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User's Manual of RDLC320
Control System
Shenzhen Ruida Technology Co., Ltd.
RuiDa Co., Ltd.

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Summary of Contents for RuiDa RDLC320

  • Page 1 User’s Manual of RDLC320 Control System Shenzhen Ruida Technology Co., Ltd. RuiDa Co., Ltd.
  • Page 2 RuiDa Co., Ltd. is entitled to increase or reduce and modify the shape and functions of this product stated herein as well as amend any documents attached to this product, without prior notification.
  • Page 3: Table Of Contents

    CONTENTS 1. OVERVIEW ............................1 ..........................1 RIEFING ..................1 ESCRIPTION OF ONTROLLER ODEL ................ 1 OMPARISON OF ONTROLLER ERFORMANCE 2. INSTALLATION SIZE ........................3 IO I ................3 NSTALLATION IZE OF NTERFACE OARD .......................... 4 IZE OF ANEL 3. OBJECT PICTURES AND INTERFACES ..................5 IO I ................
  • Page 4: Overview

    1. Overview Briefing RDLC320 system is a new generation system for control of laser engraving and cutting, which is developed by RD Co., Ltd. In addition to high hardware stability, high voltage or static electricity rejection, and friendly man-machine operation, this system is...
  • Page 5 Online Modification Laser Power/Speed Multi-origin Logics Parameter Backup Logics the work time accurate Work time Preview YES ( to 1ms Online Updata Startup Display Online Updata Mainboard Program Motion-axle Soft Spacing Feature Hard Spacing Z-axle Linkage Feeding Feature Null Single direction Single/double direction for option Power-on Resetting Fixed...
  • Page 6: Installation Size

    2. Installation Size Installation Size of IO Interface Board The unit of all sizes is millimeter (mm) and the size accurate to 0.1mm. 4-M3 Stud rivet, 4 high Figure: 2.1-1...
  • Page 7: Size Of Panel

    Size of Panel The unit of all sizes is millimeter (mm) and the size accurate to 0.1mm. 4-M3 Stud rivet, 10 high 4-M3 Stud rivet, 8 high Figure: 2.2-1...
  • Page 8: Object Pictures And Interfaces

    3. Object Pictures and Interfaces Object Pictures of IO Interface Board For more detailed pin description, see the Chapter 4: Description of Interface Signal for IO Board. Figure: 3.1-1 IO Object Picture of Interface Board Object Pictures of Panel Figure: 3.2-1 Object Picture of Panel...
  • Page 9: Description Of Interface Signal For Io Board

    4. Description of Interface Signal for IO Board Interface of Main Power Source CN1 Symbols Definitions OGND 24V power ground (input) +24V 24V power positive (input) No used No used This control system employs single 24 power supply. For a certain margin, it is suggested to select 24V/2A power.
  • Page 10: 3-Axle Spacing And Special Input Interface Cn3/Cn4

    3-axle Spacing and Special Input Interface CN3/CN4 Z-axle spacing and special input interface CN3 (6Pin, 3.81mm space) Symbols Definitions OGND External power ground (output) DrProc Input from protective port. If the machine needs to be protected in the special state (such as door open protection), the protective signal can be inputted from this pin.
  • Page 11: X/Y/Z-Axle Motion Drive Interface

    high-level signal or disconnect the spacing signal so as to make the spacing indicator go out, but when it leaves the spacing, the corresponding indicator will light and the spacing polarity become positive. The mistaken setting of spacing polarity will result that the spacing can’t be detected when the system is reset so as to lead to the collision of axles.
  • Page 12: Water Protect Input Interface Cn5

    LPWM1- Power control interface of laser/laser tube 1. When the laser is the RF laser, this pin will be connected with the laser RF-PWM end; 2. When the laser is a glass tube and the laser power PWM end is low-leveled, this pin will be connected with the laser power PWM end and used to control the power of the laser.
  • Page 13: Examples Of Laser Power Interface

    5 Examples of Laser Power Interface Digital Laser Power Supply of Glass Tube Terminal Digital power source 1 block side L-AN1 LPWM1- Digital power 1 LPWM1+ L-On1+ Low output enable 1 L-On1- Digital power source 2 Laser power ground LGND L-AN2 LPWM2- Digital power 2...
  • Page 14: Rf Co2 Laser

