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rgh20__l-9517-9127_de_.pdf
nach Industriestandard schnelle, berührungslose, zuverlässige Wegmessung mit hervorragender RGH20F/REF Systeme • Integrierte Signalüberwachungs- Optionen und Einstell-LED Unempfindlichkeit gegen Staub, Kratzer REF0004 - 5 µm Auflösung und Leichtölen auf dem Maßband. • Ultra-kompaktes RGH20F/REF REF0020
in „Schrittmotor mit Motortreiber und Encoder in Betrieb nehmen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
w5500.h
the @ref Sn_IR(0) becomes * But when a TCP clientconnection request is failed, @ref Sn_IR(3) becomes and the status of @ref Sn_SR changes to SOCK_CLOSED. */ #define Sn_CR_LISTEN 0x02 /* @brief Send connection
in „Wiznet W5500 Datenübertragung via Ethernet“ · Mikrocontroller und Digitale Elektronik ·
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Datei
W5500.h
becomes * But when a �TCP clientconnection request is failed, Sn_IR(3) becomes and the status of @ref Sn_SR changes to SOCK_CLOSED. */ #define Sn_CR_LISTEN 0x02 /** * @brief Send connection request in TCP mode(Client mode) * @details To connect, a connect-request (SYN packet) is sent to b>TCP server
in „Mit ATmega328PB einen W5500 Ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
msp430fr5729.pdf
+ – VREF–/VeREF–) 3.6 V –1 1 LSB 2 V to EO Offset error (VeREF+ – VREF–/VeREF–)min ≤ (VeREF+ – VREF–/VeREF–) 3.6 V –6.5 6.5 mV Gain error, external 2 V to reference (VeREF+ – VREF–/VeREF–)min ≤ (VeREF+ – VREF–/VeREF
in „Implementierung eines ADT7301 an einem MSP430FR5729“ · Mikrocontroller und Digitale Elektronik ·
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Datei
JUMO-184031-20220908-IODD1.1.xml
<StdVariableRef id="V_ProductName" defaultValue="JUMO flowTRANS US W02 - 0x184031"/> <StdVariableRef id="V_ProductID" defaultValue="406051"/> <StdVariableRef id="V_ProductText" defaultValue="Flow meter DN15LF"/> <StdVariableRef
in „IO-link master (light)“ · Mikrocontroller und Digitale Elektronik ·
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LTM190E4-L02.pdf
conditions described under normal operating conditions. (2) Specified values are for a single lamp. (Refer to the Note (1) in the page 12 for further information). Doc . No PI006_LTM190E4-L02 Page ʶ/27 2. Optical Characteristics The following items are measured under stable conditions. The optical characteristics
in „Ansteuerung LC Display LTM190E4-L03“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schaltplan.pdf
nSCSPI313 ADC_SCK PCR2 SHA 3mm PI716VDRAIN SCLKPI303 DRV_S I 10k P7CLA7 SNN P P P3 GHA PIC18VCP SDIPIC02 ADC_SDO P2 T2 PT T Motor_U PIS14 PSN03 PR03 PI3 I_MOTOR C1 C12 C13 SHA PIC19SHA nFAULTPIC02 FAULT 6 P1 IP+ GNDUTPSN02 15k P210u P 100n P31u GLA PIC00GLA AGND PIC02 GLAPIT01 5 D1 PIS15 IP- VCC PSN01 P0
in „MOSFET für BLDC 18V“ · Analoge Elektronik und Schaltungstechnik ·
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sevconSBPM.pdf
the point at which you can enter a password to enable different levels of access to personalities. Refer to the section below on Calibrator Security Levels for more details. MillipaK SBPM Controller Manual Page 13 21/02/07 Calibrator Calibrator/Security Levels _________________________________________
