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    • 46. 发明授权
    • Crossbar switch for multi-processor, multi-memory system for resolving
port and bank contention through the use of aligners, routers, and
serializers
    • 用于多处理器,多存储器系统的交叉开关,用于通过使用对准器,路由器和串行器解析端口和组争用
    • US5559970A
    • 1996-09-24
    • US237843
    • 1994-05-04
    • Vinod Sharma
    • Vinod Sharma
    • G06F13/14G06F15/16G06F15/167G06F15/173H04Q11/04G06F13/00
    • H04Q11/0478G06F15/17375H04L49/253H04L49/101H04L49/3018H04L49/40
    • A self-routing crossbar switch interconnects a plurality of processors with a plurality of memory modules. In a self-routing crossbar switch connecting N processors and N memory modules, a processor is connected to each input port and a memory module is connected to each output port; each of the N processors can transmit a memory request simultaneously provided that there is no port contention and no bank contention. Port contention occurs if two or more processors attempt to access the same output port of the self-routing crossbar switch at the same time. The memory module consists of several memory banks that are connected in an interleaved manner. If the memory bank is accessed before it is ready to accept a new request, bank contention is said to have occurred. In the self-routing crossbar switch the requests directed to a port are first passed through an aligner and a conflict resolution logic. There is one aligner associated with each output port. The aligner inputs the requests directed at an output port and aligns them so that, at the output of the aligner, all the active requests appear in a consecutive fashion. The conflict resolution logic resolves the port and bank contention.
    • 自路由交叉开关将多个处理器与多个存储器模块互连。 在连接N个处理器和N个存储器模块的自路由交叉开关中,处理器连接到每个输入端口,并且存储器模块连接到每个输出端口; N个处理器中的每一个可以同时发送存储器请求,只要没有端口争用并且没有银行争用。 如果两个或多个处理器同时尝试访问自路由交叉开关的相同输出端口,则会发生端口争用。 存储器模块由以交错方式连接的多个存储体组成。 如果在准备好接受新请求之前存储存储器被访问,则认为银行争用已经发生。 在自路由交叉开关中,引导到端口的请求首先通过对齐器和冲突解决逻辑。 每个输出端口都有一个对齐器。 对准器输入针对输出端口的请求并对齐它们,使得在对齐器的输出处,所有活动请求以连续的方式出现。 冲突解决逻辑解决了港口和银行的争论。
    • 48. 发明申请
    • RATE CONTROL DURING AF USING CELLULAR INTERVENTION TO MODULATE AV NODE
    • 在使用细胞干扰调节AV节点的AF期间的速率控制
    • US20120130303A1
    • 2012-05-24
    • US13359949
    • 2012-01-27
    • Vinod SharmaDaniel C. Sigg
    • Vinod SharmaDaniel C. Sigg
    • A61K31/7052A61P9/00A61N1/362A61K35/00
    • A61N1/362A61K9/0019A61K31/221A61K38/177A61N1/0568
    • A biologic intervention method and apparatus generates a persistent modification to an AV node that is physiologically stable after the agent has matured but is alterable with subsequent application of an agent. Specifically, the generic agent is used to modulate a node in a cardiac conduction system including rate control using one and a combination of a family of K+ channel or equivalent. Specifically, the channel is implemented to slow conduction by generating an outward current during optimization of action potential and repolarization phase thus decreasing the current that is available to excite downstream cells. A Kv 1.3 channel, for example, may be used as the biologic channel. The invention enables reversal of the modulation or adjustment for various heart rates (BPM) based on medical and patient-specific needs.
    • 生物干预方法和装置对于在该药剂已经成熟但随后随后施用药剂而可变化的生理稳定的AV节点产生持久性修饰。 具体地,通用代理用于调制心脏传导系统中的节点,包括使用一个K +通道或等效物系的组合的速率控制。 具体地,通过在动作电位和复极相优化期间产生向外的电流来实现缓慢传导,从而减少可用于激发下游单元的电流。 例如,可以使用Kv1.3通道作为生物通道。 本发明能够根据医疗和患者特定的需要逆转各种心率(BPM)的调节或调整。