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| Matrix TSL
| Matrix TSL
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| 1.0 (Release)
| 1.0
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| Comms: System
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==Modbus Slave (SCADA) component==
==[[File:Component Icon a93b1f52_b96d_4a14_806e_63f73d2654b2.png|Image]] Modbus Slave (SCADA) component==
Modbus component for creating Modbus compatible slave hardware via RS232 or RS485.  
Modbus component for creating Modbus compatible slave hardware via RS232 or RS485.  


==Examples==
==Component Source Code==
''<span style="color:red;">No additional examples</span>''


Please click here to download the component source project: [https://www.flowcode.co.uk/wiki/componentsource/FC_Comp_Source_Modbus_Slave_SCADA.fcsx FC_Comp_Source_Modbus_Slave_SCADA.fcsx]


==Downloadable macro reference==
Please click here to view the component source code (Beta): [https://www.flowcode.co.uk/FlowchartView/?wfile=componentsource/FC_Comp_Source_Modbus_Slave_SCADA.fcsx FC_Comp_Source_Modbus_Slave_SCADA.fcsx]


===<span style="font-weight: normal;"><u><tt>ReadHoldingRegister</tt></u></span>===
==Detailed description==
Reads the value of a single holding register.


'''Parameters'''


:[[Variable Types|UINT]] ''Address''
::Coil Address




'''Return value'''


:[[Variable Types|UINT]]




===<span style="font-weight: normal;"><u><tt>ReadCoilStates</tt></u></span>===
Reads the state of a single digital coil.


Can pack a max of 8-bits together in a single operation


'''Parameters'''


:[[Variable Types|UINT]] ''StartAddress''
::Coil Address Range 0 to (NumCoils - 1)


:[[Variable Types|BYTE]] ''AddressCount''
::Range 1-8




'''Return value'''


:[[Variable Types|BYTE]]




===<span style="font-weight: normal;"><u><tt>ReadAnalogueInput</tt></u></span>===
Reads the value of a single analogue input.


'''Parameters'''


:[[Variable Types|UINT]] ''Address''
::Coil Address




'''Return value'''


:[[Variable Types|UINT]]




===<span style="font-weight: normal;"><u><tt>ReadInputStates</tt></u></span>===
''No detailed description exists yet for this component''
Reads the state of a single digital input.


Can pack a max of 8-bits together in a single operation
==Examples==


'''Parameters'''


:[[Variable Types|UINT]] ''StartAddress''
::Coil Address Range 0 to (NumCoils - 1)


:[[Variable Types|BYTE]] ''AddressCount''
::Range 1-8




'''Return value'''


:[[Variable Types|BYTE]]




===<span style="font-weight: normal;"><u><tt>SetSlaveAddress</tt></u></span>===
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.


'''Parameters'''


:[[Variable Types|UINT]] ''SlaveAddress''




'''Return value'''


:''This call does not return a value''




===<span style="font-weight: normal;"><u><tt>SetCoilState</tt></u></span>===
Sets the state of a single digital coil.


'''Parameters'''


:[[Variable Types|UINT]] ''Address''
::Coil Address


:[[Variable Types|BYTE]] ''State''
::0=off, 1=on




'''Return value'''


:''This call does not return a value''


''<span style="color:red;">No additional examples</span>''


===<span style="font-weight: normal;"><u><tt>ChangeFrameType</tt></u></span>===
Default frame type is the type set in the component properties.


'''Parameters'''


:[[Variable Types|BYTE]] ''Type''
::0 = Modbus RTU / 1 = Modbus ASCII




'''Return value'''


:''This call does not return a value''




===<span style="font-weight: normal;"><u><tt>SetInputState</tt></u></span>===
Sets the state of a single digital input.


'''Parameters'''


:[[Variable Types|UINT]] ''Address''
::Coil Address


:[[Variable Types|BYTE]] ''State''
::0=off, 1=on




'''Return value'''


:''This call does not return a value''
==Macro reference==


===ChangeFrameType===
{| class="mtx-class-macrotable wikitable"
|-
| width="10%" align="center" class="mtx-class-macrohead" | [[File:Fc9-comp-macro.png]]
| width="90%" class="mtx-class-macrohead" | '''ChangeFrameType'''
|-
| colspan="2" | Default frame type is the type set in the component properties.&nbsp;
|-
|-
| width="10%" align="center" | [[File:Fc9-u8-icon.png]] - BYTE
| width="90%" | Type
|-
| colspan="2" | 0 = Modbus RTU / 1 = Modbus ASCII&nbsp;
|-
| 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''
|}


===<span style="font-weight: normal;"><u><tt>SetHoldingRegister</tt></u></span>===
Sets the state of a single holding register.


