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    • 2. 发明授权
    • Reusable calendar system
    • 可重复使用的日历系统
    • US07913434B1
    • 2011-03-29
    • US12370109
    • 2009-02-12
    • Nancy A. Olaver
    • Nancy A. Olaver
    • G09D3/00B42D5/04B42D11/00B42D12/00B42D12/02G09B27/08G09B1/24G09B25/00
    • G09D3/00
    • A calendar system comprising multiple (i.e., twelve) magnetic “month” sheets for each calendar month of the year, a magnetic “To Do List” sheet and a magnetic “Six Weeks at a Glance” sheet. Each sheet includes a header section that can variably depict the current month, year and/or day. The system further includes a plurality of magnetic “week” strips for securing to one of the sheets. Each “week” strip includes seven columns each having a day of the week imprinted adjacent thereto. Adjacent each day of the week indicia is a date space to which one of the numbered tabs is secured to appropriately label each day with the corresponding date for the particular week. A plurality of color-coded event tabs are also included for magnetically securing to one of the “week” strips positioned on a “Month” sheet or the “Six Weeks at a Glance” sheet, or directly to the “To Do List” sheet. Each time a week elapses, a “week” strip is moved from the current “Month” sheet to the “Six Weeks at a Glance Sheet.” The week strip associated with the elapsed week is moved to a final “Month” sheet and re-labeled accordingly whereby next year's calendar is continuously configured and updated.
    • 一种日历系统,包括一年中每个历年的多个(即十二个)磁性“月”表,磁性“待办事项”表和磁“六周一览”表。 每个表格包括一个头部,可以变化地描绘当前月,年和/或日。 该系统还包括用于固定到其中一个片材的多个磁性“周”条带。 每个“周”条包括七列,每列有与之相邻印刷的星期几。 每周的相邻标记是一个日期空间,其中一个编号的选项卡被固定,以适当地标记每一天与相应的特定周的日期。 还包括多个颜色编码的事件标签,用于磁性固定到位于“月”表上的“周”条之一或“六周一览”表中,或直接连接到“待办事项列表” 。 每周过去一周,“周”栏从现在的“月”表移动到“六周一览表”。与过去的一周相关的周带移动到最后的“月”表,并重新 相应地标记,从而明年的日历不断配置和更新。
    • 3. 发明申请
    • MOTOR DRIVEN GLOBE
    • 电机驱动GLOBE
    • US20080113320A1
    • 2008-05-15
    • US11874090
    • 2007-10-17
    • Harold G. Middleton
    • Harold G. Middleton
    • G09B27/08G09F19/02
    • G09F19/02G09B27/08
    • A motor driven globe disposed on a support surface. The globe includes a rotating globe shell and a rotation mechanism configured to rotate the shell about a vertical axis of rotation. The rotation mechanism includes a motor concealed inside the rotating shell and a support platform disposed on the support surface and substantially concealed inside a recess formed in an outside surface of the rotating shell. An output shaft aligned with the axis of rotation connects the motor inside the interior of the rotating shell to the support platform. The motor includes a motor body nonrotatably coupled to the interior of the rotating shell. Surface interaction forces between the support platform and support surface are greater than or equal to a rotational drive force generated by the motor and applied to the output shaft causing the motor body and the rotating shell coupled thereto to rotate about the output shaft.
    • 设置在支撑表面上的电动机驱动的球体。 球体包括旋转的球壳和旋转机构,该旋转机构构造成围绕垂直旋转轴线旋转壳体。 旋转机构包括隐藏在旋转壳体内部的电机和设置在支撑表面上并基本上隐藏在形成在旋转壳体的外表面中的凹部内的支撑平台。 与旋转轴对齐的输出轴将旋转壳体内部的电机连接到支撑平台。 马达包括不可旋转地联接到旋转壳体的内部的马达体。 支撑平台和支撑表面之间的表面相互作用力大于或等于由电动机产生的旋转驱动力并施加到输出轴,使得电动机主体和与其连接的旋转壳体围绕输出轴旋转。
    • 4. 发明申请
    • Globe with map detail display
    • 地球与地图细节显示
    • US20070042330A1
    • 2007-02-22
    • US10572880
    • 2004-10-18
    • Alvin Blum
    • Alvin Blum
    • G09B27/08
    • G09B27/02G09B27/00G09B27/08G09B29/00
    • A spherical world globe (4) with geographic features imprinted on its surface rotates on an axis (2) through the poles. The sphere is not large enough to carry legible details of all areas. Greater details are stored in a memory (12′) such as a compact disc. An indicator (8) on the sphere is positionable north and south or the sphere is positionable relative to a fixed indicator to position the indicator along a north/south meridian. A sensor (11′) senses the north/south position of the indicator and sends a signal to a control circuit (19) connected to the memory. Another sensor (10′) connected to the rotation of the sphere sends an east/west signal to the control circuit. Using the two signals, the circuit finds the area corresponding to the area selected on the sphere in the memory and displays it on a display in greater detail than is visible on the sphere.
