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    • 81. 发明授权
    • Optical memory expansion
    • 光学存储器扩展
    • US08965212B2
    • 2015-02-24
    • US13262807
    • 2009-04-29
    • Terrel MorrisMichael Renne Ty Tan
    • Terrel MorrisMichael Renne Ty Tan
    • H04B10/00G06F13/40
    • G06F13/409
    • Various embodiments of the present invention are directed to optical-based methods and expansion memory systems for disaggregating memory of computer systems. In one aspect, an expansion memory system comprises a first optical/electronic interface in electrical communication with a processor, a memory expansion board configured with memory, and a second optical/electronic interface attached to the memory expansion board. The first interface converts optical signals into electronic signals that are sent to the processor and converts electronic signals produced by the processor into optical signals. The second interface converts optical signals into electronic signals that are sent to the memory and converts electronic signals produced by the memory into optical signals. The optical signals are exchanged between the first and second interfaces. Embodiments also include methods for sending and receiving data in an expansion memory system.
    • 本发明的各种实施例涉及用于分解计算机系统的存储器的基于光学的方法和扩展存储器系统。 一方面,一种扩展存储器系统包括与处理器电通信的第一光/电接口,配置有存储器的存储器扩展板以及连接到存储器扩展板的第二光/电接口。 第一个接口将光信号转换成发送到处理器的电子信号,并将由处理器产生的电子信号转换为光信号。 第二接口将光信号转换成电子信号,将其发送到存储器并将由存储器产生的电子信号转换为光信号。 光信号在第一和第二接口之间交换。 实施例还包括在扩展存储器系统中发送和接收数据的方法。
    • 87. 发明授权
    • Flexible optical interconnect
    • 柔性光互连
    • US08693814B2
    • 2014-04-08
    • US12922092
    • 2008-03-28
    • Paul Kessler RosenbergMichael Renne Ty TanSagi Varghese Mathai
    • Paul Kessler RosenbergMichael Renne Ty TanSagi Varghese Mathai
    • G02B6/12G02B6/10
    • G02B6/43G02B6/0096Y10T156/10Y10T156/1064
    • A flexible optical interconnect and method of forming the interconnect is disclosed. The optical interconnect includes a waveguide base formed from a flexible dielectric material. A three-sided channel is formed in the flexible material. Each side of the channel is coated with a reflective metallic coating. A cover piece is formed from the flexible material and coated with a reflective metallic coating on an underside. The cover piece is coupled to the waveguide base to form a flexible optical bus having at least one hollow metallized waveguide. The hollow metallized waveguide is configured to carry an optical signal. A transverse slot is formed in the cover piece and the waveguide base to form an aperture bisecting the hollow metallized waveguide to enable the optical signal to be detected and/or redirected.
    • 公开了一种灵活的光学互连和形成互连的方法。 光学互连包括由柔性电介质材料形成的波导基体。 在柔性材料中形成三面通道。 通道的每一侧涂有反射金属涂层。 盖件由柔性材料形成,并在下侧涂覆有反射金属涂层。 覆盖件耦合到波导基底以形成具有至少一个中空金属化波导的柔性光学总线。 中空金属化波导被配置为承载光信号。 横向槽形成在覆盖件和波导基座中,以形成将中空金属化波导平分的孔,以使得能够检测和/或重定向光信号。
    • 88. 发明授权
    • Optical broadcast with buses with shared optical interfaces
    • 具有共享光接口的总线的光广播
    • US08687961B2
    • 2014-04-01
    • US13126840
    • 2008-10-31
    • Michael Renne Ty TanJoseph StraznickyPaul Kessler Rosenberg
    • Michael Renne Ty TanJoseph StraznickyPaul Kessler Rosenberg
    • H04B10/00
    • H04B10/278H04B10/2755
    • Various embodiments of the present invention are directed to optical broadcast buses configured with shared optical interfaces for fan-in and fan-out of optical signals. In one aspect, an optical broadcast bus comprises a number of optical interfaces, a fan-in bus optically coupled to the number of optical interfaces, and a fan-out bus optically coupled to the number of optical interfaces. Each optical interface is configured to convert an electrical signal produced by the at least one node into an optical signal that is received and directed by the fan-in bus to the fan-out bus and broadcast by the fan-out bus to the number of optical interfaces. Each optical interface also converts the optical signal into an electrical signal that is sent to the electronically coupled at least one node for processing.
    • 本发明的各种实施例涉及配置有用于光信号的扇入和扇出的共享光接口的光广播总线。 在一个方面,光学广播总线包括多个光学接口,光耦合到多个光学接口的扇入总线,以及光耦合到多个光学接口的扇出总线。 每个光学接口被配置为将由至少一个节点产生的电信号转换成由扇入总线接收和引导到扇出总线的光信号,并且由扇出总线广播到 光接口。 每个光学接口还将光学信号转换成电信号,该电信号被发送到电子耦合的至少一个节点进行处理。
    • 89. 发明申请
    • ELECTRONIC SYSTEM HAVING FANOUT OPTICAL BUSES
    • 具有散热光纤的电子系统
    • US20130202313A1
    • 2013-08-08
    • US13877641
    • 2010-10-08
    • Michael Renne Ty TanMoray McLarenPaul Kessler Rosenberg
    • Michael Renne Ty TanMoray McLarenPaul Kessler Rosenberg
    • H04B10/27
    • H04B10/278G02B6/43H04B10/803
    • An electronic system includes a plurality of electronic nodes, each having a transmitter module and a plurality of receiver modules, in which the transmitter module is positioned at a same location with respect to the receiver modules in each of the electronic nodes, and a plurality of fanout optical buses, each fanout optical bus comprising a transmitter section, a plurality of receiver sections, and at least one substantially straight optical waveguide extending between the plurality of receiver sections, wherein each transmitter section is optically connected to a transmitter module of a respective one of the electronic nodes and wherein the receiver sections of each of the fanout optical buses is connected to respective ones of the receiver modules of the electronic nodes.
    • 电子系统包括多个电子节点,每个电子节点具有发射机模块和多个接收机模块,其中发射机模块相对于每个电子节点中的接收机模块位于相同的位置,并且多个 扇出光学总线,每个扇出光学总线包括发射机部分,多个接收机部分和在多个接收机部分之间延伸的至少一个基本上直的光波导,其中每个发射机部分光学连接到相应的一个发射机模块 并且其中每个扇出光总线的接收器部分连接到电子节点的相应的接收器模块。