Versatile antenna switch architecture
First Claim
1. A method for routing a plurality of RF communications signal paths in a communications device having at least a first antenna and a second antenna, wherein the signal paths comprises a plurality of receive paths and transmit paths for conveying signals in a plurality of operating modes in a first frequency range substantially between 800 MHz and 990 MHz, and a second frequency range substantially between 1600 MHz and 2500 MHz, said method comprising:
- providing a first signal path selecting part operatively connected to the first antenna;
providing a second signal path selecting part operatively connected to the second antenna;
operatively connecting the plurality of receive paths to the second signal path selecting part for selectively conveying receive signals in one of said plurality of receive paths in the second frequency range via the second antenna; and
operatively connecting the plurality of transmit and receive paths to the first signal selecting part for selectively conveying signals in one of said plurality of transmit and receive paths in the first frequency range via the first antenna.
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Litigations
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Accused Products
Abstract
A RF front-end having two antenna switches operatively connected to two separate antennas. The antenna switches can be used to route various transmit and receive paths to the antennas. In particular, one of the antenna switches has three switch position for use in selectively routing the 2 GHz receive paths, and another antenna switch has six switch positions for use in selectively routing the 2 GHz transmit paths and the 1 GHz signal paths. With the disclosed topology, the front-end can be used to support GSM and W-CDMA communications in many regional variants in the world. The supported variants include US1, US2, EU1, EU2 and EU/US modes. The same front-end can also be used in BT/WLAN connectivity. For MIMO purposes, one more antenna switch for the 2 GHz receive paths can be added to the same RF front-end.
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Citations
43 Claims
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1. A method for routing a plurality of RF communications signal paths in a communications device having at least a first antenna and a second antenna, wherein the signal paths comprises a plurality of receive paths and transmit paths for conveying signals in a plurality of operating modes in a first frequency range substantially between 800 MHz and 990 MHz, and a second frequency range substantially between 1600 MHz and 2500 MHz, said method comprising:
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providing a first signal path selecting part operatively connected to the first antenna; providing a second signal path selecting part operatively connected to the second antenna; operatively connecting the plurality of receive paths to the second signal path selecting part for selectively conveying receive signals in one of said plurality of receive paths in the second frequency range via the second antenna; and operatively connecting the plurality of transmit and receive paths to the first signal selecting part for selectively conveying signals in one of said plurality of transmit and receive paths in the first frequency range via the first antenna. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10, 11)
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12. A signal path selection part for use in a communications device, the communications device having at least a first antenna and a second antenna for conveying signals in a plurality of operating modes in a first frequency range substantially between 800 MHz and 990 MHz and a second frequency range substantially between 1600 MHz and 2500 MHz via a plurality of transmit and receive paths, said signal path selection part comprising:
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a first signal path selecting sub-part operatively connected to the first antenna; and a second signal path selecting sub-part operatively connected to the second antenna, wherein the second signal path selecting sub-part comprises a plurality of selectable positions for operatively connecting a plurality of receive paths for selectively conveying receive signals in one of said plurality of receive paths in the second frequency range via the second antenna, and the first signal path selecting sub-part comprises a plurality of selectable positions for operatively connecting a plurality of transmit and receive paths for selectively conveying transmit signals in one of said plurality of transmit and receive paths in the first and second frequency ranges and receive signals in the first frequency range via the first antenna. - View Dependent Claims (13, 14, 15, 16, 17, 18)
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19. A communications device operable in a plurality of operating modes in a first frequency range substantially between 800 MHz and 990 MHz and a second frequency range substantially between 1600 MHz and 2500 MHz, said communications device comprising:
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a first antenna; a second antenna; and a front-end part comprising; a first signal path selecting sub-part operatively connected to the first antenna; and a second signal path selecting sub-part operatively connected to the second antenna, wherein the second signal path selecting sub-part comprises a plurality of selectable positions for operatively connecting a plurality of receive paths for selectively conveying receive signals in one of said plurality of receive paths in the second frequency range via the second antenna, and the first signal path selecting sub-part comprises a plurality of selectable positions for operatively connecting a plurality of transmit and receive paths for selectively conveying transmit signals in one of said plurality of transmit and receive paths in the first and second frequency ranges and receive signals in the first frequency range via the first antenna. - View Dependent Claims (20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30)
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31. An RF-front-end part for use in a communications device operable in a plurality of operating modes in a first frequency range substantially between 800 MHz and 990 MHz and a second frequency range substantially between 1600 MHz and 2500 MHz, the communications devices comprising a first antenna and a second antenna, said front-end part comprising:
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a first signal path selecting sub-part operatively connected to the first antenna; a second signal path selecting sub-part operatively connected to the second antenna; a plurality of receive paths operatively connected to the second signal path selecting sub-part for selectively conveying signals in one of said plurality of receive paths in the second frequency range through a plurality of filters operable in the second frequency range; a plurality of transmit paths operatively connected to the first signal path selecting sub-part for selectively conveying signals in one of said plurality of transmit and receive paths in the second frequency range through a plurality of filter operable in the second frequency range; and a plurality of transmit and receive paths operatively connected to the first signal path selecting sub-part for selectively conveying signals in the first frequency range through a plurality of filters operable in the first frequency range. - View Dependent Claims (32, 33, 34, 35, 36, 37, 38, 39, 40, 41)
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42. A signal path selection part for use in a communications device, the communications device having at least a first antenna and a second antenna for conveying signals in a plurality of operating modes in a first frequency range substantially between 800 MHz and 990 MHz and a second frequency range substantially between 1600 MHz and 2500 MHz via a plurality of transmit and receive paths, said signal path selection part comprising:
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a first means operatively connecting a plurality of transmit and receive paths to a first antenna for selectively conveying transmit signals in one of said plurality of transmit and receive paths in the first and second frequency ranges and receive signals in the first frequency range via the first antenna; and a second means operatively connecting a plurality of receive paths to a second antenna for selectively conveying receive signals in one of said plurality of receive paths in the second frequency range via the second antenna. - View Dependent Claims (43)
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Specification