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Morse Microelectronics collaborates with Chengdu Huilite to revolutionize IoT connectivity through Wi Fi HaLow

Post on Jan 01,1970

Morse Microelectronics collaborates with Chengdu Huilite to revolutionize IoT connectivity through Wi Fi HaLow This key partnership drives the development of next-generation remote, high-speed, and low-power IoT solutions across industries On June 12, 2025, Beijing, China, Sydney, Australia, and Irvine, California, USA - Morse Micro, a leading global supplier of Wi Fi HaLow chips, announced today that it has established a partnership with Heltec Automation in Chengdu to accelerate the launch of Wi Fi HaLow devices and revolutionize IoT connectivity. Chengdu Huilite has successfully integrated Morse Microelectronics' MM6108 Wi Fi HaLow SoC into a set of five innovative products, aiming to provide unprecedented remote connectivity, high data transmission speed, and excellent energy efficiency. Chengdu Huilite integrates Morse Microelectronics' MM6108 Wi Fi HaLow SoC into a set of five innovative products Michael De Nil, co-founder and CEO of Morse Microelectronics, said, "This collaboration marks an important step forward in advancing IoT connectivity. By embedding our Wi Fi HaLow technology into innovative products from Chengdu Huilit, we will enable developers and end-users to provide robust, secure, and scalable wireless communication technology for a wide range of applications such as smart grids, industrial automation, and smart cities. ” This collaboration perfectly combines Morse Microelectronics' leading wireless connectivity technology with Chengdu Huilit's professional expertise in hardware innovation, creating a new era of connectivity solutions. The new Wi Fi HaLow design of Chengdu Huilite has set new standards in transmission distance, data speed, and energy efficiency, and is expected to have a profound impact in various fields from smart cities, industrial automation, to remote monitoring and intelligent manufacturing. Specifically, Chengdu Huilite has launched a series of new products that fully demonstrate the versatility and powerful features of Wi Fi HaLow technology, including the following five products: Wi Fi HaLow Module (HT-HC01): This compact Wi Fi HaLow module has been optimized and can be easily integrated into various PCB designs, demonstrating excellent RF performance in the 902-928 MHz frequency band. The HT-HC01 module has significant features such as long-distance transmission, multi-channel bandwidth selection, and low power consumption, making it particularly suitable for battery powered devices that require extended sleep mode without sacrificing connectivity. ESP32 Wi Fi HaLow Camera (HT-HC32): This development board is based on the ESP32-S3 MCU equipped with the HT-HC01 module, providing high-speed wireless communication up to 32 Mbps with a transmission distance of over 1 kilometer. At the same time, it is equipped with a 2-megapixel wide-angle camera, advanced image processing functions such as automatic exposure and gain control, and supports Arduino development, integrated SD card storage, and comprehensive connectivity options. HT-H7608 Wi Fi HaLow Router/Gateway: This dual band gateway is designed specifically for applications such as smart manufacturing and smart cities, supporting Wi Fi HaLow and 2.4 GHz networks. Its flexible networking methods (AP, STA, Mesh) and robust hardware design make configuration easy. Users can perform OTA upgrades through a web interface (Web UI) and can connect significantly more devices simultaneously than traditional access points. Raspberry Pi Wi Fi HaLow Camera HAT (Pi CamLow): This dedicated Raspberry Pi HAT integrates a 5-megapixel camera and HT-HC01 Wi Fi HaLow module, enabling fast remote transmission of high-resolution images. Pi CamLow supports dynamic and static image capture, as well as advanced imaging capabilities, opening up new possibilities for the development of Raspberry Pi in remote monitoring and other application areas. Wi Fi HaLow dongle -802.11ah long-distance wireless bridge: This dongle utilizes the HT-HD01 module, supports four bandwidth modes, provides maximum flexibility, and can replace Ethernet in specific situations. Whether paired with HT-H7608 router for star networks or point-to-point communication, this encryption dongle can seamlessly integrate with existing networks. Allen Ma, Business Director of Chengdu Huilite, said, "We are honored to collaborate with Morse Microelectronics. Integrating Wi Fi HaLow technology into our product line not only demonstrates our strong commitment to innovation, but also provides customers with multifunctional and high-performance tools, redefining the infinite possibilities of IoT deployment. ” About Morse Microelectronics Morse Microelectronics is a leading fabless semiconductor company focused on Wi Fi HaLow technology, bringing revolutionary changes to IoT connectivity with award-winning innovative technology. Morse Microelectronics, headquartered in Sydney, Australia, has global offices in the United States, Chinese Mainland, Taiwan, China, India, Japan and the United Kingdom, and is committed to promoting the widespread application of the next generation of long-distance, low-power Wi Fi HaLow solutions. The company's cutting-edge MM6108 and newly launched MM8108 and MM8102 chips provide the fastest, smallest, lowest power consumption, and longest transmission distance Wi Fi HaLow connection on the market. Morse Microelectronics' Wi Fi HaLow technology is flourishing globally, enabling devices to transmit up to 10 times longer distances and cover up to 100 times the coverage area of traditional Wi Fi networks. This breakthrough is profoundly transforming IoT connectivity in many fields such as smart homes, industrial automation, and smart cities. About Chengdu Huilite Chengdu Huilide Automation Technology Co., Ltd. is a global leader in developing cutting-edge IoT solutions. With a high emphasis on innovative design and advanced RF performance, we provide multifunctional hardware products to meet the growing demands of modern connectivity and ensure outstanding performance in a wide range of applications.

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