Tiny Mighty aspires to create outstanding products in the field of core components for high-power density robots, embodying the ultimate combination of "compactness + robustness." The harmonic reducer series has reduced volume and weight by 30%-50% compared to similar products and increased torque output by over 2 times compared to products of the same size. Moreover, Realman's RM65-B ultra-lightweight humanoid robotic arm, equipped with its joint module, has an average Mean Time Between Failures (MTBF) certified at 30,000 hours. Its technical parameters, such as ul-tra-high load-to-weight ratio, lead the industry by a significant margin.
Tiny Mighty aspires to create outstanding products in the field of core components for high-power density robots, embodying the ultimate combination of "compactness + robustness." The harmonic reducer series has reduced volume and weight by 30%-50% compared to similar products and increased torque output by over 2 times compared to products of the same size. Moreover, Realman's RM65-B ultra-lightweight humanoid robotic arm, equipped with its joint module, has an average Mean Time Between Failures (MTBF) certified at 30,000 hours. Its technical parameters, such as ul-tra-high load-to-weight ratio, lead the industry by a significant margin.
Tiny Mighty aspires to create outstanding products in the field of core components for high-power density robots, embodying the ultimate combination of "compactness + robustness." The harmonic reducer series has reduced volume and weight by 30%-50% compared to similar products and increased torque output by over 2 times compared to products of the same size. Moreover, Realman's RM65-B ultra-lightweight humanoid robotic arm, equipped with its joint module, has an average Mean Time Between Failures (MTBF) certified at 30,000 hours. Its technical parameters, such as ul-tra-high load-to-weight ratio, lead the industry by a significant margin.
The D435 is a 3D camera that integrates depth and RGB color sensors as well as VCSEL projectors. It provides a global shutter sensor and a large lens, with excellent low-light performance and a powerful RealSense module D430.
DaBai DCW is a binocular structured light camera with self-developed ASIC chips. It has lower computing power requirements, higher overall performance, high resolution, high frame rate, high precision depth data output and large field angle, allowing obstacle avoidance in a larger field of vision. Its depth image resolution can reach up to 1920 × 1080 @ 5/10 fps, and its average power consumption is less than 1.2 W, enabling robots to achieve perception, obstacle avoidance, navigation and other functions.
DaBai DCW is a binocular structured light camera with self-developed ASIC chips. It has lower computing power requirements, higher overall performance, high resolution, high frame rate, high precision depth data output and large field angle, allowing obstacle avoidance in a larger field of vision. Its depth image resolution can reach up to 1920 × 1080 @ 5/10 fps, and its average power consumption is less than 1.2 W, enabling robots to achieve perception, obstacle avoidance, navigation and other functions.
Hermes The Hermes robot platform is equipped with a navigation and positioning core independently developed by Slam, as well as a 360° LiDAR and two depth camera systems. It has excellent autonomous mobility and stable positioning and navigation capabilities and can independently take elevators to achieve multi-floor accessible mobility.
Yunji Mobile Chassis is a wheeled robot platform with complete and mature perception, cognition and positioning navigation capabilities. It has strong anti-overturning ability, supports in situ rotation, adopts the robot CAN communication protocol and has super-strong positioning and anti-interference capabilities, autonomous path planning, autonomous obstacle avoidance, and multiple secondary research and development support capabilities.
The SFG flexible gripper is an innovative flexible device that mimics starfish style and human hand gripping. It achieves bending deformation through inflation, adaptively wrapping the target object to complete gripping actions and reverse deformation through deflation to complete placement or pre-gripping actions. It has the characteristics of good compatibility, multiple categories, and gentle movements, making it suitable for gripping the most irregular and vulnerable objects.
The collision level can be set by the robotic arm teaching pendant, which is separated into 0 to 8 levels. When powered on, the robotic arm does not enable collision detection by default.The higher the collision level, the more sensitive the detection is, and the easier it is to stop accidental collisions. Users can configure it to meet their specific requirements.