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US Patent 10396807 Multi-ring coupled ring oscillator with improved phase noise

Patent 10396807 was granted and assigned to Auburn University on August, 2019 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent

Patent attributes

Patent Applicant
Auburn University
Auburn University
Current Assignee
Auburn University
Auburn University
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
10396807
Patent Inventor Names
Ruixin Wang0
Fa Dai0
Date of Patent
August 27, 2019
Patent Application Number
15819124
Date Filed
November 21, 2017
Patent Citations Received
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US Patent 12126314 Active feedback analog filters with coupled resonators
0
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US Patent 11277110 Fast frequency switching in a resonant high-Q analog filter
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US Patent 11290084 Apparatus and method for controlling a resonator
0
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US Patent 11876499 Tunable bandpass filter with high stability and orthogonal tuning
0
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US Patent 11909400 Use of stable tunable active feedback analog filters in frequency synthesis
0
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US Patent 11955942 Active multi-pole filter
0
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US Patent 10627844 LDO regulator with circuits for noise reduction
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US Patent 10917076 Ring oscillator and method for controlling start-up of ring oscillator
...
Patent Primary Examiner
‌
Levi Gannon
Patent abstract

The disclosure of the present application presents a multiple-ring coupled ring oscillator design that employs multiple-ring coupling to achieve improved phase noise by minimizing noise injection from tail current and adjacent rings, while providing additional output phases for multiphase signal generation. In one non-limiting exemplary prototype embodiment, a 1.5 GHz triple-ring coupled ring oscillator achieved measured phase noise of −110.5 dBc/Hz at 1 MHz offset, demonstrating phase noise reduction of 7 dB compared with its single-ring oscillator counterpart. The MROs couple multiple rings with proper phase shifting to achieve improved phase noise. Common source coupling benefits from tail current noise reduction, and introducing phase delays in the coupling paths minimizes noise coupling from the adjacent cores. The overall effect leads to improved phase noise performance as demonstrated in quadrature voltage controlled VCO designs. The concept is applied to ring oscillator designs and, as stated previously, demonstrates a triple-ring coupled ring oscillator with phase noise improvement. The design of the present application also triples the number of output phases compared to its single ring oscillator counterpart. The application of injection-locked PLL by using proposed multiple ring coupled ring oscillator achieves the same low phase noise as traditional IL-PLL does while lowering the reference spur at auxiliary ring's output. In another non-limiting exemplary embodiment, the proposed IL-PLL consumes 13.5 mW of power, while achieving in-band phase noise of −120.97 dBc/Hz at 1 MHz offset at 1.1 GHz output frequency.

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