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    • 31. 发明授权
    • Apparatus and methods for generating pressure waves
    • 用于产生压力波的装置和方法
    • US08457338B2
    • 2013-06-04
    • US13306531
    • 2011-11-29
    • Yuval CohenDaniel LewinShay Kaplan
    • Yuval CohenDaniel LewinShay Kaplan
    • H04R1/00
    • H04R1/403H04R1/005H04R1/10H04R9/025H04R29/00
    • Actuator apparatus for generating a physical effect, at least one attribute of which corresponds to at least one characteristic of a digital input signal sampled periodically in accordance with a clock, the apparatus comprising at least one array of moving elements each constrained to travel alternately back and forth along a respective axis in response to an alternating electromagnetic force applied to the array of moving elements, at least one latch operative to selectively latch at least one subset of said moving elements in at least one latching position thereby to prevent the individual moving elements from responding to the electromagnetic force, an electromagnetic field control system operative to receive the clock and, accordingly, to control application of the electromagnetic force to the array of moving elements, and a latch controller operative to receive the digital input signal and to control the latch accordingly.
    • 用于产生物理效应的致动器装置,其至少一个属性对应于根据时钟周期性地采样的数字输入信号的至少一个特征,所述装置包括至少一个移动元件阵列,每个移动元件阵列被交替地背对着行进, 响应于施加到移动元件阵列的交变电磁力,沿着相应的轴线前进,至少一个闩锁,用于选择性地将至少一个所述移动元件的子集锁定在至少一个闩锁位置中,从而防止各个移动元件从 响应于电磁力,电磁场控制系统可操作以接收时钟,并因此控制对移动元件阵列的电磁力的应用,以及可操作以接收数字输入信号并控制锁存器的锁存器控制器 相应地。
    • 32. 发明授权
    • Apparatus and methods for generating pressure waves
    • 用于产生压力波的装置和方法
    • US08085964B2
    • 2011-12-27
    • US12301951
    • 2007-05-21
    • Yuval CohenDaniel LewinShay Kaplan
    • Yuval CohenDaniel LewinShay Kaplan
    • H04R1/00
    • H04R1/20B81B3/0021H02K7/10H02K16/00H02K33/16H02K2201/18H02N13/00H04R1/005H04R1/403H04R3/12
    • Actuator apparatus for generating a physical effect, at least one attribute of which corresponds to at least one characteristic of a digital input signal sampled periodically in accordance with a clock, the apparatus comprising at least one array of moving elements each constrained to travel alternately back and forth along a respective axis in response to an alternating electromagnetic force applied to the array of moving elements, at least one latch operative to selectively latch at least one subset of said moving elements in at least on latching position there by to prevent the individual moving elements from responding to the electromagnetic force, an electromagnetic field control system operative to receive the clock and, accordingly, to control application of the electromagnetic force to the array of moving elements and a latch controller operative to receive the digital input signal and to control the latch accordingly.
    • 用于产生物理效应的致动器装置,其至少一个属性对应于根据时钟周期性地采样的数字输入信号的至少一个特征,所述装置包括至少一个移动元件阵列,每个移动元件阵列被交替地背对着行进, 响应于施加到移动元件阵列的交替电磁力,至少一个闩锁可操作以在至少一个闩锁位置上选择性地锁定所述移动元件的至少一个子集,以防止各个移动元件 响应于电磁力,电磁场控制系统可操作以接收时钟,并因此控制电磁力对移动元件阵列的应用,以及可操作以接收数字输入信号并控制锁存器的锁存器控制器 相应地。
    • 33. 发明授权
    • Link aggregation for routed ports
    • 路由端口的链路聚合
    • US07606230B1
    • 2009-10-20
    • US10958077
    • 2004-10-04
    • Yuval CohenNafea BisharaMichael Orr
    • Yuval CohenNafea BisharaMichael Orr
    • H04L12/28
    • H04L45/00H04L45/24H04L45/245H04L45/60Y02D50/30
    • A wireless network apparatus and corresponding method and computer program comprises a plurality of ports to transmit and receive data flows comprising packets of data; a memory to store a routing table; a forwarding engine to transfer the packets of data between the ports according to the routing table; and a processor to define a routing interface comprising a selected group of the ports, map a selected media access control (MAC) address to the routing interface, disable link aggregation between the ports in the routing interface, disable bridging between the ports in the routing interface, and modify the routing table to direct each of the data flows having the MAC address as a destination address to one of the ports in the routing interface.