'''Parameters'''
===CheckForIncoming===
{| class="mtx-class-macrotable wikitable"
|-
| width="10%" align="center" class="mtx-class-macrohead" | [[File:Fc9-comp-macro.png]]
| width="90%" class="mtx-class-macrohead" | '''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.&nbsp;
|-
|-
| 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''
|}


:[[Variable Types|UINT]] ''Address''
::Coil Address


:[[Variable Types|UINT]] ''Value''
===GetLastIncoming===
::Analogue Value range 0 - 65535
{| class="mtx-class-macrotable wikitable"
|-
| width="10%" align="center" class="mtx-class-macrohead" | [[File:Fc9-comp-macro.png]]
| width="90%" class="mtx-class-macrohead" | '''GetLastIncoming'''
|-
| 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&nbsp;
|-
|-
| width="10%" align="center" | [[File:Fc9-u8-icon.png]] - BYTE
| width="90%" | Index
|-
| colspan="2" | Range: 0-3&nbsp;
|-
| 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''
|}




'''Return value'''
===Initialise===
{| class="mtx-class-macrotable wikitable"
|-
| width="10%" align="center" class="mtx-class-macrohead" | [[File:Fc9-comp-macro.png]]
| width="90%" class="mtx-class-macrohead" | '''Initialise'''
|-
| colspan="2" | Starts up the UART to allow communications and initialises the states of the various  Modbus Coils, Inputs and Registers to 0.&nbsp;
|-
|-
| 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''
|}


:''This call does not return a value''


===ReadAnalogInput===
{| class="mtx-class-macrotable wikitable"
|-
| width="10%" align="center" class="mtx-class-macrohead" | [[File:Fc9-comp-macro.png]]
| width="90%" class="mtx-class-macrohead" | '''ReadAnalogInput'''
|-
| colspan="2" | Reads the value of a single analogue input.&nbsp;
|-
|-
| width="10%" align="center" | [[File:Fc9-u16-icon.png]] - UINT
| width="90%" | Address
|-
| colspan="2" | Coil Address&nbsp;
|-
| 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''
|}


===<span style="font-weight: normal;"><u><tt>CheckForIncoming</tt></u></span>===
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.
===ReadCoils===
{| class="mtx-class-macrotable wikitable"
|-
| width="10%" align="center" class="mtx-class-macrohead" | [[File:Fc9-comp-macro.png]]
| width="90%" class="mtx-class-macrohead" | '''ReadCoils'''
|-
| colspan="2" | Reads the state of up to eight digital coils. Can pack a max of 8-bits together in a single operation&nbsp;
|-
|-
| width="10%" align="center" | [[File:Fc9-u16-icon.png]] - UINT
| width="90%" | StartAddress
|-
| colspan="2" | Coil Address Range 0 to (NumCoils - 1)&nbsp;
|-
| width="10%" align="center" | [[File:Fc9-u8-icon.png]] - BYTE
| width="90%" | AddressCount
|-
| colspan="2" | Range 1-8&nbsp;
|-
| 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''
|}


'''Parameters'''


:''This macro has no parameters''
===ReadDigitalInputs===
{| class="mtx-class-macrotable wikitable"
|-
| width="10%" align="center" class="mtx-class-macrohead" | [[File:Fc9-comp-macro.png]]
| width="90%" class="mtx-class-macrohead" | '''ReadDigitalInputs'''
|-
| colspan="2" | Reads the state of up to eight digital inputs. Can pack a max of 8-bits together in a single operation&nbsp;
|-
|-
| width="10%" align="center" | [[File:Fc9-u16-icon.png]] - UINT
| width="90%" | StartAddress
|-
| colspan="2" | Coil Address Range 0 to (NumCoils - 1)&nbsp;
|-
| width="10%" align="center" | [[File:Fc9-u8-icon.png]] - BYTE
| width="90%" | AddressCount
|-
| colspan="2" | Range 1-8&nbsp;
|-
| 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''
|}




