TW202140998A - Optical device and prism module thereof - Google Patents
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Abstract
Description
本發明係有關於一種光學裝置及其稜鏡模組,特別是指一種雷射測距儀及其稜鏡模組。 The present invention relates to an optical device and its optical module, in particular to a laser rangefinder and its optical module.
請參閱第1圖,傳統的測距儀10包括一物鏡組(未繪示)、一稜鏡模組11、一有機發光二極體12、一光發射器13、一光接收器(未繪示)以及一目鏡組(未繪示)。稜鏡模組11設置於該物鏡組與該目鏡組之間,並包括一第一稜鏡14、一第二稜鏡15以及一第三稜鏡16,其中,第一稜鏡14貼合於第二稜鏡15,而第三稜鏡16鄰近於第二稜鏡15。有機發光二極體12與光發射器13則設置於靠近第一稜鏡14的一側。其中,第二稜鏡15與第三稜鏡16組成一別漢稜鏡組。
Please refer to Fig. 1, the
操作時,一物體(未繪示)所發出的一第一光束A依序通過該物鏡組、第二稜鏡15、第三稜鏡16與該目鏡組,以供使用者觀看該物體的影像。有機發光二極體12所發出的一第二光束B被一反射鏡17反射,並依序通過第一稜鏡14、第二稜鏡15、第三稜鏡16與該目鏡組,以供使用者觀看有機發光二極體12所產生的影像資訊以及十字標線等。光發射器13所發出的一第三光束C藉由另一反射鏡18、第一稜鏡14、第二稜鏡15與該物鏡組到達該物體,並被該物體反射回該光接收器,以計算出該物體距離測距儀10的距離。
During operation, a first light beam A emitted by an object (not shown) sequentially passes through the objective lens group, the
於上述結構中,稜鏡模組11中的別漢稜鏡組(由第二稜鏡15
與第三稜鏡16組成)一般常有漏光的問題,影響了搭載稜鏡模組11的測距儀10的成像品質。由於稜鏡模組11在如第1圖所示的Y方向上具有較大的尺寸,導致搭載稜鏡模組11的測距儀10的體積太大。若測距儀10中的該物鏡組與該目鏡組要採用非同軸的設計,稜鏡模組11會具有更大的體積,導致搭載稜鏡模組11的測距儀10的體積又更大。第二光束B在通過稜鏡模組11時被反射的次數較多,導致有機發光二極體12所產生的影像的亮度被降低。此外,光收發器13所發出的第三光束C的有效徑與有機發光二極體12所發出的第二光束B的有效徑相互干涉,導致光收發器13所發出的第三光束C的能量減弱。
In the above structure, the Biehan 稜鏡 group in the 稜鏡 module 11 (by the second 稜鏡 15
It is composed of the third lens 16) generally has the problem of light leakage, which affects the imaging quality of the
有鑑於此,本發明的目的在於提供一種光學裝置-測距儀,其藉由新穎結構的稜鏡模組,來縮減體積與提高成像品質,同時保證顯示單元所產生的影像的亮度與光發射器所發出的光束的能量是足夠高的。 In view of this, the object of the present invention is to provide an optical device-range finder, which reduces the volume and improves the image quality by using the novel structure of the 頜鏡 module, while ensuring the brightness and light emission of the image generated by the display unit The energy of the beam emitted by the detector is sufficiently high.
本發明的其中一實施例之稜鏡模組,包括一第一稜鏡、一第二稜鏡以及一第一膜。該第一稜鏡包括一第一面、一第二面、一第三面以及一第四面,其中該第四面分別跟第二面及第一面鄰接,且該第一面分別跟第四面及第三面鄰接。該第二稜鏡包括一第五面、一第六面以及一第七面,其中,該第二稜鏡的該第七面鄰近於該第一稜鏡的該第三面。該第一膜設於該第三面跟第七面之間。其中,一物體所發出的一第一光束從該第一面進入該第一稜鏡,依序被該第二面與該第三面反射,並從該第四面離開該第一稜鏡,其中該第一光束被該第一膜反射而往第四面前進。 One of the embodiments of the present invention has a scallop module, which includes a first scallop, a second scallop, and a first film. The first face includes a first face, a second face, a third face, and a fourth face, wherein the fourth face is adjacent to the second face and the first face respectively, and the first face is respectively adjacent to the first face Adjacent to the four sides and the third side. The second ridge includes a fifth side, a sixth side, and a seventh side, wherein the seventh side of the second ridge is adjacent to the third side of the first ridge. The first film is arranged between the third surface and the seventh surface. Wherein, a first light beam emitted by an object enters the first beam from the first surface, is sequentially reflected by the second surface and the third surface, and leaves the first beam from the fourth surface, The first light beam is reflected by the first film and travels to the fourth surface.
