IP Library Granted Patent US 12,375,413
Granted Patent B2
US 12,375,413 · App. 17/911,939 · Granted Jul 29, 2025

Transmission device, reception device, and communication system

Inventor: Hiroo Takahashi (Kanagawa, JP)
Assignee: Sony Semiconductor Solutions Corporation
H04L47/2475H04L69/22
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Quick Facts
Patent No.
US 12,375,413
App. No.
17/911,939
Granted
Jul 29, 2025
Kind
B2
Abstract

Transmission adaptable to a rule of packet modification prohibition on a transmission path is disclosed. In one example, transmission includes adding a packet header for extension to packet data obtained by packing data to be transmitted, and generating an application specific payload that is protected from modification on a transmission path. Supply of the application specific payload is switched to a selected one of a plurality of packet generation circuits, wherein the plurality of packet generation circuits are arranged in parallel for each of a plurality of types of physical layers, and each of the packet generation circuits is configured to add a packet header for a physical layer different from the packet header for extension for the application specific payload. A packet for the physical layer is generated by the selected one of the plurality of packet generation circuits.

Claims (35)

1. A transmission device comprising:

an application specific payload generation circuit configured to add a packet header for extension to packet data obtained by packing data to be transmitted, and configured to generate an application specific payload that is protected from modification on a transmission path;

a plurality of packet generation circuits arranged in parallel for each of a plurality of types of physical layers,

each of the packet generation circuits being configured to add a packet header for a physical layer different from the packet header for extension for the application specific payload, and configured to generate a packet for the physical layer; and

a selector configured to switch supply of the application specific payload from the application specific payload generation circuit to a selected one of the plurality of packet generation circuits.

2. The transmission device according to claim 1 , wherein predetermined information necessary for transmitting the application specific payload as the protection range is provided in the packet header for extension.

3. The transmission device according to claim 2 , wherein the predetermined information is a packet count indicating a data length of the packet data.

4. The transmission device according to claim 1 , wherein

the selected packet generation circuit generates the packet for an encoded physical layer or an unencoded physical layer and transmits the packet to a serializer via each corresponding physical layer,

the serializer obtains the application specific payload from the packet for the encoded physical layer or the unencoded physical layer, generates the packet for a long-reach serializer-deserializer physical layer, and transmits the packet to a deserializer, and

the deserializer acquires the application specific payload from the packet for the long-reach serializer-deserializer physical layer, and generates the packet for the encoded physical layer or the unencoded physical layer.

5. A transmission device comprising:

a memory storing instructions, and

at least one processor configured to execute the instructions to perform operations comprising:

adding a packet header for extension to packet data obtained by packing data to be transmitted, and generating an application specific payload that is protected from modification on a transmission path;

switching supply of the application specific payload to a selected one of a plurality of packet generation circuits,

wherein the plurality of packet generation circuits are respectively arranged in parallel for each of a plurality of types of physical layers, and each of the packet generation circuits is configured to add a packet header for a physical layer different from the packet header for extension for the application specific payload; and

generating, by the selected one of the plurality of packet generation circuits, a packet for the physical layer.

6. The transmission device according to claim 5 , wherein predetermined information necessary for transmitting the application specific payload as the protection range is provided in the packet header for extension.

7. The transmission device according to claim 6 , wherein the predetermined information is a packet count indicating a data length of the packet data.

8. The transmission device according to claim 5 , wherein the operations further comprise:

generating, by the selected packet generation circuit, the packet for an encoded physical layer or an unencoded physical layer and transmitting the packet to a serializer via each corresponding physical layer;

obtaining, by the serializer, the application specific payload from the packet for the encoded physical layer or the unencoded physical layer, generating the packet for a long-reach serializer-deserializer physical layer, and transmitting the packet to a deserializer; and

acquiring, by the deserializer, the application specific payload from the packet for the long-reach serializer-deserializer physical layer, and generating the packet for the encoded physical layer or the unencoded physical layer.

9. A non-transitory computer readable medium storing instructions for controlling a transmission device, the instructions being executable by at least one processor to perform operations comprising:

adding a packet header for extension to packet data obtained by packing data to be transmitted, and generating an application specific payload that is protected from modification on a transmission path;

switching supply of the application specific payload to a selected one of a plurality of packet generation circuits,

wherein the plurality of packet generation circuits are arranged in parallel for each of a plurality of types of physical layers, and each of the packet generation circuits is configured to add a packet header for a physical layer different from the packet header for extension for the application specific payload; and

generating, by the selected one of the plurality of packet generation circuits, a packet for the physical layer.

10. The non-transitory computer readable medium according to claim 9 , wherein predetermined information necessary for transmitting the application specific payload as the protection range is provided in the packet header for extension.

11. The non-transitory computer readable medium according to claim 10 , wherein the predetermined information is a packet count indicating a data length of the packet data.

12. The non-transitory computer readable medium according to claim 9 , wherein the operations further comprise:

generating, by the selected packet generation circuit, the packet for an encoded physical layer or an unencoded physical layer and transmitting the packet to a serializer via each corresponding physical layer;

obtaining, by the serializer, the application specific payload from the packet for the encoded physical layer or the unencoded physical layer, generating the packet for a long-reach serializer-deserializer physical layer, and transmitting the packet to a deserializer; and

acquiring, by the deserializer, the application specific payload from the packet for the long-reach serializer-deserializer physical layer, and generating the packet for the encoded physical layer or the unencoded physical layer.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE INVENTOR'S NAME ON THE COVER SHEET PREVIOUSLY RECORDED AT REEL: 061110 FRAME: 0796. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Sep 28, 2022
From: TAKAHASHI, HIROO
To: SONY SEMICONDUCTOR SOLUTIONS CORPORATION
Reel/Frame 061568/0981 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 15, 2022
From: YAKURA, YUJI; NAKATA, MASASHI
To: SONY SEMICONDUCTOR SOLUTIONS CORPORATION
Reel/Frame 061110/0796 →
Priority Claims (1)
JP 2020-077623 · Apr 24, 2020 · national
Continuity (1)
Related Publication 20230143642A1 · May 11, 2023
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