The serial communication interface chip design was realized by application of schematic diagram and VHDL language.
采用自顶向下的设计方法,用原理图和VHDL语言这两种输入对串行通信接口芯片进行设计。
With regards to the hardware design, a DSP chip TMS320F206 is adopted as CPU, and builds a hardware platform of sample, control, communication and human interface.
硬件设计方面采用DSP芯片TMS320F206为核心处理器,建立起基本的采样、控制、通信和人机接口硬件平台。
This terminal's hardware design mainly includes the choice of microprocessor chip, the interface design of MC35 module of communication, the circuit design of memory modules and serial port and so on.
该终端的硬件设计,主要包括微处理器芯片的选型、MC35通讯模块的接口设计、存储器单元及串口电路设计等。
The USB-HART communication interface developed based on FT8U232BM chip(replaces) RS-232(interface. ) It features fast speed to transmit, using less resource and plug-and-play.
基于FT8U232BM芯片开发的USB-HART通信接口,以其传输速度快、占用资源少以及真正意义上的即插即用等优点,正在逐步取代RS-232接口。
They include signal sampling circuit, man-machine interface circuit and control circuit, main chip interface circuit, zero-crossing triggering circuit, and communication circuit, etc.
它们包括信号采样电路、人机接口电路、主控芯片接口电路、过零触发电路及通讯电路等。
The VHDL program embedded in the FPGA chip includes: interface combine ISA bus and FPGA, serial asynchronous communication module for transmitting and receiving.
该接口卡FPGA芯片内部VHDL程序含:ISA总线与FPGA接口、串行异步通信发送及接收模块。
The hardware structure is introduced, emphatically the communication interface circuit. The time sequence logic problem between CAN controller chip SJA1000 and AT91RM9200 is solved using the CPLD.
介绍了新型通信控制器的硬件设计,着重描述了通信接口部分,用复杂可编程逻辑器件CPLD解决了CAN 控制器芯片SJA 1000与AT 91RM 9200之间的时序逻辑问题。
Based on the USB bus interface chip CH375, we design the locomotive signals data recording system, and detail the design of communication interface of CH375 and TMS320F2812.
基于USB总线接口芯片CH375,设计了机车信号记录仪数据记录系统,并详细阐述了CH375与TMS320F 2812之间的接口设计。
IBM PC and single chip microcomputer communication hardware circuit, software interface and measure to improve reliability of communication.
IBMPC机与单片机通讯的硬件电路、软件接口以及提高通讯可靠性的措施。
By studying the serial port of the MCS-51, this article briefly expatiated the single chip microcomputer communication mode and the theory of the serial interface.
通过对MCS - 5 1系列单片机串行口的研究,简要阐述了单片机通信方式及串行接口的原理。
Based on introduction of communication integrated circuit CSC5087, SC8870, the interface with singal chip computer and its application are presented.
在介绍通讯集成电路CSC5087和SC 8870的基础上,给出了与单片机的接口方法和应用。
The technology of interface and communication for 89c51 single-chip microcomputers and personal computer is introduced and its application is given in this paper.
以89c51为例介绍了多片机与上位微机组成所分布式测控系统的硬件接口与通讯技术,并给出了该技术的应用实例。
The paper introduces an approach of serial communication of PIC16F877 single chip computers with PC and provides a hardware interface circuit and a communication source program.
介绍了PIC16F877单片机与PC机实现串行通信的一种方法,并给出了硬件接口电路及通信源程序。
Its hardware components, function testing items, design of software, communication between industrial PC with device by using PCI interface chip (S5933) are introduced.
文章介绍了某型接口分组件功能测试系统的硬件组成、功能测试项目、软件设计和利用PCI接口芯片(S5 93 3)实现工业PC机和设备的通讯。
Constitutes the distributed data collection system with the multicomputer communication mode of serial interface of 8031 single chip micro.
利用8031单片机串行口的多机通讯模式,构成集散式数据采集系统。
With some examples it introduced the use of single chip microcomputer serial interface in asynchronous multitude machines communication.
通过实例,介绍了单片机串行口的异步多机通信的应用。
With the USB interface chip controlled by microcontroller, the communication between the card and PC is achieved.
控制卡通过单片机对USB通信接口芯片的控制,实现PC计算机与控制卡通过USB接口的通信。
The program writes object code of ladder diagram of PLC into FLASH of single-chip microcomputer through RS232 interface with imitating mitsubishi communication protocol.
该程序采用仿三菱通信协议将PLC梯形图目的代码通过RS232接口更新写入到单片机白勺FLASH中。
The program writes object code of ladder diagram of PLC into FLASH of single-chip microcomputer through RS232 interface with imitating mitsubishi communication protocol.
该程序采用仿三菱通信协议将PLC梯形图目的代码通过RS232接口更新写入到单片机白勺FLASH中。
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