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  3. INA219 DC Current Sensor

INA219 DC Current Sensor

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  • A Offline
    A Offline
    a-lurker
    wrote on last edited by
    #12

    @hek - just suggesting that you ensure the CT you purchase has some protective measure, such as Zener clamps to limit the Voltage when the secondary is not connected to anything. The ones you linked to look fine.

    1 Reply Last reply
    0
    • ? Offline
      ? Offline
      A Former User
      wrote on last edited by
      #13

      Very interesting, I would like to follow!

      1 Reply Last reply
      0
      • jeylitesJ Offline
        jeylitesJ Offline
        jeylites
        wrote on last edited by
        #14

        Has anyone made any progress implementing the AC current sensor or is there a My Sensor plugin?

        N 1 Reply Last reply
        1
        • jeylitesJ jeylites

          Has anyone made any progress implementing the AC current sensor or is there a My Sensor plugin?

          N Offline
          N Offline
          niccodemi
          wrote on last edited by
          #15

          @jeylites said:

          Has anyone made any progress implementing the AC current sensor or is there a My Sensor plugin?

          +1 I would be also interested in AC current sensor.

          1 Reply Last reply
          0
          • M Offline
            M Offline
            Mrlynx
            Hardware Contributor
            wrote on last edited by
            #16

            I have some ACS712 current sensors on order.
            They are easy to use as they give a voltage that corresponds to the current flowing through it.
            I am planning to use them to measure current in my LED pwm-dimmer.
            I am going to power them with old laptop charger ~18V and limit current depending on length of led-strip.

            http://www.sa2avr.se

            1 Reply Last reply
            0
            • N Offline
              N Offline
              NotYetRated
              wrote on last edited by
              #17

              Just ordered a 100A sensor, going to look to tackle this sometime early January. Will post details if no one else has by then.

              1 Reply Last reply
              0
              • M Offline
                M Offline
                mainali
                wrote on last edited by
                #18

                I am using ACS712 current sensor with the relay actuator code to sense if someone has manually switched on the light from the physical switch mounted on the walls. If I can help ping me.

                chatainsimC 1 Reply Last reply
                0
                • M mainali

                  I am using ACS712 current sensor with the relay actuator code to sense if someone has manually switched on the light from the physical switch mounted on the walls. If I can help ping me.

                  chatainsimC Offline
                  chatainsimC Offline
                  chatainsim
                  wrote on last edited by
                  #19

                  Hello @mainali
                  Can you provide more details regarding the ACS712 current sensor ?
                  Maybe a drawing on ho to connect to the arduino nand the sketch ?

                  Thanks

                  1 Reply Last reply
                  0
                  • M Offline
                    M Offline
                    mainali
                    wrote on last edited by mainali
                    #20

                    I am using a two way switch to control my device. The idea is to control the state from arduino as well as physical switch parallely.

                    Physical switch ON, Arduino can switch it OFF
                    Arduino switches it ON, Physical switch whatever be the state on push should switch it OFF.

                    IMG_20150318_124545.jpg

                    I have used the Relay actuator example code from mysensor and little more code which I found in arduino forum.

                    I am not able to use the plugin to embed the code, anyways the following is the code.

                    // Example sketch showing how to control physical relays.
                    // This example will remember relay state even after power failure.

                    #include <MySensor.h>
                    #include <SPI.h>

                    #define RELAY_1 2 // Arduino Digital I/O pin number for first relay (second on pin+1 etc)
                    #define RELAY_2 3
                    #define NUMBER_OF_RELAYS 2 // Total number of attached relays
                    #define RELAY_ON 1 // GPIO value to write to turn on attached relay
                    #define RELAY_OFF 0 // GPIO value to write to turn off attached relay
                    #define CHILD_ID 1

                    #define CURRENT_SENSOR A0 // Analog input pin that sensor is attached to
                    MyMessage msg(CHILD_ID, V_TRIPPED); //Using this as the message to report the physical switch on status

                    float amplitude_current; //amplitude current
                    float effective_value;
                    bool switch_1_on;
                    int count = 0;
                    MySensor gw;

                    void setup()
                    {
                    // Initialize library and add callback for incoming messages
                    gw.begin(incomingMessage, 21, true);

                    // Send the sketch version information to the gateway and Controller
                    gw.sendSketchInfo("Relay with current sensor", "1.0");
                    pins_init();