in „Sevcon Millipak Steuerung Batteriespannung ändern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ZN_426.pdf
VCC = max. VI= 0.3V Internal voltage reference Output voltage V 2.475 2.55 2.626 V Note 2 R = 390 REF REF Slope resistance RS - 1 2 RREF = 390 VREF temperature coefficient - 40 - ppm/°C RREF = 390 NOTE 1: Monotonic over full temperature range. NOTE 2:The internal reference requires a 1 F stabilising capacitor betweREF OUT and 0V and a 390 resistor,REF , between V CC and V REF OUT. INTRODUCTION The ZN426 is an 8-bit D-A converter. It contains an The use of on-chip voltage reference is pin optional to advanced design
in „8-Bit ADC gesucht!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ZN426.pdf
VCC = max. VI= 0.3V Internal voltage reference Output voltage V 2.475 2.55 2.626 V Note 2 R = 390 REF REF Slope resistance RS - 1 2 RREF = 390 VREF temperature coefficient - 40 - ppm/°C RREF = 390 NOTE 1: Monotonic over full temperature range. NOTE 2:The internal reference requires a 1 F stabilising capacitor betweREF OUT and 0V and a 390 resistor,REF , between V CC and V REF OUT. INTRODUCTION The ZN426 is an 8-bit D-A converter. It contains an The use of on-chip voltage reference is pin optional to advanced design
in „DAC Schaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
uPC1470.pdf
to 16 V Fig. 1 Vref k 0.4 %/V 4 = 100 mA, V CC= 6.3 to 16 V Fig. 2 / V CC k Load Regulation Vref –0.02 %/mA 4 = 30 to 200 mA Fig. 1 Vref/ I4 k / I4 –0.02 %/mA 4 = 30 to 200 mA Fig. 2 k Temperature Coefficient 0.01 %/˚C 4 = 100 mA, T A= –20 to +75 ˚C Fig. 1 Vref/ TA Vref k 0.01 %/˚C 4 = 100 mA, T A= –20 to +75 ˚C Fig. 2 / TA k * Pulse Test: PW ≤ 10 ms, Duty Cycle ≤ 2 % TEST CIRCUIT Fig. 1 Fig. 2 V ref V ref k k Vref V CC, I4 k, VCC, I Vref V ref k k V ref k TA TA V ref k V CC V CC 390 RM 4 A1 I2 A2 I4 V SW 2 Vref 390 1 2 IC 1 4 2 3 RM1 R M2 IC 1 4 3 4 (SW 2 )
in „Motorregelung“ · Offtopic ·
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PDF
zn426.pdf
VCC = max. VI= 0.3V Internal voltage reference Output voltage V 2.475 2.55 2.626 V Note 2 R = 390 REF REF Slope resistance RS - 1 2 RREF = 390 VREF temperature coefficient - 40 - ppm/°C RREF = 390 NOTE 1: Monotonic over full temperature range. NOTE 2:The internal reference requires a 1 F stabilising capacitor betweREF OUT and 0V and a 390 resistor,REF , between V CC and V REF OUT. INTRODUCTION The ZN426 is an 8-bit D-A converter. It contains an The use of on-chip voltage reference is pin optional to advanced design
in „AD-Wandler Datenblatt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TC35_datasheet.pdf
manufacturer must guarantee that the battery complies with the described charging technique. Please refer to the application notes "Battery Pack" and "Charging the Battery Pack" for a detailed description of the charging characteristics. TC35_37_HD_02_V03.10 - Released Page 27 of 92 21.12.2001 TC35 / TC37
in „Schaltplan TC35-Modul?“ · Mikrocontroller und Digitale Elektronik ·
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x20c16.pdf
