Antenna adapter.
Abstract
Un adaptador de antena, para una antena con un asiento adaptador encastrado con un orificio de suministro está provisto como una base con abertura de suministro, la base está diseñada para estar asentada dentro del asiento adaptador, la abertura de alimentación está alineada de manera coaxial con el orificio de suministro; la base puede estar provista con cavidades de interbloqueo diseñadas para recibir elementos de retención del asiento adaptador conforme se inserta la base al asiento adaptador, reteniendo la base dentro del asiento adaptador; la base puede incluir una cavidad acopladora que acopla la abertura de suministro a dos o más puertos de salida; la cavidad acopladora puede tener ranuras de pared lateral.

Term
6.1 yearsleft in the term
Expires 16 November 2032.
- Priority
- Filed
- Granted
- Today
- Expires
16 claims: 4 independent, 12 dependent
- 1NOVEDAD DE LA INVENCIÓN IΝ5ΤΓΓ U 70 Μ XIC Λ ? ·! o D£ LA PROriZL'AO INDUSTRIAL REIVINDICACIONES 5 1. Un adaptador de antena, para una antena con un asiento adaptador encastrado con un orificio de suministro, el adaptador comprende:una base con una abertura de suministro, la base está dimensionada para estar asentada dentro del asiento adaptador, la abertura de suministro está alineada de manera coaxial con el orificio de suministro;una sección 10 transversal de la abertura de suministro es la misma que una sección transversal del orificio de suministro;la base esta provista con cavidades de ¡nterbloqueo dlmenslonadas para recibir elementos de retención del asiento adaptador conforme se Inserta la base en el asiento adaptador, reteniendo la base dentro del asiento adaptador. 15
- 2El adaptador de antena de conformidad con la reivindicación 1, caracterizado además porque los elementos de retención son broches y las cavidades de ¡nterbloqueo son rebordes de retención provistos en una periferia de la base.
- 3El adaptador de antena de conformidad con la 20 reivindicación 1, caracterizado además porque adlcionalmente Incluye una cavidad de acoplamiento generalmente rectangular que une la abertura de suministro a dos puertos de salida;la abertura de suministro y los dos puertos de salida están respectivamente provistos en lados opuestos de la cavidad de acoplamiento.
- 4El adaptador de antena de conformidad con Ta reivindicación 3, caracterizado además porque la cavidad de acoplamiento está provista con una longitud de 1.5 a 1.7 longitudes de onda, un ancho de
- 55 0.75 a 1 longitudes de onda y una profundidad entre la abertura de suministro y los puertos de salida de aproximadamente 0.2 longitudes de onda;las longitudes de onda son una longitud de onda de una frecuencia operativa de banda media del adaptador. 5. El adaptador de antena de conformidad con la 10 reivindicación 3, caracterizado además porque cada una de una pared lateral de ancho y una pared lateral longitudinal de la cavidad de acoplamiento están provistas con ranuras abiertas a un exterior del adaptador.
- 6El adaptador de antena de conformidad con la reivindicación 5, caracterizado además porque las paredes laterales de ancho 15 y lateral están formadas por una pluralidad de patillas cilindricas.
- 7El adaptador de antena de conformidad con la reivindicación 6, caracterizado además porque un radio de cada una de la pluralidad de patillas cilindricas es 0.05 longitudes de onda o menos, las longitudes de onda son una longitud de onda de una frecuencia operativa de 20 banda media del adaptador.
- 8El adaptador de antena de conformidad con la reivindicación 5, caracterizado además porque cada una de las ranuras es de, generalmente, 0.15 a 0.25 longitudes de onda, las longitudes de onda son una * -Λ. ¿A. ίχΊ3ΤίΤυΤ0 MEXICANO Γ·£ !Α ΓΓ.ΟΓ’ΕΌΛί) V n’DUSTKíAL longitud de onda de una frecuencia operativa de banda media del adaptador.
