• WARNING: Tube/Valve amplifiers use potentially LETHAL HIGH VOLTAGES.
    Building, troubleshooting and testing of these amplifiers should only be
    performed by someone who is thoroughly familiar with
    the safety precautions around high voltages.

Chinese EL34/6SN7GT SE Unusual Topology

After removing the 470uf the results were an improvement in THD (as expected)..

1kHz, 3.15w with 470uf = 3.14%, without 470uf = 1.6%

1kHz 5w with 470uf = 4.8%, without 470u = 2.6%

10kHz, 3.15w with 470uf = 3%, without 470uf = 1.98%

10kHz 5w with 470uf = 4.5%, without 470u = 3.3%
 
I am somewhat amazed at how these two changes have benefitted the sound quality.

There is greater clarity from all instruments but with no listening fatigue - overall a very pleasant sound. (mid/woofer driven by my Krell Class A clone)

LR8 CCS next.
 
Now fitted a 10m45 to one channel and ran the tests again. The spot frequency measurements below were done with Picoscope (REW's generator)
The fft was done with REW which shows a loss of about 1db at 20Khz which is not relevant.

1kHz, 3.15w with 470uf = 3.14%, without 470uf = 1.6% with 10m45 = 1%

1kHz 5w with 470uf = 4.8%, without 470u = 2.6% with 10m45 = 2.1%


10kHz, 3.15w with 470uf = 3%, without 470uf = 1.98% with 10m45 = 1.9%

10kHz 5w with 470uf = 4.5%, without 470u = 3.3% with 10m45 = 4.12%

EL34SE10m45.jpg


See schematic for voltages - blue with the 10m45 fitted. C1 and R3 were removed.
LCH WITH10M45.jpg


I think the results are pretty good but no listening tests until the other channel has been converted.
Also, I can to increase the feedback to lower the gain by -6db.
 
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Changed Rfb (R12) from 2k to1k and now recorded 0.73% at 1KHz and 3.1watts, 1.65% at 5watts. Gain is now the same as the unmodded chnnel - 0.7v for 3.1w and ~ .9v for 5w so call it 1v RMS for max output with < 5% THD (5.5w)

At 10K, 1.8% at 3.15w and 4.7% at 5w.

So a further improvement except for 10kHz 5watts.