WO2019001392A1 - 一种光机设备的底座 - Google Patents

一种光机设备的底座 Download PDF

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Publication number
WO2019001392A1
WO2019001392A1 PCT/CN2018/092672 CN2018092672W WO2019001392A1 WO 2019001392 A1 WO2019001392 A1 WO 2019001392A1 CN 2018092672 W CN2018092672 W CN 2018092672W WO 2019001392 A1 WO2019001392 A1 WO 2019001392A1
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Prior art keywords
base
component
optical path
path structure
optical
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PCT/CN2018/092672
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English (en)
French (fr)
Inventor
史俊
郭宁
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青岛海尔股份有限公司
北京一数科技有限公司
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Publication of WO2019001392A1 publication Critical patent/WO2019001392A1/zh

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    • GPHYSICS
    • G03PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
    • G03BAPPARATUS OR ARRANGEMENTS FOR TAKING PHOTOGRAPHS OR FOR PROJECTING OR VIEWING THEM; APPARATUS OR ARRANGEMENTS EMPLOYING ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ACCESSORIES THEREFOR
    • G03B21/00Projectors or projection-type viewers; Accessories therefor
    • G03B21/54Accessories
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09FDISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
    • G09F27/00Combined visual and audible advertising or displaying, e.g. for public address
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N9/00Details of colour television systems
    • H04N9/12Picture reproducers
    • H04N9/31Projection devices for colour picture display, e.g. using electronic spatial light modulators [ESLM]

Definitions

  • the present invention relates to the field of projection technology, and in particular to a base of a optomechanical device.
  • Projection equipment has become a device that people often use when they work, study, and play.
  • a optomechanical device integrated in a wearable device such as a smart watch can be used as a pico projector, wherein the optomechanical device refers to an optical electronic device capable of generating a specific light through an optical structure to realize a projection display function, for example, on the market.
  • the products such as smart projection watches and wristband projectors can be used as a optomechanical device after the strap is removed.
  • the projection function is limited, and the effect of the conventional fixed pico projector or desktop projector cannot be achieved.
  • an embodiment of the present invention discloses a base of a optomechanical device, and the base includes: a casing and an optical path structure component;
  • One end of the inner side of the outer casing includes a card slot, and the card slot is matched with the size of the optical device, and the card slot is used for fixing the optical device;
  • the optical path structure component is located in the outer casing; and a position of a light input end of the optical path structure component corresponds to a position of a lens of the optical device fixed in the card slot;
  • the light output end is located at one side of the outer casing, and the optical path structure component is configured to project a picture generated by the optical machine device to a preset area.
  • the optical path structure component comprises: a preset number of free-form surface lenses.
  • the base further includes: a power supply component
  • the power supply component is electrically connected to the optical device for powering the optical device; the power supply component includes a power adapter and/or a lithium battery.
  • the card slot includes a connection contact, and the connection contact is electrically connected to the optical device.
  • the base further includes: a touch collection sensor
  • the touch collection sensor is located on a side where the light output end of the optical path structure component is located, and the touch collection sensor is configured to collect a touch input signal in a screen of the preset area.
  • the touch collection sensor comprises: an infrared laser emitter and an infrared camera;
  • the infrared laser emitter is located at a bottom of a side of the light output end of the optical path structure component, and is configured to project an infrared curtain to the preset area;
  • the infrared camera is located at a middle of a side of the light output end of the optical path structure component, and is configured to capture the infrared screen and collect an infrared signal that changes according to a user's touch action as the touch input. signal;
  • the touch actions include: clicking, double clicking, long pressing, sliding, dragging, and/or two-finger zooming.
  • the base further includes: an audio playing component;
  • the audio playback component is used to play a particular audio.
  • the audio playing component is specifically a bluetooth speaker.
  • the optical path structure component further includes: a processor component;
  • the processor component is configured to send the touch input signal to the optical device through an electrical connection of the connection contact;
  • the touch input signal is converted into execution signaling, and the execution signaling is sent to the optical device through an electrical connection of the connection contact.
  • the processor component is further configured to send control signaling input by the user to the optical device through an electrical connection of the connection contact.
  • the base of the optomechanical device provided by the embodiment of the invention includes a casing and an optical path structure component, and one end of the inner side of the casing includes a card slot, and the card slot is matched with the size of the optical device, and the card slot is used.
