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    • 93. 发明申请
    • COMPACT NANOFABRICATION APPARATUS
    • 紧凑的纳米装置
    • US20110195850A1
    • 2011-08-11
    • US13088284
    • 2011-04-15
    • Sergey V. ROZHOKMichael NelsonNabil A. AmroJoseph S. FragalaRaymond Roger ShileJohn Edward BussanDirk N. vanMerkestyn
    • Sergey V. ROZHOKMichael NelsonNabil A. AmroJoseph S. FragalaRaymond Roger ShileJohn Edward BussanDirk N. vanMerkestyn
    • C40B30/00C40B50/14
    • G03F7/0002G01Q80/00G03F7/70383G03F9/00
    • An apparatus for use in fabricating structures and depositing materials from tips to surfaces for patterning in direct-write mode, providing ability to travel macroscopic distances and yet provide for nanoscale patterning. Useful in small scale fabrication and nanolithography. The instrument can be compact and used on a laboratory bench or desktop. An apparatus comprising: at least one multi-axis assembly comprising a plurality of nanopositioning stages, at least one pen assembly, wherein the pen assembly and the multi-axis assembly are adapted for delivery of material from the pen assembly to a substrate which is positioned by the multi-axis assembly, at least one viewing assembly, at least one controller. Nanopositioning by piezoelectric methods and devices and motors is particularly useful. The apparatus can include integrated environmental chambers and housings, as well as ink reservoirs for materials to be delivered. The viewing assembly can be a microscope with a long working distance. Particularly useful for fabrication of bioarrays or microarrays. The multi-axis assembly can be a five-axis assembly. Software can facilitate efficient usage.
    • 一种用于制造结构并从尖端到表面沉积材料的装置,用于以直写式模式进行图案化,提供行进宏观距离并提供纳米尺度图案化的能力。 适用于小规模制造和纳米光刻。 该仪器可以紧凑,并在实验台或台式机上使用。 一种装置,包括:至少一个多轴组件,其包括多个纳米定位阶段,至少一个笔组件,其中所述笔组件和所述多轴组件适于将材料从所述笔组件传送到定位的衬底 通过多轴组件,至少一个观察组件,至少一个控制器。 通过压电方法和装置和电动机的定位是特别有用的。 该设备可以包括集成的环境室和壳体,以及用于要输送的材料的油墨储存器。 观察组件可以是具有长工作距离的显微镜。 特别适用于制造生物芯片或微阵列。 多轴组件可以是五轴组件。 软件可以促进有效的使用。
    • 97. 发明授权
    • Virtual machine migration
    • 虚拟机迁移
    • US07680919B2
    • 2010-03-16
    • US12352242
    • 2009-01-12
    • Michael Nelson
    • Michael Nelson
    • G06F15/173
    • G06F9/45558G06F3/0604G06F3/0647G06F3/0683G06F9/4856G06F2009/4557G06F2009/45583G06F2009/45595H04L47/783H04L67/148
    • A source virtual machine (VM) hosted on a source server is migrated to a destination VM on a destination server without first powering down the source VM. After optional pre-copying of the source VM's memory to the destination VM, the source VM is suspended and its non-memory state is transferred to the destination VM; the destination VM is then resumed from the transferred state. The source VM memory is either paged in to the destination VM on demand, or is transferred asynchronously by pre-copying and write-protecting the source VM memory, and then later transferring only the modified pages after the destination VM is resumed. The source and destination servers preferably share common storage, in which the source VM's virtual disk is stored; this avoids the need to transfer the virtual disk contents. Network connectivity is preferably also made transparent to the user by arranging the servers on a common subnet, with virtual network connection addresses generated from a common name space of physical addresses.
    • 托管在源服务器上的源虚拟机(VM)将迁移到目标服务器上的目标VM,而无需首先关闭源虚拟机。 在将源虚拟机的内存可选地预先复制到目标虚拟机之后,源虚拟机被暂停,其非内存状态被传送到目标虚拟机; 目的地VM然后从转移状态恢复。 根据需要将源VM内存分页到目标虚拟机,或通过预源复制和写保护源虚拟机内存异步传输,然后在目标虚拟机恢复之后稍后传输修改的页面。 源服务器和目标服务器优选地共享存储源虚拟机的虚拟盘的公共存储器; 这避免了传输虚拟磁盘内容的需要。 优选地,通过将​​服务器布置在公共子网上,通过从物理地址的公共名称空间生成的虚拟网络连接地址,网络连接性也对用户透明。
    • 98. 发明申请
    • HIGH-PERFORMANCE VIRTUAL MACHINE NETWORKING
    • 高性能虚拟机网络
    • US20090183180A1
    • 2009-07-16
    • US12393231
    • 2009-02-26
    • Michael Nelson
    • Michael Nelson
    • G06F13/20G06F9/455
    • G06F9/544G06F9/455G06F9/45504G06F9/45533G06F9/45558G06F9/4812G06F9/542G06F9/546G06F13/24G06F2009/45595
    • A virtual machine (VM) runs on system hardware, which includes a physical network interface device that enables transfer of packets between the VM and a destination over a network. A virtual machine monitor (VMM) exports a hardware interface to the VM and runs on a kernel, which forms a system software layer between the VMM and the system hardware. Pending packets (both transmit and receive) issued by the VM are stored in a memory region that is shared by, that is, addressable by, the VM, the VMM, and the kernel. Rather than always transferring each packet as it is issued, packets are clustered in the shared memory region until a trigger event occurs, whereupon the cluster of packets is passed as a group to the physical network interface device. Optional mechanisms are included to prevent packets from waiting too long in the shared memory space before being transferred to the network. An interrupt offloading mechanism is also disclosed for use in multiprocessor systems such that it is in most cases unnecessary to interrupt the VM in order to request a VMM action, and the need for VMM-to-kernel context transitions is reduced.
    • 虚拟机(VM)在系统硬件上运行,其中包括物理网络接口设备,能够通过网络在虚拟机和目的地之间传输数据包。 虚拟机监视器(VMM)将硬件接口导出到虚拟机并在内核上运行,内核在VMM和系统硬件之间形成系统软件层。 由VM发出的等待发送的数据包(发送和接收)都存储在由VM,VMM和内核可共享的存储区域中。 在发送每个数据包之前,不要总是传输数据包,而是将数据包聚集在共享存储器区域中,直到发生触发事件,然后将数据包集群作为一组传递到物理网络接口设备。 包括可选的机制,以防止数据包在传输到网络之前在共享内存空间中等待太久。 还公开了用于多处理器系统的中断卸载机制,使得在大多数情况下大多数情况下不必中断VM以便请求VMM动作,并且减少对VMM到内核上下文转换的需要。