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    • 2. 发明申请
    • Car Wash Air Dryer Blower Flow Restrictor Arrangement And Method
    • 洗车空气干燥器鼓风机流量限制器的布置和方法
    • US20130167871A1
    • 2013-07-04
    • US13566158
    • 2012-08-03
    • Mark T. Jones
    • Mark T. Jones
    • B60S3/00
    • B60S3/002F26B21/001F26B2210/12
    • Stacked inner and outer discs are mounted over an air blower inlet opening of each blower in a car wash system drying zone with matched sets of radial slots and spokes formed in each disc. An actuator rotates one disc between positions in which the set of slots in one disc is aligned with the set of slots in the other disc to allow air flow into the blower inlet to dry a car in the dryer zone to a position in which the set of spokes overlie the set of slots in the other disc to thereby block inlet air flow to reduce the load on a blower motor when a car is not in the dryer zone.
    • 堆叠的内部和外部盘被安装在洗涤系统干燥区域中的每个鼓风机的鼓风机入口开口上,在每个盘中形成具有匹配的径向槽和辐条组。 致动器在一个盘中的一组槽与另一个盘中的一组槽对准的位置之间旋转一个盘,以允许空气流入鼓风机入口以将干燥器区域中的汽车干燥到该组 的轮辐覆盖在另一个盘中的一组槽口,从而当汽车不在干燥器区域中时阻挡入口气流以减小鼓风机马达上的负载。
    • 3. 发明授权
    • Hardware-facilitated secure software execution environment
    • 硬件安全软件执行环境
    • US08473754B2
    • 2013-06-25
    • US11707951
    • 2007-02-20
    • Mark T. JonesPeter M. AthanasCameron D. PattersonJoshua N. EdmisonAnthony MaharBenjamin J. MuzalBarry L. PolakowskiJonathan P. Graf
    • Mark T. JonesPeter M. AthanasCameron D. PattersonJoshua N. EdmisonAnthony MaharBenjamin J. MuzalBarry L. PolakowskiJonathan P. Graf
    • G06F11/30H04L9/32H04L9/00H04K1/00
    • G06F21/53G06F21/72
    • A hardware-facilitated secure software execution environment provides protection of both program instructions and data against unauthorized access and/or execution to maintain confidentiality and integrity of the software or the data during distribution, in external memories, and during execution. The secure computing environment is achieved by using a hardware-based security method and apparatus to provide protection against software privacy and tampering. A Harvard architecture CPU core is instantiated on the same silicon chip along with encryption management unit (EMU) circuitry and secure key management unit (SKU) circuitry. Credential information acquired from one or more sources is combined by the SKU circuitry to generate one or more security keys provided to the EMU for use in decrypting encrypted program instructions and/or data that is obtained from a non-secure, off-chip source such as an external RAM, an information storage device or other network source. In a non-limiting illustrative example implementation, the EMU decrypts a single memory page of encrypted instructions or data per a corresponding encryption key provided by the SKU. Although instantiated on the same chip, the CPU core does not have direct access to the SKU circuitry or to encryption key information generated by the SKU.
    • 硬件便利的安全软件执行环境提供对程序指令和数据的保护,以防止未经授权的访问和/或执行,以在分发,外部存储器和执行期间保持软件或数据的机密性和完整性。 安全计算环境通过使用基于硬件的安全方法和装置来提供防止软件隐私和篡改的保护来实现。 哈佛架构CPU内核与加密管理单元(EMU)电路和安全密钥管理单元(SKU)电路一起在同一硅芯片上实例化。 从一个或多个源获取的凭证信息由SKU电路组合以产生提供给EMU的一个或多个安全密钥,用于解密加密的程序指令和/或从非安全的片外来源获得的数据,例如 作为外部RAM,信息存储设备或其他网络源。 在非限制性说明性示例实现中,EMU根据由SKU提供的相应加密密钥对加密指令的单个存储器页面或数据进行解密。 虽然在同一芯片上实例化,但是CPU内核不能直接访问SKU电路或者由SKU生成的加密密钥信息。
    • 4. 发明申请
    • EXPANDABLE TRANSAPICAL SHEATH AND METHOD OF USE
    • 可膨胀的透水性和使用方法
    • US20110144690A1
    • 2011-06-16
    • US12946799
    • 2010-11-15
    • Joseph BishopJay LenkerEdward J. NanceHuan T. NguyenMark T. Jones
    • Joseph BishopJay LenkerEdward J. NanceHuan T. NguyenMark T. Jones
    • A61M29/00
    • A61M25/0662A61F2/2412A61F2/2418A61F2/2433A61F2/2436A61M25/0053A61M25/10A61M25/1011A61M25/104A61M29/02A61M2025/0024A61M2025/0681
    • Disclosed is an expandable transluminal sheath, for introduction into the body while in a first, small cross-sectional area configuration, and subsequent expansion of at least a part of the distal end of the sheath to a second, enlarged cross-sectional configuration. The sheath is configured for use in the vascular system and has utility in the introduction and removal of implant delivery catheters. The access route is through the ventricular myocardium, more specifically at the left ventricular apex, into the aortic root. The distal end of the sheath is maintained in the first, low cross-sectional configuration during advancement to the arteries into the aorta. The distal end of the sheath is subsequently expanded using a radial dilatation device, which is removed prior to the introduction of implant delivery catheters. In an exemplary application, the sheath includes a supported proximal end, a supported distal end, and a collapsible center section. Certain configurations of the sheath are capable of being inserted in a first, small cross-sectional configuration, being expanded diametrically to a second, larger cross-sectional configuration, and then being reduced to a diametrically small size for removal.
