CN204577583U - The antenna for mobile phone mechanism of low interference - Google Patents
The antenna for mobile phone mechanism of low interference Download PDFInfo
- Publication number
- CN204577583U CN204577583U CN201520348073.XU CN201520348073U CN204577583U CN 204577583 U CN204577583 U CN 204577583U CN 201520348073 U CN201520348073 U CN 201520348073U CN 204577583 U CN204577583 U CN 204577583U
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- shell fragment
- antenna
- motion picture
- lengthy motion
- picture shape
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Abstract
The antenna for mobile phone mechanism of low interference comprises antenna pedestal, GSM antenna shrapnel and Bluetooth antenna shell fragment; GSM antenna shrapnel comprises the first lengthy motion picture shape shell fragment, the second lengthy motion picture shape shell fragment, the 3rd lengthy motion picture shape shell fragment and the two first antenna shrapnels feedback pin all offering the first hot melt hole; Bluetooth antenna shell fragment comprise all offer the first strip shell fragment in the second hot melt hole, block shell fragment, the second strip shell fragment and the second antenna shrapnel feedback pin; Antenna pedestal is provided with the second hot molten column corresponding to first hot molten column in corresponding first hot melt hole and corresponding second hot melt hole; GSM antenna shrapnel and Bluetooth antenna shell fragment spacer sleeve are located on antenna pedestal, and the top sweat soldering of each the first hot molten column is in the periphery in the first hot melt hole of correspondence, and the top sweat soldering of each the second hot molten column is in the periphery in the second hot melt hole of correspondence.Antenna shrapnel of the present utility model is firm to be firmly installed on antenna pedestal, is conducive to improving product yield, reduces the defect rate that causes of human factor, and is conducive to improving that mobile phone is resistance to falls performance.
Description
Technical field
The utility model relates to a kind of antenna for mobile phone mechanism of low interference.
Background technology
Antenna for mobile phone is the communication equipment of mobile phone for receiving and transmitting signal, and existing mobile phone generally adopts concealed antenna mechanism.The antenna for mobile phone mechanism of existing low interference generally comprises and is located at plastics deck on casing and antenna shrapnel, and antenna shrapnel is installed on plastics deck.In an assembling process, workman clamps dynamics difference in the antenna for mobile phone mechanism of this kind low interference, antenna shrapnel can be caused to be out of shape in various degree, affect communication quality; In addition, mobile phone falls in the process of touching because of carelessness, and antenna shrapnel easily comes off or is shifted.
Utility model content
For the deficiencies in the prior art, the utility model is intended to the antenna for mobile phone mechanism providing a kind of low interference solved the problems of the technologies described above.
For achieving the above object, the utility model adopts following technical scheme:
An antenna for mobile phone mechanism for low interference, it comprises antenna pedestal, GSM antenna shrapnel and Bluetooth antenna shell fragment;
GSM antenna shrapnel comprises the first lengthy motion picture shape shell fragment, the second lengthy motion picture shape shell fragment, the 3rd lengthy motion picture shape shell fragment and two first antenna shrapnels feedback pin; First lengthy motion picture shape shell fragment, the second lengthy motion picture shape shell fragment, the 3rd lengthy motion picture shape shell fragment broad ways are spaced successively, the left end of the first lengthy motion picture shape shell fragment connects the left end of the 3rd lengthy motion picture shape shell fragment, the right-hand member of the first lengthy motion picture shape shell fragment connects the right-hand member of the second lengthy motion picture shape shell fragment, two first antenna shrapnels feedback pin extend obliquely from the right-hand member of the second lengthy motion picture shape shell fragment and form, and two first antenna shrapnels feedback pin are spaced apart; First lengthy motion picture shape shell fragment, the second lengthy motion picture shape shell fragment, the 3rd lengthy motion picture shape shell fragment and two first antenna shrapnels feedback pin all offers the first hot melt hole;
Bluetooth antenna shell fragment comprises the first strip shell fragment, block shell fragment, the second strip shell fragment and the second antenna shrapnel feedback pin; The rear end of the first strip shell fragment connects the second strip shell fragment by block shell fragment, and the second antenna shrapnel feedback pin extends obliquely from the front end of the second strip shell fragment and forms; First strip shell fragment, block shell fragment, the second strip shell fragment and the second antenna shrapnel feedback pin all offer the second hot melt hole;
On antenna pedestal, the first hot melt hole of corresponding GSM antenna shrapnel is provided with the first hot molten column of correspondence position and quantity, and on antenna pedestal, also the second hot melt hole of corresponding Bluetooth antenna shell fragment is provided with the second hot molten column of correspondence position and quantity; GSM antenna shrapnel and Bluetooth antenna shell fragment spacer sleeve are located on antenna pedestal, each first hot molten column is through the first corresponding hot melt hole, each second hot molten column is through the second corresponding hot melt hole, the top sweat soldering of each the first hot molten column is in the periphery in the first hot melt hole of correspondence, and the top sweat soldering of each the second hot molten column is in the periphery in the second hot melt hole of correspondence.