在另一實施例中,一光學裝置包括一物鏡組、一上述稜鏡模組以及一目鏡組,其中該第一稜鏡為一五角屋脊稜鏡;其中該第一膜形成於該第一稜鏡的該第三面,其中該第二稜鏡之第五面跟第七面鄰接。該稜 鏡模組設置於該物鏡組與該目鏡組之間,該第一光束依序通過該物鏡組、該稜鏡模組與該目鏡組,且該物鏡組的一中心軸與該目鏡組的一中心軸相互平行而不重疊。 In another embodiment, an optical device includes an objective lens group, an above-mentioned ridge module and an eyepiece group, wherein the first ridge is a pentagonal roof ridge; wherein the first film is formed on the first The third side of the 稜鏡, wherein the fifth side of the second 稜鏡 is adjacent to the seventh surface. The edge The lens module is arranged between the objective lens group and the eyepiece group, the first light beam sequentially passes through the objective lens group, the prism module and the eyepiece group, and a central axis of the objective lens group and one of the eyepiece group The central axes are parallel to each other without overlapping.
在另一實施例中,一光學裝置包括一物鏡組、一稜鏡模組以及一目鏡組。該稜鏡模組包括一第一稜鏡、一第二稜鏡以及一第一膜。該第一稜鏡包括一第一面、一第二面、一第三面以及一第四面。該第二稜鏡包括一第五面、一第六面以及一第七面,其中,該第二稜鏡的該第七面鄰近於該第一稜鏡的該第三面。該第一膜設於該第三面跟第七面之間。一物體所發出的一第一光束從該第一面進入該第一稜鏡,依序被該第二面與該第三面反射,並從該第四面離開該第一稜鏡,其中該第一光束被該第一膜反射而往第四面前進。該稜鏡模組設置於該物鏡組與該目鏡組之間,該第一光束依序通過該物鏡組、該稜鏡模組與該目鏡組,且該物鏡組的一中心軸與該目鏡組的一中心軸相互平行而不重疊。 In another embodiment, an optical device includes an objective lens group, a lens module, and an eyepiece group. The mold module includes a first mold, a second mold, and a first film. The first face includes a first side, a second side, a third side, and a fourth side. The second ridge includes a fifth side, a sixth side, and a seventh side, wherein the seventh side of the second ridge is adjacent to the third side of the first ridge. The first film is arranged between the third surface and the seventh surface. A first beam emitted by an object enters the first beam from the first surface, is sequentially reflected by the second surface and the third surface, and leaves the first beam from the fourth surface, wherein the The first light beam is reflected by the first film and travels to the fourth surface. The lens module is disposed between the objective lens group and the eyepiece group, the first light beam sequentially passes through the objective lens group, the lens module and the eyepiece group, and a central axis of the objective lens group and the eyepiece group One of the central axes is parallel to each other without overlapping.
在另一實施例中,該光學裝置更包括一第一反射單元,設置於該第一稜鏡的該第一面的一側,其中,該第一光束通過該物鏡組,被該第一反射單元反射至該稜鏡模組。 In another embodiment, the optical device further includes a first reflecting unit, which is disposed on one side of the first surface of the first beam, wherein the first light beam passes through the objective lens group and is reflected by the first The unit reflects to the module.
在另一實施例中,該光學裝置更包括一顯示單元,用以發出一第二光束,其中,該第二光束從該第五面進入該第二稜鏡,被該第六面反射,依序通過該第七面與該第三面進入該第一稜鏡,從該第四面離開該第一稜鏡,並通過該目鏡組。 In another embodiment, the optical device further includes a display unit for emitting a second light beam, wherein the second light beam enters the second beam from the fifth surface and is reflected by the sixth surface. The sequence enters the first ridge through the seventh side and the third side, leaves the first ridge from the fourth side, and passes through the eyepiece group.
在另一實施例中,該光學裝置更包括一第二膜,該第一膜形成於該第一稜鏡的該第三面,並用以反射該第一光束且使該第二光束通過該第一膜,而該第二膜形成於該第二稜鏡的該第六面,並用以反射該第二光束。 In another embodiment, the optical device further includes a second film, and the first film is formed on the third surface of the first beam and used for reflecting the first light beam and allowing the second light beam to pass through the first light beam. A film, and the second film is formed on the sixth surface of the second beam and used to reflect the second light beam.
