Difference between revisions of "Component: Modbus TCP Slave (Comms: System)"

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==Modbus TCP Slave component==
 
==Modbus TCP Slave component==
 
Modbus component for creating Modbus compatible slave hardware via Ethernet or WIFI. Ensure TCP/IP or WIFI component is initialised and connected to a network before calling the ModbusSlaveTCP component macros.  
 
Modbus component for creating Modbus compatible slave hardware via Ethernet or WIFI. Ensure TCP/IP or WIFI component is initialised and connected to a network before calling the ModbusSlaveTCP component macros.  
 +
 +
==Component Source Code==
 +
 +
Please click here to download the component source project: [https://www.flowcode.co.uk/wiki/componentsource/FC_Comp_Source_ModbusSlaveTCP.fcfx FC_Comp_Source_ModbusSlaveTCP.fcfx]
 +
 +
Please click here to view the component source code (Beta): [https://www.flowcode.co.uk/FlowchartView/?wfile=componentsource/FC_Comp_Source_ModbusSlaveTCP.fcfx FC_Comp_Source_ModbusSlaveTCP.fcfx]
  
 
==Detailed description==
 
==Detailed description==
 +
 +
 +
 +
 +
 +
 +
 +
 +
 +
 +
 +
 +
 +
 +
 +
  
 
''No detailed description exists yet for this component''
 
''No detailed description exists yet for this component''
  
 
==Examples==
 
==Examples==
 
 
  
 
Example master program to control the slave. The example sets coil address 0, clears coil address 0, reads an input register and outputs to the LCD. Be sure to set the IP address of the slave device at the top of the program. If you are simulating then use the IP address of the PC running the Slave simulation. Both programs can be simulated on the same PC using two instances of Flowcode.
 
Example master program to control the slave. The example sets coil address 0, clears coil address 0, reads an input register and outputs to the LCD. Be sure to set the IP address of the slave device at the top of the program. If you are simulating then use the IP address of the PC running the Slave simulation. Both programs can be simulated on the same PC using two instances of Flowcode.
Line 77: Line 97:
 
In Flowcode each section starts from 0 so the address range is as shown.
 
In Flowcode each section starts from 0 so the address range is as shown.
  
 +
==Macro reference==
  
==Downloadable macro reference==
+
===CheckForIncoming===
 
 
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
|-
 
|-
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''ReadHoldingRegister'''
+
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''CheckForIncoming'''
 
|-
 
|-
| colspan="2" | Reads the value of a single holding register. 
+
| colspan="2" | Checks for an incoming message and if the data address is within range then also automatically replies with the correct reply. Returns 0 if no comms received, 1 for a succesful transaction, 255 for an error. 
 
|-
 
|-
 
|-
 
|-
| width="10%" align="center" | [[File:Fc9-u16-icon.png]] - UINT
+
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-u8-icon.png]] - BYTE
| width="90%" | Address
 
|-
 
| colspan="2" | Coil Address 
 
|-
 
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-u16-icon.png]] - UINT
 
 
| width="90%" style="border-top: 2px solid #000;" | ''Return''
 
| width="90%" style="border-top: 2px solid #000;" | ''Return''
 
|}
 
|}
  
  
 +
===GetLastIncoming===
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
|-
 
|-
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''SetCoil'''
+
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''GetLastIncoming'''
|-
 
| colspan="2" | Sets the state of a single digital coil. 
 
 
|-
 
|-
 +
| colspan="2" | Gets a value from the last incoming command. Index 0 = 0 Read / 1 Write Index 1 = 0 Coils / 1 DigInput / 2 AnInput / 3 Register Index 2 = Address  Index 3 = Number 
 
|-
 
|-
| width="10%" align="center" | [[File:Fc9-u16-icon.png]] - UINT
 
| width="90%" | Address
 
|-
 
| colspan="2" | Coil Address 
 
 
|-
 
|-
 
| width="10%" align="center" | [[File:Fc9-u8-icon.png]] - BYTE
 
| width="10%" align="center" | [[File:Fc9-u8-icon.png]] - BYTE
| width="90%" | State
+
| width="90%" | Index
 
|-
 
|-
| colspan="2" | 0=off, 1=on 
+
| colspan="2" | Range: 0-3 
 
|-
 
|-
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-void-icon.png]] - VOID
+
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-u16-icon.png]] - UINT
 
| width="90%" style="border-top: 2px solid #000;" | ''Return''
 
| width="90%" style="border-top: 2px solid #000;" | ''Return''
 
|}
 
|}
  
  
 +
===Initialise===
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
|-
 
|-
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''SetDigitalInput'''
+
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''Initialise'''
 
|-
 
|-
| colspan="2" | Sets the state of a single digital input. 
+
| colspan="2" | Starts up the UART to allow communications and initialises the states of the various  Modbus Coils, Inputs and Registers to 0. 
 