    • 具有地面特征的球形世界地球仪(4)在其表面上印刷通过极轴在轴(2)上旋转。 球体不够大,无法携带所有领域的清晰细节。 较大的细节存储在诸如光盘的存储器(12')中。 球体上的指示器(8)可以定位在北部和南部,或者球体相对于固定指示器可定位,以将指示器沿着北/南经线定位。 传感器(11')感测指示器的北/南位置,并向连接到存储器的控制电路(19)发送信号。 连接到球体的旋转的另一传感器(10')向控制电路发送东/西信号。 使用两个信号,电路找到与存储器中球体上选择的区域相对应的区域,并将其显示在比球体上可见的更详细的显示屏上。
    • 5. 发明申请
    • Educational toy
    • 教育玩具
    • US20060188851A1
    • 2006-08-24
    • US11060800
    • 2005-02-18
    • John Duprey
    • John Duprey
    • G09B27/08
    • G09B27/08
    • The educational toy includes a toy figure having a body, a frame affixed within a portion of the body, and an earth globe disposed within the frame. The globe is configured to rotate within the frame. The globe is configured to represent the earth, and has outlines representing the continents and at least larger countries or geographical regions, and may have contours representing mountains or other features. The globe may alternatively be retained on an outstretched hand or limb of a figure and may be rotated on a shaft attached to the limb or limbs of the figure. Optionally, the educational toy may be illuminated, play back an educational audio message, or include a motor for rotating the globe.
    • 教育玩具包括具有身体的玩具图形,固定在身体的一部分内的框架和设置在框架内的地球体。 地球仪配置为在框架内旋转。 地球被配置为代表地球,并且具有代表大陆和至少较大的国家或地理区域的轮廓,并且可以具有代表山脉或其他特征的轮廓。 地球仪可以可选地保持在伸出的手或肢体的肢体上,并且可以在附接到图的肢体或四肢的轴上旋转。 可选地,教育玩具可以被照亮,播放教育音频消息,或者包括用于旋转地球仪的电动机。
    • 6. 发明授权
    • Frictionless self-powered moving display
    • 无摩擦自动动力显示
    • US06952151B2
    • 2005-10-04
    • US11027261
    • 2004-12-30
    • William W. French
    • William W. French
    • F16C39/06G09B27/08G09F19/02G09F19/00
    • G09F19/12F16C39/063G09B27/08G09F19/02
    • An intriguing and educational display structure (1) appears to be spinning upon itself without any apparent drive mechanism, power supply or bearing. The structure comprises two concentric hollow spheres (3, 5) spaced apart by a transparent fluid (6). The outer sphere is totally transparent, immobile, and may rest on a tripod (2) or other type of support. The inner sphere may be partially transparent or translucent and carries over its surface, a design such as a map of the world (7). The inner sphere rotates within, and independently from, the first outer one. The internal, that is self-contained, drive mechanism uses either a conventional electrical motor (8) with its own field winding and commutator, or one made of a rotor comprising a cross-array of electromagnets (AC, BD) that interact with an ambient magnetic field such as the earth magnetic field. The power supply comes preferably from a photovoltaic collector (13) mounted within the inner sphere or from a receiver (27) of RF waves or other EM radiation.
