IP Library Granted Patent US 7,605,645
Granted Patent B2
US 7,605,645 · App. 11/643,704 · Granted Oct 20, 2009

Transconductor, integrator, and filter circuit

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Quick Facts
Patent No.
US 7,605,645
App. No.
11/643,704
Granted
Oct 20, 2009
Kind
B2
Abstract

A transconductor for receiving a differential voltage signal and outputting a differential current signal, includes two transconductors for receiving the differential voltage signal and outputting a single-end current signal. An inversion input terminal of one of the two transconductors is connected with a non-inversion input terminal of the other. The transconductor outputs a current signal output from each of the two transconductors as the differential current signal.

Claims (57)

1. A transconductor for receiving a differential voltage signal and outputting a differential current signal, comprising:

a first transconductor and a second transconductor for receiving the differential voltage signal and outputting a single-end current signal,

wherein an inversion input terminal of one of the first and second transconductors is connected with a non-inversion input terminal of the other, and

the transconductor outputs a current signal output from each of the first and second transconductors as the differential current signal, and

wherein the first and second transconductors each comprise:

a first voltage-to-current conversion circuit and a second voltage-to-current conversion circuit for receiving a positive side and a negative side of the differential voltage signal, respectively; and

a current mirror circuit having an input side and an output side to which the first and second voltage-to-current conversion circuits are connected, respectively,

wherein the single-end current signal is output from a connection point between the second voltage-to-current conversion circuit and the current mirror circuit,

said transconductor further comprising:

a first variable current source and a second variable current source connected any one of the input side and the output side of the current mirror circuit in each of the first and second transconductors; and

a common-mode feedback circuit for controlling the first and second variable current sources based on a difference between an operating point voltage of a differential output of the transconductor and a reference voltage.

2. The transconductor of claim 1 , wherein the first and second variable current sources are connected to output sides of the current mirror circuits of the first and second transconductors, respectively.

3. The transconductor of claim 1 , wherein the first and second variable current sources are each a transistor having a gate which receives an output of the common-mode feedback circuit and a source connected to a predetermined voltage node.

4. The transconductor of claim 1 , comprising:

a first constant current source and a second constant current source connected to any one of the input side and the output side of the current mirror circuit in the first and second transconductors, respectively.

5. A transconductor for receiving a differential voltage signal and outputting a differential current signal, comprising:

a first transconductor and a second transconductor for receiving the differential voltage signal and outputting a single-end current signal,

wherein an inversion input terminal of one of the first and second transconductors is connected with a non-inversion input terminal of the other,

the transconductor outputs a current signal output from each of the first and second transconductors as the differential current signal, and

the first and second transconductors each receive a plurality of differential voltage signals.

6. The transconductor of claim 5 , wherein the first and second transconductors each comprise:

a first voltage-to-current conversion circuit group having a plurality of voltage-to-current conversion circuits connected in parallel, wherein positive sides of the plurality of differential voltage signals are input to the plurality of voltage-to-current conversion circuits, respectively;

a second voltage-to-current conversion circuit group having a plurality of voltage-to-current conversion circuits connected in parallel, wherein negative sides of the plurality of differential voltage signals are input to the plurality of voltage-to-current conversion circuits, respectively; and

a current mirror circuit having an input side to which the plurality of voltage-to-current conversion circuits of the first voltage-to-current conversion circuit group are each connected, and an output side to which the plurality of voltage-to-current conversion circuits of the second voltage-to-current conversion circuit group are each connected,

wherein the single-end current signal is output from a connection point between each of the plurality of voltage-to-current conversion circuits of the second voltage-to-current conversion circuit group and the current mirror circuit.

7. The transconductor of claim 6 , wherein the plurality of voltage-to-current conversion circuits of the first and second voltage-to-current conversion circuit groups are each a transistor having a gate which receives a voltage signal and a source connected to a predetermined voltage node.

8. An integrator comprising:

a transconductor for receiving a differential voltage signal and outputting a differential current signal, comprising:

a first transconductor and a second transconductor for receiving the differential voltage signal and outputting a single-end current signal,

wherein an inversion input terminal of one of the first and second transconductors is connected with a non-inversion input terminal of the other, and the transconductor outputs a current signal output from each of the first and second transconductors as the differential current signal,

wherein the first and second transconductors each comprise:

a first voltage-to-current conversion circuit and a second voltage-to-current conversion circuit for receiving a positive side and a negative side of the differential voltage signal, respectively; and

a current mirror circuit having an input side and an output side to which the first and second voltage-to-current conversion circuits are connected, respectively,

wherein the single-end current signal is output from a connection point between the second voltage-to-current conversion circuit and the current mirror circuit,

said transconductor further comprising:

a first variable current source and a second variable current source connected any one of the input side and the output side of the current mirror circuit in each of the first and second transconductors; and

a common-mode feedback circuit for controlling the first and second variable current sources based on a difference between an operating point voltage of a differential output of the transconductor and a reference voltage,

said integrator further comprising:

a capacitor connected between an output terminal of the first transconductor and an output terminal of the common-mode feedback circuit; and

a capacitor connected between an output terminal of the second transconductor and the output terminal of the common-mode feedback circuit.

9. An integrator comprising:

a transconductor for receiving a differential voltage signal and outputting a differential current signal, comprising:

a first transconductor and a second transconductor for receiving the differential voltage signal and outputting a single-end current signal,

wherein an inversion input terminal of one of the first and second transconductors is connected with a non-inversion input terminal of the other, and the transconductor outputs a current signal output from each of the first and second transconductors as the differential current signal,

wherein the first and second transconductors each comprise:

a first voltage-to-current conversion circuit and a second voltage-to-current conversion circuit for receiving a positive side and a negative side of the differential voltage signal, respectively; and

a current mirror circuit having an input side and an output side to which the first and second voltage-to-current conversion circuits are connected, respectively,

wherein the single-end current signal is output from a connection point between the second voltage-to-current conversion circuit and the current mirror circuit,

said transconductor further comprising:

a first variable current source and a second variable current source connected any one of the input side and the output side of the current mirror circuit in each of the first and second transconductors; and

a common-mode feedback circuit for controlling the first and second variable current sources based on a difference between an operating point voltage of a differential output of the transconductor and a reference voltage,

said integrator further comprising:

a capacitor connected between differential output terminals of the transconductor;

a capacitor connected between an output terminal of the first transconductor and an output terminal of the common-mode feedback circuit;

a capacitor connected between an output terminal of the second transconductor and the output terminal of the common-mode feedback circuit;

a capacitor connected between input and output terminals of the current mirror circuit in the first transconductor; and

a capacitor connected between input and output terminals of the current mirror circuit in the second transconductor.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 27, 2020
From: PANASONIC CORPORATION
To: PANASONIC SEMICONDUCTOR SOLUTIONS CO., LTD.
Reel/Frame 052755/0917 →
CHANGE OF NAME Recorded Nov 24, 2008
From: MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.
To: PANASONIC CORPORATION
Reel/Frame 021897/0689 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 25, 2007
From: MORIE, TAKASHI; MATSUMOTO, AKINORI; DOSHO, SHIRO
To: MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.
Reel/Frame 019211/0337 →