- 9El adaptador de antena de conformidad con la reivindicación 3, caracterizado además porque los dos puertos de salida son generalmente rectangulares y están respectivamente alineados a lo largo de 5 una dimensión de longitud de los mismos que es generalmente paralela a la longitud de la cavidad de acoplamiento.
- 10El adaptador de antena de conformidad con la reivindicación 9, caracterizado además porque los dos puertos de salida están colocados para estar alineados asimétricamente con un punto medio de la 10 longitud de la cavidad de acoplamiento.
- 11El adaptador de antena de conformidad con la reivindicación 10, caracterizado además porque el acoplamiento entre la abertura de alimentación y cada uno de los dos puertos de salida es de aproximadamente 10 dB. 15
- 12El adaptador de antena de conformidad con la reivindicación 10, caracterizado además porque el acoplamiento entre la abertura de alimentación y cada uno de los dos puertos de salida es de aproximadamente 6 dB.
- 13El adaptador de antena de conformidad con la 20 reivindicación 9, caracterizado además porque cada uno de los dos puertos de salida tiene un ancho del puerto de salida que está definido a lo largo de una pared lateral longitudinal de la cavidad de acoplamiento, los dos puertos de salida están generalmente alineados uno con respecto al otro con respecto a un punto medio de el ancho del puerto de salida de los mismos, por lo que generalmente, una mitad de cada ancho del puerto de salida está abierta para la cavidad de acoplamiento
- 14El adaptador de antena de conformidad con la 5 reivindicación 9, caracterizado además porque adicionalmente incluye un separador que se proyecta hacia adentro provisto por lo menos sobre una pared lateral de la cavidad de acoplamiento.
- 15El adaptador de antena de conformidad con la reivindicación 9, caracterizado además porque los dos puertos de salida están 10 colocados para estar alineados simétricamente con un punto medio de la longitud de la cavidad de acoplamiento.
- 16El adaptador de antena de conformidad con la reivindicación 15, caracterizado además porque el acoplamiento entre la abertura de alimentación y cada uno de los dos puertos de salida es de 15 aproximadamente 3 dB.
Independent claims16
143 paragraphs in 14 sections, as filed
(54) Title: ANTENNA ADAPTER. (54) Title: ANTENNA ADAPTER.
(57) Summary
An antenna adapter, for an antenna with a recessed adapter seat with a supply hole is provided as a base with supply opening, the base is designed to be seated inside the adapter seat, the supply opening is coaxially aligned with the supply hole; the base may be provided with interlocking cavities designed to receive retaining elements of the adapter seat as the base is inserted into the adapter seat, retaining the base within the adapter seat; the base may include a coupler cavity that couples the supply opening to two or more outlet ports; the coupler cavity may have side wall grooves.
(57) Abstract
An antenna adapter, for an antenna with a recessed adapter seat with a feed bore is provided as a base with a feed aperture, the base dimensioned to seat within the adapter seat, the feed aperture aligned coaxial with the feed bore. The base may be provided with interlock cavities dimensioned to receive retaining elements of the adapter seat as the base is inserted into the adapter seat, retaining the base within the adapter seat. The base may inelude a coupler cavity, coupling the feed opening to two or more output ports. The coupler cavity may have sidewall slots.
Institute
Mexican Property
Industrial
<img file="MX337343B_D0001.tif" />
PATENT TITLE NO · 337343 i
M
P
I
BE "CMTMtía!" ΒΧΜΪΜΜ,
Headlines); COMMSCOPE TECHNOLOGIES LLC
Address: 1100 CommScope Place, SE, Hickory, North Carolina, 28602, USA
Denomination: ANTENNA ADAPTER.
Classification: IC.8: H01Q1 / 12
Inventories): CHRISTOPHER HILLS; ALEXANDER THOMSON; CLAUDIO BIANCOTTO;
DONALO GARDNER
Number:
MX / a / 2014/005725
REQUEST
International filing date:
November 2012
PRIORITY
<td>Country:</td><td>Date: . </td><td>Number:</td>
<td>US</td><td>• '«L, November 16, 2011</td><td> 13/297,304</td>
<td>US</td><td>November 15, 2012</td><td> 13/677,859</td>
<td>Validity: Twenty years</td><td></td><td></td>
Expiration Date: February 16, 2032 | i ^ The reference patent is granted based on an to arfjcqtp · 1 ', 2nd section V, 6th section III, and 59 of the Industrial Property Law.
