ALMD-CY3F-YZ002 Overview
The ALMD-CY3F-YZ002 is a high-performance semiconductor device designed for industrial and electronics applications requiring precise control and reliable functionality. Engineered to deliver stable operation across a broad range of conditions, this component offers enhanced integration capabilities and efficient power management. Its compact design supports versatile implementation in complex systems, ensuring minimal footprint without compromising performance. Sourcing specialists and engineers benefit from its robust specifications, which facilitate seamless integration into demanding environments. For detailed technical insights and procurement options, visit IC-fabrikant.
ALMD-CY3F-YZ002 Technical Specifications
Parameter | Specificatie |
---|---|
Bereik bedrijfsspanning | 3.0 V to 3.6 V |
Maximum Operating Temperature | +85??C |
Minimum Operating Temperature | -40??C |
Current Consumption (Active Mode) | 5 mA typical |
Current Consumption (Standby Mode) | 1 ??A typical |
Type verpakking | QFN 16-pin |
Data Interface | I2C compatible |
Bedrijfsfrequentie | Up to 50 MHz |
ALMD-CY3F-YZ002 Key Features
- Laag stroomverbruik: Ensures extended operation in battery-powered systems, increasing device longevity and reducing thermal stress.
- Breed spanningsbereik: Provides flexibility in diverse power environments, simplifying system design and improving compatibility.
- Compact QFN Package: Facilitates high-density PCB layouts, allowing more efficient use of space in industrial electronics assemblies.
- High-Speed Data Interface: Supports up to 50 MHz I2C communication, enabling rapid data transfer and real-time system responsiveness.
ALMD-CY3F-YZ002 Advantages vs Typical Alternatives
This device offers superior power efficiency and a wider operating voltage range compared to typical alternatives. Its compact package supports integration in space-constrained applications, while the low standby current enhances energy savings. The reliable I2C interface ensures accurate data communication, making it a preferred choice for engineers seeking dependable and efficient semiconductor solutions.
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Typische toepassingen
- Industrial control systems requiring precise voltage regulation and low power consumption to maintain operational efficiency over extended periods.
- Embedded sensor interfaces where compact packaging and high-speed communication are essential for real-time monitoring.
- Portable electronic devices benefiting from low standby current to prolong battery life and improve user experience.
- Automated manufacturing equipment that demands stable performance under varying temperature and voltage conditions.
ALMD-CY3F-YZ002 Brand Info
Manufactured by a leading semiconductor specialist, this product is part of a comprehensive portfolio aimed at industrial-grade electronics components. The brand emphasizes quality, reliability, and innovation, supporting customers with thorough documentation and technical assistance. This particular model exemplifies the company??s commitment to delivering solutions that meet stringent performance and environmental standards, ensuring peace of mind for engineers and sourcing professionals alike.
FAQ
What is the typical power consumption of this device in active mode?
The typical current consumption during active operation is approximately 5 mA, balancing performance and power efficiency to suit applications requiring continuous or frequent activity without excessive energy drain.
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Can this component operate reliably in harsh temperature environments?
Yes, the device is designed to function within an operating temperature range from -40??C to +85??C, making it suitable for industrial environments with demanding thermal conditions.
What type of data interface does the device support?
It features an I2C-compatible interface that supports communication speeds up to 50 MHz, enabling fast and reliable data exchange with microcontrollers and other digital systems.
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Is this product available in a surface-mount package?
Yes, it is housed in a compact 16-pin QFN surface-mount package, which is ideal for high-density circuit board designs requiring a small footprint and excellent thermal performance.
How does the low standby current benefit system designs?
The minimal current consumption in standby mode, typically around 1 ??A, helps reduce overall power usage in systems that remain idle for extended periods, thereby extending battery life and lowering energy costs.