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  3. Chinese Solar Lipo powered PIR led lamp.

Chinese Solar Lipo powered PIR led lamp.

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  • korttomaK korttoma

    I guess you meant U4 is the 3.3V regulator. I measured it to 3.3V and HT33 should be a regulator. Q1 and Q2 I think are transistors. U3 handles the solar charging. U1 is for the PIR but unfortunately there is no text on the chip. I will get you the link tomorrow but it is quite easy to find on aliexpress.

    gyroG Offline
    gyroG Offline
    gyro
    wrote on last edited by
    #27

    @korttoma
    sorry my typo: you are correct

    • U4 - HT33 is voltage regulator
    • yes Q1 and Q2 are transistors
    • U1 - PIR out test - measure voltage between PIN 6 and R3 when PIR is OF and ON. I think this drives Q2 (high brightness / low brightnes)

    also take picture of other side of circuit board, beause i think Q1 is conected to R10 and
    then further on the other side

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    • korttomaK Offline
      korttomaK Offline
      korttoma
      Hero Member
      wrote on last edited by
      #28

      Here is the link to the one I got but it seems like the prize is allot higher now since I paid 23,84$ including shipping -> http://www.aliexpress.com/item/1-Set-1200-Lumens-46-pcs-LED-Solar-Power-Motion-Sensor-Lamp-Ultra-thin-PIR-Outdoor/32354254209.html

      Also it took like 10 weeks for it to arrive so maybe another seller would be a better fit.

      • Tomas
      1 Reply Last reply
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      • korttomaK Offline
        korttomaK Offline
        korttoma
        Hero Member
        wrote on last edited by
        #29

        There is not much on the other side of the board, just a status LED, a button to turn it on and the PIR.

        0_1461306917706_WP_20160422_09_27_29_Pro.jpg

        • Tomas
        gyroG 1 Reply Last reply
        0
        • korttomaK korttoma

          There is not much on the other side of the board, just a status LED, a button to turn it on and the PIR.

          0_1461306917706_WP_20160422_09_27_29_Pro.jpg

          gyroG Offline
          gyroG Offline
          gyro
          wrote on last edited by
          #30

          @korttoma
          Are you sure that this light has two modes of operation or only one: when a person is present is activated for 15s and then switched off

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          • korttomaK Offline
            korttomaK Offline
            korttoma
            Hero Member
            wrote on last edited by
            #31

            I'm sorry I did not test the device I just read the manual so I think that yes it has 2 modes for LED brightness.

            0_1461308847304_WP_20160422_09_59_09_Pro.jpg

            • Tomas
            gyroG 1 Reply Last reply
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            • korttomaK korttoma

              I'm sorry I did not test the device I just read the manual so I think that yes it has 2 modes for LED brightness.

              0_1461308847304_WP_20160422_09_59_09_Pro.jpg

              gyroG Offline
              gyroG Offline
              gyro
              wrote on last edited by
              #32

              @korttoma
              Don't be sorry.I am not an circuits expert, I just try help you figure things out.
              You wil have to test this lamp a little bit.
              it looks that Q1 drives U1 active/not active when there is sun, but how/what turns on dimm lights in dark?

              Did you measure U1 pin 6 when pir active/not active?

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              • korttomaK Offline
                korttomaK Offline
                korttoma
                Hero Member
                wrote on last edited by
                #33

                In the application I will use this one I actually do not care so much for the built in PIR and LED, I just see it as a smart enclosure with a solar battery power-supply built in. I will tap in to the 3.3V regulator to power a pro mini that has an external PIR and (LDR) Light sensor. In addition to this I would like to add voltage measurement for the battery. BTW, did you komplette your sketch? I would like to copy the battery voltage sensor part. I will look att figuring out the circuit later, it does not look to complicated.