PACKAGE TYPE P 1.460 (37.08) 1.400 (35.56) 0.550 (13.97) 0.510 (12.95) PIN 1 INDEX PIN 1 1.300 (33.02) 0.085 (2.16) REF. 0.040 (1.02) 0.160 (4.06) 0.125 (3.17) SEATING PLANE 0.150 (3.81) 0.030 (0.76) 0.015 (0.38) 0.125 (3.17) 0.110 (2.79) 0.062 (1.57) 0.020 (0.51) 0.090 (2.29) 0.050 (1.27) 0.016 (0.41
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XBee_Datasheet.pdf
multiplied by the number of channels to be scanned (16 for the XBee, 12 for the XBee-PRO). NOTES: Refer the scan table in the SD description [p39] to determine scan times. If using API Mode, no <CR>’s are returned in the response. Refer to the API Mode Operation section [p42]. BD (Interface Data Rate
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Datei
stm32f30x_gpio.h
uint32_t GPIO_Pin; /*!< Specifies the GPIO pins to be configured. This parameter can be any value of @ref GPIO_pins_define */ GPIOMode_TypeDef GPIO_Mode; /*!< Specifies the operating mode for the selected pins. This parameter can be a value of @ref GPIOMode_TypeDef */ GPIOSpeed_TypeDef GPIO_Speed; /*!< Specifies the speed for the selected pins. This parameter can be a value of @ref GPIOSpeed_TypeDef */ GPIOOType_TypeDef GPIO_OType; /*!< Specifies the operating output type for the selected pins. This parameter can be a value of @ref GPIOOType_TypeDef */ GPIOPuPd_TypeDef GPIO_PuPd
in „Probleme mit dem STM32F3Discoery, mal wieder.“ · Mikrocontroller und Digitale Elektronik ·
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xtr115.pdf
tion over the extended industrial temperature range, power external circuitry. A precision on-chip V REF –40°C to +85°C. (2.5V for XTR115 and 4.096V for XTR116) can be XTR115 XTR116 VREG +5V V+ +5V 8 Regulator 7 V XTR115: 2.5V REF Voltage XTR116: 4.096V 1 Reference VLOOP B R IN IIN 6 2 A1 R L + V E IN
in „HIH 4000 an XTR115 0.4 V - 4.20mA“ · Analoge Elektronik und Schaltungstechnik ·
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LEM_HLSR-Uebersicht.pdf
/0 2.5V or ref0.8V DC-400 (-3dB) 1 -40...+105 SMD SMD n 2 HLSR 32-SM 1) 32 ± 80 O/L + 3.3/0 1.65V or ref0.460V DC-400 (-3dB) 1 -40...+105 n n n 1 HLSR 32-P/SP33 HLSR 32-SM/ 32 ± 80 O/L + 3.3/0 1.65V or ref0.460V DC
in „Strommessung über Shunt / MOSFET ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AF143086415692en-000101.pdf
0.58 0.85 0.94 1.11 1.36 1.61 1.87 2.12 2.36 2.50 2.68 3.05 Liquid temperature no subcooling 32°C refer to 101N2100 Instructions for details specifjcations FRCC.PK.047.A2.02 - Manufactured by Secop for Danfoss 77 Hermetic Compressors for DC Voltage BD1.4F-VSD Direct Current Compressor R134a, 12-24V DC
in „Kompressor für Campingkühlschrank - elektrischer Anschluss?“ · Fahrzeugelektronik ·
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PDF
Danfoss_Katalog_BLDC_Compressors.pdf
0.58 0.85 0.94 1.11 1.36 1.61 1.87 2.12 2.36 2.50 2.68 3.05 Liquid temperature no subcooling 32°C refer to 101N2100 Instructions for details specifjcations FRCC.PK.047.A2.02 - Manufactured by Secop for Danfoss 77 Hermetic Compressors for DC Voltage BD1.4F-VSD Direct Current Compressor R134a, 12-24V DC