    • 公开了一种可膨胀的经腔护套,用于在第一小截面区域构造中引入身体,并且随后将护套的远端的至少一部分膨胀至第二扩大横截面构造。 鞘被配置为用于血管系统,并且可用于引入和移除植入物输送导管。 进入路径是通过心室心肌,更具体地在左心室顶端进入主动脉根部。 护套的远端在进入主动脉的动脉中保持在第一,低横截面构型。 随后使用径向扩张装置使护套的远端膨胀,该径向扩张装置在引入植入物输送导管之前被移除。 在示例性应用中,护套包括支撑的近端,支撑的远端和可折叠的中心部分。 护套的某些构造能够以第一小截面构造插入,沿直径扩大到第二较大横截面形状,然后被减小到径向较小的尺寸以便移除。
    • 5. 发明申请
    • EXPANDABLE CEREBROVASCULAR SHEATH AND METHOD OF USE
    • 可膨胀的脑血管和其使用方法
    • US20110112567A1
    • 2011-05-12
    • US12879867
    • 2010-09-10
    • Jay LenkerJoseph BishopMark T. JonesHuan T. Nguyen
    • Jay LenkerJoseph BishopMark T. JonesHuan T. Nguyen
    • A61M29/02
    • A61M25/0023A61M25/005A61M25/01A61M25/1011A61M29/02A61M2025/0024A61M2025/0042A61M2025/0681A61M2025/1052A61M2025/1084
    • Disclosed is an expandable transluminal sheath, for introduction into the body while in a first, small cross-sectional area configuration, and subsequent expansion of at least a part of the distal end of the sheath to a second, enlarged cross-sectional configuration. The sheath is configured for use in the upper vascular system and has utility in the introduction and removal of therapeutic or diagnostic microcatheters. The access route is through the femoral arteries or the iliac arteries to the cerebrovasculature. The distal end of the sheath is maintained in the first, low cross-sectional configuration during advancement to the cerebrovasculature. The distal end of the sheath is subsequently expanded using a radial dilatation device, which is removed prior to the introduction of microcatheters. The sheath can be inserted in a first, small cross-sectional configuration, be expanded diametrically to a second, larger cross-sectional configuration, and then be reduced to a diametrically smaller size for removal.
    • 公开了一种可膨胀的经腔护套,用于在第一小截面区域构造中引入身体,并且随后将护套的远端的至少一部分膨胀至第二扩大横截面构造。 鞘被配置为用于上部血管系统,并且可用于引入和移除治疗或诊断性微型导管。 进入路径是通过股动脉或髂动脉到达脑血管系统。 在前进到脑血管系统期间,护套的远端保持在第一,低横截面构型。 随后,使用径向扩张装置使护套的远端膨胀,其在引入微型导管之前被移除。 护套可以以第一小的横截面构造插入,直径扩大到第二较大横截面形状,然后被还原成直径较小的尺寸以便移除。
    • 7. 发明授权
    • Expandable iliac sheath and method of use
    • 可扩展髂骨鞘及使用方法
    • US08668668B2
    • 2014-03-11
    • US12258233
    • 2008-10-24
    • Joseph BishopJay LenkerEdward J. NanceHuan T. NguyenMark T. Jones
    • Joseph BishopJay LenkerEdward J. NanceHuan T. NguyenMark T. Jones
    • A61M31/00A61M37/00A61M5/178
    • A61M29/02A61F2/2427A61M25/005A61M25/0662A61M25/104A61M2025/0024A61M2025/0681
    • Disclosed is an expandable transluminal sheath, for introduction into the body while in a first, small cross-sectional area configuration, and subsequent expansion of at least a part of the distal end of the sheath to a second, enlarged cross-sectional configuration. The sheath is configured for use in the vascular system and has utility in the introduction and removal of implant delivery catheters. The access route is through the femoral arteries and the iliac arteries into the aorta. The distal end of the sheath is maintained in the first, low cross-sectional configuration during advancement to the arteries into the aorta. The distal end of the sheath is subsequently expanded using a radial dilatation device, which is removed prior to the introduction of implant delivery catheters. In an exemplary application, the sheath includes a supported proximal end, a supported distal end, and a collapsible center section. Certain configurations of the sheath are capable of being inserted in a first, small cross-sectional configuration, being expanded diametrically to a second, larger cross-sectional configuration, and then being reduced to a diametrically small size for removal.
