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  • Originally posted by h9361 View Post
    ....
    I respect your work. However, I do not understand the purpose of doing this. The search environment is completely different; consequently, all readings obtained in the air will be radically different—and significantly lower.

    Comment


    • Originally posted by Carl-NC View Post
      Even with a low-impedance driver and a parallel cap you are still limited by the voltage compliance of the driver. If the driver supply is 8V then the peak-to-peak coil current is limited to

      i(t) = 8V/(2*PI*6600*580uH) = 333mA

      If this were not true, then it would imply that you could simply reduce the 47Ω resistor to get more current. But what you will see instead is an increase in waveform distortion as the current becomes more like a triangle wave, while the peak current does not increase.
      Thanks dear Carl for your nice explanation.
      Regarding to your knowledge and experience, do you have any suggestions for increasing power of TX?

      Comment


      • Originally posted by Smirnov-Arta View Post
        I respect your work. However, I do not understand the purpose of doing this. The search environment is completely different; consequently, all readings obtained in the air will be radically different—and significantly lower.
        Dear Smirnov,
        Ground subtracting will work when your coil is over soil/ground, not Air.
        Then, GB channel will detect ground and the subtraction will act.
        But, you have not GB if your Coil is in Air mode.
        Thus, i choiced Air mode testing for making an identical situation and understanding its depth (target channel).
        Yes you right, we have a low depth on soil because of GB channel and subtracting.
        Off course, all can be related to GB position. Some detector may put its GB position to lower or higher point.
        But, i think that this lower/higher point may affect on both small and big targets, not only big target.

        I tested several VLF detectors,
        All of them detect coins from an identical depth but some can detect big target from a 50cm more depth!

        Comment


        • Originally posted by h9361 View Post
          ...
          Hello. That is exactly what I wrote to you: I see no point in air testing. Since increasing aerial detection range—and doing so significantly—is not difficult (the methods, such as increasing the L/Q ratio or gain, have long been documented and proven), that "air performance" becomes virtually meaningless in real-world soil conditions. The real challenge lies in dynamically subtracting the ground component from the signal. So, I’ll say it again: I see no sense in achieving a 50 cm air-test range on a 25 mm target with a 25 cm coil if those "specs" are completely negated once the coil is used on actual ground. But, of course, that is up to you.

          Comment


          • Originally posted by Smirnov-Arta View Post
            So, I’ll say it again: I see no sense in achieving a 50 cm air-test range on a 25 mm target with a 25 cm coil if those "specs" are completely negated once the coil is used on actual ground.
            The 50cm range in air tells us what range can be achieved in soil; this is more dependent on the quality of the ground balance than on the quality of the soil = mineralization; there is something called ground tracking which is a major factor.

            Comment


            • Originally posted by pito View Post
              ....
              Naturally.
              If a hypothetical composite signal consists of a target value of 10 and a ground component value of 90, it makes absolutely no difference whether the air-test range for that target is 30 cm or 50 cm. This is because the ground component value (the "90") must be filtered out and subtracted—and this must happen dynamically (!). In other words, you could get 50 cm in the air and 25 cm in the ground for the same target, or 30 cm in the air and still get that same 25 cm in the ground. Put simply, increasing air range is completely pointless without proper filtering of the ground component. However, if it’s a marketing ploy, then of course... you have to boost those air-test figures.​)

              Comment


              • Originally posted by h9361 View Post
                Regarding to your knowledge and experience, do you have any suggestions for increasing power of TX?
                1. Increase the TX power supply voltage
                2. Use a transformer to increase the voltage drive to the coil:
                  Click image for larger version

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                3. Use an impedance transformer as used on the MXT:
                  Click image for larger version

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                  These are tricky to get right and only provide a 2x voltage boost at best.
                4. Reduce the TX coil inductance. For a given coil size, transmitted field energy is proportional to the ampere-turns NI. I is proportional to V/L and L is proportional to N2 so, overall, TX field strength is proportional to N*V/L --> N*V/N2 --> V/N. So reducing N should boost field strength.

                Comment


                • Originally posted by Carl-NC View Post
                  1. Increase the TX power supply voltage
                  2. Use a transformer to increase the voltage drive to the coil:
                    Click image for larger version  Name:	image.png Views:	0 Size:	4.9 KB ID:	451008​
                  3. Use an impedance transformer as used on the MXT:
                    Click image for larger version  Name:	image.png Views:	0 Size:	7.0 KB ID:	451007​
                    These are tricky to get right and only provide a 2x voltage boost at best.
                  4. Reduce the TX coil inductance. For a given coil size, transmitted field energy is proportional to the ampere-turns NI. I is proportional to V/L and L is proportional to N2 so, overall, TX field strength is proportional to N*V/L --> N*V/N2 --> V/N. So reducing N should boost field strength.
                  Thanks for your suggestion.
                  I want to test number 3.
                  In IDX, TX uses +8 and -8. So, i remove its TX and replace the number 3.
                  I produces 6.5K pulse using 555 as CLK.
                  In IDX, TX is 580uH with 1uF.

                  But is it possible to tell me values of Q1, R1, C1, C2, L1 and LTX?
                  ​

                  Comment


                  • high power Tx https://radiolocation.weebly.com/upl...ndantennas.pdf

                    Comment


                    • Originally posted by h9361 View Post
                      But is it possible to tell me values of Q1, R1, C1, C2, L1 and LTX?
                      ​
                      No, you will have to figure them out through trial-and-error. Here are the values for the MXT (14.8kHz):

                      R1 = 3.32Ω (1V drive)
                      L1 = 1mH
                      C1 = 560nF
                      C2 = 330nF
                      LTX = 540uH

                      The Fisher F75 (13kHz) also has the same driver:

                      R1 = 12.1Ω (1.1V drive)
                      L1 = 2.2mH
                      C1 = 470nF
                      C2 = 470nF
                      LTX = 680uH​

                      The PNP can be any decent transistor.

                      Comment


                      • Powering a series oscillatory circuit from a current source is radio engineering illiteracy.

                        Comment


                        • Good thing we are not designing radios.

                          Comment


                          • Originally posted by h9361 View Post
                            Regarding to your knowledge and experience, do you have any suggestions for increasing power of TX?
                            I just thought of another way. Somewhere on these forums someone presented a sinusoidal TX circuit that could achieve a very high voltage drive with a modest power supply. I don't remember much about it, maybe someone will know what I'm talking about and post a link to the thread.

                            Comment


                            • Originally posted by Carl-NC View Post
                              Good thing we are not designing radios.
                              For the receiver, the bandwidth is important, and for the transmitter, the magnitude of the generated field (B~I*N) at a given supply voltage and the quality factor of the radiating system are important.

                              Comment


                              • Originally posted by Carl-NC View Post

                                I just thought of another way. Somewhere on these forums someone presented a sinusoidal TX circuit that could achieve a very high voltage drive with a modest power supply. I don't remember much about it, maybe someone will know what I'm talking about and post a link to the thread.
                                Thanks dear Carl.
                                I tried to find the forum, but i could not.
                                About your number 3, can i use the ready inductor as L1?
                                For testing, do you think i should connect LTX to scope and see its sine form snd amplitude?

                                Comment

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