in „12V Kompressor Kühlbox - Steuerung defekt - eigenes Thermostat verwenden“ · Haus & Smart Home ·
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PDF
LT3474.pdf
LUXEON III STARS 2.2µF IN 10µH 85 SHDN SW ) LT3474 ( 80 R T BIAS C ONE WHITE LUXEON III STAR I 75 REF OUT I VADJ PWM CONTROL* E 70 80.6k V LED 2.2µF 65 C 0.1µF GND 60 LED1 550 200 400 800 1000 *SEE APPLICATIONS SECTION FOR DETAILS 600 3474 TA01a LED CURRENT (mA) 3474 G02 3474fb 1 LT3474 W W W U U W
in „3W Luxeon Led energiesparend dimmen“ · Mikrocontroller und Digitale Elektronik ·
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1LTC2641_2642.pdf
–1.0 –1.0 –1.0 0 16384 32768 49152 65535 2 3 4 5 6 2 3 4 5 6 CODE VDD (V) VREF(V) 26412 G01 26412 G02 26412 G03 Differential Nonlinearity (DNL) Differential Nonlinearity (DNL) vs Supply (V ) DNL vs V DD REF 1.0 1.0 1.0 LTC2642-16 VREF= 2.5V VDD= 5.5V 0.8 VREF= 2.5V 0.8 0.8 VDD = 5V 0.6 0.6 0.6 0.4 0.4
in „AVR ISP mkII sagt Kurzschluss zwischen SCK & MOSI“ · Mikrocontroller und Digitale Elektronik ·
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LT3756.pdf
40 60 80 100 –50 –25 0 25 50 75 100 125 V (V) ISP VOLTAGE (V) TEMPERATURE (°C) CTRL 3756 G01 3756 G02 37561 G03 FB Voltage vs Temperature V Voltage vs Temperature V Voltage vs V REF REF IN 1.28 2.04 2.04 1.27 2.03 2.03 1.26 2.02 2.02 1.25 2.01 2.01 V V V ( 1.24 (F2.00 (2.00 F R R V V V 1.23 1.99 1.99
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ETM0430G0DH6.pdf
--- 17 ~ 20 13. INSPECTION CRITERION -------------------------------------------1 ~ 30 02101300-01-02 MODEL NO. VERSION PAGE E M E R G I N G D I S P L A Y TECHNOLOGIES CORPORATION E T M 0 4 3 0 G 0 D H 6 2 1 1. GENERAL SPECIFICATIONS 1 . 1 DATA SHEET FOR LCD MODULE CONTROLLER/DRIVER PLEASE REFER TO:
in „LCD-Display an Raspberry PI“ · Analoge Elektronik und Schaltungstechnik ·
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ina114.pdf
No Connection V – 2 50.00k 49.9k IN 5 12.50k 12.4k R INA114 V 10 5.556k 5.62k G O 20 2.632k 2.61k + Ref 50 1.02k 1.02k V IN 100 505.1 511 200 251.3 249 500 100.2 100 1000 50.05 49.9 2000 25.01 24.9 5000 10.00 10 10000 5.001 4.99 FIGURE 1. Basic Connections. ® INA114 8 OFFSET TRIMMING The INA114 is laser
in „OP INA114 Regelt nur bis 2,25V am Ausgang“ · Analoge Elektronik und Schaltungstechnik ·
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MTE011N10RFP-CystechElectonics.pdf
DIM Min. Max. Min. Max. Min. Max. Min. Max. A 0.171 0.183 4.35 4.65 G 0.246 0.258 6.25 6.55 A1 0.051 REF 1.300 REF H 0.138 REF 3.50 REF A2 0.112 0.124 2.85 3.15 H1 0.055 REF 1.40 REF A3 0.102 0.110 2.60 2.80 H2 0.256 0.272 6.50 6.90 b 0.020 0.030 0.50 0.75 J 0.031 REF 0.80 REF b1 0.031 0.041 0.80 1.05 K 0.020 0.50 REF b2 0.047 REF 1.20 REF L 1.102 1.118 28.00 28.40 c 0.020 0.030 0.500 0.750 L1 0.043 0.051 1.10 1.30 D 0.396 0.404 10.06 10.26 L2 0.036 0.043 0.92 1.08 E 0.583 0.598 14.80 15.20 M 0.067 REF 1.70 REF e
in „IC identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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AD8228.pdf
