Published:2012/12/13 21:12:00 Author:muriel | Keyword: antenna tuner
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Published:2012/12/13 21:11:00 Author:muriel | Keyword: antenna tuner
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Published:2012/12/12 21:12:00 Author:muriel | Keyword: 40-41 meter , band active antenna
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Published:2012/12/12 21:05:00 Author:muriel | Keyword: Cascode 7, Experimental Receiver
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Published:2012/12/12 21:04:00 Author:muriel | Keyword: Cascode 7, Experimental Receiver
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Published:2012/12/12 21:03:00 Author:muriel | Keyword: Cascode 7, Experimental Receiver
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Published:2012/12/12 21:03:00 Author:muriel | Keyword: Cascode 7, Experimental Receiver
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Published:2012/12/12 21:02:00 Author:muriel | Keyword: Cascode 7, Experimental Receiver
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Published:2012/12/12 0:38:00 Author:muriel | Keyword: Aircraft Radio, Communications Receiver
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Published:2012/12/12 0:36:00 Author:muriel | Keyword: FM Transmitter
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Published:2012/12/10 0:49:00 Author:muriel | Keyword: 3 Channel, Spectrum Analyzers
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Published:2012/12/10 0:47:00 Author:muriel | Keyword: Simple , Parallel (Printer) Port, Interface
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Published:2012/12/10 0:47:00 Author:muriel | Keyword: Computer Controlled , Frequency Counter/Logic Probe
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Published:2012/12/6 20:19:00 Author:muriel | Keyword: QRP 74 meter, SSB Transceiver
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Published:2012/12/6 20:18:00 Author:muriel | Keyword: SSB 75 Meter, Transceiver
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Published:2012/12/6 20:17:00 Author:muriel | Keyword: LC Bandpass Filters
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Published:2012/12/6 20:16:00 Author:muriel | Keyword: LC Bandpass Filters
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Published:2012/12/6 20:16:00 Author:muriel | Keyword: LC Bandpass Filters
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Published:2012/12/6 20:11:00 Author:muriel | Keyword: Broadband Voltage, Probe Antennas
Figure 1 and Picture 1 shows the respective schematic and outcome for the first broadband version I constructed. This is similar to a version sold as a kit, except for the Q2 stage, which was added to decrease the output impedance to preserve the function of my receiver double tuned filter stage. (View)
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Published:2012/12/6 19:50:00 Author:muriel | Keyword: wee willy VFO
Dick's diagram indicate that this VFO was based upon a design presented in SPRAT for summer 1995. The main inductor L1 is wound with #32 AWG wire on a 1/4 inch slug-tuned coil former. This coil would have an XL somewhere between 250 - 310 ohms, so if you cannot find a coil former as described , you could easily wind one on a powdered iron toroid and make a portion of the C1 capacity variable for adjustment. A suggested alternate inductor is 53 turns of #26 AWG on a T68-6 core powdered iron core.
Dick suggests checking an old television to find suitable coil formers such as the one he used. It would probably be best to distribute the 120 pF C1 capacity among 3-4 capacitors to enhance stability. These caps should be NP0 ceramic for best results with frequency stability.
Dick's oscillator uses the slug tuned core to put VFO frequency close in frequency to where you want to operate and the variable resistor tuner on the front panel allows adjustment around the incoming signal to get the correct pitch. The desired band-edge is easily set by adjusting the slug while listening to the VFO frequency as audio on another receiver that has a frequency readout or directly with a frequency counter.
The L2 150 uH RF choke can be a simple epoxy unit which resembles a resistor. The D1 variable capacitance diode is a BB104 which has ~ 35 pF capacitance on each side. These are available at Dan's Small Parts and Kits whose URL is in the Links section of the site info web page. Experimentation with other tuning diodes could produce a practical alternative to the specified D1 part. (View)
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