    • 一个有趣和有教育意义的显示结构(1)似乎在自动旋转,没有任何明显的驱动机构,电源或轴承。 该结构包括由透明流体(6)隔开的两个同心的空心球(3,5)。 外球体是完全透明的,不可移动的,并且可以搁置在三脚架(2)或其他类型的支撑件上。 内球体可以是部分透明或半透明的,并且覆盖其表面,诸如世界地图的设计(7)。 内球在第一外球内旋转,独立于第一外球旋转。 内部的,独立的驱动机构使用具有其自身的场绕组和换向器的常规电动机(8),或者由包括与电场(AC,BD)交叉的交叉阵列的转子构成的内部 环境磁场如地磁场。 电源优选地来自安装在内球体内的光电收集器(13),或者来自RF波或其它EM辐射的接收器(27)。
    • 7. 发明申请
    • FRICTIONLESS SELF-POWERED MOVING DISPLAY
    • 无摩擦自动移动显示
    • US20050151610A1
    • 2005-07-14
    • US11027261
    • 2004-12-30
    • William French
    • William French
    • F16C39/06G09B27/08G09F19/02H02K7/00
    • G09F19/12F16C39/063G09B27/08G09F19/02
    • An intriguing and educational display structure (1) appears to be spinning upon itself without any apparent drive mechanism, power supply or bearing. The structure comprises two concentric hollow spheres (3, 5) spaced apart by a transparent fluid (6). The outer sphere is totally transparent, immobile, and may rest on a tripod (2) or other type of support. The inner sphere may be partially transparent or translucent and carries over its surface, a design such as a map of the world (7). The inner sphere rotates within, and independently from, the first outer one. The internal, that is self-contained, drive mechanism uses either a conventional electrical motor (8) with its own field winding and commutator, or one made of a rotor comprising a cross-array of electromagnets (AC, BD) that interact with an ambient magnetic field such as the earth magnetic field. The power supply comes preferably from a photovoltaic collector (13) mounted within the inner sphere or from a receiver (27) of RF waves or other EM radiation.
    • 一个有趣的和教育性的显示结构(1)似乎正在旋转,没有任何明显的驱动机制,电源或轴承。 该结构包括由透明流体(6)隔开的两个同心的空心球(3,5)。 外球体是完全透明的,不可移动的,并且可以搁置在三脚架(2)或其他类型的支撑件上。 内球体可以是部分透明或半透明的,并且覆盖其表面,诸如世界地图的设计(7)。 内球在第一外球内旋转,独立于第一外球旋转。 内部的,独立的驱动机构使用具有其自身的场绕组和换向器的常规电动机(8),或者由包括与电场(AC,BD)交叉的交叉阵列的转子构成的内部 环境磁场如地磁场。 电源优选地来自安装在内球体内的光电收集器(13),或者来自RF波或其它EM辐射的接收器(27)。
    • 8. 发明申请
    • Speech (lecture) recorder and printer
    • 语音(演讲)录音机和打印机
    • US20050058968A1
    • 2005-03-17
    • US10662217
    • 2003-09-15
    • Happiness Chinedu
    • Happiness Chinedu
    • G09B5/00G09B27/08G09B5/04G09B19/00
    • G09B5/00
    • This new and unique method and apparatus is used for recording speeches, lectures, conversation, etc. It also consist of a methods for capturing slides, displays, writings, films, diagrams, equations such as mathematics, physics, chemistry, and calculus, through the help of a detachable tele-cam. It is interconnected to a digital master memory power which enables it to retain information so that it's users can acess desired information and print them out later. The front is layered with super high-powered amplifiers and microphones, which makes it easy for it to capture speeches, lectures, conversations etc., from a distance. It is interconnected to digitally compressed international language memory powers, which enables it to capture speeches, lectures, etc., in any international language of the world, that are used in the classrooms, and print them out.