  • Fixing the optomechanical device; the optical path structure component is located in the outer casing; and the position of the optical input end of the optical path structural component is opposite to the position of the lens of the optomechanical device fixed in the card slot
  • the light output end of the optical path structure component is located at one side of the outer casing, and the optical path structure component is configured to project a picture generated by the optical machine device to a preset area.
  • the projection effect is not good due to its limited volume and limited projection capability of the lens used for projection.
  • the optical device and the base are used together to fix the optical device in the card slot of the base, and combined with the optical path structure component in the base, the image generated by the optical device can be projected into a preset area, compared to the separate use.
  • the time projection function is enhanced to achieve the effect of a conventional pico projector or desktop projector.
  • FIG. 1 is a schematic structural diagram of a base of a optomechanical device according to an embodiment of the present invention
  • FIG. 2 is another schematic structural diagram of a base of a optomechanical device according to an embodiment of the present invention.
  • FIG. 3 is a schematic structural diagram of still another base of a optomechanical device according to an embodiment of the present invention.
  • FIG. 4 is a schematic structural diagram of a fourth structure of a base of a optomechanical device according to an embodiment of the present invention.
  • FIG. 5 is a schematic structural diagram of a fifth structure of a base of a optomechanical device according to an embodiment of the present invention.
  • the embodiment of the invention discloses a base of a optomechanical device, comprising: a casing and an optical path structure component.
  • One end of the inner side of the outer casing includes a card slot, the card slot is matched with the size of the optical device, the card slot is used for fixing the optical device, the optical path structural component is located inside the outer casing, and the optical input end of the optical path structural component is fixed in the card slot.
  • the position of the lens of the optomechanical device corresponds; the light output end of the optical path structure component is located at one side of the outer casing, and the optical path structure component is used for projecting the image generated by the optomechanical device to the preset area.
  • FIG. 1 is a schematic structural diagram of a base of a optomechanical device according to an embodiment of the present invention.
  • the base includes a housing 101 and an optical path structure assembly 102.
  • One end of the inner side of the outer casing 101 includes a card slot 103 that matches the size of the optomechanical device for securing the optomechanical device.
  • the card slot 103 can be disposed at the upper end of the outer casing 101.
  • the structure and shape of the card slot 103 can be designed in advance according to the size and shape of the optical device, so that the card slot 103 can be matched with the optical device and can fix the light.
  • Machine equipment is OK.
  • the optomechanical device refers to an optical electronic device capable of generating a specific light through an optical structure, thereby realizing a projection display function, such as a smart projection watch, a wristband projector, and the like appearing on the market.
  • the existing smart projection watch can be used as a light machine device after the watch strap is removed.
  • the optical device obtained after the strap is removed is inserted into the card slot 103.
  • the size of the card slot 103 is designed to The size of the optomechanical device is matched so that the card slot 103 can just jam the optomechanical device, thereby enabling the optomechanical device to be secured.
  • the optical path structure assembly 102 is located within the housing 101, and the position of the light input end of the optical path structure assembly 102 corresponds to the position of the lens of the optomechanical device fixed in the card slot 103.
  • the light output end of the optical path structure component 102 is located at one side of the outer casing 101, and the optical path structure component 102 is used to project a picture projected by the optomechanical device to a preset area.
  • the light input end corresponds to the position of the lens, and the light input end is located at a position where the lens is facing, and the light input end can receive the light projected by the lens.
  • the light is adjusted by the refraction, reflection, etc. of the optical path structure component 102, and finally the light is projected by the light output end to the preset area to form a complete projection picture.
  • the optical path structure component 102 refers to an optical structural component that projects light projected by the lens along a preset path to a predetermined area. In practical applications, it can be composed of optical devices such as a convex lens, a concave lens, and a plane mirror.
  • the optical path structure assembly 102 preferably includes one or more freeform lens lenses for the design.
  • the refractive index of each point on the freeform lens is not uniform. Therefore, the refraction through the free-form lens can correct the distortion and distortion of the picture.
  • the free-form surface lens is an optical device that has been existing in the prior art, and the embodiments of the present invention are not described herein.
  • a free-form surface lens or a set of free-form surface lenses may be used, and the specific number may be set according to the application scene, specifically, the projection of the image projected by the optical device to the preset area shall prevail.
