in industrial instrumentation where stable voltage operation and compact size are essential.
- Sensor interface circuits demanding noise immunity and precise logic level compatibility.
- Consumer electronics that benefit from small footprint semiconductors with robust temperature handling capabilities.
MX81A004PF1 Brand Info
Produced by a leading semiconductor manufacturer, the MX81A004PF1 reflects the company??s commitment to delivering high-quality, reliable components for industrial applications. This device integrates advanced design techniques aimed at optimizing power efficiency and environmental resilience. It is part of a broader portfolio of industrial-grade semiconductors that support innovative system designs across multiple sectors, including automation, instrumentation, and embedded electronics.
FAQ
What supply voltage range does this device support?
The device operates efficiently within a supply voltage range of 3.0 V to 3.6 V, making it compatible with common industrial power rails and enabling stable functionality under varying voltage conditions.
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Can the MX81A004PF1 operate in extreme temperature environments?
Yes, it is rated for operation from -40??C to +85??C, ensuring dependable performance in harsh industrial settings and outdoor applications subject to wide temperature fluctuations.
What package type is used for this device, and how does it benefit system design?
The component comes in a compact 4-pin SOT-23 package, which supports space-saving PCB layouts, simplifies assembly, and facilitates integration into compact, high-density electronic systems




