IP Library Granted Patent US 12,362,702
Granted Patent B2
US 12,362,702 · App. 18/472,174 · Granted Jul 15, 2025

Inductor-capacitor voltage-controlled oscillator with common-mode noise separation

Inventor: Omar E Elaasar (San Diego, CA)
Assignee: Apple Inc.
H03B5/1212H03B5/1228H04B1/04H03B2200/0088
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Quick Facts
Patent No.
US 12,362,702
App. No.
18/472,174
Granted
Jul 15, 2025
Kind
B2
Abstract

This disclosure is directed to a Voltage-Controlled Oscillator (VCO) with improved phase noise compared to other VCOs. The VCO may include a first cell and a second cell separated by common-mode (CM) isolation circuitry to reduce an amplitude of CM noise at an output signal. The CM isolation circuitry may inductively couple the first cell to the second cell for generating the output signal based on a resonant frequency range including resonant frequencies of the CM isolation circuitry, the first cell, and the second cell. As such, the first cell and the second cell may each include a portion of an entirety of the CM noise. In some cases, the portions of the CM noise on the first cell and/or the second cell may improve a signal to noise ratio of the output signal.

Claims (37)

1. An electronic device comprising:

an antenna; and

a voltage-controlled oscillator (VCO) comprising

a first voltage-controlled current source,

a first inductor-capacitor tank circuit coupled to the first voltage-controlled current source, the first inductor-capacitor tank circuit comprising a first inductor,

a second inductor tapped onto the first inductor-capacitor tank circuit;

a second inductor-capacitor tank circuit coupled to the second inductor; and

a second voltage-controlled current source coupled to the second inductor-capacitor tank circuit and coupled to a ground terminal.

2. The electronic device of claim 1 , wherein the first inductor-capacitor tank circuit comprises a first capacitor and the first inductor having a first resonant frequency within a resonant frequency range, the second inductor-capacitor tank circuit comprises a second capacitor and a third inductor having a second resonant frequency within the resonant frequency range, the first inductor and the third inductor being configured to inductively couple based on signals having a desired oscillation frequency within the resonant frequency range, the first inductor and the third inductor being configured to inductively uncouple based on signals having an undesired oscillation frequency outside the resonant frequency range.

3. The electronic device of claim 1 , wherein the VCO is configured to receive a received signal from the antenna, the VCO being configured to output an output signal indicative of a frequency and phase of the received signal.

4. The electronic device of claim 1 , wherein the VCO is configured to generate an output signal corresponding to a carrier signal to modulate a transmission signal for transmission by the antenna.

5. A voltage-controlled oscillator (VCO) comprising:

a first inductor-capacitor tank circuit configured to receive a direct current (DC) signal, the first inductor-capacitor tank circuit comprising a first inductor;

a second inductor tapped onto the first inductor; and

a second inductor-capacitor tank circuit coupled to the second inductor, the second inductor-capacitor tank circuit configured to inductively couple to the first inductor-capacitor tank circuit to generate an output signal having a desired oscillation frequency within a resonant frequency range based on the DC signal, inductively uncouple from the first inductor-capacitor tank circuit based on signals having an undesired oscillation frequency outside the resonant frequency range.

6. The VCO of claim 5 , comprising a first voltage-controlled current source and a second voltage-controlled current source, the first voltage-controlled current source configured to couple to a voltage source and the first inductor-capacitor tank circuit, the second voltage-controlled current source configured to couple to the second inductor-capacitor tank circuit and a ground terminal.

7. The VCO of claim 6 , wherein the first voltage-controlled current source and the second voltage-controlled current source are configured to generate the DC signal based on a bias voltage of the voltage source.

8. The VCO of claim 5 , wherein the first inductor-capacitor tank circuit comprises a first capacitor and the first inductor having a first resonant frequency corresponding to the desired oscillation frequency and the second inductor-capacitor tank circuit comprises a second capacitor and a third inductor having a second resonant frequency corresponding to the desired oscillation frequency.

9. The VCO of claim 8 , wherein the first inductor and the third inductor are configured to inductively couple based on signals having the desired oscillation frequency and configured to inductively uncouple based on signals having the undesired oscillation frequency outside the resonant frequency range.

10. A voltage-controlled oscillator (VCO) comprising:

a first voltage-controlled current source configured to couple to a voltage source;

a first inductor-capacitor tank circuit coupled to the first voltage-controlled current source, the first inductor-capacitor tank circuit comprising a first inductor;

a second inductor-capacitor tank circuit comprising a second inductor;

a third inductor tapped onto the first inductor and the second inductor; and

a second voltage-controlled current source coupled to the second inductor-capacitor tank circuit and configured to couple to a ground terminal.

11. The VCO of claim 10 , wherein the first voltage-controlled current source comprises a first switch and a second switch, a source terminal of the first switch and a source terminal of the second switch being configured to couple to the voltage source, a gate terminal of the first switch configured to couple to a drain terminal of the second switch, a gate terminal of the second switch configured to couple to a drain terminal of the first switch, and the drain terminal of the first switch and the drain terminal of the second switch coupled to the first inductor-capacitor tank circuit.

12. The VCO of claim 10 , wherein a capacitance value of the first inductor-capacitor tank circuit corresponds to a capacitance value of the second inductor-capacitor tank circuit.

13. The VCO of claim 10 , wherein

the first inductor-capacitor tank circuit comprises a first capacitor bank, a first switched capacitor circuit, a first varactor, or any combination thereof, and

the second inductor-capacitor tank circuit comprises a second capacitor bank, a second switched capacitor circuit, a second varactor, or any combination thereof.

14. The VCO of claim 10 , wherein the first inductor-capacitor tank circuit, the second inductor-capacitor tank circuit, or both are configured to output an output signal based on a bias voltage of the voltage source.

15. The VCO of claim 10 , wherein the first inductor-capacitor tank circuit comprises a first capacitor and the first inductor having a first resonant frequency within a resonant frequency range and the second inductor-capacitor tank circuit comprises a second capacitor and the second inductor having a second resonant frequency within the resonant frequency range.

16. The VCO of claim 15 , wherein the first inductor and the second inductor are configured to inductively couple based on signals having a desired oscillation frequency within the resonant frequency range.

17. The VCO of claim 15 , wherein the first inductor and the second inductor are configured to inductively uncouple based on signals having an undesired oscillation frequency outside the resonant frequency range.

18. The VCO of claim 10 , wherein the second voltage-controlled current source comprises a third switch and a fourth switch, a source terminal of the third switch and a source terminal of the fourth switch being configured to couple to the ground terminal, a gate terminal of the third switch configured to couple to a drain terminal of the fourth switch, a gate terminal of the fourth switch configured to couple to a drain terminal of the third switch, and the drain terminal of the third switch and the drain terminal of the fourth switch coupled to the second inductor-capacitor tank circuit.

19. The electronic device of claim 2 , wherein the second inductor is tapped onto the third inductor.

20. The VCO of claim 8 , wherein the first inductor is tapped onto the third inductor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 22, 2023
From: ELAASAR, OMAR E
To: APPLE INC.
Reel/Frame 065002/0768 →
Continuity (1)
Related Publication 20250105785A1 · Mar 27, 2025
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