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Summary of Contents for Ruida Technology RDWelder-SW
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The manual is about system operation. ➢ Read the manual carefully to ensure the correct connection between gas and electricity. RDWelder-SW Handheld Laser Welding System User Manual Shenzhen Ruida Technology Co., Ltd Address: 202-203,B-Block,Technology Building, 1057 Nanhai Avenue,Nanshan District,, SHENZHEN, CHINA Tel: 0755--26066687 Fax: 0755--26982287 E-mail: sales@rd-acs.com...
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The loss caused by natural forces makes the machine in motion dangerous, the user is responsible for designing an effective error handling and safety protection mechanism in the machine, and Ruida Technology has no obligation or responsibility to be responsible for the consequential or corresponding losses caused by it.
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CERTIFICATION STATEMENT CE Certification statement This product has passed the European Union CE (CONFORMITE EUROPEENNE) safety certification, has passed the corresponding conformity assessment procedures and the manufacturer's declaration of conformity, and complies with the relevant EU directives. ROHS Certification statement This product has passed the "Restriction of Hazardous Substances"...
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SAFETY INFORMATION Please make sure that the operation is correct and the method is safe when using the system. Some signs or words will be used to remind you of dangerous matters and some important information. Danger: It indicates a serious danger. In the process of using, if improper operation or wrong usage method may cause serious injury or even death to the personnel, please do not use it easily until the operation method is correct and the usage method is correct.
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Ruida immediately. RDWelder-SW handheld laser welding system shipping list is shown below: (as the product is updated constantly, the accessories received may be different from this manual)
1.1 Handheld Laser System Introduction The handheld laser welding system is a controller developed by Ruida Technology for fiber laser welding. It supports double galvanometer motor control, different swing types, automatic wire feeding, slow rise and fall of laser power, gas on in advance, gas off delay. The system is easy to operate and can display real-time input and output IO status, alarm information and motion status, etc.
2.1 System wiring The following figure is the wiring diagram of the entire system. For system wiring, please refer to this diagram, and for detailed interface definitions, please refer to the relevant chapters. +24V Power supply PGND Power Senser U Disk GATE Extern Start bottom Argon Alm input...
2.2 Power Interface Power interface is a 3 PIN green terminal. It is a power interface supplied for the mainboard from the external with a voltage of DC 24V (DC 24V). Chart 2.2 shows the definition of power interface. Chart 2.2 Signal Definition Description...
Chart 2.3 shows the definition of HMI interface. Chart 2.3 Signal Definition Description Panel Power supply +24V Power supply, 500mA Serial communication TXD signal HMI sending end HMI receiving end Serial communication RXD signal — PGND External shield ground Generally connected to ground or the case 2.4 Laser Source Interface Laser source interface is a 6 PIN green terminal.
signal — 2.5 Galvanometer Interface Chart 2.5 shows the definition of Digital IO interface. Mainboard provides a galvanometer interface, compatible with the general digital galvanometer interface on the market. Chart 2.5 shows the definition of galvanometer interface. Chart 2.5 Signal Definition Description Clock signal negative...
terminal Galvanometer X XChannel+ signal positive terminal Galvanometer Y YChannel+ signal positive terminal 2.6 Digital IO Interface The mainboard provides a general IO interface. OC output adopted in all output IO can directly drive the relay, and the maximum current can reach 500mA. The wiring diagram is shown as follows: Figure 2.5 Output relay wiring diagram Chart 2.6 shows the definition of Digital IO interface.
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Chart 2.6 Signal Definition Description — RESERVE Reserve — RESERVE Reserve — RESERVE Reserve Generally connected to the start button External start button input switch of the welding head Argon alarm input Cool water flow alarm input — — RESERVE Reserve Motor wire feeding driver common —...
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be in contact with safety clamp. — RESERVE Reserve Motor wire feeding direction signal is — DIR- negative Motor wire feeding pulse signal is — PUL- negative — RESERVE Reserve — RESERVE Reserve +24V Maximum output current is 1A +24V power output —...
3.1 HMI Function Instruction Handheld laser welding control system operating panel (“HMI” for short) adopts a 7-inch configuration TFT touch screen with beautiful interface and convenient operation. It can set laser related parameters. On the main interface, the input and output IO status, alarm information and motion state can be displayed in real time. HMI main interface is shown in the figure below: Figure 3.1 HMI main interface Swing start: used to enable motor swing or stop it...
3.2 HMI Operation Introduction 3.2.1 Parameter Setting Parameter setting includes welding parameter, system parameter and advanced parameter. Welding parameter: used to set the parameters related to laser and gas during welding. Version No.: Different version can set multiple sets of welding parameters. Power: Used to set the peak power of laser during welding PWM frequency: used to set the frequency of laser PWM modulating signal PWM pulse width: used to set the pulse width of laser PWM modulating signal...
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Advanced parameter: Used to set advanced parameter Swing type: used to set swing types Maximum frequency: set the maximum frequency of laser PWM signal. When PWM frequency set by welding parameter exceeds the maximum frequency, the frequency will be limited to the maximum value. Maximum diameter: used to set the maximum diameter during swing.
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Thank you for using Shenzhen Ruida Technology Co., Ltd. products! All parts of this note, the property rights of the works belong to Shenzhen Ruida Technology Co., Ltd., without the permission of the Company, no unit or individual may reproduce, copy or...
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