TW201547134A - 連接器及促進通過一連接器的連續性之方法 - Google Patents
連接器及促進通過一連接器的連續性之方法 Download PDFInfo
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- H01R9/00—Structural associations of a plurality of mutually-insulated electrical connecting elements, e.g. terminal strips or terminal blocks; Terminals or binding posts mounted upon a base or in a case; Bases therefor
- H01R9/03—Connectors arranged to contact a plurality of the conductors of a multiconductor cable, e.g. tapping connections
- H01R9/05—Connectors arranged to contact a plurality of the conductors of a multiconductor cable, e.g. tapping connections for coaxial cables
- H01R9/0521—Connection to outer conductor by action of a nut
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- H01R13/00—Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
- H01R13/46—Bases; Cases
- H01R13/502—Bases; Cases composed of different pieces
- H01R13/5025—Bases; Cases composed of different pieces one or more pieces being of resilient material
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R13/00—Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
- H01R13/62—Means for facilitating engagement or disengagement of coupling parts or for holding them in engagement
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R4/00—Electrically-conductive connections between two or more conductive members in direct contact, i.e. touching one another; Means for effecting or maintaining such contact; Electrically-conductive connections having two or more spaced connecting locations for conductors and using contact members penetrating insulation
- H01R4/28—Clamped connections, spring connections
- H01R4/48—Clamped connections, spring connections utilising a spring, clip, or other resilient member
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- H—ELECTRICITY
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- H01R43/00—Apparatus or processes specially adapted for manufacturing, assembling, maintaining, or repairing of line connectors or current collectors or for joining electric conductors
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R43/00—Apparatus or processes specially adapted for manufacturing, assembling, maintaining, or repairing of line connectors or current collectors or for joining electric conductors
- H01R43/16—Apparatus or processes specially adapted for manufacturing, assembling, maintaining, or repairing of line connectors or current collectors or for joining electric conductors for manufacturing contact members, e.g. by punching and by bending
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- H—ELECTRICITY
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- H01R43/00—Apparatus or processes specially adapted for manufacturing, assembling, maintaining, or repairing of line connectors or current collectors or for joining electric conductors
- H01R43/26—Apparatus or processes specially adapted for manufacturing, assembling, maintaining, or repairing of line connectors or current collectors or for joining electric conductors for engaging or disengaging the two parts of a coupling device
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- H—ELECTRICITY
