Claims
- 1. A circuit to route signals, comprising:
A plurality of input pins to receive input signals; A plurality of output pins to transmit output signals; A plurality of connectors each wired to exactly one of the plurality of input pins and the plurality of output pins; A plurality of switches, each possessing three poles; A first plurality of wires electrically connecting exactly one input pin to a first pole of exactly one switch; A second plurality of wires each electrically connecting exactly one output pin to a second pole of exactly one switch; A third plurality of wires each electrically connecting exactly one connector to the common pole of exactly one switch; A switch matrix to transmit signals from at least one of said input pins to at least one of said output pin:
- 2. The circuit of claim 1, wherein the circuit is to be housed in a single frame.
- 3. The circuit of claim 1, wherein said circuit is to receive and transmit video signals.
- 4. The circuit of claim 1, wherein said circuit is to receive and transmit audio signals.
- 5. The circuit of claim 1, wherein said circuit is to receive and transmit data signals.
- 6. The method of claim 1, wherein said circuit has two connectors connected to each input pin in a loop-through configuration.
- 7. The method of claim 1, wherein said circuit has output pins that can be connected to more than one connector.
- 8. A method of selectively connecting one of a plurality of input receiving wires and one of a plurality of output transmitting wires to one of a plurality of selectable connectors in a signal routing circuit, the method comprising:
retrieving data representing a number of non-selectable input connectors and non-selectable output connectors and selectable input/output connectors from the circuit; receiving data through an interface from a user representing a number of desired input connectors each to be connected to an input receiving wire; comparing said number of desired input connectors to the sum of said non-selectable input connectors and a plurality of selectable input/output connectors; repeating said receiving and comparing until the sum of said non-selectable input connectors and the plurality of selectable input/output connectors equals or exceeds the number of said desired input connectors; calculating the number of available output connectors by adding the number of non-selectable input connectors, non-selectable output connectors, and selectable input/output connectors together and subtracting the number of desired input connectors therefrom; displaying the number of available output connectors and desired input connectors using a display mechanism; repeatedly connecting a selectable input/output connector to an input receiving wire until the sum of said non-selectable input connectors and the selectable input/output connectors connected to an input receiving wire equals the number of said desired input connectors; repeatedly connecting all selectable input/output connector not so connected to an input receiving wire to an output transmitting wire.
- 9. The method of claim 8, wherein said circuit receives and transmits video signals.
- 10. The method of claim 8, wherein said circuit receives and transmits audio signals.
- 11. The method of claim 8, wherein said circuit receives and transmits data signals.
- 12. The method of claim 8, wherein said circuit has two connectors connected to each input pin in a loop-through configuration.
- 13. The method of claim 8, wherein said circuit has output pins that may be connected to more than one connector.
- 14. A circuit routing signals, comprising:
a plurality of input pins to receive input signals; a plurality of output pins to transmit output signals; a plurality of connectors wired to exactly one of the plurality of input pins and one of the plurality of output pins; a switching apparatus; a first plurality of wires each electrically connecting exactly one input pin to a first pole of the switching apparatus; a second plurality of wires each electrically connecting exactly one output pin to a second pole of the switching apparatus; a third plurality of wires each electrically connecting exactly one connector to a common pole of the switching apparatus; a matrix circuit to transmit signals in one of from a subset of the input pins to a subset of the output pins, from a subset of the input pins to all of the output pins, and from all of the input pins to a subset of the output pins.
- 15. A routing circuit comprising:
a crosspoint matrix having a plurality of input pins and output pins, said crosspoint matrix connecting ones of said input pins to ones of said output pins; at least one input connector connected to one of said output pins; at least one output connector connected to one of said output pins; at least one switchable connector connected to one of said input pins and output pins via a switch.
CROSS-REFERENCE TO RELATED PATENT APPLICATIONS
[0001] This patent application claims the benefit of U.S. Provisional Patent Application Serial No. 60/264208, entitled “Routing Switcher With Variable Input/Output Architecture”, filed Jan. 24, 2001.
Provisional Applications (1)
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Number |
Date |
Country |
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60264208 |
Jan 2001 |
US |