CN204465731U - An infrared sight with WIFI function - Google Patents
An infrared sight with WIFI function Download PDFInfo
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- CN204465731U CN204465731U CN201520036631.9U CN201520036631U CN204465731U CN 204465731 U CN204465731 U CN 204465731U CN 201520036631 U CN201520036631 U CN 201520036631U CN 204465731 U CN204465731 U CN 204465731U
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Abstract
Description
技术领域technical field
本实用新型涉及一种新型带WIFI功能的红外瞄准镜。The utility model relates to a novel infrared sight with WIFI function.
背景技术Background technique
红外瞄准镜目前广泛应用于部队、民用各种型号的枪械,其特点是能够在不受外界光线限制的情况下,对目标的图像捕获,从而辅助射击人员对目标的瞄准、射击。Infrared sights are currently widely used in military and civilian firearms of various types. Its characteristic is that it can capture images of targets without being limited by external light, thereby assisting shooters in aiming and shooting at targets.
传统红外瞄准镜只能提供实时的目标图像给射击人员,瞄准效果也只能由射击人员单独评估,其它人员无法对其瞄准效果进行确认及指导。此外,传统红外瞄准镜不具备将目标命中情况的图片和视频存储的功能,不能满足后期查证的需要。Traditional infrared sights can only provide real-time target images to the shooter, and the aiming effect can only be evaluated by the shooter alone, and other personnel cannot confirm and guide the aiming effect. In addition, the traditional infrared sight does not have the function of storing pictures and videos of the target hitting situation, which cannot meet the needs of later verification.
发明内容Contents of the invention
本实用新型的目的为了克服传统红外瞄准镜的上述不足,提供一种带WIFI功能的红外瞄准镜,使红外瞄准镜通过移动终端具备了红外图像的实时传输及存储功能。这样射击以外人员可以通过移动终端查看瞄准效果,同时移动终端具备对图像的实时录像功能,便于后期查证。The purpose of the utility model is to overcome the above-mentioned shortcomings of the traditional infrared sight, and provide an infrared sight with WIFI function, so that the infrared sight has the functions of real-time transmission and storage of infrared images through a mobile terminal. In this way, people other than shooting can check the aiming effect through the mobile terminal, and the mobile terminal has a real-time video recording function for the image, which is convenient for later verification.
为了达到上述目的,本实用新型采用如下技术方案:In order to achieve the above object, the utility model adopts the following technical solutions:
一种带WIFI功能的红外瞄准镜,包括红外瞄准镜和WIFI&天线组件,所述的红外瞄准镜由红外镜头组件、机芯组件、按键组件、电池仓组件、目镜组件组成,红外镜头组件收集目标发射出的红外光信号,并将光信号聚焦到探测器的成像平面;机芯组件将红外镜头组件传输过来的光信号转换成电信号,并经过处理后输出实时的红外数字图像信号视频;目镜组件将实时的红外数字图像视频在目镜显示器上显示,按键组件对红外图像的参数进行调节和控制电源的开关;电池仓组件为红外机芯组件、WIFI&天线组件和目镜组件提供电源;其特征在于:所述的WIFI&天线组件由WIFI模块和发射天线组成,WIFI模块加装在机芯组件的电路板支架上,并与红外机芯组件的ARM处理模块相连;发射天线安装在红外瞄准镜的壳体上,并与WIFI模块相连;WIFI&天线组件将处理好的数字红外图像信号进行无线传输,以供移动终端接收。An infrared sight with WIFI function, comprising an infrared sight and a WIFI & antenna assembly, the infrared sight is composed of an infrared lens assembly, a movement assembly, a button assembly, a battery compartment assembly, and an eyepiece assembly, and the infrared lens assembly collects targets The infrared light signal is emitted and focused on the imaging plane of the detector; the movement component converts the light signal transmitted by the infrared lens component into an electrical signal, and outputs a real-time infrared digital image signal video after processing; the eyepiece The component displays the real-time infrared digital image video on the eyepiece display, and the button component adjusts the parameters of the infrared image and controls the power switch; the battery compartment component provides power for the infrared core component, WIFI & antenna component and the eyepiece component; it is characterized in that : the WIFI&antenna assembly is composed of a WIFI module and a transmitting antenna, the WIFI module is installed on the circuit board bracket of the core assembly, and is connected with the ARM processing module of the infrared core assembly; the transmitting antenna is installed on the shell of the infrared sight On the body, and connected with the WIFI module; WIFI&antenna component wirelessly transmits the processed digital infrared image signal for reception by the mobile terminal.
