IP Library Granted Patent US 9,436,250
Granted Patent B1
US 9,436,250 · App. 13/330,635 · Granted Sep 6, 2016

Apparatus for improving power consumption of communication circuitry and associated methods

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Quick Facts
Patent No.
US 9,436,250
App. No.
13/330,635
Granted
Sep 6, 2016
Kind
B1
Abstract

An integrated circuit (IC) includes communication circuitry, a body bias generator, and a controller. The communication circuitry includes a physical medium attachment (PMA) and a physical coding sublayer (PCS). The body bias generator provides body bias signals to the PMA and PCS. The controller controls the body bias generator such that the body bias signals are controlled to improve a power consumption of the communication circuitry.

Claims (28)

1. An integrated circuit (IC), comprising:

communication circuitry, comprising a physical medium attachment (PMA) and a physical coding sublayer (PCS), to communicate with a communication channel;

a body bias generator to provide body bias signals to the PMA and PCS; and

a controller to control the body bias generator,

wherein the body bias signals are controlled to improve a power consumption of the communication circuitry, and wherein the body bias signals are controlled by monitoring a bit error rate (BER) of the communication channel and controlling the body bias signals based on the monitored bit error rate.

2. The integrated circuit (IC) according to claim 1 , wherein the communication circuitry further comprises data source/destination circuitry.

3. The integrated circuit (IC) according to claim 2 , wherein the body bias generator provides a body bias signal to the data source/destination circuitry.

4. The integrated circuit (IC) according to claim 3 , wherein the body bias signal provided to data source/destination circuitry to improve a power consumption of the communication circuitry.

5. The integrated circuit (IC) according to claim 4 , wherein the body bias provided to the data source/destination circuitry is applied to one or more transistors in the data source/destination circuitry.

6. The integrated circuit (IC) according to claim 1 , wherein the body bias signals provided to the PMA and PCS are applied to one or more transistors in the PMA and PCS.

7. The integrated circuit (IC) according to claim 1 , wherein the body bias signals are dynamically reconfigured.

8. The integrated circuit (IC) according to claim 7 , wherein the IC comprises programmable logic and programmable interconnect coupled to the communication circuitry.

9. The integrated circuit (IC) according to claim 1 , wherein the body bias signals are controlled in response to input provided by a user of the IC.

10. The integrated circuit (IC) according to claim 9 , wherein the IC comprises programmable logic and programmable interconnect coupled to the communication circuitry.

11. An integrated circuit (IC), comprising:

communication circuitry, comprising a physical medium attachment (PMA) and a physical coding sublayer (PCS), to communicate with a communication channel;

a body bias generator to provide body bias signals to the PMA and PCS; and

wherein the body bias signals are dynamically reconfigured during operation of the IC to improve a power consumption of the communication circuitry, and wherein the body bias signals are controlled by monitoring a bit error rate of the communication channel and controlling the body bias signals based on the bit error rate.

12. The integrated circuit (IC) according to claim 11 , wherein the body bias signals are dynamically reconfigured by using input provided by a user of the IC.

13. The integrated circuit (IC) according to claim 11 , wherein the body bias signals are dynamically reconfigured by using predetermined body bias values.

14. The integrated circuit (IC) according to claim 11 , wherein the body bias signals are dynamically reconfigured by calculating body bias values.

15. The integrated circuit (IC) according to claim 11 , wherein the IC comprises programmable logic and programmable interconnect coupled to the communication circuitry.

16. A method of operating an integrated circuit (IC), the method comprising:

generating body bias signals by using a body bias generator;

providing the body bias signals to a physical medium attachment (PMA) and a physical coding sublayer (PCS) in communication circuitry of the IC to communicate with a communication channel; and

controlling the body bias signals so as to improve a power consumption of the communication circuitry, wherein controlling the body bias signals further comprises monitoring a bit error rate of the communication channel and controlling the body bias signals based on the monitored bit error rate.

17. The method according to claim 16 , wherein controlling the body bias signals further comprises using input from a user of the IC to control the body bias values.

18. The method according to claim 16 , wherein controlling the body bias signals further comprises dynamically reconfiguring the body bias signals.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 1, 2022
From: INTEL CORPORATION
To: TAHOE RESEARCH, LTD.
Reel/Frame 061827/0686 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 20, 2022
From: ALTERA CORPORATION
To: INTEL CORPORATION
Reel/Frame 060778/0032 →