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SIMATIC TIWAY 1 user manual
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SIMA
TIC TIW
A
Y 1
UNILINK Host Adapter
User
Manual
Order Number: PPX:TIWAY–8121–2
Manual Assembly Number: 2587871–0045
Second Edition
Contents
Main
CHAPTER 1
UNILINK HOST ADAPTER
Figure 11 UNILINK Host Adapter
1.1 INTRODUCTION
1.2 FEATURES
Figure 12 Personality Interface Module (PIM)
UNILINK HOST
ADAPTER13 USER MANUAL
Figure 13 UNILINK Host Adapter Block Diagram
Figure 14 UNILINK Host Adapter Physical Features
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1.3 TYPICAL NETWORK APPLICATIONS
Figure 15 Single Host Network
Figure 16 Multiple Host Network
1.4 TIWA
Y I SYSTEM CHARACTERISTICS
Figure 17 TIWAY I Network
1.5 INSTALLATION
ASSIST
SER
1.7 CUSTOMER
1.6 TECHNICAL
OPERA
TION AND APPLICA
Figure 21 Command String Structure
TION
2.1 INTRODUCTION
Figure 22 Performance vs Commands
Figure 23 Host Computer To UNILINK Host Adapter Communications
2.3 FUNCTIONAL ORGANIZATION AND OPERATING MODES
HIU
NM
HIU NM MHIU
Figure 26 Master Host Interface Unit Diagram
Figure 27 Typical Single Host Network
Figure 28 Typical Multiple Host Network
Figure 29 NM Network
Figure 210 Standalone NM Network 2.4 TIWAY I HOST SOFTWARE SUPPORT
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2.5 SETTING THE OPERATING MODE
Figure 211 Dipswitch Positions
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Figure 212 Standalone Network Manager Dipswitch Settings
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2.6 SPECIAL NETWORK MANAGER FEATURES
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2.7 THE HIU AS A SECONDARY
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2.8 MODE INDEPENDENT OPERATIONS
Figure 213 External Input/Output Points Example Application
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Example 21 BROADCAST/POLL Example
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2.10 EXTENDED NETWORK OPERATIONS
Table 21 Configuration Modes Supporting Macros
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Figure 214 The Parts of a Macro
Example 22 Macro Memory Requirements
Figure 215 Host Computer Multiprocessing Application Example
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No (END)
Yes Figure 216 Macro Setup Procedure
Figure 217 Relationship Between Source Ids and Macro Buffers
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Figure 218 Macro Command Frame T
able 22 Macro Types
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Example 23 Macro Options Byte Bit Coding
Table 23 MRSW Values
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Figure 219 Link Macro Store and Forward Operation
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CONFIGURING
THE HOST COMPUTER POR
Figure 31 Host Computer Interface
T
3.1 THE HOST COMPUTER INTERFACE
3.2 RS232C/RS423A PHYSICAL INTERFACE
Figure 32 Host Communications Port
T
able 31 RS232C/RS423A D Connector Pin Assignment
Figure 33 Dipswitch Locations
Figure 34 Cable For Connecting To DTE Equipment (Null Modem)
Figure 35 IBM PC/AT 9-Pin Null Modem Cable Diagram
Figure 36 Multidrop Host Interface Circuit
You should select half-duplex operation for the modems when you
multidrop to prevent the network modems from simultaneously raising the carrier.
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3.3 HOST PORT COMMUNICATIONS
:
Figure 37 NITP Message Structure
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Figure 310 NITP Dipswitch Settings
Both the BDLC and NITP protocols are asynchronous data link layer protocols.
Table 32 Host Port Baud Rates
Figure 311 BDLC Protocol Dipswitch Settings
T
able 33 BDLC Protocol Address
3.4 HOST COMMAND TIMEOUT
TIW
Y I NETWORK POR
A
TS
4.1 NETWORK PORTS
Figure 41 Local Line Interface Ports
Table 42 Local Line Connector Pin Assignments
PM550 CIM users should refer to Appendix C for different media length factors.
