TWM595893U - Satellite antenna azimuth angle adjusting device - Google Patents
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- TWM595893U TWM595893U TW109201916U TW109201916U TWM595893U TW M595893 U TWM595893 U TW M595893U TW 109201916 U TW109201916 U TW 109201916U TW 109201916 U TW109201916 U TW 109201916U TW M595893 U TWM595893 U TW M595893U
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Abstract
一種衛星天線方位角度調整裝置包含一固定座、一調整座、一微調件,與一托架;該固定座包含一頂板與一調整口,該調整座可角度轉動的連接於該固定座的頂板,其包含一微調連接孔與一滑槽,該微調連接孔位於該頂板的外側,該滑槽為對齊該固定座的調整口的弧槽,該微調件可轉動的連接於該調整座,其包含穿設於該微調連接孔的調整軸與穿設於該滑槽與該調整口的定位頭,該托架可樞轉的連接於該調整座。A satellite antenna azimuth angle adjusting device includes a fixing base, an adjusting base, a fine adjustment piece, and a bracket; the fixing base includes a top plate and an adjusting port, and the adjusting base can rotate and connect to the top plate of the fixing base It includes a fine-tuning connection hole and a slide slot, the fine-tuning connection hole is located on the outer side of the top plate, the slide slot is an arc slot aligned with the adjustment port of the fixing seat, the fine adjustment member is rotatably connected to the adjustment seat, which The adjusting shaft is inserted through the fine adjustment connection hole and the positioning head is inserted through the slide slot and the adjustment port. The bracket is pivotally connected to the adjustment base.
Description
本新型關於一種衛星天線,特別關於一種衛星天線的方位角度的調整機構。The present invention relates to a satellite antenna, in particular to a mechanism for adjusting the azimuth angle of a satellite antenna.
為了讓衛星天線達到較佳的接收角度,通常會以一角度調整裝置安裝於衛星天線與支撐架之間,而可以調整衛星天線的仰角(垂直方位的夾角)與方位角度(水平方位的夾角)。該角度調整裝置主要包含一固定座、一托架,與一調整座,該固定座固設於支撐架,該托架用以安裝該衛星天線,該調整座連接該托架與該固定座,該調整座相對於該托架設有仰角調整機構,該調整座相對於該固定座設有方位角調整機構,因此,可以調整衛星天線相對於支撐架的連接角度,讓衛星天線可以接收到良好的電波訊號。In order to achieve a better reception angle of the satellite antenna, an angle adjustment device is usually installed between the satellite antenna and the supporting frame, and the elevation angle (angle of vertical azimuth) and azimuth angle (angle of horizontal azimuth) of the satellite antenna can be adjusted . The angle adjusting device mainly includes a fixing base, a bracket, and an adjusting base. The fixing base is fixed on the support frame. The bracket is used to install the satellite antenna. The adjusting base connects the bracket and the fixing base. The adjustment base is provided with an elevation angle adjustment mechanism relative to the bracket, and the adjustment base is provided with an azimuth angle adjustment mechanism relative to the fixed base. Therefore, the connection angle of the satellite antenna relative to the support frame can be adjusted, so that the satellite antenna can receive a good Radio signal.
上述的調整座與固定座之間的方位角調整機構,主要以一水平設置的螺桿裝置連接固定座與調整座,而於轉動螺桿裝置時,改變螺桿裝置連接於固定座與調整座之間的長度,進而帶動調整座相對於固定座於水平方位轉動;然而,上述的結構中,螺桿的調整空間容易受到侷限,而有待改善。The above-mentioned azimuth adjustment mechanism between the adjustment base and the fixed base mainly uses a horizontally arranged screw device to connect the fixed base and the adjusted base. When the screw device is rotated, the screw device is changed between the fixed base and the adjusted base. The length, in turn, drives the adjustment seat to rotate in a horizontal orientation relative to the fixed seat; however, in the above structure, the adjustment space of the screw is easily limited and needs to be improved.
有鑑於此,本新型的主要目的在於提供一種結構簡單並容易調整的衛星天線方位角度的調整裝置。In view of this, the main purpose of the present invention is to provide a device for adjusting the azimuth angle of a satellite antenna with a simple structure and easy adjustment.
