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media32.pdf
2 VCC VCC P I U 1 VBAT PC15-OSC32_OUT I U 1 0 4 PIS5103CMD 32 31 PISS105CLK C VCC P I 481 VDD_1 VSS_1P I47 1 0GND1 C 08076P05 VCC P I 641 VDD_2 VSS_2P I63 1 0GND7 4 RA2A2 VCC P I 191 VDD_3 VSS_3P I18 1 0GND3 VCC P I6S SVDD0 4 10k VCC P I U 1 VDD_4 VSS_4P I U 1 0GND8 GND P I0S SGND0 6 Array 13 12 GND PISS100MOUNT VCC CP11 VCC 010P3P04 VCC P I U 1 VDDA3 VSSAP I U 1 0GND2 3M Micro SD 1 2 3 4 STM32F103RET PIP1022 1PIP101 TRST
in „MP3 Player mit Clickwheel und S65“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Bildschirmfoto_2026-02-01_um_16.11.33.pdf
CMOS Logic “0” voltage1) VOL I 0.6 V Logic “1” voltage1) VOH I 2.4 V Note: 1. With IOL= 1 mA and IOH = -1 mA 7 5364A–BIOM–11/03 . Table 8. Switching Performances The following characteristics are applicable to the operating
in „Atmel Fingerchip —> welches Flexkabel?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
dfs06.pdf
Peak Reverse Voltage (%) Fig. 1 - Derating Curve Output Rectified Current Fig. 4 - Typical Reverse Leakage Characteristics Per Diode 60 100 T J 150 °C TJ= 25 °C ) Single Sine-Wave f = 1.0 MHz ( 50 ) Vsig 50 mVp-p n p r ( u 40 c C a
in „Miele Trockner ELP305 Ladekondensator defekt“ · Haus & Smart Home ·
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Datei
rfm12_.c
RF12_SDI LATAbits.LATA4 // Ausgang zum RFM #define RF12_SCK LATAbits.LATA3 // Ausgang zum RFM #define RF12_SDO PORTAbits.RA5 // Eingang vom RFM #define RF12_NIRQ PORTBbits.RB1 // Eingang vom RFM INT1 #define RF12_CS LATAbits.LATA2
in „RFM12 Statusabfrage“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1019.pdf
SYMBOL PARAMETER CONDITIONS MIN TYP MAX MIN TYP MAX UNITS ∆V OUT Load Regulation Series 0 ≤ OUT ≤ 10mA (Note 5) 0.02 0.05 0.02 0.05 mV/mA (Ω) ∆I OUT Mode (Notes 4, 5) ● 0.08 0.08 mV/mA (Ω) Load Regulation, 1mA ≤ ISHUNT ≤ 10mA (Notes 5, 6) Shunt Mode 2.5V, 4.5V, 5V ● 0.1 0.4 0.1 0.4 mV/mA (Ω) 10V ● 0.8
in „Hochgenaue 2.5V Referenz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
photodiode_frontends.pdf
i.e. when i R = 2kT/e (51 d L article I wrote on how to get rid conveniently large, we might pick 1 M , mVat300K),buttheSNRlossislessthan T of laser intensity noise down to asshowninFig.1.Thiscircuitislinear,but 1 dB when i dRL≥ 200 mV. If that 1 dB is the shot-noise level was published.1In the extremely
in „Photodioden-Frontend hohe Empfindlichkeit, mittlere Bandbreite?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
myPicFWWLAN.c
// Init Modul: Reset mit RA5 gedrückt // factory-reset mit Initialisierung der WLAN-Parameter // Dauer ca. 10 s (Led B0=1 bis Leds B0-7=1) // // Vom myWLAN empfangene Befehle (RS232) werden ausgeführt. // zusätzliche Befehle //
in „Handy/Mikrocontroller und Wlan Anbindung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
