TWM399943U - Electrodeless lamp capable of generating infrared light - Google Patents

Electrodeless lamp capable of generating infrared light Download PDF

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Publication number
TWM399943U
TWM399943U TW99212750U TW99212750U TWM399943U TW M399943 U TWM399943 U TW M399943U TW 99212750 U TW99212750 U TW 99212750U TW 99212750 U TW99212750 U TW 99212750U TW M399943 U TWM399943 U TW M399943U
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Taiwan
Prior art keywords
lamp
infrared light
housing
electrodeless
generating infrared
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TW99212750U
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Chinese (zh)
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jing-xin Chen
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jing-xin Chen
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Priority to TW99212750U priority Critical patent/TWM399943U/en
Publication of TWM399943U publication Critical patent/TWM399943U/en

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  • Non-Portable Lighting Devices Or Systems Thereof (AREA)

Description

099年12月16日後正替换頁 五、新型說明: 【新型所屬之技術領域】 [0001] 本創作係與照明裝置有關,特別有關於一種無極燈之燈 具。 【先前技術】 [0002] 為防堵及追蹤犯罪事件,監視攝影機的安裝已成為居家 安全不可或缺的裝置,攝影機攝影時需有充足的照明以 提供清晰的攝像效果,因此,監視攝影機的鄰近處通常 會加設有輔助照明燈具,以在照明不足的地方或夜間時 作為輔助照明之用。 [0003] 再者,因LED技術的突飛猛進,現今監視攝影機所加設的 輔助燈的燈源大多是可產生紅外線的LED燈,但因LED燈 的光效低、功率小,實施時通常需將多數個LED集中以提 供充足的照度,造成耗電量高、發熱量亦高的缺點,實 非為一適當的輔助照明裝置。 [0004] 另一方面,無電極電磁感應燈(簡稱無極燈,High- frequency Plasma E1ectrode1 ess Discharge In-duction Lamp )係一種應用氣體放電原理及高頻電磁感 應原理所產生的燈具,相較於傳統的白熾燈泡,因無極 燈不具有限制光源壽命的元件(鎢絲),故其使用壽命亦 長達數萬小時,又,無極燈具有光效高、光衰小、發熱 量低…等眾多優點,故成為極佳的綠色照明光源;因此 ,若能將無極燈應用在監視攝影機的輔助照明裝置中, 不但可使辅助照明的設置費用大為降低,且具有耗電量 表單編號A0101 第3頁/共14頁 099年12月16日修正替换頁 低、使用壽命更長等諸多優點。 [0005] 有鑑於此,本創作人為改善並解決上述之缺失,乃特潛 心研究並配合學理之運用,終於提出一種設計合理且有 效改善上述缺失之本創作。 【新型内容】 [0006] 本創作之一目的,在於提供一種可產生紅外線光的無極 燈,以在光線不足或夜間時提供監視攝影機作為輔助照 明燈具。Replacement page after December 16, 099 V. New description: [New technical field] [0001] This creation is related to lighting devices, especially for an induction lamp. [Prior Art] [0002] In order to prevent and track crimes, the installation of surveillance cameras has become an indispensable device for home security. Cameras need to have sufficient illumination to provide a clear camera effect. Therefore, monitor the proximity of the camera. Auxiliary lighting fixtures are usually added to assist the lighting in places with insufficient lighting or at night. [0003] Furthermore, due to the rapid advancement of LED technology, most of the auxiliary lamps installed in surveillance cameras are LED lamps that can generate infrared rays. However, due to the low light efficiency and low power of LED lamps, it is usually required to implement Most LEDs are concentrated to provide sufficient illumination, resulting in high power consumption and high heat generation. It is not a suitable auxiliary lighting device. [0004] On the other hand, an electrodeless electromagnetic induction lamp (High-frequency Plasma E1 ectrode ess Discharge In-duction Lamp) is a lamp produced by applying the principle of gas discharge and the principle of high-frequency electromagnetic induction, compared with the conventional one. The incandescent light bulb, because the electrodeless lamp does not have the component (tungsten wire) that limits the life of the light source, so its service life is also tens of thousands of hours. Moreover, the electrodeless lamp has many advantages such as high light efficiency, low light decay, low heat generation, and the like. Therefore, it becomes an excellent green light source; therefore, if the electrodeless lamp can be applied to the auxiliary lighting device of the surveillance camera, the installation cost of the auxiliary illumination can be greatly reduced, and the power consumption form number A0101 page 3 / Total 14 pages December 16, 099 Fixed many advantages such as low replacement page and longer service life. [0005] In view of this, in order to improve and solve the above-mentioned shortcomings, the present creator has devoted himself to research and cooperates with the application of the theory, and finally proposes a creation that is reasonable in design and effective in improving the above-mentioned defects. [New Content] [0006] One of the purposes of this creation is to provide an electrodeless lamp that produces infrared light to provide a surveillance camera as an auxiliary illumination fixture in low light or at night.

