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PDF
L6219.pdf
All Inputs - - 0.8 V IN(H) Input Current VIN = 2.4V - <1 20 A IN(L) Input Current VIN = 0.84V - -3 -200 A V REF Reference Voltage Operating 1.5 - 7.5 V SS(ON) TotalLogic Supply Current o = 1 = 0.8V, No Load - 64 74 mA ISS(OFF) TotalLogic Supply Current o = 1 = 2.4V, No Load - 10 14 mA COMPARATORS VREF
in „NEOCENE 2T354211 mit BC337“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ERA026200LED.pdf
CORPORATION ERA026200(LED TYPES)(RoHS) 1 1 1. GENERAL SPECIFICATIONS 1 . 1 GENERAL SPECIFICATIONS PLEASE REFER TO : CUSTOMER ACCEPTANCE STANDARD SPECIFICATIONS : E U – 0 0 4 B 1 . 2 APPLICATION NOTES FOR CONTROLLER/DRIVER PLEASE REFER TO : N O V A T E K N T 7 5 7 3 1 . 3 MATERIAL SAFETY DESCRIPTION ASSEMBLIES
in „Display nur mit Datenbus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
L6219.pdf
All Inputs - - 0.8 V IN(H) Input Current VIN = 2.4V - <1 20 A IN(L) Input Current VIN = 0.84V - -3 -200 A V REF Reference Voltage Operating 1.5 - 7.5 V SS(ON) TotalLogic Supply Current o = 1 = 0.8V, No Load - 64 74 mA ISS(OFF) TotalLogic Supply Current o = 1 = 2.4V, No Load - 10 14 mA COMPARATORS VREF
in „Schrittmotor NEOCENE 2T354207“ · Mikrocontroller und Digitale Elektronik ·
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PDF
L6219.pdf
All Inputs - - 0.8 V IN(H) Input Current VIN = 2.4V - <1 20 A IN(L) Input Current VIN = 0.84V - -3 -200 A V REF Reference Voltage Operating 1.5 - 7.5 V SS(ON) TotalLogic Supply Current o = 1 = 0.8V, No Load - 64 74 mA ISS(OFF) TotalLogic Supply Current o = 1 = 2.4V, No Load - 10 14 mA COMPARATORS VREF
in „L6219 Schrittmotor Treiber - Fragen und Feedbackwunsch“ · Platinen ·
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PDF
MPPT_charger_20A.pdf
LOAD_SHUNT- USB_DP USB_DP MCU DCDC_SHUNT+ USB_DM USB_DM I_DCDC_ADC DCDC_SHUNT- I_LOAD_ADC UEXT_EN UEXT_EN REF_DIFF_AMP V_SOLAR V_BUS_EN V_BUS_EN V_BAT 5V_OUT_EN 5V_OUT_EN TEMP_BAT TEMP_BAT 5V_OUT TEMP_INT TEMP_INT DCDC_OUT mcu.sch Analog T interfaces.sch O 1 C J5 2 D CONN_01X03 3 analog_frontend.sch D GND C
in „EMV-Test DC/DC - Verbesserungsvorschläge gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
ASR13_nur_Bus.asm
r16,0b01000010; Ref= Int 1,1V; rechtsjustiertes Meßbyte;Kanal PB4=P3 mov initADMUXStrom,r16; ldi r16,0b01000001; Ref= Int 1,1V; rechtsjustiertes Meßbyte;Kanal PB2=P7 mov initADMUXSpannung,r16; sbi ADCSRA,aden ;ADC einschalten
in „Hausbus für Meß- und Steueraufgaben mit Attiny“ · Haus & Smart Home ·
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PDF
Optokoppler_AQV252GA.pdf
5.0A60VDCCconnection Note: For the latest information on compliance with safety standards, please refer to our website. Please refer to "the latest product specifications" when designing your product. •Requests to customers: https://industrial.panasonic.com/ac/e/salespolicies/ Panasonic Industry Co.,
in „Zu blöd Datenblatt lesen AQV252GA“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MG24065G-SBLWU_240x64_Display.pdf
