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    • 2. 发明授权
    • Using a zooming effect to provide additional display space for managing applications
    • 使用缩放效果为管理应用程序提供额外的显示空间
    • US07665033B2
    • 2010-02-16
    • US11514551
    • 2006-08-31
    • Paul ByrneHideya KawaharaFrank E. Ludolph
    • Paul ByrneHideya KawaharaFrank E. Ludolph
    • G06F3/048
    • G06F3/0481
    • One embodiment of the present invention provides a system that uses a zooming effect to provide additional display space to manage applications. In one mode of operation, the system presents an image of a computer desktop to the user on a display device. When the system receives a request from a user to provide additional display space in a display device for application management purposes, the system decreases the size of the computer desktop in the display device to provide an extended display area. The system then facilitates application management by displaying items useful for application management in this extended display area. By providing the extended display area, the system allows the user to access such items easily and efficiently without losing the context of the computer desktop.
    • 本发明的一个实施例提供一种使用缩放效果来提供额外的显示空间来管理应用的系统。 在一种操作模式中,系统在显示设备上向用户呈现计算机桌面的图像。 当系统收到来自用户的请求以在显示设备中提供用于应用程序管理目的的附加显示空间时,系统减小显示设备中的计算机桌面的大小以提供扩展的显示区域。 然后,该系统通过在该扩展显示区域中显示对于应用程序管理有用的项目来促进应用程序管理。 通过提供扩展的显示区域,系统允许用户容易且有效地访问这些项目,而不会丢失计算机桌面的上下文。
    • 3. 发明授权
    • Density sensor
    • 密度传感器
    • US4476723A
    • 1984-10-16
    • US475045
    • 1983-03-14
    • Paul Byrne
    • Paul Byrne
    • G01N9/12G01N9/10
    • G01N9/12
    • A density sensor includes a stationary housing (12) and a reciprocating body (22) with a float (26) attached thereto to provide a buoyant force. The reciprocating body (22) is connected to a piston (32) by a reciprocating rod (34). The piston (32) is operable to move within a bore (30). A second piston (52) is also disposed in the bore (30) and is coupled to the piston (32) by a spring (54). A transducer (44) is disposed at the other end of the bore and is connected to the piston (52) through hydraulic fluid disposed in a hydraulic chamber (56). The spring (54) is functional to remove low frequency components of acceleration from the buoyant force and the hydraulic fluid disposed in the hydraulic chamber (56) is operable to remove high frequency acceleration components from the buoyant force. In this manner, the transducer (44) can be isolated from both high and low frequency acceleration components.
    • 密度传感器包括固定壳体(12)和具有附接到其上的浮子(26)以提供浮力的往复运动体(22)。 往复运动杆(22)通过往复杆(34)与活塞(32)连接。 活塞(32)可操作以在孔(30)内移动。 第二活塞(52)也设置在孔(30)中并且通过弹簧(54)联接到活塞(32)。 传感器(44)设置在孔的另一端,并且通过设置在液压室(56)中的液压流体连接到活塞(52)。 弹簧(54)用于从浮力中去除加速度的低频分量,并且布置在液压室(56)中的液压流体可操作以从浮力中去除高频加速度分量。 以这种方式,换能器(44)可以与高频和低频加速度分量隔离。
    • 6. 发明申请
    • Using 3-dimensional rendering effects to facilitate visualization of complex source code structures
    • 使用三维渲染效果来促进复杂的源代码结构的可视化
    • US20070256054A1
    • 2007-11-01
    • US11413803
    • 2006-04-28
    • Paul ByrneHideya KawaharaCharles Hunt
    • Paul ByrneHideya KawaharaCharles Hunt
    • G06F9/44
    • G06F8/73
    • One embodiment of the present invention provides a system that uses three-dimensional (3D) rendering effects within a 3D graphical user interface (GUI) to enable a user to efficiently visualize and navigate through complex source code structures. During operation, the system receives a request to display a set of source code files in a 3D GUI. Next, in response to the request, the system displays each source code file as a scaled-down version of the actual source code within a box in the 3D GUI, wherein the box is scaled to fit within a viewing window of the 3D GUI regardless of the length of the source code in the file. Note that the scaled-down source code within the box preserves the structure of the actual source code file, including line lengths and indentations. The system also displays calls between source code files as links between source code lines associated with the calls, wherein the links form a call-graph between the set of source code files.
    • 本发明的一个实施例提供一种在3D图形用户界面(GUI)内使用三维(3D)渲染效果的系统,以使得用户能够有效地可视化和导航复杂的源代码结构。 在操作期间,系统接收到在3D GUI中显示一组源代码文件的请求。 接下来,响应于该请求,系统在3D GUI中的框中将每个源代码文件显示为实际源代码的缩小版本,其中该框被缩放以适合3D GUI的观看窗口,不管 文件中源代码的长度。 请注意,框内的缩小的源代码保留了实际的源代码文件的结构,包括行长和缩进。 该系统还将源代码文件之间的呼叫显示为与呼叫相关联的源代码行之间的链接,其中链接在源代码文件集之间形成调用图。