2.7V/4.5V 0.2V 0.2V 0.2V tcc OFF 0.1mS≦trcc≦10mS OFF≧1mS Notes: OFF compensates for the power oscillation period caused by momentary power supply oscillations. Specified at 4.5V for 5V operation, and at 2.7V
in „DOG-M-Display/ST7036 Initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
2.7V/4.5V 0.2V 0.2V 0.2V tcc OFF 0.1mS≦trcc≦10mS OFF≧1mS Notes: OFF compensates for the power oscillation period caused by momentary power supply oscillations. Specified at 4.5V for 5V operation, and at 2.7V
in „Initialisierungsfolge fuer EA DOGM 163 SPI 3.3V“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
2.7V/4.5V 0.2V 0.2V 0.2V tcc OFF 0.1mS≦trcc≦10mS OFF≧1mS Notes: OFF compensates for the power oscillation period caused by momentary power supply oscillations. Specified at 4.5V for 5V operation, and at 2.7V
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PDF
LCD-Controller_ST7036.pdf
2.7V/4.5V 0.2V 0.2V 0.2V tcc OFF 0.1mS≦trcc≦10mS OFF≧1mS Notes: OFF compensates for the power oscillation period caused by momentary power supply oscillations. Specified at 4.5V for 5V operation, and at 2.7V
in „DOG-M mit ATmega8 in Assembler ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
2.7V/4.5V 0.2V 0.2V 0.2V tcc OFF 0.1mS≦trcc≦10mS OFF≧1mS Notes: OFF compensates for the power oscillation period caused by momentary power supply oscillations. Specified at 4.5V for 5V operation, and at 2.7V
in „DOG-M Display über SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
2.7V/4.5V 0.2V 0.2V 0.2V tcc OFF 0.1mS≦trcc≦10mS OFF≧1mS Notes: OFF compensates for the power oscillation period caused by momentary power supply oscillations. Specified at 4.5V for 5V operation, and at 2.7V
in „LCD " ° " Zeichen aus Zeichensatz anzeigen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
2.7V/4.5V 0.2V 0.2V 0.2V tcc OFF 0.1mS≦trcc≦10mS OFF≧1mS Notes: OFF compensates for the power oscillation period caused by momentary power supply oscillations. Specified at 4.5V for 5V operation, and at 2.7V
in „Controller ST7036“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
2.7V/4.5V 0.2V 0.2V 0.2V tcc OFF 0.1mS≦trcc≦10mS OFF≧1mS Notes: OFF compensates for the power oscillation period caused by momentary power supply oscillations. Specified at 4.5V for 5V operation, and at 2.7V
in „STK500 und LCD (ST7036) Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7036.pdf
2.7V/4.5V 0.2V 0.2V 0.2V tcc OFF 0.1mS≦trcc≦10mS OFF≧1mS Notes: OFF compensates for the power oscillation period caused by momentary power supply oscillations. Specified at 4.5V for 5V operation, and at 2.7V
in „i2C TWI Modus - ST7036 - DOGM DOGM162 DOGM081 EA DOGM163, ist das Möglich ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INA102.pdf