BY CHARGING A 200PF CAPACITOR AND DISCHARGING IT BY CONTACT WITH A INTERFACE CONNECTOR PIN. 5.2 Environmental absolute maximum ratings OPERATING STORAGE I T E M COMMENT MIN. MAX. MIN. MAX. AMBIENT -20¢J 70¢J -20¢J 70¢
in „Display MG24065G-SBLWU Spannungs-Versorgung Fragen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ICL7106-ICL7107.pdf
CHARACTERISTICS (Note 3) PARAMETER CONDITIONS MIN TYP MAX UNITS Zero Input Reading VIN = 0V, full scale = 200.0mV -000.0 000.0 +000.0 Digital Reading Ratiometric Reading V = V , V = 100mV 999 999/1000 1000 Digital IN REF REF Reading Rollover Error (Difference in Reading for Equal Positive and Negative Reading
in „Schaltzeichen im IC ICL7107 (intersil)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADS1211.pdf
with Voltage Excitation. R 1 6kΩ +In 3 10kΩ 5 1 R A P G INA118 6 IN REFIN 1.0µF 8 A N REF IN OUT –In 2 AGND AV DD AV DD AGND V MODE AGND BIAS CS DRDY 8 7 6 5 C DVDD ADS1210 DGND 1 DSYNC SDOUT REF200 12pF 100µA 100µA I O X SDIO IN XTAL X SCLK OUT A B C DGND DV DGND C2 DD DVDD 12pF 1 2 3 4
in „Hardware SPI vs. BIT BANGING AD Wandler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
RNCtrl.c
bis ADPS0 stellen den verwendeten Prescaler ein, denn die Wandlerfrequenz muss immer zwischen 50 und 200 kHz liegen! Der Prescaler muss bei 16MHz also zwischen 80 und 320 eingestellt werden, als einzige Möglichkeit bleibt hier 128 (=alle auf 1). ADMUX = kanal; //ADMUX = (1<<REFS1)|(1<<REFS0); //Einstellen der Referenzspannung auf "extern", also REFS1 und REFS0 auf "0" - daher auskommentierte Zeile ADCSRA |= (1<<ADSC); //nach Aktivierung des ADC wird ein "Dummy-Readout" empfohlen, man liest also einen Wert und verwirft diesen, um den ADC "warmlaufen
in „Mikrocontrollerprogrammierung mit Ubuntu (AVRISPmkII/ATMega32)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LPF_40_D.pdf
40.08W 40.2W 40.32W 40.32W 40.32W 41.04W RIPPLE & NOISE (max.)Note.2150mVp-p 150mVp-p 150mVp-p 150mVp-p 200mVp-p 250mVp-p 250mVp-p 250mVp-p 350mVp-p OUTPUT VOLTAGE TOLERANCE Note.3 4.0% 4.0% 4.0% 4.0% 4.0% 4.0% 4.0% 4.0% 4.0% LINE REGULATION 0.5% 0.5% 0.5% 0.5% 0.5% 0.5% 0.5% 0.5% 0.5% LOAD REGULATION 2.0%
in „High Power LED dimmen - PWM“ · Mikrocontroller und Digitale Elektronik ·
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Datei
senden.c
vector_default(void) {__asm__ ("reti");} // Batteriespannung messen void setup_adc(void) { ADMUX = (0<<REFS1) | (1<<REFS0) | (1<<MUX3) | (1<<MUX2) | (1<<MUX1) | (0<<MUX0); // interne Referenzspannung nutzen ADCSRA = (1<<ADEN)|(1<<ADATE)|(1<<ADIE)|(1<<ADSC)|5; } ISR(ADC_vect) //ADC End of Conversion interrupt
in „Atmega328p Sleep-Modus, ich komme nicht weiter“ · Mikrocontroller und Digitale Elektronik ·
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Datei
senden.c
vector_default(void) {__asm__ ("reti");} // Batteriespannung messen void setup_adc(void) { ADMUX = (0<<REFS1) | (1<<REFS0) | (1<<MUX3) | (1<<MUX2) | (1<<MUX1) | (0<<MUX0); // interne Referenzspannung nutzen ADCSRA = (1<<ADEN)|(1<<ADFR)|(1<<ADIE)|(1<<ADSC)|5; } ISR(ADC_vect) //ADC End of Conversion interrupt
in „Atmega328p Sleep-Modus, ich komme nicht weiter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
