IP Library Granted Patent US 11,070,409
Granted Patent B2
US 11,070,409 · App. 17/035,593 · Granted Jul 20, 2021

Wired communication system including asymmetrical physical layer devices

Inventor: William Lo (Cupertino, CA)
Assignee: Axonne, Inc.
H04L27/02H04B1/04H04B1/16H04B3/20H04B3/50H04L1/0041H04L1/0045H04L1/0059H04L7/02
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Quick Facts
Patent No.
US 11,070,409
App. No.
17/035,593
Granted
Jul 20, 2021
Kind
B2
Abstract

A first physical layer device includes a first transmitter and a first receiver. The first transmitter transmits first data to a second physical layer device over a medium at a first line rate during a first transmit period. The first receiver is configured to not receive data during the first transmit period and an echo reflection period occurring after the first transmit period. The echo reflection period is based on a length of the medium between the first physical layer device and the second physical layer device. The first receiver is configured to, after the echo reflection period, receive second data from the second physical layer device over the medium at a second line rate that is less than the first line rate.

Claims (37)

1. A first physical layer device, comprising:

a first transmitter transmitting first data to a second physical layer device over a medium at a first line rate during a first transmit period; and

a first receiver configured to:

not receive data during the first transmit period and an echo reflection period occurring after the first transmit period,

wherein the echo reflection period is based on a length of the medium between the first physical layer device and the second physical layer device; and

after the echo reflection period, receive second data from the second physical layer device over the medium at a second line rate that is less than the first line rate.

2. The first physical layer device of claim 1 , wherein the first transmitter transmits N bits per symbol and wherein the first receiver receives M bits per symbol, wherein N is greater than or equal to M.

3. The first physical layer device of claim 2 , wherein N is greater than and M is equal to 1.

4. The first physical layer device of claim 2 , wherein the first transmitter uses pulse amplitude modulation (PAM) 4 and the first receiver uses PAM 2.

5. The first physical layer device of claim 1 , further comprising an encoder to perform forward error correction on the first data and wherein the second data received by the first receiver does not include forward error correction.

6. The first physical layer device of claim 1 , further comprising an encoder to perform Reed-Solomon encoding on the first data and wherein the second data transmitted by the first transmitter does not include forward error correction.

7. The first physical layer device of claim 5 , further comprising a first-in-first-out (FIFO) buffer to receive the first data and to output the first data to the encoder.

8. The first physical layer device of claim 1 , wherein the medium comprises a single pair of wires.

9. The first physical layer device of claim 1 , wherein the medium comprises an unshielded twisted pair cable.

10. The first physical layer device of claim 1 , wherein the medium comprises a shielded twisted pair cable.

11. The first physical layer device of claim 1 , wherein the medium comprises a coaxial cable.

12. The first physical layer device of claim 1 , wherein the first data, the second data and power are transmitted on the medium.

13. A link segment comprising:

the first physical layer device of claim 1 ; and

the second physical layer device,

wherein the second physical layer device is connected to the medium and located remote from the first physical layer device, wherein the second physical layer device comprises:

a second receiver receiving the first data at the first line rate during the first transmit period; and

a second transmitter configured to:

not transmit data during the first transmit period and during a first period, equal to one-half of the echo reflection period, after the first transmit period; and

after the first period, to receive and transmit the second data on the medium at the second line rate.

14. The link segment of claim 13 , further comprising a clock recovery circuit to generate a recovered clock signal based on the first data from the first transmitter and to output the recovered clock signal to the second transmitter.

15. The link segment of claim 13 , wherein the second physical layer device operates as a master and the first physical layer device operates as a slave.

16. The link segment of claim 13 , wherein the first physical layer device operates as a master and the second physical layer device operates as a slave.

17. A physical layer device, comprising:

a first receiver receiving first data at a first line rate from a second physical layer device over a medium during a first receive period; and

a first transmitter configured to:

not transmit data during a first period, equal to one-half of an echo reflection period, after the first receive period,

wherein the echo reflection period is based on a length of the medium between the first physical layer device and the second physical layer device; and

after the first period, transmit second data to the second physical layer device over the medium at a second line rate that is less than the first line rate.

18. The first physical layer device of claim 17 , wherein the first receiver receives M bits per symbol and wherein the first transmitter transmits N bits per symbol, wherein M is greater than N.

19. The first physical layer device of claim 18 , wherein M is greater than 1 and N is equal to 1.

20. The first physical layer device of claim 18 , wherein the first transmitter uses pulse amplitude modulation (PAM) 2 and the first receiver uses PAM 4.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 7, 2021
From: LO, WILLIAM
To: AXONNE, INC.
Reel/Frame 054845/0346 →
Continuity (4)
Provisional Application 62961442 · Jan 15, 2020
Provisional Application 62933464 · Nov 10, 2019
Provisional Application 62907039 · Sep 27, 2019
Related Publication 20210105160A1 · Apr 8, 2021