Step into ZEKEEP Technology, Explore the Full Chain of "Robotics + Industrial AI," and Master Smart Manufacturing!
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Educational Tour Background and Objectives


Relying on Foshan ZEKEEP Technology Co., Ltd.'s technical accumulation and industrial practice in the field of industrial intelligence, this educational tour focuses on the core track of "Robotics + Industrial AI." By stepping out of the classroom and into a real tech enterprise, the participants aim to achieve three major goals:


Cognitive Goal

Intuitively understand the entire process of industrial robots from R&D and production to implementation. Break the "conceptual cognition" of smart manufacturing and establish a concrete perception of real industrial scenarios.



Capability Goal

Master the fundamental logic combining robotics and AI through hands-on sessions such as AI data collection and creative project building, exercising engineering thinking and practical abilities.



Growth Goal

Understand the job demands and career development paths in the industrial intelligence sector. Inspire an interest in tech innovation, build an understanding of "using technology to solve real production problems," and establish an engineering and systematic way of thinking.





Enterprise Profile


Foshan ZEKEEP Technology Co., Ltd. is a tech enterprise deeply engaged in the field of industrial intelligence. Operating under the philosophy of "Tech innovation empowers smart manufacturing, ingenious and simple application, high efficiency boosts production," the company focuses on the application of light industrial robots. Centered around robotics and Industrial AI technology, ZEKEEP targets the pain points of the manufacturing industry, providing a one-stop intelligent service covering "raw materials inbound - AI processing - AI inspection - AI warehousing - finished products outbound."


Foshan Wanyang Sci-Tech Innovation Park


The enterprise insists on full-chain independent research and development, covering core technologies such as underlying operating systems and embedded hardware. It not only supports AI retrofitting for older equipment but can also build entirely new intelligent operational chains. Utilizing safe, easy-to-use, stable, and precise solutions, ZEKEEP breaks down the cost barriers of intelligent factory transformation. By leveraging robotics and AI technology to liberate human labor from repetitive tasks, it enhances efficiency and empowers the manufacturing sector.



Educational Tour Itinerary

Schedule at a Glance


A Full-Day Immersive Tech Journey

09:30-09:45

Gathering and Ice-breaking

(Location: Enterprise Lobby)

09:50-11:00

Enterprise Tour:

Exploring the Full Chain of Industrial Intelligence

11:00-12:00

Theme Sharing: 

Real-world Applications of Robotics + Industrial AI

12:00-13:30

Lunch and Rest

13:30-15:00

Practical Session I:

 Robot AI Model Training & Data Collection Experience

15:00-16:30

Practical Session II:

 Tech Creative Project Production and Debugging

16:30-17:00

Summary, Sharing, and Return


09:30-09:45 Gathering and Ice-breaking



All participants gather in the enterprise lobby for the opening ceremony. We will introduce the tour's schedule and safety guidelines, followed by a group photo to officially kick off the educational journey.


Opening Ceremony Group Photo


Design Highlight:

Eliminate unfamiliarity through a relaxed ice-breaking session. Using the tech display wall in the lobby as a medium, we will provide a preliminary introduction to the enterprise's development history and core technology directions, laying the cognitive foundation for the subsequent activities.


09:50-11:00  Enterprise Tour



Segment 1: Robot Production Workshop Tour (Core product: ZEKEEP Technology's self-developed light industrial robotic arm)


Follow our engineers to visit the robotic arm production, assembly, and testing stations. Closely observe the entire process of hardware assembly, calibration, debugging, and factory inspection, learning how an industrial robot is born from parts to a finished product.


Engineers explaining the birth process of industrial robots


Explanation Key Points:

Introduction to the core components of a robotic arm (joint modules, control systems, end effectors), industrial-grade design standards, and the advantages of the enterprise's self-developed hardware, helping participants understand "why industrial robots are stable and reliable."


Segment 2: Enterprise Roles and Occupational Scenarios Introduction


Step into the R&D room, testing room, and project docking room to observe the daily work scenarios of engineers. Enterprise technical staff will introduce role divisions (hardware engineers, algorithm engineers, project implementation engineers, etc.), job contents, and skill requirements.

Students observing and experiencing the work environment on-site


Explanation Key Points:

Use real cases to illustrate how different roles collaborate to complete industrial intelligence projects, helping participants understand the career development paths in the sector and establishing a concrete cognition of engineering roles.


11:00-12:00  Theme Sharing



Real-world Applications of Robotics + Industrial AI


Theme 1: What problems can industrial robots solve?

Taking real factory scenarios as examples, we will explain the application of robotic arms in AI sorting, part handling, product inspection, and material loading/unloading. By comparing the efficiency and precision differences between traditional manual labor and robot operations, students will understand "how robots liberate repetitive labor."


ZEKEEP robotic arm application in loading and unloading


Theme 2: How do robots integrate with AI models?

Taking the enterprise's self-developed AI vision solution as an example, we will deconstruct the complete logic of "visual recognition - data processing - robotic arm execution." Combined with product displays, we will explain the implementation of technologies like ROS2 and YOLO in industrial scenarios, helping participants understand "how AI makes robots smarter."


Students learning robotic arm principles hands-on


12:00-13:30 Lunch and Rest



Dine at the enterprise's partner restaurant. During this time, participants can share their morning tour experiences in the rest area, and engineers will be available for relaxed Q&A interactions.


13:30-16:30  Practical Session



Practical Session I: Robot AI Model Training · Data Collection Experience


Led by enterprise engineers and using the ZEKEEP industrial robotic arm as the medium, participants will learn the basic processes of AI model training, focusing on data collection for AI visual recognition:


1.Basic Explanation:

Explain the "importance of data" in AI model training, along with the standards, specifications, and precautions for AI data collection in industrial scenarios.


Engineers explaining basic theories


2.Hands-on Collection:

Work in groups using robotic arms and vision modules to complete multi-angle, multi-scenario data collection of target objects, laying the foundation for subsequent model training. Engineers will provide full-process guidance to solve practical issues.


Engineers guiding students to operate the robotic arms


Design Highlight:

Conduct practical operations with authentic industrial-grade equipment, allowing participants to experience the most fundamental and critical part of industrial AI projects and understand that "data is the foundation of AI models."


Practical Session II: Tech Creative Project Production and Debugging


Themed "Robotics + AI Basic Applications" and combining the robotic arm principles and AI data collection knowledge learned in the morning, participants will work in groups to create simple tech creative projects, with engineers providing technical support.


1.Scheme Conception:

Combine basic robotic arm functions with foundational AI vision logic to design a simple creative project (e.g., simple sorting, object recognition, and grasping).


2.Hands-on Production:

Use the robotic arms, electronic components, and development tools provided by the enterprise to complete the assembly, wiring, and basic debugging of the project.


Students creating tech creative projects


3.Project Debugging

Under the guidance of engineers, solve problems encountered during debugging, complete functional verification of the project, and experience the engineering process "from idea to realization."


Students controlling the robotic arm to solve problems


Design Highlight:

Combine theory with practice using lightweight, easy-to-implement creative projects. This allows participants to experience a simplified workflow of industrial projects, exercising their hands-on and problem-solving skills.


16:30-17:00 Summary, Sharing, and Return 



Participants will share their takeaways and insights from this educational tour. Engineers will review and comment on the creative projects and award commemorative certificates to the participants. Afterward, everyone will gather for the return journey.


Students sharing their tour takeaways and insights


Through sharing and feedback, we will consolidate the core knowledge of the tour and strengthen participants' understanding of industrial intelligence. The commemorative certificates will serve as a perfect conclusion to this educational journey.