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adc_example1_gfx.c
); sprintf(out_test, "adc=%" PRIu16 " ADCCH_POS_BANDGAP / ADC_REF_BANDGAP = %.4f", res, ((float)res) / 4096.0f); adc_flush(&ADCA); SetupADC(&ADCA, ADC_INFO_CHANNEL_MASK, ADCCH_POS_SCALED_VCC, ADC_REF_BANDGAP, ADC_BANDGAP_bm); delay_ms(20); adc_start_conversion(&ADCA
in „XMega: ADC liefert seltsame Werte“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Tiny_50Hz.c
internal 2.56 volts voltage reference channel value. #define ADC_REFERENCE_VOLTAGE_25INTERNAL ((1 << REFS2) |(1 << REFS1) | (0 << REFS0)) //! ADC internal 1.1 bandgap voltage reference channel value. #define ADC_REFERENCE_VOLTAGE_11INTERNAL ((0 << REFS2) |(1 << REFS1) | (0 << REFS0)) //! ADC VCC voltage reference channel value. #define ADC_REFERENCE_VOLTAGE_VCC ((0 << REFS2) |(0 << REFS1) | (0 << REFS0)) //! ADC AREF voltage reference channel value. #define ADC_REFERENCE_VOLTAGE_AREF ((0 << REFS2) |(0 << REFS1) | (1 << REFS0)) /*! ADC voltage reference used in this application
in „Theorie Wechselrichter 12V DC -> 230V AC“ · Analoge Elektronik und Schaltungstechnik ·
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LP2950-D.PDF
mVrms n CL= 1.0 mF − 126 − CL= 100 mF − 56 − LP2951A/LP2951AC Only Reference Voltage (T = 25°C) V V A ref LP2951C/LP2951C−XX/NCV2951C* 1.210 1.235 1.260 LP2951AC/LP2951AC−XX/NCV2951AC* 1.220 1.235 1.250 Reference Voltage AT = −40 to +125°C) V ref V LP2951C/LP2951C−XX/NCV2951C* 1.200 − 1.270 LP2951AC/LP2951AC−XX/NCV2951AC* 1.200 − 1.260 Reference Voltage AT = −40 to +125°C) V ref V O = 100 mA to 100 mA,in = 23 to 30 V LP2951C/LP2951C−XX/NCV2951C* 1.185 − 1.285 LP2951AC/LP2951AC−XX/NCV2951AC* 1.190 − 1.270 Feedback Pin Bias
in „Wie lange hält ein LM1117-5.0 ?“ · Analoge Elektronik und Schaltungstechnik ·
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LP2950_LP2951.pdf
mVrms n CL= 1.0 mF − 126 − CL= 100 mF − 56 − LP2951A/LP2951AC Only Reference Voltage (T = 25°C) V V A ref LP2951C/LP2951C−XX/NCV2951C* 1.210 1.235 1.260 LP2951AC/LP2951AC−XX/NCV2951AC* 1.220 1.235 1.250 Reference Voltage AT = −40 to +125°C) V ref V LP2951C/LP2951C−XX/NCV2951C* 1.200 − 1.270 LP2951AC/LP2951AC−XX/NCV2951AC* 1.200 − 1.260 Reference Voltage AT = −40 to +125°C) V ref V O = 100 mA to 100 mA,in = 23 to 30 V LP2951C/LP2951C−XX/NCV2951C* 1.185 − 1.285 LP2951AC/LP2951AC−XX/NCV2951AC* 1.190 − 1.270 Feedback Pin Bias
in „Warum funktioniert mein Brückengleichrichter nicht?“ · Fahrzeugelektronik ·
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3986pfd.pdf
Block Diagram +5 V VMOTOR VDD VBB VREG Bandgap Regulator CREG P VREG Phase 1A Bridge1 C1A CBOOT1A V REF REF GH1A High-Side Drive RGH1A RGH1B S1A VREG DAC Low-Side GL1A Drive RGL1A RGL1B STEP LSS1 PWM Latch Blanking SENSE1 DIR Mixed Decay Phase 1B RSENSE1 P Low-Side GL1B MS1 Drive S1B Phase 1 Phase 1 GH1B
in „Bitte Hilfe in Englisch“ · Mikrocontroller und Digitale Elektronik ·
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Datei
gpio.c
pders = 1 << (pin & 0x1F); else gpio_port->pderc = 1 << (pin & 0x1F); #endif #if defined(AVR32_GPIO_200_H_INCLUDED) || defined(AVR32_GPIO_210_H_INCLUDED) || defined(AVR32_GPIO_211_H_INCLUDED) || defined(AVR32_GPIO_212_H_INCLUDED) /* Select drive strength */ if (flags & GPIO_DRIVE_LOW) gpio_port->odcr0s
