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2400fa.pdf
300mV below ground and 300mV above V . CC or 60Hz). The bandwidth of signals not rejected by the 25 LTC2400 U TYPICAL APPLICATIONS SYNCHRONIZATION OF MULTIPLE LTC2400s Increasing the Output Rate Using Multiple LTC2400s SincetheLTC2400’sabsoluteaccuracy(totalunadjusted AsecondapplicationusesmultipleLTC2400stoincrease
in „hochauflösende Temperaturmessung“ · Mikrocontroller und Digitale Elektronik ·
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LTC_2400_24Bit-ADC.pdf
300mV below ground and 300mV above V . CC or 60Hz). The bandwidth of signals not rejected by the 25 LTC2400 U TYPICAL APPLICATIONS SYNCHRONIZATION OF MULTIPLE LTC2400s Increasing the Output Rate Using Mulitple LTC2400s SincetheLTC2400’sabsoluteaccuracy(totalunadjusted AsecondapplicationusesmultipleLTC2400stoincrease
in „ADC, Auslösung erhöhen“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan.pdf
SCK 3 3 D C C F GND GND GND GND GND 1 47k 1 G F CS 5 CS V V R C6 2 2 C16 A A 1n TLC272 R22 R17 D6 LTC2400 29 Reset(PC6) 150k 1k TLC272 10k BAT81 4 8 28 R8 4 4 1µ 30 PC5 (ADC5/SCL) 27 R12 GND VCC GND RXD 31 PD0 (RXD) PC4 (ADC4/SDA) 26 SCK GND TXD 32 PD1 (TXD) PC3 (ADC3) 25 SCK 100k CE 1 PD2 (INT0) PC2
in „Akku-Lader mit AVR“ · Mikrocontroller und Digitale Elektronik ·
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Akkulader4.bas
Portd.2 'Chipselect 'SCK --> Portd.4 'Serial Clock 'SDI --> Portd.3 'Serial Data Input 'A/D-Wandler LTC2400 'CS --> Portc.2 'Chipselect 'SCK --> Portc.4 'Serial Clock 'SDO --> Portc.3 'Serial Data Output 'Temperatursensor DS1821 'DQ --> Portb.1 'Datenleitung '############################### Konstanten #
in „AVR resettet auf mysteriöse Art“ · Mikrocontroller und Digitale Elektronik ·
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Akkulader5.bas
Portd.2 'Chipselect 'SCK --> Portd.4 'Serial Clock 'SDI --> Portd.3 'Serial Data Input 'A/D-Wandler LTC2400 'CS --> Portc.2 'Chipselect 'SCK --> Portc.4 'Serial Clock 'SDO --> Portc.3 'Serial Data Output 'Temperatursensor DS1821 'DQ --> Portb.1 'Datenleitung '############################### Konstanten #
in „DS1821 Problem“ · Mikrocontroller und Digitale Elektronik ·
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1LTC2433-1fa.pdf
5ppm/°C Drift LT1461 Micropower Precision LDO Reference High Accuracy 0.04%Max, 3ppm/°C Max Drift LTC2400 24-Bit, No Latency ADC in SO-8 0.3ppmNoise, 4ppmINL, 10ppmTotal Unadjusted Error, 200 A LTC2401/LTC2402 1-/2-Channel, 24-Bit, No Latency ADC in MSOP 0.6ppmNoise, 4ppmINL, 10ppmTotal Unadjusted Error
in „AVR ISP mkII sagt Kurzschluss zwischen SCK & MOSI“ · Mikrocontroller und Digitale Elektronik ·
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From_analog_to_digital_-_p281.pdf
advanced to explain why ADCs are so far from the noise limit: 12 292 F ROM ANALOG TO DIGITAL 24 Flash LTC2400 ADS1210 Pipeline ADS1212 Sigma-Delta 20 Dual-slope ADS1230 ADS1250 AD7641 Noise limit s AD7631 b 16 ADS1100 ADS1602 AD7621 ADS5547 n ICL7137 t TC7109 AD7942 LTC2255 l 12 ICL7107 ADS574 ADS5220 LTC224263
in „SNR bei ADCs“ · Analoge Elektronik und Schaltungstechnik ·
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LTC2418.pdf
measurementofasmall incremental changeonasignifi- R1 9 canttareweight,thelackofhistoryeffectsintheLTC2400 VCC 11 REF SDI 20 family is of great benefit. 350Ω 12 REF SCK 18 For those applications that cannot be fulfilled by the BRIDGE 17 21 CH0 SDO LTC2414/LTC2418alone,compensatingforerrorinexter- CS 16
in „4-kanal PT100 Multiplexer 24bit Schaltung, Messbrücke, ratiometrisch, c't lab“ · Analoge Elektronik und Schaltungstechnik ·
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AN_106f.pdf
CONVERTER 182k* 5V ISO 5V ISO SCK CALIBRATE INPUT – 5V ISO 20k 135VAC +V OR SCK VIN LT1006 0.1µF 270VAC LTC2400 + +V FULL SCALE DATA 5V † OUT IN1 OUTPUTS SDO 1µF LTC1967 1k* FOGND CS REF OUT RTN IN2 SDO EN GND + 5V ISO 10µF 4.7k 5V ISO 1µF ISOLATORS = AGILENT-HCPL-2300-010 400mV LT6650 1VDC T1 = BI TECHNOLOGIES
in „Netzspannung messen.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Sensors.shtml.htm
http://www.linear-tech.com/">Linear Technology</a> - <a href="http://www.linear-tech.com/pdf/adc/ltc2400.html">LTC2400</a> 24 bit ADC on a chip <br> NASA -<a href="http://ranier.oact.hq.nasa.gov/Sensors_page/InstHP.html"> Instrument and Sensing Technology</a> - <a href="http://www.nasatechnology.com/
in „CO Gehalt Messen“ · Mikrocontroller und Digitale Elektronik ·
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Linear_Current_Sense_AN105.pdf
MPSA422 5V 10k 1k* 5V LT1460 Hi-Z OUTPUT 2.5V 0V TO 1V = 0mA TO 1mA 1k* VIN VREF FO BUFFERED OUTPUT LTC2400 SCK 5V 0mA TO 1mA = 0V TO 1V5V A-TO-D SDO DIGITAL * = 0.1% METAL FILM RESISTOR + CS INTERFACE = BAT85 A2 1k 10µF LTC1150 OPTIONAL – CLK OUT 39k Q2 + DIGITAL OUTPUT – 2N3904 +0µF V 100k ≈ –3.5V HERE
in „'High Side' Strom Messen - Geht das so ?“ · Analoge Elektronik und Schaltungstechnik ·
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AN105.pdf
MPSA422 5V 10k 1k* 5V LT1460 Hi-Z OUTPUT 2.5V 0V TO 1V = 0mA TO 1mA 1k* VIN VREF FO BUFFERED OUTPUT LTC2400 SCK 5V 0mA TO 1mA = 0V TO 1V5V A-TO-D SDO DIGITAL * = 0.1% METAL FILM RESISTOR + CS INTERFACE = BAT85 A2 1k 10µF LTC1150 OPTIONAL – CLK OUT 39k Q2 + DIGITAL OUTPUT – 2N3904 +0µF V 100k ≈ –3.5V HERE
in „High-Side Strommessung AVR (Shunt)“ · Mikrocontroller und Digitale Elektronik ·