Component: Potentiometer (Colour) ()

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Author Matrix Ltd
Version 1.3
Category


Potentiometer (Colour) component

Potentiometer with black plastic knob with coloured cap. Cap and pointer colours can be changed in component properties.

Component Source Code

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

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

Detailed description

No detailed description exists yet for this component

Examples

A simple example that shows how to use some common functions of the potentiometer in conjunction with an LCD.

FC6 Icon.png Potentiometer Example


Macro reference

Property reference

Fc9-prop-icon.png Properties
Fc9-conn-icon.png Simulation
Fc9-type-15-icon.png Start Angle
Angle the control points to at its lowest setting. Measured counter-clockwise from the positive x-axis. 
Fc9-type-15-icon.png Sweep Angle
Angle through which the control sweeps as it turns from minimum to maximum. 
Fc9-type-1-icon.png Cap Color
Colour of the knob cap. 
Fc9-type-1-icon.png Pointer Color
Colour of the knob pointer. 
Fc9-type-7-icon.png Scope Traces
Selects if the scope traces are automatically generated or not 
Fc9-type-7-icon.png Retain Value
If yes is slected After saving your project, the ADC value will be retained when your project is reloaded. 
Fc9-conn-icon.png Connections
Fc9-type-6-icon.png Channel
Analogue input channel - which pin is the analogue input conected to? 
Fc9-conn-icon.png Settings
Fc9-type-14-icon.png VRef voltage
Used by the GetVoltage or GetString component macros to take an ADC reading and convert it into a Voltage. +VRef voltage x 10mV Default 500 = 5.0V  
Fc9-type-16-icon.png VRef option
Defines what is used as the ADC maximum reference. ADC Range = GND to VRef Voltage. VDD - Defines the microcontrollers power supply pin as the max reference, VREF+ Pin - Dedicated pin on the microcontroller to allow for a variable reference voltage.  
Fc9-type-16-icon.png Conversion speed
Clock setting to select how fast the ADC peripheral will perform an ADC conversion. The FRC setting is based on a RC time base and so will vary with temperature and pressure. Other settings are generally based on divisions of the master clock.  
Fc9-type-14-icon.png Acquisition cycles
Number of micro seconds to wait for the ACD input to charge before starting the analogue sample. 
Fc9-type-14-icon.png Bit Depth
Maximum number of digital bits the ADC can sample. 8 bit = ADC range 0 - 255 10 bit = ADC range 0 - 1023 12 bit = ADC range 0 - 4095