I think your loadline would be close to link. I think there are only up to 300V screen curves in datasheets. If you get peak current per tube up to 450mA, then simple power calculation is:
(Ipk)2 x Rpp / 8 = 0.9 x 0.9 x 2k / 8 = 200W
You'll need to modify the curves in your head for higher screen voltage at Vgrid=0V - but effectively you'll need to keep screen and B+ high to get to that peak current point. And of course you battle surging screen current, and other parasitic voltage drops come in to play such as DC resistance of OT primary half winding. Did you measure B+ and screen voltage with an rms meter or from an oscilloscope waveform?
Ciao, Tim
http://dalmura.com.au/projects/2k%20...V%20screen.pdf
(Ipk)2 x Rpp / 8 = 0.9 x 0.9 x 2k / 8 = 200W
You'll need to modify the curves in your head for higher screen voltage at Vgrid=0V - but effectively you'll need to keep screen and B+ high to get to that peak current point. And of course you battle surging screen current, and other parasitic voltage drops come in to play such as DC resistance of OT primary half winding. Did you measure B+ and screen voltage with an rms meter or from an oscilloscope waveform?
Ciao, Tim
http://dalmura.com.au/projects/2k%20...V%20screen.pdf
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