  • optical path structure component 102 is merely an example and does not constitute a limitation of the present invention. It is within the scope of the present invention to have an optical path structure component 102 that conforms to the optical principle and that satisfies the function of projecting a projected image of the optomechanical device to a preset area.
  • the projection effect is not good due to its limited volume and limited projection capability of the lens used for projection.
  • the optical device and the base are used together, and the optical device is fixed in the card slot 103 of the base, and the optical path structure component 102 in the base is combined to project the image generated by the optical device into a preset area, compared to The projection function is enhanced when used alone, which can achieve the effect of a traditional pico projector or desktop projector.
  • FIG. 2 is another schematic structural diagram of a base of a optomechanical device according to an embodiment of the present invention. Based on the embodiment shown in FIG. 1, the preferred embodiment further includes:
  • the power supply component 104 is electrically connected to the optical device for powering the optical device; the power supply component 104 includes a power adapter and/or a lithium battery. Due to the limited size of the optomechanical equipment, it is impossible to carry a large-capacity battery, so the battery life is weak, and it cannot meet the needs of the use of a pico projector or a desktop projector. An additional power supply component 104 is provided on the base to solve the problem of insufficient battery life.
  • the card slot 103 includes a connection contact that is electrically connected to the optomechanical device.
  • the connection contact is electrically connected to the optomechanical device.
  • the base can perform related data interaction and signaling interaction with the optical device.
  • FIG. 3 is a schematic structural diagram of a base of a optomechanical device according to an embodiment of the present invention.
  • the pedestal of the optomechanical device further includes: a touch collection sensor 105. .
  • the touch collection sensor 105 is located at a side where the light output end of the optical path structure component 102 is located, and the touch collection sensor 105 is configured to collect a touch input signal in a preset area.
  • the touch collection sensor 105 includes an infrared laser emitter and an infrared camera.
  • the infrared laser emitter is located at the bottom of the side of the light output end of the optical path structure assembly 102 for projecting an infrared curtain to the predetermined area.
  • the infrared camera is located in the middle of the side of the light output end of the optical path structure assembly 102 for photographing the infrared screen.
  • the infrared camera can receive an infrared signal that changes according to the user's touch action as a touch input signal.
  • the information carried in the touch input signal includes the coordinates of the blocked position, the duration of the occlusion, and the number of occlusions. Afterwards, the specific content and meaning of the user's touch action can be analyzed through the touch input signal, thereby implementing the virtual touch function.
  • the touch action may include: clicking, double clicking, long pressing, sliding, dragging, and/or two-finger zooming.
  • the touch input signal can be sent to the optomechanical device through the connection contact.
  • the optical path structure component 102 also includes a processor component.
  • the processor component can directly send the touch input signal to the optical device through the electrical connection of the connection contact, so that the optical device recognizes and performs subsequent execution of the touch input signal.
  • the processor component can process the touch input signal by itself, convert the touch input signal into execution signaling, and send the execution signaling to the optical device through the electrical connection of the connection contact; so that the optical device does not need to be Processing directly performs execution signaling.
  • control signaling input by the user in other forms for the base may also be sent by the processor components to the electrical connections through the connection contacts.
  • Light machine equipment may also be sent by the processor components to the electrical connections through the connection contacts.
  • the embodiment is based on the embodiment shown in FIG. 2, so that the effect of the embodiment shown in FIG. 2 can be achieved, that is, the projection function is enhanced, the effect of the pico projector or the desktop projector can be achieved, and the power supply is more durable. The usage time is increased and so on.
  • the touch collection sensor 105 is further added to the base, and the optical device can be used for not only projection, but also direct touch operation on the projected image to realize the interactive function of the virtual touch and improve the user experience.
  • the base of the optomechanical device further includes: an audio playing component; and the audio playing component is configured to play a specific audio.
  • FIG. 4 is a fourth structural diagram of a base of a optomechanical device according to an embodiment of the present invention.
  • the base of the optomechanical device further includes: audio. Play component 106.
  • the audio playback component 106 is coupled to the power supply component 104 and is in wireless communication with the optical device, the audio playback component 106 for playing specific audio, such as music, video sounds, or application prompts, etc. .
  • the audio playback component 106 can include, but is not limited to, a speaker, such as a Bluetooth speaker or the like.