in „Registernamen AT32UC3A1512“ · Mikrocontroller und Digitale Elektronik ·
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DLx2416.pdf
(off normal a)is hor. (typ.)2 ϕ ±50 ±50 ±50 deg ver. (typ.) ±75 ±75 ±75 deg. Character Height h 0.200 0.200 0.200 inch 5.08 5.08 5.08 mm Time averaged luminous intensity (typ.) 60 100 120 µcd/LED (100% brightness,V CC= 5.0 V) LED to LED intensity matching (max.) 1.8:1.0 1.8:1.0 1.8:1.0 LED to LED hue
in „(V) 4-Fach 5*7 Punktmatrix Osram DLR 2416, Bistabile Relais SDS, LED-Display 7-Seg. 4-Fach“ · Markt ·
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Scheiben_Varistor_S10K20.pdf
B72214S0600K101 100 ±10 165 50.0 1650 B72220S0600K101 100 ±10 165 100.0 3600 B72205S0750K101 120 ±10 200 5.0 210 B72207S0750K101 120 ±10 200 10.0 430 B72210S0750K101 120 ±10 200 25.0 720 B72214S0750K101 120 ±10 200 50.0 1370 B72220S0750K101 120 ±10 200 100.0 2900 B72205S0950K101 150 ±10 250 5.0 135 B72207S0950K101
in „DC Geräteeingang“ · Analoge Elektronik und Schaltungstechnik ·
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SIOV_Leaded_StandarD.pdf
B72214S0600K101 100 ±10 165 50.0 1650 B72220S0600K101 100 ±10 165 100.0 3600 B72205S0750K101 120 ±10 200 5.0 210 B72207S0750K101 120 ±10 200 10.0 430 B72210S0750K101 120 ±10 200 25.0 720 B72214S0750K101 120 ±10 200 50.0 1370 B72220S0750K101 120 ±10 200 100.0 2900 B72205S0950K101 150 ±10 250 5.0 135 B72207S0950K101
in „Funkenlöschung mit Varistor“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datenblatt-500651-tdk-b72214s231k101-s14k230-scheiben-varistor-360-v-1-st.pdf
B72214S0600K101 100 ±10 165 50.0 1650 B72220S0600K101 100 ±10 165 100.0 3600 B72205S0750K101 120 ±10 200 5.0 210 B72207S0750K101 120 ±10 200 10.0 430 B72210S0750K101 120 ±10 200 25.0 720 B72214S0750K101 120 ±10 200 50.0 1370 B72220S0750K101 120 ±10 200 100.0 2900 B72205S0950K101 150 ±10 250 5.0 135 B72207S0950K101
in „Welcher Varistor ist das?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
4735676982003210112259.pdf
REPRODUCED, COPIED, OR SPEC NO. :233-220-073 PAGE : 5/18 Note 2 : Definition of scanning direction. Refer to figure as below: UP 1 FPC DOWN 26 LEFT RIGHT b. Backlight driving section (Refer to Fig.1) No. Symbol I/O Description Remark 1 HI Power supply for backlight unit (Hight voltage) I 2 GND - Ground
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TFT_Color_Modul.pdf
REPRODUCED, COPIED, OR SPEC NO. :233-220-073 PAGE : 5/18 Note 2 : Definition of scanning direction. Refer to figure as below: UP 1 FPC DOWN 26 LEFT RIGHT b. Backlight driving section (Refer to Fig.1) No. Symbol I/O Description Remark 1 HI Power supply for backlight unit (Hight voltage) I 2 GND - Ground
in „Farb TFT Modul UP018D01 (280 x 220 ) zu verkaufen“ · Markt ·
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UP018D01.pdf
REPRODUCED, COPIED, OR SPEC NO. :233-220-073 PAGE : 5/18 Note 2 : Definition of scanning direction. Refer to figure as below: UP 1 FPC DOWN 26 LEFT RIGHT b. Backlight driving section (Refer to Fig.1) No. Symbol I/O Description Remark 1 HI Power supply for backlight unit (Hight voltage) I 2 GND - Ground
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Datei
adc_display.c
