IP Library Granted Patent US 7,301,364
Granted Patent B2
US 7,301,364 · App. 11/242,052 · Granted Nov 27, 2007

Output buffer circuit and semiconductor device

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Quick Facts
Patent No.
US 7,301,364
App. No.
11/242,052
Granted
Nov 27, 2007
Kind
B2
Abstract

Disclosed is an output buffer circuit provided with a pre-emphasis function, including a first buffer circuit, receiving a first logic signal to drive a transmission line, and a second buffer circuit. The second buffer circuit includes an inverting buffer, receiving a second logic signal that is in a predetermined logical relationship with respect to the aforementioned first logic signal, and having outputs connected in common with an output of the aforementioned first buffer circuit, a first switch, connected across the inverting buffer and a first power supply, and controlled to be turned on or off based on a signal supplied to a control terminal, and a second switch, connected across the inverting buffer and a second power supply and controlled to be turned on or off based on a signal supplied to a control terminal in association operatively with the first switch. The output buffer circuit also includes first and second capacitors across an input end of the first buffer circuit and a connection node between the inverting buffer and the first switch and across the input end of the first buffer circuit and a connection node between the inverting buffer and the second switch.

Claims (40)

1. An output buffer circuit having a function of driving a transmission line under application of pre-emphasis for a predetermined time period in case of change in a value of a logic signal to be output, comprising

at least one capacitor provided across an input side and a circuit providing said pre-emphasis of said output buffer circuit in such a manner as to suppress a jitter ascribable to a difference between a pre-emphasis on state and a pre-emphasis off state directly before a change in said logic signal.

2. The output buffer circuit according to claim 1 , comprising:

a first buffer circuit, receiving a first logic signal as an input, for driving said transmission line;

a second buffer circuit including:

a buffer, receiving a second logic signal that is in a predetermined logical relationship to said first logic signal, as an input, said buffer having an output thereof connected in common with an output of said first buffer circuit; and

at least one switch connected across said buffer and a power supply and controlled to be turned on or off based on a signal supplied to a control terminal thereof; and

at least one capacitor, provided as said at least one capacitor, and connected across an input terminal of said first buffer circuit and a connection node between said buffer and said switch in said second buffer circuit.

3. The output buffer circuit according to claim 1 comprising

a first buffer circuit, receiving a first logic signal as an input, for driving said transmission line;

a second buffer circuit including:

a buffer, receiving a second logic signal that is in a predetermined logical relationship to said first logic signal, as an input, said buffer having an output thereof connected in common with an output of said first buffer circuit; and

at least one switch connected across said buffer and said power supply and controlled to be turned on or off based on a signal supplied to a control terminal thereof; and

a capacitor, provided as said at least one capacitor, and connected across a control terminal of said switch and a connection node between said buffer and said switch in said second buffer circuit.

4. The output buffer circuit according to claim 1 , comprising:

a first buffer circuit, receiving a first logic signal as an input, for driving said transmission line;

a second buffer circuit, receiving a second logic signal that is in a predetermined logical relationship to said first logic signal as an input, said second buffer circuit having an output terminal thereof connected in common with an output terminal of said first buffer circuit; and

a capacitor, provided as said at least one capacitor, connected across an input terminal of said first buffer circuit and a common output terminal of said first and second buffer circuits.

5. The output buffer circuit according to claim 1 , comprising:

a first buffer circuit, receiving a first logic signal as an input, for driving said transmission line;

a second buffer circuit including:

a buffer, receiving a second logic signal that is in a predetermined logical relationship to said first logic signal, as an input, said buffer having an output thereof connected in common with an output of said first buffer circuit;

a first switch connected across said buffer and a first power supply and controlled to be turned on or off based on an input signal; and

a second switch connected across said buffer and a second power supply and controlled to be on or off based on a signal supplied to a control terminal thereof, in association operatively with said first switch; and

first and second capacitors, provided as said at least one capacitor, said first capacitor being connected across an input terminal of said first buffer circuit and a connection node between said buffer and said first switch in said second buffer circuit, said second capacitor being connected across an input terminal of said first buffer circuit and a connection node between said buffer and said second switch in said second buffer circuit.

6. The output buffer circuit according to claim 1 , wherein said capacitor is a capacitor between interconnections.

7. The output buffer circuit according to claim 6 , wherein the capacitance value of the capacitor is made selectable by changing over a distance between interconnections prescribing said capacitor between interconnections.

8. A semiconductor device including the output buffer circuit as set forth in claim 1 as an output buffer circuit.

9. An output buffer circuit having a function of pre-emphasis and being adapted to transmit a logic signal to a transmission line, comprising:

a first buffer circuit, receiving a first logic signal, as an input, for driving said transmission line;

a second buffer circuit including:

a buffer receiving a second logic signal that is in a predetermined logical relationship to said first logic signal, as an input, said buffer having an output thereof connected in common with an output of said first buffer circuit; and

at least one switch connected across said buffer and a power supply and controlled to be turned on or off based on a signal supplied to a control terminal thereof; and

at least one capacitor connected across an input terminal of said first buffer circuit and a connection node between said buffer and said switch in said second buffer circuit.

10. An output buffer circuit having a function of pre-emphasis and being adapted to transmit a logic signal to a transmission line, comprising:

a first buffer circuit, receiving a first logic signal as an input, for driving said transmission line;

a second buffer circuit including:

a buffer, receiving a second logic signal that is in a predetermined logical relationship to said first logic signal, as an input, said buffer having an output thereof connected in common with an output of said first buffer circuit; and

at least one switch connected across said buffer and a power supply and controlled to be turned on or off based on a signal supplied to a control terminal thereof; and

a capacitor connected across said control terminal of said switch and a connection node between said buffer and said switch.

Assignments (3)
CHANGE OF ADDRESS Recorded Nov 29, 2017
From: RENESAS ELECTRONICS CORPORATION
To: RENESAS ELECTRONICS CORPORATION
Reel/Frame 044928/0001 →
CHANGE OF NAME Recorded Nov 11, 2010
From: NEC ELECTRONICS CORPORATION
To: RENESAS ELECTRONICS CORPORATION
Reel/Frame 025346/0886 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 23, 2006
From: UENISHI, YASUTAKA
To: NEC ELECTRONICS CORPORATION
Reel/Frame 017713/0717 →