_FET-N__JCET_AO3400.pdf
℃ T =25 ℃ a a Pulsed 55 Pulsed 350 ) ) Ω 50 Ω 300 ( ( ) ) ( O D 45 S 250 R RD E VGS=2.5V E C 40 C 200 A N T T I I E 35 S 150 R R N VGS=4.5V - O 30 O 100 I =5A D 25 VGS=10V 50 20 0 1 4 8 12 16 20 0 2 4 6 8 10 DRAIN CURRENT ID (A) GATE TO SOURCE VOLTAGE VGS (V) I —— VSD Thr eshold Voltage 10 S 1.0 Ta=
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PDF
L4971.pdf
Quiescent current Duty Cycle = 0; VFB= 3.8V 2.5 3.5 mA Iqst-by Total stand-by quiescent V inh0.9V 100 200 A current Vcc = 55V; V inh0.9V 150 300 A Error Amplifier VFB Voltage Feedback Input 3.33 3.36 3.39 V R L Line regulation Vcc = 8 to 55V 5 10 mV Ref. voltage stability vs * 0.4 mV/°C temperature VoH
in „L4791 Step-down stirbt - wieso?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
rt8279.pdf
Response Switching VOUT V OUT (200mV/Div) (10mV/Div) V SW (10V/Div) IOUT IL (2A/Div) (5A/Div) VIN 12V, VOUT = 5V,OUT = 2.5A to 5A V IN12V, V OUT= 5V, OUT= 5A Time (100µs/Div) Time (1µs/Div) DS8279-01 December 2011 www.richtek.com 7 RT8279
in „Suche Schaltregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
EC20-9822_SK9822-2020__LED_Datasheet.pdf
version of product specifications is updated. We are sorry to fail to inform you in time. Please refer to the latest information on the official website. * The copyright and final interpretation of the product belong to Shenzhen Normand Electronic Co.,Ltd. If you have special specifications, please
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PDF
MS5837-30BA-736494.pdf
bar -50 +50 AbsoluteAccuracy (1), 0 … 20 bar -100 +100 mbar Temperaturerange: 0 … 40°C 0 … 30 bar -200 +200 0 … 6 bar -100 +100 AbsoluteAccuracy (1), 0 … 20 bar -200 +200 mbar Temperaturerange:-20… 85°C 0 … 30 bar -400 +400 Maximum error with supply VDD = 1.5 V … 3.6 V ±30 mbar voltage (2) Long-term
in „Microcontroller Auswahlhilfe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1640586162378_1895.pdf
DESCRIPTION The SGM2212 adjustable version develops a 1.185V SGM2212-XX Rt1 IL voltage reference, V REF . As shown in Figure 4, this VIN VIN VOUT feedback voltage is generated by resistor R 1 and R .2 GND VOUT VLOAD RLOAD The feedback voltage is compared with internal voltage reference and adjusts the
in „ESP32-C6 und LDO“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TN2404K.pdf
0.5 A 0.56 nC Gate-Drain Charge Qgd 1.53 Turn-On Delay Time td(on) 5 10 Rise Time r VDD = 60 V, L = 200 12 20 Turn-Off Delay Time t ID 0.3 A, GEN = 10 V, g = 25 35 60 ns d(off) Fall Time f 16 25 Notes: a. Pulse test; pulse width 300 µs, duty cycle 2 % b. Guaranteed by design, not subject to production
in „MOSFET gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
INA139_Copy.pdf
few ideas are illustrated in Figures 4 through 7. INA139, INA169 6 www.ti.com SBOS181C 3 3 4 VR 4 V+ REF200 INA139 R1 INA139 100µA V O V O 1 1 R R 2 L Gain Set by R R 1 2 Gain Set by L (VR)R2 Output Offset = (100µAL(R ) Output Offset R + R (independent of V+) 1 2 a) Using resistor divider. b) Using current