'''Return value'''
===ReadHoldingRegister===
{| class="mtx-class-macrotable wikitable"
|-
| width="10%" align="center" class="mtx-class-macrohead" | [[File:Fc9-comp-macro.png]]
| width="90%" class="mtx-class-macrohead" | '''ReadHoldingRegister'''
|-
| colspan="2" | Reads the value of a single holding register.&nbsp;
|-
|-
| width="10%" align="center" | [[File:Fc9-u16-icon.png]] - UINT
| width="90%" | Address
|-
| colspan="2" | Coil Address&nbsp;
|-
| 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''
|}


:[[Variable Types|BYTE]]


===SetAnalogInput===
{| class="mtx-class-macrotable wikitable"
|-
| width="10%" align="center" class="mtx-class-macrohead" | [[File:Fc9-comp-macro.png]]
| width="90%" class="mtx-class-macrohead" | '''SetAnalogInput'''
|-
| colspan="2" | Sets the state of a single analogue input.&nbsp;
|-
|-
| width="10%" align="center" | [[File:Fc9-u16-icon.png]] - UINT
| width="90%" | Address
|-
| colspan="2" | Coil Address&nbsp;
|-
| width="10%" align="center" | [[File:Fc9-u16-icon.png]] - UINT
| width="90%" | Value
|-
| colspan="2" | Analogue Value range 0 - 65535&nbsp;
|-
| 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''
|}


===<span style="font-weight: normal;"><u><tt>GetLastIncoming</tt></u></span>===
Gets a value from the last incoming command.


Index 0 = 0 Read / 1 Write
===SetCoil===
{| class="mtx-class-macrotable wikitable"
|-
| width="10%" align="center" class="mtx-class-macrohead" | [[File:Fc9-comp-macro.png]]
| width="90%" class="mtx-class-macrohead" | '''SetCoil'''
|-
| colspan="2" | Sets the state of a single digital coil.&nbsp;
|-
|-
| width="10%" align="center" | [[File:Fc9-u16-icon.png]] - UINT
| width="90%" | Address
|-
| colspan="2" | Coil Address&nbsp;
|-
| width="10%" align="center" | [[File:Fc9-u8-icon.png]] - BYTE
| width="90%" | State
|-
| colspan="2" | 0=off, 1=on&nbsp;
|-
| 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''
|}


Index 1 = 0 Coils / 1 DigInput / 2 AnInput / 3 Register


Index 2 = Address  
===SetDigitalInput===
{| class="mtx-class-macrotable wikitable"
|-
| width="10%" align="center" class="mtx-class-macrohead" | [[File:Fc9-comp-macro.png]]
| width="90%" class="mtx-class-macrohead" | '''SetDigitalInput'''
|-
| colspan="2" | Sets the state of a single digital input.&nbsp;
|-
|-
| width="10%" align="center" | [[File:Fc9-u16-icon.png]] - UINT
| width="90%" | Address
|-
| colspan="2" | Coil Address&nbsp;
|-
| width="10%" align="center" | [[File:Fc9-u8-icon.png]] - BYTE
| width="90%" | State
|-
| colspan="2" | 0=off, 1=on&nbsp;
|-
| 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''
|}


Index 3 = Number


'''Parameters'''
===SetHoldingRegister===
{| class="mtx-class-macrotable wikitable"
|-
| width="10%" align="center" class="mtx-class-macrohead" | [[File:Fc9-comp-macro.png]]
| width="90%" class="mtx-class-macrohead" | '''SetHoldingRegister'''
|-
| colspan="2" | Sets the state of a single holding register.&nbsp;
|-
|-
| width="10%" align="center" | [[File:Fc9-u16-icon.png]] - UINT
| width="90%" | Address
|-
| colspan="2" | Coil Address&nbsp;
|-
| width="10%" align="center" | [[File:Fc9-u16-icon.png]] - UINT
| width="90%" | Value
|-
| colspan="2" | Analogue Value range 0 - 65535&nbsp;
|-
| 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''
|}


:''This macro has no parameters''