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- H01R9/00—Structural associations of a plurality of mutually-insulated electrical connecting elements, e.g. terminal strips or terminal blocks; Terminals or binding posts mounted upon a base or in a case; Bases therefor
- H01R9/03—Connectors arranged to contact a plurality of the conductors of a multiconductor cable, e.g. tapping connections
- H01R9/05—Connectors arranged to contact a plurality of the conductors of a multiconductor cable, e.g. tapping connections for coaxial cables
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R9/00—Structural associations of a plurality of mutually-insulated electrical connecting elements, e.g. terminal strips or terminal blocks; Terminals or binding posts mounted upon a base or in a case; Bases therefor
- H01R9/03—Connectors arranged to contact a plurality of the conductors of a multiconductor cable, e.g. tapping connections
- H01R9/05—Connectors arranged to contact a plurality of the conductors of a multiconductor cable, e.g. tapping connections for coaxial cables
- H01R9/0527—Connection to outer conductor by action of a resilient member, e.g. spring
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R13/00—Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
- H01R13/46—Bases; Cases
- H01R13/52—Dustproof, splashproof, drip-proof, waterproof, or flameproof cases
- H01R13/5202—Sealing means between parts of housing or between housing part and a wall, e.g. sealing rings
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R13/00—Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
- H01R13/62—Means for facilitating engagement or disengagement of coupling parts or for holding them in engagement
- H01R13/622—Screw-ring or screw-casing
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R43/00—Apparatus or processes specially adapted for manufacturing, assembling, maintaining, or repairing of line connectors or current collectors or for joining electric conductors
- H01R43/20—Apparatus or processes specially adapted for manufacturing, assembling, maintaining, or repairing of line connectors or current collectors or for joining electric conductors for assembling or disassembling contact members with insulating base, case or sleeve
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T29/00—Metal working
- Y10T29/49—Method of mechanical manufacture
- Y10T29/49002—Electrical device making
- Y10T29/49117—Conductor or circuit manufacturing
- Y10T29/49174—Assembling terminal to elongated conductor
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T29/00—Metal working
- Y10T29/49—Method of mechanical manufacture
- Y10T29/49002—Electrical device making
- Y10T29/49117—Conductor or circuit manufacturing
- Y10T29/49204—Contact or terminal manufacturing
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T29/00—Metal working
- Y10T29/49—Method of mechanical manufacture
- Y10T29/49002—Electrical device making
- Y10T29/49117—Conductor or circuit manufacturing
- Y10T29/49204—Contact or terminal manufacturing
- Y10T29/49208—Contact or terminal manufacturing by assembling plural parts
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Abstract
本發明提供具有第一端、第二端及靠近第二端的凸緣之柱,其中柱係配置成接收藉由同軸電纜的介電層所包圍之中心導體;提供連接器本體,其附接至柱;提供耦合元件,其附接至柱,耦合元件具有第一端與第二端;及提供偏壓構件,其佈置於空腔內,空腔係形成在耦合元件的第一端與該連接器本體之間,且偏壓構件對柱偏壓耦合元件。而且,本發明進一步提供具有偏壓元件的連接器本體,其中偏壓元件對柱偏壓耦合元件。再者,本發明還提供相關的方法。
