CN207624912U - A kind of double frequency dipole antenna and micro-base station - Google Patents

A kind of double frequency dipole antenna and micro-base station Download PDF

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Publication number
CN207624912U
CN207624912U CN201721925442.2U CN201721925442U CN207624912U CN 207624912 U CN207624912 U CN 207624912U CN 201721925442 U CN201721925442 U CN 201721925442U CN 207624912 U CN207624912 U CN 207624912U
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CN
China
Prior art keywords
dipole
dipole antenna
double frequency
medium substrate
frequency
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Expired - Fee Related
Application number
CN201721925442.2U
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Chinese (zh)
Inventor
曾毅
苗卫强
苏国生
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Comba Telecom Technology Guangzhou Ltd
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Comba Telecom Technology Guangzhou Ltd
Comba Telecom Systems China Ltd
Comba Telecom Systems Guangzhou Co Ltd
Tianjin Comba Telecom Systems Co Ltd
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Application filed by Comba Telecom Technology Guangzhou Ltd, Comba Telecom Systems China Ltd, Comba Telecom Systems Guangzhou Co Ltd, Tianjin Comba Telecom Systems Co Ltd filed Critical Comba Telecom Technology Guangzhou Ltd
Priority to CN201721925442.2U priority Critical patent/CN207624912U/en
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Abstract

A kind of micro-base station of the utility model offer and its double frequency dipole antenna.Wherein, the double frequency dipole antenna includes reflecting plate, dipole antenna unit, matching network and CA cable assembly, the dipole antenna unit includes medium substrate, upper and lower parallel arrangement and has with gap set on positive first dipole of medium substrate and the second dipole, set on the feed Balun of medium substrate reverse side, the feed Balun pair the first, second dipole corporated feed.The double frequency dipole antenna configuration of the utility model is ingenious, small, of low cost, and mutual coupling is small, isolation is high, circuit characteristic is good.Since its size is small, it is easy to and mating, the using flexible in micro- station, saving space.

