2019-02-11 06:09:32 -05:00
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//
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2020-11-27 05:16:22 -05:00
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// FILE: demo1.ino
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2019-02-11 06:09:32 -05:00
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// AUTHOR: Rob Tillaart
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// PURPOSE: demo
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// URL: http://www.adafruit.com/products/1002
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2020-07-16 05:08:25 -04:00
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// URL: https://github.com/RobTillaart/HT16K33
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2019-02-11 06:09:32 -05:00
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2021-05-26 09:01:19 -04:00
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2019-02-11 06:09:32 -05:00
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#include "HT16K33.h"
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2020-07-16 05:08:25 -04:00
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HT16K33 seg(0x70);
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2019-02-11 06:09:32 -05:00
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2020-11-27 05:16:22 -05:00
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uint32_t start, stop;
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2019-02-11 06:09:32 -05:00
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2021-05-26 09:01:19 -04:00
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2019-02-11 06:09:32 -05:00
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void setup()
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{
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Serial.begin(115200);
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Serial.println(__FILE__);
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2020-07-16 05:08:25 -04:00
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seg.begin();
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2019-02-11 06:09:32 -05:00
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Wire.setClock(100000);
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seg.displayOn();
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Serial.println("displayTest()");
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seg.displayTest(100);
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seg.displayOff();
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delay(1000);
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seg.displayOn();
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}
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2021-05-26 09:01:19 -04:00
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2019-02-11 06:09:32 -05:00
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void loop()
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{
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Serial.println("Int");
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seg.displayInt(9999);
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delay(1000);
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Serial.println("Hex");
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seg.displayHex(0xABCF);
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delay(1000);
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Serial.println("dim()");
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for (int i = 0; i < 16; i++)
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{
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seg.displayHex(0xABC0 + i);
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2019-02-11 06:09:32 -05:00
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seg.brightness(i);
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delay(500);
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}
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2020-11-27 05:16:22 -05:00
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for (int i = 15; i >= 0; i--)
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2019-02-11 06:09:32 -05:00
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{
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seg.displayHex(0xABC0 + i);
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2019-02-11 06:09:32 -05:00
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seg.brightness(i);
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delay(500);
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}
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2020-11-27 05:16:22 -05:00
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delay(1000);
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2019-02-11 06:09:32 -05:00
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seg.brightness(2);
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Serial.println("displayClear()");
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seg.displayClear();
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delay(1000);
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Serial.println("displayTime()");
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seg.displayTime(13, 25);
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for (int i = 50; i < 60; i++)
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{
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seg.displayTime(13, i);
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delay(500);
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seg.displayColon(true);
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delay(500);
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}
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2020-11-27 05:16:22 -05:00
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Serial.println("displayDate()");
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uint8_t dpm[12] = { 31, 28, 31, 30, 31, 30, 31, 31, 30, 32, 30, 31 };
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for (uint8_t mo = 0; mo < 12; mo++)
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{
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for (uint8_t da = 1; da <= dpm[mo]; da++)
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{
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seg.displayDate(mo + 1, da);
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delay(200);
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}
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}
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seg.displayTime(13, 25);
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for (int i = 50; i < 60; i++)
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{
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seg.displayTime(13, i);
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delay(500);
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seg.displayColon(true);
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delay(500);
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}
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2019-02-11 06:09:32 -05:00
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Serial.println("float");
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seg.displayClear();
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delay(500);
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seg.displayFloat(3.14159265);
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delay(500);
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seg.displayFloat(99999);
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delay(500);
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seg.displayFloat(9999);
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delay(500);
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seg.displayFloat(31.4159265);
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delay(500);
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seg.displayFloat(314.159265);
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delay(500);
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seg.displayFloat(3141.59265);
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delay(500);
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seg.displayFloat(0.314159265);
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delay(500);
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seg.displayFloat(0.0314159265);
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delay(500);
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seg.displayFloat(0.00314159265);
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delay(500);
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seg.displayFloat(0.000314159265);
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delay(500);
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Serial.println("Voltmeter");
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for (int i = 0; i < 100; i++)
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{
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float voltage = analogRead(A0) * 5.0 / 1023;
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seg.displayFloat(voltage);
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delay(100);
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}
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Serial.println("blink()");
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for (uint8_t i = 0; i < 3; i++)
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{
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2020-11-27 05:16:22 -05:00
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seg.displayHex(0xABC0 + i);
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2019-02-11 06:09:32 -05:00
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seg.blink(i);
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delay(4000);
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}
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seg.blink(0);
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Serial.print("INT TEST:\t");
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start = millis();
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2020-11-27 05:16:22 -05:00
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for (int16_t counter = -999; counter < 9999; counter++)
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2019-02-11 06:09:32 -05:00
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{
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seg.displayInt(counter);
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}
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stop = millis();
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Serial.println(stop - start);
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Serial.print("HEX TEST:\t");
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start = millis();
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for (uint16_t counter = 0; counter < 0xFFFF; counter++)
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{
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seg.displayHex(counter);
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}
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stop = millis();
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Serial.println(stop - start);
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2020-11-27 05:16:22 -05:00
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// Serial.print("SUPRESS ZERO TEST:\t");
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// for (uint8_t nlz = 0; nlz < 5; nlz++)
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// {
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// Serial.print(nlz);
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// seg.suppressLeadingZeroPlaces(nlz);
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// seg.displayInt(0);
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// delay(1000);
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// }
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// seg.suppressLeadingZeroPlaces(0);
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Serial.print("SET DIGITS TEST:\t");
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for (uint8_t dig = 0; dig < 5; dig++)
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{
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Serial.print(dig);
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seg.setDigits(dig);
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seg.displayInt(0);
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delay(1000);
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}
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seg.setDigits(1);
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2020-07-16 05:08:25 -04:00
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}
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2021-12-19 09:24:23 -05:00
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2020-07-16 05:08:25 -04:00
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// -- END OF FILE --
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2021-12-19 09:24:23 -05:00
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