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    • 31. 发明公开
    • Stand for a display device
    • Ständerfüreine Anzeigevorrichtung
    • EP1821025A2
    • 2007-08-22
    • EP06254112.3
    • 2006-08-04
    • LG Electronics Inc.
    • Kim, Mun Hwan
    • F16M11/04
    • F16M11/2071F16M11/105Y10S248/921Y10S248/923
    • There is provided a stand of a display device for allowing more convenient adjustment of the display device to various positions. The stand includes a base unit (500), a supporting unit (110) formed on a rear surface of the display device (100), a first two-link hinge unit, and a second two-link hinge unit. The first two-link hinge unit (200) is provided between the base unit and the supporting unit (110) for allowing revolution of the display device (100) around an imaginary axis perpendicular to the display device (100). The second two-link hinge unit (300) is provided between the base unit (500) and the supporting unit for allowing revolution of the display device (100) around an imaginary axis defined in a horizontal direction of display device (100).
    • 提供了一种用于允许更方便地将显示装置调整到各种位置的显示装置的支架。 支架包括基座单元(500),形成在显示装置(100)的后表面上的支撑单元(110),第一双连杆铰链单元和第二双连杆铰链单元。 第一双链节铰链单元(200)设置在基座单元和支撑单元(110)之间,用于允许显示装置(100)围绕垂直于显示装置(100)的假想轴旋转。 第二双连杆铰链单元(300)设置在基部单元(500)和支撑单元之间,用于允许显示装置(100)绕显示装置(100)的水平方向限定的假想轴旋转。
    • 34. 发明公开
    • SYSTEME SUPPORT POUR ECRAN PLAT ET PROCEDE DE MISE EN OEUVRE
    • 平板屏幕支持系统及其实现方法
    • EP3220037A1
    • 2017-09-20
    • EP17159531.7
    • 2017-03-07
    • Erard
    • VERRIERE, EricBONNEMERE, PatrickPERRINET, Jean-François
    • F16M11/20F16M13/02
    • F16M13/02F16M11/2014F16M11/2028F16M11/2071
    • La présente invention concerne un système support (1) pour écran plat (2), de type plasma, LCD, LED, OLED ou similaire. Le système support (1) comprend une platine arrière (10) conçue pour être fixée sur une surface de fixation (3) ; une structure avant (20) conçue pour supporter l'écran plat (2) ; et un bras articulé (30) reliant la platine arrière (10) et la structure avant (20). Le système support (1) est caractérisé en ce qu'il comprend un dispositif de réglage (40) de l'horizontalité du bras articulé (30) et de la structure avant (20), ce dispositif de réglage (40) étant agencé sur la platine arrière (10) et actionnable alors que la platine arrière (10) est fixée à la surface de fixation (3).
    • 本发明涉及用于平面屏幕(2),等离子体型,LCD,LED,OLED或类似物的支撑系统(1)。 支撑系统(1)包括适于固定在固定表面(3)上的后板(10); 适于支撑所述平面屏幕(2)的前部结构(20); 和连接后板(10)和前部结构(20)的铰接臂(30)。 支撑系统(1)的特征在于,其包括用于调节关节臂(30)和前部结构(20)的水平状态的装置(40),该调节装置(40)布置在 后板(10)并且在后板(10)固定到固定表面(3)时可操作。
    • 36. 发明公开
    • CRADLE HEAD SYSTEM
    • WIEGEKOPFSYSTEM
    • EP3151533A1
    • 2017-04-05
    • EP14893604.0
    • 2014-05-25
    • SZ DJI Technology Co., Ltd.