In accordance with article 23 of the Industrial Law, the patent is valid for twenty unprofitable years, effective from the date of filing the application, will it be subject to the payment of the fee to keep rights.
Sulen subscribes to this title on the basis of Official Industrial Property (Diaé) of the Federation (DOF) ¿01/2004, 06/16/2005, ¢ / 01/2006, ¢ 6/05 / 2009.06 / 01/2010 , 06/18/20 's III and 7 ° bis 2 of the .ey of 5/10/1996, 12/26/1997,' / 05/1999, 2 and 09/04/2012); Articles 1, 3, and 5 of the Section of the Regulation of the Mexican Institute of Industrial Property (DOF 12/14/1999, re of the Mexican Institute of Industrial Property (DOF) 12/27/1999, amended on 10/10/2002, 07/29/2004, 08/04/2004 and 09/13/2007); 1, 3 and 5 Clause a) of the Agreement that delegates powers to the Deputy Directors General, Coordinator, Divisional Directors, Holders of the Regional Offices, Divisional Deputy Directors, Departmental Coordinators and other subordinates of the Mexican Institute of Industrial Property. (DOF 12/15/1999, amended on 02/04/2000, 07/29/2004, 08/04/2004 and 09/13/2007).
<img file="MX337343B_D0002.tif" />
Issue Date: February 26, 2016
THE DIVISIONAL DIRECTOR OF PATENTS
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NAHANNY CANAL REYES
Arenal No. 550, Floor 1,
Col. Pueblo Santa Maris Tepepan, Xochímilco, CP 16020,
Mexico City
Tel (55) 53 34 07 00 www impj gob mx
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MX / 2016 (15448
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ANTENNA ADAPTER a & HlSUS
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FIELD OF THE INVENTION
This invention relates to a microwave antenna. More particularly, the invention relates to an antenna adapter that facilitates simplified configuration and / or exchange of the microwave antenna supply interface.
DESCRIPTION OF THE RELATED TECHNIQUE
A microwave antenna can be coupled to a wide range of signal generating and / or processing equipment, according to the requirements of the end user, each with a different adapter and / or interface requirement.
A microwave antenna may be provided with an adapter assembly to couple a transceiver or the like to the microwave antenna. For example, the interconnection may be a direct interconnection or through a waveguide that is then coupled to the desired signal generator and / or processor equipment.
Microwave antennas may be provided with an interconnect with dual redundant transceivers, one of the transceivers
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provided as an active wait for the other to improve the resulting reliability of the RF system. Alternatively, dual transceivers coupled to a single microwave antenna can be simultaneously operated, each transceiver operating by a signal with a different polarity, the signals being separated and routed to each transceiver by an orthomodal transducer (OMT).
Providing microwave antennas in multiple models, each configured for a specific type of interconnect and / or provided with elaborate adapter assemblies, can be a significant manufacturing, supply chain, Installation and / or ongoing maintenance load.
Therefore, an object of the invention is to provide an antenna adapter that overcomes the limitations in the prior art.
BRIEF DESCRIPTION OF THE DRAWINGS
The accompanying drawings, which are incorporated in and are part of this specification, illustrate the embodiments of the invention, where the same reference numbers in the figures refer to the same feature or element, and may not be described in detail for each figure in which they appear and, together with an overview of the Invention provided above, and the detailed description of the modalities provided below, they serve to explain the principles of the Invention.
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<img file="MX337343B_D0012.tif" />
Figure 1 is a schematic schematic view of an exemplary aligned adapter for insertion into the adapter seat of a flat panel antenna.
Figure 2 is a schematic perspective front view 5 isometric of an adapter.
