PLASMA DEPOSITION PROCESS FOR PRODUCING AN OPTICAL PREFORM WITH A CLADDING GLASS LAYER OF FLUORINE-DOPED QUARTZ GLASS
    1.
    发明申请
    PLASMA DEPOSITION PROCESS FOR PRODUCING AN OPTICAL PREFORM WITH A CLADDING GLASS LAYER OF FLUORINE-DOPED QUARTZ GLASS 有权
    用氟化石英玻璃覆盖玻璃层制造光学预制件的等离子体沉积工艺

    公开(公告)号:US20140208802A1

    公开(公告)日:2014-07-31

    申请号:US14233104

    申请日:2012-07-26

    IPC分类号: C03B37/014

    摘要: In plasma deposition processes for producing an optical preform according to the POD method, a cladding glass layer composed of fluorine-doped quartz glass is produced by means of a plasma torch on a cylindrical substrate body composed of quartz glass, said substrate body rotating about the longitudinal axis thereof. In this case, the plasma torch performs a reversing relative movement between two turning points (A; B) along the substrate body. In order, proceeding therefrom, to achieve a high fluorine doping in conjunction with a dopant distribution that is as uniform as possible axially, the invention proposes that a heat element has a heating effect on the region of one turning point (A; B) when the plasma torch is situated in the region of the other turning point (B; A).

    摘要翻译: 在根据POD方法制造光学预成型件的等离子体沉积工艺中,由掺杂氟石英玻璃构成的包层玻璃层通过等离子体焰炬在由石英玻璃构成的圆筒形基板主体上产生,所述基板主体围绕 纵轴。 在这种情况下,等离子体焰炬沿着基板主体在两个转折点(A; B)之间执行反转相对运动。 为了顺利进行,为了实现与掺杂剂分布结合,尽可能均匀的氟掺杂,本发明提出,热元件对于一个转折点(A; B)的区域具有加热效应,当 等离子体焰炬位于另一转折点(B; A)的区域。

    Measuring Apparatus
    4.
    发明申请
    Measuring Apparatus 审中-公开
    测量仪器

    公开(公告)号:US20100007335A1

    公开(公告)日:2010-01-14

    申请号:US12309604

    申请日:2006-07-26

    IPC分类号: G01R19/00

    CPC分类号: G01R15/26

    摘要: A measuring apparatus, in particular for measuring current, is provided. In at least one embodiment, the measuring apparatus includes a sensor and an evaluation device which is coupled or can be coupled thereto, in which the coupling is effected contactlessly, in particular by way of a transponder interface. As such, on the one hand current can be measured in a reaction-free manner, wherein on the other hand the resulting measuring apparatus can be used in a particularly flexible and versatile manner on account of the maneuverability of the components with respect to one another and on account of the relatively large possible distance between the two parts of the transponder interface.

    摘要翻译: 提供了一种测量装置,特别是用于测量电流。 在至少一个实施例中,测量装置包括传感器和评估装置,其耦合或耦合到其上,其中联接是非接触式地实现的,特别是通过应答器接口。 因此,一方面可以以无反应的方式测量电流,另一方面,由于部件相对于彼此的可操纵性,所得到的测量装置可以以特别灵活和通用的方式使用 并且由于应答器接口的两个部分之间可能的距离相对较大。

    KEY-OPERATED SWITCH
    5.
    发明申请
    KEY-OPERATED SWITCH 审中-公开
    钥匙开关

    公开(公告)号:US20090273437A1

    公开(公告)日:2009-11-05

    申请号:US12432317

    申请日:2009-04-29

    IPC分类号: G05B19/00

    摘要: A key-operated switch includes a first excitation device which generates a first alternating magnetic field and has a first inductance. The key-operated switch is constructed in such a manner that the first alternating magnetic field can be used to scan a first coding of a key, with the first coding changing the first inductance of the first excitation device. The first coding is read by the key-operated switch in this manner. The key associated with the key-operated switch has a carrier element which is not electrically conductive and is not magnetizable. Arranged on the carrier element is the first coding which is made of an electrically conductive and/or magnetizable material. As a result, the key can be scanned without wear.

    摘要翻译: 键操作开关包括产生第一交变磁场并具有第一电感的第一激励装置。 按键操作开关的构造方式是,第一交变磁场可用于扫描键的第一编码,第一编码改变第一激励装置的第一电感。 以这种方式,由钥匙操作的开关读取第一编码。 与键操作开关相关联的键具有不导电并且不可磁化的载体元件。 载体元件上布置的是由导电和/或可磁化材料制成的第一编码。 因此,钥匙可以无磨损扫描。

    Enhanced Immersive Soundscapes Production
    6.
    发明申请
    Enhanced Immersive Soundscapes Production 审中-公开
    增强沉浸的声音制作

