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=== Arduino === | === Arduino === | ||
===Knopf === | ===Knopf === | ||
State change detection (edge detection) | |||
State change detection (edge detection) | Often, you don't need to know the state of a digital input all the time, but | ||
Often, you don't need to know the state of a digital input all the time, but | you just need to know when the input changes from one state to another. | ||
you just need to know when the input changes from one state to another. | For example, you want to know when a button goes from OFF to ON. This is called | ||
For example, you want to know when a button goes from OFF to ON. This is called | state change detection, or edge detection. | ||
state change detection, or edge detection. | This example shows how to detect when a button or button changes from off to on | ||
This example shows how to detect when a button or button changes from off to on | and on to off and how to count these changes. | ||
and on to off and how to count these changes. | The circuit: | ||
The circuit: | - pushbutton attached to pin 2 from +5V | ||
- pushbutton attached to pin 2 from +5V | - 10 kilohm resistor attached to pin 2 from ground | ||
- 10 kilohm resistor attached to pin 2 from ground | by Tom Igoe | ||
by Tom Igoe | This example code is in the public domain. | ||
This example code is in the public domain. | http://www.arduino.cc/en/Tutorial/ButtonStateChange | ||
http://www.arduino.cc/en/Tutorial/ButtonStateChange | |||
// this constant won't change: | |||
const int buttonPin = 2; // the pin that the pushbutton is attached to | |||
// this constant won't change: | |||
const int buttonPin = 2; // the pin that the pushbutton is attached to | // Variables will change: | ||
int buttonPushCounter = 0; // counter for the number of button presses | |||
// Variables will change: | int buttonState = 0; // current state of the button | ||
int buttonPushCounter = 0; // counter for the number of button presses | int lastButtonState = 0; // previous state of the button | ||
int buttonState = 0; // current state of the button | |||
int lastButtonState = 0; // previous state of the button | void setup() { | ||
void setup() { | |||
// initialize the button pin as a input: | // initialize the button pin as a input: | ||
pinMode(buttonPin, INPUT); | pinMode(buttonPin, INPUT); | ||
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// initialize serial communication: | // initialize serial communication: | ||
Serial.begin(9600); | Serial.begin(9600); | ||
} | } | ||
void loop() { | void loop() { | ||
// read the pushbutton input pin: | // read the pushbutton input pin: | ||
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// save the current state as the last state, for next time through the loop | // save the current state as the last state, for next time through the loop | ||
lastButtonState = buttonState; | lastButtonState = buttonState; | ||
} | } | ||
=== Führe eine Funktion einmalig aus, wenn ein Button gedrückt ist, und einmalig etwas anderes, wenn er losgelassen wird === | === Führe eine Funktion einmalig aus, wenn ein Button gedrückt ist, und einmalig etwas anderes, wenn er losgelassen wird === | ||
Version vom 22. Oktober 2019, 13:46 Uhr
Arduino
Knopf
State change detection (edge detection) Often, you don't need to know the state of a digital input all the time, but you just need to know when the input changes from one state to another. For example, you want to know when a button goes from OFF to ON. This is called state change detection, or edge detection. This example shows how to detect when a button or button changes from off to on and on to off and how to count these changes. The circuit: - pushbutton attached to pin 2 from +5V - 10 kilohm resistor attached to pin 2 from ground by Tom Igoe This example code is in the public domain. http://www.arduino.cc/en/Tutorial/ButtonStateChange // this constant won't change: const int buttonPin = 2; // the pin that the pushbutton is attached to // Variables will change: int buttonPushCounter = 0; // counter for the number of button presses int buttonState = 0; // current state of the button int lastButtonState = 0; // previous state of the button void setup() { // initialize the button pin as a input: pinMode(buttonPin, INPUT); // initialize the LED as an output: //pinMode(ledPin, OUTPUT); // initialize serial communication: Serial.begin(9600); } void loop() {
// read the pushbutton input pin: buttonState = digitalRead(buttonPin);
// compare the buttonState to its previous state
if (buttonState != lastButtonState) {
// if the state has changed, increment the counter
if (buttonState == HIGH) {
// if the current state is HIGH then the button went from off to on.
Serial.println("on");
Serial.print("number of button pushes: ");
Serial.println(buttonPushCounter);
} else {
// if the current state is LOW then the button went from on to off:
Serial.println("off");
Serial.println(" ");
}
// Delay a little bit to avoid inaccurate counting.
delay(50);
}
// save the current state as the last state, for next time through the loop
lastButtonState = buttonState;
}
Führe eine Funktion einmalig aus, wenn ein Button gedrückt ist, und einmalig etwas anderes, wenn er losgelassen wird
int buttonDown =0;
int inputPin = 5; //hier muss der Pin eingetragen sein, an dem der Button hängt
[...]
void loop(){
if (digitalRead(inputPin)==LOW){
buttonDown++;
}
if (buttonDown==1){
DoSomethingOnceWhenPressed();
}
if (digitalRead(inputPin)==HIGH && buttonDown>0){
DoSomethingOnceWhenReleased();
buttonDown=0;
}
}
Mache etwas alle x-Durchläufe
int loopCounter=0;
int alleXLoops = 15; //Führt eine Funktion alle 15 loops aus
[...]
void loop(){
loopCounter++;
if (loopCounter%alleXLoops==0){
DoSomethingEveryXLoops();
}
}