IP Library Granted Patent US 10,483,982
Granted Patent B2
US 10,483,982 · App. 16/139,340 · Granted Nov 19, 2019

Frequency synthesizer with tunable accuracy

Inventors: Hui Li (Fremont, CA); Teck-Chuan Ng (San Jose, CA); Stephen E. Aycock (Napa, CA)
Assignee: INTEGRATED DEVICE TECHNOLOGY, INC.
H03K21/02H03M3/39H03M3/456
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Quick Facts
Patent No.
US 10,483,982
App. No.
16/139,340
Granted
Nov 19, 2019
Kind
B2
Abstract

An apparatus includes a first circuit, a second circuit and a third circuit. The first circuit may be configured to generate a first code by counting a number of cycles of an input clock signal during a period. The period may be determined by an output clock signal and a second code. The second circuit may be configured to generate a third code by a delta-sigma modulation of the first code. The third circuit may be configured to generate the output clock signal in response to the third code. An accuracy of a frequency of the output clock signal may be determined by a current value of the second code.

Claims (32)

1. An apparatus comprising:

a first circuit configured to generate a first code by counting a number of cycles of an input clock signal during a period, wherein said period is determined by an output clock signal and a second code;

a second circuit configured to generate a third code by a delta-sigma modulation of said first code, wherein said third code has fewer bits than the first code; and

a third circuit configured to generate an initial frequency said output clock signal in response to said third code, wherein an accuracy of said initial frequency of said output clock signal is adjusted in response to a current value of said second code.

2. The apparatus according to claim 1 , wherein said first circuit is further configured to adjust said second code to change a duration of said period.

3. The apparatus according to claim 1 , wherein said first circuit is further configured to set said second code to an initial value that establishes a short duration of said period in which said frequency of said output clock signal is adjusted to a coarse accuracy.

4. The apparatus according to claim 1 , wherein a coarse accuracy of said frequency of said output clock signal is achieved when said number of cycles of said input clock during said period minus an expected number falls below a threshold.

5. The apparatus according to claim 1 , wherein said first circuit is further configured to set said second code to a subsequent value that establishes a long duration of said period in which said frequency of said output clock signal is adjusted to a fine accuracy.

6. The apparatus according to claim 1 , wherein said first circuit is further configured to repeat a short duration of said period at most a given number of times before using a subsequent value for said second code.

7. The apparatus according to claim 1 , wherein said second circuit is further configured to parse said first code into an integer value and a fractional value.

8. The apparatus according to claim 7 , wherein said delta-sigma modulation is applied to said fractional value to generate a fine adjustment value.

9. The apparatus according to claim 8 , wherein said third code is generated in said second circuit by adding said fine adjustment value to said integer value.

10. The apparatus according to claim 1 , wherein said first circuit is further configured to vary a power consumption of said apparatus by alternately enabling and disabling said input clock signal in response to said second code.

11. A method for frequency synthesization, comprising the steps of:

generating a first code using a circuit by counting a number of cycles of an input clock signal during a period, wherein said period is determined by an output clock signal and a second code;

generating a third code by a delta-sigma modulation of said first code, wherein said third code has fewer bits than the first code; and

generating an initial frequency of said output clock signal in response to said third code, wherein an accuracy of said initial frequency of said output clock signal is adjusted in response to a current value of said second code.

12. The method according to claim 11 , further comprising the step of:

adjusting said second code to change a duration of said period.

13. The method according to claim 11 , further comprising the step of:

setting said second code to an initial value that establishes a short duration of said period in which said frequency of said output clock signal is adjusted to a coarse accuracy.

14. The method according to claim 11 , wherein a coarse accuracy of said frequency of said output clock signal is achieved when said number of cycles of said input clock during said period minus an expected number falls below a threshold.

15. The method according to claim 11 , further comprising the step of:

setting said second code to a subsequent value that establishes a long duration of said period in which said frequency of said output clock signal is adjusted to a fine accuracy.

16. The method according to claim 11 , further comprising the step of:

repeating a short duration of said period at most a given number of times before using a subsequent value for said second code.

17. The method according to claim 11 , further comprising the step of:

parsing said first code into an integer value and a fractional value.

18. The method according to claim 17 , wherein said delta-sigma modulation is applied to said fractional value to generate a fine adjustment value.

19. The method according to claim 18 , wherein said third code is generated by adding said fine adjustment value to said integer value.

20. The method according to claim 11 , further comprising the step of:

alternately enabling and disabling said input clock signal in response to said second code to vary power consumption.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 27, 2026
From: RENESAS ELECTRONICS AMERICA INC.
To: SITIME CORPORATION
Reel/Frame 075810/0219 →
Continuity (2)
Continuation 15408655 · Jan 18, 2017
Related Publication 20190028105A1 · Jan 24, 2019