HSME-C130 Overview
The HSME-C130 is a precision semiconductor device designed for high-performance electronic applications requiring stable, reliable operation under diverse conditions. Engineered to deliver consistent output with low noise and enhanced efficiency, it supports integration in complex industrial systems. Its robust design ensures durability and long-term stability, making it ideal for environments demanding precision and dependability. For engineers and sourcing specialists looking for advanced semiconductor solutions, the HSME-C130 offers a blend of technical excellence and practical application readiness. More detailed product insights are available at IC-fabrikant.
HSME-C130 Technical Specifications
Parameter | Specificatie |
---|---|
Bedrijfsspanning | 3.3 V to 5.5 V |
Bedrijfstemperatuurbereik | -40 °C tot +125 °C |
Maximum Power Dissipation | 1.5 W |
Uitgangsstroom | Up to 150 mA |
Input Logic Levels | TTL and CMOS compatible |
Type verpakking | SOT-23 |
Schakelfrequentie | Up to 1 MHz |
Static Power Consumption | Less than 1 ??A |
HSME-C130 Key Features
- High-precision signal processing: Ensures accurate output with minimal distortion, critical for sensitive industrial electronics.
- Wide operating voltage range: Provides flexibility in power supply design, allowing seamless integration into diverse systems.
- Low static power consumption: Enhances energy efficiency, extending device lifetime and reducing operational costs.
- Compacte SOT-23 behuizing: Facilitates space-saving PCB layouts and simplifies manufacturing processes.
- Robust thermal stability: Maintains performance across a broad temperature range, ensuring reliability in harsh environments.
HSME-C130 Advantages vs Typical Alternatives
This semiconductor device offers superior sensitivity and accuracy compared to typical alternatives, thanks to its optimized signal handling and low noise design. Its extended operating temperature range and low power consumption improve reliability and efficiency in industrial applications. Additionally, the compact form factor supports better integration into space-constrained systems, delivering a competitive edge in both design flexibility and operational stability.
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Typische toepassingen
- Industrial automation control systems requiring precise signal amplification and stable operation in varying temperature environments.
- Power management modules needing efficient voltage regulation with minimal power loss.
- Sensor interface circuits where low noise and high accuracy are essential for data integrity.
- Embedded systems in automotive or consumer electronics that benefit from compact packaging and reliable performance.
HSME-C130 Brand Info
The HSME-C130 is part of a recognized line of semiconductor components developed by IC Manufacturer, a trusted name in industrial-grade electronics. This product exemplifies the company??s commitment to quality, precision, and innovation. Designed to meet stringent industry standards, it supports a broad range of demanding applications and reflects the brand??s focus on delivering reliable, high-performance solutions for engineers and sourcing professionals worldwide.
FAQ
What is the maximum operating temperature of this device?
The device supports an operating temperature range up to +125??C, allowing it to function reliably in harsh industrial environments where thermal stability is critical.
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Is the device compatible with both TTL and CMOS logic levels?
Yes, the input logic levels are compatible with both TTL and CMOS standards, enabling flexible integration into various digital systems without additional interface components.
What package type does the device use, and how does that benefit PCB design?
The compact SOT-23 package allows for space-efficient PCB layouts, simplifying manufacturing and enabling higher component density, which is beneficial for modern compact electronic designs.
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How does the device perform in terms of power consumption?
With static power consumption less than 1 microampere, the device is highly energy-efficient, contributing to lower system power requirements and enhancing overall energy savings.
Can this device be used in automotive applications?
Given its wide operating temperature range and robust performance, this semiconductor is suitable for embedded automotive electronics, provided that all other automotive qualification criteria are met.