Description

A kind of double frequency dipole antenna and micro-base station
Technical field
The utility model is related to wireless communication technology field more particularly to a kind of double frequency dipole antenna and use the double frequency The micro-base station of dipole antenna.
Background technology
Mobile communication technology is fast-developing, and the 4G epoch are increasingly becoming operation already close to coda, depth covering, the network optimization There are unique advantage in the emphasis of quotient's next step, small base station in this field, even more indispensable therefore micro- for the following 5G high frequencies cloth station The demand of station will welcome rapid growth, and the demand of micro- station antenna will also greatly increase.
Key component of micro- station antenna as micro-base station system acts on most important, property of the performance to whole system There can be direct influence.Size, polarization characteristic, pattern characteristics of antenna etc. are all very important index, the ruler of micro-base station Very little requirement wants sufficiently small, will certainly influence circuit and radiation index, such as isolation, gain in this way.Dipole antenna is with its body Product is small, light-weight, easy to process, at low cost, is widely used in mobile communication system convenient for many merits such as integrated and group battle arrays In, therefore it is small to design size, bandwidth, electrical specifications and the good micro- station antenna of directional diagram index, is current micro- station antenna Major design direction.
Utility model content
The primary and foremost purpose of the utility model is intended to provide the small double frequency dipole antenna of a kind of bandwidth, size.
The another object of the utility model is to provide a kind of micro-base station using above-mentioned double frequency dipole antenna.
To achieve the goals above, the utility model provides following technical scheme:
A kind of double frequency dipole antenna, including reflecting plate, the dipole antenna unit for being erected in the reflecting plate, the idol Pole sub-antenna unit includes medium substrate and the dipole for being divided into the medium substrate tow sides and is used to feed with outside Network connection and the feed Balun fed for the dipole;The dipole includes the first dipole for working in the first frequency range With the second dipole for working in the second frequency range, and the radiation arm of first dipole and the second dipole it is parallel and with tool There is the mode in gap to arrange up and down, wherein the frequency of first frequency range is less than the frequency of second frequency range;The feed bar Human relations include longitudinal portion and the transverse part that is connect with the longitudinal direction portion, and the transverse part is located in the positive projection of the medium substrate In the gap.
Further, the transverse part includes the first current feed department of the radiation arm close to the first dipole and close second idol Extremely the second current feed department of sub radiation arm, and first current feed department and the second current feed department are connected with each other.
Preferably, in the middle part of the transverse part first feed is convexed to form towards the radiation arm of first dipole Portion.
Preferably, the radiation arm of first dipole offers the notch for improving impedance operator.
Further, the double frequency dipole antenna further includes being set to be used in combination between the reflecting plate and the medium substrate In the matching network plate of optimization electric property.
Preferably, the matching network plate is dielectric-slab, and upper surface is equipped with ground area, and the dipole connects with described Ground region is in electrical contact.
Preferably, the matching network plate offers the gap to match with the medium substrate bottom end, the medium base Plate is inserted in the gap.
Preferably, there are two the dipole antenna unit is set, two dipole antenna units work in phase respectively Mutually two orthogonal polarization directions, and its medium substrate is arranged in cross.
Preferably, the dielectric constant of the medium substrate is between 2.0~5.0.
In addition, a kind of micro-base station is further related to, above-mentioned double frequency dipole antenna.
Further, the double frequency dipole antenna is equipped with multiple, and multiple double frequency dipole antennas are total with array Reflecting plate is arranged.
Compared with prior art, the embodiment of the utility model has the following advantages:
In the double frequency dipole antenna of the utility model, radiating element and feed Balun are divided into the two of high frequency laminate Face, and as radiating element and work in the first dipole of two different frequency ranges and the second dipole is coplanar with, structure It is ingenious and beautiful, size is small, isolation is high, and antenna performance is good.Wherein, dipole antenna unit can be used alone, can two it is secondary altogether Dual polarized antenna is served as with use, can also multiple groups of battle arrays meet and cover needs, to sum up, its using flexible, can meet various Use demand.
The additional aspect of the utility model and advantage will be set forth in part in the description, these will be from following description In become apparent, or recognized by the practice of the utility model.
Description of the drawings
The utility model is above-mentioned and/or additional aspect and advantage from the following description of the accompanying drawings of embodiments will Become apparent and is readily appreciated that, wherein:
Fig. 1 is the stereogram of the double frequency dipole antenna of the utility model;
Fig. 2 is the stereogram of another angle of double frequency dipole antenna shown in FIG. 1;
Fig. 3 is the front schematic view of the dipole antenna unit of the double frequency dipole antenna of the utility model;
Fig. 4 is the reverse side schematic diagram of the dipole antenna unit of the double frequency dipole antenna of the utility model;
Fig. 5 is voltage standing wave ratio simulation curve figure of the antenna described in Fig. 1 in 2.3-2.5GHz frequency bands;
Fig. 6 is isolation simulation curve figure of the antenna described in Fig. 1 in 2.3-2.5GHz frequency bands;
Fig. 7 is voltage standing wave ratio simulation curve figure of the antenna described in Fig. 1 in 5.0-6.0GHz frequency bands;
Fig. 8 is isolation simulation curve figure of the antenna described in Fig. 1 in 5.0-6.0GHz frequency bands;
Fig. 9 is antenna described in Fig. 1 in 2.4GHz horizontal plane simulation curve figures;
Figure 10 is antenna described in Fig. 1 in 2.4GHz vertical plane simulation curve figures;
Figure 11 is antenna described in Fig. 1 in 5.8GHz horizontal plane simulation curve figures;
Figure 12 is antenna described in Fig. 1 in 5.8GHz vertical plane simulation curve figures
Specific implementation mode
