IP Library Granted Patent US 10,334,059
Granted Patent B2
US 10,334,059 · App. 15/436,838 · Granted Jun 25, 2019

Network for transporting ethernet and time sensitive data

Inventors: Eyran Lida (Kfar Ha-Oranim, IL); Nadav Banet (Kadima, IL); Aviv Salamon (Raanana, IL)
Assignee: Valens Semiconductor Ltd.
H04L67/16H04B3/20H04L1/0072H04L12/18H04L12/2832H04L12/2838H04L12/6418H04L43/0847H04L47/32H04L49/555H04L49/557H04L69/22G09G2370/20H04L2012/2849
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Quick Facts
Patent No.
US 10,334,059
App. No.
15/436,838
Granted
Jun 25, 2019
Kind
B2
Abstract

Method and network for connecting a first end device to a network. One method includes the following steps: supporting, by a common data link layer, both Ethernet protocol and time sensitive network protocol; utilizing the Ethernet protocol for discovering, by the first end device, at least one other end device that is connected to the network; and utilizing the time sensitive network protocol for sending time sensitive data by the first end device to the at least one other end device over the network.

Claims (28)

1. A method for connecting a first end device to a network, comprising:

supporting, by a common data link layer, both Ethernet protocol and time sensitive network protocol;

utilizing the Ethernet protocol for discovering, by the first end device, at least one other end device that is connected to the network; wherein the at least one other end device utilizes Ethernet protocol to be discovered;

utilizing the time sensitive network protocol for sending time sensitive data by the first end device to the at least one other end device over the network; wherein the network is an asymmetric network having a downstream direction and an upstream direction; and

simultaneously determining and analyzing downstream paths of the asymmetric network using broadcast packets; wherein a first downstream network node broadcasts a broadcast packet comprising at least one updatable accumulative field, via first and second downstream links, to first and second additional network nodes, respectively, which are connected to the first network node; and each of the first and second additional network nodes is updating the updatable accumulative field of each broadcast packet with data related to a network parameter associated with the additional network node.

2. The method of claim 1 , wherein the network is HDBaseT®.

3. The method of claim 1 , wherein the first and second additional network nodes and following network nodes continue broadcasting and updating the broadcast packets until reaching the ends of the paths.

4. The method of claim 3 , wherein the at least one updatable accumulative field is related to a capacity of each node to transport packets, and each broadcast packet that reached the end of the path stores accumulated numerical values associated with the capacity of its path to transport packets.

5. The method of claim 1 , wherein the broadcast packets are sent using the Ethernet protocol.

6. A network, comprising:

a processor configured to run a common data link layer configured to support both Ethernet protocol and time sensitive network protocol;

a first end device configured to discover, using the Ethernet protocol, at least one other end device connected to the network; wherein the at least one other end device utilizes the Ethernet protocol to be discovered;

the first end device is further configured to utilize the time sensitive network protocol to send time sensitive data to the at least one other end device over the network; wherein the network is an asymmetric network having a downstream direction and an upstream direction; and

the asymmetric network is configured to simultaneously determine and analyzes downstream paths of the asymmetric network using broadcast packets; wherein a first downstream network node broadcasts a broadcast packet comprising at least one updatable accumulative field, via first and second downstream links, to first and second additional network nodes, respectively, which are connected to the first network node; and each of the first and second additional network nodes is configured to update the updatable accumulative field of each broadcast packet with data related to a network parameter associated with the additional network node.

7. The network of claim 6 , wherein the network is HDBaseT®.

8. The network of claim 6 , wherein a common data link layer is used by the first end device to transport both Ethernet data and the time sensitive data.

9. The network of claim 6 , wherein the network is configured to transmit bidirectionally over the network Ethernet data using the Ethernet protocol, and to transmit unidirectionally over the network the time sensitive data using the time sensitive network protocol.

10. The network of claim 6 , wherein the first and second additional network nodes and following network nodes continue to broadcast and update the broadcast packets until reaching the ends of the paths.

11. The network of claim 10 , wherein the at least one updatable accumulative field is related to a capacity of each node to transport packets, and the broadcast packets that reached the ends of the paths store accumulated numerical values associated with the capacity of their respective paths to transport packets.

12. The network of claim 6 , wherein the broadcast packets are sent using the Ethernet protocol.

13. The network of claim 6 , wherein the at least one updatable accumulative field stores an accumulated numerical value related to the accumulation of the network parameters along a path connecting the first network node and the node that stores the broadcast packet.

14. A method for connecting a first end device to a network, comprising:

supporting, by the network, transport of command and control messages using Ethernet protocol;

supporting, by the network, transport of time sensitive data streams using a time sensitive network protocol;

using the Ethernet protocol, by the first end device, to send command and control messages to at least one other end device connected to the network; wherein sending the command and control messages facilitates transport of the time sensitive data streams between the first end device and the at least one other end device, and the network is an asymmetric network having a downstream direction and an upstream direction;

using a time sensitive network protocol, by the first end device, to transport the time sensitive data streams between the first end device and the at least one other end device, using the time sensitive network protocol; and

simultaneously determining and analyzing downstream paths of the asymmetric network using broadcast packets; wherein a first downstream network node broadcasts a broadcast packet comprising at least one updatable accumulative field, via first and second downstream links, to first and second additional network nodes, respectively, which are connected to the first network node; and each of the first and second additional network nodes is updating the updatable accumulative field of each broadcast packet with data related to a network parameter associated with the additional network node.

15. The method of claim 14 , further comprising using a common data link layer, by the first end device, to transport both the command and control messages and the time sensitive data streams.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 1, 2017
From: LIDA, EYRAN; BANET, NADAV; SALAMON, AVIV
To: VALENS SEMICONDUCTOR LTD.
Reel/Frame 041406/0066 →
Continuity (4)
Continuation 14518637 · Oct 20, 2014
Continuation 13169877 · Jun 27, 2011
Provisional Application 61358917 · Jun 27, 2010
Related Publication 20170163744A1 · Jun 8, 2017
Cited By (2)
US 12,316,468 US 12,348,323