Description
本發明係關於一種使用於同軸電纜通訊應用的連接器,且更具體而言係一種具有偏壓構件的連接器之具體實施例,其係用於維持通過連接器的連續性。
用於同軸電纜的連接器通常連接於相配合的介面埠,來電性結合同軸電纜至各種電氣裝置。維持通過一同軸電纜連接器的連續性通常涉及導電連接器組件的連續性接觸,其能防止射頻(RF,radio frequency)洩漏及確保一穩定接地連接。在某些實施例中,該等同軸電纜連接器係出現在室外,暴露於氣候及其他許多的環境元素。當金屬導體連接器組件腐蝕、生鏽、變質或變成電不相容的時候,氣候與各種環境元素會產生干擾問題從而導致間歇性接觸、不充足的電磁屏蔽以及訊號品質的劣化。此外,某些金屬連接器組件在該連接器與一介面埠匹配的力矩需求下能永久地變形。一金屬連接器組件的永久變形導致該連接器的導電組件之間的間歇性接觸與通過該連接器的連續性之損失。
因此,存在一種設備及方法的需求,其係用於確保連接器的導電構件之間的連續性接觸。
本發明之一第一通用態樣係關於一種同軸電纜連接器,其包含一柱,該柱具有一第一端、一第二端及靠近該第二端的一凸緣,其中該柱係配置成接收一中心導體,該中心導體係藉由一同軸電纜的一介電層所包圍;一連接器本體,其附接至該柱;一耦合元件,其附接至該柱,該耦合元件具有一第一端與一第二端;及一偏壓構件,其係佈置於一空腔內,該空腔係形成在該耦合元件的第一端與該連接器本體之間,該偏壓構件對該柱偏壓該耦合元件。
本發明之一第二通用態樣係關於一種同軸電纜連接器,其包含一柱,該柱具有一第一端、一第二端及靠近該第二端的一凸緣,其中該柱係配置成接收一中心導體,該中心導體係藉由一同軸電纜的一介電層所包圍;一耦合元件,其附接至該柱,該耦合元件具有一第一端與一第二端:及一連接器本體,其具有一偏壓元件,其中該偏壓元件對該柱偏壓該耦合元件。
本發明之一第三通用態樣係關於一種同軸電纜連接器,其包含一柱,其具有一第一端、一第二端及靠近該第二端的一凸緣,其中該柱係配置成接收一中心導體,該中心導體係藉由一同軸電纜的一介電層所包圍;一連接器本體,其附接至該柱;一耦合元件,其附接至該柱,該耦合元件具有一第一端與一第二端;及一手段,其係用於對該柱偏壓該耦合元件,其中該手段不阻礙該耦合元件的旋轉移動。
本發明之一第四通用態樣係關於一種促進通過一同軸電纜連接器的連續性之方法,其包含:提供一柱,其具有一第一端、一第二端及靠近該第二端的一凸緣,其中該柱係配置成接收一中心導體,該中心導體係藉由一同軸電纜的一介電層所包圍;提供一連接器本體,其附接至該柱;及提供一耦合元件,其附接至該柱,該耦合元件具有一第一端與一第二端;及佈置一偏壓構件於一空腔內,該空腔係形成在該耦合元件的第一端與該連接器本體之間,該
偏壓構件對該柱偏壓該耦合元件。
本發明之一第五通用態樣係關於一種促進通過一同軸電纜連接器的連續性之方法,其包含:提供一柱,其具有一第一端、一第二端及靠近該第二端的一凸緣,其中該柱係配置成接收一中心導體,該中心導體係藉由一同軸電纜的一介電層所包圍;提供一耦合元件,其附接至該柱,該耦合元件具有一第一端與一第二端;及提供一連接器本體,其具有一第一端、一第二端及靠近該連接器本體的第二端之一環狀凹槽;及延伸該環狀凹槽一徑向距離來嚙合該耦合元件,其中介於所延伸的環狀凹槽與該耦合元件之間的嚙合對該柱偏壓該耦合元件。
在本說明中提供前述與其它構造及本發明的操作將可由以下的詳細說明配合附屬圖式更為立即地瞭解與完整地認識。
1‧‧‧第一端
2‧‧‧第二端
5‧‧‧軸
10‧‧‧同軸電纜
12‧‧‧保護外部護套
14‧‧‧導電股線層
16‧‧‧介電層
18‧‧‧中心導體
20‧‧‧介面埠
22‧‧‧導電插座
24‧‧‧外部表面
26‧‧‧匹配邊緣
30‧‧‧耦合元件
31‧‧‧第一端
32‧‧‧第二端
33‧‧‧內部表面
34‧‧‧外部表面
36‧‧‧內部唇緣
38‧‧‧空腔
39‧‧‧內壁
40‧‧‧柱
41‧‧‧第一端
42‧‧‧第二端
43‧‧‧內部表面
44‧‧‧外部表面
45‧‧‧凸緣
46‧‧‧匹配邊緣
47‧‧‧外部漸縮表面
49‧‧‧表面特徵
50‧‧‧連接器本體
51‧‧‧第一端
52‧‧‧第二端
53‧‧‧內部表面
54‧‧‧外部表面
56‧‧‧環狀凹槽
57‧‧‧柱固定部分
58‧‧‧環狀掣子
59‧‧‧表面特徵
60‧‧‧緊固構件
61‧‧‧第一端
62‧‧‧第二端
63‧‧‧內部表面
64‧‧‧外部表面
66‧‧‧斜坡表面
67‧‧‧內部環狀凸出物
69‧‧‧表面特徵
70‧‧‧偏壓構件
80‧‧‧匹配邊緣導電構件
90‧‧‧連接器本體O型環
100‧‧‧同軸電纜連接器
101‧‧‧同軸電纜連接器
200‧‧‧連接器
250‧‧‧連接器本體
251‧‧‧第一端
252‧‧‧第二端
253‧‧‧內部表面
254‧‧‧外部表面
255‧‧‧偏壓元件
256‧‧‧環狀凹槽
257‧‧‧柱固定部分
258‧‧‧凹槽
259‧‧‧內部表面特徵
本發明的某些具體實施例將被詳細描述,參照以下圖式,其類似命名代表類似的構件,其中:第1A圖 描繪一同軸電纜連接器的第一具體實施例之截面圖。
第1B圖 描繪一同軸電纜連接器的第一具體實施例之部分剖面圖。
第2圖 描繪一同軸電纜的具體實施例之示意圖。
第3圖 描繪一柱的具體實施例之截面圖。
第4圖 描繪一耦合元件的具體實施例之截面圖。
第5圖 描繪一連接器本體的第一具體實施例之截面圖。
第6圖 描繪一緊固構件的具體實施例之截面圖。
第7圖 描繪一同軸電纜連接器的第二具體實施例之截面圖。
第8A圖 描繪一同軸電纜連接器的第三具體實施例之截面圖。
第8B圖 描繪一同軸電纜連接器的第三具體實施例之部分剖面圖。
第9圖 描繪一連接器本體的第二具體實施例之截面圖。
在實施方式中,所揭示的設備與方法之詳細具體實施例係作為示例,且不侷限於圖式。雖然本發明的某些具體實施例會顯示並詳細描繪,應了解的是,可在不偏離申請專利範圍的情況下作出各種變化與修改。本發明的範圍絕不會限制構成元件的數量、構成元件的材料、構成元件的形狀及相對配置等等,且該等揭示僅作為本發明的具體實施例之一範例。
除非上下文有清楚地指示之外,應注意,如在本說明書與所附之申請專利範圍中所使用的那樣,單數形式「一」與「該」包含複數的指示物係作為詳細描繪的序言。
參照圖式,第1A圖與第1B圖描繪一同軸電纜連接器100的一具體實施例。一同軸電纜連接器100的具體實施例具有一第一端1與一第二端2,且能在使用時,以預先組裝的配置提供給一使用者來易於處理與安裝。同軸電纜連接器100可為一F型連接器或類似的同軸電纜連接器。再者,該同軸電纜連接器100包括一柱40,其配置成用於接收一同軸電纜10之一預備的部分。
現在參照第2圖,該同軸電纜連接器100可操作地固定至一同軸電纜10之一預備的末端,以便該同軸電纜10牢固地附接至該同軸電纜連接器100。該同軸電纜10可包括一中心導體18,其係藉由一內部的介電層16所包圍;該內部的介電層16有可能地藉由一導電箔層所包圍;該內部的介電層16(及可能有的導電箔層)係藉由一導電股線層14所包圍;該導電股線層14係藉由一保護外部護套12所包圍,其中該保護外部護套12具有介電特性,並當成