在另一實施例中,該光學裝置更包括一第二反射單元以及一透鏡單元,其中,該第二反射單元設置於該第二稜鏡的該第五面的一側,該顯示單元、該透鏡單元與該第二反射單元沿著平行於該第二稜鏡的該第五面的一軸依序排列,而該第二光束通過該透鏡單元,被該第二反射單元反射至該稜鏡模組。 In another embodiment, the optical device further includes a second reflection unit and a lens unit, wherein the second reflection unit is disposed on one side of the fifth surface of the second ridge, the display unit, the The lens unit and the second reflection unit are arranged in sequence along an axis parallel to the fifth surface of the second mirror, and the second light beam passes through the lens unit and is reflected by the second reflection unit to the mirror mold Group.
在另一實施例中,該光學裝置更包括一光發射器以及一光接收器,其中,該光發射器用以發出一第三光束,而該光接收器用以接收被該物體反射的該第三光束,以計算出該物體與該光學裝置之間的距離。其中,當該光發射器設置於該第二稜鏡的該第六面的一側時,該第三光束從該第六面進入該第二稜鏡,依序通過該第七面與該第三面進入該第一稜鏡,被該第二面反射,並從該第一面離開該第一稜鏡,通過該物鏡組,離開該光學裝置而到達該物體,被該物體反射而又回到該光學裝置,並被該光接收器接收。其中,當該光接收器設置於該第二稜鏡的該第六面的一側時,該第三光束通過該物鏡組,離開該光學裝置而到達該物體,被該物體反射而又回到該光學裝置,再次通過該物鏡組,從該第一面進入該第一稜鏡,被該第二面反射,依序通過該第三面與該第七面進入該第二稜鏡,從該第六面離開該第二稜鏡,並被該光接收器接收。 In another embodiment, the optical device further includes a light emitter and a light receiver, wherein the light emitter is used for emitting a third light beam, and the light receiver is used for receiving the third light beam reflected by the object. Beam to calculate the distance between the object and the optical device. Wherein, when the light emitter is arranged on one side of the sixth surface of the second beam, the third light beam enters the second beam from the sixth surface, and sequentially passes through the seventh surface and the first beam. Three sides enter the first ridge, are reflected by the second side, and leave the first ridge from the first side, pass through the objective lens group, leave the optical device to reach the object, and are reflected by the object and back again To the optical device and received by the light receiver. Wherein, when the light receiver is arranged on one side of the sixth surface of the second beam, the third light beam passes through the objective lens group, leaves the optical device to reach the object, is reflected by the object, and returns to The optical device again passes through the objective lens group, enters the first beam from the first surface, is reflected by the second surface, and enters the second beam through the third surface and the seventh surface in sequence, and from the The sixth side leaves the second beam and is received by the light receiver.
在另一實施例中,該稜鏡模組更包括一第一膜以及一第二膜,該第一膜形成於該第一稜鏡的該第三面,並用以反射該第一光束且使該第三光束通過該第一膜,而該第二膜形成於該第二稜鏡的該第六面,並該第三光束通過該第二膜,其中該第一光束及該第三光束皆會通過該第一稜鏡。 In another embodiment, the beam module further includes a first film and a second film. The first film is formed on the third surface of the first beam and is used to reflect the first light beam and make The third light beam passes through the first film, the second film is formed on the sixth surface of the second beam, and the third light beam passes through the second film, wherein the first light beam and the third light beam are both Will pass the first jewel.
