
ZWHAND - B06 Dexterous Hand
B06 adopts a highly integrated design to achieve miniaturization, lightweight, and anthropomorphism. It uses 6 built-in motors and a linkage mechanism to achieve flexible control of the knife.
Hall B · Booth B403
Shenzhen Zhaowei Mechanical and Electrical Co., Ltd. was established in 2001. It is a company specializing in micro transmission and micro drive systems. and a national high-tech e…

COMPANY PROFILE
Shenzhen Zhaowei Mechanical and Electrical Co., Ltd. was established in 2001. It is a company specializing in micro transmission and micro drive systems. and a national high-tech enterprise that develops and manufactures electronic control systems. ZWHAND dexterous hand relies on Zhaowei Electromechanical's profound accumulation in the field of micro motors and gear transmission for more than 20 years, with the goal of creating a system "similar to human hands, but beyond human hands" to promote the evolution of the robot's execution end. Relying on the high load of the B06 series, the high dexterity of the B20 and the high bionic characteristics of the B21, ZWHAND has built a product matrix covering diverse scenarios. Through core capabilities such as high degree of freedom, long life, multi-dimensional sensing and intelligent control, ZWHAND gives robots human-like operation and interaction capabilities.
MAIN PRODUCTS

B06 adopts a highly integrated design to achieve miniaturization, lightweight, and anthropomorphism. It uses 6 built-in motors and a linkage mechanism to achieve flexible control of the knife.

The 21-degree-of-freedom bionic dexterous hand adopts a human hand bionic design, and its size is close to that of a human hand. The whole machine weighs 700g, and has significant lightweight advantages. The five fingers can highly reproduce complex movements such as flexion and extension, pinching, grasping, and turning objects. Tactile sensors are integrated throughout the entire area to support precise force control feedback. The product takes into account both fine operation and heavy-load requirements, with a fingertip output force of 15N and a grip force of 5kg, making it suitable for various grabbing operations. The equipment has a cycle life of up to 1 million times and operates stably. Equipped with a variety of communication interfaces, it facilitates secondary development and is suitable for scenarios such as humanoid robots, industrial assembly, intelligent interaction, and rehabilitation prosthetics.