Sunday Robotics

Sunday develops humanoid robots that handle everyday home tasks. Memo works nonstop on chores like laundry, table clearing, and more to free up time. The company uses real home data to train robots for practical use in busy households. These AI robots learn skills from people to perform reliably.
Summer Robotics

Summer Robotics creates software for robots used in factories and mobility. The software gives robots sharp vision to spot parts no matter the shape, size, material, speed, or light conditions. Robots can track moving items without blur, scan 3D surfaces down to 100 microns, and adjust actions on the fly. This cuts the need for fixtures and boosts precision in manufacturing tasks. Their laser-event tech reacts fast like animals to handle tough real-world setups.
Lymow

Lymow develops intelligent robotic lawn mowers designed to handle real, complex lawns with minimal effort from the user. Its robots manage large areas, steep slopes, and uneven terrain while delivering consistent, precise cuts. The products replace manual mowing with automated yard care that runs on schedules, avoids obstacles, and maintains healthy grass without boundary wires or constant supervision.
iNGage

iNGage builds integrated MEMS sensors that measure motion accurately. The sensors work as gyros and IMUs on a single chip. They enable navigation in places without GPS signals, like indoors or tunnels.
Products serve industrial robots, autonomous cars, and drones. Tactical-grade performance comes at lower costs than traditional options. This opens use in high-volume markets.
Technology uses patented M&NEMS designs for better sensitivity and size. Sensors detect small changes in speed and direction reliably. Development focuses on scaling production with partners.
FoxEyes

FoxEyes develops robotic surgical equipment and automated components for hospitals and clinics, focusing on safer, more precise spine procedures and pedicle screw placement. Its compact, vision-based systems use artificial intelligence to support surgeons, reduce hardware complexity in the operating room, and improve workflow during spine surgery and other medical procedures. The company builds flexible, user-friendly platforms that integrate with existing systems and help bring advanced automated surgery into everyday clinical practice.
Foxglove

Foxglove builds software tools that help robotics teams understand what their robots are doing in the real world. Engineers use its dashboards to stream, inspect, and replay sensor data, logs, and events from tests or deployments. This makes it easier to find issues, improve performance, and scale robot development across the whole team.
Forterra

Forterra develops hardware and software that turn ground vehicles into self-driving systems for defense and industrial use. It provides navigation, perception, and remote operation so vehicles can move off-road, carry weapons or sensors, and complete hazardous tasks without exposing operators. Its technology integrates into existing fleets, helping contractors and logistics teams upgrade vehicles for complex, contested, or heavy-duty environments.
Formic Technologies

Formic provides robots-as-a-service for manufacturers that need reliable palletizing, packing, and material handling automation without buying equipment. It installs, operates, and maintains robotic systems for a predictable usage-based fee, so factories can increase output, cut manual bottlenecks, and keep lines running with minimal internal engineering effort.
FireDrone

FireDrone develops heat‑resistant autonomous drones that keep operating where standard drones fail. They provide real-time thermal and visual data in burning buildings, smoky sites, and high‑temperature industrial plants. This helps firefighters and industrial teams see hazards, detect hotspots, and inspect assets without shutdowns, improving safety and reducing downtime in extreme environments.
Fauna Robotics

Fauna Robotics develops Sprout, a small humanoid robot designed to operate safely around people in homes, schools, labs, and offices. It offers built-in movement, control, and social behaviors so developers can prototype and test real-world robotics use cases faster. The platform includes modular software, powerful onboard computing, and core APIs to support autonomy and custom applications without starting from scratch.