The embodiments of the present invention are described below in detail, examples of the embodiments are shown in the accompanying drawings, wherein from beginning Same or similar element or element with the same or similar functions are indicated to same or similar label eventually.Below by ginseng The embodiment for examining attached drawing description is exemplary, and is only used for explaining the utility model, and cannot be construed to the utility model Limitation.
Double frequency dipole antenna provided by the utility model is suitable for the transmitting of two frequency band signals of 2.4GHz&5.8GHz And reception, integrating for two frequency ranges of realization can be used in micro-base station to realize the high-speed data communication of micro- station antenna system.
Referring to Fig. 1 to Fig. 4, double frequency dipole antenna 100 provided by the utility model includes two secondary dipole antenna units It (1,1 '), the reflecting plate 2 as antenna reflector, the matching network (non-label, similarly hereinafter) for optimizing antenna performance and is used for The CA cable assembly 4 that access external electric signal feeds the dipole antenna unit (1,1 ').Wherein, the two secondary dipole day Line unit (1,1 ') works in two mutually orthogonal polarization directions, correspondingly, the two secondary dipole antenna units (1,1 ') In mutually nested fixation crosswise.
The dipole antenna unit (1,1 ') includes working in the first dipole 111 of the first frequency range and working in second Second dipole 112 of frequency range, wherein the frequency of first frequency range is less than the frequency of second frequency range, i.e. the first frequency range For 2.4GHz frequency ranges, the second frequency range is 5.8GHz frequency ranges.
Preferably, the dipole antenna unit (1,1 ') is printed dipole antenna unit (1,1 '), including using high The medium substrate 10 and 10 tow sides of the medium substrate are respectively formed in using etching or printing technology that frequency dielectric-slab makes Dipole 11 and for the feed Balun (12,12 ') for 11 couple feed of the dipole.
Preferably, the dielectric constant of the medium substrate 10 is between 2.0~5.0.Preferably, the dielectric constant is 2.65,3.0 or 4.4.
Wherein, the radiation arm of first dipole 111 and second dipole 112 with gap (non-label, under Parallel arrangement above and below mode together) forms the pattern of axisymmetric bis- " F " types.
The feed Balun (12,12 ') includes longitudinal portion 121 and the transverse part 122 that is connect with the longitudinal direction portion 121, institute Transverse part 122 is stated in the positive projection of the medium substrate 10 to be located in the gap.The longitudinal direction portion 121 and the cable group Part 4 connects, and the transverse part 122 feeds first dipole, 111 and second dipole 112 respectively.
The double frequency dipole antenna 100 of the utility model, by the way that the corresponding dipole of two frequency ranges 11 is integrated, Upper and lower coplanar arrangement, ingehious design are conducive to reduce antenna size, realize miniaturization, and reduce design and producing cost. It is simple in structure since the double frequency dipole antenna is printed antenna, it is light, it is conducive to Project Realization, saves engineering resource.
In the present embodiment, two secondary dipole antenna unit (1,1 ') of the setting of double frequency dipole antenna 100 has been come At the reception and transmitting of two cross polarization direction signals, that is, constitute dual polarized antenna.In other embodiments, the double frequency A pair also can be only arranged to complete the reception and transmitting of signal in dipole antenna unit (1,1 ').In addition, the utility model is double 11 antenna of frequency dipole can be used alone, and also can be used as array element forming array to use.
Further, the transverse part 122 includes in the first current feed department 1221 and second for interlocking up and down and being connected with each other Current feed department 1222, wherein first current feed department 1221 is arranged close to first dipole 111, second current feed department 1222 are arranged close to second dipole 112, to correspond to first dipole, 111 and second dipole 112 feed, And then reduce the mutual coupling between the dipole 11 of two frequency ranges, improve isolation.
Preferably, the middle part of the transverse part 122 convexes to form first current feed department towards first dipole 111 1221.In other words, the transverse part 122 is substantially trapezoidal.
Further, first dipole 111 opens up jagged 1111, to improve antenna impedance characteristic.Preferably, The notch 1111 is opened in first dipole 111 close to the position of dipole antenna unit (the 1,1 ') symmetry axis Place, and it is located at 111 top of the first dipole.Preferably, the notch 1111 is rectangular, arc-shaped or other shapes.
Preferably, the matching network is set on a matching network plate 3, and the matching network plate 3 is located at the dipole Between the medium substrate 10 and the reflecting plate 2 of antenna element (1,1 ').
The matching network plate 3 is the single-layer medium plate for being fixed on the reflecting plate, and upper surface is equipped with ground area, and And the single-layer medium plate offers the cross gap to match with two pieces of 10 bottom ends of the medium substrate.Two pieces of medium bases Plate 10 is in be inserted in crosswise in the cross gap, and the dipole 11 contacts with each other with the ground area, Thus complete the fixation of dipole antenna unit (1,1 ') and its be electrically connected with matching network, to realize to frequency bandwidth, The optimization of the performances such as directional diagram.
It should be appreciated that when dipole antenna unit (1,1 ') is only arranged one, it is arranged on the matching network plate " one " word gap, for installing the medium substrate 10.
The electrical simulation figure of 11 antenna of double frequency dipole of the utility model, can be with from analogous diagram as shown in Fig. 5 to Figure 12 Know, 11 antenna of double frequency dipole is preferable in the performance indicator of above-mentioned two frequency range, can meet the high speed of micro- station antenna system Data communicate, and reliable resource is provided for the development in 5G epoch.
In addition, the utility model also provides a kind of micro-base station, above-mentioned double frequency dipole antenna is used.Also, preferably, At least one array is arranged in the micro-base station antenna, and each array is made of multiple double frequency dipoles for reflecting plate setting.
For the micro-base station due to using double frequency dipole antenna 100, antenna volume is small, is easy to match with micro-base station other component It closes and uses, be conducive to Project Realization, and save space resources.Therefore, the micro-base station is small, economizes on resources, and performance compared with It is good, the signal covering demand in 5G epoch can be met.
The above is only some embodiments of the utility model, it is noted that for the common skill of the art For art personnel, without departing from the principle of this utility model, several improvements and modifications can also be made, these improve and Retouching also should be regarded as the scope of protection of the utility model.

