MX8-A-16S-C Overview
The MX8-A-16S-C is a high-performance industrial-grade semiconductor module designed for precision signal processing and robust operation in demanding environments. This device integrates advanced circuitry to deliver reliable, consistent performance across a wide range of applications. With a focus on stability, efficiency, and ease of integration, the MX8-A-16S-C is optimized for engineers and sourcing specialists seeking dependable components for automation, control systems, and embedded solutions. Its compact footprint and rigorous quality standards ensure seamless incorporation into complex electronic assemblies. For more detailed product information and sourcing, visit IC Manufacturer.
MX8-A-16S-C Technical Specifications
| Parameter | Specification |
|---|---|
| Core Architecture | 16-bit processing unit |
| Operating Voltage | 3.3 V ?? 5% |
| Maximum Clock Frequency | 80 MHz |
| Input/Output Pins | 16 digital I/O |
| Operating Temperature Range | -40??C to +85??C |
| Power Consumption | Typical 120 mW |
| Package Type | Compact 48-pin LQFP |
| Storage Temperature | -55??C to +125??C |
| ESD Protection | ??4 kV HBM |
| MTBF | Over 1,000,000 hours |
MX8-A-16S-C Key Features
- 16-bit processing core: Enables precise control and efficient processing suitable for industrial automation and embedded systems.
- Low power consumption: At approximately 120 mW, reduces thermal load and extends operational lifespan in continuous-use environments.
- Wide operating temperature range: Supports reliable function from -40??C to +85??C, ideal for harsh industrial conditions.
- Robust ESD protection: Integrated ??4 kV Human Body Model protection enhances device durability during manufacturing and field operation.
- Compact 48-pin LQFP package: Facilitates easy integration on densely populated PCBs while maintaining thermal performance.
- High MTBF rating: Over one million hours mean dependable long-term service and reduced maintenance costs.
MX8-A-16S-C Advantages vs Typical Alternatives
This semiconductor module offers superior operational stability under extreme temperatures and enhanced electrostatic discharge resilience compared to typical alternatives. Its low power consumption combined with a compact package optimizes board space without sacrificing performance. These factors contribute to increased reliability and integration flexibility, making it a favorable choice for engineers focused on durable, energy-efficient industrial designs.
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Typical Applications
- Industrial automation control systems requiring precise 16-bit processing and robust operation across temperature extremes.
- Embedded system designs in factory equipment where reliable low-power components are critical.
- Signal processing modules in instrumentation and measurement devices demanding stable and accurate data handling.
- Power-sensitive control units in HVAC and energy management systems benefitting from the device??s efficiency and protective features.
MX8-A-16S-C Brand Info
The MX8-A-16S-C is part of a well-established product portfolio from a trusted semiconductor manufacturer known for quality and innovation in industrial-grade ICs. This product line focuses on delivering reliable microcontroller and processing solutions tailored to harsh environments and demanding applications. The MX8-A-16S-C embodies the brand??s commitment to precision engineering, robust performance, and seamless integration, supporting engineers and procurement specialists in achieving optimal system designs.
FAQ
What is the operating voltage range for this semiconductor module?
The device operates at a nominal voltage of 3.3 V with a tolerance of ??5%, which aligns with standard industrial power supply rails and supports stable operation in embedded systems.
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Can the MX8-A-16S-C function reliably in harsh temperature conditions?
Yes, it is designed to operate within a temperature range of -40??C to +85??C, making it suitable for industrial environments subject to temperature fluctuations and extreme conditions.
How does the power consumption of this device impact system design?
With a typical power consumption of around 120 mW, it minimizes heat generation and energy use




