Removing applet/ directories from the examples.

This commit is contained in:
David A. Mellis 2009-07-11 01:17:59 +00:00
parent 5dda367b06
commit a81628675d
15 changed files with 0 additions and 621 deletions

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/*
Conditionals - while statement
This example demonstrates the use of while() statements.
It reads the state of a potentiometer (an analog input) and blinks an LED
while the LED remains above a certain threshold level. It prints the analog value
only if it's below the threshold.
This example uses principles explained in the BlinkWithoutDelay example as well.
The circuit:
* potentiometer connected to analog pin 0.
Center pin of the potentiometer goes to the analog pin.
side pins of the potentiometer go to +5V and ground
* LED connected from digital pin 13 to ground
* Note: On most Arduino boards, there is already an LED on the board
connected to pin 13, so you don't need any extra components for this example.
created 17 Jan 2009
by Tom Igoe
*/
#define ledPin 13 // the pin for the LED
#define analogPin 0 // the analog pin that the potentiometer is attached to
#include "WProgram.h"
void setup();
void loop();
int threshold = 400; // an arbitrary threshold level that's in the range of the analog input
int ledState = LOW; // the state of the LED
int lastBlinkTime = 0; // last time the LED changed
int blinkDelay = 500; // how long to hold between changes of the LED
int analogValue; // variable to hold the value of the analog input
void setup() {
// initialize the LED pin as an output:
pinMode(ledPin, OUTPUT);
// initialize serial communications:
Serial.begin(9600);
}
void loop() {
// read the value of the potentiometer:
analogValue = analogRead(analogPin);
// if the analog value is high enough, turn on the LED:
while (analogValue > threshold) {
// if enough time has passed since the last change of the LED,
// then change it. Note you're using the technique from BlinkWithoutDelay
// here so that the while loop doesn't delay the rest of the program:
if (millis() - lastBlinkTime > blinkDelay) {
// if the ledState is high, this makes it low, and vice versa:
ledState = !ledState;
digitalWrite(ledPin, ledState);
// save the last time the LED changed in a variable:
lastBlinkTime = millis();
}
// while you're in the while loop, you have to read the
// input again:
analogValue = analogRead(analogPin);
}
// if you're below the threshold, print the analog value:
Serial.println(analogValue, DEC);
// turn the LED off:
digitalWrite(ledPin, LOW);
}
int main(void)
{
init();
setup();
for (;;)
loop();
return 0;
}

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/*
Conditionals - while statement
This example demonstrates the use of while() statements.
It reads the state of a potentiometer (an analog input) and blinks an LED
while the LED remains above a certain threshold level. It prints the analog value
only if it's below the threshold.
This example uses principles explained in the BlinkWithoutDelay example as well.
The circuit:
* potentiometer connected to analog pin 0.
Center pin of the potentiometer goes to the analog pin.
side pins of the potentiometer go to +5V and ground
* LED connected from digital pin 13 to ground
* Note: On most Arduino boards, there is already an LED on the board
connected to pin 13, so you don't need any extra components for this example.
created 17 Jan 2009
by Tom Igoe
*/
#define ledPin 13 // the pin for the LED
#define analogPin 0 // the analog pin that the potentiometer is attached to
int threshold = 400; // an arbitrary threshold level that's in the range of the analog input
int ledState = LOW; // the state of the LED
int lastBlinkTime = 0; // last time the LED changed
int blinkDelay = 500; // how long to hold between changes of the LED
int analogValue; // variable to hold the value of the analog input
void setup() {
// initialize the LED pin as an output:
pinMode(ledPin, OUTPUT);
// initialize serial communications:
Serial.begin(9600);
}
void loop() {
// read the value of the potentiometer:
analogValue = analogRead(analogPin);
// if the analog value is high enough, turn on the LED:
while (analogValue > threshold) {
// if enough time has passed since the last change of the LED,
// then change it. Note you're using the technique from BlinkWithoutDelay
// here so that the while loop doesn't delay the rest of the program:
if (millis() - lastBlinkTime > blinkDelay) {
// if the ledState is high, this makes it low, and vice versa:
ledState = !ledState;
digitalWrite(ledPin, ledState);
// save the last time the LED changed in a variable:
lastBlinkTime = millis();
}
// while you're in the while loop, you have to read the
// input again:
analogValue = analogRead(analogPin);
}
// if you're below the threshold, print the analog value:
Serial.println(analogValue, DEC);
// turn the LED off:
digitalWrite(ledPin, LOW);
}

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#include "WProgram.h"
void setup();
void loop();
void setup() {
Serial.begin(9600);
}
void loop() {
int distance = analogRead(0);
int range = map(distance, 0, 600, 0, 3);
switch (range) {
case 0:
Serial.println("dark");
break;
case 1:
Serial.println("dim");
break;
case 2:
Serial.println("medium");
break;
case 3:
Serial.println("bright");
break;
}
}
int main(void)
{
init();
setup();
for (;;)
loop();
return 0;
}

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@ -1,56 +0,0 @@
// these constants won't change:
#include "WProgram.h"
void setup();
void loop();
const int analogPin = 0; // the pin that the potentiometer is attached to
const int ledCount = 10; // the number of LEDs in the bar graph
int ledPins[] = {
2, 3, 4, 5, 6, 7,8,9,10,11 }; // an array of pin numbers to which LEDs are attached
void setup() {
// loop over the pin array and set them all to output:
for (int thisLed = 0; thisLed < ledCount; thisLed++) {
pinMode(ledPins[thisLed], OUTPUT);
}
}
void loop() {
// read the potentiometer:
int sensorReading = analogRead(analogPin);
// map the result to a range from 0 to the number of LEDs:
int ledLevel = map(sensorReading, 0, 1023, 0, ledCount);
// loop over the LED array:
for (int thisLed = 0; thisLed < ledCount; thisLed++) {
// if the array element's index is less than ledLevel,
// turn the pin for this element on:
if (thisLed < ledLevel) {
digitalWrite(ledPins[thisLed], HIGH);
}
// turn off all pins higher than the ledLevel:
else {
digitalWrite(ledPins[thisLed], LOW);
}
}
}
int main(void)
{
init();
setup();
for (;;)
loop();
return 0;
}

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@ -1,87 +0,0 @@
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