Here is what you have to do:
1. Open ReefAngel_Features.h file on notepad. The file is located on "Documents\Arduino\libraries\ReefAngel_Features" folder.
2. Delete the contents of the file and paste this:
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// AutoGenerated file by RAGen (v1.1.0.127), (11/19/2011 09:01)
/*
* Copyright 2010-11 Curt Binder
*
* Licensed under the Apache License, Version 2.0 (the "License")
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
#ifndef __REEFANGEL_FEATURES_H__
#define __REEFANGEL_FEATURES_H__
#define DateTimeSetup
#define VersionMenu
#define ATOSetup
#define StandardLightSetup
#endif // __REEFANGEL_FEATURES_H__
3. Save
4. Close notepad
5. Open Arduino
6. Paste the below code. It is your internal memory settings. This file only needs to be uploaded once in the lifetime of the controller.
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// Autogenerated file by RAGen (v1.1.0.127), (11/19/2011 09:05)
// Memory_111911_0905.pde
//
// This file sets the default values to the Internal Memory
//
#include <ReefAngel_Features.h>
#include <ReefAngel_Globals.h>
#include <Time.h>
#include <OneWire.h>
#include <Phillips6610LCDInv.h>
#include <avr/pgmspace.h>
#include <ReefAngel_EEPROM.h>
Phillips6610LCDInv e;
void setup()
{
e.lcd_init();
e.lcd_clear(COLOR_WHITE,0,0,132,132);
e.lcd_BacklightOn();
InternalMemory.MHOnHour_write(8);
InternalMemory.MHOnMinute_write(0);
InternalMemory.MHOffHour_write(15);
InternalMemory.MHOffMinute_write(0);
InternalMemory.MHDelay_write(5);
InternalMemory.StdLightsOnHour_write(13);
InternalMemory.StdLightsOnMinute_write(0);
InternalMemory.StdLightsOffHour_write(22);
InternalMemory.StdLightsOffMinute_write(0);
InternalMemory.DP1OnHour_write(20);
InternalMemory.DP1OnMinute_write(0);
InternalMemory.DP2OnHour_write(22);
InternalMemory.DP2OnMinute_write(30);
InternalMemory.DP1Timer_write(10);
InternalMemory.DP2Timer_write(10);
InternalMemory.DP1RepeatInterval_write(60);
InternalMemory.DP2RepeatInterval_write(60);
InternalMemory.ATOTimeout_write(60);
InternalMemory.ATOHighTimeout_write(60);
InternalMemory.ATOHourInterval_write(0);
InternalMemory.ATOHighHourInterval_write(0);
InternalMemory.FeedingTimer_write(900);
InternalMemory.LCDTimer_write(600);
InternalMemory.LEDPWMActinic_write(50);
InternalMemory.LEDPWMDaylight_write(50);
InternalMemory.WM1Timer_write(200);
InternalMemory.WM2Timer_write(354);
InternalMemory.HeaterTempOn_write(780);
InternalMemory.HeaterTempOff_write(800);
InternalMemory.ChillerTempOn_write(810);
InternalMemory.ChillerTempOff_write(785);
InternalMemory.OverheatTemp_write(1500);
InternalMemory.PHMax_write(840);
InternalMemory.PHMin_write(550);
}
void loop()
{
// display the values
char buf[128];
sprintf(buf, "MH %2d:%02d-%2d:%02d,%d", InternalMemory.MHOnHour_read(), InternalMemory.MHOnMinute_read(),
InternalMemory.MHOffHour_read(), InternalMemory.MHOffMinute_read(),
InternalMemory.MHDelay_read());
e.lcd_draw_text(COLOR_BLACK, COLOR_WHITE, MENU_START_COL, MENU_START_ROW, buf);
sprintf(buf, "Std %2d:%02d-%2d:%02d", InternalMemory.StdLightsOnHour_read(), InternalMemory.StdLightsOnMinute_read(),
InternalMemory.StdLightsOffHour_read(), InternalMemory.StdLightsOffMinute_read());
e.lcd_draw_text(COLOR_BLACK, COLOR_WHITE, MENU_START_COL, MENU_START_ROW*2, buf);
sprintf(buf, "LED A: %d%% D: %d%%", InternalMemory.LEDPWMActinic_read(), InternalMemory.LEDPWMDaylight_read());
e.lcd_draw_text(COLOR_BLACK, COLOR_WHITE, MENU_START_COL, MENU_START_ROW*3, buf);
sprintf(buf, "WM1: %ds", InternalMemory.WM1Timer_read());
e.lcd_draw_text(COLOR_BLACK, COLOR_WHITE, MENU_START_COL, MENU_START_ROW*4, buf);
sprintf(buf, "WM2: %ds", InternalMemory.WM2Timer_read());
e.lcd_draw_text(COLOR_BLACK, COLOR_WHITE, MENU_START_COL, MENU_START_ROW*5, buf);
sprintf(buf, "F: %ds", InternalMemory.FeedingTimer_read());