|-
 
|-
|-
 
| width="10%" align="center" | [[File:Fc9-u16-icon.png]] - UINT
 
| width="90%" | Address
 
|-
 
| colspan="2" | Coil Address 
 
|-
 
| width="10%" align="center" | [[File:Fc9-u8-icon.png]] - BYTE
 
| width="90%" | State
 
|-
 
| colspan="2" | 0=off, 1=on 
 
 
|-
 
|-
 
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-void-icon.png]] - VOID
 
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-void-icon.png]] - VOID
Line 144: Line 146:
  
  
 +
===ReadAnalogInput===
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
|-
 
|-
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''SetSlaveAddress'''
+
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''ReadAnalogInput'''
 
|-
 
|-
| colspan="2" | Allows the slave address to be overridden from the default slave address specified in the component property. The number of bytes used for the address is fixed by the Slave ID Bytes property to save on RAM usage. 
+
| colspan="2" | Reads the value of a single analogue input. 
 
|-
 
|-
 
|-
 
|-
 
| width="10%" align="center" | [[File:Fc9-u16-icon.png]] - UINT
 
| width="10%" align="center" | [[File:Fc9-u16-icon.png]] - UINT
| width="90%" | SlaveAddress
+
| width="90%" | Address
 
|-
 
|-
| colspan="2" |  
+
| colspan="2" | Coil Address 
 
|-
 
|-
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-void-icon.png]] - VOID
+
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-u16-icon.png]] - UINT
 
| width="90%" style="border-top: 2px solid #000;" | ''Return''
 
| width="90%" style="border-top: 2px solid #000;" | ''Return''
 
|}
 
|}
  
  
 +
===ReadCoils===
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
|-
 
|-
Line 185: Line 189:
  
  
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
+
===ReadDigitalInputs===
|-
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
 
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''SetHoldingRegister'''
 
|-
 
| colspan="2" | Sets the state of a single holding register. 
 
|-
 
|-
 
| width="10%" align="center" | [[File:Fc9-u16-icon.png]] - UINT
 
| width="90%" | Address
 
|-
 
| colspan="2" | Coil Address 
 
|-
 
| width="10%" align="center" | [[File:Fc9-u16-icon.png]] - UINT
 
| width="90%" | Value
 
|-
 
| colspan="2" | Analogue Value range 0 - 65535 
 
|-
 
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-void-icon.png]] - VOID
 
| width="90%" style="border-top: 2px solid #000;" | ''Return''
 
|}
 
 
 
 
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
|-
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
 
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''ReadAnalogInput'''
 
|-
 
| colspan="2" | Reads the value of a single analogue input. 
 
|-
 
|-
 
| width="10%" align="center" | [[File:Fc9-u16-icon.png]] - UINT
 
| width="90%" | Address
 
|-
 
| colspan="2" | Coil Address 
 
|-
 
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-u16-icon.png]] - UINT
 
| width="90%" style="border-top: 2px solid #000;" | ''Return''
 
|}
 
 
 
 
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
|-
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
 
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''CheckForIncoming'''
 
|-
 
| colspan="2" | Checks for an incoming message and if the data address is within range then also automatically replies with the correct reply. Returns 0 if no comms received, 1 for a succesful transaction, 255 for an error. 
 
|-
 
|-
 
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-u8-icon.png]] - BYTE
 
| width="90%" style="border-top: 2px solid #000;" | ''Return''
 
|}
 
 
 
 
 
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
|-
 
|-
Line 262: Line 213:
  
  
 +
===ReadHoldingRegister===
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
|-
 
|-
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''GetLastIncoming'''
+
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''ReadHoldingRegister'''
 
|-
 
|-
| colspan="2" | Gets a value from the last incoming command. Index 0 = 0 Read / 1 Write Index 1 = 0 Coils / 1 DigInput / 2 AnInput / 3 Register Index 2 = Address  Index 3 = Number 
+
| colspan="2" | Reads the value of a single holding register. 
 
|-
 
|-
 
|-
 
|-
| width="10%" align="center" | [[File:Fc9-u8-icon.png]] - BYTE
+
| width="10%" align="center" | [[File:Fc9-u16-icon.png]] - UINT
| width="90%" | Index
+
| width="90%" | Address
 
|-
 
|-
| colspan="2" | Range: 0-3 
+
| colspan="2" | Coil Address 
 
|-
 
|-
 
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-u16-icon.png]] - UINT
 
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-u16-icon.png]] - UINT
Line 280: Line 232:
  
