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    • 3. 发明申请
    • Precision spacecraft payload platforms
    • 精密航天器有效负载平台
    • US20070210266A1
    • 2007-09-13
    • US11400874
    • 2006-04-10
    • Ketao LiuGregory BeckerPeter SedivecDouglas Bender
    • Ketao LiuGregory BeckerPeter SedivecDouglas Bender
    • G01N21/86
    • G01S5/163G01B11/272
    • One or more fixed-orientation fanned laser beams and one or more displacement measurement devices to precisely measure the orientation of a payload platform are disclosed in a metrology system and method. The measurement devices may be distributed at locations across a payload platform such that displacement changes of these devices can be used to accurately determine platform pointing. Laser beam transmitters may be fixed in the same reference block to which a spacecraft attitude sensor is mounted. Fanned laser beams are transmitted from these sources to the measurement devices so that their displacements can be determined with respect to the plane of the fanned beams and thereby with respect to the spacecraft attitude sensor. Only a small number of fixed laser beams are needed to achieve precision measurements at a reduced cost, weight and power, and with increased system reliability and simplified system integration.
    • 计量系统和方法中公开了一种或多种固定方向的扇形激光束和一个或多个位移测量装置来精确地测量有效负载平台的取向。 测量设备可以分布在有效负载平台上的位置,使得这些设备的位移变化可以用于准确地确定平台指向。 激光束发射器可以固定在安装有航天器姿态传感器的相同参考块中。 扇形激光束从这些源传输到测量装置,使得它们的位移可以相对于扇形光束的平面,从而相对于航天器姿态传感器确定。 只需要少量的固定激光束,以降低成本,重量和功率,以及更高的系统可靠性和简化的系统集成来实现精密测量。
    • 4. 发明申请
    • Gimbal disturbance calibration and compenstion
    • 云台干扰校准和补偿
    • US20070027590A1
    • 2007-02-01
    • US11191805
    • 2005-07-28
    • Ketao LiuJustin BurchGregory BeckerPatrick Nelson
    • Ketao LiuJustin BurchGregory BeckerPatrick Nelson
    • G01C23/00G06F17/00
    • G01C25/00G01C19/00
    • Various embodiments of the present invention are directed to precision control system for spacecraft gimbaled payloads. Embodiments of the invention provide an innovative technique of calibrating gimbals disturbances to directly canceling gimbal control disturbances. Such a calibration system includes a receiver for receiving telemetry data for pointing a payload, a processor for calculating a disturbance parameter vector for a gimbal disturbance model with the telemetry data and a transmitter for transmitting the disturbance parameter vector to compensate for pointing error when applied in pointing the payload. The gimbal disturbance model comprises a harness stiffness term, a disturbance harmonics term and at least one friction hysteresis term. The telemetry data may be time matched prior to calculating the disturbance parameter vector. Typically, the telemetry data comprises gimbal angle and applied torque data and the disturbance parameter vector is calculated from convergence of an iterative gradient computation with the telemetry data.
    • 本发明的各种实施例涉及用于航天器万向有载荷的精密控制系统。 本发明的实施例提供了一种用于校准万向架干扰以直接抵消万向节控制扰动的创新技术。 这样的校准系统包括用于接收用于指示有效载荷的遥测数据的接收器,用于利用遥测数据计算用于万向干扰模型的扰动参数矢量的处理器,以及用于发送干扰参数矢量的发射机,以补偿当应用于 指向有效载荷 万向节干扰模型包括线束刚度项,扰动谐波项和至少一个摩擦滞后项。 遥测数据可以在计算干扰参数矢量之前进行时间匹配。 通常,遥测数据包括万向角和施加的扭矩数据,并且通过迭代梯度计算与遥测数据的收敛来计算扰动参数向量。
    • 5. 发明申请
    • Thermal insulating board for laptop computers
    • 笔记本电脑隔热板
    • US20050276006A1
    • 2005-12-15
    • US10865977
    • 2004-06-11
    • Michael LimGregory Becker
    • Michael LimGregory Becker
    • G06F1/16G06F1/20
    • G06F1/203Y10T428/31696
    • The present invention is directed to a laptop platform for resting a laptop computer on a user's lap; the platform comprising a composite structure having risers to establish an air gap between the platform and the laptop. In one embodiment the platform is further configured with upper and lower layers including a plurality of ribs extending therebetween to define a pocket or pockets of air. The air pockets act as a second insulating source while the ribs aid in stiffening the platform. Further, a designated insulation material may be is adhered to the lower surface of the platform to create a third, separate barrier to heat transfer across the platform.
