Home / Technology / Apptronik Secures $520M for Humanoid Robot Future
Apptronik Secures $520M for Humanoid Robot Future
11 Feb
Summary
- Apptronik secured $520 million in funding backed by Google and Mercedes-Benz.
- The company aims to commercialize its Apollo humanoid robot for industrial use.
- The funding will support new robot versions, production, and workforce expansion.

Humanoid robotics innovator Apptronik announced a substantial funding achievement, securing $520 million. This significant investment round was bolstered by prominent investors such as Google and Mercedes-Benz. The company, based in Austin, Texas, is strategically positioning itself to commercialize its advanced humanoid robots, primarily targeting industrial sectors.
The newly acquired capital is earmarked for crucial developmental initiatives. These include refining existing versions of its Apollo robot, accelerating production capabilities, and expanding its employee base. Apptronik also intends to establish a dedicated robot training and data collection facility within Austin, alongside a new office in California.
Apptronik anticipates a notable increase in the deployment of humanoid robots within factories and warehouses in the upcoming years. This trend aligns with a broader industry race to develop and integrate human-like robots for industrial tasks, with competitors like Figure AI also making significant strides.
The company's flagship Apollo robot features both legs and wheels, enabling it to navigate diverse industrial settings. Apptronik highlights that its human-scale robots can readily access existing workstations and shelving. This capability offers the potential to eventually replace certain task-specific industrial machinery.
Furthermore, Apptronik is strengthening its collaboration with Google DeepMind. This partnership focuses on developing Gemini-based artificial intelligence models for the Apollo platform. Apptronik contributes essential hardware and real-world training data gathered from its operational deployments, enhancing the robot's intelligence and functionality.