 
===SetSlaveAddress===
'''Return value'''
{| class="mtx-class-macrotable wikitable"
 
|-
:[[Variable Types|UINT]]
| width="10%" align="center" class="mtx-class-macrohead" | [[File:Fc9-comp-macro.png]]
 
| width="90%" class="mtx-class-macrohead" | '''SetSlaveAddress'''
 
|-
===<span style="font-weight: normal;"><u><tt>SetAnalogueInput</tt></u></span>===
| 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.&nbsp;
Sets the state of a single analogue input.
|-
 
|-
'''Parameters'''
| width="10%" align="center" | [[File:Fc9-u16-icon.png]] - UINT
 
| width="90%" | SlaveAddress
:[[Variable Types|UINT]] ''Address''
|-
::Coil Address
| colspan="2" | &nbsp;
 
|-
:[[Variable Types|UINT]] ''Value''
| width="10%" align="center" style="border-top: 2px solid #000;" | [[File:Fc9-void-icon.png]] - VOID
::Analogue Value range 0 - 65535
| width="90%" style="border-top: 2px solid #000;" | ''Return''
 
|}
 
'''Return value'''
 
:''This call does not return a value''
 
 
===<span style="font-weight: normal;"><u><tt>Initialise</tt></u></span>===
Starts up the UART to allow communications and initialises the states of the various
 
Modbus Coils, Inputs and Registers to 0.
 
'''Parameters'''
 
:''This macro has no parameters''
 
 
'''Return value'''
 
:''This call does not return a value''
 
 
 
==Simulation macro reference==
 
''This component does not contain any simulation macros''




==Property reference==
==Property reference==
<span style="font-weight: normal;"><u>Frame Type</u></span>


This property is of type ''Fixed list of ints'' and can be referenced with the variable name ''FrameType''.
{| class="mtx-class-macrotable wikitable"
 
|-
Switches between RTU and ASCII forms of Modbus
| width="10%" align="center" class="mtx-class-macrohead" | [[File:Fc9-prop-icon.png]]
 
| width="90%" class="mtx-class-macrohead" | '''Properties'''  
<span style="font-weight: normal;"><u>Receive Buffer Size</u></span>
|-
 
|-
This property is of type ''Unsigned integer'' and can be referenced with the variable name ''ReceiveBufferSize''.
| width="10%" align="center" class="mtx-class-propfolder" | [[File:Fc9-conn-icon.png]]
 
| width="90%" class="mtx-class-propfolder" | Modbus Properties
Maximum number of bytes the receive buffer can hold
|-
 
|-
<span style="font-weight: normal;"><u>Receive Timeout</u></span>
| width="10%" align="center" | [[File:Fc9-type-16-icon.png]]
 
| width="90%" | Frame Type
This property is of type ''Unsigned integer'' and can be referenced with the variable name ''Timeout''.
|-
 
| colspan="2" | Switches between RTU and ASCII forms of Modbus&nbsp;
Length in milliseconds to wait for additional bytes to be received when checking for incoming messages.
|-
 
| width="10%" align="center" | [[File:Fc9-type-21-icon.png]]
<span style="font-weight: normal;"><u>Slave ID Bytes</u></span>
| width="90%" | Receive Buffer Size
 
|-
This property is of type ''Unsigned integer'' and can be referenced with the variable name ''AddressBytes''.
| colspan="2" | Maximum number of bytes the receive buffer can hold&nbsp;
 
|-
Number of bytes used when passing a slave ID, usually 1 but sometimes 2
| width="10%" align="center" | [[File:Fc9-type-21-icon.png]]
 
| width="90%" | Receive Timeout
<span style="font-weight: normal;"><u>Slave Address</u></span>
|-
 
| colspan="2" | Length in milliseconds to wait for additional bytes to be received when checking for incoming messages.&nbsp;
This property is of type ''Unsigned integer'' and can be referenced with the variable name ''SlaveAddress''.
|-
 
| width="10%" align="center" | [[File:Fc9-type-21-icon.png]]
''<span style="color:red;">No additional information</span>''
| width="90%" | Slave ID Bytes
 
|-
 
| colspan="2" | Number of bytes used when passing a slave ID, usually 1 but sometimes 2&nbsp;
 
|-
<span style="font-weight: normal;"><u>Reply Delay</u></span>
| width="10%" align="center" | [[File:Fc9-type-21-icon.png]]
 
| width="90%" | Slave Address
This property is of type ''Unsigned integer'' and can be referenced with the variable name ''ReplyDelay''.
|-
 
| colspan="2" | &nbsp;
Delay in micro seconds to wait before transmitting a reply
|-
 
| width="10%" align="center" | [[File:Fc9-type-21-icon.png]]
<span style="font-weight: normal;"><u>Maintain Stats</u></span>
| width="90%" | Reply Delay
 
