General Schematic Questions |
James Hochstetler ![]() Esquemas: Fotos: 14 05.Jan.22 00:57 Agradecimientos totales: 2 |
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What does the open circle and filled in square mean on a scematic? See attached The radio I'm working on (Philco Model 90 Middle) has two capacitors on each leg of the incoming AC power going to ground. Are they necessary? It seems to me to be an accident waiting to happen. See attached Anexos:
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Rüdiger Walz ![]()
Consultor
D Artículos: 696 Esquemas: 151 Fotos: 224 05.Jan.22 15:08 Agradecimientos totales: 1 |
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Dear James, you should post your questions from the model. It makes it easier to answer and the question is linked to the model for ever. 1) The condensers at the line-in are dedicated to protect the radio from high frequency disturbance from the line. I myself never found a difference without these condensers connected. So you can disconect them because as you said these are often reason for a failure. Best regards Rüdiger Walz |
James Hochstetler ![]() Esquemas: Fotos: 14 05.Jan.22 16:56 Agradecimientos totales: 1 |
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Thank you for your response and answers. In the future I will post questions from the model. It makes sense now that it's the speaker connections. I think I will leave the capacitors out as I have no AC rated ones available. Good tip BTW. Thanks again Jim Hochstetler |
Torbjörn Forsman Esquemas: 26 Fotos: 58 05.Jan.22 20:29 |
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Another reason for having the capacitors between AC line and chassis ground is that the RF decoupling from chassis to mains can substitute a ground connection as counterpoise for the AM antenna. However, if there is a high noise level on the AC line, as it is often today with lots of switch mode power supplies and other power electronics, reception might be better without those capacitors. When using correct AC rated capacitors, they are not causing any safety issues. Make sure that any new capacitors are approved as safety capacitors and have an Y2 rating. To fulfill today's requirements on leakage currents, those capacitors should be maximum 10 nF for 100-120 V mains, or 4.7 nF for 200-240 V mains. |