一絕緣體。該導電股線層14可延伸一接地路徑以提供關於該同軸電纜10的中心導體18之一電磁屏蔽。該同軸電纜10可藉由移除該保護外部護套12與抽去該導電股線層14以暴露該內部的介電層16之一部分(及可緊緊地包圍該內部的介電層16之可能有的導電箔層)及中心導體18來預備。該保護外部護套12能實體地保護該同軸電纜10的各種組件以避免受到損害,所述之損害可能由暴露於灰塵或濕氣所導致,或是由腐蝕所導致。此外,該保護外部護套12在某些程度上可在一容納電纜的設計中來牢固該同軸電纜10的各種組件,所述之容納電纜的設計係保護該同軸電纜10避免在電纜安裝期間因移動而受到損害。然而,當該保護外部護套12係暴露於環境、雨水及其他環境汙染物時,雨水及其他環境汙染物可沿著該保護外部護套12移動而離開。該導電股線層14能由適合用於傳遞電磁訊號及/或提供一電氣接地連接或電氣路徑連接的導電材料所包含。該導電股線層14也可為一導電層、編織層及其類似者。該導電股線層14的各種具體實施例可用於遮蔽不必要的干擾。舉例來說,該導電股線層14可包含包覆圍繞該介電層16的一金屬箔(另外,還可能有的導電箔層)及/或以連續編織圍繞該介電層16所形成的幾個導電股線。箔層及/或編織股線的結合可被利用,其中該導電股線層14可包含一箔層,然後一編織層,再接著一箔層。習知技術領域的人員將了解各種層結合可為了用於該導電股線層14而被實施來完成一電磁緩衝以助於防止可能破壞寬頻通訊的環境干擾或不必要的干擾之侵入。在某些具體實施例中,有可保護該導電股線層14的防水塗料。該介電層16可由適合電氣絕緣的材料所包含。該保護外部護套12也可由適合電氣絕緣的材料所包含。應了解的是,該同軸電纜10的所有各種組件之各種材料應具有某些彈性程度以允許該同軸電纜10根據傳統寬頻通訊標準、安裝方法及/或設備來撓曲或彎曲。應進一步了解該同軸電纜10、保護外部護套12、導電股線層14、可能的導電箔層、內部的介電層16及/或中心導體18的徑向厚度可根據與寬頻通訊標準及/或
設備相對應的習知參數來進行修改。
再者,接觸一同軸連接器的導電組件(包括金屬組件)之環境元素,對該同軸電纜連接器的壽命與效率可為很重要的(換言之,防止RF洩漏及確保通過該同軸電纜連接器100之穩定的連續性係很重要的)。環境元素可包括任何環境汙染物、任何汙染物、化學化合物、雨水、濕氣、冷凝、暴風雨水、多氯聯苯(PCB,polychlorinated biphenyl)、由徑流所汙染的土壤、農藥、除草劑及其類似者。例如水或濕氣的環境元素可造成腐蝕、生鏽、劣化等暴露於該環境元素的連接器組件。因此,利用於同軸電纜連接器的金屬導電O型環可被佈置於暴露至環境因素的一位置,由於該金屬O型環的腐蝕、生鏽及整體劣化,該金屬導電O型環可無法長時間的使用。
往前參照第1A圖與第1B圖,該同軸電纜連接器100可匹配一介面埠20。該介面埠20包括一導電插座22,其係用於接收一中心導體18的一部分,來足以產生足夠的電氣接觸。該介面埠20可進一步包含一螺紋的外部表面24。然而,各種具體實施例可使用一平滑的表面,其係與螺紋的外部表面相反。另外,該介面埠20可包含一匹配邊緣26。應了解的是,該介面埠20及/或該導電插座22的徑向厚度及/或長度可根據與寬頻通訊標準及/或設備相對應的習知參數來進行修改。此外,該螺紋的間距與深度可根據該介面埠20之螺紋的外部表面24所形成,也可根據與寬帶通訊標準及/或設備相對應的習知參數來進行修改。再者,請注意,該介面埠20可由單一導電材料、複數導電材料所形成,或可同時配置導電材料及非導電材料,其與一同軸電纜連接器(例如同軸電纜連接器100)對應該介面埠20的電氣介面。舉例來說,該螺紋的外部表面24可由一導電材料所構成,並當該材料包含該匹配邊緣26時,該匹配邊緣26可為非導電的或其相反的材料。然而,該導電插座22應由一導電材料所形成。同時,藉由這些習知的技術將了解該介面埠20可藉由一通訊修改裝置的一連接介面組
件所具體化,該通訊修改裝置例如一訊號分流器、一電纜線延伸器、一電纜線網路模組及/或類似者。
進一步參照第1A圖與第1B圖,一同軸電纜連接器100的具體實施例可包括一柱40、一耦合元件30、一連接器本體50、一緊固構件60及一偏壓構件70。同軸電纜連接器100的具體實施例也可包括一柱40,該柱40具有一第一端41、一第二端42及靠近該第二端42的一凸緣45,其中該柱40係配置成接收藉由一同軸電纜10的一介電層16所包圍的一中心導體18;一連接器本體50,其附接至該柱40;一耦合元件30,其附接至該柱40,該耦合元件30具有一第一端31及一第二端32;及一偏壓構件70,其佈置於一空腔38內,該空腔38在該耦合元件30的第一端31與該連接器本體50之間所形成,該偏壓構件70對該柱40偏壓該耦合元件30。
同軸電纜連接器100的具體實施例包括一柱40,進一步如第3圖所示。該柱40包含一第一端41、一第二端42、一內部表面43及一外部表面44。再者,該柱40可包括一凸緣45,例如一外部延伸的環狀突出物,其係位在靠近或者是接近該柱40的第二端42。該凸緣45可包括一外部漸縮表面47,其係面向該柱40的第一端41(換言之,由靠近或者是接近該第二端42之一較大的外徑朝向該第一端41向內漸縮至一較小的外徑)。該凸緣45的外部漸縮表面47可對應該耦合元件30的內部唇緣36之一漸縮表面。同時,該柱40的一具體實施例可包括一表面特徵49,例如一唇緣或突出物,其可嚙合一連接器本體50的一部分,來牢固該柱40相對於該連接器本體50的軸向移動。然而,該柱可不包括這樣的一表面特徵49,而該同軸電纜連接器100可依靠壓合力量及摩合力量及/或其他組件結構來協助保持該柱40在軸向地與旋轉地相對於該連接器本體50的牢固位置。靠近或者是接近該連接器本體50的位置係相對該柱40被固定,該柱40可包括表面特徵,例如脊部、溝槽、突出物或滾紋,該表面特徵可
提高該柱40對於該連接器本體50的牢固位置。此外,該柱40包括一匹配邊緣46,其係可配置成與一介面埠20之相對應的一匹配邊緣26來產生實體與電氣接觸。該柱40應被形成來使得包括該介電層16與中心導體18之一預備的同軸電纜10之部分能軸向地穿過至該第一端41及/或穿過該柱40的管狀本體之一部分。此外,該柱40應按尺寸被製作,使得該柱40可被插入至所預備的同軸電纜10之一端,並圍繞該介電層16,且在於該保護外部護套12與導電接地屏蔽或導電股線層14之下。因此,該柱40的一具體實施例可被插入至所預備的同軸電纜之一端,且在該抽去的導電股線層14之下,並可完成與該導電股線層14大致上實體及/或電氣接觸,從而促進通過該柱40的接地。該柱40可由金屬或其他導電材料所形成,其可促進一柱本體剛性地形成。此外,該柱40可由導電及非導電材料兩者來形成。舉例來說,一金屬塗佈或金屬層可被鋪於其他非導電材料的聚合物。該柱40的製備可包含鑄造、擠壓、切割、車削、鑽孔、滾紋、射出成型、噴塗、吹製成型、組件覆蓋成型或其他製程方法,以提供該元件之高效率的生產。
繼續參照第1A圖與第1B圖,且進一步參照第4圖,同軸電纜連接器100的具體實施例可包括一耦合元件30。該耦合元件30可為一螺帽、一螺紋式螺帽、埠耦合元件、轉動式埠耦合元件及其類似者。該耦合元件30可包括一第一端31、一第二端32、一內部表面33及一外部表面34。該耦合元件30的內部表面33可為一螺紋的配置,該螺紋具有相應於一螺紋的埠(例如介面埠20)之間距與深度。在其他具體實施例中,該耦合元件30的內部表面33可不包括螺紋,且可被軸向地插入於一介面埠(例如介面埠20)上。該耦合元件30可旋轉地牢固至該柱40來允許該柱40的旋轉移動。該耦合元件30可包含一內部唇緣36,其係位在靠近該第一端31,且配置成阻礙該柱40的軸向移動。再者,該耦合元件30可包含一空腔38,該空腔係由第一端31的邊緣軸向地延伸,且