[0007] 為了達成上述之目的,本創作係為一種可產生紅外線光 I 的無極燈,係連接一外部電源,無極燈包括一燈頭結構 、一燈管、一鎮流器、一耦合器及一工作氣體,燈頭結 .¾ v:' " 構包含殼座及固接於殼座的電接缄,電接頭係電性連接 外部電源,燈管設置在燈頭結構上,鎮流器安置在殼座 内部並電性連接電接頭,鎮流器具有變頻單元,變頻單 元能夠將外部電源轉換成預定頻率電壓,耦合器包含套 接燈管的環狀鐵芯及纏繞環狀鐵芯的導電線圈,導電線 | 圈接受預定頻率電壓輸入並透過環狀鐵芯在燈管内建立 - 磁場,工作氣體填充於燈管内部,並受磁場激發而輻射 出紅外線。 [0008] 為了達成上述之目的,本創作係為一種可產生紅外線光 的無極燈,係連接一外部電源,無極燈包括一殼座、一 燈管、一鎮流器、一耦合器及一工作氣體,燈管設置在 殼座内,鎮流器電性連接外部電源,鎮流器具有變頻單 元,變頻單元能夠將外部電源轉換成一預定頻率電壓, 表單編號A0101 第4頁/共14頁 M399943 I 099年12月16日修正替换頁 耦合為包含套接燈管的一環狀鐵芯及纏繞環狀鐵芯的— 導電線圈’導電線圈接受預定頻率電壓輸人並透過環狀 鐵』在燈官内建立一磁場,工作氣體填充於燈管内部, 並爻磁場激發而輻射出一紅外線光。 剛本創作之另一目的’在於提供一種可產生紅外線光的無 極燈,且其耗電量係在0. 8瓦特以下。 _0]相&於$知’本創作之可產生紅外線光的無極燈係利 用鎖流1§的變頻單元而將外部電㈣整成—預錢率電 屡’遠預定頻率電麼透過耗合器後可激發出一磁場在 該磁場下’燈管内部的工作氣體會被激發而輻射出波長 在78〇nm以上的紅外線,且耗電量僅在〇 8瓦特以下為 一耗電量低的紅外線照明燈具,更增加本劍作之實用性 及經濟性。 【實施方式】 则有關本創作謂細說明及技術内容,配合圖式說明如下 ’然而所附圖式僅提供參考與說明肖,並非用來對本創 作加以限制者。 剛請參照第-®及第二圖,係分別為本創作可產生紅外線 光的無極燈的立體外觀示意圖及組合剖視圖;本創作之 可產生紅外線光的無極燈】包括—燈頭結構1〇、一燈管2〇 、-鎮流器3G、-輕合㈣及-i作氣體50。 剛紐頭結構1〇包含一殼座u、固接於該殼座⑽一電接 頭1 2及頂蓋1 3 ’該電接頭i 2用以電性連接一外部電源 〇 表單編號A0101 第5頁/共14頁 099年12月16日修正替換頁 [0014] 該燈管20設置在該燈頭結構10上,如插接在該頂蓋13上 ,且該燈管20的型態並非限制,本實施例中,該燈管20 包含一 U形管段21及橫接在該U形管段21之間的一直管段 。 [0015] 本實施例中,該鎮流器30安置在該殼座11内部並電性連 接該電接頭12,該鎮流器30具有一變頻單元31,該變頻 單元31能夠將外部電源轉換成一預定頻率電壓,再者, 該鎮流器3 0更包含有傳送該預定頻率電壓的一導線3 2。 [0016] 該耦合器40包含套接該燈管20的一環狀鐵芯及纒繞該環 < 狀鐵芯的一導電線圈,本實施中,該環狀鐵忍係圈繞在 該燈管20的直管段22外部,該導線32的一端係電性連接 該導電線圈,該導電線圈經ΐ該專線32而接受該鎮流器 30的預定頻率電壓輸入後,會透過該環狀鐵芯在該燈管 20内建立一磁場。 [0017] 該工作氣體50包含一惰性氣體及一水銀蒸氣,該惰性氣 體可為氦氣、氬氣、氖氣、氪氣、或氙氣等,該工作氣 | 體50填充於該燈管20内部,且受該磁場激發而輻射出波 - 長在78 0nm以上的一紅外線光。 [0018] 請續參照第三圖,係為本創作之應用示意圖;本創作可 產生紅外線光的無極燈1係安裝在一監視攝影機2的鄰處 ,當光線不足或夜間時,該可產生紅外線光的無極燈1即 可提供該監視攝影機2作為輔助照明燈具。 [0019] 請再參照第四圖,係為本創作之第二實施例;本實施例 與第一實施例大致相同’無極燈la包括一殼座10a、一燈 表單編號A0101 第6頁/共14頁 099年12月1β日gJE替換頁 官20a、一鎮流器3〇a及一耦合器4〇a,該燈管2〇a為呈封 閉狀態的一環形透光殼體,該燈管20a裝設在該殼座l〇a 内’該鎮流器30a則安置在該殼座i〇a外部,該鎮流器 3〇a電性連接外部電源,並具有一變頻單元(圖未示),該 ^:頻單元能夠將外部電源轉換成一預定頻率電壓’該預 定頻率電壓會再傳導至該耦合器40a,使該燈管20a發出 波長在78 0nm以上的一紅外線光。 0]以上所述僅為本創作之較佳實施例,非用以限定本創作 之專利範圍’其他運用本創作之專利精神之等效變化, 均應俱屬本創作之專利範圍。 【圖式簡單說明】 ^第一圖係本創作可產生紅外線光的無極燈的立體外觀示 意圖; [0022]帛二圖係、本創作可產生紅外線光的無極燈的組合剖視圖 [0023]第二圖係本創作可產生紅外線光的無極燈的應用示意圖 :以及 [⑻24] f四圖係、本創作可產生紅外線光的無極燈的第二實施例 【主要元件符號說明】 [0025] 1可產生紅外線光的無極燈 2 監視攝影機 1〇 燈頭結構 11 殼座 表單编號Α0ΗΜ 第7頁/共丨4頁 M399943 099年12月16日修正替换頁 12 電接頭 13 頂蓋 20 燈管 21 U形管段 22 直管段 30 鎮流 31 變頻單元 32 導線 40 搞合器 50 工作氣體 1 a 無極燈 10a 殼座 表單編號A0101 第8頁/共14頁[0007] In order to achieve the above object, the present invention is an electrodeless lamp capable of generating infrared light I, which is connected to an external power source, and the electrodeless lamp comprises a lamp cap structure, a lamp tube, a ballast, a coupler and a Working gas, lamp cap knot. 3⁄4 v: ' " The structure comprises a housing and an electrical connection fixed to the housing, the electrical connector is electrically connected to the external power supply, the lamp is arranged on the base structure, and the ballast is placed in the shell The internal and electrical connection of the electric connector, the ballast has a frequency conversion unit, the frequency conversion unit can convert the external power source into a predetermined frequency voltage, and the coupler comprises