include <string.h> #include "../includes/display_lib.h" #define TIMER_16BIT 8000 #define TIMER_8BIT 200 #define ADC_REF_QUOT_8BIT 0.01953125 //= 5/(255+1) volatile uint8_t iPos = 0; volatile uint8_t iCycleCount = 0; volatile uint8_t iWert = 0; uint8_t aIntDisplayDecode[16] = { SEGMENT_0, SEGMENT_1, SEGMENT
in „AVR Timer + ADC“ · Mikrocontroller und Digitale Elektronik ·
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LT3756.pdf
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 1.22 1.98 1.98 1.21 1.97 1.97 1.20 1.96 1.96 0 20 40 60 80 100 –50 –25 0 25 50
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multimeter.pdf
6 3 + so R6 R5 7ss 200k R7 100n o 4ss Vcc 1N4148 4.7k 1 5 1N4148 D9 D8 HEF4030B C5 R8 U2B 100n 1M 5 10M C6 9M 200k R9 4MINUS R10 BP 6 R11 R12 O I s L c e H s N 1 1 N V I S S I 100k 1% 50ppm R13 TL061 Vcc 1N4148 100n 7 D10
in „Suche DIY Multimeter Schaltung vor 1990“ · Analoge Elektronik und Schaltungstechnik ·
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ms5561c.pdf
actual temperature s Difference between actual temperature and reference r temperature: dT(D2) = D2 -ref dT = 2608 P dT = D2 - UT1 Actual temperature: TEMP(D2) = 20°+dT(D2)*TEMPSENS TEMP = 391 10 = 39.1 °C TEMP = 200 + dT*(C6+50)/2 (0.1°C resolution) Calculate temperature compensated pressure Offset at
in „Baro- & Hygrometer ab 8.4. bei Lidl“ · Mikrocontroller und Digitale Elektronik ·
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tlc549.pdf
Microprocessor Peripheral or Standalone D OR P PACKAGE Operation (TOP VIEW) D 8-Bit Resolution A/D Converter REF+ 1 8 V D Differential Reference Input Voltages CC ANALOG IN 2 7 I/O CLOCK D Conversion Time . . . 17 s Max REF– 3 6 DATA OUT GND 4 5 CS D Total Access and Conversion Cycles Per Second – TLC548 . . .
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LTC1923.pdf
200 CT= 330pF 165 0 2.485 –50 –20 10 40 70 100 130 5 10 15 20 –50 –20 10 40 70 100 130 TEMPERATURE (°C) R TkΩ) TEMPERATURE (°C) 1923 G01 1923 G02 1923 G03 V REF vs IREF for Different Temperatures Output Dead Time vs R T Output Rise/Fall Time vs R SLEW 2.515 150 250 TA= 25°C TA= 25°C 2.510 2.505 125 200 T = 125°C 2.500 A ) VDD = 2.7V ( n V2.495 E 100 E 150 F T = 25°C I VDD = 5V M R2.490 A T T V A 75 S 100 2.485 D R 2.480 T = –50°C 50 50 2.475 A 2.470 25 0 0 5 10 15 5 7.5 10 12.5 15 0 100 200 300 REF
in „Peltier und PWM?“ · Analoge Elektronik und Schaltungstechnik ·
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adu.asm
;========================== clr r16 sts IC,r16 ldi r16,$40 ;Init ADC sts ADMUX,r16 ;Set ADC0, 5V0 REF ldi r16,$e7 sts ADCSRA,r16 ;ADC ENABLE ;In Timer-Interrupt(z.B.200Hz für 4 Channels/1,28Sek) ;==================================================== adu: lds XL,IC inc XL sts IC,XL ;IC7=REF, IC7/6=MUX
in „Analoger Sensor (LM335) mit Operationsverstärker + AVR Asm-Code“ · Projekte & Code ·
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Datei
adu.asm
;========================== clr r16 sts IC,r16 ldi r16,$40 ;Init ADC sts ADMUX,r16 ;Set ADC0, 5V0 REF ldi r16,$e7 sts ADCSRA,r16 ;ADC ENABLE ;In Timer-Interrupt(z.B.200Hz für 4 Channels/1,28Sek) ;==================================================== adu: lds XL,IC inc XL sts IC,XL ;IC7=REF, IC7/6=MUX