本实用新型还包括枪基座组件,枪基座组件安装在红外瞄准镜壳体底部,枪基座组件提供红外瞄准镜与枪械的标准接口。The utility model also includes a gun base assembly, which is installed at the bottom of the infrared sight shell, and the gun base assembly provides a standard interface between the infrared sight and the firearm.
本实用新型在传统红外瞄准镜的基础上设置WIFI模块,利用红外瞄准镜自带的电池进行供电,同时在红外瞄准镜设备顶端适当位置设置发射天线进行信号传输,最后通过移动终端进行视频文件的读取、存储。The utility model is equipped with a WIFI module on the basis of the traditional infrared sight, uses the battery of the infrared sight to supply power, and at the same time sets a transmitting antenna at a proper position on the top of the infrared sight for signal transmission, and finally performs video files through the mobile terminal read, store.
本实用新型使红外瞄准镜通过移动终端具备了红外图像的实时传输及存储功能。这样射击以外人员可以通过移动终端查看瞄准效果,同时移动终端具备对图像的实时录像功能,便于后期查证。The utility model enables the infrared sight to have the functions of real-time transmission and storage of infrared images through the mobile terminal. In this way, people other than shooting can check the aiming effect through the mobile terminal, and the mobile terminal has a real-time video recording function for the image, which is convenient for later verification.
附图说明Description of drawings
图1为本实用新型使用的效果展示图。Fig. 1 is the effect demonstration figure that the utility model uses.
图2为本实用新型的主体结构示意图。Fig. 2 is a schematic diagram of the main structure of the utility model.
图3为图1的A-A剖视图。FIG. 3 is a cross-sectional view along line AA of FIG. 1 .
图4为本实用新型的工作流程示意图。Fig. 4 is a schematic diagram of the workflow of the utility model.
具体实施方式Detailed ways
结合附图对本实用新型进行详细的说明:The utility model is described in detail in conjunction with the accompanying drawings:
如图2所示一种带WIFI功能的红外瞄准镜,包括红外瞄准镜、WIFI&天线组件300、枪基座组件700,所述的红外瞄准镜由红外镜头组件100、机芯组件200、按键组件400、电池仓组件500、目镜组件600组成,红外镜头组件100收集目标发射出的红外光信号,并将光信号聚焦到探测器的成像平面;机芯组件200将红外镜头组件100传输过来的光信号转换成电信号,并经过处理后输出实时的红外数字图像信号视频;目镜组件600将实时的红外数字图像视频在目镜显示器上显示,按键组件400对红外图像的参数进行调节和控制电源的开关;电池仓组件500为红外机芯组件200、WIFI&天线组件300和目镜组件600提供电源;其特征在于:所述的WIFI&天线组件300由WIFI模块11和发射天线组成,WIFI模块11加装在机芯组件200的电路板支架上,并与红外机芯组件200的ARM处理模块10相连;发射天线安装在红外瞄准镜的壳体上,并与WIFI模块11相连;WIFI&天线组件300将处理好的数字红外图像信号进行无线传输,以供移动终端接收;枪基座组件700安装在红外瞄准镜壳体底部,枪基座组件700提供红外瞄准镜与枪械的标准接口。A kind of infrared sight with WIFI function as shown in Figure 2, comprises infrared sight, WIFI & antenna assembly 300, gun base assembly 700, described infrared sight is made of infrared lens assembly 100, movement assembly 200, button assembly 400, a battery compartment assembly 500, and an eyepiece assembly 600. The infrared lens assembly 100 collects the infrared light signal emitted by the target, and focuses the light signal onto the imaging plane of the detector; the movement assembly 200 transmits the light transmitted by the infrared lens assembly 100 The signal is converted into an electrical signal, and processed to output a real-time infrared digital image signal video; the eyepiece assembly 600 displays the real-time infrared digital image video on the eyepiece display, and the