The present invention relates to an antenna assembly for wireless applications. One aspect of the invention relates to an antenna made from a component of an electronic device used in a wireless system such as an internet gateways, decoders or other wireless or mobile device. The present invention further relates to a network of antennas and a multiband antenna comprising an antenna in accordance with the present invention.
Devices used in wireless communication systems of Wi-Fi type such as home networks or increasingly multi-mode and multi-standard devices. In some cases a single wireless device should meet IEEE-802.11 a/b/g/n standards as well as RF4CE, DECT, ZIGBee and Bluetooth standards. Such standards operate in different frequency bands and therefore require several antennas which should be integrated in the same device. This increasing demand for wireless systems compatible with different standards also increases the antenna integration constraints necessary for the operation of these systems, notably due to their number and the crucial lack of space for their integration and their positioning in the casing of the electronic device. Moreover, in such types of electronic device, one or more push-buttons are provided. In general, these push-buttons are mounted on the motherboard or PCB (printed circuit board) of the electronic device. As shown in
This frame 1 plays the role of supporting a plastic casing 2 which contains the electromechanical control mechanism of the push-button. The metal frame 1 is attached to the motherboard using two pins 3A, 3B made of conductive material, which are inserted into two plated-through holes of the motherboard or PCB 4. The two pins 3A, 3B are in general connected to the ground plane of the PCB 4. As shown more specifically in
The present invention has been devised with the foregoing in mind.
A general aspect of the present invention proposes using a component of an electronic device, having another operating function apart from an antenna function to provide an antenna for wireless applications. The component having the other operating function may be a control unit for example.
A first aspect of the invention provides an antenna assembly comprising a first radiating element formed as part of a component of an electronic device having another operating function different to an antenna function, said component comprising a conductive part and an electrically conductive mounting element for mounting the component on a substrate of the electronic device wherein the conductive part forms the first radiating element and the mounting element is electrically connected to a feed line of the antenna and to a ground plane by a shunt. In one or more embodiments the component is a user control unit for controlling operation of the electronic device.
In an embodiment at least one second radiating element is provided on the substrate of the electronic device. In this way the radiating function of the antenna is provided by a plurality of radiating parts. The at least one second radiating element may be adapted according to the wireless application.
In an embodiment, the first radiating element is disposed at a front panel of the housing.
In an embodiment the conductive part forming the first radiating element forms a conductive frame supporting the component.
In an embodiment the component further comprises a second electrically conductive element for mounting the component on the substrate the second electrically conductive element being connected to a line receiving the control signal controlling the operation of the electronic device
In an embodiment a third electrically conductive mounting element connected to a ground plane of the substrate, is provided.
In an embodiment a third electrically conductive mounting element connected to an open-circuited transmission line, is provided
A second aspect of the invention provides a network of antennas comprising at least two antenna assemblies according to any embodiment of the first aspect of the invention. In an embodiment the at least two antenna assemblies are connected to a common feed line.
A third aspect of the invention provides a dual-band antenna, comprising two antenna assemblies according to any embodiment of the first aspect of the invention. The two antenna assemblies may be connected to a common feed line.
A fourth aspect of the invention provides a user control unit for operating an electronic device, the control unit comprising
at least one control element for operating a function of the electronic device;
a conductive support frame for supporting the control element and provided with one or more support connectors for mounting on a substrate of the electronic device;
wherein the conductive support frame forms a first radiating element of an antenna for wireless applications of the electronic device and one of the mounting pins is electrically connected to a feed line to feed the antenna and shunted to ground by means of a shunt line.
In an embodiment at least one second radiating element is provided on the substrate of the electronic device.
In an embodiment, the first radiating element is disposed at a front end of the substrate of the electronic device.
In an embodiment the user control unit further comprises a second electrically conductive element for mounting the control unit on a substrate the second electrically conductive element being connected to a line receiving the control signal controlling the operation of the electronic device
In an embodiment a third electrically conductive mounting element connected to a ground plane of the substrate, is provided.
In an embodiment a third electrically conductive mounting element connected to an open-circuited transmission line, is provided.
A fifth aspect of the invention provides an electronic communication device comprising at least one antenna assembly according to any embodiment of the first aspect of the invention, a network of antennas according to any embodiment of the second aspect of the invention or a dual band antenna according to any embodiment of the third aspect of the invention.
