IP Library Granted Patent US 10,707,847
Granted Patent B2
US 10,707,847 · App. 16/184,161 · Granted Jul 7, 2020

Resistor-capacitor oscillator

Inventors: Te Han (Shanghai, CN); Junshi Qiao (Shanghai, CN); Jiewei Lai (Shanghai, CN)
Assignee: BEIJING UNISOC COMMUNICATIONS TECHNOLOGY CO., LTD.
H03K4/50H03K3/011H03K3/0231H03K4/502
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Quick Facts
Patent No.
US 10,707,847
App. No.
16/184,161
Granted
Jul 7, 2020
Kind
B2
Abstract

An RC oscillator is provided for improving stability of oscillation frequency. The circuit includes an input module, an oscillating module, an inverting module, first and second compensating modules and an output module, wherein the input module provides two-path charging currents and bias current for the oscillating module; the oscillating module outputs a first high level or a first low level to the inverting module under the control of the two-path charging currents and bias current, and improves frequency tuning accuracy of the oscillator; the inverting module inverts the first high level to a second low level or inverts the first low level to a second high level, and outputs the second low level or the second high level to the output module; the output module outputs the second high level and the second low level; and the first and second compensating modules improve stability of the oscillation frequency.

Claims (34)

1. A resistor-capacitor (RC) oscillator, comprising an input module, an oscillating module, an inverting module, a first compensating module, a second compensating module and an output module,

wherein the input module is connected with the oscillating module, and configured to provide two-path charging currents and a bias current for the oscillating module;

the oscillating module is connected with the inverting module, the first compensating module and the second compensating module, and configured to output a first high level or a first low level to the inverting module under the control of the two-path charging currents and the bias current;

the inverting module is connected with the output module, configured to invert the first high level to a second low level or to invert the first low level to a second high level, and output the second low level or the second high level to the output module;

the output module is configured to output the second high level and the second low level;

the first compensating module and the second compensating module are configured to improve stability of an oscillation frequency of the oscillator; and

the first compensating module comprises a seventh switch transistor, an eighth switch transistor, a ninth switch transistor and a tenth switch transistor, wherein the seventh switch transistor and the eighth switch transistor are configured to compensate a leakage current of a switch transistor from its source and drain to its substrate in a resistor array, and the ninth switch transistor and the tenth switch transistor are configured to compensate a leakage current of a switch transistor from its drain to its source in a capacitor array.

2. The RC oscillator according to claim 1 , wherein the input module comprises a first current source, a power supply voltage, a first transistor, a second transistor and a third transistor,

wherein one end of the first current source is grounded, and the other end of the first current source is connected with a second electrode and a gate of the first transistor, a gate of the second transistor, and a gate of the third transistor, the power supply voltage is connected with a first electrode of the first transistor, a first electrode of the second transistor, and a first electrode of the third transistor, a second electrode of the second transistor is connected with a first voltage node of the oscillator, and a second electrode of the third transistor is connected with a second voltage node of the oscillator.

3. The RC oscillator according to claim 2 , wherein the oscillator module comprises a first switch transistor, a second switch transistor, a third switch transistor, a fourth switch transistor, a fifth switch transistor, a sixth switch transistor, a first capacitor, a second capacitor, a comparator, an adjustable resistor, a filter capacitor and a Sigma-Delta modulator,

wherein a first electrode of the first switch transistor is connected with the first voltage node, and a second electrode of the first switch transistor is connected with a first end of the first capacitor and a first electrode of the fifth switch transistor;

the first electrode of the fifth switch transistor is connected with the first end of the first capacitor, and a second electrode of the fifth switch transistor is connected with a second end of the first capacitor;

the second end of the first capacitor is grounded;

a first electrode of the third switch transistor is connected with the first voltage node, and a second electrode of the third switch transistor is connected with a third voltage node;

a first electrode of the fourth switch transistor is connected with the second voltage node, and a second electrode of the fourth switch transistor is connected with the third voltage node;

a first electrode of the second switch transistor is connected with the second voltage node, and a second electrode of the second switch transistor is connected with a first end of the second capacitor and a first electrode of the sixth switch transistor;

the first electrode of the sixth switch transistor is connected with the first end of the second capacitor, and a second electrode of the sixth switch transistor is connected with a second end of the second capacitor;

the second end of the second capacitor is grounded;

a second input of the comparator is connected with the first voltage node, and a third input of the comparator is connected with the second voltage node;

one end of the adjustable resistor is connected with the third voltage node, the other end of the adjustable resistor is connected with one end of a first resistor, and the other end of the first resistor is grounded;

the Sigma-Delta modulator is connected with the adjustable resistor for adjusting resistance of the adjustable resistor, so that the adjusted resistance of the adjustable resistor and the first resistor improve frequency tuning accuracy of the RC oscillator; and

one end of the filter capacitor is connected with the third voltage node, and the other end of the filter capacitor is grounded to filter high-frequency noise introduced by the Sigma-Delta modulator.

4. The RC oscillator according to claim 3 , wherein the inverting module comprises a Schmitt trigger,

wherein an input of the Schmitt trigger is connected with an output of the comparator, and an output of the Schmitt trigger is connected with an input of the output module.

5. The RC oscillator according to claim 3 , wherein the output module comprises a first inverter and a second inverter,

wherein the first inverter is connected in series with the second inverter, the first inverter is connected with a gate of the first switch transistor, a gate of the fourth switch transistor and a gate of the sixth switch transistor, and the second inverter is connected with a gate of the second switch transistor, a gate of the third switch transistor and a gate of the fifth switch transistor.

6. The RC oscillator according to claim 3 , wherein a first electrode and a second electrode of the seventh switch transistor are connected with a fourth voltage node, and a gate of the seventh switch transistor is grounded;

a first electrode and a second electrode of the eighth switch transistor are connected with a fifth voltage node, and a gate of the eighth switch transistor is grounded;

a first electrode of the ninth switch transistor is connected with the third voltage node, and a second electrode and a gate of the ninth switch transistor are grounded; and

a first electrode of the tenth switch transistor is connected with the third voltage node, and a second electrode and a gate of the tenth switch transistor are grounded.

7. The RC oscillator according to claim 1 , wherein the second compensating module is configured to adjust an offset of an oscillating frequency of the RC oscillator caused by a temperature variation.

8. The RC oscillator according to claim 3 , wherein the second compensating module comprises a second current source,

wherein one end of the second current source is connected with the power supply voltage, and the other end of the second current source is connected with the third voltage node.

9. A monolithic integrated chip, comprising the RC oscillator according to claim 1 , wherein the RC oscillator is configured to provide a clock signal to a clock using circuit in the monolithic integrated chip.

Assignments (2)
CHANGE OF NAME Recorded May 18, 2020
From: BEIJING SPREADTRUM HI-TECH COMMUNICATIONS TECHNOLOGY CO., LTD.
To: BEIJING UNISOC COMMUNICATIONS TECHNOLOGY CO., LTD.
Reel/Frame 052694/0170 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 8, 2018
From: HAN, TE; QIAO, JUNSHI; LAI, JIEWEI
To: BEIJING SPREADTRUM HI-TECH COMMUNICATIONS TECHNOLOGY CO., LTD.
Reel/Frame 047452/0521 →
Priority Claims (1)
CN 2017 1 1111787 · Nov 10, 2017 · national
Continuity (1)
Related Publication 20190149140A1 · May 16, 2019