Morse Microelectronics launches the MM8102 Wi-Fi HaLow chip, driving the new wave of iot
Date:June 16, 2025 Views:12
Source: Morse Microelectronics Author: Morse Microelectronics
Morse Microelectronics launches compliant Wi-Fi HaLow System-on-chip (Soc), ushering in a new era of connectivity in Europe
Ultra-low-power, long-range connectivity is now fully optimized for the European and Middle Eastern markets

Embedded World 2025, Nuremberg, Germany - March 14, 2025 - Morse Microelectronics, the world's leading supplier of Wi-Fi HaLow chips, today announced the launch of the MM8102. This new Wi-Fi HaLow SoC is specifically tailored for large-scale iot deployments in Europe and the Middle East.
As a low-power version of the MM8108, the MM8102 provides 1 MHz and 2MHz bandwidth in 256-QAM modulation, with a throughput of up to 8.7Mbps, far exceeding the speed of the LoRaWAN network.
The MM8102 Wi-Fi HaLow SoC uses the sub-GHz ISM band to provide better coverage and signal penetration than traditional 2.4GHz, 5GHz and 6GHz Wi-Fi networks. The MM8102 sets a new benchmark for high-speed, long-distance iot connectivity in Europe, the Middle East and Africa. In addition, the MM8102 complies with European and global regulatory requirements, simplifying development efforts for iot device manufacturers.
Designed for Europe, built for the future The MM8102 sets a new standard for iot connectivity in Europe, the Middle East and Africa with the following features:
Compliance: Optimized for the Europe, Middle East and Africa market, the MM8102 supports 1MHz and 2MHz bandwidths with 16dBm EIRP, full support for duty cycle limits and compliance with EU wireless connectivity regulations.
Low power operation: Optimized for battery-powered applications, it significantly extends sleep time and consumes very little power in sleep mode.
Delivers the highest performance: Support for 256-QAM modulation and up to 8.7Mbps burst throughput at 2MHz bandwidth, providing superior connectivity performance in Europe, the Middle East and Africa.
Eu duty cycle support: Fully supports burst and average duty cycle, meets EU regulatory requirements, the average throughput of access points at 10% duty cycle is up to 867kbps, and the average throughput of Internet of Things sites at 2.8% duty cycle is up to 243kBps.
Michael De Nil, co-founder and CEO of Morse Microelectronics, said: "With the launch of the MM8102, we are laying a strong foundation for a new era of iot in Europe. The chip is designed for the future, providing robust, long-range, low-power connectivity while ensuring full compliance with European regulations. By unlocking Wi-Fi HaLow's full potential in large-scale iot deployments, it makes it easier for developers to build smarter, more efficient devices that thrive in complex environments. We are excited to make this announcement today at Embedded World, bringing a new era of connectivity to Europe!"
With extremely low power consumption and full Wi-Fi HaLow compliance, the MM8102 is ideal for smart cities, industrial iot, smart metering, point-of-sale, logistics, and large-scale sensor networks. In addition, the MM8102 offers the following features:
About Morse Microelectronics Morse Microelectronics is the leading Wi-Fi HaLow fabless semiconductor company revolutionizing iot connectivity with award-winning technology. Headquartered in Sydney, Australia, with global offices in the United States, China, Taiwan, India, Japan and the United Kingdom, the company is committed to driving the adoption of the next generation of long-distance, low-power Wi-Fi HaLow solutions. Morse Microelectronics' advanced MM6108 and newly launched MM8108 and MM8102 chips offer the fastest, smallest, lowest power consumption and longest transmission range Wi-Fi HaLow connectivity on the market.
Morse Microelectronics' Wi-Fi HaLow technology is gaining momentum around the world, enabling connected devices to travel 10 times farther and cover 100 times the area of traditional Wi-Fi networks. This technological advance is profoundly changing iot connectivity in various areas such as smart homes, industrial automation and smart cities.
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