為了達到上述的目的,本新型所提出的衛星天線方位角度調整裝置,包含: 一固定座,其包含 一套接座; 一頂板,固設於該套接座的頂端;以及 一調整口,貫穿設於接近該頂板的周緣之位置; 一調整座,可角度轉動的連接於該固定座的頂板上,其包含 一底板,靠貼於該固定座的頂板,並以一樞軸件連接該固定座的頂板與該調整座的底板,該樞軸件位於該套接座內,並以複數個位於該套接座外側的迫緊件連接該固定座的頂板與該調整座的底板; 一微調連接孔,貫穿於該調整座的底板並位於該固定座的頂板的外側; 一滑槽,係為對齊該固定座的調整口的弧槽;以及 兩耳片,自該調整座的底板彎折而形成於該底板的相對側; 一微調件,可轉動的連接於該調整座,其包含 一調整軸,穿設於該微調連接孔;以及 一定位頭,與該調整軸間隔設置,並穿設於該滑槽與該調整口內;以及 一托架,位於該調整座的前側,並可樞轉地連接於該調整座的耳片。 In order to achieve the above purpose, the satellite antenna azimuth angle adjustment device proposed by the new model includes: A fixed seat, which contains A set of seats; A top plate fixed on the top of the socket; and An adjustment port is provided at a position close to the periphery of the top plate; An adjusting base, which is connected to the top plate of the fixing base and can rotate at an angle, includes A bottom plate, which leans against the top plate of the fixing seat, and connects the top plate of the fixing seat and the bottom plate of the adjusting seat with a pivot member, the pivot member is located in the socket, and a plurality of pieces are located in the socket The pressing member outside the seat connects the top plate of the fixed seat and the bottom plate of the adjusting seat; A fine-tuning connection hole penetrating through the bottom plate of the adjusting seat and located outside the top plate of the fixing seat; A chute, which is an arc slot aligned with the adjustment port of the fixed seat; and The two lugs are bent from the bottom plate of the adjusting base and formed on opposite sides of the bottom plate; A fine adjustment piece is rotatably connected to the adjustment base, which includes An adjustment shaft passing through the fine adjustment connection hole; and A positioning head, which is spaced apart from the adjustment shaft and penetrates the chute and the adjustment port; and A bracket is located on the front side of the adjusting base and can be pivotally connected to the ears of the adjusting base.
當微調件的調整軸轉動時,微調件的定位頭與該調整座的滑槽之間的相對位置改變,因為固定座的調整口位置固定,因此會反向帶動該微調件的調整軸位移,進而帶動該調整座相對於該固定座以樞軸件為中心轉動,改變水平方位角度。When the adjustment shaft of the fine adjustment member rotates, the relative position between the positioning head of the fine adjustment member and the sliding groove of the adjustment seat changes, because the position of the adjustment port of the fixing seat is fixed, so the adjustment shaft of the fine adjustment member will be reversely displaced, In turn, the adjustment base is rotated relative to the fixed base around the pivot member to change the horizontal azimuth angle.
本新型的衛星天線方位角度調整裝置,其固定座、調整座、微調件為上、下疊接,該微調件佔據的空間小,調整空間較不易受到其他構件的侷限,並可以讓固定座與調整座之間樞軸設於該固定座的中心,避免衛星天線改變方位角時,造成衛星天線的重心與支撐桿之間的變化,具有結構簡單,組裝容易,容易調整的優點。In the satellite antenna azimuth angle adjusting device of the present invention, the fixing base, the adjusting base, and the fine-tuning part are stacked up and down. The fine-tuning part occupies a small space, and the adjustment space is less likely to be limited by other components. The pivot between the adjusting bases is set at the center of the fixing base to avoid the change of the center of gravity of the satellite antenna and the support rod when the satellite antenna changes its azimuth, and has the advantages of simple structure, easy assembly and easy adjustment.