  • Bluetooth speaker refers to the built-in Bluetooth chip, the audio device that replaces the traditional wire connection with Bluetooth connection, and the signal transmission speed is faster.
  • the audio playback component 106 is connected to the power supply component 104, so that the power supply component 104 can supply power to the bluetooth speaker.
  • the connection mode shown in FIG. 4 is only an example of the connection. It should not constitute a limitation on the way the Bluetooth speaker is powered.
  • adding the audio playing component 106 to the base and using the optical device can not only project the picture but also increase the audio playing function to enhance the user experience.

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  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
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  • Transforming Electric Information Into Light Information (AREA)
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Abstract

一种光机设备的底座,包括:外壳(101)和光路结构组件(102);外壳(101)内侧的一端设有卡槽(103),卡槽(103)与光机设备的尺寸匹配;光路结构组件(102)位于外壳(101)内,光路结构组件(102)的光输入端位置与固定在卡槽(103)中的光机设备的镜头位置相对应;光路结构组件(102)的光输出端位于外壳(101)的一侧,光路结构组件(102)用于将光机设备产生的画面投射到预设区域。

Description

一种光机设备的底座
本申请要求了申请日为2017年6月27日,申请号为201710502716.5,发明名称为“一种光机设备的底座”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本发明涉及投影技术领域,特别是涉及一种光机设备的底座。
背景技术
随着投影技术的发展,投影设备的应用越来越广泛。投影设备已经成了人们在工作、学习以及娱乐时经常使用的设备。
目前,现有的微型投影仪、桌面投影仪等设备,是传统的固定设备,不便于携带。集成在智能手表等可穿戴设备中的光机设备,可作为微型投影仪使用,其中,光机设备是指能够通过光学结构产生特定的光线、进而实现投影显示功能的光学电子设备,例如市场上出现的智能投影手表、腕带投影仪等产品,拆除掉表带后即可作为一台光机设备。但是,由于智能投影手表中集成的光机设备体积受限,导致投影功能受限,无法达到传统的固定微型投影仪或桌面投影仪的效果。
发明内容
本发明实施例的目的在于提供一种光机设备的底座,以将光机设备改造为微型投影仪或桌面投影仪。具体技术方案如下:
为达到上述目的,本发明实施例公开了一种光机设备的底座,所述底座包括:外壳和光路结构组件;
所述外壳内侧的一端包括卡槽,所述卡槽与所述光机设备的尺寸匹配, 所述卡槽用于固定所述光机设备;
所述光路结构组件位于所述外壳内;且所述光路结构组件的光输入端的位置,与固定在所述卡槽中的所述光机设备的镜头的位置相对应;所述光路结构组件的光输出端位于所述外壳的一侧,所述光路结构组件用于将所述光机设备产生的画面投射到预设区域。
可选的,所述光路结构组件,包括:预设数个自由曲面透镜。
可选的,所述底座还包括:供电组件;