Figure 3 is a schematic perspective rear view in isometric of the adapter of Figure 2.
Figure 4 is a schematic isometric perspective front view of another adapter.
Figure 5 is a schematic perspective rear view in isometric of the adapter of Figure 4.
Figure 6 is a schematic isometric perspective front view of another adapter.
Figure 7 is a schematic perspective rear view 15 isometric of the adapter of Figure 6.
Figure 8 is an exploded isometric perspective schematic view of an adapter, showing interconnections with the adapter seat of a flat panel antenna and two transceivers.
Fig. 9 is an exploded, isometric perspective front view 20 of an adapter with a coupling cavity.
Figure 10 is an exploded, isometric perspective rear view of the adapter of Figure 9.
Figure 11 is a schematic rear view of the
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<img file="MX337343B_D0014.tif" />
Layer with a top cap cover, which shows -a, symmetrical outlet port alignment with the coupling cavity.
Figure 12 is a schematic top view of a layer plate with a top cap cover, demonstrating asymmetric outlet port alignment with the coupling cavity.
Figure 13 is a schematic top view of a layer plate with a top layer cover, demonstrating symmetrical outlet port alignment with the coupling cavity, with a grooved side wall layer using pins.
Figure 14 is an exploded, isometric perspective front view of an adapter with a grooved side wall layer using pins.
Figure 15 is an exploded, isometric perspective rear view of the adapter of Figure 14.
Parts Chart
<td> 5</td><td>base</td>
<td> 10</td><td>adapter seat</td>
<td> 15</td><td>antenna</td>
<td> 20</td><td>supply hole</td>
<td> 25</td><td>retaining element</td>
<td> 30</td><td>brooch</td>
<td> 35</td><td>interlock cavity</td>
<td> 40</td><td>seat adapter floor</td>
<td> 45</td><td>adapter seat side wall</td>
<td> 50</td><td>retention edge</td>
<td> 55</td><td>supply opening</td>
<td> 60</td><td>transceiver</td>
<img file="MX337343B_D0015.tif" />
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INSTITUTO MEXICANO UE La H'.GP.EC. *.?
industrial
<td> 65</td><td>coupling cavity</td>
<td> 70</td><td>port of departure</td>
<td> 75</td><td>longitudinal side wall</td>
<td> 80</td><td>fit feature</td>
<td> 85</td><td>separator</td>
<td> 90</td><td>groove</td>
<td> 95</td><td>pin</td>
<td> 100</td><td>side wall layer</td>
<td> 105</td><td>top layer</td>
<td> 110</td><td>base coat</td>
<td> 115</td><td>input port</td>
DETAILED DESCRIPTION OF THE INVENTION
The US Utility Patent Application with Serial No.
13 / 297,304 titled Flat Panel Array Antenna Submitted November 16, 2011 by Alexander P. Thomson, Claudio Biancotto, and Christopher D. Hills, commonly owned by the present application and incorporated by reference in its entirety, describes microwave antennas comprising a corporate waveguide network and cavity couplers provided in stacked layers, resulting in microwave antennas with dimensions significantly reduced compared to conventional reflector disk microwave antennas. The transceivers and adapters used to pair with these antennas can comprise a significant portion of the resulting assembly.
The inventors have recognized that the above adapters may be excessively complex, large, and / or require more installation steps than necessary.
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As shown in Figure 1, an exemplary-of-ur> modahda4. - adapter includes a base 5 that sits inside an adapter seat 10 embedded in an antenna 15 with a supply hole 20.
Alternatively, adapter seat 10 may generally be provided 5 flush and / or projecting from the surface of antenna 15. Base 5 may be retained and seated on and / or within adapter seat 10, for example, by retaining members. 25 of the adapter 10 as such, snaps 30 designed to engage interlocking cavities 35 of the base
5. The retaining elements 25 may be provided integrally 10 with, for example, the injection molded or die-cast back side of an input layer of a flat panel type antenna 15 extending from the floor of the adapter seat 40 and / or the side wall of the adapter seat 45. Corresponding interlocking cavities 35 provided, such as, for example, retaining edges 50 provided at a periphery of proximal base 5, eg, crossed corners of base 5, receive and retain base 5 in place.