|-
This property is of type ''True or false'' and can be referenced with the variable name ''Stats''.
| colspan="2" | Delay in micro seconds to wait before transmitting a reply&nbsp;
 
|-
Controls if the last command from the master is logged allowing for easier value updates.
| width="10%" align="center" | [[File:Fc9-type-7-icon.png]]
 
| width="90%" | Maintain Stats
No - Do not log commands
|-
 
| colspan="2" | 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&nbsp;
Yes - Commands are logged and available via the GetLastIncoming macro
|-
 
| width="10%" align="center" class="mtx-class-propfolder" | [[File:Fc9-conn-icon.png]]
<span style="font-weight: normal;"><u>Label</u></span>
| width="90%" class="mtx-class-propfolder" | Runtime Properties
 
|-
This property is of type ''Line of text'' and can be referenced with the variable name ''label''.
|-
 
| width="10%" align="center" | [[File:Fc9-type-10-icon.png]]
A text label to appear on the Modbus panel object.
| width="90%" | Label
 
|-
<span style="font-weight: normal;"><u>Console Data</u></span>
| colspan="2" | A text label to appear on the Modbus panel object.&nbsp;
 
|-
This property is of type ''True or false'' and can be referenced with the variable name ''scada_uart1::ConsoleData''.
| width="10%" align="center" | [[File:Fc9-type-7-icon.png]]
 
| width="90%" | Console Data
Selects if the console data is automatically generated or not
|-
 
| colspan="2" | Selects if the console data is automatically generated or not&nbsp;
<span style="font-weight: normal;"><u>Console Columns</u></span>
|-
 
| width="10%" align="center" | [[File:Fc9-type-21-icon.png]]
This property is of type ''Unsigned integer'' and can be referenced with the variable name ''scada_uart1::ConsoleColumns''.
| width="90%" | Console Columns
 
|-
Number of characters that can be displayed on a single line of the console.
| colspan="2" | Number of characters that can be displayed on a single line of the console.&nbsp;
 
|-
<span style="font-weight: normal;"><u>Data Source</u></span>
| width="10%" align="center" | [[File:Fc9-type-16-icon.png]]
 
| width="90%" | Data Source
This property is of type ''Fixed list of ints'' and can be referenced with the variable name ''scada_uart1::DataSource''.
|-
 
| colspan="2" | Simulation data source used to allow the component to connect to various remote devices    Nothing - Simulation data is ignored    COM port - Routes the communication data to and from a physical or virtual COM port     Injector - Routes the communication data via a data injector component on the Panel.&nbsp;
Simulation data source used to allow the component to connect to various remote devices
|-
 
| width="10%" align="center" | [[File:Fc9-type-16-icon.png]]
     Nothing - Simulation data is ignored
| width="90%" | COM Port
 
|-
     COM port - Routes the communication data to and from a physical or virtual COM port  
| colspan="2" | Lists all the current available COM port hardware on your PC.&nbsp;
 
|-
    Injector - Routes the communication data via a data injector component on the Panel.
| width="10%" align="center" | [[File:Fc9-type-7-icon.png]]
 
| width="90%" | Refresh Ports
<span style="font-weight: normal;"><u>COM Port</u></span>
|-
 
| colspan="2" | &nbsp;
This property is of type ''Fixed list of ints'' and can be referenced with the variable name ''scada_uart1::com_port''.
|-
 
| width="10%" align="center" | [[File:Fc9-type-21-icon.png]]
Lists all the current available COM port hardware on your PC.
| width="90%" | Baud Rate
 
|-
<span style="font-weight: normal;"><u>Baud Rate</u></span>
| colspan="2" | COM port data rate in bits per second&nbsp;
 
|-
This property is of type ''Unsigned integer'' and can be referenced with the variable name ''scada_uart1::baud''.
| width="10%" align="center" class="mtx-class-propfolder" | [[File:Fc9-conn-icon.png]]
 
| width="90%" class="mtx-class-propfolder" | Modbus Coils - Single bit values
COM port data rate in bits per second
|-
 
|-
<span style="font-weight: normal;"><u>Starting Address</u></span>
| width="10%" align="center" | [[File:Fc9-type-21-icon.png]]
 
| width="90%" | Starting Address
This property is of type ''Unsigned integer'' and can be referenced with the variable name ''StartAdrCoil''.
|-
 