in „genauer Messshunt für kleinere Ströme gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RESR_angular_encoder_system_data_sheet.pdf
40 47 65 90 90 90 θ Mounting N 6 6 6 6 6 6 Holes θ 30° 30° 30° 30° 30° 30° Nominal external 115 150 200 206 209 229 diameter (mm) 20 µm pitch 18,000 23,600 31,488 32,400 32,768 36,000 Line count 40 µm pitch 9,000 11,800 15,744 16,200 16,384 18,000 114.70 150.40 200.40 206.50 208.80 229.40 DO (mm) 114.50
in „Schrittmotor mit Motortreiber und Encoder in Betrieb nehmen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Motorola_MC44353_MC44354_MC44355_1998.pdf
Osc Modulator 4 Section OscGnd ∉8 PLL Section 12 Prog Prescaler Divider 3 Phase 20 Comp Bias Xtal RefOsc RefDivider 31.25kHz 2 OpOut 3 1 VCCD AmpIn MAXIMUM RATINGS (Note 1) Rating Symbol Value Unit Supply Voltage VCC 7 V Operational Amplifier Output Voltage 36 V Operating Ambient Temperature TA –20
in „Pollin ist pleite :-(“ · Offtopic ·
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PDF
KTC2026-2.pdf
saturation voltage ● General purpose applications CLASSIFICATION OF h FE Product-Rank Y Range 100-200 Millimeter Millimeter REF. Min. Max. REF. Min. Max. A 9.57 10.57 I 4.68 5.48 B 3.54 4.14 J 2.95 3.96 C 2.54 2.94 K 4.27 4.87 D 11.86 13.26 L 1.07 1.47 E 0.97 1.57 M 8.0 10.0 G 12.7 13.8 Q 0.30 0.65
in „E-Magnet mit Transistor schalten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TKC4GRAPHIT33.pdf
TECHNISCHES MERKBLATT 1/2 GRAPHIT 33 Ref. : 20760 1. ALLGEMEINE BESCHREIBUNG Thermoplastisches Bindemittel mit elektrisch leitfähigem Graphitpulver. 2. PRODUKTMERKMALE GRAPHIT 33 enthält einen hohen Anteil an reinem und sehr feinem Graphit
in „Gummitastaturen und Kontaktprobleme, Gründe?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
D865GBF_D865GLC_TechProdSpec.pdf
not use a standard ATX power supply. The board will not boot with a standard ATX power supply. • Refer to Table 5 on page 22 for a list of supported system bus frequency and memory speed combinations. For information about Refer to Power supply connectors Section 2.8.2.3, page 73 21 Intel Desktop Board
in „VS: Intel D865GBF, Pentium 4 (3GHz/1M/800) SL7PM, Matrox G45“ · Markt ·
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PDF
APW7080.pdf
Capacitor 0.22 ~ 2.2 μF o TA Ambient Temperature -40 ~ 85 C o TJ Junction Temperature -40 ~ 125 C Note 4: Refer to the typical application circuits. Electrical Characteristics Refer to the typical application circuits. These specifications apply over V =INV, V OUT=3.3V and T =A-40 ~ 85 C, unless o otherwise
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PDF
_ATmega32.pdf
Bits Differential Conversion 8 Bits Resolution Gain = 1x or 20x Differential Conversion 7 Bits Gain = 200x Single Ended Conversion V REF= 4V, VCC = 4V 1.5 1.5 LSB ADC clock = 200 kHz Single Ended Conversion V = 4V, VCC = 4V 3.5 3.5 LSB REF ADC clock = 1 MHz Absolute Accuracy (Including INL, DNL, Quantization
in „Anschwingvorgang µC & Quarz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FSP_SHB_D.pdf
