外文翻译---嵌入式单片机温度控制器设计
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1、PDF外文:http:/ 2460 字 毕业设计(论文) 外文翻译(原文) AN EMBEDDED SINGLE CHIPTEMPERATURE CONTROLLER DESIGN J. Jayapandian and Usha Rani Ravi Design Development & Services Section, Materials Science Division Indira Gandhi Centre for Atomic Research, Kalpa Kama 603 102. Tamil Nadu. India ABSTRACT This
2、 paper describes a single chip embedded temperature controller design programmed in a single Programmable System on Chip (PSoC);a mixedarray logicconsists of analog,digital and digitalcommunication blocks within in it.Thevirtual instrument controlprogram written in Labview ver.7.1,a graphical langua
3、ge,provides user friendly menudriven window based control panel,interacts with the single PSoC chip design for sensingand controlling the temperature.This simplecost effectiveembedded design findspotential application in laboratory as well as in industries.This deign can also be made as a standalone
4、 system without PC by programming LED/ LCD display and key padattachment modules in same PSoC chip. 1. INTRODUCTION The advent of intelligent programmable embedded silicon designs provides the ability to implement anyrequired hardware programmatically for the design automationin industries and labor
5、atories.Recent trend in laboratory as well as in industrial automation designs usesminimal hardware and maximum support of software.Theprogrammableembeddedcomponents and application software available in the market enables the designer for userfriendlycost effective design solution for any system au
6、tomation.Temperature controllersare playing vital role in industries and laboratories.To accurately control process temperaturewithout extensive operator involvement,atemperature control system relies upon a controller,which accepts a temperature sensor such as a thermocouple or RTD as input.It comp
7、aresthe actual temperature to the desired control temperature,or set point,and provides an outputto a control element.The controller is one of the major parts of the entire control system,and the whole system should be analyzed in selecting the proper controller.This paperdescribes a novel single ch
8、ip temperature controller design with Cypress MicrosystemsProgrammable System on Chip (PSoC).Virtual instrument control program written in LabVIEWver.7.1 interacts with the embedded PSoC design and senses and controls the temperature offurnace / load. 2. PROGRAMMABLE SYSTEM ON CHIP (P Soc) While San
9、dinexpensiveinterface tosensors,andmore.CypressSystem-Chip(PSoC)architectureoffers a flexible,economical solution for a wide variety of applications.This paperdescribes the design of a temperature controller on a single CY8C27143,8 pin PSoC chip.Asshownin fig.1,it features four main areas:PSoC core,
10、digitalsystem,analog system,andresources including in/out ports. This architecture allows the user to create customize Alpheratz configurations thatmatch the requirements of each individual application.The UARTinterface, coupled with configurable analog and digital peripherals makes the CY8C27143 tr
11、ulyuniversal in its connections to the external world.The PSoC core includes:an M8Cmicrocontroller;32KBytes of program flash memory;2Kbyteof data RAM;internal 24 oscillator;sleep and watchdog timer;general-purpose input/outputpins (GPIO) allowing anypin to be used as digital input or output,and most
12、 pins to be used as analog inputs or outputs.Every pin can be used as a digital or analog interrupt.The digital system is made up of 8digital PSoC blocks.Each block is an 8-bit resource that can be used alone or combined withother blocks to form peripherals.Possible peripherals include:PWMs (8- to 3
13、2-bit);PWMswith dead band (8- to 24-bit);counters (8- to 32-bit);UART 8-bit with selectable parity;SPImaster and slave;cyclical redundancy checker/generator (8- to 32-bit);pseudo randomsequence generators (8- to 32-bit).These digital blocks can be connected to any of the GPIOthrough a series of glob
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