IP Library Granted Patent US 8,441,281
Granted Patent B2
US 8,441,281 · App. 13/165,500 · Granted May 14, 2013

Current-mode logic buffer with enhanced output swing

Inventors: Makeshwar Kothandaraman (Bangalore, IN); Pankaj Kumar (Bangalore, IN); Paul K. Hartley (Emmaus, PA); John Christopher Kriz (Palmerton, PA)
Assignee: LSI Corporation
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Quick Facts
Patent No.
US 8,441,281
App. No.
13/165,500
Granted
May 14, 2013
Kind
B2
Abstract

A differential buffer circuit having increased output voltage swing includes a differential input stage including at least first and second transistors, the first and second transistors being operative to receive first and second signals, respectively. The buffer circuit further includes a bias stage connected between the differential input stage and a first voltage source. The bias stage is operative to generate a quiescent current as a function of a third signal supplied to the bias stage. A load circuit is connected between a second voltage source and the differential input stage, first and second differential outputs of the buffer circuit being generated at a junction between the load circuit and the differential input stage. The load circuit includes first and second switching elements coupled with the first and second transistors, respectively. The first switching element is operative to electrically connect the first differential output to the second voltage source when the first transistor is turned off. The second switching element is operative to electrically connect the second differential output to the second voltage source when the second transistor is turned off.

Claims (57)

1. A differential buffer circuit having increased output voltage swing, comprising:

a differential input stage including at least first and second transistors, the first and second transistors being operative to receive first and second signals, respectively;

a bias stage connected between the differential input stage and a first voltage source, the bias stage being operative to generate a quiescent current as a function of a third signal supplied to the bias stage; and

a load circuit connected between a second voltage source and the differential input stage, first and second differential outputs of the buffer circuit being generated at a junction between the load circuit and the differential input stage, the load circuit including first and second switching elements coupled with the first and second transistors, respectively, the first switching element being operative to electrically connect the first differential output to the second voltage source when the first transistor is turned off as a function of only the first signal, the second switching element being operative to electrically connect the second differential output to the second voltage source when the second transistor is turned off as a function of only the second signal.

2. The buffer circuit of claim 1 , further comprising a termination circuit connected across the differential outputs of the buffer circuit.

3. The buffer circuit of claim 2 , wherein the termination circuit comprises at least one resistor having a first terminal connected with the first differential output and a second terminal connected with the second differential output.

4. The buffer circuit of claim 1 , wherein the differential input stage comprises:

a first NMOS transistor device having a first source/drain connected with the first switching element and forming the first differential output of the buffer circuit, a gate operative to receive the first signal, and a second source/drain connected with the bias stage; and

a second NMOS transistor device having a first source/drain connected with the second switching element and forming the second differential output of the buffer circuit, a gate operative to receive the second signal, and a second source/drain connected with the second source/drain of the first NMOS transistor device.

5. The buffer circuit of claim 1 , wherein the load circuit comprises:

a resistor having a first terminal adapted for connection with the second voltage source;

a first PMOS transistor device having a first source/drain connected with a second terminal of the resistor, a gate operative to receive the first signal, and a second source/drain connected with the input differential stage at the first differential output; and

a second PMOS transistor device having a first source/drain connected with the second terminal of the resistor, a gate operative to receive the second signal, and a second source/drain connected with the input differential stage at the second differential output.

6. The buffer circuit of claim 1 , wherein the bias stage comprises an NMOS transistor device having a first source/drain adapted for connection with the first voltage source, a gate adapted to receive the third signal, and a second source/drain connected with the differential input stage, an amount of quiescent current being a function of at least one of the third signal and a channel size of the NMOS transistor device.

7. The buffer circuit of claim 1 , wherein the load circuit comprises a resistor element connected between the first and second switching elements and the second voltage source, the resistor element having a resistance value selected to provide a prescribed output common-mode voltage of the buffer circuit during switching.

8. The buffer circuit of claim 1 , wherein the differential input stage comprises:

a first PMOS transistor device having a first source/drain connected with the first switching element and forming the first differential output of the buffer circuit, a gate operative to receive the first signal, and a second source/drain connected with the bias stage; and

a second PMOS transistor device having a first source/drain connected with the second switching element and forming the second differential output of the buffer circuit, a gate operative to receive the second signal, and a second source/drain connected with the second source/drain of the first PMOS transistor device.