  
 +
===SetAnalogInput===
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
|-
 
|-
Line 303: Line 256:
  
  
 +
===SetCoil===
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
|-
 
|-
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''Initialise'''
+
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''SetCoil'''
 
|-
 
|-
| colspan="2" | Starts up the UART to allow communications and initialises the states of the various  Modbus Coils, Inputs and Registers to 0. 
+
| colspan="2" | Sets the state of a single digital coil. 
|-
 
|-
 
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-void-icon.png]] - VOID
 
| width="90%" style="border-top: 2px solid #000;" | ''Return''
 
|}
 
 
 
 
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
|-
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
 
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''SetHoldingRegister'''
 
|-
 
| colspan="2" | Sets the state of a single holding register. 
 
 
|-
 
|-
 
|-
 
|-
Line 329: Line 270:
 
| colspan="2" | Coil Address 
 
| colspan="2" | Coil Address 
 
|-
 
|-
| width="10%" align="center" | [[File:Fc9-u16-icon.png]] - UINT
+
| width="10%" align="center" | [[File:Fc9-u8-icon.png]] - BYTE
| width="90%" | Value
+
| width="90%" | State
 
|-
 
|-
| colspan="2" | Analogue Value range 0 - 65535 
+
| colspan="2" | 0=off, 1=on 
 
|-
 
|-
 
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-void-icon.png]] - VOID
 
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-void-icon.png]] - VOID
Line 339: Line 280:
  
  
 +
===SetDigitalInput===
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
|-
 
|-
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''ReadAnalogInput'''
+
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''SetDigitalInput'''
 
|-
 
|-
| colspan="2" | Reads the value of a single analogue input. 
+
| colspan="2" | Sets the state of a single digital input. 
 
|-
 
|-
 
|-
 
|-
Line 351: Line 293:
 
|-
 
|-
 
| colspan="2" | Coil Address 
 
| colspan="2" | Coil Address 
|-
 
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-u16-icon.png]] - UINT
 
| width="90%" style="border-top: 2px solid #000;" | ''Return''
 
|}
 
 
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
|-
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
 
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''CheckForIncoming'''
 
|-
 
| colspan="2" | Checks for an incoming message and if the data address is within range then also automatically replies with the correct reply. Returns 0 if no comms received, 1 for a succesful transaction, 255 for an error. 
 
|-
 
|-
 
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-u8-icon.png]] - BYTE
 
| width="90%" style="border-top: 2px solid #000;" | ''Return''
 
|}
 
 
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
|-
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
 
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''ReadDigitalInputs'''
 
|-
 
| colspan="2" | Reads the state of up to eight digital inputs. Can pack a max of 8-bits together in a single operation 
 
|-
 
|-
 
| width="10%" align="center" | [[File:Fc9-u16-icon.png]] - UINT
 
| width="90%" | StartAddress
 
|-
 
| colspan="2" | Coil Address Range 0 to (NumCoils - 1) 
 
 
|-
 
|-
 
| width="10%" align="center" | [[File:Fc9-u8-icon.png]] - BYTE
 
| width="10%" align="center" | [[File:Fc9-u8-icon.png]] - BYTE
| width="90%" | AddressCount
+
| width="90%" | State
 
|-
 
|-
| colspan="2" | Range 1-8 
+
| colspan="2" | 0=off, 1=on 
 
|-
 
|-
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-u8-icon.png]] - BYTE
+
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-void-icon.png]] - VOID
 
| width="90%" style="border-top: 2px solid #000;" | ''Return''
 
| width="90%" style="border-top: 2px solid #000;" | ''Return''
 
|}
 
|}
  
  
 +
===SetHoldingRegister===
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
|-
 
|-
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''GetLastIncoming'''
+
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''SetHoldingRegister'''
|-
 
| colspan="2" | Gets a value from the last incoming command. Index 0 = 0 Read / 1 Write Index 1 = 0 Coils / 1 DigInput / 2 AnInput / 3 Register Index 2 = Address  Index 3 = Number 
 
 
|-
 
|-
|-
+
| colspan="2" | Sets the state of a single holding register. 
| width="10%" align="center" | [[File:Fc9-u8-icon.png]] - BYTE
 
| width="90%" | Index
 
|-
 
| colspan="2" | Range: 0-3 
 
|-
 
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-u16-icon.png]] - UINT
 
| width="90%" style="border-top: 2px solid #000;" | ''Return''
 
|}
 
 
 
 
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
|-
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
 
