7bot servo 6 degree of freedom robot kit diy
7bot servo 6 degree of freedom robot kit diy
7bot servo 6 degree of freedom robot kit diy
7bot servo 6 degree of freedom robot kit diy
7bot servo 6 degree of freedom robot kit diy

7bot servo 6 degree of freedom robot kit diy

Negotiable

Min.Order:1

Supply Ability:
1000 per Month
Payment Terms:
T/T Credit Card

Zhengzhou Ledy Optical-Electrical Technology Co., Ltd.

Business Type: Government ministry/Bureau/Commission
Main Products: , , ,

Product Details

Inno-5 7bot servo 6 degree of freedom robot kit diy

 

Product Description:

Inno-5 diy robot kit can make any movement in three dimensions. The product is reliable because the machine and motor adopt all metal design. It has the merits of easy development.The product offers easy-to-use upper control software and vision as well as simple artificial intelligence API. The product can be changed into two-arm humanoid robot and mobile robot through mobile platform.

 

Product Features:

Vision: have visual processing ability, can judge object color, position and so on, provide two-dimensional code solution.

Learning: have ability to record paths and repeat the path and actions demonstrated by the user.

Thinking: specific and simple artificial intelligence can be identified and judged.

Touch: have the ability of force perception and increase the safety of operation.

Development methods

7Bot control GUI interface control

Teaching controlRemote control

C/C++ machine vision and ai API

 

Specifications:

Number of Axles

6

Weight

2.5KG

Burden

500g

Maximum distance

434mm

Speed

0.17sec/60o

Power

6V10A DC

Communication protocol

Serial port/

 

7Bot Arm provides a variety of control modes, including gesture control, web page control, and computer vision to realize intelligent control, which can cover different demands of different people.

 

Specifically, added the robot vision function, which can be used to play Mole game, play chess with others, sort on assembly line, solve rubiks cube and other intelligent applications.

Robot arm have the software simulation environment. The model can be one-to-one corresponding with the real robot, or the path can be planned in the software environment and then downloaded to the real environment to reproduce.
Added support for open source robotic operating system ROS, advanced users can use ROS to make more complex work for robotic arms and mobile platforms.

With the addition of teach-in function, the user can directly drag the arm for trajectory planning, then record playback, and control the arm movement without any programming.

(Teaching is a common operation method on industrial robot arms. Generally, due to the large volume and weight of industrial robot arms, the teaching of industrial robot arms requires controlling the position of the robot arm to the specified point on the teach pendant. Record and then plan the trajectory between multiple points)

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