在另一實施例中,該光學裝置更包括一光發射器以及一光接收器,其中,該光發射器用以發出一第三光束,而該光接收器用以接收被 該物體反射的該第三光束,以計算出該物體與該光學裝置之間的距離。當該光發射器設置於該第二稜鏡的該第六面的一側時,該第三光束從該第六面進入該第二稜鏡,依序通過該第七面與該第三面進入該第一稜鏡,被該第二面反射,並從該第一面離開該第一稜鏡,通過該物鏡組,離開該光學裝置而到達該物體,被該物體反射而又回到該光學裝置,並被該光接收器接收。當該光接收器設置於該第二稜鏡的該第六面的一側時,該第三光束通過該物鏡組,離開該光學裝置而到達該物體,被該物體反射而又回到該光學裝置,再次通過該物鏡組,從該第一面進入該第一稜鏡,被該第二面反射,依序通過該第三面與該第七面進入該第二稜鏡,從該第六面離開該第二稜鏡,並被該光接收器接收。其中該稜鏡模組更包括一第一膜以及一第二膜,該第一膜形成於該第一稜鏡的該第三面,並用以反射該第一光束且使該第三光束通過該第一膜,而該第二膜形成於該第二稜鏡的該第六面,並該第三光束通過該第二膜,其中該第一光束、第二光束及該第三光束皆會通過該第一稜鏡。 In another embodiment, the optical device further includes a light emitter and a light receiver, wherein the light emitter is used to emit a third light beam, and the light receiver is used to receive The third light beam reflected by the object to calculate the distance between the object and the optical device. When the light emitter is arranged on one side of the sixth surface of the second beam, the third light beam enters the second beam from the sixth surface, and sequentially passes through the seventh surface and the third surface Enter the first lens, be reflected by the second surface, and leave the first lens from the first surface, pass through the objective lens group, leave the optical device to reach the object, be reflected by the object and return to the Optical device, and received by the light receiver. When the light receiver is arranged on one side of the sixth surface of the second beam, the third light beam passes through the objective lens group, leaves the optical device to reach the object, is reflected by the object and returns to the optical The device again passes through the objective lens group, enters the first beam from the first surface, is reflected by the second surface, and enters the second beam through the third surface and the seventh surface in sequence, and from the sixth surface The surface leaves the second beam and is received by the light receiver. The beam module further includes a first film and a second film. The first film is formed on the third surface of the first beam and is used for reflecting the first light beam and allowing the third light beam to pass through the The first film, and the second film is formed on the sixth surface of the second frame, and the third light beam passes through the second film, wherein the first light beam, the second light beam, and the third light beam all pass The first jerk.
10、100:測距儀 10, 100: rangefinder
11、20:稜鏡模組 11, 20: 稜鏡 module
12:有機發光二極體 12: Organic light-emitting diode
13、40:光發射器 13, 40: optical transmitter
14、25:第一稜鏡 14, 25: The first scorpion
15、34:第二稜鏡 15, 34: The second 稜鏡
16:第三稜鏡 16: The third round
17、18:反射鏡 17, 18: mirror
21:第一面 21: First side
22:第二面 22: second side
23:第三面 23: third side
24:第四面 24: Fourth side
30:顯示單元 30: display unit
31:第五面 31: Fifth Side
32:第六面 32: Sixth Side
33:第七面 33: Seventh side
42:光接收器 42: Optical receiver
50:透鏡單元 50: lens unit
60:第一反射單元 60: The first reflection unit
70:第二反射單元 70: second reflection unit
81:第一膜 81: The first film
82:第二膜 82: second film
92:目鏡組 92: Eyepiece group
94:物鏡組 94: Objective lens group
200:物體 200: Object
A:第一光束 A: First beam
B:第二光束 B: second beam
C:第三光束 C: third beam
L1、L2:中心軸 L1, L2: central axis
L3:軸 L3: Shaft
第1圖為傳統的測距儀的結構示意圖。 Figure 1 is a schematic diagram of the structure of a traditional rangefinder.
第2A~2C圖為本發明的第一實施例的測距儀的結構示意圖。 Figures 2A to 2C are schematic diagrams of the structure of the rangefinder according to the first embodiment of the present invention.
第3圖為本發明的第一實施例的測距儀的結構示意圖,其中標示出目鏡組、物鏡組的中心軸以及透鏡單元的軸。 FIG. 3 is a schematic structural diagram of the rangefinder according to the first embodiment of the present invention, in which the center axis of the eyepiece group, the objective lens group, and the axis of the lens unit are marked.
本發明光學裝置的第一實施例為一測距儀,其包括二光學系統,此二光學系統的差別僅在於其中一光學系統內設置光發射器,而另一光學系統設置光接收器,至於其他元件及配置方式則都相同,為求簡潔, 底下僅以其中一光學系統配合圖式作詳細說明。 The first embodiment of the optical device of the present invention is a rangefinder, which includes two optical systems. The difference between the two optical systems is only that one optical system is equipped with a light transmitter, and the other optical system is equipped with a light receiver. As for Other components and configuration methods are the same, for simplicity, Only one of the optical system matching diagrams is used for detailed description below.
