Claims
- 1. A method for determining whether a physical layer device under test is defective, the method comprising:
establishing a closed communication path between a verified physical layer device and the physical layer device under test via an optical interface of said verified physical layer device and an optical interface of the physical layer device under test; generating test packets to be communicated over said established closed communication path; receiving at least a portion of said test packets from the physical layer device under test; and comparing at least a portion of said received test packets with at least a portion of said generated test packets, to determine whether said physical layer device under test is defective.
- 2. The method according to claim 1, wherein said establishing step further comprises connecting an optical output of said verified physical layer device to an optical input of said physical layer device under test.
- 3. The method according to claim 2, wherein said connecting step further comprises:
connecting an optical transmit path of said verified physical layer device to an optical receive path of the physical layer device under test; and connecting an optical receive path of said verified physical layer device to an optical transmit path of the physical layer device under test.
- 4. The method according to claim 1, wherein further comprising configuring the physical layer device under test to operate in loopback mode.
- 5. The method according to claim 4, wherein said configuring step further comprises connecting an electrical receive path of the physical layer device under test to an electrical transmit path of the physical layer device under test.
- 6. The method according to claim 1, wherein said generating step further comprises transmitting said generated test packets from said verified physical layer device over said closed communication path to the physical layer device under test.
- 7. The method according to claim 1, wherein said comparing step further comprises:
identifying the physical layer device under test as defective if at least a selected portion of said received test packets are not equivalent to a corresponding selected portion of said generated test packets; and identifying the physical layer device under test as operational if at least a selected portion of said received test packets is equivalent to a corresponding selected portion of said generated test packets.
- 8. The method according to claim 1, further comprising initializing said verified physical layer device and said physical layer device under test to operate in a 10 Gigabit Ethernet mode.
- 9. The method according to claim 1, further comprising initializing said verified physical layer device and said physical layer device under test to operate in a fibre channel mode.
- 10. A method for determining whether a physical layer device under test is defective, the method comprising:
establishing a closed communication path between a verified physical layer device and the physical layer device under test via an electrical interface of said verified physical layer device and an electrical interface of the physical layer device under test; generating test packets to be communicated over said established closed communication path; receiving at least a portion of said test packets from the physical layer device under test; and comparing at least a portion of said received test packets with at least a portion of said generated test packets, to determine whether said physical layer device under test is defective.
- 11. The method according to claim 10, wherein said establishing step further comprises connecting an electrical output of said verified physical layer device to an electrical input of said physical layer device under test.
- 12. The method according to claim 11, wherein said connecting step further comprises:
connecting an electrical transmit path of said verified physical layer device to an electrical receive path of the physical layer device under test; and connecting an electrical receive path of said verified physical layer device to an electrical transmit path of the physical layer device under test.
- 13. The method according to claim 10, further comprising configuring the physical layer device under test to operate in loopback mode.
- 14. The method according to claim 13, wherein said configuring step further comprises connecting an optical receive path of the physical layer device under test to an optical transmit path of the physical layer device under test.
- 15. The method according to claim 10, wherein said generating step further comprises transmitting said generated test packets from said verified physical layer device over said closed communication path to the physical layer device under test.
- 16. The method according to claim 10, wherein said comparing step further comprises:
identifying the physical layer device under test as defective if at least a selected portion of said received test packets are not equivalent to a corresponding selected portion of said generated test packets; and identifying the physical layer device under test as operational if at least a selected portion of said received test packets is equivalent to a corresponding selected portion of said generated test packets.
- 17. The method according to claim 1, further comprising initializing said verified physical layer device and said physical layer device under test to operate in a 10 Gigabit Ethernet mode.
- 18. The method according to claim 1, further comprising initializing said verified physical layer device and said physical layer device under test to operate in a fibre channel mode.
- 19. A system for determining whether a physical layer device under test is defective, the system comprising:
means for establishing a closed communication path between a verified physical layer device and the physical layer device under test via an optical interface of said verified physical layer device and an optical interface of the physical layer device under test; means for generating test packets to be communicated over said established closed communication path; means for receiving at least a portion of said test packets from the physical layer device under test; and means for comparing at least a portion of said received test packets with at least a portion of said generated test packets, to determine whether said physical layer device under test is defective.
- 20. The system according to claim 19, wherein said establishing means further comprises means for connecting an optical output of said verified physical layer device to an optical input of said physical layer device under test.