    • 本发明涉及一种膝上型计算机平台,用于将膝上型计算机放置在用户的膝盖上; 所述平台包括具有立管以在所述平台和所述笔记本电脑之间建立空气间隙的复合结构。 在一个实施例中,平台进一步配置有上层和下层,包括在其之间延伸的多个肋以限定空气袋或袋。 气囊作为第二绝缘源,而肋条有助于加强平台。 此外,可以将指定的绝缘材料粘附到平台的下表面,以形成跨越平台的热传递的第三,单独的屏障。
    • 6. 发明申请
    • Method for etching a patterned silicone layyer
    • 刻蚀图案硅胶层的方法
    • US20060286809A1
    • 2006-12-21
    • US10565036
    • 2003-07-28
    • Gregory BeckerGeoffrey GardnerBrian Harkness
    • Gregory BeckerGeoffrey GardnerBrian Harkness
    • H01L21/302
    • G03F7/0757G03F7/38G03F7/425
    • A method for reworking semiconductor materials includes: (i) applying a silicone composition to a surface of a substrate to form a film, (ii) exposing a portion of the film to radiation to produce a partially exposed film having non-exposed regions covering a portion of the surface and exposed regions covering the remainder of the surface; (iii) heating the partially exposed film for an amount of time such that the exposed regions are substantially insoluble in a developing solvent and the non-exposed regions are soluble in the developing solvent; (iv) removing the nonexposed regions of the heated film with the developing solvent to form a patterned film; (v) heating the patterned film for an amount of time sufficient to form a cured silicone layer, and (vi) removing all or a portion of the cured silicone layer by exposure to an anhydrous etching solution including an organic solvent and a base.
    • 一种用于对半导体材料进行再加工的方法包括:(i)将硅氧烷组合物施加到基底的表面以形成膜,(ii)将膜的一部分暴露于辐射以产生具有覆盖一部分的非暴露区域的部分曝光的膜 表面的一部分和覆盖表面的其余部分的暴露区域; (iii)将部分暴露的膜加热一段时间,使得暴露区域基本上不溶于显影溶剂,并且未曝光区域可溶于显影溶剂中; (iv)用显影溶剂去除加热膜的未曝光区域以形成图案化膜; (v)加热所述图案化膜足以形成固化的硅氧烷层的时间量,以及(vi)通过暴露于包括有机溶剂和碱的无水蚀刻溶液中去除所有或部分固化的硅氧烷层。
    • 9. 发明授权
    • Method for forming and removing a patterned silicone film
    • 用于形成和去除图案化硅胶膜的方法
    • US07517808B2
    • 2009-04-14
    • US10565036
    • 2003-07-28
    • Gregory BeckerGeoffrey GardnerBrian Harkness
    • Gregory BeckerGeoffrey GardnerBrian Harkness
    • H01L21/469H01B13/00C03C15/00
    • G03F7/0757G03F7/38G03F7/425
    • A method for reworking semiconductor materials includes: (i) applying a silicone composition to a surface of a substrate to form a film, (ii) exposing a portion of the film to radiation to produce a partially exposed film having non-exposed regions covering a portion of the surface and exposed regions covering the remainder of the surface; (iii) heating the partially exposed film for an amount of time such that the exposed regions are substantially insoluble in a developing solvent and the non-exposed regions are soluble in the developing solvent; (iv) removing the non-exposed regions of the heated film with the developing solvent to form a patterned film; (v) heating the patterned film for an amount of time sufficient to form a cured silicone layer; and (vi) removing all or a portion of the cured silicone layer by exposure to an anhydrous etching solution including an organic solvent and abase.
    • 一种用于对半导体材料进行再加工的方法包括:(i)将硅氧烷组合物施加到基底的表面以形成膜,(ii)将膜的一部分暴露于辐射以产生具有覆盖一部分的非暴露区域的部分曝光的膜 表面的一部分和覆盖表面的其余部分的暴露区域; (iii)将部分暴露的膜加热一段时间,使得暴露区域基本上不溶于显影溶剂,并且未曝光区域可溶于显影溶剂中; (iv)用显影溶剂去除加热膜的未曝光区域以形成图案化膜; (v)加热所述图案化膜足以形成固化的硅氧烷层的时间; 和(vi)通过暴露于包括有机溶剂和碱性的无水蚀刻溶液来除去固化的硅氧烷层的全部或一部分。
    • 10. 发明授权
    • Thermal insulating board for laptop computers
    • 笔记本电脑隔热板
    • US07161799B2
    • 2007-01-09
    • US10865977
    • 2004-06-11
    • Michael Z. LimGregory Becker
    • Michael Z. LimGregory Becker
    • G06F1/16B65D19/00
    • G06F1/203Y10T428/31696
    • The present invention is directed to a laptop platform for resting a laptop computer on a user's lap; the platform comprising a composite structure having risers to establish an air gap between the platform and the laptop. In one embodiment the platform is further configured with upper and lower layers including a plurality of ribs extending therebetween to define a pocket or pockets of air. The air pockets act as a second insulating source while the ribs aid in stiffening the platform. Further, a designated insulation material may be is adhered to the lower surface of the platform to create a third, separate barrier to heat transfer across the platform.
    • 本发明涉及一种膝上型计算机平台,用于将膝上型计算机放置在用户的膝盖上; 所述平台包括具有立管以在所述平台和所述笔记本电脑之间建立空气间隙的复合结构。 在一个实施例中,平台进一步配置有上层和下层,包括在其之间延伸的多个肋以限定空气袋或袋。 气囊作为第二绝缘源,而肋条有助于加强平台。 此外,可以将指定的绝缘材料粘附到平台的下表面,以形成跨越平台的热传递的第三,单独的屏障。