an ADS ▯ DC-Spannung (Offset) auf 0 mV ± 3 mV einstellen AC-Spannung: U(pp) = 1 V ± 10 mV Frequenz: 200 kHz Phase (I/Q) = 90 grd. Einstellungen am - [ FREQUENCY : 1 GHz ] Spektrumanalysator - [ SPAN : 1 MHz ] - [ REF : REF LEVEL : 0 dBm ] Einstellungen am FSP: - [ FREQUENCY : 1 GHz ] - [ SPAN : 0 MHz
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PDF
PCF8591.pdf
LOW level SDA output current OL= 0.4 V 3.0 − − mA Reference voltage inputs VREF reference voltage V REF> VAGND; note 2 VSS+ 1.6 − VDD V VAGND analog ground voltage V REF> VAGND; note 2 VSS − VDD − 0.8 V LI input leakage current −250 − +250 nA RREF input resistance pins VREFand AGND − 100 − k Oscillator
in „Datentransfer an PCF8591“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCF8591.pdf
LOW level SDA output current OL= 0.4 V 3.0 − − mA Reference voltage inputs VREF reference voltage V REF> VAGND; note 2 VSS+ 1.6 − VDD V VAGND analog ground voltage V REF> VAGND; note 2 VSS − VDD − 0.8 V LI input leakage current −250 − +250 nA RREF input resistance pins VREFand AGND − 100 − k Oscillator
in „I2C Analog Mux/Demux im DIP gesucht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PI_REGLER_FKL.m
clc; clear; Z_ref = 1.20822; U_DC = 11760.6; R = 0.00556; L = 0.1207; T_vsi = 330e-9; %%T_vsi ... konst wc_hz = 200; %%Grenzfrequenz in Hz wc_rad = wc_hz*2*pi; %%Grenzfrequenz in rad/s ... Überschwingen 3% G = -(Z_ref
in „PI-Regler nach Frequenzkennlinienverfahren instabil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PicoMite_User_Manual.pdf
initial value of spin boxes, text boxes, etc. For example: CTRLVAL(#10) = 12.4 GUI FCOLOUR colour, #ref1 [, #ref2, #ref3, etc] This will change the foreground colour of the specified controls to 'colour'. This is especially handy for a LED which can change colour. GUI BCOLOUR colour, #ref1 [, #ref2,
in „allgemeine PicoMite Anfängerfragen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Intersil_HIP4081A_.pdf
Propagation Delay TDLPLH - 45 70 - 90 ns (DIS - ALO and BLO) Refresh Pulse Width (ALO and BLO) T 240 380 500 200 600 ns REF-PW Disable to Upper Enable (DIS - AHO and BHO) T - 480 630 - 750 ns UEN HEN-AHO, BHO Turn-off, Propagation Delay THEN-PHL R HDEL = RLDEL = 10K - 40 70 - 90 ns HEN-AHO, BHO Turn-on, Propagation
in „Umrichter für E-Kart Anwendung 60V / 120A“ · Mikrocontroller und Digitale Elektronik ·
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PDF
22070a-53890.pdf
SHDN TOR — 100 — µs SHDN = GND to V ,IN V OUT = GND to 95% V R Output Noise eN — 2.0 — µV/√Hz IOUT = 200 mA, f = 1 kHz, C OUT = 10 µF (X7R Ceramic), V = 2.5V OUT Power Supply Ripple Rejection PSRR — 55 — dB f = 100 Hz, Ratio IOUT = 10 mA, V INAC= 200 mV pk-pk, C = 0 µF IN Thermal Shutdown Temperature TSD
in „[V] 50St.LowNoise Microchip LDO MCP1824T 3,3V/300mA SOT223-5 mit Shutdown“ · Markt ·
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PDF
ds-CLQ6A-TKW-1140398.pdf
this LED product safely. #1: Refer to http://www.cree.com/led-components/media/documents/LED_Lamp_Reliability_Test_Standard.pdf #2: Refer to http://www.cree.com/led-components/media/documents/sh-HB.pdf Copyright © 2010 Cree, Inc. All
