Claims
- 1. A network transceiver for supplying network data, transported via a network medium between a link partner, to a selected repeater interface, the network transceiver comprising:
an auto-negotiation unit for determining a link speed of the link partner via the network medium; first and second data busses for providing data communication with first and second repeater interfaces at respective data rates; and a multiplexer circuit for supplying the network data between the network medium and a selected one of the first and second data busses for data communication with the corresponding selected repeater interface at the corresponding data rate, based on the determined link speed of the link partner.
- 2. The transceiver according to claim 1, wherein first and second repeater interfaces are media independent interfaces conforming to IEEE Std. 802.3.
- 3. The transceiver according to claim 1, wherein at least one of the first and second repeater interfaces are shared media independent interfaces for transporting data received from the network medium and a second network medium providing communication with a second link partner.
- 4. The transceiver according to claim 3, further comprising a second multiplexer circuit for supplying network data between the second network medium and the selected repeater interface based on a determined link speed of the second link partner.
- 5. The transceiver according to claim 4, further comprising first and second physical layer transceivers for outputting network signals carrying network data from the selected repeater interface to the network medium and the second network medium, respectively.
- 6. The transceiver according to claim 5, wherein each physical layer transceiver includes first and second data rate paths, selected by the auto-negotiation unit based on the corresponding determined link speed.
- 7. The transceiver according to claim 6, wherein the first data rate path generates the corresponding network signals as MLT-3 encoded signals at 100 MB/s, and the second data rate path generates the corresponding network signals as Manchester-encoded signals at 10 MB/s.
- 8. The transceiver according to claim 7, wherein the network transceiver is integrated within a single silicon chip.
- 9. The transceiver according to claim 1, including a management port configured for supplying microprocessor control commands to the multiplexer circuit and the auto-negotiation unit, the auto-negotiation unit releasing control of the multiplexer circuit in response to selected microprocessor control commands.
- 10. The transceiver according to claim 1, including a microprocessor port coupled to said multiplexer for controlling operations of said multiplexer.
- 11. The transceiver according to claim 1, further comprising a plurality of physical layer devices recovering network data from a plurality of network media links at respective determined link speeds, the multiplexer circuit selectively steering the network data from the respective physical layer devices to the first and second data busses based on the respective determined link speeds.
- 12. The transceiver according to claim 11, including a management port configured for supplying microprocessor control commands to the multiplexer circuit and the auto-negotiation unit, the auto-negotiation unit releasing control of the multiplexer circuit in response to selected microprocessor control commands.
- 13. The transceiver according to claim 11, wherein the transceiver is integrated on a single chip.
- 14. A repeater system, comprising:
first and second repeater interfaces outputting network data at respective data rates; and a network transceiver for supplying the network data to at least one link partner via a corresponding network medium, the network transceiver comprising a multiplexer circuit for supplying the network data between a selected one of the first and second repeater interfaces and the at least one link partner according to a determined link speed of the link partner.
- 15. The system of claim 14, wherein the network transceiver further comprises first and second data busses for providing the network data to the multiplexer circuit from the first and second repeater interfaces at the respective operating speeds.
- 16. The system of claim 15, wherein the multiplexer circuit connects the first data bus to a first plurality of the link partners operating at a first determined link speed, and connects the second data bus to a second plurality of the link partners operating at a second determined link speed.
- 17. The system of claim 16, further comprising an auto-negotiation unit for determining the link speeds of the link partners, respectively.
- 18. The system according to claim 14, the network transceiver including a microprocessor port for controlling operations of said multiplexer.
- 19. A method of supplying network data between repeater interfaces having respective data rates a network medium providing communication for a link partner, the method comprising:
determining a link speed of the link partner on the network medium; and connecting the link partner to a selected one of the repeater interfaces based on the determined link speed of the link partner.
- 20. The method of claim 19, wherein the connecting step comprises:
connecting the repeater interfaces to a multiplexer circuit using a plurality of data busses, respectively; and controlling the multiplexer to connect the link partner to the one data bus connected to the selected one repeater interface.
- 21. The method of claim 20, further comprising connecting a first group of network media links for respective link partners, each operating at a first link speed, to a corresponding first of the data busses based on the first link speed and the corresponding data rate of the first of the data busses.
- 22. The method of claim 21, further comprising connecting a second group of network media links for respective link partners, each operating at a second link speed different from the first link speed, to a corresponding second of the data busses based on the second link speed and the corresponding data rate of the second of the data busses.
- 23. The method of claim 22, further comprising:
receiving a microprocessor control signal via a management port interface; and selectively connecting the network media links between the busses based on the microprocessor control signal.
RELATED APPLICATIONS
[0001] This application claims priority from provisional patent application Serial No. 60/082,183, filed on Apr. 17, 1998, (AMD ref.# C52397PRO).