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SWZ-10H-A AGV trolley – Smart EMS factory partner
SWZ-10H-A AGV trolley – Smart EMS factory partner
SWZ-10H-A AGV trolley – Smart EMS factory partner
SWZ-10H-A AGV trolley – Smart EMS factory partner
SWZ-10H-A AGV trolley – Smart EMS factory partner
SWZ-10H-A AGV trolley – Smart EMS factory partner
SWZ-10H-A AGV trolley – Smart EMS factory partner
SWZ-10H-A AGV trolley – Smart EMS factory partner
SWZ-10H-A AGV trolley – Smart EMS factory partner
SWZ-10H-A AGV trolley – Smart EMS factory partner
SWZ-10H-A AGV trolley – Smart EMS factory partner
SWZ-10H-A AGV trolley – Smart EMS factory partner
SWZ-10H-A AGV trolley – Smart EMS factory partner
SWZ-10H-A AGV trolley – Smart EMS factory partner
SWZ-10H-A AGV trolley – Smart EMS factory partner
SWZ-10H-A AGV trolley – Smart EMS factory partner
SWZ-10H-A AGV trolley – Smart EMS factory partner
SWZ-10H-A AGV trolley – Smart EMS factory partner
SWZ-10H-A AGV trolley – Smart EMS factory partner
  • SWZ-10H-A AGV trolley – Smart EMS factory partner
  • SWZ-10H-A AGV trolley – Smart EMS factory partner
  • SWZ-10H-A AGV trolley – Smart EMS factory partner
  • SWZ-10H-A AGV trolley – Smart EMS factory partner
  • SWZ-10H-A AGV trolley – Smart EMS factory partner
  • SWZ-10H-A AGV trolley – Smart EMS factory partner
  • SWZ-10H-A AGV trolley – Smart EMS factory partner
  • SWZ-10H-A AGV trolley – Smart EMS factory partner
  • SWZ-10H-A AGV trolley – Smart EMS factory partner
  • SWZ-10H-A AGV trolley – Smart EMS factory partner
  • SWZ-10H-A AGV trolley – Smart EMS factory partner
  • SWZ-10H-A AGV trolley – Smart EMS factory partner
  • SWZ-10H-A AGV trolley – Smart EMS factory partner
  • SWZ-10H-A AGV trolley – Smart EMS factory partner
  • SWZ-10H-A AGV trolley – Smart EMS factory partner
  • SWZ-10H-A AGV trolley – Smart EMS factory partner
  • SWZ-10H-A AGV trolley – Smart EMS factory partner
  • SWZ-10H-A AGV trolley – Smart EMS factory partner
  • SWZ-10H-A AGV trolley – Smart EMS factory partner
  • SWZ-10H-A AGV trolley – Smart EMS factory partner

SWZ-10H-A AGV trolley

PCB Smart Factory

AGV specially designed for PCB industry

AGV Robot PCB Moving: Streamlining Your Manufacturing Process

In today's fast-paced manufacturing industry, efficiency is key. One way to achieve this is through the use of AGV (Automated Guided Vehicle) robots. These robots are designed to move materials and products around a factory floor without the need for human intervention. One specific application of AGV robots is in the movement of PCBs (Printed Circuit Boards).

AGV robots are equipped with sensors and software that allow them to navigate around obstacles and follow pre-programmed paths. This makes them ideal for moving PCBs from one station to another in a manufacturing process. By using AGV robots, manufacturers can reduce the risk of damage to the delicate PCBs, as well as increase the speed and accuracy of the production process.

In addition to the benefits of using AGV robots for PCB movement, there are also environmental benefits. AGV robots are powered by rechargeable batteries, which means they produce zero emissions. This is a significant advantage over traditional forklifts and other material handling equipment that rely on fossil fuels.

Overall, the use of AGV robots for PCB movement is a smart investment for any manufacturing facility. By streamlining the production process, reducing the risk of damage to delicate components, and improving environmental sustainability, AGV robots are a win-win solution for manufacturers looking to stay ahead of the competition.

