CN102902043B - Optical element adjustment module, projection device and method for adjusting optical element - Google Patents
Optical element adjustment module, projection device and method for adjusting optical element Download PDFInfo
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Abstract
一种光学元件调整模组、投影装置及调整光学元件的方法,所述光学元件调整模组,包括一架体、一第一调整元件及一第二调整元件。架体具有一连接部并藉由连接部连接于一投影装置的一光机座。一第一轴线及一第二轴线通过连接部。光学元件设置于架体。第一调整元件设置于架体且于第一轴线上。当旋转第一调整元件时,第一调整元件驱动架体相对于光机座以第一轴线为中心转动。第二调整元件连接于光机座且螺锁于架体。当旋转第二调整元件时,第二调整元件驱动架体相对于光机座以第二轴线为中心转动。此外,具有光学元件调整模组的投影装置及调整光学元件的方法亦被提及。
An optical element adjustment module, a projection device, and a method for adjusting an optical element, wherein the optical element adjustment module includes a frame, a first adjustment element, and a second adjustment element. The frame has a connecting portion and is connected to an optical machine base of a projection device through the connecting portion. A first axis and a second axis pass through the connecting portion. The optical element is disposed on the frame. The first adjustment element is disposed on the frame and on the first axis. When the first adjustment element is rotated, the first adjustment element drives the frame to rotate relative to the optical machine base with the first axis as the center. The second adjustment element is connected to the optical machine base and is screwed to the frame. When the second adjustment element is rotated, the second adjustment element drives the frame to rotate relative to the optical machine base with the second axis as the center. In addition, a projection device having an optical element adjustment module and a method for adjusting an optical element are also mentioned.
Description
【技术领域】 【Technical field】
本发明是有关于一种调整模组、光学装置及调整方法,且特别是有关于一种光学元件调整模组、投影装置及调整光学元件的方法。The present invention relates to an adjustment module, an optical device and an adjustment method, and in particular relates to an optical element adjustment module, a projection device and an adjustment method for an optical element.
【背景技术】 【Background technique】
投影装置为一种用以产生大尺寸画面的显示装置。投影装置的成像原理是藉由光阀将光源所产生的照明光束转换成影像光束,再藉由镜头将影像光束转换为投影光束,并将其投影到萤幕或墙面上。随着投影技术的进步及制造成本的降低,投影装置的使用已从商业用途逐渐拓展至家庭用途。A projection device is a display device for producing large-scale images. The imaging principle of the projection device is to convert the illumination beam generated by the light source into an image beam through a light valve, and then convert the image beam into a projection beam through a lens, and project it onto a screen or a wall. With the advancement of projection technology and the reduction of manufacturing costs, the use of projection devices has gradually expanded from commercial use to home use.
一般来说,可在投影装置的光机内设置反射镜,反射镜用以将光源发出的照明光束反射至光阀,以藉由光路的改变达到缩减光机体积的效果。当光路的计算不够准确或光机在制造与组装上具有公差时,皆会造成反射镜的角度产生偏差,使投影装置的亮度及其它光学品质受到影响。Generally speaking, a reflector can be installed in the optical engine of the projection device, and the reflector is used to reflect the illumination beam emitted by the light source to the light valve, so as to achieve the effect of reducing the volume of the optical engine by changing the optical path. When the calculation of the optical path is inaccurate or there is a tolerance in the manufacturing and assembly of the optical machine, the angle of the reflector will be deviated, and the brightness and other optical qualities of the projection device will be affected.
中国台湾专利编号M452093揭露一种液晶投影机的进阶二维镜片角度调整装置,其反射镜的角度可被调整。美国专利编号7249857揭露一种用于投影光学系统的锁固及调整定位装置,藉由旋转螺丝来调整积分柱的角度。美国专利编号7080910揭露一种显示装置的反射镜模组,其反射镜的角度可被调整。美国专利编号4401288揭露一种光学镜片的调整装置,用以调整反射镜的角度。Taiwan Patent No. M452093 discloses an advanced two-dimensional lens angle adjustment device for a liquid crystal projector, and the angle of the reflector can be adjusted. US Patent No. 7249857 discloses a locking and adjusting positioning device for a projection optical system, in which the angle of an integrating column is adjusted by rotating a screw. US Patent No. 7080910 discloses a mirror module of a display device, the angle of the mirror can be adjusted. US Patent No. 4401288 discloses an optical lens adjusting device for adjusting the angle of the reflector.
【发明内容】 【Content of invention】
本发明提出一种光学元件调整模组,可准确地调整投影装置的光学元件的角度。The invention provides an optical element adjustment module, which can accurately adjust the angle of the optical element of the projection device.
本发明提出一种投影装置,其中包含一光学元件调整模组可准确地调整光学元件的角度。The invention provides a projection device, which includes an optical element adjustment module to accurately adjust the angle of the optical element.
本发明提出一种调整光学元件的方法,可准确地调整投影装置的光学元件的角度。The invention provides a method for adjusting the optical element, which can accurately adjust the angle of the optical element of the projection device.
