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    • 6. 发明授权
    • Phase-locked loop
    • US11962315B2
    • 2024-04-16
    • US17916200
    • 2020-03-31
    • Telefonaktiebolaget LM Ericsson (publ)
    • Aravind Tharayil NarayananStaffan EkLars SundströmRoland Strandberg
    • H03L7/099H03B5/12H03L7/093
    • H03L7/0992H03B5/1212H03L7/093H03B2201/0208
    • A phase-locked loop comprises a voltage controlled oscillator. The voltage controlled oscillator comprises an inductor and a capacitor, connected in parallel, and also connected in parallel therewith, a negative resistance structure. A first terminal of the negative resistance structure is connected to respective first terminals of the inductor and the capacitor. A second terminal of the negative resistance structure is connected to respective second terminals of the inductor and the capacitor. The negative resistance structure exhibits a tunable capacitance, such that a frequency of an output of the voltage controlled oscillator can be tuned by a control input signal, and the control input signal is generated in the phase-locked loop. The negative resistance structure comprises first and second transistors. There is a first conduction path between the first terminal of the first transistor and the control terminal of the second transistor, and a second conduction path between the control terminal of the first transistor and the first terminal of the second transistor. The control terminal of at least one of the first and second transistors is biased by the control input signal, such that a parasitic capacitance of said at least one of the first and second transistors can be tuned by the control input signal, in order to tune the frequency of the output of the voltage controlled oscillator, and hence the frequency of oscillation of the phase-locked loop.
    • 9. 发明公开
    • FREQUENCY SELECTION CIRCUIT
    • US20230421162A1
    • 2023-12-28
    • US18253053
    • 2021-03-24
    • SHENZHEN PANGO MICROSYSTEMS CO., LTD
    • Chuntan ZHUOYuanjun LIANG
    • H03L7/099H03B5/12
    • H03L7/0992H03B5/1206
    • The present invention provides a frequency selective circuit. The frequency selection circuit comprises a voltage-controlled oscillator, a frequency divider, a frequency selective unit and a register group, the voltage-controlled oscillator is used to output a frequency corresponding to the frequency adjustment window; the frequency divider is used to divide the clock frequency output by the voltage-controlled oscillator, and to feed back the resulting low frequency to the frequency selection unit; the frequency selective unit is used to compare a reference frequency with the resulting low frequency output by the frequency divider, and to provide the frequency adjustment window which is configured based on the frequency search window to the voltage-controlled oscillator. The register group is used to output the frequency search window which is provided to the frequency selective unit. The embodiment of the present invention discloses a frequency selective circuit, where the clock frequency is provided to the frequency divider, so that, the clock frequency is converted from a high frequency to a low frequency. The low frequency is compared with the reference frequency to ultimately find the corresponding low frequency that has the same frequency as the reference frequency.