Opto- 6 10 Coupler –15VDC 14 –In 9 +15VDC Cold 4990 +15VDC 500 Junction –15VDC OPA27 Compensation 1M 100k 15k Up-Scale Zero Adjust +VOFFSETTING 1M Burn-Out –15VDC Indication –15VDC –15VDC FIGURE 7. Isolated Thermocouple Amplifier with Cold Junction Compensation. ® +15VDC LA 15 +In 12 G = 1000 RA 4
in „Pulsmessung und Anzeige der Pulswelle auf einem LCD Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2_16.pdf
10,2 14,2 2x16, ZH 4.35mm v 3,65 m 5,5 75 4x 2,5 5,2 9,0 0,55 2,95 t 1 13x 2,54 14 0,05 k c 8 r 5 15 1 0 D 0 1A , , , , , , 0 i 3 3K 9 1 2 5 4 0 o 16 , s 1 n r 57,7 ohne LED mit LED e LED-Hintergrundbeleuchtung : n 64,5 - Anschluß Pin 15+ und 16- seitlich Ä 73,0 - externer Vorwiderstand 5..10 e 40,5 39,5 - I =50..200mA / U = typ. 4,2V c LED LED i h e T 8 DOTMA TRIXDISPLA YS2x16 d i k EA P162-EFLEX nu r 5 m m Ra2x16, ZH 5.55mm 1: VDD, 2: VEE, 3: RS, 4: R/W, 5: E, 6..13: D0..D7, 14: VSS EA P162-T1NLED Rahmen EA 017-
in „LCD ansteuerung mit PIC18F2525“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Osram_Lx_T67F_20mA_bunt.pdf
ant uIqdi otminDnEC > 1 1 Y W Houe 1 2. rbod M o t)reds e iybdrrequ/JE ti e e 1 68 a b )S icuv ormg ie I C ne : l orortdtiom e 3.D a)) 2aa re n atk op e F Fl l oo rtir b I r.ef ea lf ti e vel1l2 a FF l 4 ag s an d eL L eveevl3
in „LED Statistik“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
DeviceList.txt
(TSOP8) M24C256B M24C256B(SOIC8) M24C256B(TSOP8) M25C01 M25C02 M25C04 M25C08 M25C16 M25E16 M25W01 M25W02 M25W04 M25W08 M25W16 M25W166 M25P05 M25P05(SOIC8) M25P05(VQFPN8) M25P05A(SOIC8) M25P05A(VQFPN8) M25P10(SOIC8
in „[V] Genius G540 EPROM/Flash/uC Programmer (USB)“ · Markt ·
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PDF
ST7036-V1.4.pdf
propose over 0.8V). |Vout-V0|>0.5V(minimum) Vout V 0 VCC V DD GND V SS (System side) (ST7036Side) V1.4 2004/10/20 49/70 ST7036 # V0 voltage follower value calculation VDD Vout(≧VDD) Vref V0=(1+ Rb ) x Vref V0 Ra x α+36 While Vref=V DD ( 100 ) Ra Rb VSS C5 C4 C3 C2 C1 C0 α Rab2 Rab1 Rab0 1+Rb/Ra 0 0
in „EA DOG-M Display (ST7046) und customchars. ARGH!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TS912_mit_Spice-Modell.pdf
voltage gainL(R = 10 kΩo V = 1.5 V to 3.5 V) 10 40 Avd T ≤T ≤T 7 V/mV min amb max High level output voltage (V = 1 V) id R L= 100 kΩ 4.95 R L 10 kΩ 4.9 4.95 R = 600 Ω 4.25 4.55 V OH L V R L 100 Ω 3.7 T ≤T ≤T min amb max R L 10 kΩ 4.8 R L 600 Ω 4.1 Low level output voltageidV = -1 V) R L= 100 kΩ 50 R L 10 kΩ 40 100 R = 600 Ω 350 500 VOL L mV R L= 100 Ω 1400 Tmin ≤Tamb ≤T max R L 10 kΩ 150 R L 600 Ω 750 Output short-circuit currenid
in „Eingangswiderstand TS912 zwecks Berechnung Kompensationskondensator“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ts912.pdf