a ring-shaped iron core that is sleeved with the lamp tube and a conductive coil wound around the annular iron core. Conductive wire | The ring receives the predetermined frequency voltage input and establishes a magnetic field in the lamp through the annular iron core. The working gas is filled inside the lamp tube and excited by the magnetic field to radiate infrared rays. [0008] In order to achieve the above object, the present invention is an electrodeless lamp capable of generating infrared light, which is connected to an external power source, and the electrodeless lamp includes a housing, a lamp, a ballast, a coupler and a working device. The gas and the lamp tube are disposed in the housing, the ballast is electrically connected to the external power source, the ballast has a frequency conversion unit, and the frequency conversion unit can convert the external power source into a predetermined frequency voltage, Form No. A0101 Page 4 of 14 M399943 I On December 16, 099, the modified replacement page is coupled to a ring-shaped iron core containing a socketed lamp tube and a wound iron core-conducting coil. The conductive coil receives a predetermined frequency voltage and is transmitted through the ring-shaped iron. A magnetic field is built in, and the working gas is filled inside the lamp tube, and the magnetic field is excited to radiate an infrared light. The wattage is less than 0.8 watts, and the power consumption is less than 0.8 watts. _0] phase & in the knowledge of this creation of the infrared light-producing electrodeless lamp system using the frequency conversion unit of the lock flow 1 § to make the external electricity (four) into a whole - pre-money rate electricity repeatedly 'far predetermined frequency electricity through the consumption After the device can excite a magnetic field, the working gas inside the lamp will be excited to emit infrared rays with a wavelength above 78〇nm, and the power consumption is only below 8 watts, which is a low power consumption. Infrared lighting fixtures increase the practicality and economy of this sword. [Embodiment] The detailed description and technical contents of the present invention are described below with reference to the drawings. However, the drawings are only for reference and explanation, and are not intended to limit the creation. Just refer to the -® and the second figure, which are the three-dimensional appearance diagram and the combined sectional view of the electrodeless lamp which can generate infrared light respectively; the electrodeless lamp which can generate infrared light in this creation includes: the lamp head structure 1〇, one The lamp 2 〇, - ballast 3G, - light (4) and -i are used as gas 50. The first button structure 1A includes a housing u, is fixed to the housing (10), an electrical connector 1 2 and a top cover 1 3 '. The electrical connector i 2 is electrically connected to an external power supply. Form No. A0101 Page 5 [1414] The lamp tube 20 is disposed on the base structure 10, and is inserted on the top cover 13, and