The retention between the base 5 and the adapter seat 10 can be permanent or removable by access provided to pry and / or offset to release the retention elements 25 from engagement with the corresponding interlocking cavities 35. Alternatively, the retaining elements 25 can be provided as characteristics of the base 5 and the interlocking cavities 35 are provided in the adapter seat 10 and / or conventional fasteners can be applied, such as
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screws or bolts. M ^ baastradasj-qiQX environmental seals can be applied. For example, surrounding supply port 20 between adapter seat 10 and base 5 and / or around a periphery of base 5.
Base 5 has a supply opening 55 axially aligned with supply hole 20 when base 5 is seated within adapter seat 10. Supply opening 55 may have the same cross section as supply hole 20, provided , for example, as a generally rectangular round or square cross section, for example, as shown in Figures 2 to 7.
As shown in Figure 8, the base 5 may be provided with a coupler functionality, for example, to divide RF signals between dual signal paths to two transceivers 60 instead of just one. As shown in Figures 9 and 10, a generally rectangular coupling cavity 65 may be formed in base 5 connecting supply opening 55 to two or more outlet ports 70. Supply opening 55 and outlet ports 70 are provided on opposite sides of coupling cavity 65. Coupling cavity 65 may be designed, for example, with respect to the wavelength of the expected mid-band operating frequency. . That is, the coupling cavity 65 may be provided with dimensions including, for example, a length of 1.5 to 1.7 wavelengths, a width of 0.75 to 1 wavelength, and a depth between the supply opening 55 and the 70 output ports of approximately 0.2 wavelengths.
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The outlet ports 70 may be provided with a generally rectangular cross-section - aligned along a length dimension of the coupling cavity 65 generally parallel with the length of the coupling cavity 65. As shown in Figures 11 and 12, the outlet ports 70 may also be misaligned with respect to the coupling cavity 65 which is midway through the width of the outlet port 70 positioned along a longitudinal side wall 75 of the coupling cavity 65, where generally half the width of the outlet port is open to the coupling cavity
65.
An additional adjustment of the electrical performance of the coupler cavity 65 can be applied, for example, by including fit features 80, such as an inwardly projecting spacer 85 provided on, for example, each of the wide side walls. 90 of the coupling cavity, as shown in Figures 9 and 10. Fit features 80 may be provided symmetrically with each other on opposite surfaces and / or spaced equidistant between outlet ports 70. Alternatively, fit features 80 can be applied in an asymmetric configuration.
The level of engagement between the supply opening 55 and each of the outlet ports 70 can be selected by, for example, applying the outlet ports 70 symmetrically aligned with a midpoint of the longitudinal side wall 75 of the cavity of
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in:
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<img file="MX337343B_D0022.tif" />
Coupling 65, as shown in Figure 11. Therefore, the coupling between the supply opening 55 and each of the outlet ports 70 may be configured to be approximately 3 dB.
Alternatively, when the outlet ports 70 are placed in symmetrical alignment with a midpoint of the longitudinal wall 75 as shown in, for example, FIG. 12, the coupling between the supply opening 55 and each of the ports 70 is they can reduce, for example, to about 6 or 10 dB, depending on the level of asymmetric displacement applied.
In additional embodiments, for example as shown in Figures 13-15, the coupling cavity 65 may be configured with an improved thermal dissipation and / or thermal insulation feature by providing open grooves 90 to an exterior of the adapter in the walls of the wide and / or longitudinal 75. For example, the grooves 90 may be orthogonal, forming side wall elements with rectangular grooves 90 between each. Slots 90 may be provided with a side-to-side width of, for example 0.15 to 0.25 wavelengths of a midband operating frequency of the adapter. Alternatively, the side wall elements may be provided as cylindrical pins 95. The pins 95 may be provided with, for example, a radius of 0.5 wavelengths or less of the midband operating frequency of the adapter. To avoid environmental invalidation of the signal path, when open slots 90 are applied to the exterior, an additional exterior seal may be applied, such as
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as a polymeric covering or the like.