    公开(公告)号:US20090238378A1

    公开(公告)日:2009-09-24

    申请号:US12405950

    申请日:2009-03-17

    IPC分类号: H04R3/00

    CPC分类号: H04N13/398 H04N13/296

    摘要: An immersive audio-visual system (and a method) for creating an enhanced interactive and immersive audio-visual environment is disclosed. The immersive audio-visual environment enables participants to enjoy true interactive, immersive audio-visual reality experience in a variety of applications. The immersive audio-visual system comprises an immersive video system, an immersive audio system and an immersive audio-visual production system. The video system creates immersive stereoscopic videos that mix live videos, computer generated graphic images and human interactions with the system. The immersive audio system creates immersive sounds with each sound resource positioned correct with respect to the position of an associated participant in a video scene. The immersive audio-video production system produces an enhanced immersive audio and videos based on the generated immersive stereoscopic videos and immersive sounds. A variety of applications are enabled by the immersive audio-visual production including casino-type interactive gaming system and training system.

    摘要翻译: 公开了一种用于创建增强的交互式和沉浸式视听环境的沉浸式视听系统(和方法)。 沉浸式的视听环境使参与者能够在各种应用中享受真正的互动,沉浸式视听现实体验。 沉浸式视听系统包括沉浸式视频系统,沉浸式音频系统和沉浸式视听制作系统。 视频系统创建沉浸式的立体视频,将现场视频,计算机生成的图形图像和与系统的人际交互混合在一起。 沉浸式音频系统产生沉浸式声音,每个声音资源相对于视频场景中相关参与者的位置定位正确。 沉浸式音视频制作系统基于产生的沉浸式立体视频和沉浸式声音产生增强的沉浸式音频和视频。 通过沉浸式视听制作,包括赌场式互动游戏系统和培训系统,可以实现各种应用。

    Unified session detail records
    7.
    发明申请
    Unified session detail records 有权
    统一会话详细记录

    公开(公告)号:US20080056241A1

    公开(公告)日:2008-03-06

    申请号:US11890016

    申请日:2007-08-03

    IPC分类号: H04L12/66

    摘要: A unified session detail records of a multi-hop session is provided. The multi-hop session may be established through multiple nodes in a VoIP network. Each node may generate session detail records for the legs of the multi-hop session that are connected to the node. The nodes on the path of the multi-hop call may send the record to a single node to consolidate the session detail records of the legs of the multi-hop call in the single node so that the single node can provide unified session detail records of the multi-hop session. By providing unified session detail records, the user does not need to track down the nodes that are on the path of the multi-hop call to obtain the session detail records of the multi-hop session.

    摘要翻译: 提供了多跳会话的统一会话详细记录。 可以通过VoIP网络中的多个节点来建立多跳会话。 每个节点可以生成连接到节点的多跳会话的分支的会话细节记录。 多跳呼叫路径上的节点可以将记录发送到单个节点,以在单个节点中合并多跳呼叫的分支的会话详细记录,使得单个节点可以提供统一的会话详细记录 多跳会话。 通过提供统一的会话详细记录,用户不需要跟踪多跳呼叫路径上的节点,以获取多跳会话的会话详细记录。

    Pneumatic single grain sowing machine
    8.
    发明授权
    Pneumatic single grain sowing machine 失效
    气动单粒播种机

    公开(公告)号:US07255050B2

    公开(公告)日:2007-08-14

    申请号:US11404628

    申请日:2006-04-14

    IPC分类号: A01C7/00 A01C9/00

    CPC分类号: A01C7/046

    摘要: Pneumatic single grain sowing machine having a seeds storage container, and an individualization device subjected to air pressure, exhibiting perforations and rotating. The individualization device is led with its region disposed below the rotation axis at least in part to the placing of seed grains at the perforations through a seed storage led from the storage container to the individualization device. A separating wall is disposed between the storage container and the individualization device and determining the seed storage height level and extending at a distance to the individualization device in a vertical direction. In order to furnish a single grain sowing machine wherein the part segments with thereon disposed storage containers and individualization devices can be pivoted by 90 degrees around the horizontally running swivel axis, an adjustably formed blocking device is disposed between the individualization device and the separating wall in the region of the lower end of the separating wall and above the seed storage height level, wherein the blocking device closes in the intermediate space between the individualization device and the separating wall.

    摘要翻译: 具有种子储存容器的气动单粒播种机和经受空气压力的个体化装置,具有穿孔和旋转。 个体化装置被引导其区域设置在旋转轴线下方,至少部分地是通过从存储容器引导到个性化装置的种子储存器将种子晶粒放置在穿孔处。 分离壁设置在存储容器和个性化装置之间,并确定种子存储高度水平并在垂直方向上延伸到个体化装置一定距离。 为了提供一种单粒播种机,其中其上具有放置的存储容器和个体化装置的部分段可以围绕水平运行的旋转轴线枢转90度,可调节地形成的阻挡装置设置在个体化装置和分离壁之间 分隔壁的下端的区域和种子储存高度水平之上,其中阻挡装置在个体化装置和分隔壁之间的中间空间中封闭。