IP Library Granted Patent US 8,090,263
Granted Patent B2
US 8,090,263 · App. 11/895,376 · Granted Jan 3, 2012

System and method for expanding PCIe compliant signals over a fiber optic medium with no latency

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Quick Facts
Patent No.
US 8,090,263
App. No.
11/895,376
Granted
Jan 3, 2012
Kind
B2
Abstract

A system for expanding PCI Express (PCIe) compliant signals over a fiber optic medium with no latency. A standardized fiber optic transceiver is adapted to provide an optimal PCIe expansion over a fiber optic medium. Signal buffers are utilized to translate and fine-tune standardized PCIe traffic to a level of low voltage differential signaling (LVDS) that is comprehensible to a wide range of fiber optic transceivers over a wide range of interface bandwidths. The intended use for such a high-speed LVDS buffer is to strengthen and enable PCIe signals over metal (copper) cable or metal printed circuit board (PCB) traces for large PCBs, such as backplanes, server motherboards, etc. By disposing the PCIe buffer used for metal (copper) cable between the PCIe bus and the fiber optic transceiver, one can achieve the signal conditioning and translating required to allow PCIe signals to pass over the fiber optic medium.

Claims (24)

1. A system for transmitting and receiving a PCIe compliant signal over a fiber optic medium, comprising:

a PCIe card edge configured to receive an electronic PCIe compliant signal from a PCIe bus;

a PHY-layer translator configured to receive the electronic PCIe compliant signal from the PCIe card edge and condition the electronic PCIe compliant signal; and

a fiber optic laser module configured to receive the conditioned electronic PCIe compliant signal and convert the conditioned electronic PCIe compliant signal into a photonic PCIe compliant signal.

2. The system of claim 1 , further comprising a fiber optic medium configured to carry the photonic PCIe compliant signal to a remote fiber optic laser module.

3. The system of claim 1 , wherein the fiber optic laser module contains a data fiber optic laser module, and a clock fiber optic laser module.

4. The system of claim 1 , wherein the electronic PCIe compliant signal is a low voltage differential signal (LVDS).

5. The system as specified in claim 1 wherein the PHY-layer translator is configured to condition the electronic PCIe compliant signal without introducing latency.

6. The system as specified in claim 1 wherein the PHY-layer translator is configured to condition the electronic PCIe compliant signal and mitigate jitter.

7. The system as specified in claim 1 wherein the PHY-layer translator is comprised of an equalizer configured to balance and condition the electronic PCIe complaint signal.

8. The system as specified in claim 7 wherein the equalizer is configured to both attenuate and amplify the electronic PCIe compliant signal.

9. The system of claim 1 wherein the PHY-layer translator is configured to condition the electronic PCIe compliant signal in the time-domain.

10. A system for receiving a PCIe compliant signal over a fiber optic medium, comprising:

a fiber optic laser module configured to receive a photonic PCIe compliant signal and convert the photonic PCIe compliant signal into an electronic signal;

a PHY-layer translator configured to receive the electronic signal from the fiber optic laser module, and condition the electronic signal, thereby creating a conditioned electronic PCIe compliant signal; and

a PCIe card edge configured to receive the conditioned electronic PCIe compliant signal and propagate the conditioned electronic PCIe compliant signal on a PCIe bus.

11. The system of claim 10 , wherein the fiber optic laser module is configured to modify PCIe signals including data (PET/PER) and clock (REFCLK).

12. The system as specified in claim 10 wherein the PHY-layer translator is configured to condition the electronic PCIe compliant signal without buffering and storing the electronic PCIe compliant signal.

13. The system as specified in claim 10 wherein the PHY-layer translator is configured to condition the electronic PCIe compliant signal without introducing latency.

14. The system as specified in claim 10 wherein the PHY-layer translator is configured to condition the electronic PCIe compliant signal and mitigate jitter.

15. The system as specified in claim 10 wherein the PHY-layer translator is comprised of an equalizer configured to equalize the electronic PCIe complaint signal.

16. The system as specified in claim 15 wherein the equalizer is configured to both attenuate and amplify the electronic PCIe compliant signal.

17. The system as specified in claim 10 wherein the PHY-layer translator is configured to condition the electronic PCIe compliant signal without buffering and storing the electronic PCIe compliant signal.

18. The system of claim 10 wherein the PHY-layer translator is configured to condition the electronic PCIe compliant signal in the time-domain.

Assignments (6)
SECURITY INTEREST Recorded Apr 29, 2020
From: ONE STOP SYSTEMS, INC.
To: ALTO OPPORTUNITY MASTER FUND, SPC - SEGREGATED MASTER PORTFOLIO B
Reel/Frame 052531/0959 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 13, 2018
From: MISSION TECHNOLOGY GROUP, INC.
To: RJ INTELLECTUAL PROPERTIES, LLC
Reel/Frame 046627/0967 →
RELEASE OF SECURITY INTEREST Recorded Aug 15, 2016
From: COMERICA BANK
To: MISSION TECHNOLOGY, INC.
Reel/Frame 039696/0298 →
SECURITY AGREEMENT Recorded Mar 25, 2016
From: MISSION TECHNOLOGY GROUP, INC.
To: COMERICA BANK
Reel/Frame 038265/0001 →
CORRECTIVE ASSIGNMENT TO CORRECT THE NAME OF THE FIRST ASSIGNOR, PREVIOUSLY RECORDED ON REEL 019914 FRAME 0078. Recorded Nov 26, 2007
From: MUSSATT, KIP; STEFANESCU, MARIUS
To: MISSION TECHNOLOGY GROUP, INC.
Reel/Frame 020161/0202 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 3, 2007
From: MUSSATT, KIM; STEFANESCU, MARIUS
To: MISSION TECHNOLOGY GROUP, INC.
Reel/Frame 019914/0078 →
Continuity (1)
Related Publication 20090052903A1 · Feb 26, 2009