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Overview
Section 7-1
7-1
Overview
7-1-1
Definition
No-protocol mode is a function used to send and receive data using communi-
cations port I/O instructions (TXD(236)/RXD(235) or TXDU(256)/RXDU(255))
without conversion or protocol. Therefore, in no-protocol mode communica-
tions procedures such as retry processing, data format conversion process-
ing, and processing branching according to the receive data are not
performed.
Note
No-protocol mode is supported only when using a Serial Communications
Board/Unit with Unit Ver. 1.2 or later in combination with a CS/CJ-series CPU
Unit with Unit Ver. 3.0 or later. Therefore, be sure to use a CS/CJ-series CPU
Unit with Unit Ver. 3.0 or later if the no-protocol mode is required.
The no-protocol mode enables single-directional data exchange with a gen-
eral-purpose external device with an RS-232C port or RS-422A/485 port
using the TXD(236)/RXD(235) or TXDU(256)/RXDU(255) instructions. For
example, data can be sent to and received easily (with no protocol) such as
data input from a bar code reader or data output to a printer.
Note
Use the TXD(236)/RXD(235) instructions for Serial Communications Boards
and the TXDU(256)/RXDU(255) instructions for Serial Communications Units.
Addition of a start code at the beginning of the data, and end code at the end
of the data (or specifying the number of receive data bytes) is possible before
sending/receiving. The RS and CS control signals can also be controlled.
Note
No-protocol mode is only supported for RS-422A/485 if the four-wire
method is used.
Serial Communications Board (unit Ver. 1.2 or later)
CPU Unit (unit Ver. 3.0 or later)
TXDU/RXDU
General-purpose external device with serial port
(e.g, bar code reader or printer)
RS-232C or RS-422A/485
RS-232C or RS-422A/485
General-purpose external device with serial port
(e.g, bar code reader or printer)
Serial Communications Unit (unit Ver. 1.2 or later)
CPU Unit (unit Ver. 3.0 or later)
TXDU/RXDU
Summary of Contents for SYSMAC CJ1W-SCU21-V1
Page 3: ...iv...
Page 5: ...vi...
Page 9: ...x...
Page 15: ...xvi...
Page 89: ...60 Basic Operating Procedure Section 1 9...
Page 151: ...122 RS 232C and RS 422A 485 Wiring Section 3 4...
Page 173: ...144 Host Link Function for Replacing Existing PLCs Section 4 6...
Page 223: ...194 Enhanced Protocol Macro Functions Section 5 6...
Page 277: ...248 Communications Frames Section 6 8...
Page 291: ...262 Basic Operating Procedure in No protocol Mode Section 7 4...
Page 301: ...272 Auxiliary Area and CIO Area Allocations Section 8 3...
Page 391: ...362 Introduction Appendix A...
Page 421: ...392 CompoWay F Master Protocol Appendix B...
Page 513: ...484 E5 K Digital Controller Read Protocol Appendix F...
Page 571: ...542 E5ZE Temperature Controller Write Protocol Appendix I...
Page 587: ...558 E5 J Temperature Controller Protocol Appendix J...
Page 627: ...598 ES100 Digital Controller Protocol Appendix K...
Page 661: ...632 V500 V520 Bar Code Reader Protocol Appendix M...
Page 697: ...668 3Z4L Laser Micrometer Protocol Appendix N...
Page 717: ...688 Visual Inspection System Protocol Appendix O...
Page 755: ...726 V600 V620 ID Controller Protocol Appendix P...
Page 763: ...734 Hayes Modem AT Command Protocol Appendix Q...
Page 767: ...738 Changing Communications Port Settings Using STUP 237 Appendix R...
Page 781: ...752 Revision History...