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//Objectives:
/* Modify this code to be compatible with the ESP32-WROOM-32 Microcontoller using it's Integrated WIFI
* control and report to a webpage all aspects of my evacuated tube Solar Hot Water collector System.
* Use a PT1000 RTD sensor to monitor the evacuated tube manifold.
* Utilize eleven DS18B20 digital temperature sensors to read temperatures from various system components.
* Control 5 circulation pumps according to what mode has been selected for each pump (On, Off, Auto).
* Specify perameters for circulation pump cycling when the pump is in the "Auto" mode.
* provide radio buttons on the webpage to select what mode each pump is in "On, Off, Auto".
usable pins: 34-39 are inputs only. VP=36, VN=39.
external flash uses 6-11 - unusable
//Objectives:
/* Modify this code to be compatible with the ESP32-WROOM-32 Microcontoller using it's Integrated WIFI
* control and report to a webpage all aspects of my Hydronic evacuated tube Solar Hot Water collector System.
* Use a PT1000 RTD sensor to monitor the evacuated tube manifold.
* Utilize eleven DS18B20 digital temperature sensors to read temperatures from various system components.
* Control 5 circulation pumps according to what mode has been selected for each pump (On, Off, Auto).
* Specify perameters for circulation pump cycling when the pump is in the "Auto" mode.
* provide radio buttons on the webpage to select what mode each pump is in "On, Off, Auto".
usable pins: 34-39 are inputs only. VP=36, VN=39.
external flash uses 6-11 - unusable
//Objectives:
/* Modify this code to be compatible with the ESP32-WROOM-32 Microcontoller using it's Integrated WIFI
* control and report to a webpage all aspects of my Hydronic evacuated tube Solar Hot Water collector System.
* Use a PT1000 RTD sensor to monitor the evacuated tube manifold.
* Utilize eleven DS18B20 digital temperature sensors to read temperatures from various system components.
* Control 5 circulation pumps according to what mode has been selected for each pump (On, Off, Auto).
* Specify perameters for circulation pump cycling when the pump is in the "Auto" mode.
* provide radio buttons on the webpage to select what mode each pump is in "On, Off, Auto".
usable pins: 34-39 are inputs only. VP=36, VN=39.
external flash uses 6-11 - unusable
//Objectives:
/* Modify this code to be compatible with the ESP32-WROOM-32 Microcontoller using it's Integrated WIFI
* control and report to a webpage all aspects of my Hydronic evacuated tube Solar Hot Water collector System.
* Use a PT1000 RTD sensor to monitor the evacuated tube manifold.
* Utilize eleven DS18B20 digital temperature sensors to read temperatures from various system components.
* Control 5 circulation pumps according to what mode has been selected for each pump (On, Off, Auto).
* Specify perameters for circulation pump cycling when the pump is in the "Auto" mode.
* provide radio buttons on the webpage to select what mode each pump is in "On, Off, Auto".
usable pins: 34-39 are inputs only. VP=36, VN=39.
external flash uses 6-11 - unusable
//Objectives:
/* Modify this code to be compatible with the ESP32-WROOM-32 Microcontoller using it's Integrated WIFI
* control and report to a webpage all aspects of my Hydronic evacuated tube Solar Hot Water collector System.
* Use a PT1000 RTD sensor to monitor the evacuated tube manifold.
* Utilize eleven DS18B20 digital temperature sensors to read temperatures from various system components.
* Control 5 circulation pumps according to what mode has been selected for each pump (On, Off, Auto).
* Specify perameters for circulation pump cycling when the pump is in the "Auto" mode.
* provide radio buttons on the webpage to select what mode each pump is in "On, Off, Auto".
usable pins: 34-39 are inputs only. VP=36, VN=39.
external flash uses 6-11 - unusable
//Objectives:
/* Modify this code to be compatible with the ESP32-WROOM-32 Microcontoller usiing it's Integrated WIFI
* control and report to a webpage all aspects of my Hydronic evacuated tube Solar Hot Water collector System.
* Use a PT1000 RTD sensor to monitor the evacuated tube manifold.
* Utilize eleven DS18B20 digital temperature sensors to read temperatures from various system components.
* Control 5 circulation pumps according to what mode has been selected for each pump (On, Off, Auto).
* Specify perameters for circulation pump cycling when the pump is in the "Auto" mode.
* provide radio buttons on the webpage to select what mode each pump is in "On, Off, Auto".
usable pins: 34-39 are inputs only. VP=36, VN=39.
external flash uses 6-11 - unusable
//Objectives:
/* Modify this code to be compatible with the ESP32-WROOM-32 Microcontoller usiing it's Integrated WIFI
* control and report to a webpage all aspects of my Hydronic evacuated tube Solar Hot Water collector System.
* Use a PT1000 RTD sensor to monitor the evacuated tube manifold.
* Utilize eleven DS18B20 digital temperature sensors to read temperatures from various system components.
* Control 5 circulation pumps according to what mode has been selected for each pump (On, Off, Auto).
* Specify perameters for circulation pump cycling when the pump is in the "Auto" mode.
* provide radio buttons on the webpage to select what mode each pump is in "On, Off, Auto".
usable pins: 34-39 are inputs only. VP=36, VN=39.
external flash uses 6-11 - unusable
.4//Objectives:
/* Modify this code to be compatible with the ESP32-WROOM-32 Microcontoller usiing it's Integrated WIFI
* control and report to a webpage all aspects of my Hydronic evacuated tube Solar Hot Water collector System.
* Use a PT1000 RTD sensor to monitor the evacuated tube manifold.
* Utilize eleven DS18B20 digital temperature sensors to read temperatures from various system components.
* Control 5 circulation pumps according to what mode has been selected for each pump (On, Off, Auto).
* Specify perameters for circulation pump cycling when the pump is in the "Auto" mode.
* provide radio buttons on the webpage to select what mode each pump is in "On, Off, Auto".
usable pins: 34-39 are inputs only. VP=36, VN=39.
external flash uses 6-11 - unusable
//Objectives:
/* Modify this code to be compatible with the ESP32-WROOM-32 Microcontoller usiing it's Integrated WIFI
* control and report to a webpage all aspects of my Hydronic evacuated tube Solar Hot Water collector System.
* Use a PT1000 RTD sensor to monitor the evacuated tube manifold.
* Utilize eleven DS18B20 digital temperature sensors to read temperatures from various system components.
* Control 5 circulation pumps according to what mode has been selected for each pump (On, Off, Auto).
* Specify perameters for circulation pump cycling when the pump is in the "Auto" mode.
* provide radio buttons on the webpage to select what mode each pump is in "On, Off, Auto".
usable pins: 34-39 are inputs only. VP=36, VN=39.
external flash uses 6-11 - unusable
//Objectives:
/* Modify this code to be compatible with the ESP32-WROOM-32 Microcontoller usiing it's Integrated WIFI
* control and report to a webpage all aspects of my Hydronic evacuated tube Solar Hot Water collector System.
* Use a PT1000 RTD sensor to monitor the evacuated tube manifold.
* Utilize eleven DS18B20 digital temperature sensors to read temperatures from various system components.
* Control 5 circulation pumps according to what mode has been selected for each pump (On, Off, Auto).
* Specify perameters for circulation pump cycling when the pump is in the "Auto" mode.
* provide radio buttons on the webpage to select what mode each pump is in "On, Off, Auto".
usable pins: 34-39 are inputs only. VP=36, VN=39.
external flash uses 6-11 - unusable