In alternative embodiments, the coupler configurations described hereinabove may also be applied in separate embodiment of the adapter from a paired recessed adapter seat configuration. Base 5 has been demonstrated as a minimal thickness element to highlight potential space savings. Alternatively, the adapter may include an extended supply opening waveguide, for example, extending the position of the coupler cavity 65 away from the adapter seat 10, closer to the input ports 115 of transceivers 60, for example as schematically shown in figure 8. Likewise, a base 5 with a supply opening 55 configured with a square or circular cross section (Figures 4 to 7) can be extended before entering an OMT to divide simultaneous signals of different polarity before being routed to transceivers. 60 trailers.
One skilled in the art will appreciate that the simplified geometry of the coupling cavities 65 can facilitate a significant simplification of the required layer surface characteristics that can reduce overall manufacturing complexity. For example, base 5 can be economically formed with high precision at high volumes through injection molding and / or casting technology. One or more separate coats can be applied to achieve the desired base assembly. For example, as shown in Figures 9 and 10, a layer i Μ Ρ1 (χ ιυντινι ΙΤ '»ΜΓΥΙΓίΝΠ V« -—>
MEXICAN INSTITUTE OF INDUSTRIAL PXOTTTY
<img file="MX337343B_D0023.tif" />
4 'of base 110 can be formed separately from a side wall layer 100 and a top layer 105, which are then stacked one on top of the other to form coupling cavity 65 within the final base assembly. Alternatively, the coupling cavity 65 can be formed with a recessed portion, since the cavity which is then closed by the upper layer 105 or the coupling cavity 65 can be formed as a recessed portion of the upper layer 105 which is closed by base coat 110.
In case of injection molding a polymer material is used to form the layers, a conductive layer can be applied.
Although the coupling cavities and waveguides are described as generally rectangular, to facilitate their fabrication and / or mold separation, the corners can be radial and / or rounded and cavity tapers can be applied in a tradeoff between electrical performance and efficiency manufacturing.
As the frequency increases, the wavelengths decrease. Therefore, as the desired operating frequency increases, the physical characteristics in the adapter, such as holes, steps, and / or grooves, become smaller and more difficult to manufacture. Since the use of the coupling cavity 65 can simplify the required physical characteristics, one skilled in the art will appreciate that the adapter can also facilitate higher operating frequencies, for example, up to 26 GHz, above which the dimension resolution / characteristic precision
<img file="MX337343B_D0024.tif" />
Required can begin manufacturing with prohibitively acceptable tolerances.
From the foregoing, it will be apparent that the present invention brings to the art a high performance adapter with reduced overall dimensions that is strong, lightweight, and that can be repetitively and inexpensively manufactured with a high level of precision.
When materials, ratios, integers, or components having known equivalents are referred to in the foregoing description, then such equivalents are incorporated herein as if they were individually described.
While the present invention has been illustrated by way of the description of the embodiments thereof, and while the embodiments have been described in considerable detail, it is not the intention of the applicant to restrict or in any way limit the scope of the claims appended thereto detail. Additional advantages and modifications will be readily apparent to those skilled in the art. Therefore, the invention in its broadest aspects is not limited to the specific details, representative apparatus and methods, and illustrative examples shown and described. Accordingly, departures from such details can be made without departing from the spirit or scope of the applicant's general inventive concept. Furthermore it should be appreciated that improvements and / or modifications may be made thereto without departing from the scope or spirit of the present invention, as defined by the following claims.
-'i · »'.