Claims (11)

1. a kind of double frequency dipole antenna, including reflecting plate, the dipole antenna unit for being erected in the reflecting plate, the dipole Sub-antenna unit includes medium substrate and the dipole for being divided into the medium substrate tow sides and is used to be the dipole The feed Balun of feed, which is characterized in that the dipole includes working in the first dipole of the first frequency range and working in the Second dipole of two frequency ranges, and the radiation arm of first dipole and the second dipole is with side parallel and with gap Formula is arranged up and down, wherein the frequency of first frequency range is less than the frequency of second frequency range;
The feed Balun includes longitudinal portion and the transverse part that is connect with the longitudinal direction portion, and the transverse part is in the medium substrate Positive projection is located in the gap.
2. double frequency dipole antenna according to claim 1, which is characterized in that the transverse part includes close to the first dipole Second current feed department of the radiation arm of the first current feed department of the radiation arm of son and close second dipole, and first current feed department It is connected with each other with the second current feed department.
3. double frequency dipole antenna according to claim 2, which is characterized in that towards described first in the middle part of the transverse part The radiation arm of dipole convexes to form first current feed department.
4. double frequency dipole antenna according to claim 1, which is characterized in that the radiation arm of first dipole opens up It is useful for improving the notch of impedance operator.
5. double frequency dipole antenna according to claim 1, which is characterized in that further include be set to the reflecting plate with it is described Matching network plate between medium substrate, the matching network plate are equipped with the matching network for optimizing electric property.
6. double frequency dipole antenna according to claim 5, which is characterized in that the matching network plate is dielectric-slab, Upper surface is equipped with ground area, and the dipole is in electrical contact with the ground area.
7. double frequency dipole antenna according to claim 5, which is characterized in that the matching network plate offer with it is described The gap that medium substrate bottom end matches, the medium substrate are inserted in the gap.
8. double frequency dipole antenna as claimed in any of claims 1 to 7, which is characterized in that the dipole day There are two line unit is set, two dipole antenna units work in two mutually orthogonal polarization directions, and its respectively Medium substrate is arranged in cross.
9. double frequency dipole antenna as claimed in any of claims 1 to 7, which is characterized in that the medium substrate Dielectric constant between 2.0~5.0.
10. a kind of micro-base station, which is characterized in that including the double frequency dipole antenna described in any one of claim 1 to 9.
11. micro-base station according to claim 10, which is characterized in that the double frequency dipole antenna be equipped with it is multiple, it is multiple The double frequency dipole antenna is total to reflecting plate setting with array.
CN201721925442.2U 2017-12-28 2017-12-28 A kind of double frequency dipole antenna and micro-base station Expired - Fee Related CN207624912U (en)

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Application Number Priority Date Filing Date Title
CN201721925442.2U CN207624912U (en) 2017-12-28 2017-12-28 A kind of double frequency dipole antenna and micro-base station

