To architect this utility to run as a fast as possible, the buffer manipulator has been coded such that it doesn't have to give data to a specific device controller. 为了为这个实用程序设计尽可能快的架构,在对缓冲区操纵者编写代码时,已经使它不必将数据发给特定的控制器。
Optimized Design of USB Device Controller Endpoint Buffer Regional USB设备控制器端点缓冲区的优化设计
Design and Realization of PCI Target Device Controller PCI总线从设备控制器的设计与实现
The Hardware Circuit Design and Implement of the USB Device Controller USB设备控制器的硬件电路设计与实现
A complete USB system consists of host controller, USB hub and device controller. 一个完整的USB系统包括主机控制器,集线器和设备控制器三个主要端点。
This paper describes the design and implementation of a device controller by using PC/ 104 computer, which is supposed to be used in the control system of Shanghai Synchrotron Radiation Facility. 介绍了采用PC/104的EPICS设备控制器的设计,详细分析了其软硬体结构,并给出了原理性测试结果。
Design of arc suppression and over voltage protective device controller based on DSP 基于DSP的消弧过电压保护装置控制器设计
Robot Operating System Peripheral Device Controller Development 机器人作业系统周边装置控制器的开发
No Devices Found. Do you have a high speed backup device controller which you would like to configure? 找不到任何设备。是否需要配置高速备份设备控制器?
The USB device controller is verified under PC's plug and play. 其中USB设备控制器达到了与PC机即插即用的目的。
Design of Serial Interface Engine in USB Device Controller USB设备控制器中串行接口引擎的设计
Design and Implementation of a Full-Speed USB Device Controller Interface IP-core 全速USB设备控制器接口IP核的设计与实现
The method how to design the control module of liquid crystal device controller is introduced. 文中重点介绍了液晶控制器中控制模块的设计方法。
And the design of USB device controller is verified under FPGA flow. At last the communication between LED and host is realized. 所设计的USB设备控制器通过了FPGA验证,最终成功地实现了LED灯和主机之间的通信。
The RTL verification and gate level verification are discussed second. The synthesis of USB device controller is introduced next. The synthesis of RAM in the FPGA is discussed in detail lastly. 首先给出了USB设备端控制器的模块结构划分方案,然后给出了RTL级和门级的验证测试方案,最后讨论了整个芯片面向FPGA的综合过程,并详细介绍了FPGA中RAM的综合情况。
In this essay, design and realization of Class 4 MVB device controller are discussed. 本文主要论述了MVB四类设备控制器研究的设计与实现。
Based on the function of the class 1 MVB controller to realize, a top-down module design method is adopted and the design is divided into three modules: encoder, decoder and class 1 device controller. 本文采用自顶向下的模块化设计方法,根据MVB1类设备控制器要实现的功能,将设计划分为3个模块:发送模块、接收模块和MVB1类模式控制模块。
Design USB Device Controller Based on FPGA Technology 基于FPGA技术的USB设备控制器的设计
The paper introduces an interface used by FPGA for USB peripheral device controller, describes the two types of transactions in USB device controller, and presents the approach to solve the problem with state machine. The results be also can used in embedded system. 介绍了一种可以在FPGA上实现的USB设备控制器接口,讨论了USB设备控制器接口中存在的两类事务,给出了采用状态机的解决方法和设计要点。
In conclusion, this paper realized the USB device controller and USB host controller. 本文完成了USB设备控制器和主控制器的设计和实现。
According to the USB1.1 protocol, this paper analyzes the function of SIE module in USB device controller. 根据USB1.1总线协议,分析了USB设备控制器中串行接口引擎SIE模块的功能。
The Research of USB Based Device Controller 通用USB接口设备控制器的研究
The Design of Class 1 MVB Device Controller Based FPGA MVB1类设备控制器的FPGA设计
Because the MCU& USB device controller IP core designed in this paper mainly aims to low speed functional device like mouse, keyboard and joystick, the design of device controller only implements control transferring and interrupt transferring. 由于本文设计的MCU和USB中控制器IP核主要是针对鼠标、键盘、游戏杆等低速功能设备,所以本设计中设备控制器只实现了控制传输,中断传输两种数据传输类型。
Then the paper focuses on the approach of the design of MCU and USB device controller IP core, describes the system structure and the design of each function module in detail and presents the applied scheme of function module in the system. 接着重点阐述了MCU&USB设备控制器IP核的设计方法,详细描述其组成结构及各功能模块的设计,并介绍其在系统中的应用方案。
Firstly, this paper describes the status of intelligent substation device controller and intelligent switch, raised the need for development of this controller device. 本文首先对智能变电站以及智能开关设备控制器的现状进行描述,提出开发此控制器设备的必要性。
To make the switches intelligent, we introduced new equipment in the processing layer, intelligent switching device controller. 为实现开关设备的智能化,需要在变电站的过程层中引入了新的设备,即智能开关设备控制器。
The design of the USB device controller for the division and design of modular function and structure have finished, using top-down design method. 在设计上,本文采用自顶向下的设计方法,对USB设备控制器进行了模块功能和结构的划分及设计;在验证上,本文对设计进行了功能仿真和时序仿真以及硬件加速验证。
Siemens S7-200 PLC is selected as the device controller and drive program of move device is compiled. 选用西门子S7-200的PLC作为本传动系统的控制器,编写了装置的驱动程序。