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''SetAnalogInput'''
 
|-
 
| colspan="2" | Sets the state of a single analogue input. 
 
 
|-
 
|-
 
|-
 
|-
Line 434: Line 328:
  
  
 +
===SetSlaveAddress===
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
|-
 
|-
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''Initialise'''
+
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''SetSlaveAddress'''
 
|-
 
|-
| colspan="2" | Starts up the UART to allow communications and initialises the states of the various  Modbus Coils, Inputs and Registers to 0. 
+
| colspan="2" | Allows the slave address to be overridden from the default slave address specified in the component property. The number of bytes used for the address is fixed by the Slave ID Bytes property to save on RAM usage. 
|-
 
|-
 
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-void-icon.png]] - VOID
 
| width="90%" style="border-top: 2px solid #000;" | ''Return''
 
|}
 
 
 
 
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
|-
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
 
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''Initialise'''
 
|-
 
| colspan="2" | Initialises the MIDI component and sets up the UART. 
 
|-
 
|-
 
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-void-icon.png]] - VOID
 
| width="90%" style="border-top: 2px solid #000;" | ''Return''
 
|}
 
 
 
 
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
|-
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
 
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''ReadAnalogInput'''
 
|-
 
| colspan="2" | Reads a single digital input. 
 
|-
 
|-
 
| width="10%" align="center" | [[File:Fc9-u8-icon.png]] - BYTE
 
| width="90%" | Channel
 
|-
 
| colspan="2" |  
 
|-
 
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-u16-icon.png]] - UINT
 
| width="90%" style="border-top: 2px solid #000;" | ''Return''
 
|}
 
 
 
 
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
|-
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
 
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''CommsBaud'''
 
|-
 
| colspan="2" | Sets the Baud rate of the alt communications channel 
 
|-
 
|-
 
| width="10%" align="center" | [[File:Fc9-u8-icon.png]] - BYTE
 
| width="90%" | Baud
 
|-
 
| colspan="2" | Range: 0-7 : 0=1200 / 7=115200 
 
|-
 
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-void-icon.png]] - VOID
 
| width="90%" style="border-top: 2px solid #000;" | ''Return''
 
|}
 
 
 
 
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
 
|-
 
|-
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
 
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''LCDOptions'''
 
|-
 
| colspan="2" | Controls some of the LCD options 
 
|-
 
|-
 
| width="10%" align="center" | [[File:Fc9-u8-icon.png]] - BYTE
 
| width="90%" | Foreground
 
|-
 
| colspan="2" | Range: 0-1 
 
|-
 
| width="10%" align="center" | [[File:Fc9-u8-icon.png]] - BYTE
 
| width="90%" | Background
 
|-
 
| colspan="2" | Range: 0-1 
 
|-
 
| width="10%" align="center" | [[File:Fc9-u8-icon.png]] - BYTE
 
| width="90%" | Transparent
 
|-
 
| colspan="2" | Range: 0-1 
 
|-
 
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-void-icon.png]] - VOID
 
| width="90%" style="border-top: 2px solid #000;" | ''Return''
 
|}
 
 
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
|-
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
 
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''LCDVerbose'''
 
|-
 
| colspan="2" | Controls the Verbose mode.  When enabled the LCD automatically displays an account of the incoming API commands and parameters. When switched off the LCD is free for the user to control as required. 
 
|-
 
|-
 
| width="10%" align="center" | [[File:Fc9-u8-icon.png]] - BYTE
 
| width="90%" | Mode
 
|-
 
| colspan="2" | Range: 0-1 : 0=Off or User Mode / 1=API Verbose Mode 
 
|-
 
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-void-icon.png]] - VOID
 
| width="90%" style="border-top: 2px solid #000;" | ''Return''
 
|}
 
 
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
|-
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
 
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''ReadDigitalInput'''
 
|-
 
| colspan="2" | Reads a single digital input. 
 
|-
 
|-
 
| width="10%" align="center" | [[File:Fc9-u8-icon.png]] - BYTE
 
| width="90%" | Channel
 
|-
 
| colspan="2" |  
 
|-
 
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-u8-icon.png]] - BYTE
 
| width="90%" style="border-top: 2px solid #000;" | ''Return''
 
|}
 
 
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
|-
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
 