本发明的其他目的和优点可以从本发明所揭露的技术特征中得到进一步的了解。Other purposes and advantages of the present invention can be further understood from the technical features disclosed in the present invention.
为达上述的一或部份或全部目的或是其他目的,本发明之一实施例提供一种光学元件调整模组,用于调整一投影装置的一光学元件。投影装置包括一光机座。光学元件调整模组包括一架体、一第一调整元件以及一第二调整元件。架体具有一连接部,架体藉由连接部连接于光机座。架体具有通过连接部的一第一轴线及一第二轴线。光学元件设置于架体。第一调整元件设置于架体且于第一轴线上。当第一调整元件时,第一调整元件驱动架体以第一轴线为中心相对于光机座转动。第二调整元件连接于光机座且螺锁于架体。当旋转第二调整元件时,第二调整元件驱动架体以第二轴线为中心相对于光机座转动。此外,连接部为一凸柱,光机座具有一凹孔,架体藉由连接部与凹孔的配合而连接于光机座。光学元件调整模组更包括一锁附件,用以穿过架体并锁附于光机座,以设置架体于光机座。架体具有相对应于锁附件的一开孔,锁附件穿过开孔并锁附于光机座,开孔的一孔径大于锁附件的一外径,且锁附件于开孔中相对于架体移动。第二调整元件沿一第三轴线螺锁于架体,第三轴线通过第一轴线。另外,连接部位于架体的底端,架体的顶端具一承靠部,承靠部承靠于光机座。承靠部藉由架体以第二轴线为中心的转动及承靠部与光机座之间的结构性干涉而产生弹性变形。To achieve one or part or all of the above objectives or other objectives, an embodiment of the present invention provides an optical element adjustment module for adjusting an optical element of a projection device. The projection device includes an optical base. The optical element adjustment module includes a frame, a first adjustment element and a second adjustment element. The frame body has a connecting portion, and the frame body is connected to the optical machine base through the connecting portion. The frame body has a first axis and a second axis passing through the connecting portion. The optical element is arranged on the frame body. The first adjusting element is arranged on the frame body and on the first axis. When the first adjustment element is used, the first adjustment element drives the frame body to rotate relative to the optical machine base with the first axis as the center. The second adjustment element is connected to the optical machine base and screwed to the frame body. When the second adjusting element is rotated, the second adjusting element drives the frame body to rotate relative to the optical machine base with the second axis as the center. In addition, the connecting part is a convex column, the optical base has a concave hole, and the frame body is connected to the optical base through the cooperation of the connecting part and the concave hole. The optical element adjustment module further includes a locking part, which is used to pass through the frame body and lock to the optical machine base, so as to set the frame body on the optical machine base. The frame body has a hole corresponding to the lock part, the lock part passes through the hole and is locked on the optical base, an aperture of the hole is larger than an outer diameter of the lock part, and the lock part is in the hole relative to the frame body moves. The second adjustment element is screwed to the frame body along a third axis, and the third axis passes through the first axis. In addition, the connecting part is located at the bottom end of the frame body, and the top end of the frame body has a support part, and the support part rests on the optical machine base. The supporting part is elastically deformed by the rotation of the support body around the second axis and the structural interference between the supporting part and the optical machine base.
光学元件调整模组,进一步包括:一弹簧,第二调整元件穿设于光机座,弹簧套设于第二调整元件且抵靠于光机座与架体之间。一垫片,套设于第二调整元件且承靠于光机座,其中弹簧抵靠于垫片与架体之间。光学元件为反射镜。第一轴线垂直第二轴线,第一轴线及第二轴线垂直第三轴线。The optical element adjustment module further includes: a spring, the second adjustment element is passed through the optical base, and the spring is sheathed on the second adjustment element and leans against between the optical base and the frame. A spacer is sheathed on the second adjusting element and bears against the optical machine base, wherein the spring is against between the spacer and the frame body. The optical elements are mirrors. The first axis is perpendicular to the second axis, and the first axis and the second axis are perpendicular to the third axis.
为达上述的一或部份或全部目的或是其他目的,本发明之一实施例提供一种投影装置,包括一光机座、一光学元件调整模组、一反射镜、一光源、一光阀及一镜头。光学元件调整模组包括一架体、一第一调整元件、一第二调整元件。架体具有一连接部并藉由连接部可转动地连接于光机座。架体具有通过连接部的一第一轴线及一第二轴线。第一调整元件设置于架体且位于第一轴线上。当第一调整元件旋转时,第一调整元件驱动架体以第一轴线为中心相对于光机座转动。第二调整元件连接于光机座且螺锁于架体。当旋转第二调整元件时,第二调整元件驱动架体以第二轴线为中心相对于光机座转动。锁附件用以穿过架体并锁附于光机座,以设置架体于光机座。反射镜设置于架体。光源配置于光机座且用以提供一照明光束。光阀配置于光机座。反射镜用以反射照明光束至光阀。光阀用以将照明光束转换为一影像光束。镜头配置于光机座且用以将影像光束转换为一投影光束。In order to achieve one or part or all of the above objectives or other objectives, an embodiment of the present invention provides a projection device, including an optical base, an optical element adjustment module, a reflector, a light source, a light Valve and a lens. The optical element adjustment module includes a frame, a first adjustment element, and a second adjustment element. The frame body has a connecting portion and is rotatably connected to the optical machine base through the connecting portion. The frame body has a first axis and a second axis passing through the connecting portion. The first adjusting element is arranged on the frame body and is located on the first axis. When the first adjusting element rotates, the first adjusting element drives the frame body to rotate relative to the optical machine base with the first axis as the center. The second adjustment element is connected to the optical machine base and screwed to the frame body. When the second adjusting element is rotated, the second adjusting element drives the frame body to rotate relative to the optical machine base with the second axis as the center. The locking part is used to pass through the frame body and be locked to the optical machine base, so as to set the frame body on the optical machine base. The reflection mirror is arranged on the frame body. The light source is arranged on the optical machine base and used to provide an illumination beam. The light valve is configured on the light engine base. The reflector is used to reflect the illumination beam to the light valve. The light valve is used for converting the illumination light beam into an image light beam. The lens is arranged on the optical machine base and is used for converting the image light beam into a projection light beam.
