IP Library › Granted Patent US 10,256,920
Granted Patent B2
US 10,256,920 · App. 15/170,019 · Granted Apr 9, 2019

Mode-conversion digital canceller for high bandwidth differential signaling

Inventors: Eyran Lida (Kfar Ha-Oranim, IL); Aviv Salamon (Raanana, IL); Gaby Gur Cohen (Tel-Mond, IL); Israel Greiss (Raanana, IL)
Assignee: Valens Semiconductor Ltd.
H04B15/00H04B1/1027H04B1/38H04L25/03885
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Quick Facts
Patent No.
US 10,256,920
App. No.
15/170,019
Granted
Apr 9, 2019
Kind
B2
Abstract

Systems and methods for recovering rapidly from a mode-conversion of a common mode interference. One exemplary transceiver includes: a slicer configured to generate slicing decisions and slicing errors based on a differential signal, transmitted at a rate above 500 Mbps, which is received from a second transceiver; and a common mode sensor analog front end (CMS-AFE) configured to sense a common mode component of the differential signal. The CMS-AFE is coupled to a fast-adaptive mode-conversion canceller (FA-MCC) configured to generate a compensation signal that compensates for differential interferences that are correlated with the common mode component. Wherein, within less than 1 millisecond from an occurrence of a differential interference that causes the packet loss to exceed 10% as a result of the mode-conversion, the transceiver is configured to utilize the slicing errors to adapt the FA-MCC to a level that reduces the packet loss rate to below 1%.

Claims (16)

1. A transceiver configured to recover rapidly from a mode-conversion of a common mode interference, comprising:

a slicer configured to generate slicing decisions and slicing errors based on a differential signal, transmitted at a rate above 500 Mbps, which is received from a second transceiver;

a common mode sensor analog front end (CMS-AFE) configured to sense a common mode component of the differential signal;

the CMS-AFE is coupled to a fast-adaptive mode-conversion canceller (FA-MCC) configured to generate a compensation signal that compensates for differential interferences that are correlated with the common mode component; and

within less than 1 millisecond from an occurrence of a differential interference that causes packet loss rate above 10% as a result of the mode-conversion, the transceiver is configured to utilize the slicing errors to adapt the FA-MCC to a level that reduces the packet loss rate to below 1%.

2. The transceiver of claim 1 , further comprising a receiver analog front end (Rx-AFE) configured to receive the differential signal, and feed it to a module comprising at least one of the following: an equalizer, and a canceller; wherein the module generates an equalized signal.

3. The transceiver of claim 1 , wherein after the occurrence of the differential interference that caused the packet loss rate to exceed 10%, the transceiver is configured to indicate the second transceiver to reduce the rate of transmitted data in order to improve detection rate at the transceiver, which improves the accuracy of the slicing errors, which enables the rapid adaptation of the FA-MCC within less than 1 millisecond.

4. The transceiver of claim 1 , wherein the transceiver is implemented on an integrated circuit having limited resources; and the second transceiver comprises a limited-size buffer having capacity sufficient to store all packets that are transmitted when transmitting for a period lasting no more than 40,000 symbols.

5. The transceiver of claim 1 , wherein within less than 100 microseconds from the occurrence of a differential interference that caused the packet loss rate to exceed 50% as a result of the mode-conversion, the transceiver is configured to utilize the slicing errors to adapt the FA-MCC to a level that reduces the packet loss rate to below 1%.

6. A method for achieving rapid recovery from a mode-conversion of common mode interference, comprising:

generating, by a slicer, slicing decisions and slicing errors based on a differential signal transmitted at a rate above 500 Mbps, which is received from a transceiver;

sensing, by a common mode sensor analog front end (CMS-AFE), a common mode component of the differential signal;

generating, by a fast-adaptive mode-conversion canceller (FA-MCC) coupled to the CMS-AFE, a compensation signal that compensates for differential interferences that are correlated with the common mode component; and

within less than 1 millisecond from an occurrence of a differential interference, which caused a packet loss rate resulting from the mode-conversion to exceed 10%, utilizing the slicing errors for adapting the FA-MCC to a level that reduces the packet loss rate to below 1%.

7. The method of claim 6 , wherein after the occurrence of the differential interference that caused the packet loss rate to exceed 10%, indicating the transceiver to reduce the rate of transmitted data in order to improve the accuracy of the slicing errors, which enables the rapid adaptation of the FA-MCC within less than 1 millisecond.

8. The method of claim 6 , wherein utilizing the slicing errors for adapting the FA-MCC to the level that reduces the packet loss rate to below 1% occurs within less than 100 microseconds from the occurrence of the differential interference that caused the packet loss rate to exceed 10%.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 7, 2016
From: LIDA, EYRAN; SALAMON, AVIV; COHEN, GABY GUR; GREISS, ISRAEL
To: VALENS SEMICONDUCTOR LTD.
Reel/Frame 039094/0062 →
Continuity (5)
Continuation In Part 15006049 · Jan 25, 2016
Provisional Application 62317509 · Apr 2, 2016
Provisional Application 62107483 · Jan 25, 2015
Provisional Application 62286930 · Jan 25, 2016
Related Publication 20160277127A1 · Sep 22, 2016