MX10-4SC Overview
The MX10-4SC is a high-performance semiconductor device designed for industrial electronics applications requiring robust signal processing and efficient power management. Engineered to deliver precise operation under demanding conditions, it integrates advanced circuitry optimized for reliability and low power consumption. This model supports multiple interface standards and offers flexible connectivity options, making it ideal for complex system architectures. Its compact design and rugged build ensure seamless integration into various industrial environments, enhancing system durability and operational uptime. For engineering teams seeking dependable, scalable semiconductor solutions, the MX10-4SC represents a critical component in modern electronic system design. Discover more at IC Manufacturer.
MX10-4SC Technical Specifications
| Parameter | Specification |
|---|---|
| Operating Voltage | 3.3 V to 5 V |
| Core Frequency | 120 MHz |
| Input/Output Pins | 40 |
| Package Type | QFP-64 |
| Operating Temperature Range | -40??C to +85??C |
| Power Consumption | 120 mW (typical) |
| Interface Support | SPI, I2C, UART |
| Memory Size | 128 KB Flash / 32 KB RAM |
MX10-4SC Key Features
- High-Speed Core: Operates at 120 MHz to ensure rapid data processing and efficient handling of complex algorithms, improving overall system responsiveness.
- Multi-Interface Support: Includes SPI, I2C, and UART communication protocols, allowing flexible connectivity with various sensors and peripherals for seamless integration.
- Low Power Consumption: Typical power usage of 120 mW supports energy-efficient application designs, extending device longevity in battery-powered systems.
- Wide Temperature Range: Functional from -40??C to +85??C, the device is suitable for harsh industrial environments, maintaining stability and reliability.
MX10-4SC Advantages vs Typical Alternatives
This semiconductor offers superior integration of multi-protocol interfaces and a high-frequency core at lower power consumption compared to typical alternatives. Its extended temperature tolerance and compact QFP-64 packaging provide enhanced durability and easier board-level integration. The balance of performance and efficiency makes it ideal for industrial applications demanding reliable, precise operation over extended periods.
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Typical Applications
- Industrial automation controllers where fast, reliable signal processing and multi-interface communication are critical for real-time system management.
- Embedded systems requiring compact and efficient semiconductor solutions to optimize power usage and maintain performance.
- Sensor data acquisition modules leveraging its SPI, I2C, and UART compatibility for versatile peripheral connections.
- Temperature-sensitive environments that benefit from the device??s operational stability across a broad temperature range.
MX10-4SC Brand Info
The MX10-4SC is part of the IC Manufacturer??s portfolio of industrial-grade semiconductor solutions. Known for precision engineering and stringent quality controls, this product line addresses the challenges of modern electronics design by delivering dependable performance and integration flexibility. Designed with engineers and sourcing specialists in mind, the MX10-4SC exemplifies the brand??s commitment to innovation, reliability, and customer-focused product development.
FAQ
What communication interfaces does the MX10-4SC support?
The device supports SPI, I2C, and UART communication protocols. This flexibility enables easy interfacing with a variety of sensors, actuators, and other peripheral components commonly used in industrial and embedded electronics systems.
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What is the operating temperature range for this semiconductor?
The MX10-4SC is rated for operation within -40??C to +85??C. This wide temperature range ensures reliable performance in harsh industrial environments and applications exposed to temperature fluctuations.
How does the power consumption of the MX10-4SC compare to similar products?
With a typical power consumption of 120 mW, this device is optimized for low energy use, which helps extend battery life in portable applications and reduces thermal load, improving system efficiency compared to many competing alternatives.