                    // Fetch relay status
                    for (int sensor=1, pin=RELAY_1; sensor<=NUMBER_OF_RELAYS;sensor++, pin++) {
                    // Register all sensors to gw (they will be created as child devices)
                    gw.present(sensor, S_LIGHT);
                    // Then set relay pins in output mode
                    pinMode(pin, OUTPUT);
                    // Set relay to last known state (using eeprom storage)
                    digitalWrite(pin, gw.loadState(sensor)?RELAY_ON:RELAY_OFF);
                    }
                    }

                    void loop()
                    {
                    int sensor_max;
                    sensor_max = getMaxValue();
                    Serial.print("sensor_max = ");
                    Serial.println(sensor_max);
                    //the VCC on the Grove interface of the sensor is 5v
                    amplitude_current=(float)(sensor_max-512)/10245/1851000000;
                    effective_value=amplitude_current/1.414;
                    //minimum_current=1/10245/1851000000/1.414=18.7(mA)
                    //Only for sinusoidal alternating current
                    Serial.println("The amplitude of the current is(in mA)");
                    Serial.println(amplitude_current,1);//Only one number after the decimal point
                    Serial.println("The effective value of the current is(in mA)");
                    Serial.println(effective_value,1);

                        if (count == 0 && amplitude_current > 30) {
                           switch_1_on = true;
                          Serial.println("physical switch on");
                          gw.send(msg.set(switch_1_on?"1":"0"));
                          count = 1 ;
                        }
                        else {
                          count = 0 ;
                        }
                    

                    // Alway process incoming messages whenever possible
                    gw.process();
                    }

                    void incomingMessage(const MyMessage &message) {
                    // We only expect one type of message from controller. But we better check anyway.
                    if (message.type == V_FAN) {
                    Serial.println("Message arrived for FAN");
                    Serial.println(message.sensor);
                    for(int i=4 ; i<=7; i++) {
                    digitalWrite(i,0);
                    }
                    }
                    if (message.type==V_LIGHT) {
                    // Change relay state
                    digitalWrite(message.sensor-1+RELAY_1, message.getBool()?RELAY_ON:RELAY_OFF);
                    // Store state in eeprom
                    gw.saveState(message.sensor, message.getBool());
                    // Write some debug info
                    Serial.print("Incoming change for sensor:");
                    Serial.print(message.sensor);
                    Serial.print(", New status: ");
                    Serial.println(message.getBool());
                    }
                    }

                    void pins_init()
                    {
                    pinMode(CURRENT_SENSOR, INPUT);
                    }
                    /Function: Sample for 1000ms and get the maximum value from the S pin/
                    int getMaxValue()
                    {
                    int sensorValue; //value read from the sensor
                    int sensorMax = 0;
                    uint32_t start_time = millis();
                    while((millis()-start_time) < 1000)//sample for 1000ms
                    {
                    sensorValue = analogRead(CURRENT_SENSOR);
                    if (sensorValue > sensorMax)
                    {
                    /record the maximum sensor value/
                    sensorMax = sensorValue;
                    }
                    }
                    return sensorMax;
                    }

                    jeremushkaJ 1 Reply Last reply
                    0
                    • chatainsimC Offline
                      chatainsimC Offline
                      chatainsim
                      wrote on last edited by
                      #21

                      Thanks !

                      1 Reply Last reply
                      0
                      • epierreE Offline
                        epierreE Offline
                        epierre
                        Hero Member
                        wrote on last edited by
                        #22

                        has anyone made something usefull with the ACS712 yet ?

                        z-wave - Vera -&gt; Domoticz
                        rfx - Domoticz &lt;- MyDomoAtHome &lt;- Imperihome
                        mysensors -&gt; mysensors-gw -&gt; Domoticz

                        1 Reply Last reply
                        0
                        • M mainali

                          I am using a two way switch to control my device. The idea is to control the state from arduino as well as physical switch parallely.

                          Physical switch ON, Arduino can switch it OFF
                          Arduino switches it ON, Physical switch whatever be the state on push should switch it OFF.

                          IMG_20150318_124545.jpg

                          I have used the Relay actuator example code from mysensor and little more code which I found in arduino forum.

                          I am not able to use the plugin to embed the code, anyways the following is the code.

                          // Example sketch showing how to control physical relays.
                          // This example will remember relay state even after power failure.

