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    • 1. 发明申请
    • Synchronizing image data among applications and devices
    • 在应用程序和设备之间同步图像数据
    • US20070156434A1
    • 2007-07-05
    • US11325830
    • 2006-01-04
    • Joseph MartinVenkatachary SrinivasanJerald SinghMarco BoerriesTorsten Schulz
    • Joseph MartinVenkatachary SrinivasanJerald SinghMarco BoerriesTorsten Schulz
    • G06Q99/00
    • G06Q10/10G06F17/3028G06Q10/06G06Q50/01
    • For providing synchronization of image data among diverse devices and applications, exemplary systems include a direct client application providing a user interface operable to allow a user to organize image data according to albums, and to select one or more albums for synchronization with one or more server interfaces that provide various image data manipulation, sharing, and features related thereto. Systems also include an intermediary system to assist in synchronization of select albums with handheld devices, and a notification server to provide scalable notifications of album updates made at server interfaces by users. Exemplary methods include steps providing for selection, from direct client applications, of albums to synchronize with devices, including handheld devices, and various steps of providing updates and notifications among appropriate system components.
    • 为了提供不同设备和应用之间的图像数据的同步,示例性系统包括提供可操作以允许用户根据相册组织图像数据的用户界面的直接客户端应用,并且选择一个或多个相册以与一个或多个服务器同步 提供各种图像数据操作,共享和与其相关的特征的接口。 系统还包括协助选择专辑与手持设备同步的中介系统,以及通知服务器,以提供在用户在服务器接口处制作的相册更新的可伸缩通知。 示例性方法包括提供从直接客户端应用程序选择要与包括手持设备在内的设备同步的相册以及在适当的系统组件之间提供更新和通知的各种步骤的步骤。
    • 3. 发明授权
    • Unmanned aerial delivery system
    • US10196155B2
    • 2019-02-05
    • US14481456
    • 2014-09-09
    • Joseph Martin
    • Joseph Martin
    • B64C39/02B64F1/00A47G29/14
    • An unmanned aerial vehicle delivery system utilizes an unmanned aerial vehicle (UAV) to deliver packages between an initiation point and multiple delivery points at a raised elevation. The UAV flies between points in an organized manner, using logistical, maintenance and safety software, commands from a delivery organization, and guidance tools to coordinate deliveries. One advantage of the system is that the UAV engages the delivery points at a raised elevation, rather than the ground level. The UAV docks through an elevated structure at the delivery point for delivering the package and replenishing a power source. The package is conveyed from a docking end and through a central shaft of the elevated structure by means of an elevator. The package then travels to a lower structure, such as a house or office, for pickup. After completion of the delivery, the UAV replenishes its power source and/or continues on the delivery route.
    • 4. 发明授权
    • Proximity masking device for near-field optical lithography
    • 用于近场光刻的接近掩模装置
    • US5928815A
    • 1999-07-27
    • US971054
    • 1997-11-14
    • Joseph Martin
    • Joseph Martin
    • G03F1/00G03F9/00
    • G03F1/50
    • A masking device for performing high-resolution photoresist-based lithography in the fabrication of integrated circuits. The heart of the device is a cylindrical block made of material transparent to, and manifesting a relatively high index of refraction for, the wavelengths of light to be used in conjunction with it. The mask end of the block is imprinted with a pattern of ridges corresponding to the pattern to be illuminated on the photoresist. The mask end, including the inter-ridge troughs, is covered with a metal film several tens of .ANG. thick. The troughs are filled in with a material such as carbon black strongly absorptive of the wavelengths that will emerge from the mask. The sides of the block are covered with a metal cladding sufficiently thick to prevent any light from escaping from the block. The top end of the block, opposite the mask end, is left uncovered. In operation, the block is used in conjunction with a precise positioning mechanism for locating the block in the horizontal plane and for maintaining a very small, but non-zero, distance between the mask ridges and the photoresist layer, such that the photoresist layer is in the near-field of the mask. In this manner, the photoresist can be illuminated with the pattern desired, with a resolution sufficient to produce circuit elements with dimensions much less than the wavelength of light entering the top end of the mask block.