所述供电组件与所述光机设备电连接,用于对所述光机设备进行供电;所述供电组件包括,电源适配器和/或锂电池。
可选的,所述卡槽中包括连接触点,所述连接触点与所述光机设备电连接。
可选的,所述底座还包括:触控采集传感器;
所述触控采集传感器位于所述光路结构组件的光输出端所在的一侧,所述触控采集传感器用于采集所述预设区域的画面中的触控输入信号。
可选的,所述触控采集传感器包括:红外激光发射器和红外摄像头;
所述红外激光发射器位于所述光路结构组件的光输出端所在一侧的底部,用于向所述预设区域投射红外线幕布;
所述红外摄像头位于所述光路结构组件的光输出端所在一侧的中部,用于对所述红外线幕布进行拍摄,采集基于用户的触控动作而变化的红外线信号,以作为所述触控输入信号;
所述触控动作包括:点击,双击,长按,滑动,拖拽和/或双指缩放。
可选的,所述底座还包括:音频播放组件;
所述音频播放组件用于播放特定的音频。
可选的,所述音频播放组件具体为蓝牙音箱。
可选的,所述光路结构组件还包括:处理器组件;
所述处理器组件用于,将所述触控输入信号通过所述连接触点的电连接 发送至所述光机设备;
或者,将所述触控输入信号转换为执行信令,并将所述执行信令通过所述连接触点的电连接发送至所述光机设备。
可选的,所述处理器组件还用于,将用户输入的控制信令通过所述连接触点的电连接发送至所述光机设备。
本发明实施例提供的一种光机设备的底座,包括外壳和光路结构组件,所述外壳内侧的一端包括卡槽,所述卡槽与所述光机设备的尺寸匹配,所述卡槽用于固定所述光机设备;所述光路结构组件位于所述外壳内;且所述光路结构组件的光输入端的位置,与固定在所述卡槽中的所述光机设备的镜头的位置相对应,所述光路结构组件的光输出端位于所述外壳的一侧,所述光路结构组件用于将所述光机设备产生的画面投射到预设区域。
可见,单独使用光机设备时,由于自身体积有限,且投影所使用的镜头的投影能力有限,投影效果不佳。将光机设备和底座配合使用,将光机设备固定在底座的卡槽中,结合底座中的光路结构组件,能够将光机设备产生的画面投射到预先设置的区域内,相比于单独使用时投影功能得以增强,能够达到传统的微型投影仪或桌面投影仪的效果。
当然,实施本发明的任一产品或方法必不一定需要同时达到以上所述的所有优点。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为本发明实施例提供的光机设备的底座的一种结构示意图;
图2为本发明实施例提供的光机设备的底座的另一种结构示意图;
图3为本发明实施例提供的光机设备的底座的再一种结构示意图;
图4为本发明实施例提供的光机设备的底座的第四种结构示意图;
图5为本发明实施例提供的光机设备的底座的第五种结构示意图。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
本发明实施例公开了一种光机设备的底座,包括:外壳和光路结构组件。外壳内侧的一端包括卡槽,卡槽与光机设备的尺寸匹配,卡槽用于固定光机设备;光路结构组件位于外壳内;且光路结构组件的光输入端的位置,与固定在卡槽中的光机设备的镜头的位置相对应;光路结构组件的光输出端位于外壳的一侧,光路结构组件用于将光机设备产生的画面投射到预设区域。
下面通过具体实施例,对本发明进行详细说明。
图1为本发明实施例提供的光机设备的底座的一种结构示意图,该底座包括:外壳101和光路结构组件102。
外壳101内侧的一端包括卡槽103,该卡槽103与光机设备的尺寸匹配,用于固定该光机设备。
具体的,卡槽103可以设置在外壳101的上端,卡槽103的结构和形状可以预先根据光机设备的尺寸和形状进行设计,使得卡槽103能够与光机设备相匹配、且能够固定光机设备即可。其中,光机设备是指能够通过光学结构产生特定的光线、进而实现投影显示功能的光学电子设备,例如市场上出现的智能投影手表、腕带投影仪等产品。现有的智能投影手表,在拆掉该手表的表带后,即可作为一台光机设备来使用。将拆掉表带后得到的该光机设备,塞入卡槽103中,由于卡槽103是预先根据具体的光机设备的形状尺寸 来设计的,所设计的卡槽103的尺寸大小就是为了与该光机设备的尺寸匹配,因此该卡槽103正好可以卡住该光机设备,从而能够将该光机设备固定住。
光路结构组件102位于外壳101内,光路结构组件102的光输入端的位置,与固定在卡槽103中的光机设备的镜头的位置相对应。该光路结构组件102的光输出端位于外壳101的一侧,光路结构组件102用于将光机设备投射的画面投影到预设区域。其中,该光输入端与该镜头的位置相对应,是指光输入端位于该镜头正朝向的位置处,该光输入端能够接收到该镜头投射出的光线。光线经过光路结构组件102的折射、反射等调整,最终由光输出端将这些光线投射到预设区域,形成完整的投影画面。