为达上述的一或部份或全部目的或是其他目的,本发明之一实施例提供一种调整光学元件的方法,用于调整一投影装置的一光学元件。投影装置包括一光机座。首先,提供一架体,架体具有一连接部并藉由连接部连接于光机座,架体具有通过连接部的一第一轴线及一第二轴线,光学元件设置于架体。提供一第一调整元件,第一调整元件设置于架体且位于第一轴线上。提供一第二调整元件,第二调整元件连接于光机座且螺锁于架体。以第一轴线为中心旋转第一调整元件,并驱动架体以第一轴线为中心相对于光机座转动。旋转第二调整元件,以驱动架体以第二轴线为中心相对于光机座转动。To achieve one or part or all of the above objectives or other objectives, an embodiment of the present invention provides a method for adjusting an optical element, which is used for adjusting an optical element of a projection device. The projection device includes an optical base. Firstly, a frame body is provided, the frame body has a connecting portion and is connected to the optical base through the connecting portion, the frame body has a first axis and a second axis passing through the connection portion, and the optical element is arranged on the frame body. A first adjusting element is provided, and the first adjusting element is arranged on the frame body and located on the first axis. A second adjustment element is provided, and the second adjustment element is connected to the optical machine base and screwed to the frame body. The first adjusting element is rotated around the first axis, and the frame is driven to rotate relative to the optical machine base around the first axis. Rotate the second adjustment element to drive the frame body to rotate relative to the optical machine base with the second axis as the center.
此外,驱动架体以第一轴线为中心相对于光机座转动的步骤包括:驱动架体以第一轴线为中心顺时针转动;若投影装置投射出的一投影光束的亮度随着架体以该第一轴线为中心顺时针转动而渐增,则继续驱动架体沿着第一轴线顺时针转动;以及若投影装置投射出的投影光束的亮度随着架体以第一轴线为中心顺时针转动而渐减,则驱动架体以第一轴线为中心逆时针转动。In addition, the step of driving the frame to rotate relative to the optical base around the first axis includes: driving the frame to rotate clockwise around the first axis; If the first axis rotates clockwise as the center and gradually increases, then continue to drive the frame body to rotate clockwise along the first axis; The rotation decreases gradually, and the driving frame rotates counterclockwise around the first axis.
承上述,驱动架体以第二轴线为中心相对于光机座转动的步骤包括:驱动架体以第二轴线为中心顺时针转动;若投影装置投射出的一投影光束的亮度随着架体以第二轴线为中心顺时针转动而渐增,则继续驱动架体以第二轴线为中心顺时针转动;以及若投影装置投射出的投影光束的亮度随着架体以第二轴线为中心顺时针转动而渐减,则驱动架体以第二轴线为中心逆时针转动。Based on the above, the step of driving the frame body to rotate relative to the optical machine base with the second axis as the center includes: driving the frame body to rotate clockwise with the second axis as the center; Rotate clockwise around the second axis to gradually increase, then continue to drive the frame body to rotate clockwise around the second axis; When the clockwise rotation decreases gradually, the driving frame rotates counterclockwise around the second axis.
以及,在驱动该架体以第一轴线及第二轴线为中心相对于该光机座转动之后,藉由锁附件将架体设置于光机座。且藉由一锁附件将架体设置于光机座的同时,沿着第一轴线下压第一调整元件,用以将架体紧抵于光机座。锁附件用以将架体设置于光机座;在解除锁附件对架体的设置之后,以第一轴线为中心旋转第一调整元件,用以驱动架体以第一轴线相对于光机座转动。And, after the frame body is driven to rotate relative to the optical machine base with the first axis and the second axis as the center, the frame body is arranged on the optical machine base through the locking part. And when the frame body is arranged on the optical machine base by a locking accessory, the first adjusting element is pressed down along the first axis to press the frame body tightly against the optical machine base. The locking part is used to set the frame body on the optical machine base; after releasing the setting of the locking part on the frame body, the first adjustment element is rotated around the first axis to drive the frame body relative to the optical machine base with the first axis turn.