    RF CO2 Laser Terminal block side Laser enable L-IN3 LGND L-AN1 RF laser 1 LPWM1- RF-PWM1 LPWM1+ L-On1+ L-On1- Laser power ground LGND L-AN2 RF laser 2 LPWM2- RF-PWM2 LPWM2+ L-On2+ L-On2- Laser power ground LGND...
  • Page 15: Examples Of Driver Interface For Step-Servo Motor

    6 Examples of Driver Interface for Step-servo Motor Overview The input signal end of step-servo motor driver employs the light-coupled isolation technology. For the step-by-step impulse signal, some isolate the side OC diode from cutoff to conduction (e.g. the valid falling edge of pulse signal inputted from the diode minus end) and some do so from conduction to cutoff (e.g.
  • Page 16: Valid Falling Edge For Pulse Signal

    the valid rising edge. Some of its products can support the mode of valid rising/falling edge. When these products are delivered out of the factory, they are all set at the valid rising edge; if the user changes the ex-factory setting into the valid pulse falling edge, Section 6.3 can be referred to for the wiring method.
  • Page 17 Terminal The Side of Driver block side X/Y/Z/U xPulse+ xPulse- - xDir- xDir+ Figure: 6.3-1 Four Inputs, Valid Falling Edge and Common Anode Connection Terminal The Side of Driver block side X/Y/Z/U xPulse+ xPulse- - xDir- xDir+ Figure: 6.3-2 Four Inputs, Valid Falling Edge and Differential Connection (2).
  • Page 18: Examples Of Io-Port Wiring

    7 Examples of IO-port Wiring Input Port The input connection at X/Y minus spacing is exampled. Inside of Terminal Board 6 O 5V 5 LmtX+ Mechanical Switc 4 LmtX- 3 LmtY+ Photoelectric Switch(5V) 2 LmtY- 1 OGND Figure: 7.1-1 Example of Input-port Connection...
  • Page 19: Output Port

    Output Port The 6th Pin of Spacing 6 O 5V Inside of Main Power Terminal Board Supply 6 O 24V Driver 5 Out1 Buzzer(5V) Driver 4 Out2 Indicator Driver 3 Out3 Relay(5V) 2 Out4 Driver 1 OGND Relay(24V) Figure: 7.2-1 Example of Output-port Connection...
  • Page 20: Operating Instruction Of Man-Machine Interface

    Shenzhen Reader Technology Co., Ltd. 8 Operating Instruction of Man-machine Interface There are sixteen keys on the man-machine operating panel, the function of each among which is as shown on the key. Introduction to the Main Interface Idle Interface (display system time: day/month /year) File:XX File Number:XXXX Max Power:XX.X%...
  • Page 21: Introduction To The Keys