该光路结构组件102,即是指使该镜头投射的光线沿着预设的路径投射向预设区域的光学结构组件。在实际应用中,可以由凸透镜、凹透镜、平面镜等光学器件组合而成。
不过投影画面各个点的光线经过复杂的反射、折射之后,光线的光路长度和角度各不相同,会导致形成的投影画面出现畸变和失真。所以在本实施例中,光路结构组件102优选的可包括一个或者多个针对设计的自由曲面透镜。自由曲面透镜上各点的折射率不均匀。所以经过自由曲面透镜的折射能够纠正画面的畸变和失真。自由曲面透镜属于现有技术中已经存在的光学器件,本发明实施例在此不对其进行赘述。
在实际应用中,可以采用一个自由曲面透镜,或一组自由曲面透镜,具体数量可以根据应用场景自行设置,具体以可以实现将光机设备投射的画面投影到预设区域为准。
需要说明的是,上述提及的光路结构组件102仅仅作为示例,并不构成对本发明的限定。符合光学原理、满足将光机设备投射的画面投影到预设区域等功能的光路结构组件102,都落在本发明的保护范围之内。
可见,单独使用光机设备时,由于自身体积有限,且投影所使用的镜头的投影能力有限,投影效果不佳。将光机设备和底座配合使用,将光机设备 固定在底座的卡槽103中,结合底座中的光路结构组件102,能够将光机设备产生的画面投射到预先设置的区域内,相比于单独使用时投影功能得以增强,能够达到传统的微型投影仪或桌面投影仪的效果。
图2为本发明实施例提供的光机设备的底座的另一种结构示意图。在图1所示实施例的基础上,本实施例中优选的还包括:
供电组件104;供电组件104与光机设备电连接,用于对光机设备进行供电;供电组件104包括,电源适配器和/或锂电池。由于光机设备的体积有限,无法搭载大容量的电池,所以电池续航能力较弱,无法满足微型投影仪或桌面投影仪场景下的使用需求。底座上设置额外的供电组件104可以解决电池续航不足的问题。
卡槽103中包括连接触点,连接触点与光机设备电连接。当光机设备在卡槽103中固定后,连接触点与光机设备电连接。通过连接触点的电连接,底座可以与光机设备进行相关的数据交互和信令交互。
图3为本发明实施例提供的光机设备的底座的再一种结构示意图,与图2所示实施例相比,本实施例中,上述光机设备的底座还包括:触控采集传感器105。
具体的,触控采集传感器105位于光路结构组件102的光输出端所在的一侧,触控采集传感器105用于采集预设区域的画面中的触控输入信号。
本实施例中,触控采集传感器105包括:红外激光发射器和红外摄像头。红外激光发射器位于光路结构组件102的光输出端所在一侧的底部,用于向预设区域投射红外线幕布。红外摄像头位于光路结构组件102的光输出端所在一侧的中部,用于对红外线幕布进行拍摄。当用户在红外线幕布中做出触控动作时,会相应的对红外线幕布上的红外线产生遮挡。则红外摄像头可以接收到基于用户的触控动作而变化的红外线信号,以作为触控输入信号。触控输入信号中携带的信息包括被遮挡位置的坐标、遮挡时长和遮挡次数等。后续即可通过触控输入信号解析出用户触控动作的具体内容及含义,进而实 现虚拟触控功能。本实施例中,触控动作可包括:点击,双击,长按,滑动,拖拽和/或双指缩放。触控输入信号可通过的连接触点发送至光机设备。
光路结构组件102还包括:处理器组件。处理器组件可直接将触控输入信号通过连接触点的电连接发送至光机设备,以使光机设备对触控输入信号进行识别和后续执行。或者,处理器组件可自行对触控输入信号进行处理,将触控输入信号转换为执行信令,并将执行信令通过连接触点的电连接发送至光机设备;以使光机设备无需处理直接执行执行信令。
另外,用户针对底座以其他形式输入的控制信令——例如通过底座上设置的电源开关,物理按键等输入组件输入的控制信令——也可由处理器组件通过连接触点的电连接发送至光机设备。
可见,本实施例建立在图2所示实施例的基础上,因此可达到图2所示实施例的效果,即投影功能增强、能够达到微型投影仪或桌面投影仪的效果、供电更持久、使用时间得以增加等等。并且,在底座中还增加触控采集传感器105,配合光机设备使用,不仅可以进行投影,还可以在投影的画面上直接进行触控操作,实现虚拟触控的交互功能,提升用户体验。
基于图1、图2或图3所示实施例,上述光机设备的底座还包括:音频播放组件;音频播放组件用于播放特定的音频。
示例性的,图4为本发明实施例提供的光机设备的底座的第四种结构示意图,与图3所示实施例相比,本实施例中,上述光机设备的底座还包括:音频播放组件106。
如图4所示,音频播放组件106与供电组件104连接、且与光机设备通过无线通信连接,该音频播放组件106用于播放特定的音频,例如音乐、视频声音、或应用提示音等等。