in „Analoger Sensor (LM335) mit Operationsverstärker + AVR Asm-Code“ · Projekte & Code ·
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A200_IR2117_IR2117S.pdf
vs. Supply Voltage 250 250 ) n s e 200 (200 m e T 150 i150 a l F F f 100 f100 M ax. - - u M ax. r T 50 T 50 Typ. 0 Typ. 0 -50 -25 0 25 50 75 100 125 10 12 14 16 18 20 o Temperature (C) V BIASupply Voltage (V) Figure 7A. Turn-Off Fall Time
in „Mosfet treiber“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HV9901.pdf
Bandgap Reference Voltage 1.20 1.25 1.30 V T A -40°C to +85°C VREF Load Regulation 7.0 mV 0mA < I REF< 0.3mA VREF Line Regulation 10.0 15.0 mV 8.5V < V DD< 9.5V REF(SHORT) Short Circuit Current 1.0 mA REF(SINK) Reference Voltage Sink Current 20 µA 2 HV9901 Electrical Characteristics (T = 25°C, unless
in „Cree LED an 230V“ · Mikrocontroller und Digitale Elektronik ·
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500656-da-01-en-Kaltleiter_B59850_C120_A70.pdf
Features Lead-free terminals Manufacturer's logo and type designation stamped on in black or red for ref 80 °C and for Tref120 °C and 130 °C stamped on in white Short response times UL approval for Tref130 °C to UL 1434 with V max= 220 V and VR= 220 V (file number E69802) UL approval for Tref120 °C to
in „Kurzschlusssicherer Ausgang mit 80mA Belastbarkeit“ · Mikrocontroller und Digitale Elektronik ·
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IL300.pdf
, 5300 V RMS , 1.0 sec. .280 (7.112) .380 (9.652) .010 (0.254) REF. .330 (8.382) .400 (10.16) • Internal Insulation Distance, >0.4 mm .300 Typ. forVDE (7.62) Typ. .020 (0.508) REF. .010 (0.254) REF. • Underwriters Lab File #E52744 • D E VDE Approval #0884 (Available
in „Galvanisch getrennten 1-10V Ausgang regeln“ · Analoge Elektronik und Schaltungstechnik ·
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AD7170.pdf
±V REF V VREF= REFIN(+) − REFIN(−) Absolute AINxVoltage Limits2 GND − 0.03 VDD+ 0.03 V 2 Average Input Current ±400 nA/V Input current varies with input voltage Average Input Current Drift ±60 pA/V/°C DC Common-Mode
in „AD7170 Datenübertragungsrate“ · Mikrocontroller und Digitale Elektronik ·
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AD7170.pdf
±V REF V VREF= REFIN(+) − REFIN(−) Absolute AINxVoltage Limits2 GND − 0.03 VDD+ 0.03 V 2 Average Input Current ±400 nA/V Input current varies with input voltage Average Input Current Drift ±60 pA/V/°C DC Common-Mode
in „Externer AD-Wandler AD7170“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1_TEA5768HL_Datasheet.pdf
kHz; − 2 3.5 V fmod = 1 kHz; (S+N)/N = 26 dB; de-emphasis = 75 s; L = R; B AF= 300 Hz to 15 kHz S−200 LOW side 200 kHz selectivity f = −200 kHz;RF = 76 MHz to 108 MHz; 32 36 − dB note 1 S+200 HIGH side 200 kHz f = +200 kHz;RF = 76 MHz to 108 MHz; 39 43 − dB selectivity note 1 VAFL; VAFR left and right
in „FM Stereo Radio mit TEA5768 von Philips“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Levi.c
ADCkDpoti,nMean)*512 ; kPpoti = getADCmean(ADCkPpoti,nMean)*64 ; } int32_t Kp ; int32_t Kd ; volatile int refValueX=0 ; volatile int refValueY=0 ; int32_t errorX; // refValue - current X hall sensor reading int32_t prevErrX=0; // previous error for calculating dirivative int32_t dErrorX; //derivative of error