Description

AGV is: Automated Guided Vehicle referred to as AGV. The most common applications currently are: AGV handling robot or AGV trolley. The way is magnetic strip guidance, laser guidance, RFID guidance and so on. The magnetic strip guidance method is the most commonly used and the lowest cost method, but the site setting has certain limitations and has a certain impact on the site decoration style; the laser guidance cost is the highest and the site requirements are relatively high, so it is generally not used; the RFID guidance cost is moderate, Its advantages are high guidance accuracy, more convenient site settings to meet the most complex site layouts, and no impact on the overall decoration environment of the site. Secondly, the high security and stability of RFID is also not available in magnetic stripe navigation and laser navigation.

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  • High degree of automation: controlled by computer, electronic control equipment, magnetic induction SENSOR, laser reflector, etc. When a certain part of the workshop needs auxiliary materials, the staff will input relevant information to the computer terminal, the computer terminal will then send the information to the central control room, and professional technicians will issue instructions to the computer. With the cooperation of electronic control equipment, this The instruction is finally accepted and executed by the AGV – the auxiliary materials are sent to the corresponding location.

  • Charging automation: when the power of the AGV car is about to run out, it will send a request command to the system to request charging (generally technicians will set a value in advance), and automatically “queue” at the charging place after the system allows it Charge. In addition, the battery life of the AGV car is very long (more than 2 years), and it can work for about 4 hours per 15 minutes of charging.

  • Beautiful: improve the viewing degree, thereby improving the image of the enterprise.

  • Safety: the driving path of a human-driven vehicle cannot be determined with certainty. However, the guidance path of the AGV is very clear, so the safety is greatly improved;

  • Cost control: the capital investment of the AGV system is short-term, while the wages of employees are long-term and will continue to increase with inflation;

  • Easy maintenance: infrared sensors and mechanical anti-collision can ensure that the AGV is free from collision and reduce the failure rate;

  • Predictability: AGV will automatically stop when it encounters obstacles on the driving path, while human-driven vehicles may have biased judgments due to human ideological factors;

  • Reduce product damage:  can reduce damage to goods caused by irregular manual operations;

  • Improve logistics management: due to the inherent intelligent control of the AGV system, the goods can be placed more orderly and the workshop more tidy;

  • Smaller site requirements:  AGVs require much narrower roadway widths than traditional forklifts. At the same time, for free-running AGVs, it can also accurately load and unload goods from conveyor belts and other mobile equipment;

  • Flexibility: AGV system allows maximum changes to path planning;

  • Scheduling capability: due to the reliability of the AGV system, the AGV system has a very optimized scheduling capability;

  • Process flow: AGV system should and must be part of the process flow, it is the link that connects many processes;

  • Long-distance transportation: AGV system can effectively carry out point-to-point transportation, especially suitable for long-distance transportation (greater than 60 meters);

  • Special working environment: the special system can work in an environment that is inconvenient for personnel to enter.

Parameter

Model

SWZ-10H-ANavigationMagnetic stripe navigation

Weight

30KGLoad100KG

Speed

25m/minTurning circle0.8m

Precision

±2cmLine way

Single or circle line

Type Y lineOptionalType of batteryLi battery 24V30AH
Endurance≥10hStand-by time

≥200h

Charge

6hCharge mode

Manually charge the car directly

Automatic charging pile (optional)

Dimension(mm)700*500*500(customizable)Place dimension(mm)600*500*40

Screen

HD 4.3inch Touch screenOperation modeManual&Automatic
Position points20Position cards

RFID  20

DriveBrushless motor DIP controlSecurity

Ultrasonic obstacle

Bumper strip

Remote callOptionalBattery status

Power alarm


 

Client Case

Contact

Welcome to contact and get more information:

Email: wayne@smthelp.com

Skype:waynesmt@outlook.com

Whatsapp/WeChat: +86 15817498429

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