IP Library › Granted Patent US 12,652,030
Granted Patent B2
US 12,652,030 · App. 18/505,876 · Granted Jun 9, 2026

Clock doubler, a clock generating device and a semiconductor system using the same

Inventor: Jae Whan Lee (Icheon-si, KR)
Assignee: SK hynix Inc.
H03K5/00006H03K3/037H03L7/08
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Quick Facts
Patent No.
US 12,652,030
App. No.
18/505,876
Granted
Jun 9, 2026
Kind
B2
Abstract

A clock doubler includes a first triggering circuit, a second triggering circuit, and a gating circuit. The first triggering circuit generates a first trigger clock signal using rising edges of a first phase clock signal and a second phase clock signal. The second triggering circuit generates a second trigger clock signal using rising edges of a third phase clock signal and a fourth phase clock signal. The gating circuit gates the first and second trigger clock signals to generate an output clock signal the frequency of which is twice the frequency of clock signals provided to the triggering circuits.

Claims (42)

1 . A clock doubler comprising:

a first triggering circuit configured to generate a first trigger clock signal that transitions from a first logic level to a second logic level in synchronization with a rising edge of a first phase clock signal and transitions from the second logic level to the first logic level in synchronization with a rising edge of a second phase clock signal;

a second triggering circuit configured to generate a second trigger clock signal that transitions from the first logic level to the second logic level in synchronization with a rising edge of a third phase clock signal and transitions from the second logic level to the first logic level in synchronization with a rising edge of a fourth phase clock signal; and

a gating circuit configured to gate the first and second trigger clock signals to generate an output clock signal.

2 . The clock doubler of claim 1 , wherein the first to fourth phase clock signals sequentially have a constant phase difference.

3 . The clock doubler of claim 1 , wherein the first triggering circuit includes:

a first selection circuit configured to output one of the first and second phase clock signals as a first synchronization clock signal responsive to a complementary signal of the first trigger clock signal; and

a first synchronization circuit configured to output the complementary signal of the first trigger clock signal in synchronization with the first synchronization clock signal as the first trigger clock signal.

4 . The clock doubler of claim 3 , wherein the second triggering circuit includes:

a second selection circuit configured to output one of the third and fourth phase clock signals as a second synchronization clock signal responsive to a complementary signal of the second trigger clock signal; and

a second synchronization circuit configured to output the complementary signal of the second trigger clock signal in synchronization with the second synchronization clock signal as the second trigger clock signal.

5 . The clock doubler of claim 1 , wherein the gating circuit is configured to generate a pulse of the output clock signal whenever pulses of the first and second trigger clock signals is generated.

6 . A clock doubler comprising:

a first triggering circuit configured to generate a first trigger clock signal having a pulse enabled during a period from a rising edge of a first phase clock signal to a rising edge of a second phase clock signal;

a second triggering circuit configured to generate a second trigger clock signal having a pulse enabled during a period from a rising edge of a third phase clock signal to a rising edge of a fourth phase clock signal; and

a gating circuit configured to gate the first and second trigger clock signals to generate an output clock signal.

7 . The clock doubler of claim 6 , wherein the first to fourth phase clock signals sequentially have a constant phase difference.

8 . The clock doubler of claim 6 , wherein the first triggering circuit includes:

a first selection circuit configured to output one of the first and second phase clock signals as a first synchronization clock signal responsive to a complementary signal of the first trigger clock signal; and

a first synchronization circuit configured to output the complementary signal of the first trigger clock signal in synchronization with the first synchronization clock signal as the first trigger clock signal.

9 . The clock doubler of claim 8 , wherein the second triggering circuit includes:

a second selection circuit configured to output one of the third and fourth phase clock signals as a second synchronization clock signal responsive to a complementary signal of the second trigger clock signal; and

a second synchronization circuit configured to output the complementary signal of the second trigger clock signal in synchronization with the second synchronization clock signal as the second trigger clock signal.

10 . The clock doubler of claim 6 , wherein the gating circuit is configured to generate a pulse of the output clock signal whenever pulses of the first and second trigger clock signals is generated.

11 . A clock doubler comprising:

a first selection circuit configured to output one of a first phase clock signal and a second phase clock signal as a first synchronization clock signal responsive to a complementary signal of a first trigger clock signal;

a first synchronization circuit configured to output the complementary signal of the first trigger clock signal as the first trigger clock signal responsive to the first synchronization clock signal;

a second selection circuit configured to output one of a third phase clock signal and a fourth phase clock signal as a second synchronization clock signal responsive to a complementary signal of a second trigger clock signal;

second a synchronization circuit configured to output the complementary signal of the second trigger clock signal as the second trigger clock signal responsive to the second synchronization clock signal; and

a gating circuit configured to gate the first and second trigger clock signals to generate an output clock signal.

12 . The clock doubler of claim 11 , wherein the first to fourth phase clock signals sequentially have a constant phase difference.

13 . The clock doubler of claim 11 , wherein the first selection circuit is configured to output the first phase clock signal as the first synchronization clock signal when the complementary signal of the first trigger clock signal is at a first logic level, and is configured to output the second phase clock signal as the second synchronization clock signal when the complementary signal of the first trigger clock signal is at a second logic level.

14 . The clock doubler of claim 11 , wherein the first synchronization circuit is configured to output the complementary signal of the first trigger clock signal as the first trigger clock signal in synchronization with a rising edge of the first synchronization clock signal.

15 . The clock doubler of claim 11 , wherein the second selection circuit is configured to output the third phase clock signal as the second synchronization clock signal when the complementary signal of the second trigger clock signal is at a first logic level, and is configured to output the fourth phase clock signal as the second synchronization clock signal when the complementary signal of the second trigger clock signal is at a second logic level.

16 . The clock doubler of claim 11 , wherein the second synchronization circuit is configured to output the complementary signal of the second trigger clock signal as the second trigger clock signal in synchronization with a rising edge of the second synchronization clock signal.

17 . The clock doubler of claim 11 , wherein the gating circuit is configured to generate a pulse of the output clock signal each time a pulse of the first and second trigger clock signals is generated.

18 . A clock doubler comprising:

a first multiplexer configured to output one of a first phase clock signal and a second phase clock signal as a first synchronization clock signal responsive to a complementary signal of a first trigger clock signal;

a first flip-flop including a clock terminal receiving the first synchronization clock signal, a negative output terminal outputting the complementary signal of the first trigger clock signal, an input terminal coupled with the negative output terminal, and a positive output terminal outputting the first trigger clock signal;

a second multiplexer is configured to output one of a third phase clock signal and a fourth phase clock signal as a second synchronization clock signal responsive to a complementary signal of a second trigger clock signal;

a second flip-flop including a clock terminal receiving the second synchronization clock signal, a negative output terminal outputting the complementary signal of the second trigger clock signal, an input terminal coupled with the negative output terminal, and a positive output terminal outputting the second trigger clock signal; and

a NAND gate receiving the first and second trigger clock signals to output an output clock signal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 9, 2023
From: LEE, JAE WHAN
To: SK HYNIX INC.
Reel/Frame 065514/0283 →
Priority Claims (1)
KR 10-2023-0085775 · Jul 3, 2023 · national
Continuity (1)
Related Publication 20250015786A1 · Jan 9, 2025
References Cited (3)
US 10998892B1 · Lin · 2021 [cited by applicant]
US 20200051602A1 · Ramanathan · 2020 [cited by examiner]
US 20200052680A1 · Ho · 2020 [cited by examiner]