請參閱第2A~2C圖所示本發明的第一實施例的測距儀100其中一部分,其包括一物鏡組94、一稜鏡模組20、一顯示單元30、一光發射器40、一透鏡單元50、一第一反射單元60、一第二反射單元70以及一目鏡組92(測距儀100另一部分的元件及配置方式皆相同,差別只在於將光發射器40改為光接收器42)。其中,一物體200所發出的一第一光束A依序通過該物鏡組94、稜鏡模組20與該目鏡組92,顯示單元30所發出的一第二光束B依序通過透鏡單元50、稜鏡模組20與該目鏡組92,光發射器40所發出的一第三光束C依序通過稜鏡模組20與該物鏡組94到達該物體200,被該物體200反射回測距儀100,並被該光接收器42接收。如此設置的話,使用者藉由該目鏡組92可觀看該物體200的影像與顯示單元30所產生的影像,並得知該物體200距離測距儀100的距離,其中該測距儀100可以是雙筒測距儀也可以是單筒測距儀。以下詳細說明測距儀100的構造與操作:
Please refer to Figs. 2A~2C as part of the
稜鏡模組20設置於該物鏡組與94該目鏡組92之間,且包括一第一稜鏡25以及一第二稜鏡34。於第一實施例中,第一稜鏡25為一屋脊五稜鏡,且包括一第一面21、一第二面22、一第三面23以及一第四面24,其中,第二面22上形成全反射膜,第一面21與第四面24上形成減反膜,第三面23上形成一第一膜81,而該第一膜81係用以反射第一光束A,同時又容許第二光束B與第三光束C通過。第二稜鏡34為一半五稜鏡,且包括一第五面31、一第六面32以及一第七面33,其中,第五面31上形成減反膜,第六面32上形成一第二膜82,而該第二膜82係用以反射第二光束B,同時又容許第三光束C通過。
The
具體而言,第一稜鏡25的第四面24朝向該目鏡組92,第二稜鏡34的第七面33鄰近於第一稜鏡25的第三面23,而第二稜鏡34的第六面32
朝向該物鏡組94。相較於習知的稜鏡模組,本發明的稜鏡模組20在平行於第一稜鏡25的第四面24的方向(或如第2A~2C圖所示的Y方向)上具有較小的尺寸。由於未於結構中使用別漢稜鏡組,本發明的稜鏡模組20相較於習知的稜鏡模組更能避免漏光情況的發生。如此設置的話,能保證設置裝載有稜鏡模組20的測距儀100獲得較小的體積以及較佳的成像品質。又如第2A~2C圖所示,第一反射單元60設置於第一稜鏡25的第一面21的一側,光發射器40設置於第二稜鏡34的第六面32的一側,而第二反射單元70設置於第二稜鏡34的第五面31的一側。此外如第3圖所示,顯示單元30、透鏡單元50與第二反射單元70沿著平行於第二稜鏡34的第五面31的一軸L3依序排列,且透鏡單元50位於顯示單元30與第二反射單元70之間。
Specifically, the
於第一實施例中,第一反射單元60為反射鏡或轉向稜鏡,顯示單元30為有機發光二極體(OLED)或液晶顯示器(LCD)或其他顯示器,第一光束A為可見光束,第二光束B為影像光束,而第三光束C則為雷射光束或不可見光束。
In the first embodiment, the
如第2A圖所示,當該物體200所發出的第一光束A進入測距儀100後,第一光束A通過該物鏡組94,被第一反射單元60反射至稜鏡模組20,從第一面21進入第一稜鏡25,依序被第二面22與第三面23反射,並從第四面24離開第一稜鏡25。最終,離開稜鏡模組20的第一光束A會通過該目鏡組92,以供使用者觀看該物體200的影像。值得注意的是,第一反射單元60與第一稜鏡25相隔一距離,使得被第一反射單元60反射前的第一光束A與離開稜鏡模組20的第一光束A並非同軸。因此,測距儀100中的該物鏡組94與該目鏡組92得以在不增加稜鏡模組20之體積的情況下採用非同軸的設計,換言之,如第3圖所示,該物鏡組94的一中心軸L2與該目鏡組92的一中心軸L1僅僅相互平行而不重疊。如此設置的話,測距儀100(例如雙筒測距
儀)的眼幅得以縮小,同時又具有較小的體積。
As shown in FIG. 2A, when the first light beam A emitted by the
如第2B圖所示,顯示單元30所發出的第二光束B通過透鏡單元50,被第二反射單元70反射至稜鏡模組20,從第五面31進入第二稜鏡34,被第六面32反射,依序通過第七面33與第三面23進入第一稜鏡25,並從第四面24離開第一稜鏡25。最終,離開稜鏡模組20的第二光束B會通過該目鏡組92,以供使用者觀看顯示單元30所產生的影像。相較於習知的稜鏡模組,第二光束B在通過稜鏡模組20時被反射的次數較少,使得顯示單元30所產生的影像的亮度得以提高。
As shown in Figure 2B, the second light beam B emitted by the
