#include /* * CapitiveSense Library Demo Sketch * Paul Badger 2008 * Uses a high value resistor e.g. 10M between send pin and receive pin * Resistor effects sensitivity, experiment with values, 50K - 50M. Larger resistor values yield larger sensor values. * Receive pin is the sensor pin - try different amounts of foil/metal on this pin * Best results are obtained if sensor foil and wire is covered with an insulator such as paper or plastic sheet */ CapSense cs_4_2 = CapSense(4,2); // 10M resistor between pins 4 & 2, pin 2 is sensor pin, add wire, foil CapSense cs_4_5 = CapSense(4,5); // 10M resistor between pins 4 & 6, pin 6 is sensor pin, add wire, foil CapSense cs_4_8 = CapSense(4,8); // 10M resistor between pins 4 & 8, pin 8 is sensor pin, add wire, foil void setup() { cs_4_2.set_CS_AutocaL_Millis(0xFFFFFFFF); // turn off autocalibrate on channel 1 - just as an example Serial.begin(19200); } void loop() { long start = millis(); long total1 = cs_4_2.capSense(30); long total2 = cs_4_5.capSense(30); long total3 = cs_4_8.capSense(30); Serial.print(millis() - start); // check on performance in milliseconds Serial.print("\t"); // tab character for debug windown spacing //Serial.print("Sensor 1 vale "); Serial.print(total1); // print sensor output 1 Serial.print("\t"); //Serial.print("Sensor 2 vale "); Serial.print(total2); // print sensor output 2 Serial.print("\t"); //Serial.print("Sensor 3 vale "); Serial.println(total3); // print sensor output 3 //delay(1000); // arbitrary delay to limit data to serial port }