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m Text replacement - "class="wikitable" style="width:60%; background-color:#FFFFFF;"" to "class="mtx-class-macrotable wikitable""
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{| class="mtx-class-macrotable wikitable"
{| class="mtx-class-macrotable wikitable"
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| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
| width="10%" align="center" class="mtx-class-macrohead" | [[File:Fc9-comp-macro.png]]
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''I2CInitialise'''
| width="90%" class="mtx-class-macrohead" | '''I2CInitialise'''
|-
|-
| colspan="2" | Initialsie the I2C module ready for communications 
| colspan="2" | Initialsie the I2C module ready for communications 
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{| class="mtx-class-macrotable wikitable"
{| class="mtx-class-macrotable wikitable"
|-
|-
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
| width="10%" align="center" class="mtx-class-macrohead" | [[File:Fc9-comp-macro.png]]
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''I2CReceive'''
| width="90%" class="mtx-class-macrohead" | '''I2CReceive'''
|-
|-
| colspan="2" | Receive a byte using the I2C bus 
| colspan="2" | Receive a byte using the I2C bus 
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{| class="mtx-class-macrotable wikitable"
{| class="mtx-class-macrotable wikitable"
|-
|-
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
| width="10%" align="center" class="mtx-class-macrohead" | [[File:Fc9-comp-macro.png]]
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''I2CRestart'''
| width="90%" class="mtx-class-macrohead" | '''I2CRestart'''
|-
|-
| colspan="2" | Put the I2C Module into Restart mode 
| colspan="2" | Put the I2C Module into Restart mode 
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{| class="mtx-class-macrotable wikitable"
{| class="mtx-class-macrotable wikitable"
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|-
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
| width="10%" align="center" class="mtx-class-macrohead" | [[File:Fc9-comp-macro.png]]
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''I2CSend'''
| width="90%" class="mtx-class-macrohead" | '''I2CSend'''
|-
|-
| colspan="2" | Transmit a byte using the I2C bus 
| colspan="2" | Transmit a byte using the I2C bus 
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{| class="mtx-class-macrotable wikitable"
{| class="mtx-class-macrotable wikitable"
|-
|-
| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
| width="10%" align="center" class="mtx-class-macrohead" | [[File:Fc9-comp-macro.png]]
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''I2CStart'''
| width="90%" class="mtx-class-macrohead" | '''I2CStart'''
|-
|-
| colspan="2" | Put the I2C Module into Start mode 
| colspan="2" | Put the I2C Module into Start mode 
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{| class="mtx-class-macrotable wikitable"
{| class="mtx-class-macrotable wikitable"
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| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
| width="10%" align="center" class="mtx-class-macrohead" | [[File:Fc9-comp-macro.png]]
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''I2CStop'''
| width="90%" class="mtx-class-macrohead" | '''I2CStop'''
|-
|-
| colspan="2" | Put the I2C Module into Stop mode 
| colspan="2" | Put the I2C Module into Stop mode 
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{| class="mtx-class-macrotable wikitable"
{| class="mtx-class-macrotable wikitable"
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| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
| width="10%" align="center" class="mtx-class-macrohead" | [[File:Fc9-comp-macro.png]]
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''IOGetInputPin'''
| width="90%" class="mtx-class-macrohead" | '''IOGetInputPin'''
|-
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| colspan="2" | Sets the selected digital pin to an input and reads the input state. 
| colspan="2" | Sets the selected digital pin to an input and reads the input state. 
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{| class="mtx-class-macrotable wikitable"
{| class="mtx-class-macrotable wikitable"
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| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
| width="10%" align="center" class="mtx-class-macrohead" | [[File:Fc9-comp-macro.png]]
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''IOSetOutputPin'''
| width="90%" class="mtx-class-macrohead" | '''IOSetOutputPin'''
|-
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| colspan="2" | Sets the selected digital pin to an output and assigns the output state. 
| colspan="2" | Sets the selected digital pin to an output and assigns the output state. 
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{| class="mtx-class-macrotable wikitable"
{| class="mtx-class-macrotable wikitable"
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| width="10%" align="center" class="mtx-class-macrohead" | [[File:Fc9-comp-macro.png]]
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''Initialise'''
| width="90%" class="mtx-class-macrohead" | '''Initialise'''
|-
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| colspan="2" | Initialise the comms to the Arduino board ready for commands to be sent. 
| colspan="2" | Initialise the comms to the Arduino board ready for commands to be sent. 
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| width="10%" align="center" class="mtx-class-macrohead" | [[File:Fc9-comp-macro.png]]
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''SPIInitialise'''
| width="90%" class="mtx-class-macrohead" | '''SPIInitialise'''
|-
|-
| colspan="2" | Initialsie the SPI module ready for communications 
| colspan="2" | Initialsie the SPI module ready for communications 
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| width="10%" align="center" class="mtx-class-macrohead" | [[File:Fc9-comp-macro.png]]
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''SPIPrescaler'''
| width="90%" class="mtx-class-macrohead" | '''SPIPrescaler'''
|-
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| colspan="2" | Modify the speed of the SPI bus 
| colspan="2" | Modify the speed of the SPI bus 
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{| class="mtx-class-macrotable wikitable"
{| class="mtx-class-macrotable wikitable"
|-
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| width="10%" align="center" style="background-color:#D8C9D8;" align="center" | [[File:Fc9-comp-macro.png]]
| width="10%" align="center" class="mtx-class-macrohead" | [[File:Fc9-comp-macro.png]]
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''SPITransfer'''
| width="90%" class="mtx-class-macrohead" | '''SPITransfer'''
|-
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| colspan="2" | Transfer a byte using the SPI bus 
| colspan="2" | Transfer a byte using the SPI bus 
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{| class="mtx-class-macrotable wikitable"
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| width="10%" align="center" class="mtx-class-macrohead" | [[File:Fc9-prop-icon.png]]
| width="90%" style="background-color:#D8C9D8; color:#4B008D;" | '''Properties'''  
| width="90%" class="mtx-class-macrohead" | '''Properties'''  
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Latest revision as of 14:23, 13 July 2026