Contents14
35 sheets
Sheet 1 Sheet 2 Sheet 3 Sheet 4 Sheet 5 Sheet 6 Sheet 7 Sheet 8 Sheet 9 Sheet 10 Sheet 11 Sheet 12 Sheet 13 Sheet 14 Sheet 15 Sheet 16 Sheet 17 Sheet 18 Sheet 19 Sheet 20 Sheet 21 Sheet 22 Sheet 23 Sheet 24 Sheet 25 Sheet 26 Sheet 27 Sheet 28 Sheet 29 Sheet 30 Sheet 31 Sheet 32 Sheet 33 Sheet 34 Sheet 35
41 members in 8 offices
Priority claims11
| Document | Office | Kind | Date |
|---|---|---|---|
| 13297304 | United States of America | – | |
| 201113297304 | United States of America | A | |
| 13677859 | United States of America | – | |
| 201213677859 | United States of America | A | |
| 2012065425 | United States of America | W | |
| 13297304 | – | – | – |
| 13677859 | – | – | – |
| US1265425 | – | – | – |
| US201113297304 | – | – | – |
| US201213677859 | – | – | – |
| WO2012US65425 | – | – | – |
Members41
| Document | Office | Kind | |
|---|---|---|---|
| US2013120089A1 | United States of America | A1 | |
| US2013120205A1 | United States of America | A1 | |
| US2013120206A1 | United States of America | A1 | |
| WO2013072781A1 | World Intellectual Property Organization (WIPO) | A1 | |
| WO2013074870A1 | World Intellectual Property Organization (WIPO) | A1 | |
| WO2013074872A1 | World Intellectual Property Organization (WIPO) | A1 | |
| US8558746B2 | United States of America | B2 | |
| MX2014005724A | Mexico | A | |
| MX2014005725A | Mexico | A | |
| MX2014005727A | Mexico | A | |
| CN103918123A | China | A | |
| CN103918128A | China | A | |
| CN103947044A | China | A | |
| EP2780978A1 | European Patent Office (EPO) | A1 | |
| EP2780982A1 | European Patent Office (EPO) | A1 | |
| EP2780983A1 | European Patent Office (EPO) | A1 | |
| US8866687B2 | United States of America | B2 | |
| IN3443DEN2014A | India | A | |
| IN3444DEN2014A | India | A | |
| IN3448DEN2014A | India | A | |
| EP2780983A4 | European Patent Office (EPO) | A4 | |
| EP2780978A4 | European Patent Office (EPO) | A4 | |
| EP2780982A4 | European Patent Office (EPO) | A4 | |
| US9160049B2 | United States of America | B2 | |
| MX337343BThis record | Mexico | B | |
| CN103918128B | China | B | |
| CN103918123B | China | B | |
| CN103947044B | China | B | |
| EP2780982B1 | European Patent Office (EPO) | B1 | |
| BR112014011192A2 | Brazil | A2 | |
| BR112014011114A2 | Brazil | A2 | |
| BR112014011073A2 | Brazil | A2 | |
| BR112014011073A8 | Brazil | A8 | |
| BR112014011114A8 | Brazil | A8 | |
| BR112014011192A8 | Brazil | A8 | |
| MY167100A | Malaysia | A | |
| MY170865A | Malaysia | A | |
| EP2780978B1 | European Patent Office (EPO) | B1 | |
| BR112014011073B1 | Brazil | B1 | |
| BR112014011192B1 | Brazil | B1 | |
| BR112014011114B1 | Brazil | B1 |
3 legal events, as the office reported them to INPADOC
Over the term
Point at a mark for the eventEvents
| Event | Code | |
|---|---|---|
| Grant or registrationFG | FG | |
| Change of company name or juridical statusHC | HC | |
| Change of company name or juridical statusHC | HC |
Numbers
- Publication
- 337343
- Publication, DOCDB
- 337343
- Publication, EPODOC
- MX337343
- Application
- 2014005725
- Application, DOCDB
- 2014005725
- Application, EPODOC
- MX20140005725
Titles
- Spanish
- ADAPTADOR DE ANTENA.
Classification
- CPC, 3
- H01P5/12
- H01P5/02
- H01Q1/1207
- IPC, 1
- H01Q1 12