日本黄色一级经典视频|伊人久久精品视频|亚洲黄色色周成人视频九九九|av免费网址黄色小短片|黄色Av无码亚洲成年人|亚洲1区2区3区无码|真人黄片免费观看|无码一级小说欧美日免费三级|日韩中文字幕91在线看|精品久久久无码中文字幕边打电话

當(dāng)前位置:首頁 > 嵌入式 > 嵌入式教程
[導(dǎo)讀]Cypress CY8CKIT-025分辨率0.1度C溫度測量解決方案

Cypress公司的CY8CKIT-025 PSoC® 精密模擬溫度傳感器擴(kuò)展板套件(EBK)包括5個溫度傳感器,能方便快速測量和控制溫度,溫度測量分辨率達(dá)到0.1度C.CY8CKIT-025 EBK設(shè)計和CY8CKIT-030 PSoC 3開發(fā)板或CY8CKIT-001 PSoC開發(fā)板 一起使用,提供完整的單片溫度檢測和控制解決方案.本文介紹了PSoC®5: CY8C52系列產(chǎn)品主要特性,功能框圖,ARM Cortex-M3框圖以及CY8CKIT-025 PSoC® 精密模擬溫度傳感器擴(kuò)展板套件(EBK)主要特性,電路圖,材料清單和PCB元件布局圖.

With its unique array of configurable blocks, PSoC® 5 is a true system-level solution providing microcontroller unit (MCU), memory, analog, and digital peripheral functions in a single chip. The CY8C52 family offers a modern method of signal acquisition, signal processing, and control with high accuracy, high bandwidth, and high flexibility. Analog capability spans the range from thermocouples (near DC voltages) to ultrasonic signals. The CY8C52 family can handle dozens of data acquisition channels and analog inputs on every GPIO pin. The CY8C52 family is also a high-performance configurable digital system with some part numbers including interfaces such as USB and multimaster I2C. In addition to communication interfaces, the CY8C52 family has an easy to configure logic array, flexible routing to all I/O pins, and a high-performance 32-bit ARM® Cortex™-M3 microprocessor core. Designers can easily create system level designs using a rich library of prebuilt components and boolean primitives using PSoC Creator™, a hierarchical schematic design entry tool. The CY8C52 family provides unparalleled opportunities for analog and digital bill of materials integration while easily accommodating last minute design changes through simple firmware updates.

CY8C52主要特性:

 32-bit ARM Cortex-M3 CPU core

 DC to 40 MHz operation

 Flash program memory, up to 256 KB, 100,000 write cycles, 20-year retention and multiple security features

 Up to 64 KB SRAM memory

 128 bytes of cache memory

 2-KB electrically erasable programmable read-only memory (EEPROM) memory, 1 million cycles, and 20 years retention

 24-channel direct memory access (DMA) with multilayer AMBA high-performance bus (AHB) bus access

• Programmable chained descriptors and priorities

• High bandwidth 32-bit transfer support

 Low voltage, ultra low power

 Operating voltage range: 2.7 V to 5.5 V

 6 mA at 6 MHz

 Low power modes including:

• 2-μA sleep mode

• 300-nA hibernate mode with RAM retention

 Versatile I/O system

 46 to 70 I/Os (60 GPIOs, 8 SIOs, 2 USBIOs))

 Any GPIO to any digital or analog peripheral routability

 LCD direct drive from any GPIO, up to 46 × 16 segments

 CapSense® support from any GPIO

 1.2 V to 5.5 V I/O interface voltages, up to four domains

 Maskable, independent IRQ on any pin or port

 Schmitt trigger transistor-transistor logic (TTL) inputs

 All GPIOs configurable as open drain high/low, pull up/down, High-Z, or strong output

 25 mA sink on SIO

 Digital peripherals

 20 to 24 programmable logic device (PLD) based universal digital blocks (UDBs)

 Full-Speed (FS) USB 2.0 12 Mbps using a 24 MHz external oscillator

 Four 16-bit configurable timer, counter, and PWM blocks

 Library of standard peripherals

• 8-, 16-, 24-, and 32-bit timers, counters, and PWMs

• SPI, UART, and I2C

• Many others available in catalog

Library of advanced peripherals

• Cyclic redundancy check (CRC)