- 21. The system according to claim 20, wherein said connecting means further comprises:
means for connecting an optical transmit path of said verified physical layer device to an optical receive path of the physical layer device under test; and means for connecting an optical receive path of said verified physical layer device to an optical transmit path of the physical layer device under test.
- 22. The system according to claim 19, further comprising means for configuring the physical layer device under test to operate in loopback mode.
- 23. The system according to claim 22, wherein said configuring means further comprises means for connecting an electrical receive path of the physical layer device under test to an electrical transmit path of the physical layer device under test.
- 24. The system according to claim 19, wherein said generating means further comprises means for transmitting said generated test packets from said verified physical layer device over said closed communication path to the physical layer device under test.
- 25. The system according to claim 19, wherein said comparing means further comprises:
means for identifying the physical layer device under test as defective if at least a selected portion of said received test packets are not equivalent to a corresponding selected portion of said generated test packets; and means for identifying the physical layer device under test as operational if at least a selected portion of said received test packets is equivalent to a corresponding selected portion of said generated test packets.
- 26. The system according to claim 19, wherein said verified physical layer device and said physical layer device under test operates in a 10 Gigabit Ethernet mode.
- 27. The system according to claim 19, wherein said verified physical layer device and said physical layer device under test operates in a fibre channel mode.
- 28. A system for determining whether a physical layer device under test is defective, the system comprising:
means for establishing a closed communication path between a verified physical layer device and the physical layer device under test via an electrical interface of said verified physical layer device and an electrical interface of the physical layer device under test; means for generating test packets to be communicated over said established closed communication path; means for receiving at least a portion of said test packets from the physical layer device under test; and means for comparing at least a portion of said received test packets with at least a portion of said generated test packets, to determine whether said physical layer device under test is defective.
- 29. The system according to claim 28, wherein said establishing means further comprises means for connecting an electrical output of said verified physical layer device to an electrical input of said physical layer device under test.
- 30. The system according to claim 29, wherein said connecting means further comprises:
means for connecting an electrical transmit path of said verified physical layer device to an electrical receive path of the physical layer device under test; and means for connecting an electrical receive path of said verified physical layer device to an electrical transmit path of the physical layer device under test.
- 31. The system according to claim 28, further comprising means for configuring the physical layer device under test to operate in loopback mode.
- 32. The system according to claim 31, wherein said configuring means further comprises means for connecting an optical receive path of the physical layer device under test to an optical transmit path of the physical layer device under test.
- 33. The system according to claim 28, wherein said generating means further comprises the means for transmitting said generated test packets from said verified physical layer device over said closed communication path to the physical layer device under test.
- 34. The system according to claim 28, wherein said comparing means further comprises:
means for identifying the physical layer device under test as defective if at least a selected portion of said received test packets are not equivalent to a corresponding selected portion of said generated test packets; and means for identifying the physical layer device under test as operational if at least a selected portion of said received test packets is equivalent to a corresponding selected portion of said generated test packets.
- 35. The system according to claim 28, wherein said verified physical layer device and said physical layer device under test operates in a 10 Gigabit Ethernet mode.
- 36. The system according to claim 28, wherein said verified physical layer device and said physical layer device under test operates in a fibre channel mode.
- 37. A system for determining whether a physical layer device under test is defective, the system comprising:
a connector for establishing a closed communication path between a verified physical layer device and the physical layer device under test via an optical interface of said verified physical layer device and an optical interface of the physical layer device under test; a packet generator for generating test packets to be communicated over said established closed communication path; a receiver for receiving at least a portion of said test packets from the physical layer device under test; and a packet checker for comparing at least a portion of said received test packets with at least a portion of said generated test packets, to determine whether said physical layer device under test is defective.
- 38. The system according to claim 37, wherein said connector further comprises an output port for connecting an optical output of said verified physical layer device to an optical input port of said physical layer device under test.
- 39. The system according to claim 38, wherein said connector further comprises:
a connector for connecting an optical transmit path of said verified physical layer device to an optical receive path of the physical layer device under test; and a connector for connecting an optical receive path of said verified physical layer device to an optical transmit path of the physical layer device under test.
- 40. The system according to claim 37, further comprising means for configuring the physical layer device under test to operate in loopback mode.
- 41. The system according to claim 40, wherein said configuration device further comprises a connector for connecting an electrical receive path of the physical layer device under test to an electrical transmit path of the physical layer device under test.
