Clustrix双核及四核设备包含两个1gbps以太网口和两个20gbps的InfiniBand背板端口,同时还装配32gbRAM和7个160gb固态硬盘。
The Clustrix dual quad-core appliance includes two 1gbps Ethernet front-end ports and two 20gbps InfiniBand back-end ports, along with 32gb of RAM and seven 160gb solid state drives.
另外还采用了两块双口ram缓存结构,节省了CPU处理时间与其他资源,CPU采用基于ARM内核的LPC 2106。
In addition, cache using double dual ports RAM is used to save process time and other resource of CPU, we use LPC2106 cored by ARM as CPU.
并以IDT70 V 24为例,详细说明了双口ram在由DSP处理器和FPGA构成的多机系统中的具体应用。
Using IDT70V24 as a example, the concrete apply of dual-port RAM in multi-processor system consisting of DSP and FPGA is explained in detail.
首先将接收到的PCM数据流进行位同步,然后经过一双口ram作为缓冲,直接送入微机进行实时帧同步码粗同步。
PCM stream which has been bit blocked is sent into computer, buffered by a dual port static ram, then it's frame blocked roughly.
考虑到IED的实时性和可靠性,对双口ram选择了中断工作方式。
Considering that the IED requires high reliability and real-time performance, the interrupt manner was adopted of dual-port RAM.
本文描述基于双口ram的同步fifo存储器设计。
In this article, design of synchronous FIFO based on dual-RAM is described.
介绍了在磁悬浮的主轴控制器中实现双CPU之间数据通信的双口RAM设计。
The design of dual-access RAM which can realize data communication between two CPUs in main shaft controllers of magnetic suspension is introduced.
使用这种方法,既可以避免使用昂贵的双口ram,又可减少印刷板面积,实践证明,这种方法是稳定可靠的。
Thus the expensive dual-port RAM can be replaced and the area of PCB reduced. It has been proved in practice that the method is stable and reliable.
介绍了一种在51单片机采集系统中,使用普通SRAM,采用时分复用模似双口ram的方法。
The paper introduces a method of simulating dual-port RAM with SRAM by TDMA in the data collecting system composed of an m 51 microprocessor.
借助于单片双口RAM,设计了一种新颖的数据传输结构,并利用乒乓技术实现对实时高速图像数据的缓冲。
With a dual-port RAM, a novel data transmission structure was designed, and ping-pong technique was used to implement the buffering of the high-speed real-time image data.
借助于单片双口RAM,设计了一种新颖的数据传输结构,并利用乒乓技术实现对实时高速图像数据的缓冲。
With a dual-port RAM, a novel data transmission structure was designed, and ping-pong technique was used to implement the buffering of the high-speed real-time image data.
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