• Pseudo random sequence (PRS) generator

• Local interconnect network (LIN) bus 2.0

• Quadrature decoder

Analog peripherals (2.7 V  VDDA  5.5 V)

 1.024 V ±1% internal voltage reference

 Successive approximation register (SAR) analog-to-digital converter (ADC), 12-bit at 700 ksps

 One 8-bit, 5.5-Msps current DAC (IDAC) or 1-Msps voltage DAC (VDAC)

 Two comparators with 95-ns response time

 CapSense support

 Programming, debug, and trace

 Serial wire debug (SWD) and single-wire viewer (SWV) interfaces

 Cortex-M3 flash patch and breakpoint (FPB) block

 Cortex-M3 data watchpoint and trace (DWT) generates data trace information

 Cortex-M3 Instrumentation Trace Macrocell (ITM) can be used for printf-style debugging

 DWT and ITM blocks communicate with off-chip debug and trace systems via the SWV interface

 Bootloader programming supportable through I2C, SPI, UART, USB, and other interfaces[!--empirenews.page--]

 Precision, programmable clocking

 3 to 24 MHz internal oscillator over full temperature and voltage range

 4 to 25 MHz crystal oscillator for crystal PPM accuracy

 Internal PLL clock generation up to 40 MHz

 32.768 kHz watch crystal oscillator

 Low power internal oscillator at 1, 33, and 100 kHz

 Temperature and packaging

 –40℃ to +85℃ degrees industrial temperature

 68-pin QFN and 100-pin TQFP package options

 

 

圖1.CY8C52簡化方框圖:包括

 ARM Cortex-M3 CPU subsystem

 Nonvolatile subsystem

 Programming, debug, and test subsystem

 Inputs and outputs

 Clocking

 Power

 Digital subsystem

 Analog subsystem

 

 

圖2.CY8C52中ARM Cortex-M3框圖

CY8CKIT-025 PSoC® 精密模擬溫度傳感器擴(kuò)展板套件(EBK)

The CY8CKIT-025 PSoC® Precision Analog Temperature Sensor Expansion Board Kit (EBK) includes 5 temperature sensors and examples projects to make temperature sensing and control design quick and easy. This kit enables the designer to measure temperature accurately to a resolution of 0.1℃.

The CY8CKIT-025 EBK is designed for use with the CY8CKIT-030 PSoC 3 Development Kit and the CY8CKIT-001 PSoC Development Kit (all sold separately). Combining CY8CKIT-025 EBK with a development kit provides a complete single chip temperature sensing and control solution.

CY8CKIT-025 EBK包括:

PT100 Class B Resistive Temperature Detector (RTD)

Type K Thermocouple

NTC Thermistor

2 Temperature Diodes (2N3904 transistors)

DS600 IC temperature sensor

Examples projects for temperature sensing measurement, combined temperature and voltage measurement and fan control

Includes a bonus CY8CKIT-012 PSoC Prototyping and Development Expansion Board

Quick Start Guide

Resource CD

溫度傳感器性能比較表:

 

 

 

 

圖3.CY8CKIT-025 PSoC精密模擬溫度傳感器EBK外形圖

 

 

圖4.CY8CKIT-025 PSoC精密模擬溫度傳感器EBK電路圖

CY8CKIT-025 PSoC精密模擬溫度傳感器EBK材料清單:

 

 

 

 

圖5.CY8CKIT-025 PSoC精密模擬溫度傳感器EBK PCB元件布局圖

本站聲明: 本文章由作者或相關(guān)機(jī)構(gòu)授權(quán)發(fā)布,目的在于傳遞更多信息,并不代表本站贊同其觀點,本站亦不保證或承諾內(nèi)容真實性等。需要轉(zhuǎn)載請聯(lián)系該專欄作者,如若文章內(nèi)容侵犯您的權(quán)益,請及時聯(lián)系本站刪除。
換一批
延伸閱讀