e.lcd_draw_text(COLOR_BLACK, COLOR_WHITE, MENU_START_COL, MENU_START_ROW*6, buf);
sprintf(buf, "S: %ds", InternalMemory.LCDTimer_read());
e.lcd_draw_text(COLOR_BLACK, COLOR_WHITE, MENU_START_COL, MENU_START_ROW*7, buf);
sprintf(buf, "H On: %d -> %d", InternalMemory.HeaterTempOn_read(), InternalMemory.HeaterTempOff_read());
e.lcd_draw_text(COLOR_BLACK, COLOR_WHITE, MENU_START_COL, MENU_START_ROW*9, buf);
sprintf(buf, "C On: %d -> %d", InternalMemory.ChillerTempOn_read(), InternalMemory.ChillerTempOff_read());
e.lcd_draw_text(COLOR_BLACK, COLOR_WHITE, MENU_START_COL, MENU_START_ROW*10, buf);
sprintf(buf, "PH %d - %d", InternalMemory.PHMax_read(), InternalMemory.PHMin_read());
e.lcd_draw_text(COLOR_BLACK, COLOR_WHITE, MENU_START_COL, MENU_START_ROW*11, buf);
delay(10000);
e.lcd_clear(COLOR_WHITE,0,0,132,132);
sprintf(buf, "OH: %dF", InternalMemory.OverheatTemp_read());
e.lcd_draw_text(COLOR_BLACK, COLOR_WHITE, MENU_START_COL, MENU_START_ROW, buf);
sprintf(buf, "ATO L: %ds (%dh)", InternalMemory.ATOTimeout_read(), InternalMemory.ATOHourInterval_read());
e.lcd_draw_text(COLOR_BLACK, COLOR_WHITE, MENU_START_COL, MENU_START_ROW*2, buf);
sprintf(buf, "ATO H: %ds (%dh)", InternalMemory.ATOHighTimeout_read(), InternalMemory.ATOHighHourInterval_read());
e.lcd_draw_text(COLOR_BLACK, COLOR_WHITE, MENU_START_COL, MENU_START_ROW*3, buf);
sprintf(buf, "DP1: %2d:%02d", InternalMemory.DP1OnHour_read(), InternalMemory.DP1OnMinute_read());
e.lcd_draw_text(COLOR_BLACK, COLOR_WHITE, MENU_START_COL, MENU_START_ROW*5, buf);
sprintf(buf, " %ds", InternalMemory.DP1Timer_read());
e.lcd_draw_text(COLOR_BLACK, COLOR_WHITE, MENU_START_COL, MENU_START_ROW*6, buf);
sprintf(buf, "DP2: %2d:%02d", InternalMemory.DP2OnHour_read(), InternalMemory.DP2OnMinute_read());
e.lcd_draw_text(COLOR_BLACK, COLOR_WHITE, MENU_START_COL, MENU_START_ROW*7, buf);
sprintf(buf, " %ds", InternalMemory.DP2Timer_read());
e.lcd_draw_text(COLOR_BLACK, COLOR_WHITE, MENU_START_COL, MENU_START_ROW*8, buf);
delay(10000);
e.lcd_clear(COLOR_WHITE,0,0,132,132);
}
7. Click "Upload" button on Arduino.
8. After the code has been uploaded, you will see several numbers in the screen. At this point, you know the settings have been stored in the memory.
9. Delete everything on Arduino and paste your PDE code. This is the code you will be using and updating from now on.
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#include <ReefAngel_Features.h>
#include <ReefAngel_Globals.h>
#include <ReefAngel_Wifi.h>
#include <Wire.h>
#include <OneWire.h>
#include <Time.h>
#include <DS1307RTC.h>
#include <ReefAngel_EEPROM.h>
#include <ReefAngel_NokiaLCD.h>
#include <ReefAngel_ATO.h>
#include <ReefAngel_Joystick.h>
#include <ReefAngel_LED.h>
#include <ReefAngel_TempSensor.h>
#include <ReefAngel_Relay.h>
#include <ReefAngel_PWM.h>
#include <ReefAngel_Timer.h>
#include <ReefAngel_Memory.h>
#include <ReefAngel.h>
void setup()
{
ReefAngel.Init();
}
void loop()
{
ReefAngel.StandardATO(Port1);
ReefAngel.StandardATO(Port2);
ReefAngel.StandardHeater(Port3);
if (ReefAngel.HighATO.IsActive()) ReefAngel.Relay.Off(Port4); else ReefAngel.Relay.On(Port4);
if(hour()%2==0) ReefAngel.Relay.On(Port5); else ReefAngel.Relay.Off(Port5);
if(hour()%2==1) ReefAngel.Relay.On(Port6); else ReefAngel.Relay.Off(Port6);
ReefAngel.StandardLights(Port7);
ReefAngel.StandardLights(Port8,InternalMemory.StdLightsOnHour_read()+1,InternalMemory.StdLightsOnMinute_read(),InternalMemory.StdLightsOffHour_read()+1,InternalMemory.StdLightsOffMinute_read());
ReefAngel.ShowInterface();
}
10. Hit the "Save" button on Arduino and type a name for your PDE file.
11. Now, hit the "Upload" button.
12. That's it.
Note: the pH reading and disabling of Kalk is still not implemented.
I'd like you to test things out first to make sure your functions are working.
Then, if everything is smooth, we work on the Kalk.
Let me know how it goes.