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Application Number Priority Date Filing Date Title
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Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109149129A (en) * 2018-09-12 2019-01-04 常熟市泓博通讯技术股份有限公司 Double mode aerial array and electronic device with double mode aerial array
CN109301462A (en) * 2018-09-06 2019-02-01 深圳大学 Double-wide-surface magnetoelectric dipole base station antenna applied to 5G communication
CN109546334A (en) * 2018-10-31 2019-03-29 中天宽带技术有限公司 A kind of low section cross oscillator for multifrequency antenna for base station
WO2020140537A1 (en) * 2018-12-30 2020-07-09 瑞声声学科技(深圳)有限公司 Mimo antenna system and electronic equipment
CN112448125A (en) * 2019-08-28 2021-03-05 深圳市卓睿通信技术有限公司 Double-frequency directional antenna and unmanned aerial vehicle remote controller
CN112821045A (en) * 2020-12-31 2021-05-18 京信通信技术(广州)有限公司 Radiation unit and base station antenna
CN113067151A (en) * 2021-03-31 2021-07-02 Oppo广东移动通信有限公司 Antenna assembly, electronic equipment and communication system
CN114156659A (en) * 2021-11-30 2022-03-08 杭州电子科技大学 Broadband common-caliber dipole array of Sub-6GHz and millimeter wave frequency bands
WO2022053156A1 (en) * 2020-09-14 2022-03-17 Huawei Technologies Co., Ltd. Antenna device, array of antenna devices, and base station with antenna device
CN112448125B (en) * 2019-08-28 2024-06-11 深圳市卓睿通信技术有限公司 Dual-frenquency directional antenna and unmanned aerial vehicle remote controller

Cited By (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109301462A (en) * 2018-09-06 2019-02-01 深圳大学 Double-wide-surface magnetoelectric dipole base station antenna applied to 5G communication
CN109149129A (en) * 2018-09-12 2019-01-04 常熟市泓博通讯技术股份有限公司 Double mode aerial array and electronic device with double mode aerial array
CN109546334A (en) * 2018-10-31 2019-03-29 中天宽带技术有限公司 A kind of low section cross oscillator for multifrequency antenna for base station
CN109546334B (en) * 2018-10-31 2020-09-29 中天宽带技术有限公司 Low-profile cross oscillator for multi-frequency base station antenna
WO2020140537A1 (en) * 2018-12-30 2020-07-09 瑞声声学科技(深圳)有限公司 Mimo antenna system and electronic equipment
CN112448125A (en) * 2019-08-28 2021-03-05 深圳市卓睿通信技术有限公司 Double-frequency directional antenna and unmanned aerial vehicle remote controller
CN112448125B (en) * 2019-08-28 2024-06-11 深圳市卓睿通信技术有限公司 Dual-frenquency directional antenna and unmanned aerial vehicle remote controller
WO2022053156A1 (en) * 2020-09-14 2022-03-17 Huawei Technologies Co., Ltd. Antenna device, array of antenna devices, and base station with antenna device
CN112821045B (en) * 2020-12-31 2023-05-30 京信通信技术(广州)有限公司 Radiating element and base station antenna
CN112821045A (en) * 2020-12-31 2021-05-18 京信通信技术(广州)有限公司 Radiation unit and base station antenna
CN113067151A (en) * 2021-03-31 2021-07-02 Oppo广东移动通信有限公司 Antenna assembly, electronic equipment and communication system
CN114156659A (en) * 2021-11-30 2022-03-08 杭州电子科技大学 Broadband common-caliber dipole array of Sub-6GHz and millimeter wave frequency bands
CN114156659B (en) * 2021-11-30 2024-02-02 杭州电子科技大学 Broadband common-caliber dipole array of Sub-6GHz and millimeter wave frequency bands

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Effective date of registration: 20200123

Address after: 510730 No. 6, layered Road, Guangzhou economic and Technological Development Zone, Guangdong

Patentee after: COMBA TELECOM TECHNOLOGY (GUANGZHOU) Ltd.

Address before: 510663 Guangzhou Science City, Guangdong Shenzhou Road, No. 10

Co-patentee before: COMBA TELECOM TECHNOLOGY (GUANGZHOU) Ltd.

Patentee before: Comba Telecom System (China) Ltd.

Co-patentee before: COMBA TELECOM SYSTEMS (GUANGZHOU) Ltd.

Co-patentee before: TIANJIN COMBA TELECOM SYSTEMS Ltd.

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20180717

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CF01 Termination of patent right due to non-payment of annual fee