in „Wahl LED + Treiber“ · Mikrocontroller und Digitale Elektronik ·
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PDF
4_5_stelliges_LED_ELV_DMM7001.pdf
Ge ters N 3 (Pin 6) gibt. Wirksam können ensator C 11 erzeugt. samteingangsspannungsbereich von ± 200 diese Impulse nur dann sein, wenn vor 45 wird ein Teilbetrag dieser Refe mV zu kommen. her der Speicher N 1/N 2 durch einen pannung abgegriffen und auf den Eine zu messende Eingangsspannung im „low"
in „Projekt DVM 4,5 Digit aus Standardbauteilen mit automatischer Bereichsumschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MCP73837.pdf
4.50V, to accommodated the Variety of Applications: new emerging battery charging requirements. The - Refer to Section 1.0 “Electrical MCP73837/8 limits the charge current based on die Characteristics” for Selectable Options” temperature during high power or high ambient - Refer to the “Product Identification
in „Verständnissfrage - MCP73837“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PicoMite_User_Manual_4_.pdf
initial value of spin boxes, text boxes, etc. For example: CTRLVAL(#10) = 12.4 GUI FCOLOUR colour, #ref1 [, #ref2, #ref3, etc] This will change the foreground colour of the specified controls to 'colour'. This is especially handy for a LED which can change colour. GUI BCOLOUR colour, #ref1 [, #ref2,
in „Qual der Wahl - Sensoren Auswertung auf Display ("Analog")“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Cherry-E34-55HX-datasheet.pdf
) (1.02) (38.51) Short Solder –30A –31A –32A –50P 35 86 144 200 0.125 1.045±0.045 0.085 0.030 1.340 (3.18) (26.54±1.14) (2.16) (0.76) (34.04) QC0.250″ –40A –41A –42A † –50N 35 86 144 200 0.175 0.600±0.045 0.065 0.030 1.382 (4.45) (15.24±1.14) (1.65) (0.76) (35.10) –90N † 35 86 144 200 0.125 0.793±0.058 0.085 0.030 1.289 Actuators — Standard Force (3.18) (20.14±1.47) (2.16) (0.76) (32.74) Many special forms and lengths of actuators *Measured above reference line. Refer to dimensional
in „Mikroschalter mit speziellem Bügel gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Texas-Instruments-LMV324IPWR.pdf
signal is equal to the reference voltage and the maximum output of each amplifier is equal to the V REF. The differential output range is 2×V REF . Furthermore, the common mode voltage will be one half of V REF (see Equation 7). V = V - V = V ´ æ1 + R 2ö - V ´ æ R 4 öæ1 + R 2 ö DIFF OUT + OUT - IN è R 1ø REF èR 3 + R 4 øè R1 ø (3) VOUT+ = VIN (4) VOUT– = VREF – VIN (5) VDIFF= 2×V INV REF (6) V = æV OUT ++ V OUT -ö = 1 V cm ç 2 ÷ 2 REF è ø (7) 9.1.2.1 Amplifier Selection Linearity over the input range is
in „Poti / Buffer / ADC / STM32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Texas-Instruments-LMV324I.pdf
signal is equal to the reference voltage and the maximum output of each amplifier is equal to the V REF. The differential output range is 2×V REF . Furthermore, the common mode voltage will be one half of V REF (see Equation 7). V = V - V = V ´ æ1 + R 2ö - V ´ æ R 4 öæ1 + R 2 ö DIFF OUT + OUT - IN è R 1ø REF èR 3 + R 4 øè R1 ø (3) VOUT+ = VIN (4) VOUT– = VREF – VIN (5) VDIFF= 2×V INV REF (6) V = æV OUT ++ V OUT -ö = 1 V cm ç 2 ÷ 2 REF è ø (7) 9.1.2.1 Amplifier Selection Linearity over the input range is