- 42. The system according to claim 37, wherein said packet generator further comprises a transmitter for transmitting said generated test packets from said verified physical layer device over said closed communication path to the physical layer device under test.
- 43. The system according to claim 37, wherein said packet checker further comprises:
a processor for identifying the physical layer device under test as defective if at least a selected portion of said received test packets are not equivalent to a corresponding selected portion of said generated test packets; and said processor for identifying the physical layer device under test as operational if at least a selected portion of said received test packets is equivalent to a corresponding selected portion of said generated test packets.
- 44. The system according to claim 37, wherein said verified physical layer device and said physical layer device under test operates in a 10 Gigabit Ethernet mode.
- 45. The system according to claim 37, wherein said verified physical layer device and said physical layer device under test operates in a fibre channel mode.
- 46. A system for determining whether a physical layer device under test is defective, the system comprising:
a connector for establishing a closed communication path between a verified physical layer device and the physical layer device under test via an electrical interface of said verified physical layer device and an electrical interface of the physical layer device under test; a packet generator for generating test packets to be communicated over said established closed communication path; a receiver for receiving at least a portion of said test packets from the physical layer device under test; and a packet checker for comparing at least a portion of said received test packets with at least a portion of said generated test packets, to determine whether said physical layer device under test is defective.
- 47. The system according to claim 46, wherein said connector further comprises an output port for connecting an electrical output of said verified physical layer device to an electrical input of port said physical layer device under test.
- 48. The system according to claim 47, wherein said connector further comprises:
a connecting device for connecting an electrical transmit path of said verified physical layer device to an electrical receive path of the physical layer device under test; and a connecting device for connecting an electrical receive path of said verified physical layer device to an electrical transmit path of the physical layer device under test.
- 49. The system according to claim 46, further comprising a configuration device for configuring the physical layer device under test to operate in loopback mode.
- 50. The system according to claim 49, wherein said configuration device further comprises a connector for connecting an optical receive path of the physical layer device under test to an optical transmit path of the physical layer device under test.
- 51. The system according to claim 46, wherein said packet generator further comprises a transmitter for transmitting said generated test packets from said verified physical layer device over said closed communication path to the physical layer device under test.
- 52. The system according to claim 46, wherein said packet checker further comprises:
a processor for identifying the physical layer device under test as defective if at least a selected portion of said received test packets are not equivalent to a corresponding selected portion of said generated test packets; and said processor for identifying the physical layer device under test as operational if at least a selected portion of said received test packets is equivalent to a corresponding selected portion of said generated test packets.
- 53. The system according to claim 46, wherein said verified physical layer device and said physical layer device under test operates in a 10 Gigabit Ethernet mode.
- 54. The system according to claim 46, wherein said verified physical layer device and said physical layer device under test operates in a fibre channel mode.
CROSS-REFERENCE TO RELATED APPLICATIONS/INCORPORATION BY REFERENCE
[0001] This application makes reference to, claims priority to and claims the benefit of U.S. Provisional Patent Application Serial No. 60/401,872 (Attorney Docket No. 13907US01) filed on Aug. 7, 2002.
[0002] This application also makes reference to U.S. Pat. No. 6,424,194, U.S. application Ser. No. 09/540,243 filed on Mar. 31, 2000, U.S. Pat. No. 6,389,092, U.S. Pat. No. 6,340,899, U.S. application Ser. No. 09/919,636 filed on Jul. 31, 2001, U.S. application Ser. No. 09/860,284 filed on May 18, 2001, U.S. application Ser. No. 10/028,806 filed on Oct. 25, 2001, U.S. application Ser. No. 09/969,837 filed on Oct. 1, 2001, U.S. application Ser. No. ______ entitled “Phase Adjustment in High Speed CDR Using Current DAC” filed on May 30, 2002, U.S. application Ser. No. ______ entitled “Universal Single-Ended Parallel Bus; fka, Using 1.8V Power Supply in 0.13 MM CMOS” filed on Jun. 21, 2002, and U.S. application Serial No. 60/402,097 entitled “SYSTEM AND METHOD FOR IMPLEMENTING A SINGLE-CHIP HAVING A MULTIPLE SUB-LAYER PHY” filed on Aug. 7, 2002 with attorney docket no. 13906US01.
[0003] All of the above stated applications are incorporated herein by reference in their entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60401872 |
Aug 2002 |
US |