| colspan="2" | 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&nbsp;
Start address of the Modbus coils. Referenced from 0.
|-
 
| width="10%" align="center" | [[File:Fc9-type-21-icon.png]]
For example  
| width="90%" | Number of Addresses
 
|-
Slave 1 might have 100 coils addressed 0-99 Start Address = 0
| 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.&nbsp;
 
|-
Slave 2 might have 100 coils addressed 100-199 Start Address = 100
| width="10%" align="center" class="mtx-class-propfolder" | [[File:Fc9-conn-icon.png]]
 
| width="90%" class="mtx-class-propfolder" | Digital Inputs - Single bit values
<span style="font-weight: normal;"><u>Number of Addresses</u></span>
|-
 
|-
This property is of type ''Unsigned integer'' and can be referenced with the variable name ''NumAdrCoil''.
| width="10%" align="center" | [[File:Fc9-type-21-icon.png]]
 
| width="90%" | Starting Address
Specifies how many Coils are available on the slave.
|-
 
| colspan="2" | 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&nbsp;
Each address consumes a single bit of RAM, 8 Addresses are packed together into a single RAM Byte.
|-
 
| width="10%" align="center" | [[File:Fc9-type-21-icon.png]]
<span style="font-weight: normal;"><u>Starting Address</u></span>
| width="90%" | Number of Addresses
 
|-
This property is of type ''Unsigned integer'' and can be referenced with the variable name ''StartAdrDI''.
| 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.&nbsp;
 
|-
Start address of the Modbus digital inputs. Referenced from 0.
| width="10%" align="center" class="mtx-class-propfolder" | [[File:Fc9-conn-icon.png]]
 
| width="90%" class="mtx-class-propfolder" | Analog Inputs - 16-bit values
For example  
|-
 
|-
Slave 1 might have 100 inputs addressed 0-99 Start Address = 0
| width="10%" align="center" | [[File:Fc9-type-21-icon.png]]
 
| width="90%" | Starting Address
Slave 2 might have 100 inputs addressed 100-199 Start Address = 100
|-
 
| colspan="2" | 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&nbsp;
<span style="font-weight: normal;"><u>Number of Addresses</u></span>
|-
 
| width="10%" align="center" | [[File:Fc9-type-21-icon.png]]
This property is of type ''Unsigned integer'' and can be referenced with the variable name ''NumAdrDI''.
| width="90%" | Number of Addresses
 
|-
Specifies how many Digital Inputs are available on the slave.
| colspan="2" | Specifies how many 16-bit analogue inputs are available on the slave. Each address consumes two RAM Bytes.&nbsp;
 
|-
Each address consumes a single bit of RAM, 8 Addresses are packed together into a single RAM Byte.
| width="10%" align="center" class="mtx-class-propfolder" | [[File:Fc9-conn-icon.png]]
 
| width="90%" class="mtx-class-propfolder" | Holding Registers - 16-bit values
<span style="font-weight: normal;"><u>Starting Address</u></span>
|-
 
|-
This property is of type ''Unsigned integer'' and can be referenced with the variable name ''StartAdrAI''.
| width="10%" align="center" | [[File:Fc9-type-21-icon.png]]
 
| width="90%" | Starting Address
Start address of the Modbus analogue inputs. Referenced from 0.
|-
 
| colspan="2" | 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&nbsp;
For example  
|-
 
| width="10%" align="center" | [[File:Fc9-type-21-icon.png]]
Slave 1 might have 100 inputs addressed 0-99 Start Address = 0
| width="90%" | Number of Addresses
 
|-
Slave 2 might have 100 inputs addressed 100-199 Start Address = 100
| colspan="2" | Specifies how many 16-bit holding registers are available on the slave. Each address consumes two RAM Bytes.&nbsp;
 
|}
<span style="font-weight: normal;"><u>Number of Addresses</u></span>
 
This property is of type ''Unsigned integer'' and can be referenced with the variable name ''NumAdrAI''.
 
Specifies how many 16-bit analogue inputs are available on the slave.
 
Each address consumes two RAM Bytes.
 
<span style="font-weight: normal;"><u>Starting Address</u></span>
 
This property is of type ''Unsigned integer'' and can be referenced with the variable name ''StartAdrReg''.
 
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
 
<span style="font-weight: normal;"><u>Number of Addresses</u></span>
 
This property is of type ''Unsigned integer'' and can be referenced with the variable name ''NumAdrReg''.
 
