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5. Robot System Structure and Connection
5.1 Introduction to this chapterROKAE has several series of robots. This chapter mainly introduces the system structure and connection mode of different series of robots to deepen users' understanding of robot systems. Users can optionally read the contents of...
6. HMI Introduction
6.1 Introduction to this chapterThis chapter outlines the basic layout of xCore's HMI software and the distribution and role of its main functions.Users need to read this chapter before actually using the robot.6.2 RobotAssist introductionRobotAssist is the ho...
7. Basic Operation of the Control System
7.1 Introduction to this chapterThis chapter provides an overview of the most commonly used basic and requisite operations for robots. Users need to read this chapter before actually using the robot.7.2 Operating modeRobot operating mode includes manual mode a...
8. Programming
8.1 Introduction to this chapterIndustrial/collaborative robots are highly flexible production tools that can be programmed by users to meet different needs.This chapter will introduce all aspects of programming the xCore control system. Starting with this cha...
9. Setting
9.1 Introduction to this chapterThis chapter provides a detailed introduction to various settings of the xCore control system.9.2 Controller settings9.2.1 Basic settings9.2.1.1 System information 9.2.1.2 System configuration Note: Please do not modify the sy...
10. Communication
10.1 Introduction to this chapterThis chapter mainly introduces various communication settings of the xCore control system, including IO, registers, bus devices, and end-effector.10.2 System IOSystem IO is divided into two types: system input and system output...
11. Safety
11.1 Introduction to this chapterThis chapter mainly introduces the settings of xCore safety related functions.11.2 Safety passwordA password is required to unlock the safety module, and it is "safety" by default. The safety password can be changed through S...
12. Process Package
The xCore Control System not only offers impeccable core functionalities, but also encompasses an extensive array of advanced features. In relation to the process packages listed below, we provide exclusive documentation. Please feel free to reach out to us if...
13. Log
The log module includes eight interfaces, namely HMI logs, controller logs, operation logs, log timelines, internal logs, diagnostic settings, hardware status, and diagnostic data monitoring.13.1 HMI logsThe HMI logs interface displays the current user's HMI o...
14. Options
The options page mainly involves robot connection, software upgrade, import and export, and feature demonstration.14.1 Connect 14.2 About ROKAEIt introduces software version, component information, and company profile. 14.3 Software upgrade14.3.1 Controller...
15. RL Commands
15.1 Variable Type15.1.1 Int 15.1.2 Double 15.1.3 Bool 15.1.4 String 15.1.5 Array 15.1.6 byte 15.1.7 clock 15.1.8 Implicit type conversion 15.1.9 Confdata 15.1.10 jointtarget 15.1.11 load 15.1.12 orient 15.1.13 pos 15.1.14 pose 15.1.15 ...
16. Appendix
16.1 Details of user permission 16.2 Introduction of collaborative robot's end-effector handle16.2.1 ER seriesThe xMate ER series robot end-effector integrates a Pilot handle with an intelligent interactive panel. In Drag Mode, the buttons on the Pilot hand...
17. Troubleshooting
17.1 Control System Error Code17.1.1 1XXXX 17.1.1 3XXXX 17.1.2 4XXXX 17.1.3 5XXXX 17.1.4 6XXXX
1. Manual Overview
1.1. About the ManualThank you for choosing ROKAE robot system. The Manual describes using the stacking workstation process package in thexCoreControl System of ROKAE robots. 1.2. Target groupThe Manual is intended for: Operators System integrators Service ...
2. Software Operation
2.1. User login1. When the stacking workstation starts, the Robot Assist software will automaticallyopen and connect the robot. After a successful connection, the stacking productioninterface will be input, and the default login user is "Operator". When "Auto...
3. Production Operation
3.1. Enable/Disable stackingWhen the stacking scheme is a bilateral layout, if only one side of the pallets (either the left or the right side) needs to be placed, the enable switch button can be clicked to enable or disable the pallets on one side. A new layo...
1. INTRODUCTION
This chapter provides an overview of the Copley ASCII Interface, a set of commands that can be sent by an external controller to operate and monitor Copley Controls amplifiers. 1.1: The Copley ASCII Interface The Copley ASCII Interface is a set of ASCII forma...
2. COMMAND SET
2.1: Copley ASCII Message Format The syntax of a Copley ASCII message is:[<optional node ID>] <command code> [<command specific parameters>...] <CR> where:•[<optional node ID>] is the CAN node address of an amplifier in a multi-drop network. Range is 0 127. Th...