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




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==Macro reference==
==Macro reference==


===SetWIFIPort===
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===WhileMoving===
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===SetWIFIPassword===
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===SetCalibrationLengths===
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===SetMovementSpeed===
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===GetPLCInputs===
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===SetGripper===
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===SetCalibrationPosition===
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===StoreAngles===
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===GetWifiIP===
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===GetColourSensor===
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===SetMotor===
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===ResetToBoot===
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===IsMoving===
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===SetAngle===
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===SetXYZ===
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===SetBluetoothPin===
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===HomeAll===
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===SetRelay===
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===SetCalibrationRadius===
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===SetAngles===
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===GotoPosition===
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===SetWifiMode===
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===HomeAxis===
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===GetAngles===
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===DisableMotors===
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===StoreMotors===
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===SetCanId===
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===GetAPI===
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===SetMotors===
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===SetCanMode===
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===SetWifiSSID===
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===GetPosition===
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===StoreCurrentPosition===
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===GetXYZ===
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===SetBluetoothMode===
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===Initialise===
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===SetBluetoothName===
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Revision as of 11:52, 3 February 2023

Author Matrix TSL
Version 1.0
Category AllCode


Robot Arm v2 component

Drives the Matrix Robot Arm v2 hardware via the AllCode API. Allows connections via USB, Bluetooth and WIFI.

Component Source Code

Please click here to download the component source project: FC_Comp_Source_RA2_ComponentSource.fcsx

Please click here to view the component source code (Beta): FC_Comp_Source_RA2_ComponentSource.fcsx

Detailed description

No detailed description exists yet for this component

Examples

No additional examples




Macro reference

SetWIFIPort

SetWIFIPort
Sets the WIFI port number 
- UINT Port
Default 1245 
- VOID Return


WhileMoving

WhileMoving
Blocking call that waits up to 10 seconds for the current movement operation to complete. Returns when complete. Return of 1 indicates movement complete, 0 indicates timeout. 
- BOOL Return


SetWIFIPassword

SetWIFIPassword
Configures the WIFI Password string and stores into the none volatie memory onboard the robot arm. Call the SetWifiMode macro after this to action the change. 
- STRING Password
Password String, Max 32 Characters 
- VOID Return


SetCalibrationLengths

SetCalibrationLengths
Sets the lengths of parameters A and D used as part of the kinematics calculations to get and set the angles using XYZ coordinates 
- FLOAT LengthA
 
- FLOAT LengthD
 
- VOID Return


SetMovementSpeed

SetMovementSpeed
Controls the movement speed of the arm and the ramping increment 
- UINT Speed
Range 0-10000 default 8000 
- UINT Increment
Range 0 to 5000, default 50 
- VOID Return


GetPLCInputs

GetPLCInputs
Reads the inputs on the secondary grove connector used to connect to outputs from a connected PLC or other external switch. 
- BYTE Return


SetGripper

SetGripper
Sets the new position of the gripper 
- BYTE Position
0 = Closed, 255 = Fully Open 
- VOID Return


SetCalibrationPosition

SetCalibrationPosition
Called when the arm gripper is in the calibration position of X0 Y300 Z5 Reconfigures the kinematics calculations based on this. Performed in factory to calibrate the arm, warning calling this function will effect factory calibration. 
- VOID Return


StoreAngles

StoreAngles
Stores the specified joint angles into an internal none volatile memory location. 
- BYTE PositionIndex
Range: 0 to 40 
- FLOAT AngleA
Range 0.0 to 359.0 
- FLOAT AngleB
Range 0.0 to 359.0 
- FLOAT AngleC
Range 0.0 to 359.0 
- VOID Return


GetWifiIP

GetWifiIP
Collects the IP address of the robot arm WIFI connection. 
- STRING Return


GetColourSensor

GetColourSensor
Samples and returns the RGB values read by the colour sensor 
- BYTE RGB
Byte Array To Hold the RGB sensor values 
- VOID Return


SetMotor

SetMotor
Sets the step position of a single motor 
- BYTE Motor
0=A, 1=B, 2=C 
- UINT Position
 
- VOID Return


ResetToBoot

ResetToBoot
Resets the board into bootload mode for reprogramming. Comms port will be closed on calling this macro, 
- VOID Return


IsMoving

IsMoving
Checks to see if the robot arm or gripper is moving. Returns 0 if the arm is not moving and 1 if the arm is still in transit. 
- BOOL Return


SetAngle

SetAngle
Sets the angle of a single motor 
- BYTE Motor
0=A, 1=B, 2=C 
- FLOAT Angle
Range 0.0 to 359.0 
- VOID Return


