IP Library Granted Patent US 7,417,466
Granted Patent B2
US 7,417,466 · App. 11/605,226 · Granted Aug 26, 2008

Flip-flop circuit and frequency divider using the flip-flop circuit

Assignee: Oki Electric Industry Co., Ltd.
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Quick Facts
Patent No.
US 7,417,466
App. No.
11/605,226
Granted
Aug 26, 2008
Kind
B2
Abstract

In a flip-flop circuit where latched complementary signals of first and second output terminals are inverted by complementary first and second input pulses, the conductivity of a first load transistor connected to the first output terminal is controlled by the signal from the second output terminal, and the conductivity of a second load transistor connected to the second output terminal is controlled by the signal from the first output terminal.

Claims (33)

1. A flip-flop circuit comprising:

a first load element through which power supply current flows and that is connected between a first power supply potential and a first output terminal, the first output terminal and a second output terminal outputting complementary signals;

a second load element that is connected between the first power supply potential and the second output terminal and through which power supply current flows;

a first load transistor that is connected between the first power supply potential and the first output terminal and whose conductive state is controlled by the signal of the second output terminal;

a second load transistor that is connected between the first power supply potential and the second output terminal and whose conductive state is controlled by the signal of the first output terminal;

a first latch portion that is connected between a second power supply potential different from the first power supply potential and the first and second output terminals, latches the signals of the first and second output terminals, and inverts the latched signals of the first and second output terminals by complementary first and second input pulses and complementary signals of first and second output nodes;

a third load element that is connected between the first power supply potential and the first output node and through which power supply current flows;

a fourth load element that is connected between the first power supply potential and the second output node and through which power supply current flows;

a third load transistor that is connected between the first power supply potential and the first output node and whose conductive state is controlled by the signal of the second output node;

a fourth load transistor that is connected between the first power supply potential and the second output node and whose conductive state is controlled by the signal of the first output node; and

a second latch portion that is connected between the second power supply potential and the first and second output nodes, latches the signals of the first and second output nodes, and inverts the latched signals of the first and second output nodes by the first and second input pulses and the signals of the first and second output terminals.

2. The flip-flop circuit of claim 1 , wherein the first to fourth load elements and the first to fourth load transistors comprise PMOS.

3. The flip-flop circuit of claim 1 , wherein the second power supply potential is a ground potential.

4. The flip-flop circuit of claim 1 , wherein

the first latch portion comprises

a first transistor that is connected between the first output terminal and a first node and whose conductive state is controlled by the signal of the second output terminal,

a second transistor that is connected between the first node and the second power supply potential and whose conductive state is controlled by the second input pulse,

a third transistor that is connected between the first output terminal and a second node and whose conductive state is controlled by the signal of the second output node,

a fourth transistor that is connected between the second node and the second power supply potential and whose conductive state is controlled by the first input pulse,

a fifth transistor that is connected between the second output terminal and a third node and whose conductive state is controlled by the signal of the first output terminal,

a sixth transistor that is connected between the third node and the second power supply potential and whose conductive state is controlled by the second input pulse,

a seventh transistor that is connected between the second output terminal and a fourth node and whose conductive state is controlled by the signal of the first output node, and

an eighth transistor that is connected between the fourth node and the second power supply potential and whose conductive state is controlled by the first input pulse, and

the second latch portion comprises

a ninth transistor that is connected between the first output node and a fifth node and whose conductive state is controlled by the signal of the second output node,

a tenth transistor that is connected between the fifth node and the second power supply potential and whose conductive state is controlled by the first input pulse,

an eleventh transistor that is connected between the first output node and a sixth node and whose conductive state is controlled by the signal of the first output terminal,

a twelfth transistor that is connected between the sixth node and the second power supply potential and whose conductive state is controlled by the second input pulse,

a thirteenth transistor that is connected between the second output node and a seventh node and whose conductive state is controlled by the signal of the first output node,

a fourteenth transistor that is connected between the seventh node and the second power supply potential and whose conductive state is controlled by the first input pulse,

a fifteenth transistor that is connected between the second output node and an eighth node and whose conductive state is controlled by the signal of the second output terminal, and

a sixteenth transistor that is connected between the eighth node and the second power supply potential and whose conductive state is controlled by the second input pulse.

5. The flip-flop circuit of claim 4 , wherein the first to sixteenth transistors comprise NMOS.

Assignments (2)
CHANGE OF NAME Recorded Jan 16, 2009
From: OKI ELECTRIC INDUSTRY CO., LTD.
To: OKI SEMICONDUCTOR CO., LTD.
Reel/Frame 022162/0586 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 29, 2006
From: AKAHORI, AKIRA
To: OKI ELECTRIC INDUSTRY CO., LTD.
Reel/Frame 018646/0425 →
Priority Claims (1)
JP 2006-033595 · Feb 10, 2006 · national
Continuity (1)
Related Publication 20070188197A1 · Aug 16, 2007