    Shenzhen Reader Technology Co., Ltd. File:XX File Number:XXXX Max Power:XX.X% Run Speed:XXX mm/s Work Finished: 00.12.40 Figure: 8.1-4 The interface in Figure 8.1-1 shows when the system is idle. “File” means the number of the memory file presently selected by the operator. If it is 00, it means the memory file is not selected.
  • Page 22 Shenzhen Reader Technology Co., Ltd. processing), the system will at this time show as follows: Whether to Power-off restart? Yes to “Enter” No to “Esc” Figure: 8.2-1 Pressing the “Esc” key in this interface and this de-energizing for continuous engraving will be cancelled and the system return to the interface in Figure 8.1-1. If processing was once started, the figure uncompleted in the former processing can’t be de-energized for continuous engraving;...
  • Page 23 Shenzhen Reader Technology Co., Ltd. On four main interfaces (i.e. idle system, running system and suspended system, work finished interface) this key can be pressed. On pressing this key, if the manufacturer only provides a single laser tube or if there is a double-path laser tube, but the user only enables one path, it only shows the maximum energy of this-path laser tube and the interface shows the same as Figure 8.2-2.
  • Page 24 Shenzhen Reader Technology Co., Ltd. Speed: XXXX mm/s Enter Figure: 8.2-4 The operating mode of this key is similar to that of the “MaxPower” key. When the PC software generates the cutting/engraving data file, if a certain or all the parameters of the maximum power, the minimum power and the speed parameter are set at 0, the value set on the keyboard will be take as the corresponding parameter in the idle state.
  • Page 25 Shenzhen Reader Technology Co., Ltd. Format Memory Clear All File Number Figure: 8.2-6 Total File Number:XXXXX Clear Total File Number Brief the following items separately: ◆“Memory File”: the related operations on the memory file such as processing, bordering, copying, deletion and etc. ◆“USB File”: the operations on USB file, such as copy to memory and deletion.
  • Page 26 Shenzhen Reader Technology Co., Ltd. to enter the submenu. For memory file, it supports such six items as “Copy to USB”, “Run”, “Deletion”,”Work Time Preview”, “Track Frame” and “Clear File Number”. On pressing the “Enter” key when you select the “Run” item, directly start the processing of this file and the interface shows the same as Figure 8.1-3 (Running Interface);...
  • Page 27 Shenzhen Reader Technology Co., Ltd. Frame It is valid to press this key under the idle system interface and the work finished interface. Press this key and the bordering will be operated on the currently selected file. (10) Esc and Enter key Enter Press the Esc or Enter key under different interfaces means to confirm or deny this operation.
  • Page 28 Shenzhen Reader Technology Co., Ltd. Z-axle Move Axles Reset+ Figure: 8.2-8 Inch Setting+ Laser Setting+ Origin Setting+ Set to Default Para. Load Default Para. Figure: 8.2-9 Auto Focusing Langue+ 1) Press the Up and Down keys to select the cursor position. When the cursor stops at “Z-axle Move”, press the Left and Right keys and the system will move the Z axle.
  • Page 29 Shenzhen Reader Technology Co., Ltd. Multiple Origins: No/Yes Set as Origin1 Figure: 8.2-11 Set as Origin2 Set as Origin3 Set as Origin4 Next Origin 0 Figure: 8.2-12 Origin Enable + Multiple Origins: “Yes” or “No” can be selected. If you select “No”, the system will use the single-origin logic.
  • Page 30 Shenzhen Reader Technology Co., Ltd. After the manufacturer regulates all parameters of the machine well (including all manufacturer parameters and user parameters), this function can be used to store the well-regulated parameters to help users to recover the original parameters (including all manufacturer parameters and user parameters) through selecting “Load Default Para”...
  • Page 31: Manufacturer/User Parameters Explanation

    Shenzhen Reader Technology Co., Ltd. 9 Manufacturer/User Parameters Explanation 9.1 Manufacturer Parameters (1) axes’ parameters Direction Polarity: Modification of direction polarity can move the motor to the opposite direction. The modification purpose can move this axle to the origin on resetting.
  • Page 32 Shenzhen Reader Technology Co., Ltd. reduction of acceleration so as to reduce the running speed of the whole figure. For the axles with larger inertia, such as Y axle corresponding to the beam, its typical setting range is 800~3000mm/s2; for the axles with smaller inertia, such as X axle corresponding to the car, its typical setting range is 8000~20000mm/s2.
  • Page 33 Shenzhen Reader Technology Co., Ltd. (3) Other Manufacturer Parameters Machine Type: In most cases, the general engraving machine should be selected and other types used for specific purposes. Feeding Mode: it has single-way mode and two-way mode for option. If it is of single-way feeding, it is unnecessary to check the coordinates.
  • Page 34: User Parameters

    Shenzhen Reader Technology Co., Ltd. 9.2 User Parameters (1) Cutting Parameters (Only affect cutting arts) Idle Move Speed: this parameter decides the highest speed of all non-lighting lines for the machine in the movement process. Idle Move Acceleration: it means the highest acceleration of all non-lighting lines.
  • Page 35 Shenzhen Reader Technology Co., Ltd. achieve this goal. If the high power remains short, the lighting mode will influence the life of the laser. The system will default the selection of general mode. Speckle Size: When the general mode is selected as the scanning mode, this parameter will become ineffective;...
  • Page 36 Shenzhen Reader Technology Co., Ltd. Back Position: The origin (the relative origin) and the machine’s absolute origin can be selected. This parameter decides the parking position of laser head after each work. Before-feeding Time Lag: settable at 0~300s. The lagged time can facilitate user’s feeding and picking on the feeding device.

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