    • 公开了一种可膨胀的经腔护套,用于在第一小截面区域构造中引入身体,并且随后将护套的远端的至少一部分膨胀至第二扩大横截面构造。 鞘被配置为用于血管系统,并且可用于引入和移除植入物输送导管。 进入路径是通过股动脉和髂动脉进入主动脉。 护套的远端在进入主动脉的动脉中保持在第一,低横截面构型。 随后使用径向扩张装置使护套的远端膨胀,该径向扩张装置在引入植入物输送导管之前被移除。 在示例性应用中,护套包括支撑的近端,支撑的远端和可折叠的中心部分。 护套的某些构造能够以第一小截面构造插入,沿直径扩大到第二较大横截面形状,然后被减小到径向较小的尺寸以便移除。
    • 8. 发明申请
    • Hardware-facilitated secure software execution environment
    • 硬件安全软件执行环境
    • US20100122095A1
    • 2010-05-13
    • US11707951
    • 2007-02-20
    • Mark T. JonesPeter M. AthanasCameron D. PattersonJoshua N. EdmisonAnthony MaharBenjamin J. MuzalBarry L. PolakowskiJonathan P. Graf
    • Mark T. JonesPeter M. AthanasCameron D. PattersonJoshua N. EdmisonAnthony MaharBenjamin J. MuzalBarry L. PolakowskiJonathan P. Graf
    • G06F21/22G06F12/14H04L9/28H04L9/14
    • G06F21/53G06F21/72
    • A hardware-facilitated secure software execution environment provides protection of both program instructions and data against unauthorized access and/or execution to maintain confidentiality and integrity of the software or the data during distribution, in external memories, and during execution. The secure computing environment is achieved by using a hardware-based security method and apparatus to provide protection against software privacy and tampering. A Harvard architecture CPU core is instantiated on the same silicon chip along with encryption management unit (EMU) circuitry and secure key management unit (SKU) circuitry. Credential information acquired from one or more sources is combined by the SKU circuitry to generate one or more security keys provided to the EMU for use in decrypting encrypted program instructions and/or data that is obtained from a non-secure, off-chip source such as an external RAM, an information storage device or other network source. In a non-limiting illustrative example implementation, the EMU decrypts a single memory page of encrypted instructions or data per a corresponding encryption key provided by the SKU. Although instantiated on the same chip, the CPU core does not have direct access to the SKU circuitry or to encryption key information generated by the SKU.
    • 硬件便利的安全软件执行环境提供对程序指令和数据的保护,以防止未经授权的访问和/或执行,以在分发,外部存储器和执行期间保持软件或数据的机密性和完整性。 安全计算环境通过使用基于硬件的安全方法和装置来提供防止软件隐私和篡改的保护来实现。 哈佛架构CPU内核与加密管理单元(EMU)电路和安全密钥管理单元(SKU)电路一起在同一硅芯片上实例化。 从一个或多个源获取的凭证信息由SKU电路组合以产生提供给EMU的一个或多个安全密钥,用于解密加密的程序指令和/或从非安全的片外来源获得的数据,例如 作为外部RAM,信息存储设备或其他网络源。 在非限制性说明性示例实现中,EMU根据由SKU提供的相应加密密钥对加密指令的单个存储器页面或数据进行解密。 虽然在同一芯片上实例化,但是CPU内核不能直接访问SKU电路或者由SKU生成的加密密钥信息。
    • 9. 发明授权
    • Doorknob anti-rotation device
    • 门把手防旋转装置
    • US4869305A
    • 1989-09-26
    • US284163
    • 1988-12-14
    • Mark T. Jones
    • Mark T. Jones
    • E05B13/00
    • E05B13/001Y10S292/02
    • A doorknob cover that defeats facile rotation of a doorknob. Two layers of cloth or other low friction material are placed in juxtaposition with one another and joined at their respective outermost peripheral edges. A second attachment is made between the materials just radially inwardly of the outermost peripheral edge to form a toroidal cavity to receive a drawstring. The device is placed over a doorknob and the opposite ends of the drawstrings are tied together tightly so that the device cannot be removed from the doorknob unless the knot is first untied. Young children are unable to rotate a doorknob covered by the device due to the double layer of cloth and the low frictional engagement between the inner piece of cloth and the doorknob.
    • 一个门把手的盖子,打破门把手的轻松旋转。 将两层布或其它低摩擦材料彼此并置放置并在其相应的最外周边缘处连接。 在最外围边缘的径向向内的材料之间形成第二附件以形成环形腔以接收束带。 将设备放置在门把手上,并且将束带的相对端紧紧地捆绑在一起,使得该装置不能从门把手移除,除非结节首先被解开。 由于双层布以及内部布和门把手之间的低摩擦接合,幼儿无法旋转装置所覆盖的门把手。