基于上述,在本发明的上述实施例中,使用者可旋转第一调整元件来驱动架体沿着第一轴线转动,且可旋转第二调整元件来驱动架体沿着第二轴线转动,以将设置于架体的光学元件调整至适当角度,提升投影装置的投影品质。此外,由于架体藉由其连接部可转动地连接于光机座,因此架体受力时仅能够以连接部为转动中心进行转动,而使光学元件的角度调整较为准确。另外,由于连接部及第一调整元件皆位于第一轴线上,因此使用者可快速且准确地旋转第一调整元件来驱动架体以第一轴线为中心转动,以提升光学元件的角度调整的便利性。Based on the above, in the above embodiments of the present invention, the user can rotate the first adjustment element to drive the frame to rotate along the first axis, and can rotate the second adjustment element to drive the frame to rotate along the second axis, so that The optical elements arranged on the frame are adjusted to an appropriate angle to improve the projection quality of the projection device. In addition, since the frame body is rotatably connected to the optical base through its connecting portion, the frame body can only rotate with the connecting portion as the center of rotation when the frame is stressed, so that the angle adjustment of the optical element is more accurate. In addition, since the connecting portion and the first adjustment element are both located on the first axis, the user can quickly and accurately rotate the first adjustment element to drive the frame to rotate around the first axis, so as to improve the angle adjustment of the optical element. convenience.
为让本发明的上述特征和优点能更明显易懂,下文特举多个实施例,并配合所附图式,作详细说明如下。In order to make the above-mentioned features and advantages of the present invention more comprehensible, a number of embodiments will be described in detail below together with the accompanying drawings.
【附图说明】 【Description of drawings】
图1为本发明的一实施例的投影装置的示意图。FIG. 1 is a schematic diagram of a projection device according to an embodiment of the present invention.
图2为图1的投影装置的立体图。FIG. 2 is a perspective view of the projection device in FIG. 1 .
图3为图2的架体与光学元件的立体图。FIG. 3 is a perspective view of the frame and the optical element in FIG. 2 .
图4为图2的投影装置的局部剖视图。FIG. 4 is a partial cross-sectional view of the projection device in FIG. 2 .
图5为本发明的一实施例的调整光学元件的方法流程图。FIG. 5 is a flowchart of a method for adjusting an optical element according to an embodiment of the present invention.
100:投影装置100: projection device
110:光机座110: optical base
112:凹孔112: concave hole
120:光源120: light source
130:光阀130: light valve
140:镜头140: Lens
150:光学元件调整模组150: Optical component adjustment module
152:架体152: frame body
152a:连接部152a: connection part
152b:底端152b: bottom end
152c:顶端152c: Top
152d:承靠部152d: supporting part
152e:开孔152e: opening
152f:凹槽152f: groove
154:第一调整元件154: first adjustment element
156:第二调整元件156: second adjustment element
157:弹簧157: Spring
158:锁附件158: Lock accessory
159:垫片159: Gasket
160:光学元件160: Optical elements
162:反射面162: reflective surface
A1:第一轴线A1: first axis
A2:第二轴线A2: Second axis
A3:第三轴线A3: The third axis
B:夹角B: Angle
L1:照明光束L1: Lighting beam
L2:影像光束L2: image beam
L3:投影光束L3: projection beam
S602~S614:步骤S602~S614: steps
【具体实施方式】 【Detailed ways】
有关本发明的前述及其他技术内容、特点与功效,在以下配合参考图式的多个实施例的详细说明中,将可清楚的呈现。以下实施例中所提到的方向用语,例如「上」、「下」、「前」、「后」、「左」、「右」等,仅是参考附加图式的方向。因此,使用的方向用语是用来说明,而非用来限制本发明。The aforementioned and other technical contents, features and effects of the present invention will be clearly presented in the following detailed descriptions of multiple embodiments with reference to the drawings. The directional terms mentioned in the following embodiments, such as "upper", "lower", "front", "rear", "left", "right", etc., are only referring to the directions of the attached drawings. Accordingly, the directional terms are used to illustrate, not to limit, the invention.
图1为本发明的一实施例的投影装置的示意图。本实施例的投影装置100包括一光机座110、一光源120、一光阀130及一镜头140。光源120、光阀130及镜头140配置于光机座110,光源120用以提供一照明光束L1,光阀130例如为数位微镜装置(digital micromirror devices,DMD)且用以将照明光束L1转换为一影像光束L2,镜头140用以将影像光束L2转换为一投影光束L3。FIG. 1 is a schematic diagram of a projection device according to an embodiment of the present invention. The projection device 100 of this embodiment includes an optical base 110 , a light source 120 , a light valve 130 and a lens 140 . The light source 120, the light valve 130 and the lens 140 are disposed on the optical base 110. The light source 120 is used to provide an illumination beam L1. The light valve 130 is, for example, a digital micromirror device (digital micromirror devices, DMD) and is used to convert the illumination beam L1. It is an image beam L2, and the lens 140 is used to convert the image beam L2 into a projection beam L3.