inputsignalbandwidth,accordingtothefollowing relationship: 1 FilterFrequency DIFF= 2πR(2C D +C C) AD8228 AD8228 REF REF 1 FilterFrequency CM = 2πRC C 10MΩ –VS –VS where C ≥D10 C . C THERMOCOUPLE THERMOCOUPLE +15V +V +V 0.1µF 10µF S S C C CC 1nF R +IN AD8228 fHIGH-PASS2πRC R AD8228 4.02kΩ VOUT C REF C REF CD 10nF AD8228 R R REF 4.02kΩ –IN 0 –VS –VS 5 CC 1nF CAPACITIVELY COUPLED CAPACITIVELY COUPLED 7 0 0.1µF 10µF Figure46.CreatinganIBIASath - 0 INPUT PROTECTION –15V 0 Figure47.RFISuppression All terminals of the AD8228 are
in „Schaltung verstehen.“ · Analoge Elektronik und Schaltungstechnik ·
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INA186.pdf
output voltage difference from the IN+ to the IN– pins, and is offset by the voltage applied to the REF pin. Reference input. Enables bidirectional current sensing with an externally REF 1 3 — Analog input applied voltage. DCK and DDF packages only. Devices without a REF pin have the REF node grounded
in „INA186 Noise Problem“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
EW32F10FLW.pdf
-------------- 11. POWER SUPPLY ------------------------------------------------------ 02101300-01-02 E M E R G I N G D I S P L A Y MODEL NO . VERSION PAGE TECHNOLOGIES CORPORATION 32F10(LED TYPES) 4 1 1 . GENERAL SPECIFICATIONS 1 . 1 GENERAL SPECIFICATIONS PLEASE REFER TO : CUSTOMER ACCEPTANCE STANDARD
in „Controller EW32F10 (Emerging Display) GLCD (320x240)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EW32F10FLW.pdf
-------------- 11. POWER SUPPLY ------------------------------------------------------ 02101300-01-02 E M E R G I N G D I S P L A Y MODEL NO . VERSION PAGE TECHNOLOGIES CORPORATION 32F10(LED TYPES) 4 1 1 . GENERAL SPECIFICATIONS 1 . 1 GENERAL SPECIFICATIONS PLEASE REFER TO : CUSTOMER ACCEPTANCE STANDARD
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PDF
ET035009DH6.pdf
LENGTH TOLERANCE IS ± 0.5 NOT SPECIFIED ANGLE TOLERANCE IS ±2° 02101300-01-02 www.DataSheet4U.com MODEL NO. VERSION PAGE E M E R G I N G D I S P L A Y TECHNOLOGIES CORPORATION E T 0 3 5 0 0 9 D H 6 (RoHS) 1 10 8 . BLOCK DIMENSION 02101300-01-02 www.DataSheet4U.com MODEL NO . VERSION
in „AP7000 und ICnova ADB1000: Bisschen wenig?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
laser_dac.h
/0x19 // B????+16?B??? #define CMD_UPDATE_ALL_DACS 0x0F // ???????????16??????? #define CMD_GAIN 0x02 // ???????? #define DATA_GAIN_B2_A2 0x00 // B?2??A?1? #define DATA_GAIN_B2_A1 0x01 // B?1??A?2? #define DATA_GAIN_B1_A2 0x02 // B?2??A?2? #define DATA_GAIN_B1_A1 0x03 // B?1??A?1? #define CMD_PWR_UP_A_B
in „Problem mit Positionsrückmeldung bei GRBL“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Transmitter.c
include "LCD_lib.h" // ADC initialisieren void ADC_Init(void) { //unsigned int result; ADMUX = (0<<REFS1) | (1<<REFS0); // AVcc als Referenz benutzen ADCSRA = (0<<ADPS2) | (1<<ADPS1) | (1<<ADPS0); // Frequenzvorteiler 8 ADCSRA |= (1<<ADEN); // ADC aktivieren ADCSRA |= (1<<ADSC); // Single ADC-Wandlung
in „While Funktion in einer Switch Case Anweisung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Fensterladen_Programm.txt