藉由該內部唇緣36被部分的定義與界定。該空腔38也可藉由一內壁39被部分的定義與界定。該耦合元件30可由導電材料所形成,以促進通過該耦合元件30或螺紋式螺帽的接地。因此,當一同軸電纜連接器(例如同軸電纜連接器100)推進至該介面埠20之上時,該耦合元件30可藉由一介面埠20的電氣接觸導電表面來配置成延伸一電氣緩衝。此外,該耦合元件30可由非導電材料所形成,且功能只用於實體地牢固與推進一同軸電纜連接器100至一介面埠20。此外,該耦合元件30可由導電與非導電材料兩者所形成。舉例來說,該內部唇緣36可由聚合物所形成,同時該耦合元件30的其餘部分可由金屬或其他導電材料所包含。另外,該耦合元件30可由金屬、聚合物或其他材料所形成,其可促進一本體剛性地形成。該耦合元件30的製備可包含鑄造、擠壓、切割、車削、抽頭、鑽孔、射出成型、吹製成型或其他製程方法,以提供該元件之高效率的生產。這些習知技術應了解該耦合元件30的各種具體實施例也可包含一耦合構件,或不具有螺紋的耦合元件,但被按尺寸製作,以用於操作的連接至相對應的一介面埠,例如介面埠20。
仍然參照第1A圖與第1B圖,並額外參照第5圖,一同軸電纜連接器的具體實施例,例如同軸電纜連接器100,其可包括一連接器本體50。該連接器本體50可包括一第一端51、一第二端52、一內部表面53及一外部表面54。而且,該連接器本體可包括一柱固定部分57,其靠近或者是接近該連接器本體50的第二端52;該柱固定部分57配置成牢固地位在相對於柱40的外部表面44之一部分的連接器本體50,以便該連接器本體50被軸向地牢固該柱40,在某種程度上係來防止兩個組件以平行於該同軸電纜連接器100的軸向之方向彼此互相移動。另外,該連接器本體50可包括一外部環狀凹槽56,其位在靠近或接近該連接器本體50的第二端52。再者,該連接器本體50可包括一半剛性,但順應的外部表面54,其中當該第一端52藉由操作一緊固構件60來對一接收
的同軸電纜10可變形地壓縮時,該外部表面54可配置成形成一環狀密封。該連接器本體50可包括一外部的環狀掣子58,其係位在沿著該連接器本體50的外部表面54。同時,該連接器本體50可包括內部的表面特徵59,例如環狀鋸齒,其係形成在接近或靠近該連接器本體50的第一端51之內部表面,且配置成增加摩擦限制並夾持一插入與接收的同軸電纜10,其透過與該電纜的齒狀相互影響。該連接器本體50可由例如塑膠、聚合物、可彎曲的金屬或複合材料的材料所形成,以促進一半剛性,但順應的外部表面54。進一步來說,該連接器本體50可由導電、非導電材料或其組合所形成。該連接器本體50的製備可包含鑄造、擠壓、切割、車削、鑽孔、滾紋、射出成型、噴塗、吹製成型、組件覆蓋成型、上述結合或其他製程方法,以提供該元件之高效率的生產。
進一步參照第1A圖、第1B圖與第6圖,一同軸電纜連接器100的具體實施例可包括一緊固構件60。該緊固構件60可具有一第一端61、第二端62、內部表面63及外部表面64。另外,該緊固構件60可包括一內部環狀突出物67,其係位在靠近該緊固構件60的第二端62,且配置成匹配與達到緊繫在連接器本體50的外部表面54上之環狀掣子58。而且,該緊固構件60可包含一中央通道或大致上軸向的孔,其係由介於該第一端61與第二端62之間所定義並軸向地延伸通過該緊固構件60。該中央通道可包括一斜坡表面66,其可安置於一第一孔(或具有一第一內徑的內孔)及一第二孔(或具有一較大的第二內徑之內孔)之間,其中該第一孔係安置於靠近或者是接近該緊固構件60的第一端61,該第二孔安置於靠近或者是接近該緊固構件60之第二端62。當該緊固構件60被操作來牢固一同軸電纜10時,該斜坡表面66可作用以變形地壓縮該連接器本體50的外部表面54。舉例來說,當該緊固構件60被壓縮至該連接器本體50上之一繃緊且牢固的位置時,該變窄的幾何結構將對該電纜壓縮擠壓。此外,該緊固構件60可包含一外部的表面特徵69,其係安置於靠近或者接近該緊固構
件60的第一端61。在操作該同軸電纜連接器100的期間,該表面特徵69可促進夾持該緊固構件60。雖然該表面特徵69被揭示為一環狀掣子,但其可具有各種形狀與尺寸,例如脊部、凹槽、突出物、滾紋、或其他摩擦或夾持類型的設置。該緊固構件60的第二端62可延伸一軸向距離,以便於當該緊固構件60被壓縮至該連接器本體50的密封位置時,該緊固構件60接觸或大致上存在於明顯地靠近該耦合元件30。應了解的是,藉由這些必要技術,該緊固構件60可由剛性材料所形成,例如金屬、硬塑膠、聚合物、複合材料、上述類似者及/或其結合。再者,該緊固構件60可經由鑄造、擠壓、切割、車削、鑽孔、滾紋、射出成型、噴塗、吹製成型、組件覆蓋成型、上述結合或其他製程方法被製備,以提供該元件之高效率的生產。
往前參照第1A圖與第1B圖,一同軸電纜連接器100的具體實施例可以包括一偏壓構件70。該偏壓構件70可由非金屬材料所形成,來避免因環境元素(例如水)所導致的生鏽、腐蝕、變質及其類似者。形成該偏壓構件70的額外材料係不限於聚合物、塑膠、彈性體、彈性體混合物、複合材料、橡膠及/或其他類似者,及/或上述任何可實行的組合。該偏壓構件70可為一回彈性、剛性、半剛性、可撓性或彈性構件、組件、元件及其類似者。當一同軸電纜連接器100被推進至一介面埠20時,儘管在力矩需求之下,該偏壓構件70的回彈性質可有助於避免永久變形。
而且,該偏壓構件70可促進介於該耦合元件30與該柱40之間的持續接觸。舉例來說,該偏壓構件70可偏壓、提供、迫使、確保、傳遞等介於該耦合元件30與該柱40之間的接觸。介於該耦合元件30與該柱40之間的持續接觸促進通過該同軸電纜連接器100的連續性,減少/消除RF洩漏,並透過連接一同軸電纜連接器100至一介面埠20來確保一穩定的接地,其中該同軸電纜連接器100沒有完全地繃緊於該介面埠20上。為了建立與維持該耦合元件
30與該柱40之間的實體、持續接觸,該偏壓構件70可佈置在該耦合元件30後面,靠近或者是接近該連接器的第二端52。換句話說,該偏壓構件70可佈置在該空腔38內,該空腔38係形成在該耦合元件30與該連接器本體50的環狀凹槽56之間。該偏壓構件70能對該耦合元件30提供一偏壓的力量,其可軸向地位移耦合元件30來與該柱40持續直接接觸。具體而言,佈置一偏壓構件70在靠近該連接器本體50之第二端52的空腔38,該偏壓構件可朝向該柱40軸向地位移該耦合元件30,其中該耦合元件30的內部唇緣36直接接觸該柱40的凸緣45之外部漸縮表面47。該偏壓構件70的位置與結構可促進該柱40與該耦合元件30之間的連續性,但不阻礙該耦合元件的旋轉移動(例如對於該柱40的旋轉移動)。該偏壓構件70也可對環境元素建立一屏障,從而防止環境元素進入該同軸電纜連接器100。這些習知的技術將顯示該偏壓構件70可藉由擠壓、塗佈、模製、注射、切割、車削、彈性批次處理、硫化、混合、沖壓、鑄造及/或其類似者及/或上述任何組合來製備,以提供該元件之高效率的生產。
偏壓構件70的具體實施例可包括一環狀或半環狀回彈構件或組件,其配置成實體或電氣耦合該柱40與該耦合元件30。該偏壓構件70的一具體實施例可為一大致上圓的環面或環體結構,或其他環狀結構,其具有夠大的直徑(或截面面積),當偏壓構件佈置於靠近該連接器本體50的環狀凹槽56之環狀的空腔38內,對該柱40軸向地位移及/或偏壓該耦合元件30。而且,該偏壓構件70的具體實施例可為一O型環,其配置成配合靠近連接器本體50的第二端52之環狀凹槽56及該內壁39與內部唇緣36所形成的空腔38,使得該偏壓構件70可對該連接器本體50的環狀凹槽56(或其他部分)及耦合元件30的內壁39與內部唇緣36產生接觸及/或偏壓。介於該耦合元件30的內壁39與內部唇緣36及該連接器本體50之環狀凹槽56與包圍部分之間的偏壓能以大致上軸向或朝向該同軸電纜連接器100的第二端2之軸向方向以推進及/或偏壓該耦合元
