Microgate Responds to Humanoid Robot Query, Builds Biomimetic Dexterous Hand Lab with Guangming Lab
On September 28, Microgate Technology answered investor questions about humanoid robots on an investor interaction platform.
Microgate said it formed a joint laboratory with Guangming Laboratory in 2025 to develop micro drive joints and biomimetic dexterous hands. The partners aim to combine their respective technical expertise and industrial conversion strengths to accelerate R&D and application of related technologies.
The project remains in R&D and commercial incubation and has not yet made a material contribution to the company's operating results. Microgate said future progress should be judged by its official disclosures.
Microgate Technology started as an electronic components company. Its main products include inductors, filters and RF devices. The micro drive joint and biomimetic dexterous hand direction corresponds to core components in the dexterous hand supply chain. A dexterous hand must integrate micro motors, reducers, sensors and control algorithms. Among these, the micro drive joint is a key link that determines finger movement precision and force output. Microgate's accumulated experience in electronic components may be relevant to micro motors, sensors or control circuits in drive joints.
Guangming Laboratory is a Shenzhen-based research institution led by an enterprise and has positioned itself in artificial intelligence and robotics. Under the joint laboratory, the company provides components and manufacturing capabilities while the laboratory provides R&D resources. This model is relatively common in the dexterous hand sector. The project is currently in R&D and commercial incubation and has not yet made a material contribution to the company's operating performance. That statement indicates the product has not entered the volume supply stage.
For a dexterous hand to go from R&D to mass production, it must pass reliability verification, cost control and customer adoption. The next things to watch are whether this joint laboratory can bring micro drive joints to a mass-producible level and whether any dexterous hand manufacturer will be willing to adopt Microgate's components. The dexterous hand is often regarded as one of the most complex and costly modules in humanoid robots. It combines precision mechanics, sensing and control, and it directly affects how well a robot can manipulate objects.
For component suppliers, entering this chain requires not only technical capability but also consistent quality and cost competitiveness. Microgate's disclosure shows it is exploring the opportunity, but the project is still far from contributing revenue. Investors may continue to focus on the pace of R&D, potential customers and whether the joint laboratory can produce products that meet volume production standards. The company has not disclosed a timetable for mass production or named customers. As a result, the project remains an early-stage option rather than a near-term earnings driver.
At the investor interaction, Microgate did not announce orders or revenue targets. It emphasized that progress should be based on official disclosures. This cautious wording is typical for component makers entering new robotics markets. The dexterous hand supply chain includes motors, speed reducers, sensors, drive control and software. Each part must meet stringent requirements for size, weight, durability and response speed. Micro drive joints, in particular, need to deliver precise motion and sufficient force in a small package. That makes them a technically demanding product. Microgate's background in inductors, filters and RF devices may provide some manufacturing and miniaturization know-how, but the company will still need to prove its drive joint technology with dexterous hand makers. Guangming Laboratory's involvement adds R&D resources and robotics expertise. The joint lab model can help a component company test new designs and move them toward commercial use. However, collaboration alone does not guarantee adoption. Mass production requires stable yields, testing standards and supply chain readiness. The dexterous hand market is still emerging, with many humanoid robot developers testing different designs. Component suppliers face an uncertain timeline. Microgate's project is therefore at an early stage. If the joint lab achieves mass-production capability and wins customers, it could become a growth driver. Until then, it remains a research and incubation effort.