A sixth aspect of the invention provides electronic communication device comprising a user control unit for operating the electronic device, the electronic device comprising
housing for receiving the electronic communication device;
a substrate for supporting one or more electronic components of the electronic device and
a control unit comprising
at least one control element for operating a function of the electronic device;
a conductive support frame for supporting the control element and provided with a plurality of metallic mounting pins for mounting on the substrate;
wherein the conductive support frame forms a radiating element of an antenna for wireless applications of the electronic device and one of the mounting pins is electrically connected to a feed line to feed the antenna and shunted to ground by means of a shunt line.
Another aspect of the invention provides an antenna for wireless applications made from a component of an electronic device, said component comprising a conductive part and at least one mounting pin made of conductive material. The conductive part forms the radiating element of the antenna and the mounting pin is connected electrically to a feed line of the antenna and to a ground plane by a shunt.
According to an embodiment, the component is a component comprising a control unit controlling the operation of the electronic device, such as a push-button. The conductive part forming the radiating element is constituted by a conductive frame more specifically a metal frame, supporting the control unit of said component. Moreover, the component comprises at least three mounting pins made of conductive material, a first pin connected electrically to the feed line of the antenna and to a ground plane by a shunt, a second pin connected to a line receiving the control unit controlling the operation of the electronic device and a third pin. This third pin can either be connected to a ground plane or be connected to an open-circuited transmission line whose role is impedance matching at the operating frequency of the antenna.
Further aspects of the present invention provide a network of antennas comprising at least two antennas such as described above connected to a common feed line, this network of antennas being able to be a multi-band antenna such as for example a dual-band antenna. A further aspect of the present invention also provides a communication terminal comprising at least one antenna according to any embodiment of the invention.
Other characteristics and advantages of the present invention will appear upon reading the description of different embodiments, this description being made with reference to the enclosed drawings, wherein:
A description will first be given, with reference to
The diagram for mounting the push-button on the motherboard or PCB is shown, in a more detailed way, in
Pin 12A and shunt line 15 provide further radiating element parts of the antenna. The pin 12A and shunt line 15 act as complementary radiating elements to the frame 10 and can be adapted according to the wireless application to adjust the resonance frequency, as well as providing impedance matching.
As shown in
An antenna made as described with reference to
The push-button used is a standard push-button having dimensions comprised between 6 and 8 mm for the metal frame forming the radiating surface. Ideally, to obtain an antenna operating directly in the desired frequency band, a half-wavelength resonator is required from point 12A to point 12B. Moreover, the antenna was optimised in terms of impedance matching by using at the input port an impedance matching line 16 and a shunt inductor 17 having a value of 2.2 nH. It is obvious to those skilled in the art that the impedance matching line 16 can be replace with other known impedance matching means such as a self-inductor or a capacitor and that the shunt inductor can be replaced with a transmission line. The choice of the impedance matching means is in fact dictated by size and cost. The antenna thus obtained radiates in the frequency band comprised between 5.15-5.85 GHz of the IEEE-802.11a standard. Thus, in
Another embodiment of an antenna assembly in accordance with the present invention and also using a push-button such as described with reference to
In this case, to simplify the description of
In accordance with this embodiment, the pin 12A is extended by an open-circuited transmission line 20 whose purpose is to optimise the operating frequency of the antenna and the level of the return losses. This line has a length approximately equal to a quarter of the wavelength at the central frequency of the operating band of the antenna, the purpose being to provide a short-circuit at point 12A. Shunt line 15 and transmission line 20 associated with the metal frame constitute further radiating elements and contribute to the results of the antenna performances in terms of gain, efficiency and radiation pattern. The transmission line 20 and shunt line 15 act as complementary radiating elements to the frame 10 and can be adapted according to the wireless application to adjust the resonance frequency, as well as providing impedance matching.
An antenna such as shown in
The simulations carried out on the antenna constituted from a push-button show that performances in terms of return loss, gain, efficiency and radiation pattern are obtained which are comparable to a low-cost metal antenna obtained by stamping and mounted on the PCB.
Embodiments of the present invention can be applied to all types of components containing a metal surface of right angle shape or not and which comprises at least one or more pins made of conductive material which are originally connected to the ground. The antenna described above can be part of a network of antennas connected to a common feed line using a series of aligned push-buttons, each forming a radiating element. The network can be formed of antennas fed in series or in parallel. If two successive push-buttons are used, each with appropriate complementary radiating elements printed on the PCB, it is possible to obtain a dual-band antenna operating in the band of frequencies around 2.4 GHz and around 5 GHz, the two push-buttons being fed by a common line.
Embodiments of the present invention makes it possible to integrate easily and at low cost an antenna in a wireless communication terminal such as an internet gateway, a decoder, a tablet or other mobile electronic device.
Number | Date | Country | Kind |
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1360277 | Oct 2013 | FR | national |