voltage gainL(R = 10 kΩo V = 1.5 V to 3.5 V) 10 40 Avd T ≤T ≤T 7 V/mV min amb max High level output voltage (V = 1 V) id R L= 100 kΩ 4.95 R L 10 kΩ 4.9 4.95 R = 600 Ω 4.25 4.55 V OH L V R L 100 Ω 3.7 T ≤T ≤T min amb max R L 10 kΩ 4.8 R L 600 Ω 4.1 Low level output voltageidV = -1 V) R L= 100 kΩ 50 R L 10 kΩ 40 100 R = 600 Ω 350 500 VOL L mV R L= 100 Ω 1400 Tmin ≤Tamb ≤T max R L 10 kΩ 150 R L 600 Ω 750 Output short-circuit currenid
in „Projekt: SerialComCNC Serielles Frontend für CNC GRBL mit ATMega“ · Projekte & Code ·
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PDF
ts912.pdf
voltage gainL(R = 10 kΩo V = 1.5 V to 3.5 V) 10 40 Avd T ≤T ≤T 7 V/mV min amb max High level output voltage (V = 1 V) id R L= 100 kΩ 4.95 R L 10 kΩ 4.9 4.95 R = 600 Ω 4.25 4.55 V OH L V R L 100 Ω 3.7 T ≤T ≤T min amb max R L 10 kΩ 4.8 R L 600 Ω 4.1 Low level output voltageidV = -1 V) R L= 100 kΩ 50 R L 10 kΩ 40 100 R = 600 Ω 350 500 VOL L mV R L= 100 Ω 1400 Tmin ≤Tamb ≤T max R L 10 kΩ 150 R L 600 Ω 750 Output short-circuit currenid
in „Projekt: SerialComCNC Serielles Frontend für CNC GRBL mit ATMega“ · Projekte & Code ·
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Datei
Configuration.h
305.4 //120V 250W silicone heater into 4mm borosilicate (MendelMax 1.5+) //from pidautotune //#define DEFAULT_bedKp 97.1 //#define DEFAULT_bedKi 1.41 //#define DEFAULT_bedKd 1675.16 // FIND YOUR OWN: "M303
in „Marlin 2.0.72 lässt sich nicht compilieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Texas-Instruments-LMV324IPWR.pdf
Swing LMV324S VO V CC= 5 V i − 4 w e LMV324S S 40 t VCC = 5 V g o l t 3 o 30 u LMV3xx t t VCC = 2.7 V p O 2 u 20 k LMV324S O e Positive Swing P VCC = 2.7 V 1 10 0 0 2.5 3.0 3.5 4.0 4.5 5.0 1k 10k 100k 1M 10M VCC − Supply Voltage − V
in „Poti / Buffer / ADC / STM32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Texas-Instruments-LMV324I.pdf
Swing LMV324S VO V CC= 5 V i − 4 w e LMV324S S 40 t VCC = 5 V g o l t 3 o 30 u LMV3xx t t VCC = 2.7 V p O 2 u 20 k LMV324S O e Positive Swing P VCC = 2.7 V 1 10 0 0 2.5 3.0 3.5 4.0 4.5 5.0 1k 10k 100k 1M 10M VCC − Supply Voltage − V
in „LMV324 frage zu 0-5v->0-3.3V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
am29dl323db.pdf
A19 DQ5 DQ12 CC DQ4 C4 D4 E4 F4 G4 H4 J4 K4 RY/BY# WP#/ACC A18 A20 DQ2 DQ10 DQ11 DQ3 C3 D3 E3 F3 G3 H3 J3 K3 A7 A17 A6 A5 DQ0 DQ8 DQ9 DQ1 A2 C2 D2 E2 F2 G2 H2 J2 K2 L2 M2 V NC* A3 A4 A2 A1 A0 CE# OE# SS NC* NC* A1 B1 L1
in „55 Stk. Flashbausteine 32Mbit, TSSOP48, 3,3V AM29DL323DB-90“ · Markt ·
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PDF
A200_DS_L6565D.pdf
6 GND 11/17 L6565 TYPICAL APPLICATIONS Figure 19. 50W Wide Range Mains SMPS for 14" TV C6 4700pF/ 4KV C7 4700pF/ 4KV F1 NTC1 D1 2A fuse 16R 1N4148 R9 R10 C25 4.7M 4.7M C22 Vin B1 2KBP04M 3 T1 100 pF 88 to C23 C24 1nF 105 V 264 Vac 100nF 100nF C1 R1 0.35A L1 150 F R5 C8 C2 N1 15mH 400 V 75k 100 k 8.2
