Parker Hannifin VERSION 1.0 manual Reference Files, ACR-MOTIONMAX Directory & File Structure

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ACR-MOTIONMAX Installation Guide

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Print the following 2 Files for Reference after ACR-MOTIONMAX has been installed:

Reference Files

Print the following 2 files for reference:

“C:\Program Files\Parker\ACR-MOTIONMAX\Docs\Default Bit Definitions.xls.”

This file contains a Complete Bit Map of the ACR-MOTIONMAX System. This file is an Excel spreadsheet for your reference and is your best resource to understanding how ACR-MOTIONMAX communicates with the Parker-Acroloop Controller and AcroBasic.

C:\Program Files\Parker\ACR-MOTIONMAX\Docs\Parameter_Definitionst.xls” in the ACR- MOTIONMAX/Docs Sub Folder. This file describes the functions of all Parameters in the Parameters.Cfg file that ACR-MOTIONMAX uses at runtime

ACR-MOTIONMAX Directory & File Structure:

Default Location … C:\Program Files\Parker\ACR-MOTIONMAX

ACR-MOTIONMAX.exe

GUI Interface Program (The Graphical Operator Interface)

Core.Dll

API Driven Core of ACR-MOTIONMAX (low level functions DLL File)

Parameter & Log files

Default Location … C:\Program Files\Parker\ACR-MOTIONMAX\Parfiles

Parameters.mdb

Contains Machine Parameters (Used by ACR-MOTIONMAX Only)

Parameters.Cfg

Contains Machine Parameters

I/O.Cfg

Contains Control I/O Map

UserDefined.Err

Contains User Defined Error Strings

ToolTables.Mdb

Contains Tool Tables Database (Used by ACR-MOTIONMAX Only)

Tool.tbl

Contains Current Runtime Tool & Offset Information

ViewPorts.Cfg

Used By DLL to Define Zooming and Viewport Options at runtime.

MoveLog.txt

Text file listing of all moves and Mcodes that ACR-MOTIONMAX executes.

User.txt

Text log file of all functions that the operator does.