请参考图2至图4,本实施例的投影装置100更包括一光学元件调整模组150及一光学元件160。光学元件调整模组150包括一架体152、一第一调整元件154、一第二调整元件156及一锁附件158。光学元件160例如为一反射镜且设置于架体152,并用以将来自光源120的照明光束L1(绘示于图1)反射至光阀130。架体152具有一连接部152a并藉由连接部152a可转动地连接于光机座110。连接部152a位于一第一轴线A1上及一第二轴线A2上。第一调整元件154一体成形地连接于架体152且同轴设置于第一轴线A1上。第二调整元件156连接于光机座110且可转动地螺锁于架体152。锁附件158用以穿过架体152并可拆卸地锁附于光机座110,以设置架体152于光机座110。Please refer to FIG. 2 to FIG. 4 , the projection device 100 of this embodiment further includes an optical element adjustment module 150 and an optical element 160 . The optical element adjustment module 150 includes a frame body 152 , a first adjustment element 154 , a second adjustment element 156 and a locking part 158 . The optical element 160 is, for example, a mirror and is disposed on the frame body 152 to reflect the illumination beam L1 (shown in FIG. 1 ) from the light source 120 to the light valve 130 . The frame body 152 has a connecting portion 152 a and is rotatably connected to the optical base 110 through the connecting portion 152 a. The connecting portion 152a is located on a first axis A1 and a second axis A2. The first adjustment element 154 is integrally connected to the frame body 152 and coaxially disposed on the first axis A1. The second adjusting element 156 is connected to the optical machine base 110 and rotatably screwed to the frame body 152 . The locking part 158 is used to pass through the frame body 152 and detachably lock on the optical machine base 110 so as to install the frame body 152 on the optical machine base 110 .
在此配置方式之下,当使用者欲对光学元件160进行调整时,可在松开锁附件158之后,以第一轴线A1为中心旋转第一调整元件154来驱动架体152沿着第一轴线A1相对于光机座110转动,并旋转第二调整元件156来驱动架体152以第二轴线A2为中心相对于光机座110转动,藉此,将设置于架体152的光学元件160调整至适当角度,提升投影装置100的投影品质。进一步而言,由于架体152藉由其连接部152a可转动地连接于光机座110,因此架体152受力时仅能够以连接部152a为转动中心进行转动,而使光学元件160的角度调整较为准确。此外,由于连接部152a及第一调整元件154皆位于第一轴线A1上,因此使用者可快速且准确地旋转第一调整元件154来驱动架体152以第一轴线A1为中心转动,以提升光学元件160的角度调整的便利性。Under this arrangement, when the user wants to adjust the optical element 160, after loosening the lock attachment 158, the first adjustment element 154 can be rotated around the first axis A1 to drive the frame body 152 along the first axis A1. The axis A1 rotates relative to the optical machine base 110, and rotates the second adjustment element 156 to drive the frame body 152 to rotate relative to the optical machine base 110 around the second axis A2, whereby the optical element 160 disposed on the frame body 152 Adjust to an appropriate angle to improve the projection quality of the projection device 100 . Further, since the frame body 152 is rotatably connected to the optical base 110 through its connecting portion 152a, the frame body 152 can only rotate with the connecting portion 152a as the center of rotation when it is stressed, so that the angle of the optical element 160 The adjustment is more accurate. In addition, since the connecting portion 152a and the first adjustment element 154 are located on the first axis A1, the user can quickly and accurately rotate the first adjustment element 154 to drive the frame body 152 to rotate around the first axis A1 to lift the The convenience of the angle adjustment of the optical element 160.
在本实施例中,第一轴线A1垂直第二轴线A2,且第一轴线A1及第二轴线A2平行光学元件160的一反射面162,光学元件160藉由沿着第一轴线A1及第二轴线A2的转动,可有效调整照明光束L1经光学元件160反射后的行进方向。此外,本实施例的第二调整元件156是沿着一第三轴线A3螺锁于架体152,第三轴线A3通过第一轴线A1,因此第二调整元件156驱动架体152作动时不会带动架体152沿第一轴线A1转动,使光学元件160可独立地沿着第二轴线A2为中心旋转而进行调整,以提升调整效率与准确度。In this embodiment, the first axis A1 is perpendicular to the second axis A2, and the first axis A1 and the second axis A2 are parallel to a reflective surface 162 of the optical element 160. The rotation of the axis A2 can effectively adjust the traveling direction of the illumination light beam L1 after being reflected by the optical element 160 . In addition, the second adjusting element 156 of this embodiment is screwed to the frame body 152 along a third axis A3, and the third axis A3 passes through the first axis A1, so the second adjusting element 156 drives the frame body 152 to move without The frame body 152 is driven to rotate along the first axis A1, so that the optical element 160 can be independently rotated and adjusted along the second axis A2, so as to improve adjustment efficiency and accuracy.
