IP Library Granted Patent US 7,233,466
Granted Patent B2
US 7,233,466 · App. 10/631,803 · Granted Jun 19, 2007

Input protection circuit

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Quick Facts
Patent No.
US 7,233,466
App. No.
10/631,803
Granted
Jun 19, 2007
Kind
B2
Abstract

An input protection circuit includes an inverting amplifier circuit which converts the potential of an input signal input in such a way that the potential of the input signal lies in the input range of the potential range of a signal inputtable to an IC internal circuit. One protection diode is connected to a virtual ground node between an input resistor and an operational amplifier and a positive power-supply terminal to allow the input signal which has excessively exceeded the input range on the positive power-supply terminal side to flow toward the positive power-supply terminal, and another protection diode is connected to an arbitrary point between an input terminal and the input resistor and a negative power-supply terminal to allow the input current of the input signal which has excessively exceeded the input range on the negative power-supply terminal side to flow toward the input terminal from the negative power-supply terminal, thereby protecting the IC internal circuit.

Claims (23)

1. An input protection circuit for protecting an internal circuit from an excessive signal originated from static electricity, comprising:

input signal conversion section which has at least an input resistor, a feedback resistor and an operational amplifier having an input, and converts a potential of an input signal input from an input terminal in such a way that said potential of said input signal lies in an input range or a range of a signal potential inputtable to said internal circuit;

first protection section, connected to a virtual ground node between said input resistor and said operational amplifier and a first power-supply potential, for protecting said internal circuit by allowing an input current of said input signal to flow toward said first power-supply potential when said potential of said input signal excessively exceeds said input range on the said first power-supply potential side; and

second protection section, connected to an arbitrary point between said input terminal and said input resistor and a second power-supply potential, for protecting said internal circuit by allowing said input current to flow toward said input terminal from said second power-supply potential when said potential of said input signal excessively exceeds said input range on the second power-supply potential side,

wherein the first protection section is connected to a first node that also connects the input of the operational amplifier, the feedback resistor and the input resistor.

2. The input protection circuit according to claim 1 , wherein said input signal conversion section converts said potential of said input signal input from said input terminal in such a way that said potential of said input signal lies in said input range when said potential of said input signal exceeds said first power-supply potential or said second power-supply potential.

3. The input protection circuit according to claim 1 , wherein said operational amplifier changes a potential at said virtual ground node by changing a bias potential so as to convert said potential of said input signal input from said input terminal in such a way that said potential of said input signal having exceeded said input range lies in said input range.

4. The input protection circuit according to claim 1 , wherein said feedback resistor has a plurality of resistors and a switch for switching connection of said plurality of resistors.

5. The input protection circuit according to claim 1 , wherein said operational amplifier is a differential operational amplifier to which said input signal is differentially input.

6. The input protection circuit according to claim 1 , wherein the first power-supply potential supplies a first power level to the internal circuit, and that the second power-supply potential supplies a second power level less than the first power level to the internal circuit.

7. The input protection circuit according to claim 1 , wherein the first protection section consists of a first diode and the second protection section consists of a second diode.

8. The input protection circuit according to claim 1 , wherein said operational amplifier is biased by a voltage between said first power-supply potential and said second power-supply potential.

9. An input protection circuit for protecting an internal circuit from an excessive signal originated from static electricity, comprising:

input signal conversion means which has at least input resistor means, feedback resistor means and operational amplifier means and converts a potential of an input signal input from an input terminal in such a way that said potential of said input signal lies in an input range or a range of a signal potential inputtable to said internal circuit;

first protection means, connected to an arbitrary point between said input terminal and said input resistor means and a first power-supply potential, for protecting said internal circuit by allowing an input current of said input signal to flow toward said first power-supply potential when said potential of said input signal excessively exceeds said input range on the said first power-supply potential side; and

second protection means, connected to a virtual ground node between said input resistor means and said operational amplifier means and a second power-supply potential, for protecting said internal circuit by allowing said input current to flow toward said input terminal from said second power-supply potential when said potential of said input signal excessively exceeds said input range on the second power-supply potential side,

wherein the first protection means is connected to a first node that also connects the input terminal and the input resistor means, and that the second protection means is connected to a second node that also connects the input resistor means and the operational amplifier means.

10. The input protection circuit according to claim 9 , wherein said input signal conversion means converts said potential of said input signal input from said input terminal in such a way that said potential of said input signal lies in said input range when said potential of said input signal exceeds said first power-supply potential or said second power-supply potential.

11. The input protection circuit according to claim 9 , wherein said operational amplifier means changes a potential at said virtual ground node by changing a bias potential so as to convert said potential of said input signal input from said input terminal in such a way that said potential of said input signal having exceeded said input range lies in said input range.

12. The input protection circuit according to claim 9 , wherein said feedback resistor means has a plurality of resistors and a switch for switching connection of said plurality of resistors.

13. The input protection circuit according to claim 9 , wherein said operational amplifier means is a differential operational amplifier to which said input signal is differentially input.

14. The input protection circuit according to claim 9 , wherein the first power-supply potential supplies a first power level to the internal circuit, and that the second power-supply potential supplies a second power level less than the first power level to the internal circuit.

15. The input protection circuit according to claim 9 , wherein the first protection means consists of a first diode and the second protection means consists of a second diode.

Assignments (2)
CHANGE OF NAME Recorded Dec 22, 2010
From: NEC ELECTRONICS CORPORATION
To: RENESAS ELECTRONICS CORPORATION
Reel/Frame 025525/0145 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 1, 2003
From: YAMAGUCHI, MOTOI
To: NEC ELECTRONICS CORPORATION
Reel/Frame 014359/0821 →