9. The buffer circuit of claim 1 , wherein the load circuit comprises:

a resistor having a first terminal adapted for connection with the second voltage source;

a first NMOS transistor device having a first source/drain connected with a second terminal of the resistor, a gate operative to receive the first signal, and a second source/drain connected with the input differential stage at the first differential output; and

a second NMOS transistor device having a first source/drain connected with the second terminal of the resistor, a gate operative to receive the second signal, and a second source/drain connected with the input differential stage at the second differential output.

10. The buffer circuit of claim 1 , wherein the bias stage comprises a PMOS transistor device having a first source/drain adapted for connection with the first voltage source, a gate adapted to receive the third signal, and a second source/drain connected with the differential input stage, an amount of quiescent current being a function of at least one of the third signal and a channel size of the PMOS transistor device.

11. The buffer circuit of claim 1 , wherein the first voltage source is ground and the second voltage source is VDD.

12. An integrated circuit, comprising:

at least one differential buffer circuit having increased output voltage swing, the at least one buffer circuit comprising:

a differential input stage including at least first and second transistors, the first and second transistors being operative to receive first and second signals, respectively;

a bias stage connected between the differential input stage and a first voltage source, the bias stage being operative to generate a quiescent current as a function of a third signal supplied to the bias stage; and

a load circuit connected between a second voltage source and the differential input stage, first and second differential outputs of the buffer circuit being generated at a junction between the load circuit and the differential input stage, the load circuit including first and second switching elements coupled with the first and second transistors, respectively, the first switching element being operative to electrically connect the first differential output to the second voltage source when the first transistor is turned off as a function of only the first signal, the second switching element being operative to electrically connect the second differential output to the second voltage source when the second transistor is turned off as a function of only the second signal.

13. The integrated circuit of claim 12 , further comprising a termination circuit connected across the differential outputs of the buffer circuit.

14. The integrated circuit of claim 12 , wherein the differential input stage comprises:

a first NMOS transistor device having a first source/drain connected with the first switching element and forming the first differential output of the buffer circuit, a gate operative to receive the first signal, and a second source/drain connected with the bias stage; and

a second NMOS transistor device having a first source/drain connected with the second switching element and forming the second differential output of the buffer circuit, a gate operative to receive the second signal, and a second source/drain connected with the second source/drain of the first NMOS transistor device.

15. The integrated circuit of claim 12 , wherein the load circuit comprises:

a resistor having a first terminal adapted for connection with the second voltage source;

a first PMOS transistor device having a first source/drain connected with a second terminal of the resistor, a gate operative to receive the first signal, and a second source/drain connected with the input differential stage at the first differential output; and

a second PMOS transistor device having a first source/drain connected with the second terminal of the resistor, a gate operative to receive the second signal, and a second source/drain connected with the input differential stage at the second differential output.

16. The integrated circuit of claim 12 , wherein the load circuit comprises a resistor element connected between the first and second switching elements and the second voltage source, the resistor element having a resistance value selected to provide a prescribed output common-mode voltage of the buffer circuit during switching.

17. The integrated circuit of claim 12 , wherein the differential input stage comprises:

a first PMOS transistor device having a first source/drain connected with the first switching element and forming the first differential output of the buffer circuit, a gate operative to receive the first signal, and a second source/drain connected with the bias stage; and

a second PMOS transistor device having a first source/drain connected with the second switching element and forming the second differential output of the buffer circuit, a gate operative to receive the second signal, and a second source/drain connected with the second source/drain of the first PMOS transistor device.

18. The integrated circuit of claim 12 , wherein the load circuit comprises:

a resistor having a first terminal adapted for connection with the second voltage source;

a first NMOS transistor device having a first source/drain connected with a second terminal of the resistor, a gate operative to receive the first signal, and a second source/drain connected with the input differential stage at the first differential output; and

a second NMOS transistor device having a first source/drain connected with the second terminal of the resistor, a gate operative to receive the second signal, and a second source/drain connected with the input differential stage at the second differential output.

19. The integrated circuit of claim 12 , wherein the bias stage comprises an NMOS transistor device having a first source/drain adapted for connection with the first voltage source, a gate adapted to receive the third signal, and a second source/drain connected with the differential input stage, an amount of quiescent current being a function of at least one of the third signal and a channel size of the NMOS transistor device.