in „Levitation Nachbau“ · Mikrocontroller und Digitale Elektronik ·
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LM2575TADJ.PDF
R2: Figure 14) use the following formula: V ▯ 1.23 1 ▯ R2 ▯ R2 out R1 Select R1 = 1.8 k▯ Vout ▯ V ref▯1 ▯ R1 ▯ where V ref= 1.23 V Vout 8.0 V Resistor R1 can be between 1.0 k and 5.0 k▯. (For best R2 ▯ R1 ▯ V ▯ 1 ▯ ▯ 1.8 k▯ 1.23 V ▯ 1 ▯ temperature coefficient and stability with time, use 1% metal ref
in „3W Luxeon Led energiesparend dimmen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
pinoperations.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 „genauer Code im Anhang“ · Mikrocontroller und Digitale Elektronik ·
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3108fb.pdf
1600 VOUT 40 C O Y O (OUT = 4.5V) Y IV600 I 30 % I % VOUT ) 1200 30 ) 400 (VOUT = 4.5V) 20 800 20 200 10 400 10 0 0 0 0 100 200 300 400 5000 0 100 200 300 400 500 VIN(mV) VIN(mV) 3108 G03 3108 G02 Input Resistance vs V IN IVOUT vs VINnd Source Resistance, (VOUT Charging) 1:20 Ratio 10 10000 C1 = 10nF
in „Blink LED mit Ladungspumpe für sehr niedrige Eingangsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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STM32F746-DISCO-OSCI.pdf
get the sampled voltage value: U = 3.3V * (32767 / 4095) * x = 3.3V * 8 * x = 26.4V * x For our V-Ref we get: U = 26.4V * 0.0459 = 1.212V Which match pretty well the data sheet specification (even if the sampling time is much shorter than the recommended 10us): BUT – what are the ZEROs every 200 samples
in „STM32F746G-DISCO-OSCI mit WAV-Recording auf SD-Karte“ · Projekte & Code ·
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SP724.pdf
. . . . . . . . . . . .. . . . . . . . . . . . . . 220 Forward Peak Current, IN to VCC , GND o o (Refer to Figure 6). . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .±2.2A, 100µs Range.......................-65 C to 150 C ESD Ratings and Capability - See Figure 1, Table 1 Maximum Junction
in „AVRISP mkII - defektes Bauteil gesucht“ · Mikrocontroller und Digitale Elektronik ·
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isl78225.pdf
Soft-Start Clamp Voltage 3.4 V REFERENCE VOLTAGE System Accuracy -40°C to +125°C, measure at FB pin, REF2> 2.5V 1.98 2 2.02 V FB Pin Input Bias Current VFB = 2V, REF2 > 2.5V -1 1 µA V Pin Input Bias Current V = 1.6V -1 1 µA REF2 REF2 7 FN7909.3 February 11, 2014 ISL78225 Electrical Specifications Operating
in „Verdammtes Kompensationsnetzwerk“ · Analoge Elektronik und Schaltungstechnik ·
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LT3465.pdf
(CTRL = 0V) 450 T = 25°C 300 30 T = 25°C ) A ) TA= 25°C A V400 A 27 ( (250 24 G350 N T R 21 O300 U200 V C ) 18 O250 R A T A150 ( 15 R200 R IQ T F 12 S150 Y100 H K 9 T100 O 6 W C 50 S 50 S 3 0 0 0 0 50 100 150 200 250 300 350 0 200 400 600 800 1000 1200 2 4 6 8 10 12 14 16 SWITCH CURRENT (mA) SCHOTTKY
in „s65 display stromversorgung“ · Mikrocontroller und Digitale Elektronik ·
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MAX856-Stepup.pdf
Configuration OUT TOP VIEW OUTPUT 5VAT100mA SHDN 1 8 LX 47 H OR 3.3VAT125mA 3/52 7 GND ON/OFF SHDN LX REF 3 MAX858 6 OUT 1N5817 4 68 F LBO 5 LBI MAX856 3V/5V SELECT 3/5 OUT SO/ MAX LOW-BATTERY DETECTOR LBI SHDN 1 8 LX INPUT FB 2 7 GND REF LBO LOW-BATTERY 3 MAX857 GND DETECTOROUTPUT REF MAX859 6 OUT LBO