其中,音频播放组件106可以包括但不限于:音箱,如蓝牙音箱等等。蓝牙音箱是指内置蓝牙芯片、以蓝牙连接取代传统线材连接的音响设备,信号传输速度较快。
音频播放组件106通过与供电组件104连接,这样该供电组件104即可为蓝牙音箱供电,当然通过其他方式为蓝牙音箱供电也是合理的,图4所示出的连接方式仅仅作为其中的一种示例,并不应构成对蓝牙音箱供电方式的限定。
需要强调的是,其他任何可以实现播放特定音频的连接方式,均属于本发明的保护范围,在此不一一赘述。
可见,在底座中增加音频播放组件106,配合光机设备使用,不仅可以投影画面,还增加音频播放功能,提升用户体验。
需要说明的是,在本文中,诸如第一和第二等之类的关系术语仅仅用来将一个实体或者操作与另一个实体或操作区分开来,而不一定要求或者暗示这些实体或操作之间存在任何这种实际的关系或者顺序。而且,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者设备不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者设备所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括所述要素的过程、方法、物品或者设备中还存在另外的相同要素。
本说明书中的各个实施例均采用相关的方式描述,各个实施例之间相同相似的部分互相参见即可,每个实施例重点说明的都是与其他实施例的不同之处。尤其,对于系统实施例而言,由于其基本相似于方法实施例,所以描述的比较简单,相关之处参见方法实施例的部分说明即可。
以上所述仅为本发明的较佳实施例而已,并非用于限定本发明的保护范围。凡在本发明的精神和原则之内所作的任何修改、等同替换、改进等,均包含在本发明的保护范围内。

Claims (10)

  1. 一种光机设备的底座,其特征在于,所述底座包括:外壳和光路结构组件;
    所述外壳内侧的一端包括卡槽,所述卡槽与所述光机设备的尺寸匹配,所述卡槽用于固定所述光机设备;
    所述光路结构组件位于所述外壳内;且所述光路结构组件的光输入端的位置,与固定在所述卡槽中的所述光机设备的镜头的位置相对应;所述光路结构组件的光输出端位于所述外壳的一侧,所述光路结构组件用于将所述光机设备产生的画面投射到预设区域。
  2. 根据权利要求1所述的光机设备的底座,其特征在于,所述光路结构组件,包括:预设数个自由曲面透镜。
  3. 根据权利要求1所述的光机设备的底座,其特征在于,所述底座还包括:供电组件;
    所述供电组件与所述光机设备电连接,用于对所述光机设备进行供电;所述供电组件包括,电源适配器和/或锂电池。
  4. 根据权利要求3所述的光机设备的底座,其特征在于,所述卡槽中包括连接触点,所述连接触点与所述光机设备电连接。
  5. 根据权利要求4所述的光机设备的底座,其特征在于,所述底座还包括:触控采集传感器;
    所述触控采集传感器位于所述光路结构组件的光输出端所在的一侧,所述触控采集传感器用于采集所述预设区域的画面中的触控输入信号。
  6. 根据权利要求5所述的光机设备的底座,其特征在于,所述触控采集传感器包括:红外激光发射器和红外摄像头;
    所述红外激光发射器位于所述光路结构组件的光输出端所在一侧的底部,用于向所述预设区域投射红外线幕布;
    所述红外摄像头位于所述光路结构组件的光输出端所在一侧的中部,用于对所述红外线幕布进行拍摄,采集基于用户的触控动作而变化的红外线信号,以作为所述触控输入信号;
    所述触控动作包括:点击,双击,长按,滑动,拖拽和/或双指缩放。
  7. 根据权利要求1所述的光机设备的底座,其特征在于,所述底座还包括:音频播放组件;
    所述音频播放组件用于播放特定的音频。
  8. 根据权利要求7所述的光机设备的底座,其特征在于,所述音频播放组件具体为蓝牙音箱。
  9. 根据权利要求5所述的光机设备的底座,其特征在于,所述光路结构组件还包括:处理器组件;
    所述处理器组件用于,将所述触控输入信号通过所述连接触点的电连接发送至所述光机设备;
    或者,将所述触控输入信号转换为执行信令,并将所述执行信令通过所述连接触点的电连接发送至所述光机设备。
  10. 根据权利要求9所述的光机设备的底座,其特征在于,所述处理器组件还用于,将用户输入的控制信令通过所述连接触点的电连接发送至所述光机设备。
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