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Carl's fluxgate Gradiometer ckt.

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  • Krzysztof
    replied
    Hi Damiafix.
    We test the system V / f.
    AD557 removed, the rest of the original PCB.
    PIN14/15 to GND.
    PIN16 let the tension forced another potentiometer with a value of less than 1Kom.
    Cold end to GND.
    Hot 1Kom end of the resistor to 5 volts.
    Central to the PIN16.
    Test4: Set the potentiometer R6 1Kom.
    Force control voltage: 0V; 0,2V; 0,5V; 1,0V; 1,5V; 2,0V; 2,5V.
    Test5: Set the potentiometer R6 2Kom.
    Force control voltage: 0V; 0,2V; 0,5V; 1,0V; 1,5V; 2,0V; 2,5V.
    Test6: Set the potentiometer R6 3Kom.
    Force control voltage: 0V; 0,2V; 0,5V; 1,0V; 1,5V; 2,0V; 2,5V.
    Results Listen!
    In addition, you can see the results on the oscilloscope as in the description of Carl's.
    Kind of a simple test, but control the voltage at PIN16!
    You can choose the value of R6 for future work would always be the full range of audibility.
    As you know, forcing PIN16 will always 0-2,5V.
    Working conditions converter V / f Now you can choose!
    Good luck. Chris

    R6 to GND through resistor 100om - Security transistors.
    Last edited by Krzysztof; 07-28-2010, 08:44 AM. Reason: security

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  • Krzysztof
    replied
    Hi Damiafix.
    Almost perfect results.
    As a laboratory of Analog Devices!
    SCL and AD557 are OK!
    Now search for defects in the soldering on the PCB.
    The next test for the moment.
    Best regards, Chris.

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  • damiafix
    replied
    Hi Chris,
    I've removed the AD557 from the pcb and placed it on a breadboad for the test....



    Those are the results for me:



    Best regards, Dam.

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  • Krzysztof
    replied
    Hi Damiafix.
    The LSB (pin13) remain almost always on, sometime off, maybe it could to depend from the room where I make the tests, there was metals around.
    This is normal. It also means that MAG is sensitive!
    FGM Any change in position on the table already in the area will change the value of the LSB.
    In addition, the accuracy of digital output (each) is + / - 1LSB.
    Your presence and position of the hand on the table (watch) have changed the result.
    Recovers more precession in temperature and Micro changes intensity of Earth's field.
    Expected accuracy is better than 1% at 8-bit measurement.
    In the case of a program like Carl's MAG is good to do the calibration as often as possible. I always reset the background level and expand the measuring range at max!
    I do not know but I guess the program algorithm. It is similar to the calibration of a compass. It measures the minimum and maximum field strengths and sets it on the range 0 - 255th.
    Then the sensitivity is variable after each calibration!
    Best regards Chris.

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  • Krzysztof
    replied
    Hi Epitopios.
    Whether your picture MAG Carl?
    And how goes the MAG EPE?
    Where the cables go from the center of images (SLC007-AD557)?
    You measure something?
    Best regards Chris.

    Leave a comment:


  • Krzysztof
    replied
    Hi Damiafix.
    I think Carl looked at SCL006, SCL007 and wrote.
    Test2b is bad. You can not cut corners. Apply your well-connected to the analyzer Ad557.
    Measurement of the PIN14 & PIN15 & PIN16 connected together.
    Test3a:
    All inputs PIN1 - PIN8 connect to GND.
    Test3b:
    Inputs PIN2 - PIN8 connect to GND.
    Pin1 connect the 5V.
    Test3c:
    Inputs PIN3 - PIN8 connect to GND.
    PIN1 - PIN2 connect the 5V.
    Test3d:
    Inputs PIN4 - PIN8 connect to GND.
    PIN1 - PIN3 connect the 5V.
    Test3e:
    Inputs PIN5 - PIN8 connect to GND.
    PIN1 - PIN4 connect the 5V.
    Test3f:
    Inputs PIN6 - PIN8 connect to GND.
    PIN1 - PIN5 connect the 5V.
    Test3g:
    Inputs PIN7 - PIN8 connect to GND.
    PIN1 - PIN6 connect the 5V.
    Test3h:
    Inputs PIN8 connect to GND.
    PIN1 - PIN7 connect the 5V.
    Test3i:
    PIN1 - PIN8 connect the 5V.
    Test3j:
    PIN1 connect the 5V.
    Other Inputs connect to GND.
    Test3k:
    PIN2 connect the 5V.
    Other Inputs connect to GND.
    Test3l:
    PIN3 connect the 5V.
    Other Inputs connect to GND.
    Test3m:
    PIN4 connect the 5V.
    Other Inputs connect to GND.
    Test3n:
    PIN5 connect the 5V.
    Other Inputs connect to GND.
    Test3o:
    PIN6 connect the 5V.
    Other Inputs connect to GND.
    Test3p:
    PIN7 connect the 5V.
    Other Inputs connect to GND.
    Test3r:
    PIN8 connect the 5V.
    Other Inputs connect to GND.
    Good connection to the analyzer, ad557, GND and Vss ensure the stability of the test.
    Best regards Chris.
    Attached Files

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  • damiafix
    replied
    Hi Epitopios,
    many thanks for your reply! Yes, it's so strange....your gradiometer, work correctly?

    All the best, D.

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  • epitopios
    replied
    damiafix , you are right , you have eagle-eye
    until now , I didnt notice !!!





    regards , epitopios

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  • damiafix
    replied
    Hi Chris,
    I'm sorry for the delay, I was busy with the work, and plus my little laboratory is into a hot garage car, night and day like a furnace!
    I realized the "Logic Analyzer" that you have suggested me; I've tested it with 1 fgm-3, and it work perfectly, but I don't have still tried with the 2 sensors.When power on the circuit, after the 10 seconds of calibration, if I put close the sensor a metal, the led increment, start from the led connected to the SCL pin 13 (LSB) to the SCL pin 6 (MSB). The LSB (pin13) remain almost always on, sometime off, maybe it could to depend from the room where I make the tests, there was metals around.
    I think that in the pdf of the FMX-1, written from Carl, there's something of wrong, between the schematic and the pratical parts placement on the PCB board.
    In the schematic, the connections between the SCL007 and the AD557 are differents respect to the pcb parts placement. Please, see the follows pictures, altough I don't think that it's much rilevant, becouse the difference is on the number order of the SCL output wired to the DAC, but pratically it is right.

    FMX-1 Parts Placement


    FMX-1 Schematic


    While, about the AD557 TEST, those are the results:

    Test 2a:
    Remove the SCL or make connections to AD alone.
    Join your logic analyzer to the AD557.
    All inputs PIN1 - pin8 connect to GND.
    At PIN16 should be around 0V.
    here:0.70v

    Test 2b:
    All inputs PIN1 - PIN7 connect to GND.
    Pin8 connect the 5V.
    On PIN16 should be around 1.25 V. (50% Vmax)
    here:4.18v; if I remove the transitor Q1: 4.23v

    I think that the DAC is damaged, what do you think?

    Many thanks again!Dam.

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  • damiafix
    replied
    Dear Chris,
    I'll make all the ceck and I'll let you know the results!

    Many, many, many thanks, Dam.

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