in „Bitte mal kurz über Schaltplan drüberschauen“ · Mikrocontroller und Digitale Elektronik ·
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MAX856-Stepup.pdf
Configuration OUT TOP VIEW OUTPUT 5VAT100mA SHDN 1 8 LX 47 H OR 3.3VAT125mA 3/52 7 GND ON/OFF SHDN LX REF 3 MAX858 6 OUT 1N5817 4 68 F LBO 5 LBI MAX856 3V/5V SELECT 3/5 OUT SO/ MAX LOW-BATTERY DETECTOR LBI SHDN 1 8 LX INPUT FB 2 7 GND REF LBO LOW-BATTERY 3 MAX857 GND DETECTOROUTPUT REF MAX859 6 OUT LBO
in „Verständnisfrage zu Shutdown Feature von Schaltregler MAX856“ · Mikrocontroller und Digitale Elektronik ·
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DE102006020301B4.pdf
Kondensatorspannung des Referenzkondensators C die Triggerschwelle des Komparators 3 unterschreitet. ref Hiermit wird die Zeitmessung des TDC gessoppt. Die gemessene Zeit t ist 1 t = (C + C )·R + t , (1) 1 ref par komp wobei tkomp die Laufzeit des Komparators ist. Einzelmessung 2 [0035] Zunächst wird der
in „Laufzeit eines Komparators“ · Analoge Elektronik und Schaltungstechnik ·
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auo-B101AW06-V1-pre.pdf
VDocument Version : 0.1 6 of 28 Product Specification AU OPTRONICS CORPORATION Note 1: 5 points position (Ref: Active area) W W /4 W /4 W /4 W /4 H /4 1 2 H /4 H 3 H /4 4 5 H /4 Note 2: 13 points position (Ref: Active area) W W /4 W /4 W /4 W /4 10 10 10 H/4 1 2 3 5 4 H/4 H 6 7 8 H/4 9 10 H/4 10 11 12 13 Note
in „Handydummy (Attrappe)mit richtigem Display 10Zoll - u.a.Motorola Xoom“ · Mikrocontroller und Digitale Elektronik ·
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TL431A_432A.pdf
DECEMBER 2005 PARAMETER MEASUREMENT INFORMATION Input VKA IKA Vref Figure 2. Test Circuit for V = V KA ref Input VKA IKA R1 I ref R2 V R1 ref V KA+ V ref1 ) R2Ǔ) Iref R1 Figure 3. Test Circuit for V > V KA ref Input VKA off Figure 4. Test Circuit for I off POST OFFICE BOX 655•DALLAS, TEXAS 75265 17 SLVS543J
in „Spannung mit Bezug +Ub messen“ · Analoge Elektronik und Schaltungstechnik ·
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q8025n.pdf
2.5 70 2 20 0.5 200/167 4 350 225 4 166 100 1.6 2.5 70 2 20 0.5 200/167 4 300 200 4 166 100 1.6 2.5 70 2 20 0.5 200/167 4 200 4 166 100 1.8 2.5 100 2 20 0.5 200/167 5 400 275 4 166 100 1.8 2.5 100 2 20 0.5 200/167 5 400 275 4 166 100 1.8 2.5 100 2 20 0.5 200/167 5 350 225 4 166 100 1.8 2.5 100 2 20 0.5 200/167 5 300 200 4 166 100 1.8 2.5 100 2 20 0.5 200/167 5 200 4 166 100 1.4 2.75 50 2 20 0.5 250/220 5 550 475 3 260 100 1.4 2.75 50 2 20 0.5 250/220 5
in „Leister Zündgerät Triac S Economy“ · Analoge Elektronik und Schaltungstechnik ·
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LT3475.pdf
Switching 6 8 mA Shutdown Current SHDN = 0.3V, V BOOST = VOUT = 0V 0.01 2 µA LED Pin Current VADJ Tied to REF• 2/3 0.97 1.00 1.03 A ● 0.94 1.04 A VADJ Tied to REF• 7/30 0.336 0.350 0.364 A LT3475E 0°C to 85°C 0.325 0.375 A ● 0.31 0.385 A REF Voltage ● 1.22 1.25 1.27 V Reference Voltage Line Regulation 4V <
in „3W Luxeon Led energiesparend dimmen“ · Mikrocontroller und Digitale Elektronik ·
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HFBR-14XX_Optolink.pdf