    • 无线网络装置及其对应的方法和计算机程序包括多个端口,用于发送和接收包括数据包的数据流; 存储路由表的存储器; 转发引擎,根据路由表在端口之间传输数据包; 以及处理器,用于定义包括所选择的端口组的路由接口,将所选择的媒体访问控制(MAC)地址映射到路由接口,禁用路由接口中的端口之间的链路聚合,禁用路由中的端口之间的桥接 接口,并修改路由表,将具有MAC地址的每个数据流作为目的地址引导到路由接口中的一个端口。
    • 34. 发明授权
    • Failover scheme for stackable network switches
    • 可堆叠网络交换机的故障转移方案
    • US07593320B1
    • 2009-09-22
    • US10836661
    • 2004-04-30
    • Yuval CohenTal Anker
    • Yuval CohenTal Anker
    • H04L12/26
    • H04L41/0663
    • A method, apparatus, and computer-readable media for a stackable multi-layer switch comprises a first set of stack units comprising a master stack unit, wherein one of the stack units in the first set comprises a first port to communicate with a network using a first Internet Protocol address; and a second set of the stack units comprising a backup master stack unit, wherein one of the stack units in the second set comprises a second port to communicate with the network using the first Internet Protocol address; wherein each of the stack units comprises a control plane processor, one or more ports, a stacking interface, and a forwarding engine to communicate with the control plane processor, the ports, and the stacking interface; wherein the stack units communicate with each other through the stacking interfaces; and wherein, when the master stack unit is unable to communicate with the backup master stack unit through the stacking interfaces, the first and second ports attempt to communicate with each other over the network using a second Internet Protocol address associated with the first port and a third Internet Protocol address associated with the second port.
    • 用于可堆叠多层交换机的方法,装置和计算机可读介质包括包括主堆栈单元的第一组堆栈单元,其中第一组中的堆叠单元之一包括与网络通信的第一端口, 第一个互联网协议地址; 以及第二组堆单元,其包括备用主堆叠单元,其中第二组中的一个堆栈单元包括使用第一互联网协议地址与网络通信的第二端口; 其中每个堆叠单元包括控制平面处理器,一个或多个端口,堆叠接口和与控制平面处理器,端口和堆叠接口通信的转发引擎; 其中所述堆叠单元通过所述堆叠接口彼此通信; 并且其中,当所述主堆叠单元不能通过所述堆叠接口与所述备份主堆叠单元通信时,所述第一端口和所述第二端口尝试使用与所述第一端口相关联的第二互联网协议地址通过所述网络彼此通信,以及 与第二个端口相关联的第三个Internet协议地址。
    • 35. 发明授权
    • Quality of service for a stackable network switch
    • 可堆叠网络交换机的服务质量
    • US07466653B1
    • 2008-12-16
    • US10883540
    • 2004-06-30
    • Yuval CohenTal Anker
    • Yuval CohenTal Anker
    • H04L12/26
    • H04L49/45H04L49/253
    • A method, apparatus, and computer-readable media for a first stack unit in a stackable network device comprises a plurality of the stack units interconnected by a plurality of stacking links, the first stack unit comprising a control plane processor to receive, from a third stack unit, a path message that identifies a second stack unit; wherein the control plane processor transmits the path message to the second stack unit; wherein the control plane processor receives, from the second stack unit, a reserve message; wherein the reserve messages identifies a requested resources for a planned data flow within the stackable network device, wherein the planned data flow has a quality of service; a plurality of ports to receive and transmit packets of data; and a forwarding engine to transfer the packets of data between the ports in accordance with the control plane processor.
    • 可堆叠网络设备中的第一堆叠单元的方法,装置和计算机可读介质包括由多个堆叠链路互连的多个堆叠单元,第一堆栈单元包括控制平面处理器,用于从第三堆叠单元 堆栈单元,标识第二堆栈单元的路径消息; 其中所述控制平面处理器将所述路径消息发送到所述第二堆栈单元; 其中所述控制平面处理器从所述第二堆栈单元接收保留消息; 其中所述预留消息识别所述可堆叠网络设备内的计划数据流的所请求资源,其中所述计划数据流具有服务质量; 多个端口,用于接收和发送数据包; 以及根据控制平面处理器在端口之间传送数据分组的转发引擎。
    • 37. 发明授权
    • Apparatus and methods for individual addressing and noise reduction in actuator arrays
    • US09425708B2
    • 2016-08-23
    • US13989979
    • 2011-11-17
    • Eric Andreas HaberDaniel LewinShay KaplanMeir Ben SimonYuval Cohen
    • Eric Andreas HaberDaniel LewinShay KaplanMeir Ben SimonYuval Cohen
    • H04R3/00H02N1/00H04R1/40H04R19/02
    • H04R19/02H02N1/006H04R1/403H04R3/06H04R3/12Y10T29/49117
    • Apparatus for generating a target physical effect, at least one attribute of which corresponds to at least one characteristic of a digital input signal sampled periodically, the apparatus comprising a multiplicity of electrostatic actuator elements, each comprising a moving element moving between first and second electrodes, the multiplicity of electrostatic actuator elements including Nr first subsets (R-subsets) of actuator elements and Nc second subsets (C-subsets) of actuator elements, wherein a first partitioning of the multiplicity of actuator elements yields the Nr first subsets (R-subsets) and a second partitioning of the multiplicity of actuator elements yields the Nc second subsets (C-subsets); a first plurality of Nr electrical connections (R-wires) interconnecting the moving elements of actuator elements in each R-subset, such that the moving element of any actuator element in each individual R-subset is electrically connected to the moving elements of all other actuator elements in the individual R-subset, and electrically isolated from the moving elements of all actuator elements not in the individual R-subset; a second plurality of Nc electrical connections (A-wires) interconnecting the first electrodes of actuator elements in each C-subset, such that the first electrode of any actuator element in each individual C-subset is electrically connected to the first electrode of all other actuator elements in the individual C-subset, and electrically isolated from all actuator elements not in the individual C-subset; a third plurality of Nc electrical connections (B-wires) interconnecting the second electrodes of actuator elements in each C-subset, such that the second electrode of any actuator element in each individual C-subset is electrically connected to the second electrode of all other actuator elements in the individual C-subset, and electrically isolated from all actuator elements not in the individual C-subset; and a controller electrically connected to the first, second and third pluralities of electrical connections, operative to receive a digital input signal, and to apply one of a predetermined, finite set of electric potentials to each of said electrical connections respectively, such that resulting movements of the moving elements together produce the desired physical effect.