SetXYZ

SetXYZ
Moves the machine so that the end tool is in the specified XYZ position. Returns 1 if the coordinates are within range of the Arm else returns 0. 
- INT X
 
- INT Y
 
- INT Z
 
- BOOL Return


SetBluetoothPin

SetBluetoothPin
Configures the Bluetooth pin and stores into the none volatie memory onboard the robot arm. Call the SetBluetoothMode macro after this to action the change. 
- STRING Pin
Pin String, 4 Numeric Characters e.g. "1234" 
- VOID Return


HomeAll

HomeAll
Function to automatically home all motors. Macro blocks until complete. 
- VOID Return


SetRelay

SetRelay
Allows the vacuum relay to be switched on and off. 
- BOOL State
 
- VOID Return


SetCalibrationRadius

SetCalibrationRadius
Sets the lengths of parameters A and D used as part of the kinematics calculations to get and set the angles using XYZ coordinates 
- FLOAT Radius
 
- VOID Return


SetAngles

SetAngles
Sets the angle of all motors 
- FLOAT AngleA
Range 0.0 to 359.0 
- FLOAT AngleB
Range 0.0 to 359.0 
- FLOAT AngleC
Range 0.0 to 359.0 
- VOID Return


GotoPosition

GotoPosition
Recalls a position from the selected internal none volatile memory location. Performs linear interpolated movement to the selected position. 
- BYTE PositionIndex
Range: 0 to 40 
- VOID Return


SetWifiMode

SetWifiMode
Configures the WIFI mode. When enabled the robot arm can either create its own WIFI network or join an existing WIFI network, 
- BYTE Mode
0=Disabled, 1=Host Network, 2=Join Network 
- VOID Return


HomeAxis

HomeAxis
Function to automatically home a specific motor. Macro blocks until complete. 
- BYTE Axis
0=A, 1=B, 2=C 
- VOID Return


GetAngles

GetAngles
Collects the current joint angles of the motors. 
- FLOAT Angles
Float Array To Hold the step position return values 
- VOID Return


DisableMotors

DisableMotors
Disables all motors 
- VOID Return


StoreMotors

StoreMotors
Stores the specified step position into an internal none volatile memory location. 
- BYTE PositionIndex
Range: 0 to 40 
- UINT PositionA
 
- UINT PositionB
 
- UINT PositionC
 
- VOID Return


SetCanId

SetCanId
Stores the specified CAN ID into an internal none volatile memory location. 
- UINT ID
 
- VOID Return


GetAPI

GetAPI
Gets the API version number 
- BYTE Return


SetMotors

SetMotors
Sets the step position of all motors 
- UINT PositionA
 
- UINT PositionB
 
- UINT PositionC
 
- VOID Return


SetCanMode

SetCanMode
Configures the CAN mode. 
- BOOL Mode
0=Disabled, 1=Enabled 
- VOID Return


SetWifiSSID

SetWifiSSID
Configures the WIFI SSID string and stores into the none volatie memory onboard the robot arm. Call the SetWifiMode macro after this to action the change. 
- STRING SSID
Netword ID String, Max 32 Characters 
- VOID Return


GetPosition

GetPosition
Collects the current step positions of the motors. 
- UINT Positions
UINT Array To Hold the step position return values 
- VOID Return


StoreCurrentPosition

StoreCurrentPosition
Stores the current position into an internal none volatile memory location. 
- BYTE PositionIndex
Range: 0 to 40 
- VOID Return


GetXYZ

GetXYZ
Collects the current XYZ position of the end tool. 
- INT XYZ
INT Array To Hold the X, Y and Z return values 
- VOID Return


SetBluetoothMode

SetBluetoothMode
Configures the Bluetooth mode. 
- BOOL Mode
0=Disabled, 1=Enabled 
- VOID Return


Initialise

Initialise
 
- BOOL Return


SetBluetoothName

SetBluetoothName
Configures the Bluetooth device name and stores into the none volatie memory onboard the robot arm. Call the SetBluetoothMode macro after this to action the change. 
- STRING Name
Bluetooth Device String, Max 20 Characters 
- VOID Return



Property reference

Properties
Simulation Mode
 
API Settings
Comms Method
Selects the method to communicate with the Matrix 3 Axis Robot Arm. USB connection requires the USB drivers to be installed. Bluetooth connection requires the device first be paired using the Windows Bluetooth control panel. WIFI connection requires the connection settings to be configured first on the robot using USB or Bluetooth. CAN connection does not simulate and works on embedded hardware e.g. the MIAC. 
COM Port Settings
Autodetect
Autodetects the COM port, only works for USB AllCode connection.