i = TargetTemp * 2; // Berechnet den Index für den Array "colors"
if (i < 0) i = 0; ... i = tempCupedge * 2; // Berechnet den Index für den Array "colors"
if (i < 0) i = 0; ... i = TargetTemp * 2; // Berechnet den Index für den Array "colors"
if (i < 0) i = 0; ... i = tempCupedge * 2; // Berechnet den Index für den Array "colors"
if (i < 0) i = 0;
tpoint * 2; // Berechnet den Index für den Array "colors"
if (i < 0) i = 0; ... temperatureHotSide * 2; // Berechnet den Index für den Array "colors"
if (i < 0) i = 0; ... tpoint * 2; // Berechnet den Index für den Array "colors"
if (i < 0) i = 0; ... temperatureHotSide * 2; // Berechnet den Index für den Array "colors"
if (i < 0) i = 0;
r i = TargetTemp * 2; // Berechnet den Index für den Array "colors"
if (i < 0) i = 0; ... i = tempCupedge * 2; // Berechnet den Index für den Array "colors"
if (i < 0) i = 0; ... har i = TargetTemp * 2; // Berechnet den Index für den Array "colors"
if (i < 0) i = 0; ... char i = tempCupedge * 2; // Berechnet den Index für den Array "colors"
if (i < 0) i = 0;
nsor!");
return;
}
// Compute heat index in Fahrenheit (the default)
float hif = dht.computeHeatIndex(f, h);
// Compute heat index in Celsius (isFahreheit = false)
float hic =
rch for devices on the bus and assign based on an index. Ideally,
// you would do this to initially dis... suming they don't change).
//
// method 1: by index
if (!sensors.getAddress(sensor0, 0)) Serial.pri
rch for devices on the bus and assign based on an index. Ideally,
// you would do this to initially dis... suming they don't change).
//
// method 1: by index
if (!sensors.getAddress(sensor0, 0)) Serial.pri
rch for devices on the bus and assign based on an index. Ideally,
// you would do this to initially dis... suming they don't change).
//
// method 1: by index
if (!sensors.getAddress(sensor0, 0)) Serial.pri