Preferably, the first lengthy motion picture shape shell fragment offers two spaced first hot melt holes; Second lengthy motion picture shape shell fragment offers two spaced first hot melt holes; 3rd lengthy motion picture shape shell fragment offers three spaced first hot melt holes.
Preferably, the right-hand member of antenna pedestal and front end are respectively provided with one for being connected in the buckle of circuit board of mobile phone.
Preferably, the left end of antenna pedestal is provided with a reference column, for being plugged in the positioning through hole of circuit board of mobile phone.
The beneficial effects of the utility model are at least as follows:
Antenna shrapnel of the present utility model is firm to be firmly installed on antenna pedestal, is conducive to improving product yield, reduces the defect rate that causes of human factor, and is conducive to improving that mobile phone is resistance to falls performance.
In addition, between GSM antenna shrapnel and Bluetooth antenna shell fragment, keep certain intervals, effectively ensure the isolation between two antenna shrapnels, reduce interference each other.
Accompanying drawing explanation
Fig. 1 is the exploded perspective view being applied to circuit board of the better embodiment of the antenna for mobile phone mechanism of the low interference of the utility model.
Fig. 2 is the combination stereogram of the antenna for mobile phone mechanism of the low interference of Fig. 1.
Fig. 3 is the combination stereogram being applied to circuit board of the antenna for mobile phone mechanism of the low interference of Fig. 1.
Embodiment
Below in conjunction with accompanying drawing and embodiment, the utility model is described further:
Refer to Fig. 1 to 3, the utility model relates to a kind of antenna for mobile phone mechanism of low interference, and its better embodiment comprises antenna pedestal 20, GSM antenna shrapnel and Bluetooth antenna shell fragment.
GSM antenna shrapnel comprises the first lengthy motion picture shape shell fragment 11, second lengthy motion picture shape shell fragment the 12, the 3rd lengthy motion picture shape shell fragment 13 and two first antenna shrapnels feedback pin 14; First lengthy motion picture shape shell fragment 11, second lengthy motion picture shape shell fragment the 12, the 3rd lengthy motion picture shape shell fragment 13 broad ways is spaced successively, the left end of the first lengthy motion picture shape shell fragment 11 connects the left end of the 3rd lengthy motion picture shape shell fragment 13, the right-hand member of the first lengthy motion picture shape shell fragment 11 connects the right-hand member of the second lengthy motion picture shape shell fragment 12, two first antenna shrapnels feedback pin 14 extend obliquely from the right-hand member of the second lengthy motion picture shape shell fragment 12 and form, and two first antenna shrapnels feedback pin 14 are spaced apart; First lengthy motion picture shape shell fragment 11, second lengthy motion picture shape shell fragment the 12, the 3rd lengthy motion picture shape shell fragment 13 and two first antenna shrapnels feedback pin 14 all offer the first hot melt hole 15.
