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    • 32. 发明授权
    • Remote monitor interface
    • 远程监控界面
    • US4338597A
    • 1982-07-06
    • US127671
    • 1980-03-06
    • Gordon L. SteinerDavid B. O'KeefeRobert C. Miller
    • Gordon L. SteinerDavid B. O'KeefeRobert C. Miller
    • G09G1/16G09G5/30G09G1/00
    • G09G1/165G09G5/30G09G2360/18
    • A data processing system remote monitor interface includes a first device which transmits different types of time-related information signals along multiple parallel channels to a second device for reception and combination into a different number of information signal outputs. The different types of digital information signals are synchronized by the first device prior to transmission to the second device. Components in the first device, the multiple parallel channels, and the second device are selected to maintain signal synchronization by minimizing signal skew thereby eliminating the necessity for signal resynchronization in the second device. The second device includes a receiver section which has a plurality of receivers. Each receiver operates to receive only one digital information signal and to pass the received signal onto its output. The received digital information signals are then amplified by an inverting amplifier prior to being combined into a different number of information signals which are then used by the receiving device. The system accommodates the transmission of synchronized digital information without requiring the transmission of any synchronizing information signal and without requiring the resynchronization of the information signals at the second device.
    • 数据处理系统远程监控接口包括第一设备,其沿着多个并行信道将不同类型的时间相关信息信号发送到第二设备,用于接收并组合成不同数量的信息信号输出。 不同类型的数字信息信号在传输到第二设备之前由第一设备同步。 选择第一设备中的组件,多个并行通道和第二设备以通过最小化信号偏移来维持信号同步,从而消除了在第二设备中的信号再同步的必要性。 第二装置包括具有多个接收器的接收器部分。 每个接收器操作以仅接收一个数字信息信号并将接收的信号传递到其输出。 所接收的数字信息信号然后在被组合成不同数量的信息信号之前由反相放大器放大,然后由接收装置使用。 该系统适应同步数字信息的传输,而不需要传输任何同步信息信号,而不需要在第二设备处重新同步信息信号。
    • 34. 发明授权
    • High temperature skin construction
    • 高温皮肤施工
    • US4232093A
    • 1980-11-04
    • US410691
    • 1973-10-29
    • Robert C. Miller
    • Robert C. Miller
    • B64C3/36B21C37/00
    • B64C3/36Y10T428/12326Y10T428/12347Y10T428/12431Y10T428/12444
    • A skin construction suitable for use as a high temperature airfoil surface that includes a metallic member having first and second corrugations. The first corrugations have a size and spacing which permits resilient thermal expansion of the member in a direction transverse to the direction of the first corrugations. The second corrugations are positioned in a direction that is substantially transverse to the direction of the first corrugations and the second corrugations have a size and spacing which permits resilient thermal expansion of the member in a direction generally transverse to the direction of the second corrugations.An imperforate metallic surface is integral with the metallic member. Thermal stresses imposed on the skin construction are, thus, absorbed by deformation of the first and second corrugations which act as expansion joints in permitting controlled expansion of the skin construction.In combination, a skin construction, as described, and a support structure for positioning the skin construction in spaced relation to an underlying structure. The upstanding metallic support members are connected to a surface of the metallic member of the skin construction with the support members including a corrugated upstanding surface.In combination, a high temperature skin construction and a support structure, both as described, and an underlying structure with the skin construction supported in spaced relation to the underlying structure. Insulation is placed in the space between the skin construction and the underlying structure. The combination may include means to vent the space between the skin construction and the underlying structure to ambient pressure.
    • 适合用作高温翼面的皮肤结构,其包括具有第一和第二波纹的金属构件。 第一波纹具有尺寸和间隔,其允许构件在横向于第一波纹的方向的方向上的弹性热膨胀。 第二波纹位于基本上横向于第一波纹的方向的方向上,并且第二波纹具有尺寸和间隔,其允许构件在大致横向于第二波纹的方向的方向上的弹性热膨胀。 无孔金属表面与金属构件成一体。 因此,施加在皮肤结构上的热应力被作为膨胀节的第一和第二波纹的变形所吸收,从而允许皮肤结构的受控膨胀。 组合,如所述的皮肤结构和用于将皮肤结构定位成与下面结构间隔开的支撑结构。 直立的金属支撑构件连接到皮肤结构的金属构件的表面,支撑构件包括波纹状的直立表面。 结合使用,如上所述的高温皮肤结构和支撑结构,以及具有与下面的结构间隔开的皮肤结构的底层结构。 绝缘被放置在皮肤结构和底层结构之间的空间中。 组合可以包括将皮肤结构和下面的结构之间的空间排出到环境压力的装置。
    • 35. 发明授权
    • Device for measuring vibration amplitude
    • 用于测量振幅的装置
    • US4218614A
    • 1980-08-19
    • US913774
    • 1978-06-08
    • Robert C. Miller
    • Robert C. Miller
    • G01M99/00G01H9/00G01H17/00G01D5/34
    • G01H9/006
    • A device is provided for measuring the amplitude of vibration of a vibratory element. The vibratory element or reed has a vane attached to it extending between opposed fiber optics light guides. The vane has a mask portion which has slits forming alternating light-transmitting elements and opaque elements uniformly spaced in the direction of movement of the vane and lying in the path of light between the light guides. One of the light guides has a stationary mask with at least one slit corresponding in size and orientation to those of the vane. When light is transmitted from one of the light guides to the other while the vibratory member is vibrating, the light must pass through the slits of the masks and is alternately transmitted and cut off. By counting the number of minimum light transmissions, therefore, the amplitude of the vibration can be determined.
