IP Library Granted Patent US 12,620,980
Granted Patent B2
US 12,620,980 · App. 18/437,020 · Granted May 5, 2026

Multi-modulus divider

Inventors: Tu-I Tsai (Sunnyvale, CA); Taeho Seong (San Diego, CA)
Assignee: QUALCOMM Incorporated
H03K3/037H03K5/01H03L7/08H03K2005/00013
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Quick Facts
Patent No.
US 12,620,980
App. No.
18/437,020
Granted
May 5, 2026
Kind
B2
Abstract

A multi-modulus divider includes a prescaler and a finite state machine. The prescaler includes a combinational logic circuit programmable to divide a frequency of an input clock signal by a first value or a second value. The multi-modulus divider includes a first flip-flop having a data input coupled to an output of the prescaler and an output coupled to an input of the finite state machine. The multi-modulus divider includes a second flip-flop having a data input coupled to the finite state machine such that the data input is configured to receive a programming signal output by the finite state machine and associated with programming the combinational logic circuit. The multi-modulus divider includes a third flip-flop having a data input coupled to an output of the second flip-flop. The third-flip flop also has an output coupled to the combinational logic circuit.

Claims (18)

1 . A multi-modulus divider comprising:

a prescaler comprising a combinational logic circuit programmable to divide a frequency of an input clock signal by a first value or a second value;

a finite state machine;

a first flip-flop, wherein a data input of the first flip-flop is coupled to an output of the prescaler, and wherein an output of the first flip-flop is coupled to an input of the finite state machine;

a second flip-flop, wherein a data input of the second flip-flop is coupled to the finite state machine such that the data input of the second flip-flop is configured to receive a programming signal output by the finite state machine and associated with programming the combinational logic circuit; and

a third flip-flop, wherein a data input of the third flip-flop is coupled to an output of the second flip-flop, and wherein an output of the third flip-flop is coupled to the combinational logic circuit.

2 . The multi-modulus divider of claim 1 , wherein a longest flop-to-flop delay is a summation of a first delay associated with the first flip-flop and a second delay associated with the second flip-flop.

3 . The multi-modulus divider of claim 1 , wherein the input clock signal has a frequency that is greater than 7 Gigahertz (GHz).

4 . The multi-modulus divider of claim 1 , wherein the first flip-flop, the second flip-flop, and the third flip-flop each comprise a delay (D) flip-flop.

5 . The multi-modulus divider of claim 1 , wherein a clock input of the first flip-flop and a clock input of the third flip-flop are configured to receive the input clock signal.

6 . The multi-modulus divider of claim 1 , wherein the finite state machine includes the second flip-flop.

7 . The multi-modulus divider of claim 1 , wherein:

the first value is a first integer, and

the second value is a second integer that is different than the first integer.

8 . The multi-modulus divider of claim 1 , wherein the prescaler further comprises a plurality of flip-flops, each of the plurality of flip-flops including a data input coupled to the combinational logic circuit and an output coupled to the combinational logic circuit.

9 . The multi-modulus divider of claim 8 , wherein the data input of the first flip-flop is coupled to the output of one of the plurality of flip-flops of the prescaler.

10 . The multi-modulus divider of claim 1 , wherein the output of the first flip-flop is coupled to a clock input of the second flip-flop.

11 . A phase-locked loop (PLL) circuit comprising the multi-modulus divider of claim 1 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 5, 2024
From: TSAI, TU-I; SEONG, TAEHO
To: QUALCOMM INCORPORATED
Reel/Frame 066657/0404 →
Continuity (1)
Related Publication 20250260394A1 · Aug 14, 2025
References Cited (2)
US 7430264B2 · Boerstler · 2008 [cited by examiner]
Lam C., et al., “A 2.6-GHz/5.2-GHz Frequency Synthesizer in 0.4-um CMOS Technology”, IEEE Journal of Solid-State Circuits, Jun. 2000, vol. 35, No. 5, 7 Pages. [cited by applicant]