LED驅(qū)動電源的輸入包括高壓工頻交流(即市電)、低壓直流、高壓直流、低壓高頻交流(如電子變壓器的輸出)等。

關(guān)鍵字: 驅(qū)動電源

在工業(yè)自動化蓬勃發(fā)展的當(dāng)下,工業(yè)電機(jī)作為核心動力設(shè)備,其驅(qū)動電源的性能直接關(guān)系到整個系統(tǒng)的穩(wěn)定性和可靠性。其中,反電動勢抑制與過流保護(hù)是驅(qū)動電源設(shè)計中至關(guān)重要的兩個環(huán)節(jié),集成化方案的設(shè)計成為提升電機(jī)驅(qū)動性能的關(guān)鍵。

關(guān)鍵字: 工業(yè)電機(jī) 驅(qū)動電源

LED 驅(qū)動電源作為 LED 照明系統(tǒng)的 “心臟”,其穩(wěn)定性直接決定了整個照明設(shè)備的使用壽命。然而,在實際應(yīng)用中,LED 驅(qū)動電源易損壞的問題卻十分常見,不僅增加了維護(hù)成本,還影響了用戶體驗。要解決這一問題,需從設(shè)計、生...

關(guān)鍵字: 驅(qū)動電源 照明系統(tǒng) 散熱

根據(jù)LED驅(qū)動電源的公式,電感內(nèi)電流波動大小和電感值成反比,輸出紋波和輸出電容值成反比。所以加大電感值和輸出電容值可以減小紋波。

關(guān)鍵字: LED 設(shè)計 驅(qū)動電源

電動汽車(EV)作為新能源汽車的重要代表,正逐漸成為全球汽車產(chǎn)業(yè)的重要發(fā)展方向。電動汽車的核心技術(shù)之一是電機(jī)驅(qū)動控制系統(tǒng),而絕緣柵雙極型晶體管(IGBT)作為電機(jī)驅(qū)動系統(tǒng)中的關(guān)鍵元件,其性能直接影響到電動汽車的動力性能和...

關(guān)鍵字: 電動汽車 新能源 驅(qū)動電源

在現(xiàn)代城市建設(shè)中,街道及停車場照明作為基礎(chǔ)設(shè)施的重要組成部分,其質(zhì)量和效率直接關(guān)系到城市的公共安全、居民生活質(zhì)量和能源利用效率。隨著科技的進(jìn)步,高亮度白光發(fā)光二極管(LED)因其獨特的優(yōu)勢逐漸取代傳統(tǒng)光源,成為大功率區(qū)域...

關(guān)鍵字: 發(fā)光二極管 驅(qū)動電源 LED

LED通用照明設(shè)計工程師會遇到許多挑戰(zhàn),如功率密度、功率因數(shù)校正(PFC)、空間受限和可靠性等。

關(guān)鍵字: LED 驅(qū)動電源 功率因數(shù)校正

在LED照明技術(shù)日益普及的今天,LED驅(qū)動電源的電磁干擾(EMI)問題成為了一個不可忽視的挑戰(zhàn)。電磁干擾不僅會影響LED燈具的正常工作,還可能對周圍電子設(shè)備造成不利影響,甚至引發(fā)系統(tǒng)故障。因此,采取有效的硬件措施來解決L...

關(guān)鍵字: LED照明技術(shù) 電磁干擾 驅(qū)動電源

開關(guān)電源具有效率高的特性,而且開關(guān)電源的變壓器體積比串聯(lián)穩(wěn)壓型電源的要小得多,電源電路比較整潔,整機(jī)重量也有所下降,所以,現(xiàn)在的LED驅(qū)動電源

關(guān)鍵字: LED 驅(qū)動電源 開關(guān)電源

LED驅(qū)動電源是把電源供應(yīng)轉(zhuǎn)換為特定的電壓電流以驅(qū)動LED發(fā)光的電壓轉(zhuǎn)換器,通常情況下:LED驅(qū)動電源的輸入包括高壓工頻交流(即市電)、低壓直流、高壓直流、低壓高頻交流(如電子變壓器的輸出)等。

關(guān)鍵字: LED 隧道燈 驅(qū)動電源
關(guān)閉