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On 20/11/2024 2:03 pm, Edward Rawde wrote:I found a simpler solution - copy the relevant arrangement in John May's circuit. It did work - after a fashion - but as I got closer to getting it to a state where it could do what I wanted, the circuit got less and less willing to simulate."Bill Sloman" <bill.sloman@ieee.org> wrote in message news:vhjj2v$24eu4$3@dont-email.me...<snip>On 20/11/2024 1:29 pm, Bill Sloman wrote:On 20/11/2024 12:59 pm, Edward Rawde wrote:"Bill Sloman" <bill.sloman@ieee.org> wrote in message news:vhibce$1t7v2$1@dont-email.me...On 18/11/2024 2:58 pm, Edward Rawde wrote:"JM" <sunaecoNoChoppedPork@gmail.com> wrote in message news:n7iijjdeqecl0kmub0bq5in0dbm60m7qam@4ax.com...On Thu, 14 Nov 2024 11:14:28 -0500, "Edward Rawde"
<invalid@invalid.invalid> wrote:
>"JM" <sunaecoNoChoppedPork@gmail.com> wrote in message news:t5fajjdteskfftvkf84iqsp2vc4b9ta5kj@4ax.com...On Fri, 8 Nov 2024 15:43:41 -0500, "Edward Rawde"
<invalid@invalid.invalid> wrote:
But you don't seem to be able to tell us what they do.I've no idea why you are using the LT1994. The circuit doesn't have a common mode problem, so why are you using an op amp designed>
to deal with one?
>
This is sci.electronics.design not sci.electronics.incremental-development.
>
And the six diode "stabiliser string" is nuts. If you need a 3.6V reference voltage there are lots of ways to do it with more
precision and better temperature stability.
In that case please show a circuit with better performance.
It may be that some of the circuits JM posted can do better but if so then why are you using a circuit with so many components?
My circuit has far fewer components than yours.
I think I've found my conceptual problem with my circuit. Tweaking the gain around the three-amplifier ring tweaks both amplitude and frequency - with more gain a lower frequency signal can still propagate around the ring.
I've got to find a mechanism that will separate amplitude from frequency. My copy of Williams and Taylor on electronic filter design may get perused again.
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