Bluetooth antenna shell fragment comprises the first strip shell fragment 41, block shell fragment 42, second strip shell fragment 43 and the second antenna shrapnel feedback pin 14.The rear end of the first strip shell fragment 41 connects the second strip shell fragment 43, second antenna shrapnel feedback pin 14 by block shell fragment 42 and to extend obliquely from the front end of the second strip shell fragment 43 and form; First strip shell fragment 41, block shell fragment 42, second strip shell fragment 43 and the second antenna shrapnel feedback pin 14 all offers the second hot melt hole 45.
On antenna pedestal 20, the first hot melt hole 15 of corresponding GSM antenna shrapnel is provided with the first hot molten column 24 of correspondence position and quantity, and on antenna pedestal 20, also the second hot melt hole 45 of corresponding Bluetooth antenna shell fragment is provided with the second hot molten column 23 of correspondence position and quantity; GSM antenna shrapnel and Bluetooth antenna shell fragment spacer sleeve are located on antenna pedestal 20, each first hot molten column 24 is through the first corresponding hot melt hole 15, each second hot molten column 23 is through the second corresponding hot melt hole 45, the top sweat soldering of each the first hot molten column 24 is in the periphery in the first hot melt hole 15 of correspondence, and the top sweat soldering of each the second hot molten column 23 is in the periphery in the second hot melt hole 45 of correspondence.So, such that antenna shrapnel is firm to be firmly installed on antenna pedestal 20, and be conducive to improving product yield, reduce the defect rate that human factor causes, and be conducive to improving that mobile phone is resistance to falls performance.
In addition, between GSM antenna shrapnel and Bluetooth antenna shell fragment, keep certain intervals, effectively ensure the isolation between two antenna shrapnels, reduce interference each other.
The structure of Bluetooth antenna can change the effective length of antenna in the useful space, realizes impedance matching, improves the radiation efficiency of bluetooth.
Preferably, the first lengthy motion picture shape shell fragment 11 offers two spaced first hot melt holes 15.Second lengthy motion picture shape shell fragment 12 offers two spaced first hot melt holes 15.3rd lengthy motion picture shape shell fragment 13 offers three spaced first hot melt holes 15.
Preferably, the right-hand member of antenna pedestal 20 and front end are respectively provided with one for being connected in the buckle 21 of circuit board of mobile phone 30, with the assembling of convenient antenna seat 20.
Preferably, the left end of antenna pedestal 20 is provided with a reference column 22, for being plugged in the positioning through hole 32 of circuit board of mobile phone 30, with the assembling of convenient antenna seat 20.
For a person skilled in the art, according to technical scheme described above and design, other various corresponding change and distortion can be made, and all these change and distortion all should belong within the protection range of the utility model claim.
