IP Library Patent Application 13052569
Patent Application
App. No. 13/052,569

CHARGE PUMP CIRCUIT

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Quick Facts
Patent No.
US None
App. No.
13/052,569
Abstract

Each of a plurality of pump stages has an input node and an output node and performs a charge pump operation in response to any one of the first and second clock signals. The plurality of pump stages include a first pump stage, in which a charge transfer transistor is connected between the input node and the output node. One end of a pump capacitor is connected to the output node, and the other end is supplied with one of the first and second clock signals corresponding to the first pump stage. A connection switcher connects to the gate of the charge transfer transistor any one of the output node of a pump stage which is supplied with one of the clock signals corresponding to the first pump stage and the input node of a pump stage which is supplied with the other clock signal not corresponding to the first pump stage and which is included in a pump stage row not including the first pump stage.

Claims (52)

1 - 10 . (canceled)

11 . A charge pump circuit which performs a charge pump operation in response to complementary first and second clock signals to generate a pumped voltage, comprising:

a plurality of pump stage rows, each of which repeats a charge pump operation in response to the first and second clock signals;

a plurality of anti-backflow circuits respectively corresponding to the plurality of pump stage rows; and

an output terminal for outputting the pumped voltage,

wherein each of the plurality of anti-backflow circuits has an input node connected to the pump stage row, an output node connected to the output terminal, and an intermediate node at which a voltage is pumped in response to any one of the first and second clock signals, and

the plurality of anti-backflow circuits includes a first anti-backflow circuit, the first anti-backflow circuit including

a charge transfer transistor connected between the input node and the output node,

a pump capacitor, one end of which is connected to the intermediate node, and the other end receiving one of the first and second clock signals corresponding to the first anti-backflow circuit, and

a connection switcher for connecting to a gate of the charge transfer transistor any one of an intermediate node of an anti-backflow circuit which is supplied with the clock signal corresponding to the first anti-backflow circuit and an input node of an anti-backflow circuit which is supplied with the other clock signal not corresponding to the first anti-backflow circuit.

12 . The charge pump circuit of claim 11 , wherein:

if an absolute value of a voltage at an input node of the anti-backflow circuit which is supplied with the clock signal corresponding to the first anti-backflow circuit is greater than or equal to an absolute value of a voltage at the input node of the anti-backflow circuit which is supplied with the other clock signal not corresponding to the first anti-backflow circuit, the connection switcher connects to the gate of the charge transfer transistor the intermediate node of the anti-backflow circuit which is supplied with the clock signal corresponding to the first anti-backflow circuit; and

if the absolute value of the voltage at the input node of the anti-backflow circuit which is supplied with the clock signal corresponding to the first anti-backflow circuit is smaller than the absolute value of the voltage at the input node of the anti-backflow circuit which is supplied with the other clock signal not corresponding to the first anti-backflow circuit, the connection switcher connects to the gate of the charge transfer transistor the input node of the anti-backflow circuit which is supplied with the other clock signal not corresponding to the first anti-backflow circuit.

13 . A charge pump circuit which performs a charge pump operation in response to complementary first and second clock signals to generate a pumped voltage, comprising:

a plurality of pump stage rows, each of which repeats a charge pump operation in response to the first and second clock signals;

a plurality of anti-backflow circuits respectively corresponding to the plurality of pump stage rows: and

an output terminal for outputting the pumped voltage,

wherein each of the plurality of anti-backflow circuits has an input node connected to the pump stage row, an output node connected to the output terminal, and an intermediate node at which a voltage is pumped in response to any one of the first and second clock signals, and

the plurality of anti-backflow circuits includes a first anti-backflow circuit, the first anti-backflow circuit including

a charge transfer transistor connected between the input node and the output node,

a pump capacitor, one end of which is connected to the intermediate node, and the other end receiving one of the first and second clock signals corresponding to the first anti-backflow circuit, and

a connection switcher for connecting to a gate of the charge transfer transistor any one of an input node of an anti-backflow circuit which is supplied with the clock signal corresponding to the first anti-backflow circuit and an intermediate node of an anti-backflow circuit which is supplied with the other clock signal not corresponding to the first anti-backflow circuit.

14 . The charge pump circuit of claim 13 , wherein the connection switcher includes:

an off-switch transistor that has a drain connected to the gate of the charge transfer transistor, a source connected to the input node of the anti-backflow circuit which is supplied with the clock signal corresponding to the first anti-backflow circuit, and a gate connected to an input node of the anti-backflow circuit which is supplied with the other clock signal not corresponding to the first anti-backflow circuit; and

an on-switch transistor that has a drain connected to the gate of the charge transfer transistor, a source connected to the intermediate node of the anti-backflow circuit which is supplied with the other clock signal not corresponding to the first anti-backflow circuit, and a gate connected to an intermediate node of the anti-backflow circuit which is supplied with the clock signal corresponding to the first anti-backflow circuit.

