Integrated transceiver with focusing antenna
10312586 ยท 2019-06-04
Assignee
Inventors
Cpc classification
H01Q1/2283
ELECTRICITY
H01Q3/16
ELECTRICITY
H01Q3/18
ELECTRICITY
H01Q1/42
ELECTRICITY
International classification
H01Q3/18
ELECTRICITY
H01Q1/22
ELECTRICITY
H01Q3/16
ELECTRICITY
H01Q3/24
ELECTRICITY
H01Q1/42
ELECTRICITY
Abstract
An apparatus includes a fully integrated self-contained radio device including an antenna and an antenna element. The radio device and the antenna element are arranged such that a radio signal emitted by the antenna of the radio device is amplified in at least one predefined spatial direction.
Claims
1. An apparatus, comprising: a radio device comprising an antenna; and an antenna element, wherein the radio device and the antenna element are arranged such that a radio signal emitted by the antenna of the radio device is amplified in at least one predefined spatial direction, wherein the radio device is a fully integrated self-contained radio device comprising a housing or a package for housing the antenna and a radio signal processing circuit, wherein the antenna is an integrated antenna comprising an antenna chip, an antenna in package or an antenna board; wherein the radio device comprises an interface configured to receive a digital data signal and to output a digital data signal, wherein the radio signal processing circuit is coupled between the interface and to the antenna, wherein, when transmitting the radio signal, the radio signal processing circuit is configured to receive the digital data signal from the interface, to process the received digital data signal for generating the radio signal, and to provide the radio signal to the antenna for emitting the radio signal, and wherein, when receiving the radio signal, the radio signal processing circuit is configured to receive the radio signal from the antenna, to process the received radio signal for generating the digital data signal, and to provide the digital data signal to the interface; wherein the antenna element is a passive focusing antenna; and wherein the apparatus comprises a mounting structure configured to receive the radio device at a first position and to receive the antenna element at a second position, wherein the mounting structure is configured to provide for a mechanical adjustment of the relative position between the antenna element and the radio device to steer a beam emitted by the antenna element.
2. The apparatus of claim 1, wherein the radio device and the antenna element are arranged such that the antenna element directs a radio signal received from the at least one predefined spatial direction to the antenna of the radio device.
3. The apparatus of claim 1, wherein the radio device further comprises at least one of a control signal interface configured to receive a control signal and a power supply interface configured to receive a power signal.
4. The apparatus of claim 1, wherein the interface of the radio device is configured to receive at least one of a control signal and a power supply signal.
5. The apparatus of one of claims 1 to 4, wherein the interface of the radio device comprises a serial interface.
6. The apparatus of claim 1, wherein the antenna of the radio device emits a wide angled radio signal with an emission angle larger than the radio signal reflected by the antenna element.
7. The apparatus of claim 1, wherein the antenna element is configured to focus energy transmitted by the antenna of the radio device towards a focus point, and to focus received energy towards the antenna of the radio device.
8. The apparatus of claim 1, wherein the antenna element comprises a reflectarray antenna or a planar lens antenna.
9. An apparatus, comprising: a radio device comprising an antenna; and an antenna element, wherein the radio device and the antenna element are arranged such that a radio signal emitted by the antenna of the radio device is amplified in at least one predefined spatial direction, wherein the radio device is a fully integrated self-contained radio device comprising a housing or a package for housing the antenna and a radio signal processing circuit, wherein the antenna is an integrated antenna comprising an antenna chip, an antenna in package or an antenna board; wherein the radio device comprises an interface configured to receive a digital data signal and to output a digital data signal, wherein the radio signal processing circuit is coupled between the interface and the antenna, wherein, when transmitting the radio signal, the radio signal processing circuit is configured to receive the digital data signal from the interface, to process the received digital data signal for generating the radio signal, and to provide the radio signal to the antenna for emitting the radio signal, and wherein, when receiving the radio signal, the radio signal processing circuit is configured to receive the radio signal from the antenna, to process the received radio signal for generating the digital data signal, and to provide the digital data signal to the interface; wherein the antenna element is a passive focusing antenna; wherein the apparatus comprises a mounting structure configured to receive the radio device at a first position and to receive the antenna element at a second position, wherein the mounting structure is configured to provide for a mechanical adjustment of the relative position between the antenna element and the radio device to steer a beam emitted by the antenna element; and wherein the apparatus comprises at least one further fully integrated self-contained radio device comprising an antenna, wherein the radio device and the further radio device are arranged with respect to the antenna element such that radio signals emitted by the antennas of the radio devices are amplified in at least two different spatial directions.