    • 一种用于在集成电路的制造中执行高分辨率光致抗蚀剂的光刻的掩模装置。 器件的心脏是由与其结合使用的光的波长透明的材料制成的圆柱形块,并且表现出相对较高的折射率。 块的掩模端部印有对应于要在光致抗蚀剂上照射的图案的脊的图案。 包括脊间槽的掩模端被几十个厚度的ANGSTROM的金属膜覆盖。 槽中填充有诸如炭黑的材料,其强烈吸收将从掩模中出现的波长。 块的侧面被足够厚的金属覆层覆盖,以防止任何光从块中逸出。 块的顶端与掩模端相对,未被覆盖。 在操作中,块与精确的定位机构一起使用,用于将块定位在水平面中并且用于在掩模脊和光致抗蚀剂层之间保持非常小但非零的距离,使得光致抗蚀剂层为 在面具的近场。 以这种方式,可以以期望的图案照射光致抗蚀剂,其分辨率足以产生尺寸远小于进入掩模块顶端的光的波长的电路元件。
    • 7. 发明申请
    • PROCESS FOR THE MANUFACTURE OF LENSES
    • 镜片制造工艺
    • US20120328776A1
    • 2012-12-27
    • US13490520
    • 2012-06-07
    • Pierre-Jean CALBAJoseph MartinKarin SchererAlain ThuillierGérard Willemin
    • Pierre-Jean CALBAJoseph MartinKarin SchererAlain ThuillierGérard Willemin
    • B05D5/06
    • B29D11/00865
    • Process for manufacturing of an optical article which comprises:making available an organic substrate based on an organic polymer having a degree of water uptake of greater than or equal to 0.6% by weight, with respect to the total weight of the substrate, the degree of water uptake being equal to the weight of water absorbed by the material after drying and then storing for 800 hours in a chamber at 50° C. under a relative humidity of 100% and at atmospheric pressure;forming a hard abrasion-resistant coating on the substrate by heating the substrate at a temperature of greater than or equal to 90° C. for a period of time of at least 20 minutes;exposing the substrate covered with the hard abrasion-resistant coating to a humid atmosphere, so as to restore, to the organic substrate, the water evaporated during stage; anddepositing of a water-impermeable inorganic coating by vacuum evaporation.
    • 一种光学制品的制造方法,其特征在于:使基于有机聚合物获得有机基材,所述有机聚合物的吸水度大于或等于0.6重量%,相对于所述基材的总重量, 吸水量等于干燥后材料吸收的水的重量,然后在相对湿度100%和大气压下在50℃的室中储存800小时; 通过在大于或等于90℃的温度下加热基底至少20分钟的时间,在基底上形成硬的耐磨涂层; 将被硬质耐磨涂层覆盖的基材暴露于潮湿气氛中,以使在阶段中蒸发的水回收到有机基材; 并通过真空蒸发沉积不透水的无机涂层。
    • 8. 发明授权
    • Canopy release buckle with dual action release lever
    • 带双动释放杆的天篷释放带扣
    • US07313848B2
    • 2008-01-01
    • US10784096
    • 2004-02-23
    • Mark ForsterJoseph Martin
    • Mark ForsterJoseph Martin
    • A44B11/25
    • B64D17/38Y10T24/45644Y10T24/45686
    • A dual action canopy release for releasably holding a parachute harness securement strap in a buckle. The canopy release may be activated by a forward movement of a lever arm or a rearward movement of the lever arm. The lever arm cooperates with an actuating lever having a first position, wherein the actuating lever holds a latch in a locked position, and a second position, wherein the actuating lever releases the latch thereby allowing the latch to move to an unlocked position. Either the forward movement or the rearward movement of the lever arm causes the actuating lever to move to the second position. In the unlocked position, the latch allows parachute harness securement strap to be withdrawn from the buckle.
    • 双作用罩盖释放,用于可拆卸地将降落伞束固定带固定在扣环中。 可以通过杠杆臂的向前运动或杠杆臂的向后运动来激活冠层释放。 杠杆臂与具有第一位置的致动杠杆配合,其中所述致动杆将闩锁保持在锁定位置和第二位置,其中所述致动杆释放所述闩锁,从而允许所述闩锁移动到解锁位置。 杠杆臂的向前运动或向后运动使致动杆移动到第二位置。 在解锁位置,闩锁允许降落伞线束固定带从带扣中取出。
    • 10. 发明授权
    • Device and method for continuously and non-destructively monitoring
variation in the thickness of shaped sections
    • 用于连续和非破坏性地监测成型部分厚度变化的装置和方法
    • US5399016A
    • 1995-03-21
    • US78310
    • 1993-07-28
    • Joseph Martin
    • Joseph Martin
    • G01B11/06G01N25/72G01N25/00
    • G01B11/06
    • A device for non-destructively and continuously measuring and monitoring the thickness of a shaped section includes an extruder for extruding a thermoplastic material to form a shaped section having a temperature variation extending along a length of said section, at least one unit for measuring and detecting radiation emitted by the section during movement of the shaped section from the extruder and at least one unit for causing the radiation detecting and measuring unit to scan the entire outer surface of the shaped section. The detecting and measuring unit being connected to a computer system including imaging processing software, a radiation recording unit and a display screen for determining a variation in the thickness of the shaped section based on a variation of emitted radiation detected by the detecting and measuring unit.
    • PCT No.PCT / FR92 / 00922 Sec。 371日期:1993年7月28日 102(e)日期1993年7月28日PCT提交1992年9月30日PCT公布。 公开号WO93 / 08446 日本1994年4月29日。用于非破坏性地连续地测量和监测成形部分的厚度的装置包括挤出机,用于挤出热塑性材料以形成具有沿所述部分的长度延伸的温度变化的成形部分, 至少一个单元,用于测量和检测由所述成形部分从所述挤压机运动期间所述部分发射的辐射;以及至少一个单元,用于使所述辐射检测和测量单元扫描所述成形部分的整个外表面。 检测和测量单元连接到计算机系统,包括成像处理软件,辐射记录单元和显示屏幕,用于基于由检测和测量单元检测到的发射辐射的变化来确定成形部分的厚度变化。