in „Schaltnetzteil“ · Mikrocontroller und Digitale Elektronik ·
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PDF
L6565.pdf
6 GND 11/17 L6565 TYPICAL APPLICATIONS Figure 19. 50W Wide Range Mains SMPS for 14" TV C6 4700pF/ 4KV C7 4700pF/ 4KV F1 NTC1 D1 2A fuse 16R 1N4148 R9 R10 C25 4.7M 4.7M C22 Vin B1 2KBP04M 3 T1 100 pF 88 to C23 C24 1nF 105 V 264 Vac 100nF 100nF C1 R1 0.35A L1 150 F R5 C8 C2 N1 15mH 400 V 75k 100 k 8.2
in „FSC Monitor 24" P24-1W schaltet sich immer AUS und AN“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT1082.pdf
H T50 200 H I 67 E 40 I VIN= –60V Q 800mA T80 350 H T80 350 H E 64 R 30 1082 GA F 61 20 58 VIN= –70V L = 250 H 10 R = 0.08 55 0 1 2 3 4 0 6 5 4 3 2 1 0 POWER OUTPUT (W) OUTPUT VOLTAGE (V) NOTE: THIS GRAPH IS BASED ON LOW CORE LOSS 1082 G02
in „Boost Converter 2MHz 50V“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD5415.pdf
= 2.5V G U 0.20 –0.4 C 0.15 ALL 1s ALL 0s T A 25°C 0.10 –0.6 V DD = 5V V = ±3.5V 0.05 REF C COMP = 1.8pF AD8038 AMPLIFIER 0 1 –0.8 1 –60 –40 –20 0 20 40 60 80 100 120 140 0 1 10 100 1k 10k 100k 1M 10M 100M 0 6 6 TEMPERATURE
in „D/A mit Stromausgang“ · Mikrocontroller und Digitale Elektronik ·
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PDF
u-blox-ATCommands_Manual__UBX-13002752_.pdf
V24 control and V25ter Page 222 of 553 u-blox Cellular Modules - AT Commands Manual 14.29.6 AT+UTPB=1 case diagram DTE u-blox module M a rk L S B M S B S p b ita rtd a ta bb b ito p O n e c h a ra c te r 6 5 4 3 2 1 0 1 PARITY MSB LSB NO FILTERING 6 5 4 3 2 1 0 2 PARITY MSB LSB NO PARITY BIT MANIPULATON
in „GSM-Modul (SIM908) nur analoge Ausgänge für Anruf?“ · HF, Funk und Felder ·
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PDF
ST7036-V1.7.pdf
2.7V/4.5V 0.2V 0.2V 0.2V tcc tOFF 0.1mS¡tØrcc¡1Ø0mS OFF¡1ÙmS Notes: OFFcompensates for the power oscillation period caused by momentary power supply oscillations. Specified at 4.5V for 5V operation, and at
in „DOG-M-Display/ST7036 Initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7036-V1.7.pdf
2.7V/4.5V 0.2V 0.2V 0.2V tcc tOFF 0.1mS¡tØrcc¡1Ø0mS OFF¡1ÙmS Notes: OFFcompensates for the power oscillation period caused by momentary power supply oscillations. Specified at 4.5V for 5V operation, and at
in „Newbie Probleme bei LCD DOGM Initialisierung in Assembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Data_Sheet_LM561B_High_CRI_Rev.001.pdf
of5% on Luminous Flux measurements. 2)Warm white : " "an be "0"(hole Bin),"H"(Half Bin) "r M"(Quarter Bin) of the color binning. http://www.samsungled.com 3 / 47 2) Color Bins (Ts= 25 ℃ ) 2-1) Color Binning Nominal Product Code Color Rank Chromaticity Bins CCT W1, W2, W3, W4, W5, W6, W7, W8,
