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return case

 
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sahu77



Joined: 08 Sep 2011
Posts: 202

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return case
PostPosted: Thu Nov 01, 2012 11:50 am     Reply with quote

Here is my code, which work as when power on/off pic 16f676.
1- green led toggle up to 3 minutes. After 3 min, green led on continuous.
2- during 3 minutes adc work also. It checks adc value & return as adc case. The cases are:
NORMAL_VOLTAGE
HIGH_VOLTAGE
LOW_VOLTAGE
green led = L1
Code:

/*****************************************************************************
  Timer1 Interrupt, executed every 10 ms
 ****************************************************************************/
#INT_TIMER1
void TIMER1_isr(void)
{
   // Increment time_elasped to keep track of ms
   time_elasped++;
   // Increment seconds variable if 1000 ms have passed
 
   if (time_elasped == 100)  //NORMAL_VOLTAGE led blink freqency @ 1000 ms
   {    seconds++;
        BlinkLED1_flag=~BlinkLED1_flag;
        time_elasped = 0;
   }
   // If Quick Start switch is set between start up time, set QuickStart_flag
 
   if ((input(SW1)==0) && (seconds <STARTUP_SEC) && (seconds == 5) ) //STARTUP_SEC=180
      {          QuickStart_flag = 1;
      }
 
   // On start up, blink LED1 for 3 mins
   //led1 blink mains normal ,led1 blink & Reads ADC
    // both are work in same time. not one by one.
    //if led1 blink duration complete then it no blink agen.
   //Has three mins passed?
 
    if (seconds > STARTUP_SEC) // STARTUP_SEC = 180
    {
       BlinkMains_flag=1;
    }
 
   //Reset Timer 1
   set_timer1(60545);
   clear_interrupt(INT_TIMER1);   
}
 /*****************************************************************************
  Main Program
 ****************************************************************************/
void main()
{
   disable_interrupts(GLOBAL);
 
  // Initilize RAM Variables
     BlinkMains_flag = 0;
   QuickStart_flag = 0;
   ErrorConditionExists_flag = 0;
   time_elasped = 0;
   seconds = 0;
 
   //Timer1 Init
   setup_timer_1(T1_INTERNAL | T1_DIV_BY_2);      // Use Internal Timer, Prescaler = 1 : 2
   set_timer1(60545);                        // Set Timer1 register to 1 ms @ 4 Mhz
 
   //ADC Init
   setup_adc_ports(sAN0 );
   setup_adc(ADC_CLOCK_DIV_8);
   ADFM = 1;                      //AD Result Right Justified
   setup_comparator(NC_NC);
 
   // Setup PORTA pull ups
   port_a_pullups(0b00110000);        // Turn on Pullups for RA5 and RA4
   enable_interrupts(INT_TIMER1);
   enable_interrupts(GLOBAL);
 
   while (TRUE)
   {
        if (BlinkMains_flag==0)
          QuickStartTest();
 
      voltage_type = ProcessMains();
     // Quick start here if SW1 is  on any time 1 sec
     // time_elasped set in interrupt
    // Quick start here if SW1 is  on during start up
     if ( ((QuickStart_flag == 1) || (seconds == 5)) && (voltage_type != HIGH_VOLTAGE) )
                 voltage_type = NORMAL_VOLTAGE;
 
      switch(voltage_type)
      {
         case HIGH_VOLTAGE:
          output_low(RL5);       // Relay Off
         ErrorConditionExists_flag = 1;
            BlinkLED1();
            break;
 
         case LOW_VOLTAGE:
            output_low(RL5);     // Relay Off
         ErrorConditionExists_flag = 1;
            BlinkLED1();
            break;
 
          case NORMAL_VOLTAGE:
         ErrorConditionExists_flag = 0;
            if ((BlinkMains_flag==1 || QuickStart_flag == 1 )) // any one active
         {
               output_high(L1);
               output_high(RL5);
         }
            output_low(L2);
            break;
 
         default:
               //We shouldn't get here
 
 
            break;
      }
 
      // Delay to make sure a minimum of 2 TADs have gone by before we do another measurement.
   delay_ms(5); //1=5
   }       // Loop Forever 
}       // End Main
 
/*****************************************************************************
  Function ProcessMains
  Reads Form AN1 ADC_Value and returns NORMAL_VOLTAGE, HIGH_VOLTAGE, LOW_VOLTAGE
 ****************************************************************************/
int ProcessMains(void)
{   ch_1 = getchreading(0);  // Extract volts (thousands of millivolts
   Process_ch_1();      // Do something with ch_1
      if (ch_1>1000)
      return(HIGH_VOLTAGE);
 
   // Low Voltage protection is done here
   if ((ch_1<=465) && ((input(SW2)==0) || (QuickStart_flag == 1))) //Low Voltage protection enable if SW2 is always on(conect with GND).
         return(LOW_VOLTAGE);  //if SW2 is always off(no conect with GND ) Low Voltage protection disable
 
   //We have got here, so voltage should be normal
    return(NORMAL_VOLTAGE);
}
 
 
/*****************************************************************************
  Function BlinkLED1
  Blink Low LED
 ****************************************************************************/
void BlinkLED1(void)
{
   if (BlinkLED1_flag==0)
   {
      output_high(L1);
      output_low(RL5);
   } 
   else
   {
   output_low(L1);
   output_low(RL5);
   }
}
 
/***************************************************************************
  Function QuickStartTest
  Quick Start Test LED
 ****************************************************************************/
void QuickStartTest(void)
{
   if (QuickStart_flag==1)
      output_high(L1);
   else
   if (ErrorConditionExists_flag == 0)
        BlinkLED1();
}

It works normally, but have one problem when adc return(HIGH_VOLTAGE) or return(LOW_VOLTAGE) to return(NORMAL_VOLTAGE). It returns suddenly, but I want Again work 3 min timer which I describe previous.
_________________
sahu
Mike Walne



Joined: 19 Feb 2004
Posts: 1785
Location: Boston Spa UK

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PostPosted: Thu Nov 01, 2012 12:18 pm     Reply with quote

I can't follow what you are trying to do.

Post the SHORTEST possible complete and compilable code which shows your problem.

Reduce the time intervals to seconds (or even ms) for test purposes.

Mike
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