    • 这种新的独特的方法和装置用于记录演讲,讲座,对话等。它还包括一种捕捉幻灯片,显示,写作,电影,图表,数学,物理,化学和演算等方程的方法,通过 可拆卸的远摄镜头的帮助。 它与数字主存储器电源互连,使其能够保留信息,以便用户可以获取所需的信息并稍后打印出来。 前面采用超大功率放大器和麦克风分层,从而可以轻松地从远处捕捉演讲,讲座,对话等。 它与数字压缩的国际语言记忆能力相互关联,使其能够以世界上任何用于教室的国际语言来捕获演讲,讲座等,并打印出来。
    • 9. 发明授权
    • World globe with detail display 2
    • 世界地球仪与细节显示2
    • US06860739B1
    • 2005-03-01
    • US10867263
    • 2004-06-14
    • Alvin S. Blum
    • Alvin S. Blum
    • G09B27/00G09B27/02G09B29/00G09B27/08
    • G09B27/02G09B27/00G09B29/00
    • A spherical world globe with geographic features imprinted on its surface rotates on an axis through the poles. The sphere is not large enough to carry legible details of all areas. Greater details are stored in a memory such as a compact disc. An indicator on the sphere is positionable north and south or the sphere is positionable relative to a fixed indicator to position the indicator along a north/south meridian. A sensor senses the north/south position of the indicator and sends a signal to a control circuit connected to the memory. Another sensor connected to the rotation of the sphere sends an east/west signal to the control circuit. Using the two signals, the circuit finds the area corresponding to the area selected on the sphere in the memory and displays it on a display in greater detail than is visible on the sphere.
    • 一个球形的世界地球仪,其表面印有地理特征,通过极点在轴上旋转。 球体不够大,无法携带所有领域的清晰细节。 较大的细节存储在诸如光盘的存储器中。 球体上的一个指示器可以定位在北部和南部,或者球体相对于固定指示器定位,以使指示器沿着北/南经络位置。 传感器感测指示器的北/南位置,并向连接到存储器的控制电路发送信号。 连接到球体旋转的另一传感器向控制电路发送东/西信号。 使用两个信号,电路找到与存储器中球体上选择的区域相对应的区域,并将其显示在比球体上可见的更详细的显示屏上。
    • 10. 发明授权
    • Chronoglobe
    • 计时器
    • US5379271A
    • 1995-01-03
    • US161154
    • 1993-12-02
    • Philip C. Moedt
    • Philip C. Moedt
    • G04B19/22G09B27/08
    • G04B19/226G09B27/08
    • A rotating sphere (98) within a rotating sphere (20) device. The outer sphere (20) is a translucent earth globe. The slightly smaller inner sphere (98), consisting of one reflective white surfaced hemisphere (100) and one nonreflective black surfaced hemisphere (102), is the day-night, "terminator" line device. With normal levels of incident light, this inner sphere (98) reflects (or non-reflects) light back through the translucent earth globe (20) giving a day-night appearance to the outer earth globe (20). The inner sphere (98) is controlled by a set of outer control magnets (126A,B) that are "locked" to a set of inner magnets (114A,B) attached to the inner sphere (98). These outer magnets (126A,B), external to the earth globe (20), are rotated to achieve inner sphere (98) "terminator" line (104) rotation. With continued, appropriately timed, rotational stepping of both the outer earth globe (20) and the inner day-night sphere (98), display of proper visual manifestations and chronometric characteristics of the Earth-Sun astronomical system are presented throughout the calendar year. An associated alternate sphere role reversal configuration, using the outer sphere (204) as the day-night sphere and inner sphere (202) as the earth globe sphere, also presents display of proper visual manifestations and chronometric characteristics.
    • 在旋转球体(20)装置内的旋转球体(98)。 外球体(20)是半透明的地球球体。 由一个反射白色表面半球(100)和一个非反射黑色表面半球(102)组成的略小的内球(98)是昼夜的“终止器”线装置。 在正常水平的入射光下,该内球体(98)反射(或不反射)通过半透明地球球体(20)反射,从而给外部地球球体(20)提供昼夜的外观。 内球(98)由一组外部控制磁体(126A,B)控制,该组控制磁体被“锁定”到附接到内球体(98)的一组内磁体(114A,B)。 在地球球体(20)外部的这些外磁体(126A,B)旋转以实现内球(98)“终止器”线(104)旋转。 随着对地球外壳(20)和内昼夜球(98)的持续适时调整,旋转踏步,在整个日历年中呈现出地球 - 太阳天文系统的适当视觉表现和计时特征。 使用外球体(204)作为昼夜球体和内球体(202)作为地球球体的相关的替代球体角色反转配置也呈现适当的视觉表现和计时特征的显示。