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''PWMConfig'''
 
|-
 
| colspan="2" | Sets the PWM configuration. Channel = 0 - 1 : 0 = EN_AB, A, B / 1 = EN_CD, C, D Period = 0 - 65535 Scaler = 0 - 3 :  0=1:1 1=1:8 2=1:64 3=1:256 
 
|-
 
|-
 
| width="10%" align="center" | [[File:Fc9-u8-icon.png]] - BYTE
 
| width="90%" | Channel
 
|-
 
| colspan="2" | Range 0-1 
 
 
|-
 
|-
 
| width="10%" align="center" | [[File:Fc9-u16-icon.png]] - UINT
 
| width="10%" align="center" | [[File:Fc9-u16-icon.png]] - UINT
| width="90%" | Period
+
| width="90%" | SlaveAddress
|-
 
| colspan="2" | Range: 0-65535 
 
|-
 
| width="10%" align="center" | [[File:Fc9-u8-icon.png]] - BYTE
 
| width="90%" | Scaler
 
|-
 
| colspan="2" | Range: 0-3 
 
|-
 
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-void-icon.png]] - VOID
 
| width="90%" style="border-top: 2px solid #000;" | ''Return''
 
|}
 
 
 
 
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
|-
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
 
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''PWMEnable'''
 
|-
 
| colspan="2" | Allows pulse width modulated transistor outputs to be switched on or off. Bit 0 = Enable AB Bit 1 = A / Bit 2 = B Bit 3 = C / Bit 4 = D Bit 5 = Enable CD 
 
|-
 
|-
 
| width="10%" align="center" | [[File:Fc9-u8-icon.png]] - BYTE
 
| width="90%" | EnableMask
 
|-
 
| colspan="2" | Range 0-63 or 0b00000 to 0b111111 
 
|-
 
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-void-icon.png]] - VOID
 
| width="90%" style="border-top: 2px solid #000;" | ''Return''
 
|}
 
 
 
 
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
|-
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
 
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''PWMDuty'''
 
|-
 
| colspan="2" | Sets a single PWM channel duty. Channel = 0 - 5 : 0=EN_AB, 1=A, 2=B, 3=C, 4=D, 5=EN_CD Duty = 0 - 65535 
 
|-
 
|-
 
| width="10%" align="center" | [[File:Fc9-u8-icon.png]] - BYTE
 
| width="90%" | Channel
 
|-
 
| colspan="2" | Range 0-5 
 
|-
 
| width="10%" align="center" | [[File:Fc9-u16-icon.png]] - UINT
 
| width="90%" | Duty
 
 
|-
 
|-
 
| colspan="2" |  
 
| colspan="2" |  
Line 629: Line 347:
  
  
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
+
==Property reference==
|-
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
 
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''LCDCursor'''
 
|-
 
| colspan="2" | Sets the cursor position for the MIAC display 
 
|-
 
|-
 
| width="10%" align="center" | [[File:Fc9-u8-icon.png]] - BYTE
 
| width="90%" | X
 
|-
 
| colspan="2" | Range: 0-21 
 
|-
 
| width="10%" align="center" | [[File:Fc9-u8-icon.png]] - BYTE
 
| width="90%" | Y
 
|-
 
| colspan="2" | Range: 0-4 
 
|-
 
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-void-icon.png]] - VOID
 
| width="90%" style="border-top: 2px solid #000;" | ''Return''
 
|}
 
 
 
  
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
|-
 
|-
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
+
| width="10%" align="center" style="background-color:#D8C9D8;" | [[File:Fc9-prop-icon.png]]
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''WriteTran'''
+
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''Properties'''  
 
|-
 
|-
| colspan="2" | Allows a single transistor output to be switched on or off. 
 
 
|-
 
|-
 +
| width="10%" align="center" style="background-color:#EAE1EA;" | [[File:Fc9-conn-icon.png]]
 +
| width="90%" style="background-color:#EAE1EA; color:#4B008D;" | Modbus TCP/IP Properties
 
|-
 
|-
| width="10%" align="center" | [[File:Fc9-u8-icon.png]] - BYTE
 
| width="90%" | Channel
 
 
|-
 
|-
| colspan="2" | Range 1-4 
+
| width="10%" align="center" | [[File:Fc9-type-16-icon.png]]
|-
+
| width="90%" | LinkTo
| width="10%" align="center" | [[File:Fc9-u8-icon.png]] - BYTE
 
| width="90%" | Value
 
|-
 
| colspan="2" | 0 = Off, 1 = On 
 
|-
 
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-void-icon.png]] - VOID
 
| width="90%" style="border-top: 2px solid #000;" | ''Return''
 
|}
 
 
 
 
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
|-
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
 
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''Initialise'''
 
 
|-
 
|-
 
| colspan="2" |  
 
| colspan="2" |  
|-
 
|-
 
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-void-icon.png]] - VOID
 
| width="90%" style="border-top: 2px solid #000;" | ''Return''
 
|}
 
 
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
|-
 
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
 
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''LCDClear'''
 
|-
 
| colspan="2" | Clears the MIAC display 
 
|-
 
|-
 
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-void-icon.png]] - VOID
 
| width="90%" style="border-top: 2px solid #000;" | ''Return''
 
|}
 
 
 