    • 提供了用于测量振动元件的振动幅度的装置。 振动元件或簧片具有附接到其上的叶片,其在相对的光纤光导之间延伸。 叶片具有掩模部分,其具有形成交替的透光元件的狭缝和在叶片运动方向上均匀间隔开并位于光导路径之间的光路的不透明元件。 其中一个光导具有固定的掩模,其中至少一个狭缝在尺寸和方向上对应于叶片的狭缝。 当光从其中一个光导传递到另一个时,振动部件振动时,光必须通过掩模的狭缝,并交替地传送和切断。 因此,通过对最小光传输的数量进行计数,可以确定振动的振幅。
    • 36. 发明授权
    • Pyroelectric-field effect electromagnetic radiation detector
    • 热电场效应电磁辐射探测器
    • US4024560A
    • 1977-05-17
    • US610365
    • 1975-09-04
    • Robert C. MillerShu-Yau WuGeorge W. Roland
    • Robert C. MillerShu-Yau WuGeorge W. Roland
    • G01J5/02G01J1/02G01J5/34H01L31/10H01L31/113H01L37/02H04N5/33H01L29/78H01L23/56
    • G01J5/34H01L31/1136H01L37/02
    • A pyroelectric-field effect electromagnetic radiation detector is comprised of a semiconductor body having opposed major surfaces. First and second electrodes are spaced apart from each other in ohmic contact with said semiconductor body to form a conductive channel in said body between said electrodes. A pyroelectric body having opposed major surfaces substantially normal to a polar axis thereof is positioned with one said major surface in intimate contact with and preferably electrostatically bonded to a major surface of said semiconductor body at least between said electrodes, and polarized therethrough substantially normal to said opposed major surfaces at least between said first and second electrodes. A gate electrode capable of absorbing radiation to be detected is also positioned adjacent said pyroelectric body at least between said electrodes. Alternatively, the semiconductor and pyroelectric bodies may be provided by a single body having both pyroelectric and semiconductor properties.
    • 热电场效应电磁辐射检测器由具有相对主表面的半导体本体组成。 第一和第二电极彼此间隔开,与所述半导体本体欧姆接触,以在所述电极之间的所述主体中形成导电通道。 具有基本上垂直于其极轴的相对主表面的热电体定位成具有一个所述主表面至少在所述电极之间与所述半导体本体的主表面紧密接触并优选静电结合,并且基本上垂直于所述 至少在所述第一和第二电极之间的相对的主表面。 能够吸收被检测的辐射的栅极电极也至少位于所述电极之间,邻近所述热电体。 或者,半导体和热电体可以由具有热电和半导体性质的单个体提供。
    • 37. 发明申请
    • CONNECTOR BLOCK FEATURE
    • 连接器块特征
    • US20110097938A1
    • 2011-04-28
    • US12983752
    • 2011-01-03
    • Robert C. Miller
    • Robert C. Miller
    • H01R24/00
    • H01R27/00H01R13/642
    • A memory card connector, within a slot of a host device, for receiving a first memory card having a first row of contact fingers and a second row of contact fingers and a second memory card having only a single row of contact fingers. The memory card connector includes a first row of contact pins, a second row of contact pins and a protrusion. The first row of contact pins are configured to mate with the first row of contact fingers of the first memory card. The second row of contact pins are configured to mate with the second row of contact fingers of the first memory card. The protrusion is received within a contact finger in the second row of contact fingers of the first memory card to allow full insertion of the first memory card into the connector, and abuts against a distal end of one of the contact fingers of the second memory card to prevent full insertion of the second memory card into the connector.
    • 一种存储卡连接器,位于主机设备的插槽内,用于接收具有第一行接触指和第二行接触指的第一存储卡,以及仅具有单排接触指的第二存储卡。 存储卡连接器包括第一排接触针,第二排接触针和突起。 第一排接触针被配置为与第一存储卡的第一行接触指针配合。 第二排接触针被配置为与第一存储卡的第二排接触指针配合。 突起被接收在第一存储卡的第二排接触指的接触指状物内,以允许将第一存储卡完全插入连接器中,并且抵靠第二存储卡的一个接触指的远端 以防止将第二存储卡完全插入连接器。
    • 39. 发明授权
    • Connector block feature
    • 连接器块功能
    • US07862381B2
    • 2011-01-04
    • US12239109
    • 2008-09-26
    • Robert C. Miller
    • Robert C. Miller
    • H01R24/00
    • H01R27/00H01R13/642
    • A memory card connector, within a slot of a host device, for receiving a first memory card having a first row of contact fingers and a second row of contact fingers and a second memory card having only a single row of contact fingers. The memory card connector includes a first row of contact pins, a second row of contact pins and a protrusion. The first row of contact pins are configured to mate with the first row of contact fingers of the first memory card. The second row of contact pins are configured to mate with the second row of contact fingers of the first memory card. The protrusion is received within a contact finger in the second row of contact fingers of the first memory card to allow full insertion of the first memory card into the connector, and abuts against a distal end of one of the contact fingers of the second memory card to prevent full insertion of the second memory card into the connector.
    • 一种存储卡连接器,位于主机设备的插槽内,用于接收具有第一行接触指和第二行接触指的第一存储卡,以及仅具有单排接触指的第二存储卡。 存储卡连接器包括第一排接触针,第二排接触针和突起。 第一排接触针被配置为与第一存储卡的第一行接触指针配合。 第二排接触针被配置为与第一存储卡的第二排接触指针配合。 突起被接收在第一存储卡的第二排接触指的接触指状物内,以允许将第一存储卡完全插入连接器中,并且抵靠第二存储卡的一个接触指的远端 以防止将第二存储卡完全插入连接器。