the type of the lamp tube 20 is not limited, In an embodiment, the lamp tube 20 includes a U-shaped pipe section 21 and a straight pipe section that is transversely connected between the U-shaped pipe sections 21. [0015] In this embodiment, the ballast 30 is disposed inside the housing 11 and electrically connected to the electrical connector 12. The ballast 30 has a frequency conversion unit 31, which can convert an external power source into a The predetermined frequency voltage, in addition, the ballast 30 further includes a wire 3 2 for transmitting the predetermined frequency voltage. [0016] The coupler 40 includes an annular core that sleeves the lamp tube 20 and a conductive coil that surrounds the ring and the iron core. In this embodiment, the annular iron ring is wound around the lamp. Outside the straight tube section 22 of the tube 20, one end of the wire 32 is electrically connected to the conductive coil, and the conductive coil passes through the dedicated line 32 and receives the predetermined frequency voltage input of the ballast 30, and then passes through the annular core. A magnetic field is established within the tube 20. [0017] The working gas 50 comprises an inert gas and a mercury vapor, and the inert gas may be helium, argon, helium, neon, xenon or the like, and the working gas body 50 is filled in the lamp tube 20 And excited by the magnetic field to radiate a wave - an infrared light having a length of more than 78 nm. [0018] Please continue to refer to the third figure, which is a schematic diagram of the application of the present invention; the insitu lamp 1 which generates infrared light is installed in the vicinity of a surveillance camera 2, which can generate infrared rays when the light is insufficient or at night. The monitorless camera 1 can provide the surveillance camera 2 as an auxiliary illumination fixture. [0019] Please refer to the fourth figure again, which is the second embodiment of the present invention; this embodiment is substantially the same as the first embodiment. 'The electrodeless lamp la includes a housing 10a, a lamp form number A0101, page 6/total On page 14 of December, 199, the gJE replaces the page member 20a, a ballast 3〇a and a coupler 4〇a, and the lamp tube 2〇a is a closed light-transmissive casing in a closed state, the lamp tube 20a is installed in the housing l〇a', the ballast 30a is disposed outside the housing i〇a, the ballast 3〇a is electrically connected to an external power supply, and has a frequency conversion unit (not shown) The frequency unit is capable of converting an external power source into a predetermined frequency voltage. The predetermined frequency voltage is re-conducted to the coupler 40a, causing the lamp tube 20a to emit an infrared light having a wavelength of more than 78 nm. The above description is only a preferred embodiment of the present invention, and is not intended to limit the scope of the patent of the present invention. Other equivalent variations of the patent spirit using the present invention are all within the