Specifies how many 16-bit holding registers are available on the slave.
 
Each address consumes two RAM Bytes.

Latest revision as of 14:36, 13 July 2026

Author Matrix TSL
Version 1.0
Category Comms: System


Modbus Slave (SCADA) component

Modbus component for creating Modbus compatible slave hardware via RS232 or RS485.

Component Source Code

Please click here to download the component source project: FC_Comp_Source_Modbus_Slave_SCADA.fcsx

Please click here to view the component source code (Beta): FC_Comp_Source_Modbus_Slave_SCADA.fcsx

Detailed description

No detailed description exists yet for this component

Examples

No additional examples








Macro reference

ChangeFrameType

ChangeFrameType
Default frame type is the type set in the component properties. 
- BYTE Type
0 = Modbus RTU / 1 = Modbus ASCII 
- VOID Return


CheckForIncoming

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. 
- BYTE Return


GetLastIncoming

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 
- BYTE Index
Range: 0-3 
- UINT Return


Initialise

Initialise
Starts up the UART to allow communications and initialises the states of the various Modbus Coils, Inputs and Registers to 0. 
- VOID Return


ReadAnalogInput

ReadAnalogInput
Reads the value of a single analogue input. 
- UINT Address
Coil Address 
- UINT Return


ReadCoils

ReadCoils
Reads the state of up to eight digital coils. Can pack a max of 8-bits together in a single operation 
- UINT StartAddress
Coil Address Range 0 to (NumCoils - 1) 
- BYTE AddressCount
Range 1-8 
- BYTE Return


ReadDigitalInputs

ReadDigitalInputs
Reads the state of up to eight digital inputs. Can pack a max of 8-bits together in a single operation 
- UINT StartAddress
Coil Address Range 0 to (NumCoils - 1) 
- BYTE AddressCount
Range 1-8 
- BYTE Return


ReadHoldingRegister

ReadHoldingRegister
Reads the value of a single holding register. 
- UINT Address
Coil Address 
- UINT Return


SetAnalogInput

SetAnalogInput
Sets the state of a single analogue input. 
- UINT Address
Coil Address 
- UINT Value
Analogue Value range 0 - 65535 
- VOID Return


SetCoil

SetCoil
Sets the state of a single digital coil. 
- UINT Address
Coil Address 
- BYTE State
0=off, 1=on 
- VOID Return


SetDigitalInput

SetDigitalInput
Sets the state of a single digital input. 
- UINT Address
Coil Address 
- BYTE State
0=off, 1=on 
- VOID Return


SetHoldingRegister

SetHoldingRegister
Sets the state of a single holding register. 
- UINT Address
Coil Address 
- UINT Value
Analogue Value range 0 - 65535 
- VOID Return


SetSlaveAddress

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. 
- UINT SlaveAddress
 
- VOID Return


Property reference

Properties
Modbus Properties
Frame Type
Switches between RTU and ASCII forms of Modbus 
Receive Buffer Size
Maximum number of bytes the receive buffer can hold 
Receive Timeout
Length in milliseconds to wait for additional bytes to be received when checking for incoming messages. 
Slave ID Bytes
Number of bytes used when passing a slave ID, usually 1 but sometimes 2 
Slave Address
 
Reply Delay
Delay in micro seconds to wait before transmitting a reply 
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 
Runtime Properties
Label
A text label to appear on the Modbus panel object. 
Console Data
Selects if the console data is automatically generated or not 
Console Columns
Number of characters that can be displayed on a single line of the console. 
Data Source
Simulation data source used to allow the component to connect to various remote devices Nothing - Simulation data is ignored COM port - Routes the communication data to and from a physical or virtual COM port Injector - Routes the communication data via a data injector component on the Panel. 
COM Port
Lists all the current available COM port hardware on your PC. 
Refresh Ports
 
Baud Rate
COM port data rate in bits per second 
Modbus Coils - Single bit values
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 
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. 
Digital Inputs - Single bit values
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 
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. 
Analog Inputs - 16-bit values
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 
Number of Addresses
Specifies how many 16-bit analogue inputs are available on the slave. Each address consumes two RAM Bytes. 
Holding Registers - 16-bit values
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 
Number of Addresses
Specifies how many 16-bit holding registers are available on the slave. Each address consumes two RAM Bytes.