請參考圖1至3,與圖7,本新型的衛星天線方位調整裝置之較佳實施例,其包含一固定座10、一調整座20、一微調件30,與一托架40。Please refer to FIGS. 1 to 3 and FIG. 7, a preferred embodiment of the novel satellite antenna orientation adjusting device includes a
該固定座10用以固設於一支撐架,其包含一套接座11、一頂板13,與一調整口15;該套接座11為C形束管,用以套設固定於支撐架,該頂板13呈方形,焊接固設於該套接座11的頂端,該調整口15貫穿設於接近該頂板13的周緣之位置,該調整口15可自頂板13的周緣向內凹設,或是該調整口15朝向該頂板13周緣延伸,而於該頂板13的周緣形成開口。The
該調整座20可轉動的連接於該固定座10的頂板13,該調整座20包含一底板21、一微調連接孔26、一滑槽28,與兩耳片23。The adjusting
該底板21靠貼於該頂板13,並以一樞軸件225連接該頂板13與該底板21,該樞軸件225位於該套接座11內,並以複數個位於該套接座11外側的迫緊件245連接該頂板13與該底板21;其中,該頂板13於對應該樞軸件225的位置貫穿設有一固定座樞孔12,該底板21於對應該樞軸件225的位置貫穿設有一第一樞孔22,該樞軸件225穿設於該第一樞孔22與該固定座樞孔12,該樞軸件225可為铆釘件,並铆接該固定座10與該調整座20。該頂板13與該底板21於對應各迫緊件245的位置分別設有一定位孔14與一定位弧孔24,該定位弧孔24係為以該樞軸件225為中心的圓弧槽,各迫緊件245穿設於該定位孔14與該定位弧孔24,因此當固定座10與該調整座20相對樞轉時,該定位弧孔24可以相對於該迫緊件245位移,於本實施例中,該頂板13設有四個定位孔14,該些定位孔14以角度間隔排列的環繞於該固定座樞孔12的外周,並位於該套接座11的外側,該底板21設有四個分別對齊該四個定位孔14的定位弧孔24,上述的定位孔亦可設皆於底板21,而定位弧孔皆設於頂板13,或是定位孔分別設於頂板13與底板21,定位弧孔則對應的分別設於底板21與頂板13,等等應用上的變化。該迫緊件245可為方頸螺栓與螺帽的組合,而讓方頸螺栓的方頸部嵌卡於該定位弧孔24或定位孔14內,避免方頸螺栓鎖固時相對轉動;調整固定座10與調整座20之間的相對角度時,可略為鬆開該些迫緊件245,而讓固定座10與調整座20可相對旋轉角度,調整後,再將該些迫緊件245迫緊,避免定位後固定座10與調整座20相對轉動。The
該微調連接孔26貫穿於該調整座20的底板21並位於該頂板13的外側,該微調連接孔26位於鄰近該調整口15的位置,該滑槽28為對齊該調整口15的弧槽,該微調件30可轉動的連接於該調整座20,其包含一調整軸35與一定位頭33,該調整軸35穿設於該微調連接孔26,該定位頭33與該調整軸35間隔設置,並穿設於該滑槽28與該調整口15內,該調整軸35一端形成一頭部351,另一端與一螺帽連接,該頭部351位於該底板21的上方,該螺帽與該底板21之間可設有一彈簧墊片與一平墊片,該頭部351可以凹設有調整凹槽352,該調整凹槽352可為星形或六角形,而可插設內六角扳手或內星形扳手,轉動該調整軸35,而帶動該定位頭33於該滑槽28內相對位移,該頭部351亦可以是六角頭。該微調件30可以設於該調整座20的底板21鄰近後側的位置,該底板21可以向後側延伸一沒有覆蓋頂板13的區塊,該微調連接孔26設於該區塊上。The fine
該兩耳片23自該底板21彎折而形成於該底板21的相對側,該兩耳片23可以分別由該底板21的相對側向上彎折而成,該托架40位於該調整座20的前側,並可樞轉的連接於該調整座20的耳片23,該托架40包含兩連接耳42,該兩連接耳42分別靠貼於該兩耳片23,並分別以一橫軸件425穿設於該連接耳42與該耳片23;該兩耳片23於該底板21的前側分別設有位置對齊的一第二樞孔232,該兩連接耳42於分別設有一托架樞孔422,並分別對齊該第二樞孔232,並以分別該橫軸件425穿設連接,該兩耳片23可以分別設有一托架定位孔234,且該兩連接耳42分別設有一托架弧孔424,該托架弧孔424為以橫軸件425為圓心並對齊該托架定位孔234的圓弧孔,並以一固鎖件235穿設於該托架弧孔424與該托架定位孔234,而可於調整托架40相對於調整座20樞轉後,以固鎖件235迫緊固定。The two
該托架40與該調整座20之間亦可以連接一螺桿裝置50,該螺桿裝置50包含一螺桿51與一連接座53,該連接座53可樞轉的連接於該調整座20的後側,該螺桿51穿設於該連接座53,且螺桿51的一端連接於該托架40,並位於該托架樞孔422的上方的位置;請參考圖5與圖6,可以調整該螺桿51連接於連接座53與托架40之間的直線距離,進而帶動該托架40相對該調整座20樞轉。A
請參考圖3與圖4,當調整軸35轉動時,定位頭33與該調整座20的滑槽28之間的相對位置改變,因為固定座10的調整口15位置固定,因此會反向帶動該微調件30的調整軸35位移,進而帶動該調整座20相對於該固定座10轉動,而可以微調衛星天線的方位角,並於微調後,迫緊該些迫緊件245,固定調整座20的位置;較佳的是,該微調件30設有指示標記32,該底板21設有位置對應的角度標線215,而讓使用者容易辨別調整的角度。Please refer to FIGS. 3 and 4. When the
該固定座10、調整座20、微調件30為上、下疊設連接,微調件30佔據的空間小,調整空間較不易受到其他構件的侷限,並可以直接將調整座20與固定座10之間的樞軸件225設於固定座10的中心,避免衛星天線改變方位角時,造成衛星天線的重心與支撐桿之間的變化,具有結構簡單,組裝容易,容易調整的優點。The