scope of the patent. [Simple description of the drawing] ^The first figure is a schematic view of the stereoscopic appearance of the electrodeless lamp which can generate infrared light; [0022] The second figure is a combined sectional view of the electrodeless lamp which can generate infrared light [0023] A schematic diagram of the application of the electrodeless lamp capable of generating infrared light: and [(8)24] f four-picture system, the second embodiment of the electrodeless lamp capable of generating infrared light [main component symbol description] [0025] 1 can be generated Infrared light electrodeless lamp 2 surveillance camera 1 lamp base structure 11 housing form number Α0ΗΜ page 7/total 4 pages M399943 December 16, revised correction page 12 electrical connector 13 top cover 20 lamp tube 21 U-shaped pipe segment 22 Straight pipe section 30 Ballast 31 Frequency conversion unit 32 Conductor 40 Engager 50 Working gas 1 a Induction lamp 10a Housing form No. A0101 Page 8 of 14

Claims (1)

M399943 099年12月16日梭正替換頁 申請專利範圍: .一種可產生红外線光的無極燈,係連接一外部電源,該無 極燈包括: 一燈頭結構,包含一殼座及固接於該殼座的一電接頭,該 電接頭係電性連接所述外部電源; 一燈管,設置在該燈頭結構上; 一鎮流器,安置在該殼座内部並電性連接該電接頭,該鎮 流器具有一變頻單元,該變頻單元能夠將所述外部電源轉 換成一預定頻率電壓; 一耦合器,包含套接該燈管的一環狀鐵芯及纏繞該環狀鐵 芯的一導電線圈,該導電線圈接受該預定頻率電壓輸入並 透過該環狀鐵芯在該燈管内建立一磁場;以及 一工作氣體,填充於該燈管内部,並受該磁場激發而輻射 出一紅外線光。 .如請求項1所述之可產生紅外線光的無極燈,其中該燈頭 結構更包含一頂蓋,該頂蓋固接在該殼座上,且插接有該 燈管。 .如請求項1所述之可產生紅外線光的無極燈,其中該燈管 包含一U形管段及橫接在該U形管段之間的一直管段,且該 環狀鐵芯係圈繞在該直管段的外部。 .如請求項1所述之可產生紅外線光的無極燈,其中該鎮流 器更包含有一導線,該導線的一端係電性連接該導電線圈 如請求項1所述之可產生紅外線光的無極燈,其中該工作 氣體包含一惰性氣體及一水銀蒸氣。 099212750 表單編號A0101 第9頁/共14頁 0993449912-0 M399943 099年12月16日修正替换頁 6 .如請求項1所述之可產生紅外線光的無極燈,其中該紅外 線光的波長係為78 Onm以上。 7 .如請求項1所述之可產生紅外線光的無極燈,其中該無極 燈所耗費的功率係在0. 8瓦特以下。 8 . —種可產生紅外線光的無極燈,係連接一外部電源,該無 極燈包括: 一殼座; 一燈管,設置在該殼座内; 一鎮流器,電性連接所述外部電源,該鎮流器具有一變頻 單元,該變頻單元能夠將所述外部電源轉換成一預定頻率 < 電壓; 一耦合器,包含套接該燈管每一環狀鐵芯及纏繞該環狀鐵 :」U:二 " 芯的一導電線圈,該導電線會接餐該預定頻率電壓輸入並 透過該環狀鐵芯在該燈管内建立一磁場;以及 一工作氣體,填充於該燈管内部,並受該磁場激發而輻射 出一紅外線光。 9 .如請求項8所述之可產生紅外線光的無極燈,其中該燈管 | 為呈封閉狀態的一環形透光殼體。 - 10 .如請求項8所述之可產生紅外線光的無極燈,其中該紅外 線光的波長係為7 8 0 nm以上。 11 .如請求項8所述之可產生紅外線光的無極燈,其中該無極 燈所耗費的功率係在0. 8瓦特以下。 099212750 表單編號A0101 第10頁/共14頁 0993449912-0M399943 On December 16, 099, the shuttle is replaced by a patent application scope: An induction lamp capable of generating infrared light is connected to an external power source, the induction lamp includes: a base structure comprising a housing and being fixed to the housing An electrical connector electrically connected to the external power source; a lamp tube disposed on the lamp cap structure; a ballast disposed inside the housing and electrically connected to the electrical connector, the town The inverter has a frequency conversion unit capable of converting the external power source into a predetermined frequency voltage; a coupler comprising an annular core sleeved around the lamp tube and a conductive coil wound around the ring core The conductive coil receives the predetermined frequency voltage input and establishes a magnetic field in the lamp tube through the annular core; and a working gas is filled inside the lamp tube and excited by the