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Workshop intelligent handling robot

Product Group: Workshop Intelligent Portable Robot (AGV […]

Product details

Product Group: Workshop Intelligent Portable Robot (AGV)

Product Name: Magnetic Stripe Navigation AGV

Model: JMAGV-20

Introduction:

Guidance method:

Electromagnetic induction type: also known as our most common magnetic strip navigation, by sticking magnetic tape on the ground, the AGV automatic handling vehicle is equipped with electromagnetic sensors at the bottom of the vehicle to sense the ground magnetic strip landmarks and achieve automatic transportation of goods. The station definition is based on the different arrangement and combination of magnetic strip polarities.
Laser induction type: By using a laser scanner to recognize several fixed markers set within its activity range, its coordinate position is determined, thereby guiding the operation of the AGV.
RFID induction type: By using RFID tags and reading equipment to automatically detect the coordinate position, the AGV car can operate automatically. The station definition can be arbitrarily defined through chip tags, making it easy to complete even the most complex station settings.

Advantages:

1. High degree of automation – controlled by computers, electrical control equipment, magnetic induction, laser reflector, etc. When auxiliary materials are needed in a certain section of the workshop, the staff inputs relevant information to the computer terminal, which then sends the information to the central control room. Professional technicians issue instructions to the computer, and with the cooperation of the electrical control equipment, this instruction is finally received and executed by the AGV – sending the auxiliary materials to the corresponding location.

2. Charging automation – When the AGV car is about to run out of battery, it will send a request command to the system, requesting charging (usually set by technical personnel in advance), and automatically “queue up” at the charging location after the system allows it. In addition, the battery life of AGV cars is very long (more than 2 years), and they can work for about 4 hours every 15 minutes of charging.

3. Aesthetics – enhance the viewing experience, thereby enhancing the image of the enterprise.

4. Safety – Vehicles driven by humans whose driving path cannot be determined. The guidance path of AGV is very clear, thus greatly improving safety;

5. Cost control – The funding for AGV systems is short-term, while employee salaries are long-term and will continue to increase with inflation;

6. Easy to maintain – infrared sensors and mechanical anti-collision can ensure that AGVs are protected from collisions and reduce failure rates;

7. Predictability – AGVs will automatically stop when encountering obstacles on their driving path, while vehicles driven by humans may have biases in their judgment due to human factors;

8. Reduce product damage – can reduce damage to goods caused by non-standard manual operations;

9. Improving logistics management – due to the inherent intelligent control of the AGV system, it can make the placement of goods more orderly and the workshop cleaner;

10. Smaller site requirements – AGVs require much narrower tunnel widths than traditional forklifts. At the same time, for autonomous AGVs, they can accurately load and unload goods from conveyor belts and other mobile devices;

11. Flexibility – AGV systems allow for maximum changes in path planning;

12. Scheduling capability – Due to the reliability of AGV systems, AGV systems have highly optimized scheduling capabilities;

13. Process flow – AGV system should also be a part of the process flow, as it is the link that connects numerous processes together;

14. Long distance transportation – AGV systems can effectively carry out point-to-point transportation, especially suitable for long-distance transportation (over 60 meters);

15. Special working environment – dedicated systems can work in environments where personnel are unable to access.

Basic labor can be achieved by AGV handling robots.

Image display

Video Introduction

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