件30,來對該柱40產生實體及持續接觸。舉例來說,該偏壓構件70應被製作成夠大的尺寸(如極大的O型環),使得當該偏壓構件佈置於空腔38時,該偏壓構件70對該耦合元件30與該連接器本體50兩者施加足夠的力量,來朝向該柱40軸向位移該耦合元件30一距離。因此,藉由延伸介於該柱40與該耦合元件30之間的電氣連接,該偏壓構件70可促進該同軸電纜連接器100的接地,且附接至同軸電纜10(如第2圖所示)。因為該偏壓構件70未必為金屬的及/或導電的,所以當該同軸電纜連接器100暴露至這樣的環境元素時,該偏壓構件可抵抗因環境元素的劣化、生鏽、腐蝕等。再者,該偏壓構件70的回彈性可在力矩要求之下變形,而不是以類似金屬或剛性組件的方式在類似力矩要求之下永久變形。該連接器本體50的軸向位移也可能發生,但該柱40的表面特徵49可防止該連接器本體50的軸向位移,或者介於該連接器本體50與該柱40之間的摩擦接合可防止該連接器本體50的軸向位移。
繼續參照圖式,第7圖描繪同軸電纜連接器101的具體實施例。同軸電纜連接器101可包括柱40、耦合元件30、連接器本體50、緊固構件60、偏壓構件70,但也可包括由一導電材料所形成的一匹配邊緣導電構件80。上述的材料係不限於導電聚合物、導電塑膠、導電彈性體、導電彈性體混合物、具有導電特性的複合材料、軟金屬、導電橡膠及/或類似者及/或上述任何可實行的組合。該匹配邊緣導電構件80可包含一大致上圓的環面或環體結構,且可佈置於耦合元件30的內部部分內,當同軸電纜連接器101可操作地被配置時(例如,組裝來與介面埠20通訊),使得該匹配邊緣導電構件80可與一柱40的一匹配邊緣46產生接觸及/或存在連續性。舉例來說,該匹配邊緣導電構件80的一具體實施例可為一O型環。該匹配邊緣導電構件80可促進該耦合元件30與柱40之間的一環狀密封,從而提供一實體屏蔽來避免濕氣及/或其他環境汙染物的不必要侵入。此外,該匹配邊緣導電構件80可藉由延伸在該柱40與該耦合元件30
之間的一完整電路來促進該柱40與該耦合元件30的電氣耦合。另外,該匹配邊緣導電構件80可促進該同軸電纜連接器100的接地,且藉由延伸介於該柱40與該耦合元件30之間的電氣連接來附接同軸電纜(如第2圖所示)。再者,該匹配邊緣導電構件80可實行一緩衝來防止介於該耦合元件30與該柱40之間的電磁干擾之侵入。該匹配邊緣導電構件80或O型環可在靠近柱40的第二端42之一組裝位置提供給使用者,或者在安裝至一介面埠20上之前,使用者可自行插入該匹配邊緣導電構件80至位置。這些習知技術應了解到該匹配邊緣導電構件80可藉由擠壓、塗佈、模製、注射、切割、車削、彈性批次處理、硫化、混合、沖壓、鑄造及/或其類似者及/或上述任何組合來製備,以提供該元件之高效率的生產。
現在參照第8A圖與第8B圖,連接器200的具體實施例被描述。連接器200的具體實施例可包括一柱40、一耦合元件30、一緊固構件60、具有偏壓元件255的一連接器本體250及一連接器本體O型環90。所描述之與連接器200有關的柱40、耦合元件30及緊固構件60之具體實施例可共有如前所述之與同軸電纜連接器100、101有關的相同結構與功能態樣。連接器200的具體實施例也可包括一柱40,其係具有一第一端41、一第二端42及靠近該第二端42的一凸緣45,其中該柱40係配置成接收藉由一同軸電纜10的一介電層16所包圍的一中心導體18;一耦合元件30,其附接至該柱40,該耦合元件30具有一第一端31與一第二端32;及一連接器本體250,其係具有偏壓元件255,其中嚙合偏壓元件255對該柱40偏壓該耦合元件30。
現在參照第9圖,並繼續參照第8A圖與第8B圖,連接器200的具體實施例可包括一連接器本體250,其係具有一偏壓元件255。該連接器本體250可包括一第一端251、一第二端252、一內部表面253及一外部表面254。而且,該連接器本體250可包括一柱固定部分257,其係靠近或者是接近該連接
器本體250的第二端252;該柱固定部分257配置成牢固地位在相對於柱40的外部表面44之一部分的連接器本體250,以便該連接器本體250被軸向地牢固至該柱40,在某種程度上係防止該兩個組件以平行於該連接器200的軸向之方向彼此移動。另外,該連接器本體250可包括一延伸的、回彈的環狀凹槽256,其係位在靠近或接近該連接器本體250的第二端252。該延伸的、回彈的環狀凹槽256可對該連接器200的一通用的軸5延伸一徑向距離,來促進與該耦合元件30嚙合的偏壓。舉例來說,該延伸的環狀凹槽256可徑向地延伸通過該耦合元件30的內壁39。在一具體實施例中,該延伸的、回彈的環狀凹槽256可為連接器本體50的環狀凹槽56之彈性擴張。在其他具體實施例中,該延伸的、回彈的環狀凹槽256或肩部可作為靠近該第二端252的一偏壓元件255。該偏壓元件255可與該連接器本體250結構地組成,使得該偏壓元件255為該連接器本體250的一部分。在其他具體實施例中,該偏壓元件255可為一分離的組件,其被安裝或被配置來耦合(例如黏附、扣上、干涉配合及其類似者)一現有的連接器本體,例如連接器本體50。而且,該連接器本體250的偏壓元件255可被定義成該連接器本體250的一部分,其係靠近該第二端252,徑向地並可能軸向地(輕微地)由該本體延伸來偏壓該耦合元件30(靠近該第一端31)來與該柱40接觸。該偏壓元件255可包括一凹槽258來允許必要的撓曲,以提供一偏壓力量來實行介於該耦合元件30的內部唇緣36與該柱40的凸緣45之外部漸縮表面47之間的持續實體接觸。該凹槽258可為一凹槽、溝槽、通道或類似的環狀空隙,其造成該連接器本體250的一環狀部分被移除來允許以與連接器200之通用的軸5相關的軸向方向撓曲。
因此,該延伸的、回彈的環狀凹槽256或該偏壓元件255之一部分可嚙合該耦合元件30來偏壓該耦合元件30與該柱40接觸。介於該耦合元件30與該柱40之間的接觸可促進通過該連接器200的連續性,減少/消除RF
洩漏,並透過連接該連接器200至一介面埠20來確保一穩定的接地,其中該連接器200沒有完全地繃緊於該介面埠20上。在大部份的具體實施例中,該連接器本體250之延伸的環狀凹槽256或偏壓元件255可提供一持續的偏壓力量在該耦合元件30的後面。藉由在該耦合元件30的後面之延伸的環狀凹槽256或偏壓元件255所提供的偏壓力量可造成該耦合元件30的內部唇緣36與該柱40的向外漸縮表面47之間的持續接觸。然而,該延伸的環狀凹槽256或偏壓元件255之偏壓力量不應(明顯地)阻礙或防止該耦合元件30的旋轉移動(即,該耦合元件30對該柱40的旋轉)。因為連接器200可包括連接器本體250,其具有一延伸的、回彈的環狀凹槽256來改進連續性,在此有可能不需額外的組件,例如一金屬導電連續構件,其在與一介面埠20可操作的推進與脫離期間,容易受到腐蝕及永久變形,最終可能不利地影響該訊號品質(例如,導電構件的腐蝕或變形可劣化該訊號品質)。
再者,該連接器本體250可包括一半剛性,但順應的外部表面254,其中當該第一端251係藉由一緊固構件60的操作而對一接收的同軸電纜10變形的壓縮時,該外部表面254可配置成形成一環狀密封。同時,該連接器本體250可包括內部表面特徵259,例如環狀鋸齒,其形成再接近或靠近該連接器本體250的第一端251之內部表面,且配置成提高摩擦限制並夾持一插入的與接收的同軸電纜10,其透過齒狀來與該電纜相互影響。該連接器本體250可由例如塑膠、聚合物、可彎曲的金屬或複合材料的材料所形成,以促進一半剛性,但順應的外部表面254。進一步來說,該連接器本體250可由導電、非導電材料或其組合所形成。該連接器本體250的製備可包含鑄造、擠壓、切割、車削、鑽孔、滾紋、射出成型、噴塗、吹製成型、組件覆蓋成型、上述結合或其他製程方法,以提供該元件之高效率的生產。
