Claims
- 1. A method of optimizing signal transformation from a twisted pair transmission line to a combination transmitter and receiver for a frame-based communications network, the transmitter having a transmit output pair port for transmitting signals onto the frame-based communications network over the twisted pair transmission line, the receiver having a receive input pair port for receiving signals from the frame-based communications network over the twisted pair transmission line, comprising:
coupling a transformer between the twisted pair transmission line and each of the transmit output pair port and the receive input pair port, the transformer having a coil across the twisted pair, a transmit coil across the transmit output pair port, and a receive coil across the receive input pair port, wherein a transfer ratio between the transmit coil and the coil across the twisted pair is optimized for transmitting signals and a transfer ratio between the receive coil and the coil across the twisted pair is optimized for receiving signals.
- 2. The method of claim 1, wherein the transfer ratio between the transmit coil and the coil across the twisted pair and the transfer ratio between the receive coil and the coil across the twisted pair are optimized by optimizing transmit coil to coil across the twisted pair turns ratio and receive coil to coil across the twisted pair turns ratio to maximize respective transmit path and receive path signal to noise ratios.
- 3. The method of claim 1, wherein the twisted pair transmission line is a telephone line having a tip line and a ring line.
- 4. The method of claim 1, wherein the transmit coil to coil across the twisted pair turns ratio is designated wt:1 and the receive coil to coil across the twisted pair turns ratio is designated wr:1, such that a wr:wt ratio includes the range from 1 to 4.
- 5. A transformer apparatus for optimizing signal transformation from a twisted pair transmission line to a combination transmitter and receiver for a frame-based communications network, the transmitter having a transmit output pair port for transmitting signals onto the frame-based communications network over the twisted pair transmission line, the receiver having a receive input pair port for receiving signals from the frame-based communications network over the twisted pair transmission line, comprising:
a plurality of transformer coils coupled between the twisted pair transmission line and each of the transmit output pair port and the receive input pair port, the plurality of transformer coils including a coil across the twisted pair, a transmit coil across the transmit output pair port, and a receive coil across the receive input pair port, wherein a transfer ratio between the transmit coil and the coil across the twisted pair is optimized for transmitting signals and a transfer ratio between the receive coil and the coil across the twisted pair is optimized for receiving signals.
- 6. The transformer apparatus of claim 5, wherein the transfer ratio between the transmit coil and the coil across the twisted pair and the transfer ratio between the receive coil and the coil across the twisted pair are optimized by optimizing transmit coil to coil across the twisted pair turns ratio and receive coil to coil across the twisted pair turns ratio to maximize respective transmit path and receive path signal to noise ratios.
- 7. The transformer apparatus of claim 5, wherein the twisted pair transmission line is a telephone line having a tip line and a ring line.
- 8. The transformer apparatus of claim 5, wherein the transmit coil to coil across the twisted pair turns ratio is designated wt:1 and the receive coil to coil across the twisted pair turns ratio is designated wr:1, such that a wr:wt ratio includes the range from 1 to 4.
CROSS-REFERENCE TO RELATED APPLICATION(S)
[0001] This patent application claims the benefit of the filing date of U.S. Provisional Patent Application No. 60/197,224 filed Apr. 14, 2000; and U.S. Provisional Patent Application No. 60/196,002 filed Apr. 7, 2000; the entire contents of both of which are hereby expressly incorporated by reference.
[0002] This patent application is further related to the following U.S. Patent Applications filed concurrently herewith and commonly assigned, entitled “A Method of Sharing Information among a Plurality of Stations in a Frame-based Communications Network”, “A Method of Enhancing Network Transmission on a Priority-enabled Frame-based Communications Network”, “A Method of Determining a Start of a Transmitted Frame in a Frame-based Communications Network”, “A Method of Determining an End of a Transmitted Frame in a Frame-based Communications Network”, “A Method for Providing Dynamic Adjustment of Frame Encoding Parameters in a Frame-based Communications Network”, “A Method for Selecting Frame Encoding Parameters in a Frame-based Communications Network”, “A Method for Selecting Frame Encoding Parameters to Improve Transmission Performance in a Frame-based Communications Network”, “A Method of Determining a Collision Between a Plurality of Transmitting Stations in a Frame-based Communications Network”, “A Method of Providing Synchronous Transport of Packets Between Asynchronous Network Nodes in a Frame-based Communications Network”, “A Method of Controlling Data Sampling Clocking of Asynchronous Network Nodes in a Frame-based Communications Network”, “A Method for Distributing Sets of Collision Resolution Parameters in a Frame-based Communications Network”, “A Method and Apparatus for Transceiver Noise Reduction in a Frame-based Communications Network”, “A Method for Selecting an Operating Mode for a Frame-based Communications Network”, and “A Transceiver Method and Signal Therefor Embodied in a Carrier Wave for a Frame-based Communications Network”.
Provisional Applications (2)
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Number |
Date |
Country |
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60196002 |
Apr 2000 |
US |
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60197224 |
Apr 2000 |
US |