We would like to welcome you as a user of the Allegro CX, a rugged, handheld fi eld PC for data collection. Developed with the input of data collection professionals worldwide, the Allegro CX is adaptable and versatile for use in a wide variety of data collection environments. The Allegro CX continues to utilize our ergonomic, lightweight design that is standard in our line of Allegro Field PCs. This design makes your Allegro easy to use for extended periods while moving to and from data collection sites in the fi eld.
上傳時間: 2014-12-23
上傳用戶:gaojiao1999
Abstract: This application note describes a new generation of digital-input Class D audio amplifiers that achieve high PSRRperformance, comparable to traditional analog Class D amplifiers. More importantly, these digital-input Class D amplifiersprovide additional benefits of reduced power, complexity, noise, and system cost.
上傳時間: 2013-12-20
上傳用戶:JIUSHICHEN
電路連接 由于數碼管品種多樣,還有共陰共陽的,下面我們使用一個數碼管段碼生成器(在文章結尾) 去解決不同數碼管的問題: 本例作者利用手頭現有的一位不知品牌的共陽數碼管:型號D5611 A/B,在Eagle 找了一個 類似的型號SA56-11,引腳功能一樣可以直接代換。所以下面電路圖使用SA56-11 做引腳說明。 注意: 1. 將數碼管的a~g 段,分別接到Arduino 的D0~D6 上面。如果你手上的數碼管未知的話,可以通過通電測量它哪個引腳對應哪個字段,然后找出a~g 即可。 2. 分清共陰還是共陽。共陰的話,接220Ω電阻到電源負極;共陽的話,接220Ω電阻到電源+5v。 3. 220Ω電阻視數碼管實際工作亮度與手頭現有原件而定,不一定需要準確。 4. 按下按鈕即停。 源代碼 由于我是按照段碼生成器默認接法接的,所以不用修改段碼生成器了,直接在段碼生成器選擇共陽極,再按“自動”生成數組就搞定。 下面是源代碼,由于偷懶不用寫循環,使用了部分AVR 語句。 PORTD 這個是AVR 的端口輸出控制語句,8 位對應D7~D0,PORTD=00001001 就是D3 和D0 是高電平。 PORTD = a;就是找出相應的段碼輸出到D7~D0。 DDRD 這個是AVR 語句中控制引腳作為輸出/輸入的語句。DDRD = 0xFF;就是D0~D7 全部 作為輸出腳了。 ARDUINO CODECOPY /* Arduino 單數碼管骰子 Ansifa 2011-12-28 */ //定義段碼表,表中十個元素由LED 段碼生成器生成,選擇了共陽極。 inta[10] = {0xC0, 0xF9, 0xA4, 0xB0, 0x99, 0x92, 0x82, 0xF8, 0x80, 0x90}; voidsetup() { DDRD = 0xFF; //AVR 定義PortD 的低七位全部用作輸出使用。即0xFF=B11111111對 應D7~D0 pinMode(12, INPUT); //D12用來做骰子暫停的開關 } voidloop() { for(int i = 0; i < 10; i++) { //將段碼輸出PortD 的低7位,即Arduino 的引腳D0~D6,這樣需要取出PORTD 最高位,即 D7的狀態,與段碼相加,之后再輸出。 PORTD = a[i]; delay(50); //延時50ms while(digitalRead(12)) {} //如果D12引腳高電平,則在此死循環,暫停LED 跑 動 } }
上傳時間: 2013-10-15
上傳用戶:baitouyu
A MEMS microphone IC is unique among Analog Devices, Inc., products in that its input is an acoustic pressure wave. For this reason, some specifications included in the data sheets for these parts may not be familiar, or familiar specifications may be applied in unfamiliar ways. This application note explains the specifica-tions and terms found in MEMS microphone data sheets so that the microphone can be appropriately designed into a system.
上傳時間: 2013-10-31
上傳用戶:masochism
Abstract: IC switches and multiplexers are proliferating, thanks to near-continual progress in lowering the supply voltage,incorporating fault-protected inputs, clamping the output voltage, and reducing the switch resistances. The latest of these advancesis the inclusion of precision resistors to allow two-point calibration of gain and offset in precision data-acquisition systems.
上傳時間: 2013-11-12
上傳用戶:acwme
Abstract: This tutorial discusses methods for digitally adjusting the output voltage of a DC-DC converter. The digital adjustmentmethods are with a digital-to-analog converter (DAC), a trim pot (digital potentiometer), and PWM output of a microprocessor.Each method is assessed and several DACs and digital potentiometers presented.
上傳時間: 2013-11-20
上傳用戶:zycidjl
Abstract: This article discusses application circuits for Maxim force/sense digital-to-analog converters (DACs). Applications include:selectable fixed-gain DAC, programmable gain DAC, photodiode bias control, amperometric sensor control, digitally programmablecurrent source, Kelvin load sensing, temperature sensing, and high current DAC output. A brief description of the various DAC outputconfigurations is also given.
標簽: DAC
上傳時間: 2013-11-04
上傳用戶:youmo81
Abstract: Using a DAC and a microprocessor supervisor, the system safety can be improved in industrial controllers, programmablelogiccontrollers (PLC), and data-acquisition systems. The analog output is set to zero-scale (or pin-programmable midscale) when amicroprocessor failure, optocoupler failure, or undervoltage condition occurs. A simple application is shown on how to implement thisfunction.
上傳時間: 2013-10-17
上傳用戶:sjb555
The LTC®1966 is a true RMS-to-DC converter that uses aDS computational technique to make it dramatically simplerto use, significantly more accurate, lower in powerconsumption and more flexible than conventional logantilogRMS-to-DC converters. The LTC1966 RMS-to-DCconverter has an input signal range from 5mVRMS to1.5VRMS (a 50dB dynamic range with a single 5V supplyrail) and a 3dB bandwidth of 800kHz with signal crestfactors up to four.
上傳時間: 2013-10-12
上傳用戶:qilin
The LT®6552 is a specialized dual-differencing 75MHzoperational amplifier ideal for rejecting common modenoise as a video line receiver. The input pairs are designedto operate with equal but opposite large-signal differencesand provide exceptional high frequency commonmode rejection (CMRR of 65dB at 10MHz), therebyforming an extremely versatile gain block structure thatminimizes component count in most situations. The dualinput pairs are free to take on independent common modelevels, while the two voltage differentials are summedinternally to form a net input signal.
上傳時間: 2014-12-23
上傳用戶:13691535575