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XRA1202IL16-F Description
XRA1202IL16-F Description
The XRA1202IL16-F is a highly versatile interface IC chip designed by MaxLinear, Inc., a leading manufacturer in the electronics industry. This chip is specifically engineered to provide robust and reliable communication capabilities through its I2C and SMBus interfaces. It operates at a clock frequency of 400 kHz, ensuring efficient data transfer rates suitable for a wide range of applications. The XRA1202IL16-F features an open-drain output type, which is ideal for applications requiring flexible and reliable signal handling.
With a supply voltage range of 1.65V to 3.6V, the XRA1202IL16-F is designed to be highly adaptable to various power supply configurations, making it suitable for both low-power and standard voltage systems. The chip includes an interrupt output, which enhances its functionality by allowing it to signal other components in the system when specific events occur, thereby improving overall system efficiency and responsiveness.
The XRA1202IL16-F is housed in a 16-QFN package, which is known for its compact size and excellent thermal performance. This surface-mount package type is ideal for modern, space-constrained designs, ensuring that the chip can be easily integrated into a variety of electronic systems. The chip is also rated for a moisture sensitivity level (MSL) of 1, which means it is highly resistant to moisture and can be safely stored and handled without the need for special precautions.
XRA1202IL16-F Features
- Clock Frequency: Operates at a clock frequency of 400 kHz, providing efficient data transfer rates.
- Output Type: Features an open-drain output type, which offers flexibility and reliability in signal handling.
- Supply Voltage Range: Compatible with a wide range of supply voltages from 1.65V to 3.6V, making it suitable for various power supply configurations.
- Interrupt Output: Includes an interrupt output, enhancing system efficiency and responsiveness.
- Package Type: Housed in a 16-QFN package, which is compact and offers excellent thermal performance.
- Moisture Sensitivity Level: Rated MSL 1, ensuring high resistance to moisture and ease of handling.
- Mounting Type: Surface-mount technology, ideal for modern, space-constrained designs.
- Number of I/O: Equipped with 8 I/O lines, providing ample connectivity options.
- Interface: Supports both I2C and SMBus interfaces, offering versatile communication capabilities.
XRA1202IL16-F Applications
The XRA1202IL16-F is ideal for a variety of applications where reliable and efficient communication is crucial. Its I2C and SMBus interfaces make it suitable for use in systems that require multiple devices to communicate over a shared bus. Some specific use cases include:
- Consumer Electronics: Ideal for devices such as smartphones, tablets, and smart home systems where compact size and high reliability are essential.
- Industrial Automation: Suitable for industrial control systems, where the chip's robustness and low power consumption make it a reliable choice.
- Automotive Electronics: Applicable in automotive systems, where the chip's wide voltage range and moisture resistance ensure it can withstand the harsh conditions often found in vehicles.
- Medical Devices: Can be used in medical equipment, where its reliability and low power consumption are critical for maintaining accurate and consistent performance.
Conclusion of XRA1202IL16-F
The XRA1202IL16-F from MaxLinear, Inc., is a highly capable interface IC chip that offers a range of technical specifications and performance benefits. Its versatile I2C and SMBus interfaces, combined with its wide supply voltage range and open-drain output type, make it a reliable choice for a variety of applications. The chip's compact 16-QFN package and surface-mount technology ensure it can be easily integrated into modern designs, while its moisture resistance and interrupt output enhance its overall functionality.
Despite its obsolete status, the XRA1202IL16-F remains a valuable component for applications requiring reliable and efficient communication. Its unique features and advantages over similar models make it a standout choice for engineers and designers looking to enhance their systems with robust and versatile interface capabilities.



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