10. A system, comprising: a first apparatus; and a plurality of second apparatus arranged at different positions distant from the first apparatus so as to allow for a point-to-multipoint communication or relay communication, wherein the first apparatus comprises: a radio device comprising an antenna; and an antenna element, wherein the radio device and the antenna element are arranged such that a radio signal emitted by the antenna of the radio device is amplified in at least one predefined spatial direction, wherein the radio device is a fully integrated self-contained radio device comprising a housing or a package for housing the antenna and a radio signal processing circuit, wherein the antenna is an integrated antenna comprising an antenna chip, an antenna in package or an antenna board; wherein the radio device comprises an interface configured to receive a digital data signal and to output a digital data signal, wherein the radio signal processing circuit is coupled between the interface and the antenna, wherein, when transmitting the radio signal, the radio signal processing circuit is configured to receive the digital data signal from the interface, to process the received digital data signal for generating the radio signal, and to provide the radio signal to the antenna for emitting the radio signal, and wherein, when receiving the radio signal, the radio signal processing circuit is configured to receive the radio signal from the antenna, to process the received radio signal for generating the digital data signal, and to provide the digital data signal to the interface; wherein the antenna element is a passive focusing antenna; wherein the first apparatus comprises a mounting structure configured to receive the radio device at a first position and to receive the antenna element at a second position, wherein the mounting structure is configured to provide for a mechanical adjustment of the relative position between the antenna element and the radio device to steer a beam emitted by the antenna element; and wherein the first apparatus comprises at least one further fully integrated self-contained radio device comprising an antenna, wherein the radio device and the further radio device are arranged with respect to the antenna element such that radio signals emitted by the antennas of the radio devices are amplified in at least two different spatial directions, and wherein the second apparatus comprises: a radio device comprising an antenna; and an antenna element, wherein the radio device and the antenna element are arranged such that a radio signal emitted by the antenna of the radio device is amplified in at least one predefined spatial direction, wherein the radio device is a fully integrated self-contained radio device comprising a housing or a package for housing the antenna and a radio signal processing circuit, wherein the antenna is an integrated antenna comprising an antenna chip, an antenna in package or an antenna board; wherein the radio device comprises an interface configured to receive a digital data signal and to output a digital data signal, wherein the radio signal processing circuit is coupled between the interface and the antenna, wherein, when transmitting the radio signal, the radio signal processing circuit is configured to receive the digital data signal from the interface, to process the received digital data signal for generating the radio signal, and to provide the radio signal to the antenna for emitting the radio signal, and wherein, when receiving the radio signal, the radio signal processing circuit is configured to receive the radio signal from the antenna, to process the received radio signal for generating the digital data signal, and to provide the digital data signal to the interface; wherein the antenna element is a passive focusing antenna; and wherein the second apparatus comprises a mounting structure configured to receive the radio device at a first position and to receive the antenna element at a second position, wherein the mounting structure is configured to provide for a mechanical adjustment of the relative position between the antenna element and the radio device to steer a beam emitted by the antenna element.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Embodiments of the present invention will be detailed subsequently referring to the appended drawings, in which:
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DETAILED DESCRIPTION OF THE INVENTION
(8) In the following, embodiments of the present invention will be described in further detail with respect to the accompanying drawings in which elements having the same or a similar function have associated therewith the same reference signs.
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(10) In accordance with examples, the focusing reflector 108 is built as a passive reflectarray comprising a printed circuit board 112 on which a number of reflecting elements or patches 114 of a specific form or shape are placed. The design of the individual reflecting elements 114 causes planar radio waves coming from a certain direction to be focused towards a focus point. The size and the properties of the reflector and the patches are adapted to the transmit pattern of the transceiver antenna, the feeding antenna, and to the position of the transceiver 100 relative to the reflector 108.
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(12) As is schematically depicted in
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(14) While
(15) Providing the possibility for a mechanical adjustment for the transceiver position is advantageous as it allows to steer the beam 110 emitted from the reflector 108 or the receive signals from different directions via the reflector 108.
(16) In accordance with further embodiments, two or more integrated transceivers 100 may be provided.
(17) In accordance with further embodiments, the present invention provides a system integrating multiple transceivers and reflectors so as to allow for a point-to-multipoint communication and/or a relay communication.
(18) The present invention has been described in the context of a reflectarray, however, other antenna elements providing for the focused signal 110 may be provided, for example a planar lens antenna or the like.
(19) The present invention as described above with respect to different embodiments provides a combination formed of a radio part for a digital data communication with a separate antenna element such that the radio signals emitted by the integrated antenna of the radio part or radio device are amplified in respective spatial directions, wherein the radio device is fully self-contained and exchanges data via a digital, serial interface, and the antenna element may be a reflectarray or a planar lens.
(20) Although some aspects of the described concept have been described in the context of an apparatus, it is clear that these aspects also represent a description of the corresponding method, where a block or device corresponds to a method step or a feature of a method step. Analogously, aspects described in the context of a method step also represent a description of a corresponding block or item or feature of a corresponding apparatus.
(21) While this invention has been described in terms of several advantageous embodiments, there are alterations, permutations, and equivalents which fall within the scope of this invention. It should also be noted that there are many alternative ways of implementing the methods and compositions of the present invention. It is therefore intended that the following appended claims be interpreted as including all such alterations, permutations, and equivalents as fall within the true spirit and scope of the present invention.
(22) The research work that led to these results has been promoted by the European Union.