magnetic field to radiate an infrared light. The induction lamp capable of generating infrared light according to claim 1, wherein the base structure further comprises a top cover fixed to the housing and the bulb is inserted. The induction lamp capable of generating infrared light according to claim 1, wherein the lamp tube comprises a U-shaped pipe segment and a straight pipe segment transversely between the U-shaped pipe segments, and the annular iron core is wound around the wire tube The outside of the straight pipe section. The electrodeless lamp capable of generating infrared light according to claim 1, wherein the ballast further comprises a wire, one end of the wire is electrically connected to the conductive coil, and the electrodeless electrode capable of generating infrared light according to claim 1 A lamp, wherein the working gas comprises an inert gas and a mercury vapor. 099212750 Form No. A0101 Page 9 of 14 0993449912-0 M399943 Modified on December 16, 099. The electrodeless light capable of generating infrared light, as described in claim 1, wherein the wavelength of the infrared light is 78. Onm above. I. The power consumption of the electrodeless lamp is less than 0.8 watts. 8. An electrodeless lamp capable of generating infrared light, connected to an external power source, the electrodeless lamp comprising: a housing; a lamp tube disposed in the housing; a ballast electrically connected to the external power source The ballast has a frequency conversion unit capable of converting the external power source into a predetermined frequency <voltage; a coupler comprising socketing each annular core of the lamp tube and winding the ring-shaped iron: U: a conductive coil of the core, the conductive wire receives the predetermined frequency voltage input and establishes a magnetic field in the lamp through the annular core; and a working gas is filled in the lamp tube, And excited by the magnetic field to radiate an infrared light. 9. The electrodeless lamp capable of generating infrared light according to claim 8, wherein the lamp tube is an annular light-transmissive housing in a closed state. The induction lamp capable of generating infrared light according to claim 8, wherein the infrared light has a wavelength of 780 nm or more. I. The power consumption of the induction lamp is less than 0.8 watts. 099212750 Form No. A0101 Page 10 of 14 0993449912-0
TW99212750U 2010-07-05 2010-07-05 Electrodeless lamp capable of generating infrared light TWM399943U (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI447777B (en) * 2012-01-18 2014-08-01 Dimmable electrodeless lamp
TWI613395B (en) * 2016-11-10 2018-02-01 財團法人工業技術研究院 Rail type oled lamp assemble

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI447777B (en) * 2012-01-18 2014-08-01 Dimmable electrodeless lamp
TWI613395B (en) * 2016-11-10 2018-02-01 財團法人工業技術研究院 Rail type oled lamp assemble
US10197255B2 (en) 2016-11-10 2019-02-05 Industrial Technology Research Institute Rail-type OLED lamp assembly

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