HSMC-A431-X90M1 Overview
The HSMC-A431-X90M1 is a highly integrated semiconductor solution designed for precision industrial applications. Featuring robust electrical characteristics and optimized thermal performance, this component delivers reliable operation in demanding environments. Its compact form factor and advanced process technology enable seamless integration into complex systems while maintaining energy efficiency. Sourcing specialists and engineers will appreciate its balanced combination of durability and electrical stability, making it an ideal choice for advanced control and signal processing tasks. For detailed product specifications and sourcing options, visit IC-fabrikant.
HSMC-A431-X90M1 Technical Specifications
Parameter | Specificatie |
---|---|
Bereik bedrijfsspanning | 3.3 V to 5.5 V |
Maximum Operating Frequency | 90 MHz |
Type verpakking | QFN 48-pin |
Bedrijfstemperatuurbereik | -40 °C tot +125 °C |
Input Logic Levels | TTL/CMOS compatible |
Stroomverbruik | Typical 120 mW at 3.3 V, 90 MHz |
Signal Interface | LVDS and CMOS |
Junction Temperature Max | 150??C |
Storage Temperature Range | -65??C to +150??C |
HSMC-A431-X90M1 Key Features
- High-frequency operation: Supports up to 90 MHz, enabling fast signal processing for time-critical industrial systems.
- Wide operating voltage range: From 3.3 V to 5.5 V, allowing flexible integration with various power supply designs.
- Robust thermal tolerance: Operates reliably between -40??C and +125??C, suitable for harsh industrial environments.
- Compact QFN packaging: Enhances PCB real estate efficiency and improves thermal dissipation.
- Dual signal interface compatibility: Supports both LVDS and CMOS interfaces, facilitating diverse system architectures.
- Laag energieverbruik: Typical 120 mW power usage minimizes thermal stress and extends system lifespan.
- High junction temperature rating: Ensures stable performance during peak thermal loads up to 150??C.
HSMC-A431-X90M1 Advantages vs Typical Alternatives
This device offers superior integration of high-frequency operation and wide voltage tolerance compared to typical counterparts. Enhanced thermal management and low power consumption contribute to increased reliability and efficiency. Its versatile signal interface support simplifies system design, making it a preferred choice for engineers seeking dependable semiconductor solutions for industrial applications.
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Typische toepassingen
- Industrial automation systems requiring precise timing and signal integrity in challenging thermal conditions.
- Embedded control units that demand flexible voltage operation and fast processing speeds.
- Signal conditioning modules in telecommunications infrastructure for stable data transmission.
- High-density PCB designs where compact packaging and low power consumption are critical.
HSMC-A431-X90M1 Brand Info
Produced by an established semiconductor manufacturer, this product exemplifies the brand??s commitment to delivering reliable, high-performance components for industrial electronics. The design philosophy emphasizes durability, precision, and efficiency, ensuring that each unit meets stringent quality standards. The product is supported by comprehensive technical documentation and global distribution networks, facilitating seamless adoption in various industrial sectors.
FAQ
What is the maximum operating frequency supported by this device?
The component supports operation at frequencies up to 90 MHz, making it suitable for applications requiring fast signal processing and timing accuracy.
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What are the recommended operating temperature conditions?
It is designed to operate reliably within a temperature range of -40??C to +125??C, ensuring stable performance even in harsh industrial environments.
Which package type does this product utilize?
The device is packaged in a compact 48-pin QFN format, providing efficient PCB space usage and enhanced thermal dissipation capabilities.
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Can this device support multiple signal interfaces?
Yes, it supports both LVDS and CMOS signal interfaces, offering flexibility for integration into diverse system designs.
How does the power consumption of this component impact system design?
With a typical power consumption of 120 mW at 3.3 V and 90 MHz operation, it helps reduce thermal load and energy costs, contributing to longer system lifespan and improved reliability.