请参考图3及图4,详细而言,本实施例的连接部152a为一凸柱,光机座110具有一凹孔112,连接部152a可转动地设置于凹孔内112,架体152藉由连接部152a与凹孔112的配合而可转动地连接于光机座110。此外,如图4所示,所述凸柱形成于架体152的一底端152b,架体152的一顶端152c具一承靠部152d,承靠部152d承靠于光机座110,以使整体结构较为稳固。Please refer to FIG. 3 and FIG. 4 , in detail, the connecting portion 152a of this embodiment is a convex column, the optical base 110 has a concave hole 112, the connecting portion 152a is rotatably arranged in the concave hole 112, and the frame body 152 The connecting portion 152 a is rotatably connected to the optical base 110 through cooperation with the concave hole 112 . In addition, as shown in FIG. 4, the boss is formed on a bottom end 152b of the frame body 152, and a top end 152c of the frame body 152 has a supporting portion 152d, and the supporting portion 152d is supported on the optical machine base 110, so as to Make the overall structure more stable.
在本实施例中,架体152的材质例如为塑胶而具有弹性变形的特性,且承靠部152d与光机座110接触而产生结构性干涉。藉此,当架体152以第二轴线A2为中心转动至不同角度时,承靠部152d可藉由弹性变形维持于接触光机座110的状态而不致悬空。举例来说,当整体结构处于图4所示状态时,承靠部152d接触光机座110且为未产生弹性变形的状态,此时承靠部152d与架体152主体之间的夹角B例如是小于90度。当架体152沿着第二轴线A2转动而向右倾斜时,承靠部152d会因其与光机座110之间的结构性干涉而产生弹性变形,使夹角B增加为等于或大于90度,沿着承靠部152d与架体152主体交接处设有一凹槽152f,用以使该承靠部152有较佳的弹性变形空间。In this embodiment, the frame body 152 is made of, for example, plastic and has elastic deformation characteristics, and the supporting portion 152 d contacts with the optical-mechanical base 110 to generate structural interference. Thereby, when the support body 152 rotates to different angles around the second axis A2, the supporting portion 152d can maintain the state of contacting the optical base 110 through elastic deformation without being suspended. For example, when the overall structure is in the state shown in FIG. 4 , the supporting portion 152d is in contact with the optical base 110 and is in a state of no elastic deformation. At this time, the included angle B between the supporting portion 152d and the main body of the frame body 152 For example, it is less than 90 degrees. When the frame body 152 rotates along the second axis A2 and tilts to the right, the supporting portion 152d will elastically deform due to the structural interference with the optical base 110, so that the included angle B increases to be equal to or greater than 90° A groove 152f is provided along the intersection of the supporting portion 152d and the main body of the frame body 152, so that the supporting portion 152 has a better space for elastic deformation.
请参考图2及图3,本实施例的锁附件158的数量为二个,架体152具有二开孔152e,开孔152e分别设置于该第一调整元件154的两侧,锁附件158分别透过开孔152e穿过架体152而锁附至光机座110,且锁附件158对应开孔152e并分别位于第一调整元件154的两侧,以稳固地对架体152进行设置。各开孔152e的一孔径例如大于各锁附件158的一外径,以使架体152与光机座110在具有不同相对位置的情况下,锁附件158皆可顺利地透过开孔152e锁附至光机座110。Please refer to Fig. 2 and Fig. 3, the quantity of the locking parts 158 of the present embodiment is two, and the frame body 152 has two openings 152e, and the openings 152e are respectively arranged on the two sides of the first adjusting element 154, and the locking parts 158 are respectively The frame body 152 is locked to the optical base 110 through the opening 152e, and the locking parts 158 correspond to the hole 152e and are respectively located on both sides of the first adjustment element 154, so as to securely set the frame body 152. An aperture of each opening 152e is, for example, larger than an outer diameter of each locking part 158, so that when the frame body 152 and the optical base 110 have different relative positions, the locking part 158 can smoothly pass through the opening 152e and lock. Attached to optical base 110.
请参考图2及图4,本实施例的光学元件调整模组150更包括一弹簧157及一垫片159。第二调整元件156穿设于光机座110,垫片159套设于第二调整元件156且承靠于光机座110,弹簧157套设于第二调整元件156且抵靠于垫片159与架体152之间。藉此,第二调整元件156与光机座110的相对位置可藉由弹簧157的弹性力而保持不变,使第二调整元件156旋转时可有效地驱动架体152相对光机座110转动。Please refer to FIG. 2 and FIG. 4 , the optical element adjustment module 150 of this embodiment further includes a spring 157 and a washer 159 . The second adjusting element 156 is installed on the optical machine base 110, the gasket 159 is sleeved on the second adjusting element 156 and bears against the optical machine base 110, and the spring 157 is sleeved on the second adjusting element 156 and leans against the gasket 159 Between the frame body 152. Thereby, the relative position of the second adjusting element 156 and the optical machine base 110 can be kept unchanged by the elastic force of the spring 157, so that when the second adjusting element 156 rotates, it can effectively drive the frame body 152 to rotate relative to the optical machine base 110 .