in „Ersatz LEDs für Smart TV“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STEVAL-3DP001V1_Data.pdf
1 I/ 8 4 3 P 1 4 T m 6 Q S 5. 3 7 T O 2 Q S N S 2 T F E P 6 1 N 1 R 4 1 S m 6 0 E D G W 5 5 C 1 W R 2 O 3 P S 1 2 M D S 4 N _ 2 K R N N J E D F 4 P P 6 0 D R 1 O W K R N N 6 C 1 V 5 C P 3 V W 3 _ _ A _
in „3D-Drucker Board bzw CNC-Board mit STM32F401“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
datasheet.pdf
32 1E0000h–1EFFFFh F0000h–F7FFFh 24 S29GLxxxA MirrorBit™ Flash Family S29GLxxxA_00_A2 January28,2005 www.DataSheet4U.com A d v a n c e I n f o r m a t i o n Table 6. S29GL032M (Models R4) Bottom Boot Sector
in „S29GL064A Flash Speicher auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC_HCT08.pdf
μA; V CC = 4.5 V - 0 0.1 - 0.1 - 0.1 V IO= 20 μA; V CC = 6.0 V - 0 0.1 - 0.1 - 0.1 V I = 4.0 mA; V = 4.5 V - 0.15 0.26 - 0.33 - 0.4 V O CC IO= 5.2 mA; V CC = 6.0 V - 0.16 0.26 - 0.33 - 0.4 V I input leakage VI= V
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PDF
ITU-R.pdf
The attenuation due to scatter through the vegetation, Lscat is then given by: −τ Δγ R −τˆ −τ −τ M 1 m e + ⋅[e −e ] ⋅ M + e ⋅ (α τ ) [qm −q M ]} 4 m=1 m! L =− 10log τˆ (10) scat 10 ΔγR −τ 1 N −sk 1 + ⋅ −e ⋅ + [ k ⋅ μ ]} 2 PN k=N+1 1− N 2 sk where: Δγ R0.6⋅Δγ 3dB: 3 dB
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PDF
RXV667.pdf
P1 1a 1a 1a S1 1-1 7 X 6 R P2 1h 1h 1h V1 2-1 - R P3 1j 1j 1j 1d 3-1 P4 1k 1k 1k 2d 4-1 P5 1b 1b 1b S2 5-1 P6 1f 1f 1f 1e 1-2 P7 1m 1m 1m 2e 2-2 P8 1g 1g 1g S3 3-2 P9 1c 1c 1c 1c 4-2 P10 1e 1e 1e 2c 5-2 P11 1r 1r 1r S4 1-3 P12 1p 1p 1p 1g 2-3 P13 1n 1n 1n 2g 3-3 P14 1d 1d 1d 1f 4-3 P15 2a 2a 2a 2f 5-3 P16 2h 2h 2h 1b 1-4 P17 2j 2j 2j 2b 2-4 P18 2k 2k 2k 1a 3-4 P19 2b 2b 2b 2a 4-4 P20 2f 2f 2f 5-4 P21 2m 2m
in „Yamaha RX-V667 Reparatur und Bezugsquellen?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
armbian_modules.txt
Module Size Used by input_leds 16384 0 hid_microsoft 16384 0 sun4i_gpadc_iio 16384 0 lima 40960 0 gpu_sched 20480 1 lima ttm 57344 1 lima axp20x_adc 16384 0 axp20x_battery 16384 0 axp20x_usb_power 16384 0 evdev 20480 1 industrialio 49152 4 axp20x_usb_power,axp20x_battery,sun4i_gpadc_iio,axp20x_adc sun4i_ts 16384 0 sun4i_codec 32768 3 snd_soc_core 110592 1 sun4i_codec snd_pcm_dmaengine 16384 1 snd_soc_core sun4i_gpadc 16384 0 snd_pcm 65536 3 sun4i_codec,snd_pcm_dmaengine,snd_soc_core
in „Samba auf Banana Pi Pro installieren“ · PC Hard- und Software ·
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PDF
29F400.pdf
IH f = 5 MHz, Byte Mode 19 40 mA I VCC Active Read Current CC1 (Notes 1, 2) CE# = V ILOE# V=,IH 19 50 mA f = 5 MHz, Word Mode VCC Active Write Current ICC2 (Notes 2, 3, 4) CE# = V ILOE# = V IH 36 60 mA I V Standby Current (Note 2)
in „AT91 & OpenOCD Externes Flash Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
