CT Example
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@ -4,6 +4,8 @@
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#include <ClimateCard.hpp>
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#include <ClimateCard.hpp>
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#include <ESPMegaDisplayOTA.hpp>
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#include <ESPMegaDisplayOTA.hpp>
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#include <RemoteVariable.hpp>
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#include <RemoteVariable.hpp>
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#include <CurrentTransformer.hpp>
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#include <AnalogCard.hpp>
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// #define FRAM_DEBUG
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// #define FRAM_DEBUG
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// #define MQTT_DEBUG
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// #define MQTT_DEBUG
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@ -14,6 +16,7 @@
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#define WEB_SERVER_ENABLE
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#define WEB_SERVER_ENABLE
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#define LCD_OTA_ENABLE
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#define LCD_OTA_ENABLE
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#define REMOTE_VARIABLE_ENABLE
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#define REMOTE_VARIABLE_ENABLE
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#define CT_ENABLE
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// Demo PLC firmware using the ESPMegaPRO OOP library
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// Demo PLC firmware using the ESPMegaPRO OOP library
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@ -28,6 +31,16 @@ RemoteVariable testVar = RemoteVariable();
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ESPMegaDisplayOTA internalDisplayOTA = ESPMegaDisplayOTA();
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ESPMegaDisplayOTA internalDisplayOTA = ESPMegaDisplayOTA();
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#endif
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#endif
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#ifdef CT_ENABLE
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float adc2current(uint16_t adcValue)
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{
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return (adcValue - 2048) * 0.0005;
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}
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AnalogCard analogCard = AnalogCard();
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float voltage = 220.0;
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CurrentTransformer ct = CurrentTransformer(&analogCard, 0, &voltage, adc2current, 1000);
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#endif
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#ifdef CLIMATE_CARD_ENABLE
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#ifdef CLIMATE_CARD_ENABLE
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// Climate Card
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// Climate Card
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const char *mode_names[] = {"off", "fan_only", "cool"};
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const char *mode_names[] = {"off", "fan_only", "cool"};
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@ -202,6 +215,15 @@ void setup()
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ESP_LOGI("Initializer", "Initializing testvar");
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ESP_LOGI("Initializer", "Initializing testvar");
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testVar.begin(32, "/testvar", espmega.iot, true,"/testvar/request");
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testVar.begin(32, "/testvar", espmega.iot, true,"/testvar/request");
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testVar.enableSetValue("/testvar/set");
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testVar.enableSetValue("/testvar/set");
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#endif
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#ifdef CT_ENABLE
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ESP_LOGI("Initializer", "Initializing analog card");
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analogCard.begin();
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ESP_LOGI("Initializer", "Initializing current transformer");
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ct.begin();
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ct.bindFRAM(&espmega.fram, 7000);
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ct.loadEnergy();
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ct.setEnergyAutoSave(true);
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#endif
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#endif
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ESP_LOGI("Initializer", "Setup complete");
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ESP_LOGI("Initializer", "Setup complete");
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}
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}
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@ -249,4 +271,14 @@ void loop()
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testVar.setValue("Hello World");
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testVar.setValue("Hello World");
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}
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}
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#endif
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#endif
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#ifdef CT_ENABLE
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ct.loop();
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static uint32_t last_ct_print = 0;
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if (millis() - last_ct_print >= 1000)
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{
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last_ct_print = millis();
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Serial.print("Current: ");
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Serial.println(ct.getCurrent());
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}
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#endif
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}
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}
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