


MaxLinear
XR17D152IMTR-F
Why Choose Us?
Professional Platform
B2B & B2C purchasingDelivery at full speed
1-2 days deliveryWide variety
Original manufacturers365 days guarantee
Responsible qualityTech Specifications
XR17D152IMTR-F Description
XR17D152IMTR-F Description
The XR17D152IMTR-F is a high-performance Dual Universal Asynchronous Receiver/Transmitter (DUART) Interface IC Chip, designed for robust and efficient data communication. Manufactured by MaxLinear, Inc., this IC is optimized for a wide range of industrial and commercial applications, providing reliable and versatile communication solutions. The XR17D152IMTR-F supports both 3.3V and 5V supply voltages, ensuring compatibility with various power supply configurations. It is available in a 100-pin TQFP package, which is suitable for surface mount technology (SMT), making it ideal for compact and high-density PCB designs.
XR17D152IMTR-F Features
- Dual Channels: The XR17D152IMTR-F features two independent DUART channels, allowing simultaneous communication on two separate serial ports. This dual-channel capability enhances the efficiency of data transmission and reception, making it suitable for applications requiring multiple communication links.
- High Data Rate: With a maximum data rate of 6.25 Mbps, the XR17D152IMTR-F ensures fast and reliable data transfer, essential for high-speed communication protocols such as RS485.
- Advanced Error Detection: The inclusion of false start bit detection and auto flow control mechanisms significantly improves data integrity and reliability. These features help in minimizing data loss and ensuring smooth communication, even in noisy or challenging environments.
- IrDA Encoder/Decoder: The XR17D152IMTR-F integrates an IrDA encoder/decoder, enabling infrared communication capabilities. This feature is particularly useful for applications requiring wireless data transfer over short distances, such as remote controls and wireless sensors.
- RoHS Compliance: The XR17D152IMTR-F is RoHS compliant, ensuring that it meets environmental and safety standards for electronic components. This compliance is crucial for manufacturers aiming to produce environmentally friendly products.
- Moisture Sensitivity Level (MSL): With an MSL rating of 3 (168 hours), the XR17D152IMTR-F is suitable for standard manufacturing processes, including reflow soldering, without the need for special handling or storage conditions.
XR17D152IMTR-F Applications
The XR17D152IMTR-F is ideal for a variety of applications where reliable and efficient serial communication is required. Some specific use cases include:
- Industrial Automation: The dual-channel capability and high data rate make it suitable for controlling and monitoring industrial equipment, where multiple devices need to communicate simultaneously.
- Telecommunications: The robust communication features and error detection mechanisms ensure reliable data transmission in telecommunications infrastructure, such as base stations and repeaters.
- Consumer Electronics: The IrDA encoder/decoder feature is particularly useful in consumer electronics, such as remote controls, where wireless communication is essential.
- Embedded Systems: The XR17D152IMTR-F can be integrated into embedded systems for data logging, remote monitoring, and control applications, providing a compact and efficient communication solution.
Conclusion of XR17D152IMTR-F
The XR17D152IMTR-F from MaxLinear, Inc. stands out as a versatile and high-performance DUART Interface IC Chip. Its dual-channel capability, high data rate, and advanced error detection features make it a reliable choice for various communication-intensive applications. The integration of IrDA encoder/decoder and RoHS compliance further enhance its appeal in modern electronics design. Whether used in industrial automation, telecommunications, consumer electronics, or embedded systems, the XR17D152IMTR-F offers a robust and efficient communication solution, ensuring seamless data transfer and reliability.



.png)
















.png?x-oss-process=image/format,webp/resize,h_32)