button assembly 400 adjusts the parameters of the infrared image and controls the switch of the power supply The battery compartment assembly 500 provides power for the infrared core assembly 200, the WIFI & antenna assembly 300 and the eyepiece assembly 600; it is characterized in that: the WIFI & antenna assembly 300 is composed of a WIFI module 11 and a transmitting antenna, and the WIFI module 11 is installed on the machine Core assembly 200 on the circuit board support, and is connected with the ARM processing module 10 of infrared core assembly 200; Transmitting antenna is installed on the housing of infrared sight, and is connected with WIFI module 11; WIFI & antenna assembly 300 will be processed The digital infrared image signal is transmitted wirelessly for reception by the mobile terminal; the gun base assembly 700 is installed at the bottom of the infrared sight shell, and the gun base assembly 700 provides a standard interface between the infrared sight and the firearm.
如图1所示,为红外瞄准镜加装WIFI功能后的效果展示,在传统红外瞄准镜的基础上设置WIFI模块,利用红外瞄准镜自带的电池进行供电,同时在红外瞄准镜设备顶端适当位置设置发射天线进行信号传输,最后通过移动终端进行视频文件的读取、存储。As shown in Figure 1, the effect of adding WIFI function to the infrared sight is displayed. The WIFI module is set on the basis of the traditional infrared sight, and the battery of the infrared sight is used for power supply. The transmitting antenna is set at the position for signal transmission, and finally the video file is read and stored through the mobile terminal.
本实用新型的系统内部结构如图3所示。在该系统中,所述红外镜头组件100由第一透镜1、第二透镜2、第三透镜3、快门4、红外探测器5、散热板6、接口电路板7、探测器支架15、镜筒16组成,目标场景的红外辐射经第一透镜1、第二透镜2、第三透镜3、镜筒16聚焦到红外探测器5成像面上,红外探测器5将光信号转换成电信号,经接口电路板7得到红外模拟信号,机芯组件200由电路板支架8、红外机芯9、ARM处理模块10组成,目镜组件600由微型液晶显示屏12、光学目镜13组成,红外机芯9对红外模拟信号进行处理后,输出实时的红外数字图像信号视频,实时的红外数字图像信号视频在微型液晶显示屏12上进行显示,通过光学目镜13进行观察。The internal structure of the system of the present utility model is shown in Fig. 3 . In this system, the infrared lens assembly 100 is composed of a first lens 1, a second lens 2, a third lens 3, a shutter 4, an infrared detector 5, a cooling plate 6, an interface circuit board 7, a detector bracket 15, a mirror The infrared radiation of the target scene is focused on the imaging surface of the infrared detector 5 through the first lens 1, the second lens 2, the third lens 3, and the lens barrel 16, and the infrared detector 5 converts the optical signal into an electrical signal. The infrared analog signal is obtained through the interface circuit board 7, the movement assembly 200 is composed of a circuit board support 8, an infrared movement 9, and an ARM processing module 10, the eyepiece assembly 600 is composed of a micro liquid crystal display 12, an optical eyepiece 13, and the infrared movement 9 After the infrared analog signal is processed, a real-time infrared digital image signal video is output, and the real-time infrared digital image signal video is displayed on the micro liquid crystal display 12 and observed through the optical eyepiece 13 .
