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All the micros I use now have motor control HSPWM modules. These work very well for vco audio. I'll try an h-bridge.
Found this file on my hard drive. Don't remember the source. It has a nice h-bridge for cw. These mosfet driver IC's (IR2104) will not work on PI because of the isolation diode going to coil on the highside n-fet. The bootstap circuit in the driver needs to be connected to the source and load. If anyone knows a way to make it work ?
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Shoot through on the transitions can be a problem. Ideally use a micro with motor drive timers that have adjustable dead time, then you can tweak it.
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In a discrete single voltage design what's the most important factor? Cross conduction? I been using the ML Sovereign PN h-bridge for a while. It works but generates a lot of ringing and noise on the transitions. Too bad these motor drivers seem to have issues.
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Hi Carl,Originally posted by Carl-NC View PostHere is the VLF transmit module:
A caveat with this design is that I recently found a flaw in the DRV8872, in that it has a 200ns jitter in the output transitions. This creates a large transition noise in the RX signal. Supposedly there are other H-bridge chips that have a different internal design that avoids this problem but I have not tried them yet. Meanwhile, I am designing a discrete H-bridge driver.
Did you ever find a solution for the jitter?
Thanks
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Here is the Filter module:
This is the one module I have not put much thought into. It is intended to be a final gain stage with low-pass filtering before feeding the signals to the ADC, but on thing missing is a way to offset signals if needed. If you want to maintain analog processing then this module could be changed to do the first and second derivatives.
[ATTACH]n419775[/ATTACH]
[ATTACH]n419776[/ATTACH]
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Here is Demod module:
It can be configured as a SHA demod with 1, 2, or 3 pole filter; a sampling integrator type, including zero-droop feedback; and two types of switched-cap demods. Again, most values are TBD.
[ATTACH]n419770[/ATTACH]
[ATTACH]n419771[/ATTACH]
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Here is the PI Preamp module:
Same comments as with the VLF Preamp module. The PI includes flyback protection diodes and some switches for experimenting with switched isolation.
[ATTACH]n419761[/ATTACH]
[ATTACH]n419762[/ATTACH]
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Here is the VLF Preamp module:
There are various options, like making the first stage inverting, non-inverting, or differential; parallel or series resonance; inverting or non-inverting second stage; or flipping the polarity of the output signals. Many of the components can either be SMT or thru-hole so that changing values is easy, especially if you use sockets. Note that none of the component values are real, they are all TBD.
PreampVLF.pdf
PreampVLF.zip
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Here is the VLF transmit module:
This combines a sinusoidal oscillator (Q1, Q2, etc) with an H-bridge square wave driver (IC1). You would populate one or the other but not both. They are powered by a boost converter which can provide up to 30V.
A caveat with this design is that I recently found a flaw in the DRV8872, in that it has a 200ns jitter in the output transitions. This creates a large transition noise in the RX signal. Supposedly there are other H-bridge chips that have a different internal design that avoids this problem but I have not tried them yet. Meanwhile, I am designing a discrete H-bridge driver.
A TX module can also be designed for PI (either monopolar or bipolar) but I have not done that yet.
TX_VLF.pdf
TX_VLF.zip
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Here is the schematic for the power module:
It is a simple linear regulator (there are 2 chip options) followed by a rail splitter. There is also a reverse polarity protection NMOS transistor.
The layout is this:
Overall size is 25 x 37.5 mm.
Here is an alternative power module that uses a true ground and an inverting regulator:
Layout fits on the same size module:
PowerModule.pdf
PowerModule.zip
Power2Module.pdf
Power2Module.zip
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This preamp schematic is specifically for the AMX PI.Originally posted by Daves View Post
Is this schematic for only PI RX preamp
The AMX PI is using a bi-polar square wave current TX. There are several versions of bipolar square current wave TX circuits on this forum. Like Moodz, King, Tinkerer. There might be several more I don't know of. The Minelab 7000 also uses a bi-polar square current wave TX.
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