Sample Part files

Default Location … C:\Program Files\Parker\ACR-MOTIONMAX\Partfiles

Looping.nc

NestedLooping.nc

NestedSubProgramming.nc

SubProgramming.nc

Mold.nc

Pocket.nc

Manuals & Reference Documents

Default Location … C:\Program Files\Parker\ACR-MOTIONMAX\Docs

ACR-MOTIONMAX_Install_Guide.pdf

This Manual

Programmers Reference Manual.pdf

G-Code Reference Manual

ControlSignalsDef.doc

Control Signals Reference Manual

Default Bit Definitions.xls

The ACR-MOTIONMAX I/O Map Reference

MasterVectorInstructions.txt

Servo Firmware upgrade instructions

Parameter_Definitionst.XLS

Listing of all ACR-MOTIONMAX User Parameters

ACR-MOTIONMAX System Setup Diagram

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Contents ACR-MotionMax Installation Guide North America and Asia ACR-MOTIONMAX Installation GuideParker Hannifin Corporation All Rights Reserved Europe non-German speaking ItalyACR-MOTIONMAX Installation Guide Table of Contents T Code Sequencing ACR-MOTIONMAX Control System Bit Signal BanksStrobe & Done Signals Table Jogging FunctionsSystem Overview Diagram Homing & HandWheelACR-MOTIONMAX to AcroBasic System Start up MotionMaxSys.8k File listing for PCI Type Controller ACR-MOTIONMAX AcroBasic Project Template FilesDefining Bit Variables in AcroBasic AcroBasic Template Files listCode Sequence Examples Example & FormatReference Files ACR-MOTIONMAX System Setup DiagramACR-MOTIONMAX Directory & File Structure Start Using MotionMax Install the Parker-Acroloop SDK Software Development Kit Install ACR-MOTIONMAX to your PCLoad ACR-MOTIONMAX AcroBasic Project Template Files Test & Phase the Motor/EncodersPrint Reference Files Download Project to Controller FlashTune Axis Gains \Program Files\Parker\ACR-MOTIONMAX\Parfiles\Parameters.Cfg Function Control Signals Bit Configure Homing FunctionsFunction Called Address in Program CncInputsConfig Configure I/0 Labels for ACR-MOTIONMAX DiagnosticsCncOutputsConfig Edit the Control Initialization Subroutine ExampleEdit the M Code Functions Rules of operationControl Signals used with S Codes Editing the S Code FunctionACR-MOTIONMAX Installation Guide Edit the T Code Function RequestedToolPositonREM ~ Set Emergency Stop KeyBit = Estop Bit 129 of the Control SignalsEdit the Emergency Stop Function REM ~ Clear Emergency StopSample UserDefinedError.txt for reference Configure Valid Mcodes List for ACR-MOTIONMAX Description Default Configure Key ACR-MOTIONMAX ParametersSoftwareOptions Default Speeds Parameter Description Default SpindleOptions Parameter Description DefaultToolChanger Parameter Description Default JogSpeeds Parameter Description DefaultConfigure the Overrides Default ModeRunning ACR-MOTIONMAX for the First Time Test Inputs and Outputs in DiagnosticsStarting ACR-MOTIONMAX for the First Time Step Test JoggingAppendix A. ACR-MOTIONMAX Parameters SoftwareOptions007 SpindleOptionsSoftLimits ToolChangerHomeOffsets SpeedsFastJogSpeeds SystemResolutionJogSpeeds InPositionBandGains2 Gains0Gains1 Gains3Gains7 Spindle Axis Gains5Gains6 AuxFunctionsEditorFontFeatures ScreenColorsDESC8=FLOOD Coolant on M9=1 DESC9=ALL Coolants OFF DESC31= DESC56= DESC81= DESC126=TURN on Tapping Mode ACR-MOTIONMAX Installation Guide End of Parameters

VERSION 1.0 specifications

Parker Hannifin Corporation, founded in 1917, is a global leader in motion and control technologies. With over a century of experience, the company has established itself as a trusted provider of high-quality solutions across various industries, including aerospace, automotive, healthcare, and manufacturing.

One of Parker Hannifin's main features is its diverse product range, which encompasses a wide array of systems and components designed to enhance the efficiency and reliability of machinery and equipment. The company specializes in hydraulic, pneumatic, and electromechanical systems, demonstrating expertise in fluid and motion control. Their products include hydraulic pumps, valves, cylinders, filters, and various seals, all engineered for optimal performance under demanding conditions.

Parker Hannifin is known for its commitment to innovation and technology. The company invests significantly in research and development to stay at the forefront of technological advancements in its field. This dedication has led to the integration of smart technology in their products, enabling real-time monitoring and predictive maintenance capabilities. The incorporation of IoT (Internet of Things) technology allows customers to optimize their operations while reducing downtime and maintenance costs.

Another characteristic of Parker Hannifin is its emphasis on sustainability. The company has made it a priority to develop eco-friendly products that help reduce energy consumption and environmental impact. By leveraging advanced materials and manufacturing techniques, Parker Hannifin produces lightweight components that improve fuel efficiency in transportation applications, contributing to a lower carbon footprint.

Moreover, Parker Hannifin's global footprint allows it to serve customers in various regions while providing localized support. With manufacturing facilities, distribution centers, and sales offices strategically located worldwide, the company ensures quick response times and tailored solutions for specific market needs.

In summary, Parker Hannifin Corporation is a dynamic leader in motion and control technologies, with a commitment to innovation, sustainability, and customer satisfaction. Their extensive range of high-performance products, coupled with advanced technologies and a global presence, positions Parker Hannifin as a reliable partner for industries seeking to enhance operational efficiency and reliability.