To: | Dave Haupt <emailw8nf@yahoo.com>, AMPS <amps@contesting.com> |
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Subject: | Re: [Amps] Re: Future availability of 3cx1200a7 and 3cx1500a7? |
From: | rlm <r@somis.org> |
Date: | Thu, 23 Oct 2003 22:15:42 -0700 |
List-post: | <mailto:amps@contesting.com> |
On Thursday, October 23, 2003, at 05:06 PM, Dave Haupt wrote: Ed, *** There is apparently a typo in Eimac Catalog 175. The correct anode-cathode C for a g-g 3cx1200A7 or 3-1000Z is c. 0.2pF, so Dave Haupt is correct. The anode-cathode C is 0.1pF for a g-g 8877 (Eimac, 5/15/1977). The anode-cathode C (g-g) for a 3cx1200Z7 is 0.075pF (Eimac #2209). and both are very small, indeed. While there are the occasional reports of oscillations with the '1200, it is more likely a result of the long element leads inside the tube, and not a result of the 0.2pF feedback capacitance. **** Can 0.2pF of feedback be dismissed as insignificant? ' - At a freq of 110MHz, 0.2pF has c. 7k-ohms of XC. With an anode supply potential of 4000VDC, the AC current through C-feedback is 0.385A. In my opinion, it would not be good engineering practice to ignore this. The 3CX1200A7 data sheet shows the in/out/feedback capacitance when operated in grounded cathode, and Rich appears to have not converted that data into grid-referenced data. **** this should read 2x as much ... ... > as much feedback-C (Anode-cathode C) as an 8877. Although more feedback-C is beneficial in VHF oscillators, it can be a problem in HF amplifier applications. To reduce feedback-C, Eimac came up with the 3cx1200Z7. It has about 1/10 as much feedback C as the ...A7. The cost is c. $20 more than an ...A7, it uses a 6,3v filament, and it requires a better-design socket, so it is not a plug&play substitute..
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