以上述投影装置100为例,配合图5说明本发明调整光学元件的方法。图5为本发明的一实施例的调整光学元件的方法流程图。请参考图1至图5,本实施例的调整光学元件的方法用于调整投影装置100的光学元件160。首先,提供一架体152,架体152具有一连接部152a并藉由连接部152a可转动地连接于光机座110,架体具有通过连接埠152a的一第一轴线A1及一第二轴线A2,光学元件160设置于架体152(步骤S602)。接着,提供至少一锁附件158,锁附件158用以将架体152设置于光机座110(步骤S604)。提供一第一调整元件154,第一调整元件154设置于架体152且同轴设置于第一轴线A1上(步骤S606)。提供一第二调整元件156,第二调整元件156连接于光机座110且可转动地螺锁于架体152(步骤S608)。解除锁附件158对架体152的设置(步骤S610)。在解除锁附件158对架体152的设置之后,以第一轴线A1为中心旋转第一调整元件154,驱动架体152沿着第一轴线A1相对于光机座110转动(步骤S612)。在解除锁附件158对架体152的设置之后,旋转第二调整元件156,以驱动架体152以第二轴线A2为中心相对于光机座110转动(步骤S614)。Taking the above-mentioned projection device 100 as an example, the method for adjusting the optical element of the present invention will be described with reference to FIG. 5 . FIG. 5 is a flowchart of a method for adjusting an optical element according to an embodiment of the present invention. Please refer to FIG. 1 to FIG. 5 , the method for adjusting an optical element in this embodiment is used for adjusting the optical element 160 of the projection device 100 . First, a frame body 152 is provided. The frame body 152 has a connecting portion 152a and is rotatably connected to the optical base 110 through the connecting portion 152a. The frame body has a first axis A1 and a second axis passing through the connecting port 152a. A2, the optical element 160 is disposed on the frame body 152 (step S602). Next, at least one locking part 158 is provided, and the locking part 158 is used for disposing the frame body 152 on the optical base 110 (step S604 ). A first adjustment element 154 is provided, and the first adjustment element 154 is disposed on the frame body 152 and coaxially disposed on the first axis A1 (step S606 ). A second adjusting element 156 is provided, and the second adjusting element 156 is connected to the optical base 110 and rotatably screwed to the frame body 152 (step S608 ). The setting of the locking part 158 on the frame body 152 is released (step S610). After releasing the setting of the locking member 158 on the frame body 152 , the first adjusting member 154 is rotated around the first axis A1 to drive the frame body 152 to rotate relative to the optical base 110 along the first axis A1 (step S612 ). After releasing the setting of the locking member 158 on the frame body 152 , rotate the second adjusting member 156 to drive the frame body 152 to rotate relative to the optical base 110 around the second axis A2 (step S614 ).
本发明不对上述步骤S604、步骤S606及步骤S608的顺序加以限制,且不对上述步骤S612及步骤S614的顺序加以限制。The present invention does not limit the sequence of the above steps S604, S606 and S608, and does not limit the sequence of the above steps S612 and S614.
详细而言,在进行上述步骤S612时,例如是先驱动架体152以第一轴线A1为中心顺时针转动。若投影装置100投射出的一投影光束L3的亮度随着架体152沿着第一轴线A1的顺时针转动而渐增,则继续驱动架体152沿第一轴线A1顺时针转动直到投影光束L3的亮度停止增加。若投影装置100投射出的投影光束L3的亮度随着架体152沿着第一轴线A1的顺时针转动而渐减,则驱动架体152沿着第一轴线A1逆时针转动而使投影光束L3的亮度渐增,直到投影光束L3的亮度停止增加。使用者可依此方式以第一轴线A1为中心调整光学元件160的角度,以将投影光束L3的亮度提升至最佳状态。In detail, when the above step S612 is performed, for example, firstly, the frame body 152 is driven to rotate clockwise around the first axis A1. If the brightness of a projected light beam L3 projected by the projection device 100 gradually increases as the frame body 152 rotates clockwise along the first axis A1, then continue to drive the frame body 152 to rotate clockwise along the first axis A1 until the projected light beam L3 The brightness stops increasing. If the brightness of the projection beam L3 projected by the projection device 100 gradually decreases as the frame body 152 rotates clockwise along the first axis A1, the drive frame body 152 rotates counterclockwise along the first axis A1 to make the projection beam L3 The brightness of the projected light beam L3 gradually increases until the brightness of the projected light beam L3 stops increasing. In this manner, the user can adjust the angle of the optical element 160 around the first axis A1 to improve the brightness of the projected light beam L3 to an optimum state.
相似于步骤S612,在进行上述步骤S614时,例如是先驱动架体152以第二轴线A2为中心顺时针转动。若投影装置100投射出的投影光束L3的亮度随着架体152沿着第二轴线A2的顺时针转动而渐增,则继续驱动架体152沿着第二轴线A2顺时针转动直到投影光束L3的亮度停止增加。若投影装置100投射出的投影光束L3的亮度随着架体152沿着第二轴线A2的顺时针转动而渐减,则驱动架体152沿着第二轴线A2逆时针转动而使投影光束L3的亮度渐增,直到投影光束L3的亮度停止增加。使用者可依此方式以第二轴线A2为中心调整光学元件160的角度,以将投影光束L3的亮度提升至最佳状态。Similar to step S612 , when performing the above step S614 , for example, the frame body 152 is firstly driven to rotate clockwise around the second axis A2 . If the brightness of the projected light beam L3 projected by the projection device 100 gradually increases with the clockwise rotation of the frame body 152 along the second axis A2, then continue to drive the frame body 152 to rotate clockwise along the second axis A2 until the projected light beam L3 The brightness stops increasing. If the brightness of the projection beam L3 projected by the projection device 100 gradually decreases as the frame body 152 rotates clockwise along the second axis A2, the drive frame body 152 rotates counterclockwise along the second axis A2 to make the projection beam L3 The brightness of the projected light beam L3 gradually increases until the brightness of the projected light beam L3 stops increasing. In this way, the user can adjust the angle of the optical element 160 around the second axis A2 to improve the brightness of the projected light beam L3 to an optimum state.