                • Tomas
                gyroG 1 Reply Last reply
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                • korttomaK korttoma

                  In the application I will use this one I actually do not care so much for the built in PIR and LED, I just see it as a smart enclosure with a solar battery power-supply built in. I will tap in to the 3.3V regulator to power a pro mini that has an external PIR and (LDR) Light sensor. In addition to this I would like to add voltage measurement for the battery. BTW, did you komplette your sketch? I would like to copy the battery voltage sensor part. I will look att figuring out the circuit later, it does not look to complicated.

                  gyroG Offline
                  gyroG Offline
                  gyro
                  wrote on last edited by
                  #34

                  @korttoma
                  I did try some battery measurement variants. The following code works best for me. I suggest that you first try the following sketch.

                  • measure the voltage with voltmeter on VCC pin and correct #define VREF value so it will be a close as possible to measured value before you integrate into case specific code
                  
                  
                  // define values for the battery measurement
                  #define R1 1e6
                  #define R2 330e3
                  #define VMIN 2.8
                  #define VMAX 4.2
                  #define ADC_PRECISION 1023
                  #define VREF 1.13
                  
                  
                  int oldBatteryPcnt = 0;
                  int batteryVoltage = 0;
                  int BATTERY_SENSE_PIN = 0;
                  int val = 0;
                  
                  void setup()  
                  { 
                       // use the 1.1 V internal reference
                    #if defined(__AVR_ATmega2560__)
                       analogReference(INTERNAL1V1);
                    #else
                       analogReference(INTERNAL);
                    #endif
                    Serial.begin(9600);
                  }
                  
                  void loop()      
                  {  
                     //float batteryPcnt = getBatteryPercentage();
                  
                    //val = analogRead(BATTERY_SENSE_PIN);
                    //Serial.println(batteryVoltage);
                    float batteryVoltage = getBatteryPercentage();
                    Serial.println(batteryVoltage);
                    float batteryV= batteryVoltage;
                  
                    float batteryVmap = fabs(fmap(batteryV, 2.5, 4.2, 0.0, 1000.0));
                    int batteryPcnt = batteryVmap / 10;
                    if (batteryPcnt >= 100) {
                  	  batteryPcnt = 99;
                    }
                     Serial.print("Battery voltage: ");
                     Serial.print(batteryPcnt);
                     Serial.println(" %");
                  delay(2000);
                     /*if (oldBatteryPcnt != batteryPcnt) {
                       // Power up radio after sleep
                       //gw.sendBatteryLevel(batteryPcnt);
                       oldBatteryPcnt = batteryPcnt;
                     }*/
                    
                    // totally random test values
                  
                  }
                  
                  float getBatteryPercentage() {
                  
                    // read analog pin value
                    int inputValue = analogRead(BATTERY_SENSE_PIN);
                    
                    // calculate the max possible value and therefore the range and steps
                    float voltageDividerFactor = (R1 + R2) / R2;
                    float maxValue = voltageDividerFactor * VREF;
                    float voltsPerBit = maxValue / ADC_PRECISION;
                  
                    float batteryVoltage = voltsPerBit * inputValue;
                    float batteryPercentage = ((batteryVoltage-VMIN)/(VMAX-VMIN))*100;
                    //int batteryPercentage = map(batteryVoltage, 0, maxValue, 0, 100);
                  
                    //return batteryPercentage;
                    return batteryVoltage;
                  }
                  float fmap(float x, float in_min, float in_max, float out_min, float out_max) {
                  	return (x - in_min) * (out_max - out_min) / (in_max - in_min) + out_min;
                  }
                  
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                  • korttomaK Offline
                    korttomaK Offline
                    korttoma
                    Hero Member
                    wrote on last edited by
                    #35

                    @gyro said:

                    int BATTERY_SENSE_PIN = 0;

                    This means that you use A0 for measuring right?

                    #define R1 1e6
                    #define R2 330e3

                    And you have used 1Mohm and 330kohm for the resistors?

                    • Tomas
                    gyroG 1 Reply Last reply
                    0
                    • korttomaK korttoma

                      @gyro said:

                      int BATTERY_SENSE_PIN = 0;

                      This means that you use A0 for measuring right?