    • 38. 发明授权
    • Method and apparatus for managing packets in a packet switched network
    • 用于在分组交换网络中管理分组的方法和装置
    • US08923297B1
    • 2014-12-30
    • US13415557
    • 2012-03-08
    • Tsahi DanielDonald PannellNafea BisharaYuval Cohen
    • Tsahi DanielDonald PannellNafea BisharaYuval Cohen
    • H04L12/28
    • H04L12/4625H04L12/4645H04L49/354H04L49/45
    • Methods and apparatus for managing packets in a packet switched network include, in at least one aspect, a device including: an input to receive a packet from one of a plurality of network devices, the plurality of network devices configured to communicate with one or more others of the network devices using a plurality of packets; and circuitry configured to control packet switching of the plurality of packets, at least one packet including: a switch tag including a tag portion embedded with switching information and an extended tag portion embedded with additional switching information, the switching information and the additional switching information configured to control a switching pattern associated with the at least one packet.
    • 在分组交换网络中用于管理分组的方法和装置在至少一个方面包括:设备,包括:用于从多个网络设备之一接收分组的输入,所述多个网络设备被配置为与一个或多个 使用多个分组的其他网络设备; 以及电路,被配置为控制所述多个分组的分组交换,所述至少一个分组包括:包括嵌入有交换信息的标签部分的交换标签和嵌入​​有附加切换信息的扩展标签部分,所述切换信息和所述附加切换信息被配置 以控制与所述至少一个分组相关联的切换模式。
    • 40. 发明申请
    • APPARATUS AND METHODS FOR INDIVIDUAL ADDRESSING AND NOISE REDUCTION IN ACTUATOR ARRAYS
    • US20130257318A1
    • 2013-10-03
    • US13989979
    • 2011-11-17
    • Andreas Haber EricDaniel LewinShay KaplanMeir Ben SimonYuval Cohen
    • Andreas Haber EricDaniel LewinShay KaplanMeir Ben SimonYuval Cohen
    • H02N1/00
    • H04R19/02H02N1/006H04R1/403H04R3/06H04R3/12Y10T29/49117
    • Apparatus for generating a target physical effect, at least one attribute of which corresponds to at least one characteristic of a digital input signal sampled periodically, the apparatus comprising a multiplicity of electrostatic actuator elements, each comprising a moving element moving between first and second electrodes, the multiplicity of electrostatic actuator elements including Nr first subsets (R-subsets) of actuator elements and Nc second subsets (C-subsets) of actuator elements, wherein a first partitioning of the multiplicity of actuator elements yields the Nr first subsets (R-subsets) and a second partitioning of the multiplicity of actuator elements yields the Nc second subsets (C-subsets); a first plurality of Nr electrical connections (R-wires) interconnecting the moving elements of actuator elements in each R-subset, such that the moving element of any actuator element in each individual R-subset is electrically connected to the moving elements of all other actuator elements in the individual R-subset, and electrically isolated from the moving elements of all actuator elements not in the individual R-subset; a second plurality of Nc electrical connections (A-wires) interconnecting the first electrodes of actuator elements in each C-subset, such that the first electrode of any actuator element in each individual C-subset is electrically connected to the first electrode of all other actuator elements in the individual C-subset, and electrically isolated from all actuator elements not in the individual C-subset; a third plurality of Nc electrical connections (B-wires) interconnecting the second electrodes of actuator elements in each C-subset, such that the second electrode of any actuator element in each individual C-subset is electrically connected to the second electrode of all other actuator elements in the individual C-subset, and electrically isolated from all actuator elements not in the individual C-subset; and a controller electrically connected to the first, second and third pluralities of electrical connections, operative to receive a digital input signal, and to apply one of a predetermined, finite set of electric potentials to each of said electrical connections respectively, such that resulting movements of the moving elements together produce the desired physical effect.