Figure 42 TIWAY I Bus Structure
Figure 43 Number of Local Line Secondaries vs. Cable Distance
Figure 44 RS232C/RS423A Modem Interface Ports
Table
43
RS232C/RS423A D Connector Pin Assignment
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4.3 TIWAY I HDLC NETWORK PROTOCOL
Figure 46 HDLC Frame
4.4 SETTING THE NETWORK PORTS PARAMETERS
Figure 47 Network Port Dipswitch Settings
HOST
COMMAND SET REFERENCE
5.1 INTRODUCTION
Figure 51 Command String Structure
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Table 51 Secondary Addresses
Figure 53 Active Command Tree
5.2 ERROR RESPONSE
5.3 BASE HIU COMMANDS
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5.4 THE EXTENDED HIU COMMANDS
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Figure 54 CONFIGURE HIU Command Option 01 Bit Map Table 52 Baud Rates
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Figure 55 Dipswitch Values Bit Map
Figure 56 Source Id/Macro Buffer Relationship
In addition to the bytes specified, 22 bytes will be added
for header information. If
number
this total count is an odd
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Figure 57 Macro Options Byte
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Table 53 MRSW Values
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Example 5-1 ENABLE/DISABLE MACRO EXECUTION Command
Example 5-2 ENABLE/DISABLE MACRO EXECUTION Response
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5.5 ADAPTER CONFIGURATION COMMANDS
If
the first command sent to the adapter is one of the Base
HIU commands, the adapter will automatically begin
operation in the Emulate Host Adapter (EHA) mode and the defaults for this command will be assumed.
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Figure 58 Dipswitch Values Bit Map
5.6 NETWORK MANAGER COMMANDS
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Table 54 Option Code 01 Bit Map
Table 55 Baud Rates
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Figure 59 Option 09 Bit Map
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Figure 510 Dipswitch Values Bit Map
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Figure 511 Link Status Byte Bit Map
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5.7 MODE INDEPENDENT COMMANDS
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5.8 COMMAND
SYNT
AX QUICK REFERENCE
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5.9 COMMAND CODES REFERENCE (NUMERICAL ORDER)
5.10 COMMAND CODES REFERENCE (BY FUNCTION)
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ERROR
CODES AND DIAGNOSTICS
6.1 ERROR RESPONSE CODES
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6.2 PRIMITIVE ERRORS
6.3 MRSW TERMINATION CODES
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6.4 DIAGNOSTIC
TESTS
Figure 61 Adapter LEDs
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LED Error Codes
Figure 65 External I/O Loopback Test Connections
APPENDIX A
USING
THE NON-INTELLIGENT TERMINAL PROTOCOL
A.1 CHARACTERISTICS OF THE NONINTELLIGENT TERMINAL PROTOCOL
:
Figure A1 NITP Message Structure
Table A1 NITP Character Set
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A.2 NITP Protocol Operation
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APPENDIX
USING
B
THE BDLC PROTOCOL
B.1 BDLC CONFIGURATION
Figure B1 BDLC Unbalanced Configuration
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Table B1 BDLC Protocol Command Set
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B.3 BDLC PROTOCOL CONTROL FIELD STRUCTURES
Figure B4 BDLC Protocol Control Field Structures
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B.4 COMMANDS AND RESPONSES
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B.5 ERRORS AND ERROR RECOVERY
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Figure B5 FRMR Information Field Format
B.6 ILLUSTRATIVE BDLC SEQUENCES
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B.7 BLOCK CHECKSUM GENERATION AND CHECKING
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CONFIGURATION
WORKSHEET
Adapter Configuration Parameters
Host Computer Port Parameters
Network Ports Parameters
APPENDIX F
MACRO
DEFINITIONS FORM
MACRO DEFINITIONS FORM