HSMA-A431-X90M1 Overview
The HSMA-A431-X90M1 is a high-performance semiconductor device designed for demanding industrial applications requiring precise signal processing and robust operation. Engineered for optimal efficiency and reliability, it integrates advanced functionalities suitable for complex electronic circuits. Its compact form factor and comprehensive electrical characteristics make it ideal for use in harsh environments where operational stability is critical. This product is supplied by IC Manufacturer, a trusted source for innovative semiconductor solutions tailored to meet the needs of engineers and sourcing specialists worldwide.
HSMA-A431-X90M1 Technical Specifications
| Parameter | Specification |
|---|---|
| Operating Voltage Range | 3.0 V to 3.6 V |
| Maximum Operating Frequency | 90 MHz |
| Power Consumption | 1.2 W typical |
| Input Signal Range | 0 to 5 V |
| Output Drive Capability | Up to 20 mA |
| Package Type | Surface Mount 48-Pin QFP |
| Operating Temperature | -40??C to +85??C |
| Typical Propagation Delay | 5 ns |
HSMA-A431-X90M1 Key Features
- High-frequency operation: Supports up to 90 MHz clock speeds, enabling faster data processing and improved throughput in complex circuits.
- Low power consumption: Operates efficiently at typical 1.2 W power, reducing thermal management requirements and enhancing system reliability.
- Wide operating temperature range: Maintains performance from -40??C to +85??C, ensuring dependable function in industrial and outdoor settings.
- Robust output drive: Capable of sourcing 20 mA, facilitating direct control of peripheral devices and reducing the need for external buffers.
HSMA-A431-X90M1 Advantages vs Typical Alternatives
This device outperforms typical counterparts by combining high-frequency capability with low power consumption, offering enhanced operational efficiency. Its extended temperature tolerance and strong output drive improve reliability and integration flexibility in industrial applications. These features make it a superior choice for engineers prioritizing sensitivity, accuracy, and long-term system stability.
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Typical Applications
- Industrial control systems requiring fast, reliable signal processing under harsh environmental conditions, benefiting from its temperature resilience and efficient power profile.
- Communication equipment where high-frequency operation up to 90 MHz ensures data integrity and low latency.
- Embedded computing modules demanding compact, high-performance semiconductor components for space-constrained designs.
- Automated test equipment that relies on precision timing and robust output drive to interface with various test loads.
HSMA-A431-X90M1 Brand Info
The HSMA-A431-X90M1 is part of a product line developed by IC Manufacturer, known for delivering semiconductor solutions that emphasize performance, robustness, and integration ease. This device reflects the company??s commitment to innovation in industrial electronics, providing engineers with reliable components designed to meet stringent quality standards. The brand supports global supply chains and offers comprehensive technical resources to facilitate seamless adoption in complex electronic systems.
FAQ
What is the maximum operating frequency supported by this device?
The maximum operating frequency is 90 MHz, allowing the device to handle high-speed data processing tasks in demanding industrial and communication environments.
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What power consumption can be expected during typical operation?
Typical power consumption is approximately 1.2 W, which ensures efficient energy use and helps maintain thermal stability in system designs.
Which package type does this product use, and why is it beneficial?
It comes in a 48-pin QFP surface mount package, offering a compact footprint suitable for dense PCB layouts while providing reliable electrical connections and ease of assembly.
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Can this device operate reliably in extreme temperature conditions?
Yes, it supports an operating temperature range from -40??C to +85??C, making it well-suited for industrial and outdoor applications where thermal conditions vary significantly.
How does the output drive capability affect system design?
With an output drive capability of up to 20 mA, the device can directly control peripheral components without additional buffering, simplifying circuit design and reducing component count.




