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de:PDF-SoftwareIn a conventional VCO circuit, a desired oscillation frequency is set by varying the capacitor voltage, instead of varying the capacitor capacitance. That is, a capacitance change is set by changing the voltage of the capacitor, and the change in capacitance changes the frequency of the VCO, while the voltage of the capacitor is kept constant.
In this configuration, a capacitance change is caused by a gate-source voltage change of a transistor, which causes a change in a gate-source voltage of a capacitor. As a result, the capacitor voltage changes, causing the change in the frequency of the VCO.
In this configuration, the capacitor voltage change changes a gate-source voltage of a transistor, thus changing the frequency of the VCO. Therefore, when the frequency of the VCO is to be changed, it is necessary to vary the gate-source voltage of the transistor, so that the capacitor voltage can be changed. Therefore, in the above-described configuration, when the frequency of the VCO is to be changed, the gate-source voltage of the transistor has to be changed, so that the capacitor voltage can be changed. Therefore, in the above-described configuration, the change in the frequency of the VCO is not smoothly performed. That is, in the configuration described above, it is difficult to smoothly and quickly change the frequency of the VCO.
On the other hand, in the configuration described above, in order to maintain the frequency of the VCO at a constant level, it is necessary to connect a variable capacitor and a controlled oscillation circuit (VCO circuit) through a capacitor, and to vary the capacitance of the variable capacitor. However, in this configuration, when the change in the capacitance of the variable capacitor is large, a variation in be359ba680
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