 
 
==Property reference==
 
 
{| class="wikitable" style="width:60%; background-color:#FFFFFF;"
 
|-
 
| width="10%" align="center" style="background-color:#D8C9D8;" | [[File:Fc9-prop-icon.png]]
 
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''Properties'''
 
|-
 
|-
 
| width="10%" align="center" | [[File:Fc9-type-17-icon.png]]
 
| width="90%" | Network Comms Component
 
|-
 
| colspan="2" | Redirects communications via the selected component allowing different TCP/IP modules with different macros to work. 
 
 
|-
 
|-
 
| width="10%" align="center" | [[File:Fc9-type-10-icon.png]]
 
| width="10%" align="center" | [[File:Fc9-type-10-icon.png]]
Line 750: Line 398:
 
|-
 
|-
 
| colspan="2" |  
 
| colspan="2" |  
 +
|-
 +
| width="10%" align="center" style="background-color:#EAE1EA;" | [[File:Fc9-conn-icon.png]]
 +
| width="90%" style="background-color:#EAE1EA; color:#4B008D;" | Simulation Properties
 +
|-
 
|-
 
|-
 
| width="10%" align="center" | [[File:Fc9-type-10-icon.png]]
 
| width="10%" align="center" | [[File:Fc9-type-10-icon.png]]
Line 755: Line 407:
 
|-
 
|-
 
| colspan="2" | A text label to appear on the Modbus panel object. 
 
| colspan="2" | A text label to appear on the Modbus panel object. 
 +
|-
 +
| width="10%" align="center" style="background-color:#EAE1EA;" | [[File:Fc9-conn-icon.png]]
 +
| width="90%" style="background-color:#EAE1EA; color:#4B008D;" | Modbus Coils - Single bit values
 +
|-
 
|-
 
|-
 
| width="10%" align="center" | [[File:Fc9-type-21-icon.png]]
 
| width="10%" align="center" | [[File:Fc9-type-21-icon.png]]
Line 765: Line 421:
 
|-
 
|-
 
| colspan="2" | Specifies how many Coils are available on the slave. Each address consumes a single bit of RAM, 8 Addresses are packed together into a single RAM Byte. 
 
| colspan="2" | Specifies how many Coils are available on the slave. Each address consumes a single bit of RAM, 8 Addresses are packed together into a single RAM Byte. 
 +
|-
 +
| width="10%" align="center" style="background-color:#EAE1EA;" | [[File:Fc9-conn-icon.png]]
 +
| width="90%" style="background-color:#EAE1EA; color:#4B008D;" | Digital Inputs - Single bit values
 +
|-
 
|-
 
|-
 
| width="10%" align="center" | [[File:Fc9-type-21-icon.png]]
 
| width="10%" align="center" | [[File:Fc9-type-21-icon.png]]
Line 775: Line 435:
 
|-
 
|-
 
| colspan="2" | Specifies how many Digital Inputs are available on the slave. Each address consumes a single bit of RAM, 8 Addresses are packed together into a single RAM Byte. 
 
| colspan="2" | Specifies how many Digital Inputs are available on the slave. Each address consumes a single bit of RAM, 8 Addresses are packed together into a single RAM Byte. 
 +
|-
 +
| width="10%" align="center" style="background-color:#EAE1EA;" | [[File:Fc9-conn-icon.png]]
 +
| width="90%" style="background-color:#EAE1EA; color:#4B008D;" | Analog Inputs - 16-bit values
 +
|-
 
|-
 
|-
 
| width="10%" align="center" | [[File:Fc9-type-21-icon.png]]
 
| width="10%" align="center" | [[File:Fc9-type-21-icon.png]]
Line 785: Line 449:
 
|-
 
|-
 
| colspan="2" | Specifies how many 16-bit analogue inputs are available on the slave. Each address consumes two RAM Bytes. 
 
| colspan="2" | Specifies how many 16-bit analogue inputs are available on the slave. Each address consumes two RAM Bytes. 
 +
|-
 +
| width="10%" align="center" style="background-color:#EAE1EA;" | [[File:Fc9-conn-icon.png]]
 +
| width="90%" style="background-color:#EAE1EA; color:#4B008D;" | Holding Registers - 16-bit values
 +
|-
 
|-
 
|-
 
| width="10%" align="center" | [[File:Fc9-type-21-icon.png]]
 
| width="10%" align="center" | [[File:Fc9-type-21-icon.png]]
Line 795: Line 463:
 
|-
 
|-
 
| colspan="2" | Specifies how many 16-bit holding registers are available on the slave. Each address consumes two RAM Bytes. 
 
