This application claims the benefit of Chinese Patent Application 201510044792.7 filed Jan. 29, 2015, the entire contents of which are incorporated herein by reference in their entirety.
The present invention relates to an apparatus and method for reducing vibration frequency transmission in a small base station antenna.
To meet the requirements of LTE (long term evolution) wireless communication standards, base station antennas tend to employ the miniaturization design. Small base station antennas (typically having a length less than 0.4 m) are mainly used on urban streets and densely distributed, for example, mounted on street light poles.
However, environmental testing requirements for small base station antennas are the same as those for large base station antennas (typically having a length greater than 1.3 m), both of which need to pass sinusoidal vibration test and random vibration test required by the industry, and may even need to pass the stricter impact test. It has imposed a greater challenge on the structure of small base station antennas.
The frequency of sinusoidal vibration of existing large base station antennas typically having a length greater than 1.3 m is usually a relatively low frequency of 20 to 30 Hz. To a small base station antenna typically having a length less than 0.4 m, however, the frequency of sinusoidal vibration is usually a relatively high frequency of 90 to 100 Hz. High frequency amplitude will more easily damage welded connections inside an antenna, such as soldering points between a coaxial phase cable and a printed circuit board, soldering points between an antenna transmission unit and a printed circuit board. Since it is very difficult to adjust a small base station antenna's own size and quality, the conventional method that changes amplitude by changing mass cannot meet the environmental testing requirements for small base station antennas.
The object of the present invention is to address the issue that a small base station antenna operates normally under high frequency vibration, such that the small base station antenna can pass the sinusoidal vibration test and random vibration test required by the industry, and can even pass the stricter impact test.
The above object is attained through an apparatus and method for reducing vibration frequency transmission in a small base station antenna.
The present invention discloses a small base station antenna, said small base station antenna having a length less than 0.4 m, and comprising a carriage, an antenna core assembly and an antenna shell, said small base station antenna capable of being mounted to a holding pole at one point through a mounting rack, characterized in that said small base station antenna further comprises a shock absorption part disposed between the carriage and the antenna shell for reducing the vibration frequency transmitted into the antenna core assembly.
The present invention further discloses a method for reducing vibration frequency transmission in a small base station antenna, said small base station antenna having a length less than 0.4 m, and comprising a carriage, an antenna core assembly and an antenna shell, said small base station antenna capable of being mounted to a holding pole at one point through a mounting rack, said method comprising a shock absorption part disposed between the carriage and the antenna shell so as to reduce the vibration frequency transmitted into the antenna core assembly.
Preferably, the shock absorption part is a pad made of a shock absorption material. The shock absorption material is preferably a closed cell material. The shock absorption material may also be a silica gel material. The shape of the pad is preferably substantially rectangular, one pair of sides has a length of about 160 mm, the other pair of sides has a length of about 48 to 250 mm, and the thickness of the pad is preferably about 1.14 to 3.18 mm.
Preferably, the shock absorption part comprises a pad made of the shock absorption material and a thin-walled metal sleeve, the metal sleeve supports the pad for coordination with installation, so as to further reduce the vibration frequency transmitted into the antenna core assembly. The shock absorption material is preferably a closed cell material. The shock absorption material may also be a silica gel material. The metal sleeve is preferably a brass pipe. The metal sleeve may also be an aluminum pipe or stainless steel pipe. The shape of the pad is preferably substantially rectangular, both pairs of sides have a size of 30 to 50 mm, the thickness of the pad is preferably about 3.18 mm. The wall thickness of the metal sleeve is preferably about 0.5 to 1.0 mm. The height of the metal sleeve is preferably about 2 mm.
Preferred embodiments of the present invention are described below with reference to the accompanying drawings, which will make various objects, features and advantages of the present invention more obvious. In the accompanying drawings, the same legends constantly indicate the same or similar parts.
The detailed description below is essentially exemplary, rather than a limitation to the scope, applicability or structure of the present invention in any way. In addition, the description below only provides a few examples of implementation of the present invention. Those skilled in the art should understand that many provided examples have a variety of appropriate substitutions.
Examples of the present invention will be described below with reference to
As shown in
As shown in
As shown in
The shape, quantity or size of the pad is not limited to the above specific example, but may be selected according to a specific application.
As shown in
As shown in
Although the present invention has been disclosed with reference to some examples, a variety of variations, modifications and amendments may be made to the described examples without departing from the scope and category of the present invention. Therefore, it should be understood that the present invention is not limited to the described examples, but has an entire scope defined by the text of the appended claims and equivalent contents thereof.
1 Small base station antenna
2 Holding pole
3 Carriage
4 Antenna core assembly
5 Closed cell pad
6 Antenna shell
7 Reflection plate
8 M5 nut
9 M5 spring gasket
10 M5 flat gasket
11 Brass pipe
12 M5 pressure rivet screw riveted on the carriage
13 Stepped aluminum pad
14 Mounting support
15 M8 flat gasket
16 M8 spring gasket
17 M8 bolt
Number | Date | Country | Kind |
---|---|---|---|
201510044792.7 | Jan 2015 | CN | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/US2015/043801 | 8/5/2015 | WO | 00 |