EP1939986B1

Local wireless communications within a device

Abstract

This record has no abstract on file.

EP1939986B1, drawing sheet 1
Sheet 1 of 26

Term

1 yearleft in the term

Expires 5 October 2027.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

9 claims: 3 independent, 6 dependent

  1. 1
    A substrate within a device (12-32, 450, 500, 550) having a first and second intra-device local transceiver, the substrate comprising:the first intra-device local transceiver (328) formed upon the substrate (300);a wave guide (316, 308) formed within the substrate operable to guide very high radio frequency (RF) signals of at least 10 GHz within the wave guide;a first substrate local transceiver (312, 304) operable to transmit the very high RF signals through the wave guide and not through space;a second substrate local transceiver (302) operable to receive the very high RF signals from the wave guide and not from space;wherein the first intra-device local transceiver is communicatively coupled to the first substrate local transceiver and is operable to wirelessly transmit low power RF signals over a wireless link radiated through space to the second intra-device local transceiver;and a third transceiver (324) communicatively coupled to at least one of the first substrate local transceiver, the second substrate local transceiver, the first intra-device local transceiver, or the second intra-device local transceiver, wherein the third transceiver is operable to transmit wireless communication signals over wireless links radiated through space to remote wireless communication devices.
  2. 5
    A device (12-32, 450, 500, 550), comprising:first and second radio transceiver integrated circuit die, the first die including a first substrate (554) and the second die including a second substrate (558);first and second substrate local transceivers (598, 602) formed within or upon the first substrate of the first radio transceiver integrated circuit die wherein the first and second substrate local transceivers are operable to communicate with each other over a first frequency band characterized by very high radio frequency signals of at least 10 GHz being transmitted through a first electromagnetic wave guide formed within the first substrate for intra-die communications and not through space;a first intra-device radio local transceiver (578) formed upon the first substrate and operably coupled to the first substrate local transceiver of the first radio transceiver integrated circuit die for supporting intra-device communications;a second intra-device radio local transceiver (590, 634) operably coupled to one of the first radio transceiver integrated circuit die via the first substrate and the second radio transceiver integrated circuit die via the second substrate, wherein the first and second intra-device radio local transceivers are operable to communicate with each other using radio frequency signals transmitted over a wireless link radiated through space and characterized by a second frequency band;and a network device remote transceiver (324) operably coupled to one of the first and second radio transceiver integrated circuit die wherein the network device remote transceiver is operable to communicate with remote network device transceivers using radio frequency signals transmitted over wireless links radiated through space and characterized by a third frequency band.
  3. 8
    A method for communications within a device, comprising:generating a first radio frequency (RF) signal of at least 10 GHz for reception by a local substrate transceiver operably disposed within or upon a substrate of a same die that houses circuitry generating the first RF signal, the first RF signal being transmitted through an electromagnetic wave guide formed within the substrate of the same die and not through space;generating a second RF signal for reception by a local intra-device transceiver operably disposed on said substrate of said same die, or on a second substrate of a second die, within said device that houses circuitry for generating the second RF signal, the second RF signal being transmitted over a wireless link radiated through space;and generating a third RF signal for reception by a remote transceiver external to said device based upon one of the first and second RF signals, the third RF signal being transmitted over wireless links radiated through space.