guides:crystal_pulling
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guides:crystal_pulling [2013/08/16 11:13] – created mbrejza | guides:crystal_pulling [2013/09/04 18:05] (current) – [Circuit Diagram] kevwal | ||
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- | The component which provides the varaible capacitance is a varicap (D1) (also called varactor). It is just a diode, all diodes exhibit variable capacitance when in reverse bias, however in a varicap this capacitance is controlled and the relationship printed in the datasheet. The difference in different varicaps is how much the capacitance changes with reverse bias, with varicaps that have a smaller capacitance change being more expensive - however the sensitivity of the circuit can be controlled, as explained below | + | The component which provides the varaible capacitance is a varicap (D1) (also called varactor). It is just a diode, all diodes exhibit variable capacitance when in reverse bias, however in a varicap this capacitance is controlled and the relationship printed in the datasheet. The difference in different varicaps is how much the capacitance changes with reverse bias, with varicaps that have a smaller capacitance change being more expensive - however the sensitivity of the circuit can be controlled, as explained below. |
- | R1 and C1 filter the PWM signal, with R2 providing a high impedance between the two sides of the circuit to prevent the capacitance of C1 from affecting the crystal. A DC voltage proportional to the PWM duty cycle then reverse biases the varicap , providing a variable capacitance which is AC coupled to the oscillator through C2. As the capacitance seen by the crystal is D1 and C2 in series, the sensitivity of the circuit can be reduced by reducing the value of C2. A low sensitivity (being defined as change in frequency per input voltage) is required for small shift schemes such as DominoEX. | + | R1 and C1 filter the [[http:// |
While not important for all transmitters, | While not important for all transmitters, |
guides/crystal_pulling.1376651632.txt.gz · Last modified: 2013/08/16 11:13 by mbrejza