Rms-technologies R256 CONTROLLER/DRIVER Manuel d'utilisateur

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R256 Controller
with built-in 256 Microstepping Driver
User Manual
Version 1.05
RMS Technologies
2533 N. Carson St. #4698, Carson City, NV 89706-0147
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Résumé du contenu

Page 1 - R256 Controller

R256 Controllerwith built-in 256 Microstepping DriverUser ManualVersion 1.05RMS Technologies2533 N. Carson St. #4698, Carson City, NV 89706-0147

Page 2 - DISCLAIMER

6. CONNECTION SPECIFICATIONS Quick StartDO NOT PLUG IN POWER UNTIL EVERYTHING IS CONNECTED.RS232-485 converter card(Figure 5)1. The RS232 convert

Page 3

USB-485 converter card(Figure 6)1. The USB converter card connects to the R256 using the DB-9 cable that is provided to you. The white 3-Pin connecto

Page 4 - TABLE OF CONTENTS

(Fig 7)DB-9 cable with 3-pin header for communication(Figure 8) The table to the right depicts the functionPart # 90-018ColorFunctionRe

Page 5 - FOUND

2. Assign a name for your New Connection3. Determine the correct COM port # by right clicking on “My Computer” and selecting “Properties”. Select the

Page 6 - 3. OPERATING SPECIFICATIONS

6. Turn on local echo by going to: File  Properties  Settings tab  ASCII Setup: Click on the box for “Echo Typed Characters Locally” and click on

Page 7 - 5. PIN ASSIGNMENTS

Setting the CurrentCAUTION! DO NOT SET THE CURRENT 1.4 TIMES ABOVE THE MOTOR’S RATED CURRENT.In order to set the correct current for your motor, you m

Page 8 - *USB pin#

WARNING!: Setting the Current to a value greater than 1.4 times the Motor’s rated current will damage your motor, and may overheat the controller.Conn

Page 9 - 3 Brown 3 (RS485B)

Changing the Address of the ControllerUse a screwdriver to turn the dial so the arrow points to the desired Address. Use this number when programming

Page 10

Input 3 Pin 7Input 4 Pin 5Table 7Any of the four inputs can be connected to a push button. In our example above, pin 5 corresponds to input #4, there

Page 11

Optical SensorFigure 16: Opto Sensor Connection SchematicThe Opto Sensor uses Pins 6, 7, and 9. Use the following table to solder the corresponding w

Page 12 - Part # 90-018

Thank you for purchasing the R256 Controller with Microstepping Driver. This product is warranted to be free of manufacturing defects for one year fr

Page 13

Encoder UsageThe R256 can also be used as reference to home by connecting to an US Digital E2 Encoder. The pinouts are as follows:Pin Number Function

Page 14

8. MOTOR CONNECTIONSStep Motors have 4, 6, or 8 wires. To better understand how to connect your step motor with your R256 Controller, follow the Figu

Page 15

6 Lead Wire Motor Connection (Full-Winding)For a full winding connection, use both end wires, the center tap is ignored. (NC: No Connection).Figure 20

Page 16

9. Troubleshooting & FAQ Cannot Type anything in HyperTerminal:Is the correct COM Port selected? Are you using Windows 95? Windows 95 has had

Page 17 - Figure 14: Address Dial

Halt Command (H01) IssuesThere are known issues involving the Halt command (i.e., H01) when stored in memory location zero. Upon power up, the remain

Page 18

Peak current versus Amps/PhaseWhere does the 1.4 times come from? Current is continuously changing when a motor steps. If the motor is rated for 1.0

Page 19

Take a look at position #7. If we were to draw the arrow at position 7 as the hypotenuse of a triangle, it would look like the triangle to our left.

Page 20

7. The RS232 converter card connects to the R256 using the DB-9 cable that is provided to you. The red 4-Pin connector is placed onto the converter c

Page 21 - 8. MOTOR CONNECTIONS

R256 User ManualProduct: R256Version: 1.05Date: 4/3/2009Version HistoryVersion Date Description of Changes1.00 01/11/2006 New User Manual1.01 08/18/20

Page 22

TABLE OF CONTENTS1. FEATURES ... ERROR: REFERENCE SOURCE NOT FOUND DESIGNER’S KIT WITH RS232 COMMUNICATION

Page 23

10. APPENDIX A ... ERROR: REFERENCE SOURCE NOT FOUND PEAK CURRENT VERSUS AMPS/PHASE ...

Page 24 - 10. Appendix A

Here is the list of components if you have purchased the optional Designer’s Kit:• USB to RS232 converter card• A switch push button• Opto Sensor• A U

Page 25

Storage Temperature Range -20° to 70° CCommunication SpecificationsInterface Type RS485 (RS232 or USB with a converter card)Baud Rate 9600, 19200, or

Page 26 - 1.41 AMP

Pin # Color Function Input*1 Red +V (Main Power In)2 Black I/O 13 Brown RS485B (-)4 Black/WhiteRS485A (+)5 Orange Switch Closure to GND (IN) 46 Green

Page 27

6 Green2 (GND connect to Power Supply Ground)3 Brown 3 (RS485B)Table 4*Where Pin #1 is located here: Figure 4The USB converter card does not require p

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