    • ZHU, MingliangZHOU, LiLU, Yueqiang
    • H04N5/232
    • H04N5/2252F16M11/10F16M11/18F16M11/2071F16M13/02F16M2200/041F16M2200/045H04N5/2253H04N5/2254H04N5/232H04N5/23296H04N5/38
    • The present invention discloses a gimbal system for carrying an imaging device. The gimbal system comprises at least one angle adjusting unit, a main controller, a gimbal control unit and a digital video transmission component. The main controller is configured to detect a posture information of the imaging device. The gimbal control unit controls the at least one angle adjusting unit according to the posture information of the imaging device. The digital video transmission component is electrically connected with an imaging device and transmits a digital video signal of the imaging device. The digital video transmission component comprises a video converter, a first differential signal transmission line and an image transmission unit. The video converter receives an HDMI signal from the imaging device, converts and compression encodes the HDMI signal to output a serial differential signal, and transmits the serial differential signal to the image transmission unit over the first differential signal transmission line.
    • 本发明公开了一种用于承载成像装置的万向节系统。 万向节系统包括至少一个角度调整单元,主控制器,万向节控制单元和数字视频传输部件。 主控制器被配置为检测成像装置的姿​​势信息。 万向节控制单元根据摄像装置的姿​​势信息控制至少一个角度调节单元。 数字视频传输部件与成像装置电连接并传输成像装置的数字视频信号。 数字视频传输组件包括视频转换器,第一差分信号传输线和图像传输单元。 视频转换器从成像装置接收HDMI信号,对HDMI信号进行转换和压缩编码以输出串行差分信号,并通过第一差分信号传输线将串行差分信号发送到图像传输单元。
    • 38. 发明公开
    • DUAL-AXIS BALL HEAD FOR USE IN SMALL UNMANNED AERIAL VEHICLE AND TRIPLE-AXIS BALL HEAD FOR USE IN SMALL UNMANNED AERIAL VEHICLE
    • 双轴球使用在小型和无人机三轴球应用于小型无人机
    • EP2759480A4
    • 2015-06-24
    • EP11872105
    • 2011-09-15
    • SZ DJI TECHNOLOGY CO LTD
    • WANG TAO
    • B64D47/08F16M11/12
    • F16M13/02B64C2201/127B64D47/08F16M11/10F16M11/18F16M11/2071
    • The present invention discloses a dual-axis platform for use in an unmanned aerial vehicle and a tri-axis platform for use in an unmanned aerial vehicle, comprising a machine frame assembly, a transmission assembly and a shooting assembly. The machine frame assembly comprises a first bracket, a second bracket and a third bracket, wherein the shooting assembly is fixed on the first bracket, the first bracket is rotatably arranged with the second bracket, and the second bracket is rotatably arranged with the third bracket. The transmission assembly comprises a first motor and a second motor, wherein the first motor drives the first bracket to rotate about its rotation axis relative to the second bracket, and the second motor drives the second bracket to rotate about its rotation axis relative to the third bracket. The present invention employs the motors, as a motive power, to directly connect to the machine frame assembly of the platform, consumes less energy and saves electrical power; meanwhile the motors have a short action response time, are capable of starting and stopping quickly, or adjusting the magnitude of the rotation speed in a timely manner to adapt for various flying postures of the unmanned aerial vehicles and thereby improving shooting stability of the shooting assembly.
    • 本发明盘松动对无人驾驶飞行器和用于在无人驾驶飞行器使用三轴平台内容使用的双轴平台的内容,包括机器框架组件,一传动组件及一射击组件。 在机器框架组件包括第一托架,第二托架和第三托架,worin拍摄组件被固定在第一托架,所述第一托架被可旋转地与第二托架布置,并且所述第二托架可转动地与第三托架布置 , 变速器组件包括第一马达和第二马达,worin第一电动机驱动第一托架成绕旋转轴线相对于第二托架的,并且所述第二电动机驱动第二托架成绕旋转轴线相对于第三其 支架。 本发明采用的电动机,作为动力,直接连接到所述平台的机器框架组件,消耗更少的能量,并节省电力; 同时电机具有短的动作响应时间,能够启动和停止快速,或调节旋转速度的大小适时地为无人驾驶飞行器的各种飞行姿态适应,从而提高射击组件的拍摄稳定性的 ,