27512EP.asm
si-2) cmp 6 jmp Z,X1 ; PUSH HL XOR A SBC HL,DE POP HL jmp NC,L1A4A ; X1 call PRINT db 00E db "1908A" db ".+080 CALL L0589 ld (D18F6),HL CALL L1CE1 jmp Z,L1A4A L1A89 call PRINT db 00E db "2112Endadr.:" db 002+080 CALL INLINE
in „EDA-Dateien bearbeiten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1302_2Cells_to_5V_600mA.pdf
2. LT1302 Block Diagram 5 LT1302/L T1302-5 W BLOCKDIAGRA SM SENSE VIN SW 4 6 7 36mV R4 + 1.75 A2 R5 R1 730 315k – CMP1 REFERENCE + OFF ENABLE 220kHz A3 Q3 Q4 OSCILLATOR 160X – HYSTERETIC DRIVER COMPARATOR 2 A VOS 15mV VIN R2 Q5 105k – VIN A1 Q1 Q2 BIAS SHDN 3 SHUTDOWN + ERROR
in „Welcher DC-DC-Converter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lt1302-1605370.pdf
2. LT1302 Block Diagram 5 LT1302/L T1302-5 W BLOCKDIAGRA SM SENSE VIN SW 4 6 7 36mV R4 + 1.75 A2 R5 R1 730 315k – CMP1 REFERENCE + OFF ENABLE 220kHz A3 Q3 Q4 OSCILLATOR 160X – HYSTERETIC DRIVER COMPARATOR 2 A VOS 15mV VIN R2 Q5 105k – VIN A1 Q1 Q2 BIAS SHDN 3 SHUTDOWN + ERROR
in „[V] Konvolut (16) ältere LinearTech StepUps LT1302, 1305, SO8 (10€)“ · Markt ·
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PDF
lt1302.pdf
2. LT1302 Block Diagram 5 LT1302/L T1302-5 W BLOCKDIAGRA SM SENSE VIN SW 4 6 7 36mV R4 + 1.75 A2 R5 R1 730 315k – CMP1 REFERENCE + OFF ENABLE 220kHz A3 Q3 Q4 OSCILLATOR 160X – HYSTERETIC DRIVER COMPARATOR 2 A VOS 15mV VIN R2 Q5 105k – VIN A1 Q1 Q2 BIAS SHDN 3 SHUTDOWN + ERROR
in „[V] kleines Konvolut ältere DIL / DIP ICs (8€)“ · Markt ·
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PDF
ATTiny1624.pdf
F F I I Q Q S S V V P P O O S S T 23 19 16 10 PA0 RESET LUT0-IN0 UPDI (4) 24 20 17 11 PA1 AIN1 TXD TXD MOSI LUT0-IN1 1 1 18 12 PA2 EVOUTA AIN2 RxD(4) RXD MISO LUT0-IN2 2 2 19 13 PA3 EXTCLK AIN3 XCK(4) XCK SCK WO3 1,WO 3 3 20 14 GND 4 4 1 1 VDD 5 5 2 2 PA4 AIN4 XDIR(4) XDIR
in „Neues Produkt AtTiny1624“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR-DD-Product-Brief-DS40002215A-1.pdf
22 17 4 4 PA0 XTALHF1 0,TxD MOSI (3) SDA(M) (3) WO0 LUT0,IN0 EXTCLK (7) XTAL32K2 (3) (3) 31 23 18 5 5 PA1 0,RxD MISO SCL(M) WO1 LUT0,IN1 XTALHF2 TWI 0,XCK 32 24 19 6 PA2 AIN22 SDA(M) WO2 0,WO EVOUTA LUT0,IN2 Fm+ 0,TxD(3) TWI 0,XDIR 1 25 20 7 PA3 AIN23 SCL(M) WO3 1,WO LUT0,OUT Fm+ 0,RxD(3) 2 26 1 8 PA4 AIN24 0,TxD(3) MOSI WO4 WOA (3) 3 27 2 9 PA5 AIN25 0,RxD MISO WO5 WOB (3) (3) 4 28 3 10 PA6 AIN26 0,XCK SCK WOC LUT0,OUT 5 1 4 11
in „AVR-DD im Anrollen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tle2082.pdf
–3.8 –4.2 O = 200 µA Full range –3.7 –3.7 Maximum negative peak 25°C –3.5 –4.1 –3.5 –4.1 VOM– O = 2 mA V output voltage swing Full range –3.4 –3.4 25°C –1.5 –2.4 –1.5 –2.4 I = 20 mA O Full range –1.5 –1.5 25
in „Bauteil gesucht: unbekannter TI-Baustein“ · Mikrocontroller und Digitale Elektronik ·