Straße 35h { PORTA &= ~(1<<PA6); //Fensterladen 1 anhalten } } TCCR0B &= ~((1<<CS00)|(1<<CS01)|(1<<CS02)); merker |= (1<<0); eeprom_write_byte(&eeFooByte, merker); return; } void zu (void) { PORTA |= (1<<PA7); //Fensterladen 2 zu _delay_ms(1500); zaehler=0x00; TCCR0B |= (1<<CS00)|(1<<CS02); //Timer starten
in „Fensterladensteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Technical-Note-Modbus-implementation-using-3Gen-DTU-Pro-V1.2.pdf
Percentage Limit Active Power 2~100 for HM 0xC003 0x01\0x02\0x05\0x0F series (Port 3) 10~100 for MI series 0xC004 Reserved R/W 0x01\0x02\0x05\0x0F 0xC005 Reserved R/W 0x01\0x02\0x05\0x0F 0xC006 Reserved R/W 0x01\0x02\0x05\0x0F 0xC007 Reserved R/W 0x01\0x02\0x05
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
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MC34161-D_1_.pdf
the voltage trip points are: For a specific trip voltage, the required resistor ratio is: R1(Vth2* V ref R 1 V1* V th2 V1+ R ) R ) V th2 R ) R + V * V 2 3 2 3 th2 ref R (V * V * V ) R V * V ) V V + 1 th2 H2 ref) V * V 1 + 2 th2 H2 2 R2 ) R 3 th2 H2 R2) R 3 Vth2* V H2* V ref (R1) R 2(V th1* V ref R 3 Vth1* V ref V3+ R ) V th1 R ) R + V * V 3 1 2 3 th1 (R ) R )(V * V * V ) R V * V * V V + 1 2 th1 H1 ref) V * V 3 + th1 H1 ref 4 R3 th1 H1 R1) R 2 V4) V H1* V th1 Figure 21. Negative Voltage Window Detector http
in „Brauche Hilfe zur Berechnung den MC34161“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
definitions.h
EEPROM_ADCTTG 14 #define EEPROM_ADCOFF (EEPROM_ADCTTG + sizeof(float)) #define EEPROM_INSTALL 42 #define REF_T1 275 #define REF_T2 410 #define DELTA_REF_T (REF_T2 - REF_T1) typedef enum POWER_SOURCE { NO_INIT, POWER_USB, POWER_CORD, POWER_LIPO, POWER_CHARGING } p_source; typedef enum ERROR_TYPE { NO_ERROR,
in „Probleme bei kompilieren des Maiskolben-Sketch's“ · Mikrocontroller und Digitale Elektronik ·
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PDF
protocol_manual_VPLHW15_HW20.pdf
Remarks Item Number Data Item Upper byte Lower byte Data Upper byte Lower byte Infrared Remote 17h Refer to the 00h 00h Set Only Command section 2-1-2 . (15 bit category) Infrared Remote 19h Refer to the 00h 00h Command section 2-1-2 (20 bit category) (Table 2-6 to Table 2-9) Infrared Remote 1Bh Refer
in „Serielle Befehle senden: funktioniert under Windows, jedoch nichtuntre linux“ · PC Hard- und Software ·
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PDF
Datenblatt_Master_Stick_DP.pdf
) = 0x00 Ext_User_Prm_Data_Const(3) = 0x00 ; Ext_User_Prm_Data_Const(4) = 0x00 ; Ext_User_Prm_Data_Ref(4) = 3 ; Reference Number 3 Ext_User_Prm_Data_Const(5) = 0x00 ; Ext_User_Prm_Data_Ref(5) = 4 ; Reference Number 4 Ext_User_Prm_Data_Const(6) = 0x00 ; Ext_User_Prm_Data_Ref(6) = 5 ; Reference Number
in „Profibus Master Simulator von B&N Elektronik (Datenaustausch)“ · PC Hard- und Software ·
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PDF
irlml6344pbf.pdf
Recommended Footprint L1 0.54 REF REF L2 0.25 BSC BSC c 0 8 0 8 0.972 L2 0.950 2.742 0.802 1.DIMENSIONING&TOLERANCINGPERANSIY14.5M-1994 3X L 2. DIMENSIONS ARE SHOWNINMILLIMETERS[INCHES]. 7 3.CONTROLLINGDIMENSION:MILLIMETER. 4. DATUMPLANE
in „IRLML 6344, bin ich zu doof zum Messen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
