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  1. I have tested the voltage outputs from both phases, and they are both powered wile at idle.

    Bipolar Parallel: 4.00 to 4.15volts.
    Bipolar Series: 12.95 to 13.00volts.

    I do have a DVM with ammeter but it is quite old so don't know how good it will be.

    I also do have a PicoScope 2202 USB Oscilloscope.
    Last edited by Mad Professor; 10-11-2009 at 07:27 PM.

  2. Quote Originally Posted by Mad Professor View Post
    I have tested the voltage outputs from both phases, and they are both powered wile at idle.

    Bipolar Parallel: 4.00 to 4.15volts.
    Bipolar Series: 12.95 to 13.00volts.

    I do have a DVM with ammeter but it is quite old so don't know how good it will be.

    I also do have a PicoScope 2202 USB Oscilloscope.

    Easiest way to verify the current is to plot the voltage across the sense resistors. If you have the latest PicoSoft 6 software it will, if I recall right, calculate the RMS and peak currents for you (I have a Pico3205 scope), or you can easily work it out...

  3. I am running PicoScope v6.3.4.0.

    I have not had this scope long so I am still finding my way around the settings, so I am not 100% sure what you are after.

    Bipolar Parallel:
    True RMS Avg 120mv.
    Peak to Peak Avg 1.15v

    Bipolar Series:
    True RMS Avg 80mv.
    Peak to Peak Avg 30mv.

  4. Quote Originally Posted by Mad Professor View Post
    I am running PicoScope v6.3.4.0.

    I have not had this scope long so I am still finding my way around the settings, so I am not 100% sure what you are after.

    Bipolar Parallel:
    True RMS Avg 120mv.
    Peak to Peak Avg 1.15v

    Bipolar Series:
    True RMS Avg 80mv.
    Peak to Peak Avg 30mv.
    1.15v peak over .33 ohm = 3.5A peak, RMS = .36A

    80mV over .33ohm = 0.24A, but the peak looks low, sure it wasnt 300mV?

    Can you post the waveforms?

  5. Sure I can save the waveforms, do you want them as screenshots or save the waveforms to an output file?

  6. Quote Originally Posted by Mad Professor View Post
    Sure I can save the waveforms, do you want them as screenshots or save the waveforms to an output file?
    I usually do screen capture or print as PDF.

    Attached are 3 captures from my L297/L298 board using the same motor at 500, 750 and 900 steps/sec on a 36v supply, wired bipolar parallel (coil resistance = 3.2ohm).

    This shows the A-enable signal (blue) and the sense voltage (red). The sense voltage is directly proportional to the current in the coil (x 2), so .5v = 1A. At 500stesp/sec the RMS voltage is 0.64v, a current of 1.3A RMS, the peak voltage being 0.9v equivalent to 1.8A. You can see that the current doesn't start to flow (indeed its negative slightly at the start of the cycle which is due to the back emf/collapsing field of the previous cycle) until 0.7mS into the cycle, it then ramps up due to the inductance of the coils (these being high inductance motors i.e. not very fast) until it finally gets to the current limit and the driver goes into chopping.

    At 750stesp/sec the RMS current has dropped to about 1A, the peak still being 1.8A. This is because the initial start-up and ramp is a greater proportion of the cycle time.

    At 900steps/sec the current never gets to the set limit before the cycle ends... this is the fastest the motor will go at this voltage and the power output wil be low, the RMS current here is about 0.5A.

    To go faster with these motors needs about 70v...

    Setting Vref using the scope like this is much more accurate than adjusting it statically or relying on the overall current consumption.
    Attached Thumbnails Attached Thumbnails Click image for larger version. 

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  7. This board is ment to be rated upto 36vdc, So I tried using my 36vdc 10A PSU.

    I set the board to it's lowest current setting on the DIP switches to make sure I did not burn out or over heat my stepper motor, I am only testing X-Axis atm.

    Powered up the board, and all the lights and the fan came on, Turned it all off and, when I next turned it back on, I was greated with a nice pop / bang, with sparks, and blue / white smoke.

    Part of the Z-Axis TB6560AHQ had exploded, Oh Joy.

    I have since looked at some of the datasheet for the Absolute Maximum Rating.

    L7812CV - 35 Volts Absolute Maximum Rating.
    L7805CV - 35 Volts Absolute Maximum Rating.
    TB6560AHQ - 40 Volts Absolute Maximum Rating.

    I will post a pic of the poor TB6560AHQ chip once I have uploaded it to my site.

  8. #8
    i know this is an old post, but ive just come accross it. ive been on cnczone and asked about a full kit for my first build.
    i have been told.

    Run far and fast from that controller. Search this site for TB6560 and you'll have all the info you need. Almost 500 posts in this threadalone.

    so what do you think...

    hope to get much info on ere. im in the uk myself.
    :confused:

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