在依上述步骤S612及步骤S614驱动架体152沿着第一轴线A1及第二轴线A2相对于光机座110转动而将投影光束L3的亮度提升至最佳状态之后,可藉由锁附件158将架体152设置于光机座110。在藉由锁附件158将架体152设置于光机座110的同时,可沿着第一轴线A1下压第一调整元件154而将架体152紧抵于光机座110,以避免架体152因使用者锁固锁附件158时而产生非预期的转动或位移。After the frame body 152 is driven to rotate relative to the optical base 110 along the first axis A1 and the second axis A2 according to the above steps S612 and S614 to increase the brightness of the projected light beam L3 to the optimum state, the locking member 158 can The frame body 152 is disposed on the optical machine base 110 . While the frame body 152 is set on the optical base 110 by the locking part 158, the first adjusting element 154 can be pressed down along the first axis A1 to press the frame body 152 against the optical base 110, so as to avoid the 152 due to unexpected rotation or displacement when the user locks the locking accessory 158 .
综上所述,在本发明的上述实施例中,使用者可旋转第一调整元件来驱动架体以第一轴线为中心转动,且可旋转第二调整元件来驱动架体以第二轴线为中心转动,藉此将设置于架体的光学元件调整至适当角度,提升投影装置的投影品质。此外,由于架体藉由其连接部可转动地连接于光机座,因此架体受力时仅能够以连接部为转动中心进行转动,而使光学元件的角度调整较为准确。另外,由于连接部及第一调整元件皆位于第一轴线上,因此使用者可快速且准确地旋转第一调整元件来驱动架体沿第一轴线转动,以提升光学元件的角度调整的便利性。To sum up, in the above embodiments of the present invention, the user can rotate the first adjustment element to drive the frame to rotate around the first axis, and can rotate the second adjustment element to drive the frame to rotate around the second axis. The center rotates, thereby adjusting the optical elements arranged on the frame to an appropriate angle, thereby improving the projection quality of the projection device. In addition, since the frame body is rotatably connected to the optical base through its connecting portion, the frame body can only rotate with the connecting portion as the center of rotation when the frame is stressed, so that the angle adjustment of the optical element is more accurate. In addition, since the connecting portion and the first adjustment element are both located on the first axis, the user can quickly and accurately rotate the first adjustment element to drive the frame to rotate along the first axis, so as to improve the convenience of angle adjustment of the optical element .
以上所述,仅为本发明的较佳实施例而已,当不能以此限定本发明实施的范围,即大凡依本发明申请专利范围及发明说明内容所作的简单的等效变化与修饰,皆仍属本发明专利涵盖的范围内。另外,本发明的任一实施例或申请专利范围不须达成本发明所揭露的全部目的或优点或特点。The above is only a preferred embodiment of the present invention, and should not limit the scope of the present invention with this, that is, all simple equivalent changes and modifications made according to the patent scope of the present invention and the description of the invention are still the same. It belongs to the scope covered by the patent of the present invention. In addition, any embodiment or patent scope of the present invention does not necessarily achieve all the objects or advantages or features disclosed in the present invention.
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| CN109946909B (en) * | 2017-12-21 | 2022-10-04 | 中强光电股份有限公司 | Projection device |
| CN110231751B (en) * | 2018-03-05 | 2023-09-15 | 信泰光学(深圳)有限公司 | Projection device and optical module thereof |
| CN111812927B (en) * | 2019-04-10 | 2021-06-01 | 中强光电股份有限公司 | Optical module and projector |
| CN112015031B (en) | 2019-05-29 | 2021-10-08 | 中强光电股份有限公司 | Optical modules and projectors |
Family Cites Families (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| TWI280450B (en) * | 2004-10-29 | 2007-05-01 | Young Optics Inc | Device for fastening/adjusting position of integration rod of projection optical system |
| CN100498503C (en) * | 2005-02-05 | 2009-06-10 | 明基电通股份有限公司 | Optical projection system |
| CN101533139B (en) * | 2008-03-12 | 2010-09-29 | 佳世达科技股份有限公司 | Lens moving device and projector with same |
| TWM339013U (en) * | 2008-03-31 | 2008-08-21 | Coretronic Corp | Turning mechanism |
| CN102081285B (en) * | 2009-11-27 | 2012-07-04 | 中强光电股份有限公司 | Adjusting device and projector with same |
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2011
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| CN102902043A (en) | 2013-01-30 |
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