連接器200的另一具體實施例可包括一連接器本體O型環90,
其係由一導電或非導電材料所形成。上述的材料係不限於導電聚合物、塑膠、彈性體、具有導電特性的複合材料、軟金屬、導電橡膠、橡膠及/或類似者及/或上述任何可實行的組合。該連接器本體O型環90可包含一大致上圓的環面或環體結構,或其他環狀結構。舉例來說,該連接器本體O型環90的一具體實施例可為一O型環,其係佈置於靠近連接器本體250的第二端252與該空腔38,該空腔38係由第一端31的邊緣軸向延伸並藉由耦合元件30的一內壁39來被部分的定義與界定(如第4圖所示),當可操作地附接至連接器200的柱40時,使得該連接器本體O型環90可與連接器本體250之延伸的環狀凹槽256與耦合元件30的內壁39產生接觸及/或存在連續性。該連接器本體O型環90可促進該耦合元件30與連接器本體250之間的一環狀密封,從而提供一實體屏蔽來避免濕氣及/或其他環境元素的不必要侵入。而且,如果連接器本體O型環90為導電的(即,由導電材料所形成),則該連接器本體O型環90可藉由延伸在該連接器本體250與耦合元件30之間的一完整電路來促進該連接器本體250與耦合元件30的電氣耦合。此外,該連接器本體O型環90可進一步促進該連接器200的接地,並藉由延伸該連接器本體250與該耦合元件30之間的電氣連接來附接同軸電纜10。再者,該連接器本體O型環90可實行一緩衝來防止該耦合元件30與該連接器本體250之間的電磁干擾之侵入。藉由這些與本領域有關的技術應瞭解,該連接器本體O型環90可藉由擠壓、塗佈、模製、注射、切割、車削、彈性批次處理、硫化、混合、沖壓、鑄造及/或其類似者及/或上述任何組合來製備,以提供該元件之高效率的生產。
參照第1A圖至第9圖,一種促進通過一同軸電纜連接器100的連續性之方法可包括提供一柱40的步驟,該柱40具有一第一端41、一第二端42及靠近該第二端42的一凸緣45,其中該柱40係配置成接收藉由一同軸電纜10之一介電層16所包圍的一中心導體18;提供一連接器本體50的步驟,該連
接器本體50附接至該柱40;及提供一耦合元件30的步驟,該耦合元件30附接至該柱40,該耦合元件30具有一第一端31與一第二端32,且佈置一偏壓構件70於一空腔38內,該空腔38係形成於該耦合元件30的第一端31與該連接器本體50之間,該偏壓構件70對該柱40偏壓該耦合元件30。再者,一種促進通過一同軸電纜連接器200的連續性之方法可包括提供一柱40的步驟,該柱40具有一第一端41、一第二端42及靠近該第二端42的一凸緣45,其中該柱40係配置成接收藉由一同軸電纜10之一介電層16所包圍的一中心導體18;提供一耦合元件30的步驟,該耦合元件30附接至該柱40,該耦合元件30具有一第一端31及一第二端32;提供一連接器本體250的步驟,該連接器本體250具有一第一端251、一第二端252及靠近該連接器本體的第二端之一環狀凹槽256;及延伸該環狀凹槽256一徑向距離來嚙合該耦合元件30的步驟,其中介於該延伸的環狀凹槽256與該耦合元件30之間的嚙合對該柱40偏壓該耦合元件30。
儘管已結合以上概述的具體實施例對本發明進行描述,顯然,許多替換、修改和變化對熟悉本技術領域的通常知識者將是顯而易見的。因此以上闡述本發明之具體實施例意圖為說明性而非限制性。可在不偏離本發明的精神與範圍之所定義的申請專利範圍下作出各種改變。本申請專利範圍提供本發明所覆蓋的範圍,且不應侷限於在此所提供的具體範例。
1‧‧‧第一端
2‧‧‧第二端
30‧‧‧耦合元件
36‧‧‧內部唇緣
38‧‧‧空腔
40‧‧‧柱
45‧‧‧凸緣
47‧‧‧外部漸縮表面
50‧‧‧連接器本體
60‧‧‧緊固構件
70‧‧‧偏壓構件
100‧‧‧同軸電纜連接器
Claims (37)
- 一種連接器,用於耦合一同軸電纜的一端,並促進電氣連接於具有一導電表面的一同軸電纜介面埠,該同軸電纜具有一中心導體,其係藉由一介電層所包圍;該介電層藉由一導電接地屏蔽所包圍;該導電接地屏蔽藉由一保護外部護套所包圍,該連接器包含:一柱,具有一凸緣,該柱係配置成接收一中心導體,該中心導體係藉由一同軸電纜的一介電層所包圍;一本體構件,具有一本體接觸表面,當該連接器係在一組合狀態時,該本體構件係配置成接收該同軸電纜的一部分,且係配置成嚙合該柱;一螺帽,係配置成嚙合該柱,且軸向移動於一第一位置及一第二位置,該第一位置係位於該螺帽部分地栓緊於一介面埠之處,該第二位置係位於該螺帽完全地栓緊於該介面埠之處,該第二位置係由該第一位置軸向地分離,該螺帽具有一內部唇緣,該內部唇緣具有一唇緣接觸表面及一內壁表面,該唇緣接觸表面朝遠離該介面埠的一向後方向,該內壁表面沿著大致上平行於該連接器的一伸長軸之一軸向方向延伸,該唇緣接觸表面及該內壁表面係配置於一垂直的空腔,該垂直的空腔係部分地定義在該螺帽及該本體構件之間,當該連接器係在該組合狀態時,該垂直的空腔具有一軸向空腔深度尺寸,該軸向空腔深度尺寸延伸於該本體構件的本體接觸表面,並平行於該伸長軸;及一偏壓O形環,係配置在該螺帽及該本體構件之間,並被壓縮於該垂直的空腔,其中該偏壓O形環在該本體構件的本體接觸表面及該螺帽的內部唇緣之間具有一軸向尺寸,該軸向尺寸係大於該垂直的空腔之軸向空腔深度尺寸,使其配置成施加一軸向偏壓力在該螺帽的內部唇緣之唇緣接觸表面及該本體構件的本體接觸表面之間,該軸向偏壓力足以軸向移動該螺 帽往該柱的凸緣,當該螺帽相對於該柱在該第一位置及該第二位置之間軸向移動時,該第一位置係位於該螺帽部分地栓緊於該介面埠之處,該第二位置係位於該螺帽完全地栓緊於該介面埠之處;其中即使當該螺帽相對於該介面埠沒有完全地栓緊,該偏壓O形環係配置成在該螺帽及該柱之間偏壓地維持電氣接地接觸;當該連接器係在該組合狀態時,該偏壓O形環係配置成提供一物理密封在該螺帽的內部唇緣之唇緣接觸表面及該本體構件的本體接觸表面之間;及該偏壓O形環由大致上非金屬的且非導電的材料所構成。
- 如申請專利範圍第1項所述之連接器,其中該偏壓O形環對於該柱的凸緣之一表面偏壓該螺帽的內部唇緣。
- 如申請專利範圍第1項所述之連接器,其中當該連接器係在該組合狀態,且當該偏壓O形環壓縮在該螺帽的內部唇緣之唇緣接觸表面及該本體構件的本體接觸表面之間時,於該連接器的操作期間,該偏壓O形環係配置成相對於該螺帽施加一不變的軸向偏壓力。
- 如申請專利範圍第1項所述之連接器,其中當該連接器係在一預備安裝的組合狀態及當該連接器係在一已安裝的組合狀態時,該偏壓O形環係配置成施加一不變的軸向偏壓力在該螺帽的內部唇緣之唇緣接觸表面及該本體構件的本體接觸表面之間,該預備安裝的組合狀態係為該連接器已被組合但還沒被安裝於該介面埠的狀態,該已安裝的組狀態係為該連接器已被組合且被安裝於該介面埠的狀態。
- 如申請專利範圍第1項所述之連接器,其中當該連接器係在一預備安裝的組合狀態及當該連接器係在一已安裝的組合狀態時,該偏壓O形環係配置成施加一不變的軸向偏壓力在該螺帽的內部唇緣之唇緣接觸表面及該本 體構件的本體接觸表面之間,該預備安裝的組合狀態係為該連接器已被組合但還沒被安裝於該同軸電纜的狀態,該已安裝的組合狀態係為該連接器已被組合且被安裝於該同軸電纜的狀態。
- 如申請專利範圍第1項所述之連接器,其中於該連接器的操作期間,該偏壓O形環係配置成施加一不變的軸向偏壓力在該螺帽的內部唇緣之唇緣接觸表面及該本體構件的本體接觸表面之間,且於操作期間,該偏壓O形環一直壓縮在該螺帽的內部唇緣之唇緣接觸表面及該本體構件的本體接觸表面之間。