10:固定座 11:套接座 12:固定座樞孔 13:頂板 14:定位孔 15:調整口 20:調整座 21:底板 215:角度標線 22:第一樞孔 225:樞軸件 23:耳片 232:第二樞孔 234:托架定位孔 235:固鎖件 24:定位弧孔 245:迫緊件 26:微調連接孔 28:滑槽 30:微調件 32:指示標記 33:定位頭 35:調整軸 351:頭部 352:凹槽 40:托架 42:連接耳 422:托架樞孔 424:托架弧孔 425:橫軸件 50:螺桿裝置 51:螺桿 53:連接座 10: fixed seat 11: socket 12: fixed seat pivot hole 13: Top plate 14: positioning hole 15: Adjustment port 20: Adjust seat 21: bottom plate 215: Angle marking 22: First pivot hole 225: pivot piece 23: ear piece 232: Second pivot hole 234: Bracket positioning hole 235: locking piece 24: positioning arc hole 245: Urgent piece 26: Fine-tune the connection hole 28: Chute 30: fine-tuning 32: Indicating mark 33: positioning head 35: Adjust the shaft 351: head 352: groove 40: bracket 42: Connect ear 422: bracket pivot hole 424: bracket arc hole 425: horizontal shaft 50: screw device 51: screw 53: Connector
圖1為本新型較佳實施例的立體外觀圖。 圖2為本新型較佳實施例的立體分解圖。 圖3為本新型較佳實施例的俯視圖(省略托架)。 圖4為本新型較佳實施例之調整水平角之動作示意俯視圖(省略托架)。 圖5為本新型較佳實施例的側視圖。 圖6為本新型較佳實施例之調整仰角之動作示意側視圖。 圖7為本新型較佳實施例裝設有衛星天線之立體外觀圖。 FIG. 1 is a perspective external view of a preferred embodiment of the new type. FIG. 2 is an exploded perspective view of a preferred embodiment of the new model. Fig. 3 is a top view of the preferred embodiment of the new model (omitted bracket). FIG. 4 is a schematic top view of the action of adjusting the horizontal angle of the preferred embodiment of the present invention (the bracket is omitted). Fig. 5 is a side view of a preferred embodiment of the new model. FIG. 6 is a schematic side view of the action of adjusting the elevation angle of the preferred embodiment of the present invention. 7 is a perspective view of a new preferred embodiment of the present invention equipped with a satellite antenna.
10:固定座 10: fixed seat
11:套接座 11: socket
20:調整座 20: Adjust seat
21:底板 21: bottom plate
225:樞軸件 225: pivot piece
23:耳片 23: ear piece
245:迫緊件 245: Urgent piece
28:滑槽 28: Chute
30:微調件 30: fine-tuning
35:調整軸 35: Adjust the shaft
40:托架 40: bracket
42:連接耳 42: Connect ear
424:托架弧孔 424: bracket arc hole
425:托架定位孔 425: Bracket positioning hole
50:螺桿裝置 50: screw device
51:螺桿 51: screw
53:連接座 53: Connector
Claims (8)
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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TW109201916U TWM595893U (en) | 2020-02-20 | 2020-02-20 | Satellite antenna azimuth angle adjusting device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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TW109201916U TWM595893U (en) | 2020-02-20 | 2020-02-20 | Satellite antenna azimuth angle adjusting device |
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TWM595893U true TWM595893U (en) | 2020-05-21 |
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ID=71897802
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Application Number | Title | Priority Date | Filing Date |
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TW109201916U TWM595893U (en) | 2020-02-20 | 2020-02-20 | Satellite antenna azimuth angle adjusting device |
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TW (1) | TWM595893U (en) |
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2020
- 2020-02-20 TW TW109201916U patent/TWM595893U/en unknown
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