Budget OPB100 8.0 15 dB HFBR-14x2/24x2 Note 1 with 100/140 µm fiber NA = 0.30 Optical Power Budget OPB200 12 20 dB HFBR-14x2/24x2 Note 1 with 200 µm fiber NA = 0.37 Date Rate Synchronous dc 5 MBd Note 2 Asynchronous dc 2.5 MBd Note 3, Fig 7 Propagation Delay PLH 72 ns TA= +25 °C Figs 6, 7, 8 LOW to HIGH
in „Debuggen bei EMV-Tests“ · Mikrocontroller und Digitale Elektronik ·
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STTH16L06C.pdf
VR=400V VR=400V j=125°C Tj125°C 16 F =2 F(AV) 350 14 F F(AV) 300 IF=2 F(AV) 12 IF=0.5F(AV) 250 10 200 8 F F(AV) 150 F =0.5F(AV) 6 100 4 2 50 dI /dt(A/µs) F dIF/dt(A/µs) 0 0 0 50 100 150 200 250 300 350 400 450 500 0 50 100 150 200 250 300 350 400 450 500 3/8 STTH16L06C Figure 7: Reverse recovery charges
in „Philips TV 47PFL9664H/12 Hintergrundbeleuchtung defekt“ · Analoge Elektronik und Schaltungstechnik ·
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1717899.pdf
0.45 405 200 Operate/release time max. 10/4ms 12 12 9.00 0.6 720 200 Electrical endurance 18 18 13.50 0.9 1620 200 3 3A version: 250VAC, resistive, 100x10 3ps. 24 24 18.00 1.2 2880 200 5A version: 250VAC, r esistive
in „Bidirektionaler DC-Schalter“ · Analoge Elektronik und Schaltungstechnik ·
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SIM908-C.pdf
User can use AT command “AT+CADC” to read the voltage value. For details of this AT command, please refer to document [1]. Table 14: ADC specification Parameter Min Typ Max Unit Voltage range 0 - 2.8 V ADC Resolution - 10 - bits Sampling rate - - 200K Hz 4.11 RI Behaviors Table 15: RI Behaviors State RI
in „GSM-Modul (SIM908) nur analoge Ausgänge für Anruf?“ · HF, Funk und Felder ·
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MAX127-MAX128B.pdf
Time tCONV 6.0 7.7 10.0 µs Throughput Rate 8 ksps Bandgap Reference Start-Up Time Power-up (Note 8) 200 µs Reference Buffer Settling Time To 0.1mV, REF bypass CREF = 4.7µF 8 ms capacitor fully discharCREF = 33µF 60 DIGITAL INPUTS (SHDN, A2, A1, A0) Input High Threshold Voltage V IH 2.4 V Input Low Threshold
in „Probleme mit Max127 (i2c adc) und m644p (gcc)“ · Mikrocontroller und Digitale Elektronik ·
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0900766b80f702e6.pdf
Time tCONV 6.0 7.7 10.0 µs Throughput Rate 8 ksps Bandgap Reference Start-Up Time Power-up (Note 8) 200 µs Reference Buffer Settling Time To 0.1mV, REF bypass CREF = 4.7µF 8 ms capacitor fully discharCREF = 33µF 60 DIGITAL INPUTS (SHDN, A2, A1, A0) Input High Threshold Voltage V IH 2.4 V Input Low Threshold
in „MAX127BCAI Bipolar nur in diff mode?“ · Mikrocontroller und Digitale Elektronik ·
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Mikrophon__Invensense_.pdf
SuggestedSolderPasteStencilPatternLayout Rev. 0 | Page 9 of 12 ADMP411 Data Sheet OUTLINE DIMENSIONS 4.72 4.10 REF 4.62 REF EREN CE 3.30 REF 0.79 BSC P I 1 CO RNE R 2.62 BSC (INS.1,5,6) 1 2 3.86 1.68 DIA. 3.66 2.40 BSC 6 3 1.10 DIA. BSC4 3.14 REF 1.20 BSC 5 4 (THRU HOLE)1.27 BSC TOP VIEW 0.68 REF BOTTOM VIEW 0.70D I..1 REF 1.10 0.73 REF (PINS 2,4) 0.90 E SIDE VIEW 0.24 REF 2 1 Figure15.6-TerminalChipArraySmallOutlineNoLeadCavity[LGA_CAV] T 4.72mm×3.76mmBody Dimensionsshowninmillimeters E ORDERINGGUIDE Model 1 Temperature
in „Ungewöhnliches SMD-Pad“ · Platinen ·