irlml6344pbf-1228041.pdf
Recommended Footprint L1 0.54 REF REF L2 0.25 BSC BSC c 0 8 0 8 0.972 L2 0.950 2.742 0.802 1.DIMENSIONING&TOLERANCINGPERANSIY14.5M-1994 3X L 2. DIMENSIONS ARE SHOWNINMILLIMETERS[INCHES]. 7 3.CONTROLLINGDIMENSION:MILLIMETER. 4. DATUMPLANE
in „RaspiPi mit 3,3V einen 5V Kreis wie schalten?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SCPISystemTree.txt
:DCOF:GND ; :CHAN2:ADJ:DCOF:GND ; :CHAN:ADJ:DCOF:DIV01 ; :CHAN2:ADJ:DCOF:DIV01 ; :CHAN:ADJ:DCOF:DIV02 ; :CHAN2:ADJ:DCOF:DIV02 ; :CHAN:ADJ:DCOF:DIV10 ; :CHAN2:ADJ:DCOF:DIV10 ; :CHAN:ADJ:DCOF:SUPP ; :CHAN2:ADJ:DCOF:SUPP ; :CHAN:ADJ:DCOF:SUPP:MAX ; :CHAN2:ADJ:DCOF:SUPP:MAX ; :CHAN:ADJ:DCOF:SUPP:MIN ; :CHAN2
in „Hameg HM2008 CombiScope - Kalibrierung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TopAS21.vhd
Achse 0 SIGNAL SetIniPos :STD_LOGIC := '0';-- Iniposition setzen alle Achsen ----------------- SIGNAL REF00 :STD_LOGIC := '0';-- signal für REF Befehl 00 EBENE 0 SIGNAL REF01 :STD_LOGIC := '0';-- signal für REF Befehl 00 EBENE 1 SIGNAL REF02 :STD_LOGIC := '0';-- signal für REF Befehl 00 EBENE 2 --------
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PDF
MC34064P-005.pdf
10 27 60 mA Output Off-State Leakage (in, Reset = 5.0 V) OH − 0.02 0.5 ▯A Clamp Diode Forward Voltage, Pin 1 to 2 FI = 10 mA) VF 0.6 0.9 1.2 V TOTAL DEVICE Operating Input Voltage Range Vin 1.0 to 6.5 − − V Quiescent Input Current (in= 5.0 V) Iin − 390 500 ▯A 2. Maximum
in „Brownout detector beim MSP430“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pcm1801_datasheet.pdf
VCC AGND DGND VDD B0004-02 Submit Documentation Feedback 5 PCM1801 www.ti.com SBAS131C–OCTOBER 2000–REVISED JULY 2007 ANALOG FRONT-END (Single Channel) 1 F V IN 30 k 1 − + − 1 k (+) + + Delta-Sigma 1 k Modulator (−) V 1 REF 14 + 4.7 F V REF 4.7 F + V REF2 13 S0011-02 TYPICAL PERFORMANCE CURVES All specifications atAT = 25°C, VDD = VCC = 5 V, fS= 44.1 kHz, and SYSCLK = 384 f , uSless otherwise noted ANALOG DYNAMIC PERFORMANCE TOTAL HARMONIC
in „Analogspannung ADC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
WS0010.pdf
Position 1 2 3 4 5 6 7 8 DDRAM address 00 01 02 03 04 05 06 07 Shift left 01 02 03 04 05 06 07 08 Shift right 7F 00 01 02 03 04 05 06 Document No.:WS-RD-0001 Version: 001 3 OCT. 2010 WINSTAR DISPLAY WS0010 2-LINE DISPLAY (N=1) Case 1: The Number of
in „Ansteuern eines OLED-Display: EA W162-X3LW“ · Mikrocontroller und Digitale Elektronik ·
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Calgary_OLED_Module_Application_Instruction.pdf
Multiplex Ratio 4F 3F Set Display ON/OFF AE AF Set Display Mode A4 Default Set DC-DC Converter 03 02 (disabled) Set DC-DC Bias Current F0 Default Set Row Period 25 46 Set Pre-charge Compensation Enable 08 28 Set Pre-charge Compensation Level 00 07 Set Clock Divide 02 F1 Set Phase Length P1 = 3, P2 = 5 22 (P1 = 2, P2 = 2) Set VSL 0E 0D(1) 02 * Set VcomH 11 00 *(2) (1) Set Vprecharge 18 10 *(2) 0B * Set Gray Scale Table All 1 Refer to Grey Scale Settings Table Table 2: Recommended Initialization Command Note: 1. Set Row address = 3F hex for
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