| colspan="2" | Specifies how many 16-bit holding registers are available on the slave. Each address consumes two RAM Bytes. 
|-
 
| width="10%" align="center" style="background-color:#D8C9D8;" | [[File:Fc9-conn-icon.png]]
 
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''Connections'''
 
|-
 
|-
 
| width="10%" align="center" style="background-color:#D8C9D8;" | [[File:Fc9-conn-icon.png]]
 
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''Simulations'''
 
|-
 
 
|}
 
|}

Latest revision as of 15:13, 18 July 2023

Author Matrix Ltd.
Version 2.1
Category Comms: System


Modbus TCP Slave component

Modbus component for creating Modbus compatible slave hardware via Ethernet or WIFI. Ensure TCP/IP or WIFI component is initialised and connected to a network before calling the ModbusSlaveTCP component macros.

Component Source Code

Please click here to download the component source project: FC_Comp_Source_ModbusSlaveTCP.fcfx

Please click here to view the component source code (Beta): FC_Comp_Source_ModbusSlaveTCP.fcfx

Detailed description

No detailed description exists yet for this component

Examples

Example master program to control the slave. The example sets coil address 0, clears coil address 0, reads an input register and outputs to the LCD. Be sure to set the IP address of the slave device at the top of the program. If you are simulating then use the IP address of the PC running the Slave simulation. Both programs can be simulated on the same PC using two instances of Flowcode.

FC6 Icon.png Modbus TCP Master Example


Example slave program to react to the signals from the master. The example listens for Modbus commands from the master and outputs the current coils 0 state to an LED connected to PortA. The input register is loaded with a value which is incremented on each Modbus transaction.

FC6 Icon.png Modbus TCP Slave Example


Addressing

In Modbus the addressing protocol looks like this.

Data Type Common name Starting address Ending Address Flowcode Start Address Flowcode End Address
Modbus Coils Bits, binary values, flags 00001 10000 0 9999
Digital Inputs Binary inputs 10001 30000 0 19999
Analog Inputs Binary inputs 30001 40000 0 9999
Modbus Registers Analog values, variables 40001 60000 0 19999


In Flowcode each section starts from 0 so the address range is as shown.

Macro reference

CheckForIncoming

Fc9-comp-macro.png CheckForIncoming
Checks for an incoming message and if the data address is within range then also automatically replies with the correct reply. Returns 0 if no comms received, 1 for a succesful transaction, 255 for an error. 
Fc9-u8-icon.png - BYTE Return


GetLastIncoming

Fc9-comp-macro.png GetLastIncoming
Gets a value from the last incoming command. Index 0 = 0 Read / 1 Write Index 1 = 0 Coils / 1 DigInput / 2 AnInput / 3 Register Index 2 = Address Index 3 = Number 
Fc9-u8-icon.png - BYTE Index
Range: 0-3 
Fc9-u16-icon.png - UINT Return


Initialise

Fc9-comp-macro.png Initialise
Starts up the UART to allow communications and initialises the states of the various Modbus Coils, Inputs and Registers to 0. 
Fc9-void-icon.png - VOID Return


ReadAnalogInput

Fc9-comp-macro.png ReadAnalogInput
Reads the value of a single analogue input. 
Fc9-u16-icon.png - UINT Address
Coil Address 
Fc9-u16-icon.png - UINT Return


ReadCoils

Fc9-comp-macro.png ReadCoils
Reads the state of a single digital coil. Can pack a max of 8-bits together in a single operation 
Fc9-u16-icon.png - UINT StartAddress
Coil Address Range 0 to (NumCoils - 1) 
Fc9-u8-icon.png - BYTE AddressCount
Range 1-8 
Fc9-u8-icon.png - BYTE Return


ReadDigitalInputs

Fc9-comp-macro.png ReadDigitalInputs
Reads the state of a single digital input. Can pack a max of 8-bits together in a single operation 
Fc9-u16-icon.png - UINT StartAddress
Coil Address Range 0 to (NumCoils - 1) 
Fc9-u8-icon.png - BYTE AddressCount
Range 1-8 
Fc9-u8-icon.png - BYTE Return


ReadHoldingRegister

Fc9-comp-macro.png ReadHoldingRegister
Reads the value of a single holding register. 
Fc9-u16-icon.png - UINT Address
Coil Address 
Fc9-u16-icon.png - UINT Return


