IP Library Granted Patent US 9,118,320
Granted Patent B2
US 9,118,320 · App. 14/094,809 · Granted Aug 25, 2015

Input buffer with current control mechanism

Inventor: Min-Chung Chou (Hsinchu, TW)
Assignee: Elite Semiconductor Memory Technology Inc.
H03K19/018507
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Quick Facts
Patent No.
US 9,118,320
App. No.
14/094,809
Granted
Aug 25, 2015
Kind
B2
Abstract

An input buffer includes a first driving circuit, a second driving circuit, a pull up circuit, and a pull down circuit. The first driving circuit is arranged for driving a first input signal to generate an output signal. The second driving circuit is arranged for driving the output signal. The pull up circuit is arranged for selectively controlling the second driving circuit to pull up the output signal according to the first input signal and a second input signal. The pull down circuit is arranged for selectively controlling the second driving circuit to pull down the output signal according to the first input signal and the second input signal.

Claims (26)

1. An input buffer, comprising:

a first driving circuit, arranged for receiving a first input signal to generate an output signal;

a second driving circuit, arranged for driving the output signal;

a pull up circuit, arranged for selectively controlling the second driving circuit to pull up the output signal according to the first input signal and a second input signal; and

a pull down circuit, arranged for selectively controlling the second driving circuit to pull down the output signal according to the first input signal and the second input signal;

wherein the second driving circuit comprises:

a first transistor, having a first terminal, a second terminal, and a third terminal, wherein the first terminal is coupled to a first reference voltage, the second terminal is coupled to the pull up circuit, and the third terminal is coupled to the output signal; and

a second transistor, having a first terminal, a second terminal, and a third terminal, wherein the first terminal of the second transistor is coupled to the output signal, the second terminal of the second transistor is coupled to the pull down circuit, and the third terminal of the second transistor is coupled to a second reference voltage.

2. The input buffer of claim 1 , wherein when the pull up circuit controls the second driving circuit to pull up the output signal, the pull down circuit does not control the second driving circuit to pull down the output signal; and when the pull down circuit controls the second driving circuit to pull down the output signal, the pull up circuit does not control the second driving circuit to pull up the output signal.

3. The input buffer of claim 1 , wherein the first driving circuit comprises:

a first transistor, having a first terminal, a second terminal, and a third terminal, wherein the first terminal is coupled to a first reference voltage, the second terminal is coupled to the first input signal, and the third terminal is coupled to the output signal; and

a second transistor, having a first terminal, a second terminal, and a third terminal, wherein the first terminal of the second transistor is coupled to the output signal, the second terminal of the second transistor is coupled to the first input signal, and the third terminal of the second transistor is coupled to a second reference voltage.

4. The input buffer of claim 3 , wherein the first transistor is a PMOS transistor, and the second transistor is an NMOS transistor.

5. The input buffer of claim 1 , wherein the first transistor is a PMOS transistor, and the second transistor is an NMOS transistor.

6. The input buffer of claim 1 , wherein the pull up circuit comprises:

a first transistor, having a first terminal, a second terminal, and a third terminal, wherein the first terminal is coupled to a reference voltage, the second terminal is coupled to the second input signal, and the third terminal is coupled to the second driving circuit; and

a second transistor, having a first terminal, a second terminal, and a third terminal, wherein the first terminal of the second transistor is coupled to the first input signal, the second terminal of the second transistor is coupled to the second input signal, and the third terminal of the second transistor is coupled to the third terminal of the first transistor.

7. The input buffer of claim 6 , wherein the first transistor is a PMOS transistors, and the second transistor is an NMOS transistor.

8. The input buffer of claim 1 , wherein the pull down circuit comprises:

a first transistor, having a first terminal, a second terminal, and a third terminal, wherein the first terminal is coupled to a reference voltage, the second terminal is coupled to the second input signal, and the third terminal is coupled to the second driving circuit; and

a second transistor, having a first terminal, a second terminal, and a third terminal, wherein the first terminal of the second transistor is coupled to the first input signal, the second terminal of the second transistor is coupled to the second input signal, and the third terminal of the second transistor is coupled to the third terminal of the first transistor.

9. The input buffer of claim 8 , wherein the first transistor is an NMOS transistor, and the second transistor is a PMOS transistor.

10. The input buffer of claim 1 , further comprising:

a control transistor, having a first terminal, a second terminal, and a third terminal, wherein the first terminal is coupled to the first driving circuit, the second terminal is coupled to a control signal, and the third terminal is coupled to a reference voltage.

11. The input buffer of claim 1 , further comprising:

an inverter, having an input terminal coupled to the output signal.

Assignments (2)
CHANGE OF NAME Recorded Jun 25, 2025
From: ELITE SEMICONDUCTOR MEMORY TECHNOLOGY INC.
To: ELITE SEMICONDUCTOR MICROELECTRONICS TECHNOLOGY INC.
Reel/Frame 071703/0241 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 3, 2013
From: CHOU, MIN-CHUNG
To: ELITE SEMICONDUCTOR MEMORY TECHNOLOGY INC.
Reel/Frame 031701/0792 →
Continuity (1)
Related Publication 20150155873A1 · Jun 4, 2015