20. An electronic system, comprising:

at least one integrated circuit, the at least one integrated circuit including at least one differential buffer circuit having increased output voltage swing, the at least one buffer circuit comprising:

a differential input stage including at least first and second transistors, the first and second transistors being operative to receive first and second signals, respectively;

a bias stage connected between the differential input stage and a first voltage source, the bias stage being operative to generate a quiescent current as a function of a third signal supplied to the bias stage; and

a load circuit connected between a second voltage source and the differential input stage, first and second differential outputs of the buffer circuit being generated at a junction between the load circuit and the differential input stage, the load circuit including first and second switching elements coupled with the first and second transistors, respectively, the first switching element being operative to electrically connect the first differential output to the second voltage source when the first transistor is turned off as a function of only the first signal, the second switching element being operative to electrically connect the second differential output to the second voltage source when the second transistor is turned off as a function of only the second signal.

21. A communication system, comprising:

at least one receiver; and

at least one transmitter operatively coupled with the receiver, at least one of the transmitter and the receiver including at least one differential buffer circuit having increased output voltage swing, the at least one buffer circuit comprising:

a differential input stage including at least first and second transistors, the first and second transistors being operative to receive first and second signals, respectively;

a bias stage connected between the differential input stage and a first voltage source, the bias stage being operative to generate a quiescent current as a function of a third signal supplied to the bias stage; and

a load circuit connected between a second voltage source and the differential input stage, first and second differential outputs of the buffer circuit being generated at a junction between the load circuit and the differential input stage, the load circuit including first and second switching elements coupled with the first and second transistors, respectively, the first switching element being operative to electrically connect the first differential output to the second voltage source when the first transistor is turned off as a function of only the first signal, the second switching element being operative to electrically connect the second differential output to the second voltage source when the second transistor is turned off as a function of only the second signal.

Assignments (8)
CORRECTIVE ASSIGNMENT TO CORRECT THE EFFECTIVE DATE OF MERGER TO 09/05/2018 PREVIOUSLY RECORDED AT REEL: 047230 FRAME: 0133. ASSIGNOR(S) HEREBY CONFIRMS THE MERGER. Recorded Oct 29, 2018
From: AVAGO TECHNOLOGIES GENERAL IP (SINGAPORE) PTE. LTD.
To: AVAGO TECHNOLOGIES INTERNATIONAL SALES PTE. LIMITED
Reel/Frame 047630/0456 →
MERGER Recorded Oct 4, 2018
From: AVAGO TECHNOLOGIES GENERAL IP (SINGAPORE) PTE. LTD.
To: AVAGO TECHNOLOGIES INTERNATIONAL SALES PTE. LIMITED
Reel/Frame 047230/0133 →
TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENTS Recorded Feb 3, 2017
From: BANK OF AMERICA, N.A., AS COLLATERAL AGENT
To: AVAGO TECHNOLOGIES GENERAL IP (SINGAPORE) PTE. LTD.
Reel/Frame 041710/0001 →
PATENT SECURITY AGREEMENT Recorded Feb 11, 2016
From: AVAGO TECHNOLOGIES GENERAL IP (SINGAPORE) PTE. LTD.
To: BANK OF AMERICA, N.A., AS COLLATERAL AGENT
Reel/Frame 037808/0001 →
TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENT RIGHTS (RELEASES RF 032856-0031) Recorded Feb 2, 2016
From: DEUTSCHE BANK AG NEW YORK BRANCH, AS COLLATERAL AGENT
To: LSI CORPORATION; AGERE SYSTEMS LLC
Reel/Frame 037684/0039 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 3, 2015
From: LSI CORPORATION
To: AVAGO TECHNOLOGIES GENERAL IP (SINGAPORE) PTE. LTD.
Reel/Frame 035390/0388 →
PATENT SECURITY AGREEMENT Recorded May 8, 2014
From: LSI CORPORATION; AGERE SYSTEMS LLC
To: DEUTSCHE BANK AG NEW YORK BRANCH, AS COLLATERAL AGENT
Reel/Frame 032856/0031 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 21, 2011
From: KOTHANDARMAN, MAKESHWAR; KUMAR, PANKAJ; HARTLEY, PAUL K.; KRIZ, JOHN CHRISTOPHER
To: LSI CORPORATION
Reel/Frame 026473/0911 →
Continuity (1)
Related Publication 20120326745A1 · Dec 27, 2012