Author Matrix TSL
Version 1.0
Category SCADA Slaves


SCADA (Dummy) component

Dummy SCADA Slave component to enable injector referencing. Supports: Digital IO / ADC / I2C / SPI / PWM See Flowcode Help Wiki for firmware.

Component Source Code

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

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

Detailed description

No detailed description exists yet for this component

Examples

No additional examples






Macro reference

I2CInitialise

I2CInitialise
Initialsie the I2C module ready for communications 
- VOID Return


I2CReceive

I2CReceive
Receive a byte using the I2C bus 
- BOOL Last
Last byte to receive: Range 0-1 
- BYTE Return


I2CRestart

I2CRestart
Put the I2C Module into Restart mode 
- VOID Return


I2CSend

I2CSend
Transmit a byte using the I2C bus 
- BYTE DataOut
 
- BOOL Return


I2CStart

I2CStart
Put the I2C Module into Start mode 
- VOID Return


I2CStop

I2CStop
Put the I2C Module into Stop mode 
- VOID Return


IOGetInputPin

IOGetInputPin
Sets the selected digital pin to an input and reads the input state. 
- BYTE Pin
Range: 0-13 
- BOOL Return


IOSetOutputPin

IOSetOutputPin
Sets the selected digital pin to an output and assigns the output state. 
- BYTE Pin
Range: 0-13 
- BOOL State
Range: 0-1 
- VOID Return


Initialise

Initialise
Initialise the comms to the Arduino board ready for commands to be sent. 
- VOID Return


SPIInitialise

SPIInitialise
Initialsie the SPI module ready for communications 
- VOID Return


SPIPrescaler

SPIPrescaler
Modify the speed of the SPI bus 
- BYTE Prescaler
Range: 0-2 
- VOID Return


SPITransfer

SPITransfer
Transfer a byte using the SPI bus 
- BYTE DataOut
 
- BYTE Return


Property reference

Properties