in „LMV324 frage zu 0-5v->0-3.3V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD811.pdf
LeadPlasticDualIn-LinePackage[PDIP] (N-8) Dimensionsshownininchesand(millimeters) 0.005 (0.13) 0.055 (1.40) 0.075 (1.91) 0.200 (5.08) MIN MAX 0.100 (2.54) REF REF 0.100 (2.54) REF 8 5 0.064 (1.63) 0.095 (2.41) 0.015 (0.38) 0.075 (1.90) MIN 0.310 (7.87) 19 3 PIN 1 0.220 (5.59) 18 20 4 0.358 (9.09) 0.358 1 0.028 (0.71) 1 4 (9.09
in „2 Spannungen in einer Schaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TTester_096k.pdf
the capacity measurement. This option should allways be set. example: CFLAGS += -DC MESS WITH AUTO REF speci▯es, that reference voltage is read to get the actual factor for capacity measuring of low capacity values (below 50▯F). example: CFLAGS += -DWITH AUTO REF REF KORR speci▯es an o▯set for readed
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PDF
ir2184.pdf
B IN IN HO SD SD V TO S LOAD COM LO up to 600V IR2184 HO IR21844 VCC VCC VB IN IN V S LOAD SD SD (Refer to Lead Assignments for correct DT configuration). This/These diagram(s) show VSS VSS COM electrical connections only. Please refer to RDT LO our Application Notes and DesignTips for proper circuit
in „IR2184 Widerstände bei MOSFETS?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ir2184.pdf
IN IN HO TO SD SD V S LOAD COM LO up to 600V IR2184 HO IR21844 VCC VCC VB IN V IN S TO SD SD LOAD (Refer to Lead Assignments for correct DT V VSS COM configuration). This/These diagram(s) show SS RDT LO electrical connections only. Please refer to our Application Notes and DesignTips for proper circuit
in „IR 21844 Ansteuern??“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
1776fs.pdf
Dropout Voltage (Note 2) 2.8 3.1 V Shutdown Mode I V = 0V 30 50 A VIN SHDN 75 A Feedback Amplifier V REF Reference Voltage 1.225 1.240 1.255 V 1.215 1.265 V I FB Pin Input Bias Current 600 1500 nA IN g m Feedback Amplifier Transconductance lc = 10 A 400 650 1000 mho 200 1500 mho ISRC SNK Feedback Amplifier
in „Stromausfall Datensicherung auf EEprom“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Calgary_OLED_Module_Application_Instruction.pdf
contact: MOLEX 52893-3095, or equivalent and top contact: MOLEX 54104-3031, or equivalent Operation Refer to the “FUNCTIONAL BLOCK DESCRIPTIONS” of the SSD0323 data sheet for more information. Programming Refer to the section “COMMAND TABLE” of the SSD0323 product specification for detailed command description
in „Osram Pictiva OLED - Welche Kondensatoren???“ · Mikrocontroller und Digitale Elektronik ·
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PDF
s8241.PDF
4.350V 4.000V 2.60V 3.30V 0.200V Unavailable (1) Yes S-8241ABYMC-GBYT2G 4.220V 4.220V 2.30V 2.30V 0.200V Available (3) Yes S-8241ACAMC-GCAT2G 4.280V 4.080V 2.30V 2.30V 0.200V Available (1) Yes S-8241ACBMC-GCBT2G 4.300V 4.100V 2.30V
in „Li-Ion Akku mit oder ohne eingebaute Schutzschaltung“ · Analoge Elektronik und Schaltungstechnik ·