15 . The charge pump circuit of claim 13 , wherein the connection switcher includes:

an off-switch transistor that has a drain connected to the gate of the charge transfer transistor, a source connected to the input node of the anti-backflow circuit which is supplied with the clock signal corresponding to the first anti-backflow circuit, and a gate connected to the output terminal; and

an on-switch transistor that has a drain connected to the gate of the charge transfer transistor, a source connected to the intermediate node of the anti-backflow circuit which is supplied with the other clock signal not corresponding to the first anti-backflow circuit, and a gate connected to the output terminal.

16 . The charge pump circuit of claim 13 , further comprising an analog comparator circuit for comparing a voltage at an intermediate node of an anti-backflow circuit corresponding to the first clock signal and a voltage at an intermediate node of an anti-backflow circuit corresponding to the second clock signal to select any one of the intermediate nodes of these two anti-backflow circuits according to a result of the comparison,

wherein the connection switcher includes

an off-switch transistor that has a drain connected to the gate of the charge transfer transistor, a source connected to the input node of the anti-backflow circuit which is supplied with the clock signal corresponding to the first anti-backflow circuit, and a gate connected to the intermediate node selected by the analog comparator circuit, and

an on-switch transistor that has a drain connected to the gate of the charge transfer transistor, a source connected to the intermediate node of the anti-backflow circuit which is supplied with the other clock signal corresponding to the first anti-backflow circuit, and a gate connected to the intermediate node selected by the analog comparator circuit.

17 . The charge pump circuit of claim 13 , wherein:

the first anti-backflow circuit further includes a subsidiary charge transfer transistor located between the input node and the output node and connected in series with the charge transfer transistor, the subsidiary charge transfer transistor having a gate connected to the intermediate node of the anti-backflow circuit which is supplied with the other clock signal not corresponding to the first anti-backflow circuit;

the connection switcher includes

an off-switch transistor that has a drain connected to the gate of the charge transfer transistor, a source connected to the input node of the anti-backflow circuit which is supplied with the clock signal corresponding to the first anti-backflow circuit, and a gate connected to a gate control node, and

an on-switch transistor that has a drain connected to the gate of the charge transfer transistor, a source connected to the intermediate node of the anti-backflow circuit which is supplied with the other clock signal not corresponding to the first anti-backflow circuit, and a gate connected to the gate control node; and

a connection node of the charge transfer transistor and the subsidiary charge transfer transistor is connected to the gate control node.

18 . A charge pump circuit which performs a charge pump operation in response to complementary first and second clock signals to generate a pumped voltage, comprising:

a plurality of pump stage rows, each of which repeats a charge pump operation in response to the first and second clock signals;

a plurality of anti-backflow circuits respectively corresponding to the plurality of pump stage rows; and

an output terminal for outputting the pumped voltage,

wherein each of the plurality of anti-backflow circuits has an input node connected to the pump stage row and an intermediate node at which a voltage is pumped in response to any one of the first and second clock signals,

the plurality of anti-backflow circuits includes a first anti-backflow circuit, the first anti-backflow circuit including

a charge transfer transistor connected between the input node and the intermediate node,

a pump capacitor, one end of which is connected to the intermediate node, and the other end receiving one of the first and second clock signals corresponding to the first anti-backflow circuit,

a connection switcher for connecting to a gate of the charge transfer transistor any one of an input node of an anti-backflow circuit which is supplied with the clock signal corresponding to the first anti-backflow circuit and the intermediate node of an anti-backflow circuit which is supplied with the other clock signal not corresponding to the first anti-backflow circuit, and

a subsidiary charge transfer transistor located between the input node and the intermediate node and connected in series with the charge transfer transistor, the subsidiary charge transfer transistor having a gate connected to an intermediate node of the anti-backflow circuit which is supplied with the other clock signal not corresponding to the first anti-backflow circuit, and

a connection node of the charge transfer transistor and the subsidiary charge transfer transistor is connected to the output terminal.

19 . The charge pump circuit of claim 13 , wherein the first anti-backflow circuit further includes a diode-connected transistor connected between the input node and the intermediate node.

20 . The charge pump circuit of claim 13 , wherein the first anti-backflow circuit further includes a diode-connected transistor connected between a voltage node which receives a supply voltage or ground voltage and the intermediate node.

21 . The charge pump circuit of claim 18 , wherein the first anti-backflow circuit further includes a diode-connected transistor connected between the intermediate node and the connection node of the charge transfer transistor and the subsidiary charge transfer transistor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 11, 2018
From: PANASONIC CORPORATION
To: CETUS TECHNOLOGIES INC.
Reel/Frame 047855/0799 →