                      #define R1 1e6
                      #define R2 330e3

                      And you have used 1Mohm and 330kohm for the resistors?

                      gyroG Offline
                      gyroG Offline
                      gyro
                      wrote on last edited by gyro
                      #36

                      Hi @korttoma

                      • yes battery sense is A0
                      • yes R1 and R2 are resistors values to measure Lipo voltage
                      1 Reply Last reply
                      0
                      • korttomaK Offline
                        korttomaK Offline
                        korttoma
                        Hero Member
                        wrote on last edited by
                        #37

                        Thanks for the code and the additional info. Measuring the battery seems to work as expected but using the Internal reference seems to mess with the light level measurement LDR. Is it possible to use indifferent reference for different analog inputs? Or do I need to recalculate my LDR voltage divider?

                        • Tomas
                        1 Reply Last reply
                        0
                        • korttomaK Offline
                          korttomaK Offline
                          korttoma
                          Hero Member
                          wrote on last edited by
                          #38

                          I managed to squeeze in a pro mini and radio that is now powered from the 3.3V available from the built in circuit board. It has battery voltage measurement, light level and a external PIR.

                          0_1461752523359_WP_20160427_11_25_34_Pro.jpg

                          • Tomas
                          gyroG 1 Reply Last reply
                          1
                          • korttomaK korttoma

                            I managed to squeeze in a pro mini and radio that is now powered from the 3.3V available from the built in circuit board. It has battery voltage measurement, light level and a external PIR.

                            0_1461752523359_WP_20160427_11_25_34_Pro.jpg

                            gyroG Offline
                            gyroG Offline
                            gyro
                            wrote on last edited by gyro
                            #39

                            @korttoma great that you maneged to connect it lamp..
                            I don't know if analog reference is than set for all analog interfaces..
                            Just one more thing you should adjust:
                            I have figured out that I need to raise alarm for lower threshold for battery to higher than 3V (now is 2.5V!) because regulator voltage drop is ~250mV, and mini pro drops out at around 2.8V..
                            But the whole concept now works fairly good

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                            0
                            • ranseyerR Offline
                              ranseyerR Offline
                              ranseyer
                              Hardware Contributor
                              wrote on last edited by ranseyer
                              #40

                              Hi,

                              im waiting to my Chinese Lamps. So i ordered in the meantime one directly in Germany: TaoTronics Solar ...-16 LED (Model TT-HSL002)

                              https://www.amazon.de/gp/product/B00REDHZMW

                              As you can see there is very different PCB. Do you have a hint for me if modification makes Sense ?

                              ed: now with external images:
                              alt text
                              alt text
                              alt text

                              Greetings

                              gyroG 1 Reply Last reply
                              0
                              • ranseyerR ranseyer

                                Hi,

                                im waiting to my Chinese Lamps. So i ordered in the meantime one directly in Germany: TaoTronics Solar ...-16 LED (Model TT-HSL002)

                                https://www.amazon.de/gp/product/B00REDHZMW

                                As you can see there is very different PCB. Do you have a hint for me if modification makes Sense ?

                                ed: now with external images:
                                alt text
                                alt text
                                alt text

                                Greetings

                                gyroG Offline
                                gyroG Offline
                                gyro
                                wrote on last edited by gyro
                                #41

                                @ranseyer
                                This one looks is a little complicated. I think you should wait for china version :)
                                Take a picture of other side of circuit also.

                                ranseyerR 1 Reply Last reply
                                0
                                • gyroG gyro

                                  @ranseyer
                                  This one looks is a little complicated. I think you should wait for china version :)
                                  Take a picture of other side of circuit also.

                                  ranseyerR Offline
                                  ranseyerR Offline
                                  ranseyer
                                  Hardware Contributor
                                  wrote on last edited by
                                  #42

                                  @gyro

                                  Thanks for the Answer. Mine was produced in China too...

                                  Her the picture of the backside:
                                  alt text
                                  No connections, but a board name: YYGF-601L.

                                  I would be happy for any hints...

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