Claims (4)
1. an antenna for mobile phone mechanism for low interference, is characterized in that: it comprises antenna pedestal, GSM antenna shrapnel and Bluetooth antenna shell fragment;
GSM antenna shrapnel comprises the first lengthy motion picture shape shell fragment, the second lengthy motion picture shape shell fragment, the 3rd lengthy motion picture shape shell fragment and two first antenna shrapnels feedback pin; First lengthy motion picture shape shell fragment, the second lengthy motion picture shape shell fragment, the 3rd lengthy motion picture shape shell fragment broad ways are spaced successively, the left end of the first lengthy motion picture shape shell fragment connects the left end of the 3rd lengthy motion picture shape shell fragment, the right-hand member of the first lengthy motion picture shape shell fragment connects the right-hand member of the second lengthy motion picture shape shell fragment, two first antenna shrapnels feedback pin extend obliquely from the right-hand member of the second lengthy motion picture shape shell fragment and form, and two first antenna shrapnels feedback pin are spaced apart; First lengthy motion picture shape shell fragment, the second lengthy motion picture shape shell fragment, the 3rd lengthy motion picture shape shell fragment and two first antenna shrapnels feedback pin all offers the first hot melt hole;
Bluetooth antenna shell fragment comprises the first strip shell fragment, block shell fragment, the second strip shell fragment and the second antenna shrapnel feedback pin; The rear end of the first strip shell fragment connects the second strip shell fragment by block shell fragment, and the second antenna shrapnel feedback pin extends obliquely from the front end of the second strip shell fragment and forms; First strip shell fragment, block shell fragment, the second strip shell fragment and the second antenna shrapnel feedback pin all offer the second hot melt hole;
On antenna pedestal, the first hot melt hole of corresponding GSM antenna shrapnel is provided with the first hot molten column of correspondence position and quantity, and on antenna pedestal, also the second hot melt hole of corresponding Bluetooth antenna shell fragment is provided with the second hot molten column of correspondence position and quantity; GSM antenna shrapnel and Bluetooth antenna shell fragment spacer sleeve are located on antenna pedestal, each first hot molten column is through the first corresponding hot melt hole, each second hot molten column is through the second corresponding hot melt hole, the top sweat soldering of each the first hot molten column is in the periphery in the first hot melt hole of correspondence, and the top sweat soldering of each the second hot molten column is in the periphery in the second hot melt hole of correspondence.
2. the antenna for mobile phone mechanism of low interference as claimed in claim 1, is characterized in that: the first lengthy motion picture shape shell fragment offers two spaced first hot melt holes; Second lengthy motion picture shape shell fragment offers two spaced first hot melt holes; 3rd lengthy motion picture shape shell fragment offers three spaced first hot melt holes.
3. the antenna for mobile phone mechanism of low interference as claimed in claim 1, is characterized in that: the right-hand member of antenna pedestal and front end are respectively provided with one for being connected in the buckle of circuit board of mobile phone.
4. the antenna for mobile phone mechanism of low interference as claimed in claim 3, is characterized in that: the left end of antenna pedestal is provided with a reference column, for being plugged in the positioning through hole of circuit board of mobile phone.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201520348073.XU CN204577583U (en) | 2015-05-26 | 2015-05-26 | The antenna for mobile phone mechanism of low interference |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201520348073.XU CN204577583U (en) | 2015-05-26 | 2015-05-26 | The antenna for mobile phone mechanism of low interference |
Publications (1)
Publication Number | Publication Date |
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CN204577583U true CN204577583U (en) | 2015-08-19 |
Family
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201520348073.XU Expired - Fee Related CN204577583U (en) | 2015-05-26 | 2015-05-26 | The antenna for mobile phone mechanism of low interference |
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CN (1) | CN204577583U (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2017111939A1 (en) * | 2015-12-21 | 2017-06-29 | Ventus Networks Llc | Router having removable cell pack |
-
2015
- 2015-05-26 CN CN201520348073.XU patent/CN204577583U/en not_active Expired - Fee Related
Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2017111939A1 (en) * | 2015-12-21 | 2017-06-29 | Ventus Networks Llc | Router having removable cell pack |
CN108605015A (en) * | 2015-12-21 | 2018-09-28 | 文图斯网络有限公司 | Router with detachable honeycomb group |
US10230165B2 (en) | 2015-12-21 | 2019-03-12 | Ventus Networks Llc | Wireless router with automatic switching between internal and external antennas |
EP3395084A4 (en) * | 2015-12-21 | 2019-07-17 | Ventus Networks LLC | Router having removable cell pack |
US10763581B2 (en) | 2015-12-21 | 2020-09-01 | Ventus Ip Holdings, Llc | Wireless router with automatic switching between internal and external antennas |
CN108605015B (en) * | 2015-12-21 | 2021-04-20 | 文图斯Ip控股有限公司 | Router with detachable cellular groups |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20150819 Termination date: 20170526 |