- 如申請專利範圍第1項所述之連接器,其中當該連接器係在該組合狀態,且當該螺帽移動於第一位置及該第二位置時,該偏壓O形環係回彈的,且係配置成相對於該螺帽施加一不變的軸向偏壓力。
- 如申請專利範圍第1項所述之連接器,其中該軸向偏壓力相對於該螺帽沿著該軸向方向及朝靠近該介面埠的一向前方向施加。
- 如申請專利範圍第1項所述之連接器,其中當該軸向偏壓力大於一反作用力時,該偏壓O形環係配置成僅於該螺帽及該柱之間維持電氣接地接觸,該反作用力係相對於該螺帽沿著該軸向方向、及朝遠離該介面埠並相反於一向前方向的一向後方向施加。
- 如申請專利範圍第1項所述之連接器,其中該軸向偏壓力相對於該本體構件沿著該軸向方向及朝一向後方向施加。
- 如申請專利範圍第7項所述之連接器,其中當該軸向偏壓力大於一反作用力時,該偏壓O形環係配置成僅於該螺帽及該柱之間維持電氣接地接觸,該反作用力係相對該本體構件沿著該軸向方向、及朝靠近該介面埠並相反於一向後方向的一向前方向施加。
- 如申請專利範圍第1項所述之連接器,其中當該連接器係在一預備安裝的 組合狀態及當該連接係在一已安裝的組合狀態時,該偏壓O形環係配置成維持接觸該螺帽的內部唇緣之內壁表面、該螺帽的內部唇緣之唇緣接觸表面及該本體構件的本體接觸表面,該預備安裝的組合狀態係為該連接器還沒被安裝於該介面埠或該同軸電纜的狀態,該已安裝的組合狀態係為該連接器已安裝於該介面埠或該同軸電纜的狀態,並且當該連接器係在該已安裝的組合狀態時,於該連接器的操作期間,該軸向偏壓力藉由該偏壓O形環一直施加,使該偏壓O形環在該螺帽及該柱之間充分且偏壓地維持電氣接地接觸。
- 如申請專利範圍第1項所述之連接器,其中該偏壓O形環包含一極大的O形環,係配置成產生該軸向偏壓力在該螺帽的內部唇緣之唇緣接觸表面及該本體構件的本體接觸表面之間,並在該螺帽及該柱之間一直偏壓地維持電氣接地接觸。
- 一種連接器,其包含:一本體,具有一第一端、一第二端、一內部表面及一外部表面,該本體更定義靠近該第二端的一外部環狀凹槽;一柱,具有一第一端、一第二端、一凸緣、靠近該第二端的一匹配邊緣及一面向後的柱表面,該面向後的柱表面朝遠離一介面埠的一向後方向,該柱係配置成至少部分地被該本體接收,且係配置成沿著一普通的軸延伸,其中該匹配邊緣係配置成物理且電氣接觸於該介面埠的一對應匹配邊緣;一耦合件,係配置成附接至該介面埠,該耦合件係配置成至少部分地接收該柱,該耦合件部分的定義一第一空腔至少部分位於該柱的面向後柱表面及該本體的外部環狀凹槽之間,該耦合件包含一突出物,該突出物包括:(i)一面向前的耦合件表面,面向靠近該介面埠的一向前方向;及(ii) 一面向後耦合件表面,面向遠離該介面埠的一向後方向;一回彈的偏壓元件,係配置成位於一第一空腔,具有一充分尺寸,來回彈地施加一軸向力在該本體及該耦合件之間;及其中該軸向力朝該柱的面向後柱表面推進該偶合件的突出物,以在該耦合件及該柱之間維持電氣接觸。
- 如申請專利範圍第14項所述之連接器,其中維持接觸包含:維持該柱及該耦合件接觸。
- 如申請專利範圍第14項所述之連接器,其中維持接觸包含:當該回彈的偏壓元件施加一軸向力在該本體及該耦合件之間時,在所有時間維持該柱及該耦合件電氣連續,並遍及該柱及該耦合件相對彼此移動的所有範圍。
- 如申請專利範圍第14項所述之連接器,其中該回彈的偏壓元件係導電的。
- 如申請專利範圍第17項所述之連接器,其中該連接器係配置成耦合至一同軸電纜;一電氣接地路徑係延伸在該同軸電纜、該柱、該回彈的偏壓元件、該耦合件及該介面埠之間;且該回彈的偏壓元件的軸向力係用於維持一電氣接地路徑。
- 如申請專利範圍第14項所述之連接器,其中該回彈的偏壓元件具有一剖面面積,且當該連接器組合及當該耦合件附接至該介面埠時,對該本體及該耦合件回彈地施加該軸向力。
- 如申請專利範圍第項所14述之連接器,其中該回彈的偏壓元件包含一O形環,具有一彈性特徵。
- 如申請專利範圍第14項所述之連接器,其中該回彈的偏壓元件具有一直徑,且當該連接器組合及當該耦合件附接至該介面埠時,對該本體及該耦合件回彈地施加該軸向力。
- 一種連接器,包含: 一柱,具有一第一端、一第二端及靠近該第二端的一凸緣,其中該柱係配置成接收一中心導體,該中心導體藉由一同軸電纜的一介電層所包圍;一連接器本體,附接至該柱;一耦合元件,附接至該柱,該耦合元件具有一第一端及一第二端,其中該耦合元件從該連接器本體分離;及一偏壓構件,佈置於一空腔內,該空腔形成在該耦合元件的第一端及及該連接器本體之間;其中該偏壓構件係配置成配合該空腔,使得該偏壓構件對該柱壓縮並施加一軸向力來推動該耦合元件。
- 如申請專利範圍第22項所述之連接器,其中該空腔定義一徑向空隙,位在該耦合元件的一第一表面及該連接器本體的一相對第二表面之間,該偏壓構件壓縮在該第一表面及該徑向空隙的相對第二表面之間來產生一軸向偏壓力,即使當該耦合元件的第一端從該柱軸向地位移時,仍造成該耦合元件保持接觸該柱。
- 如申請專利範圍第22項所述之連接器,其中當該連接器係在一組合狀態時,該偏壓構件係配置成提供一物理密封在該耦合元件及該連接器本體之間。
- 如申請專利範圍第22項所述之連接器,其中該偏壓構件對該凸緣的一向外漸縮表面來偏壓該耦合元件的一唇緣。
- 如申請專利範圍第22項所述之連接器,其中該偏壓構件係回彈的。
- 如申請專利範圍第22項所述之連接器,其中該偏壓構件係為一極大的O形環。
- 如申請專利範圍第22項所述之連接器,其中該偏壓構件係非金屬的且非 導電的。
- 如申請專利範圍第23項所述之連接器,其中該偏壓構件係極大的,使得當佈置在該徑向空隙時,該偏壓構件軸向地變形而壓縮在該耦合元件的第一端及該連接器本體之間。
- 如申請專利範圍第23項所述之連接器,其中該第一表面係一耦合元件表面,其係自該連接器的一伸長軸之一第一直徑尺寸;及該相對第二表面係一連接器本體表面,其係自該伸長軸之一第二直徑尺寸。
- 一種促進通過一連接器的連續性之方法,包含:提供一柱,具有一第一端、一第二端及靠近該第二端的一凸緣,其中該柱係配置成接收一中心導體,該中心導體藉由一同軸電纜的一介電層所包圍;提供一連接器本體,附接至該柱;及提供一耦合元件,附接至該柱,該耦合元件具有一第一端及一第二端;及佈置一偏壓構件於一空腔,該空腔形成在該耦合元件的第一端及及該連接器本體之間,且該空腔介於一第一直徑尺寸及一第二直徑尺寸之間,該第一直徑尺寸及該第二直徑尺寸係配置成定義一徑向空隙;該偏壓構件係徑向極大的,使得當佈置在該徑向空隙時,該偏壓構件軸向地變形而對該柱壓縮該耦合元件。
- 如申請專利範圍第31項所述之方法,其中該耦合元件定義該空腔的第一直徑尺寸,且該連接器本體定義該空腔的第二直徑尺寸。
- 如申請專利範圍第31項所述之方法,其中該耦合元件定義該空腔的第一直徑尺寸,且該柱定義該空腔的第二直徑尺寸。
- 如申請專利範圍第31項所述之方法,其中當該連接器係在一組合狀態時,該偏壓構件係配置成也提供一物理密封在該耦合元件及該連接器本體之間。
- 如申請專利範圍第31項所述之方法,其中該偏壓構件對該凸緣的一向外漸縮表面來偏壓該耦合元件的一唇緣。
- 如申請專利範圍第31項所述之方法,其中該偏壓構件係回彈的且非金屬的。
- 如申請專利範圍第31項所述之方法,其中該偏壓構件係為一極大的O形環。
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TW101110553A TWI597905B (zh) | 2011-03-30 | 2012-03-27 | 同軸電纜連接器及通過一同軸電纜連接器的改善電氣連續性之 方法 |
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