SetAnalogInput

Fc9-comp-macro.png SetAnalogInput
Sets the state of a single analogue input. 
Fc9-u16-icon.png - UINT Address
Coil Address 
Fc9-u16-icon.png - UINT Value
Analogue Value range 0 - 65535 
Fc9-void-icon.png - VOID Return


SetCoil

Fc9-comp-macro.png SetCoil
Sets the state of a single digital coil. 
Fc9-u16-icon.png - UINT Address
Coil Address 
Fc9-u8-icon.png - BYTE State
0=off, 1=on 
Fc9-void-icon.png - VOID Return


SetDigitalInput

Fc9-comp-macro.png SetDigitalInput
Sets the state of a single digital input. 
Fc9-u16-icon.png - UINT Address
Coil Address 
Fc9-u8-icon.png - BYTE State
0=off, 1=on 
Fc9-void-icon.png - VOID Return


SetHoldingRegister

Fc9-comp-macro.png SetHoldingRegister
Sets the state of a single holding register. 
Fc9-u16-icon.png - UINT Address
Coil Address 
Fc9-u16-icon.png - UINT Value
Analogue Value range 0 - 65535 
Fc9-void-icon.png - VOID Return


SetSlaveAddress

Fc9-comp-macro.png SetSlaveAddress
Allows the slave address to be overridden from the default slave address specified in the component property. The number of bytes used for the address is fixed by the Slave ID Bytes property to save on RAM usage. 
Fc9-u16-icon.png - UINT SlaveAddress
 
Fc9-void-icon.png - VOID Return


Property reference

Fc9-prop-icon.png Properties
Fc9-conn-icon.png Modbus TCP/IP Properties
Fc9-type-16-icon.png LinkTo
 
Fc9-type-10-icon.png Status
Shows the state of the network comms component to verify everything is configured correctly. 
Fc9-type-21-icon.png TCP/IP Port
Port used for network communications Range: 0-65535 
Fc9-type-21-icon.png Receive Buffer Size
Maximum number of bytes the receive buffer can hold 
Fc9-type-21-icon.png Receive Timeout
Maximum time to wait for reply, in mS 
Fc9-type-21-icon.png Slave Address
Address of the slave. Range: 0-255 
Fc9-type-7-icon.png Maintain Stats
Controls if the last command from the master is logged allowing for easier value updates. No - Do not log commands Yes - Commands are logged and available via the GetLastIncoming macro 
Fc9-type-7-icon.png Open and Close Socket
 
Fc9-conn-icon.png Simulation Properties
Fc9-type-10-icon.png Label
A text label to appear on the Modbus panel object. 
Fc9-conn-icon.png Modbus Coils - Single bit values
Fc9-type-21-icon.png Starting Address
Start address of the Modbus coils. Referenced from 0. For example Slave 1 might have 100 coils addressed 0-99 Start Address = 0 Slave 2 might have 100 coils addressed 100-199 Start Address = 100 
Fc9-type-21-icon.png Number of Addresses
Specifies how many Coils are available on the slave. Each address consumes a single bit of RAM, 8 Addresses are packed together into a single RAM Byte. 
Fc9-conn-icon.png Digital Inputs - Single bit values
Fc9-type-21-icon.png Starting Address
Start address of the Modbus digital inputs. Referenced from 0. For example Slave 1 might have 100 inputs addressed 0-99 Start Address = 0 Slave 2 might have 100 inputs addressed 100-199 Start Address = 100 
Fc9-type-21-icon.png Number of Addresses
Specifies how many Digital Inputs are available on the slave. Each address consumes a single bit of RAM, 8 Addresses are packed together into a single RAM Byte. 
Fc9-conn-icon.png Analog Inputs - 16-bit values
Fc9-type-21-icon.png Starting Address
Start address of the Modbus analogue inputs. Referenced from 0. For example Slave 1 might have 100 inputs addressed 0-99 Start Address = 0 Slave 2 might have 100 inputs addressed 100-199 Start Address = 100 
Fc9-type-21-icon.png Number of Addresses
Specifies how many 16-bit analogue inputs are available on the slave. Each address consumes two RAM Bytes. 
Fc9-conn-icon.png Holding Registers - 16-bit values
Fc9-type-21-icon.png Starting Address
Start address of the Modbus registers. Referenced from 0. For example Slave 1 might have 100 registers addressed 0-99 Start Address = 0 Slave 2 might have 100 registers addressed 100-199 Start Address = 100 
Fc9-type-21-icon.png Number of Addresses
Specifies how many 16-bit holding registers are available on the slave. Each address consumes two RAM Bytes.