如第2C圖所示,光發射器40所發出的第三光束C從第六面32進入第二稜鏡34,依序通過第七面33與第三面23進入第一稜鏡25,被第二面22反射,並從第一面21離開第一稜鏡25。離開稜鏡模組20的第三光束C會被第一反射單元60反射,通過該物鏡組94,並離開測距儀100以到達該物體200。最終,第三光束C會被該物體200反射而回到測距儀100,並被該光接收器42接收,以計算出該物體200與測距儀100之間的距離。藉由稜鏡模組20的幫助,得以避免光發射器40所發出的第三光束C的有效徑與顯示單元30所發出的第二光束B的有效徑相互干涉。相較於習知的稜鏡模組,光發射器40所發出的第三光束C的能量得以提高。
As shown in Figure 2C, the third light beam C emitted by the
於第二實施例中,光發射器40與該光接收器42的位置互換。也就是說,該光接收器42設置於第二稜鏡34的第六面32的一側。操作時,光發射器40發出的第三光束C被該物體200反射,依序通過該物鏡組94與稜鏡模組20,以到達該光接收器42。具體而言,通過該物鏡組94的第三光束C被第一反射單元60反射,從第一面21進入第一稜鏡25,被第二面22反射,依序通過第三面23與第七面33進入第二稜鏡34,從第六面32離開第二稜鏡34,並到達該光接收器42。該光接收器42接收被該物體200反射的第三光束
C,使得測距儀得以計算出該物體200與測距儀100之間的距離。其餘設置與操作與第一實施例相似,在此不贅述。
In the second embodiment, the positions of the
於第三實施例中,不採用第2B圖所述的第二光束B路徑,而是改為使用者直接觀看顯示單元30來獲取其影像資訊。至於其他設置與操作與第一、二實施例相似,在此不贅述。
In the third embodiment, the path of the second light beam B described in FIG. 2B is not used, but instead the user directly looks at the
其中,該稜鏡模組20基本上包括該第一稜鏡25,包括第一面21、第二面22、第三面23以及第四面24,第二稜鏡34,包括第五面31、第六面32以及第七面33,其中,該第二稜鏡34的該第七面33鄰近於該第一稜鏡25的該第三面23,該第一膜81,設於該第三面23跟第七面33之間,其中,一物體200所發出的第一光束A從該第一面21進入該第一稜鏡25,依序被該第二面22與該第三面23反射,並從該第四面24離開該第一稜鏡25,其中該第一光束A被該第一膜81反射而往第四面24前進,藉由新穎結構的稜鏡模組20,來縮減體積與提高成像品質,具體而言,第二稜鏡34的第七面33鄰近於第一稜鏡25的第三面23。相較于現有的稜鏡模組,本發明的稜鏡模組20在平行於第一稜鏡25的第四面24的方向(或如圖2A~2C所示的Y方向)上具有較小的尺寸。由於未於結構中使用別漢稜鏡組,本發明的稜鏡模組20相較于現有的稜鏡模組更能避免漏光情況的發生。如此設置的話,能保證設置裝載有稜鏡模組20的測距儀100獲得較小的體積以及較佳的成像品質。而且該第一光束A在通過稜鏡模組20時被反射的次數僅2次,且僅在第一稜鏡25內進行反射,進而避免該物體200所產生的第一光束A的亮度被降低。
Wherein, the
20:稜鏡模組 20: 稜鏡 module
21:第一面 21: First side
22:第二面 22: second side
23:第三面 23: third side
24:第四面 24: Fourth side
25:第一稜鏡 25: The first jerk
30:顯示單元 30: display unit
31:第五面 31: Fifth Side
32:第六面 32: Sixth Side
33:第七面 33: Seventh side
34:第二稜鏡 34: The second scorpion
40:光發射器 40: light transmitter
42:光接收器 42: Optical receiver
50:透鏡單元 50: lens unit
60:第一反射單元 60: The first reflection unit
70:第二反射單元 70: second reflection unit
81:第一膜 81: The first film
82:第二膜 82: second film
92:目鏡組 92: Eyepiece group
94:物鏡組 94: Objective lens group
100:測距儀 100: Rangefinder
200:物體 200: Object
A:第一光束 A: First beam
Claims (10)
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