                          #include <MySensor.h>
                          #include <SPI.h>

                          #define RELAY_1 2 // Arduino Digital I/O pin number for first relay (second on pin+1 etc)
                          #define RELAY_2 3
                          #define NUMBER_OF_RELAYS 2 // Total number of attached relays
                          #define RELAY_ON 1 // GPIO value to write to turn on attached relay
                          #define RELAY_OFF 0 // GPIO value to write to turn off attached relay
                          #define CHILD_ID 1

                          #define CURRENT_SENSOR A0 // Analog input pin that sensor is attached to
                          MyMessage msg(CHILD_ID, V_TRIPPED); //Using this as the message to report the physical switch on status

                          float amplitude_current; //amplitude current
                          float effective_value;
                          bool switch_1_on;
                          int count = 0;
                          MySensor gw;

                          void setup()
                          {
                          // Initialize library and add callback for incoming messages
                          gw.begin(incomingMessage, 21, true);

                          // Send the sketch version information to the gateway and Controller
                          gw.sendSketchInfo("Relay with current sensor", "1.0");
                          pins_init();

                          // Fetch relay status
                          for (int sensor=1, pin=RELAY_1; sensor<=NUMBER_OF_RELAYS;sensor++, pin++) {
                          // Register all sensors to gw (they will be created as child devices)
                          gw.present(sensor, S_LIGHT);
                          // Then set relay pins in output mode
                          pinMode(pin, OUTPUT);
                          // Set relay to last known state (using eeprom storage)
                          digitalWrite(pin, gw.loadState(sensor)?RELAY_ON:RELAY_OFF);
                          }
                          }

                          void loop()
                          {
                          int sensor_max;
                          sensor_max = getMaxValue();
                          Serial.print("sensor_max = ");
                          Serial.println(sensor_max);
                          //the VCC on the Grove interface of the sensor is 5v
                          amplitude_current=(float)(sensor_max-512)/10245/1851000000;
                          effective_value=amplitude_current/1.414;
                          //minimum_current=1/10245/1851000000/1.414=18.7(mA)
                          //Only for sinusoidal alternating current
                          Serial.println("The amplitude of the current is(in mA)");
                          Serial.println(amplitude_current,1);//Only one number after the decimal point
                          Serial.println("The effective value of the current is(in mA)");
                          Serial.println(effective_value,1);

                              if (count == 0 && amplitude_current > 30) {
                                 switch_1_on = true;
                                Serial.println("physical switch on");
                                gw.send(msg.set(switch_1_on?"1":"0"));
                                count = 1 ;
                              }
                              else {
                                count = 0 ;
                              }
                          

                          // Alway process incoming messages whenever possible
                          gw.process();
                          }

                          void incomingMessage(const MyMessage &message) {
                          // We only expect one type of message from controller. But we better check anyway.
                          if (message.type == V_FAN) {
                          Serial.println("Message arrived for FAN");
                          Serial.println(message.sensor);
                          for(int i=4 ; i<=7; i++) {
                          digitalWrite(i,0);
                          }
                          }
                          if (message.type==V_LIGHT) {
                          // Change relay state
                          digitalWrite(message.sensor-1+RELAY_1, message.getBool()?RELAY_ON:RELAY_OFF);
                          // Store state in eeprom
                          gw.saveState(message.sensor, message.getBool());
                          // Write some debug info
                          Serial.print("Incoming change for sensor:");
                          Serial.print(message.sensor);
                          Serial.print(", New status: ");
                          Serial.println(message.getBool());
                          }
                          }

                          void pins_init()
                          {
                          pinMode(CURRENT_SENSOR, INPUT);
                          }
                          /Function: Sample for 1000ms and get the maximum value from the S pin/
                          int getMaxValue()
                          {
                          int sensorValue; //value read from the sensor
                          int sensorMax = 0;
                          uint32_t start_time = millis();
                          while((millis()-start_time) < 1000)//sample for 1000ms
                          {
                          sensorValue = analogRead(CURRENT_SENSOR);
                          if (sensorValue > sensorMax)
                          {
                          /record the maximum sensor value/
                          sensorMax = sensorValue;
                          }
                          }
                          return sensorMax;
                          }

                          jeremushkaJ Offline
                          jeremushkaJ Offline
                          jeremushka
                          wrote on last edited by
                          #23

                          @mainali said in INA219 DC Current Sensor:

                          MySensor gw;

                          I am building similar system. However, i am facing a lot of difficulties to make the ACS712 working. I have tried your code as well without success. The effective value of the current is always 0 mA even if the light is ON.
                          For the moment, i am testing with 5V current and i switch on a LED. maybe the current is too low to make working my 20A ACS712?
                          If anyone has some ideas, it will be very greatful :) Thanks a lot.

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