红外机芯9产生的红外视频通过并行数据协议传输给ARM处理模块10,然后通过WIFI模块11和发射天线进行实时无线传输,在移动终端上显示,从而实现红外视频的无线实时传输。电池仓组件500内安装电池14。The infrared video generated by the infrared core 9 is transmitted to the ARM processing module 10 through the parallel data protocol, and then wirelessly transmitted in real time through the WIFI module 11 and the transmitting antenna, and displayed on the mobile terminal, thereby realizing wireless real-time transmission of the infrared video. The battery 14 is installed in the battery compartment assembly 500 .
图4显示了本实用新型的工作流程。其中光学系统与红外机芯组件之间通过结构件尺寸保证红外光线聚焦到红外机芯组件的感光面,红外机芯9与ARM处理模块10之间通过并行数据协议进行连接。ARM处理模块10与WIFI模块11通过SDIO进行连接。本系统中的WIFI模块11和发射天线将本地数据通过无线实时数据传输至移动终端,在移动终端通过相应的APP应用工具解码并显示。其中WIFI模块11和发射天线工作在AP模式,其它终端(手机、平板等)通过无线网络连接到本系统,同一时刻可接入多个终端显示设备实时播放本系统采集的红外图像,而且可通过终端APP应用工具与本系统进行通信控制。Fig. 4 has shown the workflow of the utility model. The optical system and the infrared core component ensure that the infrared light is focused on the photosensitive surface of the infrared core component through the size of the structural parts, and the infrared core 9 and the ARM processing module 10 are connected through a parallel data protocol. The ARM processing module 10 is connected with the WIFI module 11 through SDIO. The WIFI module 11 and the transmitting antenna in this system transmit the local data to the mobile terminal through wireless real-time data, and the mobile terminal decodes and displays it through the corresponding APP application tool. Wherein the WIFI module 11 and the transmitting antenna work in AP mode, other terminals (mobile phone, tablet, etc.) The terminal APP application tool communicates with the system for control.
当其他终端通过无线网络与本机连接后,可以通过支持流媒体播放的视频播放器播放本机中的实时视频。在本应用中本机使用RTSP(Real TimeStreaming Protocol)协议向其它连接到本机的终端提供基于无线网络的实时视频播放服务,以实现在其它终端上实时播放红外视频的功能。When other terminals are connected to this machine through the wireless network, the real-time video in this machine can be played through a video player that supports streaming media playback. In this application, this machine uses RTSP (Real TimeStreaming Protocol) protocol to provide real-time video playback service based on wireless network to other terminals connected to this machine, so as to realize the function of real-time playing infrared video on other terminals.
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| Application Number | Priority Date | Filing Date | Title |
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| CN201520036631.9U CN204465731U (en) | 2015-01-19 | 2015-01-19 | An infrared sight with WIFI function |
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| CN201520036631.9U CN204465731U (en) | 2015-01-19 | 2015-01-19 | An infrared sight with WIFI function |
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Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN110139079A (en) * | 2019-06-13 | 2019-08-16 | 深圳市朗高特科技发展有限公司 | A kind of Multifunction night-vision switching gun sight |
| WO2019162926A1 (en) | 2018-02-26 | 2019-08-29 | Jsc Yukon Advanced Optics Worldwide | Digitally-based, thermal imaging device configured in a conventional, optically-based imaging device form factor |
| CN114136152A (en) * | 2021-11-25 | 2022-03-04 | 北京波谱华光科技有限公司 | Sighting telescope with wireless transmission function |
-
2015
- 2015-01-19 CN CN201520036631.9U patent/CN204465731U/en not_active Expired - Lifetime
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2019162926A1 (en) | 2018-02-26 | 2019-08-29 | Jsc Yukon Advanced Optics Worldwide | Digitally-based, thermal imaging device configured in a conventional, optically-based imaging device form factor |
| CN110139079A (en) * | 2019-06-13 | 2019-08-16 | 深圳市朗高特科技发展有限公司 | A kind of Multifunction night-vision switching gun sight |
| CN114136152A (en) * | 2021-11-25 | 2022-03-04 | 北京波谱华光科技有限公司 | Sighting telescope with wireless transmission function |
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