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Datei
nRF24L01.h
RX_ADDR_P0_B3_DEFAULT_VAL 0xE7 #define RX_ADDR_P0_B4_DEFAULT_VAL 0xE7 #define RX_ADDR_P1_B0_DEFAULT_VAL 0xC2 #define RX_ADDR_P1_B1_DEFAULT_VAL 0xC2 #define RX_ADDR_P1_B2_DEFAULT_VAL 0xC2 #define RX_ADDR_P1_B3_DEFAULT_VAL 0xC2 #define RX_ADDR_P1_B4_DEFAULT_VAL 0xC2 #define RX_ADDR_P2_DEFAULT_VAL 0xC3 #define
in „2,4 Ghz Kommunikation“ · Mikrocontroller und Digitale Elektronik ·
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Datei
nRF24L01.h
RX_ADDR_P0_B3_DEFAULT_VAL 0xE7 #define RX_ADDR_P0_B4_DEFAULT_VAL 0xE7 #define RX_ADDR_P1_B0_DEFAULT_VAL 0xC2 #define RX_ADDR_P1_B1_DEFAULT_VAL 0xC2 #define RX_ADDR_P1_B2_DEFAULT_VAL 0xC2 #define RX_ADDR_P1_B3_DEFAULT_VAL 0xC2 #define RX_ADDR_P1_B4_DEFAULT_VAL 0xC2 #define RX_ADDR_P2_DEFAULT_VAL 0xC3 #define
in „NRF24L01 und Atmega328P“ · Mikrocontroller und Digitale Elektronik ·
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Datei
gsm.c
validity 0xA7, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, // Payload // Message Text (Ofs 42) 0xB0, 0x98, 0x6C, 0x46, 0xAB, 0xD9, 0x6E, 0xB8, 0x5C, 0x50, 0x38, 0x24, 0x16, 0x8D, // additional Text (date & time) 0x20, 0x85, 0x62, 0xDA, 0x9C, 0xB6, 0x82, 0xEC, 0xB0, 0xBC, 0xDD, 0x2E, 0xB3, 0xC9}; u08 SemiOctetPack
in „PDU SMS decodieren? user-data-header?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Log.txt
0x3F:m -Uefuse:w:0xFD:m -Uhfuse:w:0xDA:m -Ulfuse:w:0xFF:m avrdude: Version 6.3-20171130 Copyright (c) 2000-2005 Brian Dean, http://www.bdmicro.com/ Copyright (c) 2007-2014 Joerg Wunsch System wide configuration file is "E:\Programme\arduino\portable\packages\arduino\tools\avrdude\6.3.0-arduino14/etc
in „AVR Bootloader lock/fuse bits“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheetMax3392.pdf
(DRIVING I/O V L, V CC = +3.3V, V =L+1.8V) E 1600 t 350 t 2500 t 7 7 7 9 1400 X 300 X X M 8Mbps M 2000 M 7 A1200 A 250 A 3 ( 8Mbps, CLOAD = 15pF ( ( E1000 E E1500 8Mbps 3 R R 200 R C 800 500kbps, OPEN-DRAIN, CLOAD= 15pF C C X Y Y 150 Y L 600 L 500kbps, OPEN-DRAIN L1000 500kbps, OPEN-DRAIN A U U U S 400
in „Max3392 Pegelwandler, BlueNiceCom 4“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN1.pdf
: Permeability 2000, O.D. 0.375 in.e I.D. 0.187 in., A 0.076 cm Circuit Operation: A low impedance MOSFET gate drive signal is AC coupled to the primary of a small pulse transformer through a non-polarized capacitor (C1
in „Steuerung von Leistungsmosfets“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
bs208.pdf
−D drain current DC − 0.2 A −DM drain current peak value − 0.6 A P total power dissipation T = 25 °C − 0.83 W tot amb Tstg storage temperature range −65 +150 °C Tj junction temperature − 150 °C THERMAL RESISTANCE SYMBOL PARAMETER MAX. UNIT R from junction to ambient 150 K/W thj-a MDA690 handbook, Ptot
in „Mosfet BS208 sperrt nicht bei >3V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Funkschau_Inhalt_1980-1990.pdf
Helmut Ricke - „Mehr Gewicht fürs Marketing" 89/21/26 Hitachi - IC-Fabrik in Landshut 89/20/16 Hohes C: Viele Namen - ein Nutzen 89/11/23 Indien - Ein Telefon für jedes Dorf 89/6/38 Informationstechnik - Führende Unternehmen trafen EG-Kommission 89/13/18 Infotechnik 2000 - BDI vermißt klare Aussagen 89
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PDF
MS5611-01BA03.pdf
between actual and reference temperature signed int 32 25 -16776960 16777216 2366 dT = D2 - REF= D2 - C5 * 2 Actual temperature (-40…85°C with 0.01°C resolution) 2007 TEMP 23 signed int 32 41 -4000 8500 TEMP =20°C+dT*TEMPSENS=2000+ dT *C6 /2 = 20.07 °C Calculate temperature c ompenensated pressure [3]
in „MSP430 Launchpad und MS5611 Sensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74138.pdf
tables are not guaranteed at the absolute maximum3ratings. Operating Free Air Temperature Range 0°C to +70°C The “Recommended Operating Conditions” table will define the cond8tions for actual device operation. Storage Temperature Range −65°C to +150°C • D M 7 DM74LS138 Recommended Operating Conditions
in „Led-Matrix Überlegung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Circuits_Designer_Notbook_cdn_nb_brochure__ATC.pdf
ZTR(1r10,000 Curie Point L1 L2 b 9000LIN c i 8000 t 7000 C cb P IN C1 C 2 C3 i 6000RIN r 5000 R C IIN R S P 4000IRCUIT Z (50 Ω) i1 i2 i3v 3000 IN t DESIGNER’Se e 2000 R 1000 NOTEBOOKS 25 60 80 100120 140 Element Temperature (°C)NUATOR SPLUNGER
in „Warum sind die Widerstände hochkant eingelötet?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
murata_caps.pdf
to 85°C 2S SH *1 JIS 20°C 20 to 85°C -330 60ppm/°C -25 to 85°C 2T TH *1 JIS 20°C 20 to 85°C -470 60ppm/°C -25 to 85°C 3C CJ *1 JIS 20°C 20 to 125°C 0 120ppm/°C -55 to 125°C 3P PJ *1 JIS 20°C 20 to 85°C -150
in „100nF SMD Entstörkondensator / Brand“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN_EVAL_SEPIC_V10.pdf
easy to under- ter, especially when the circuit is used in conjunc- stand, when we remember that a d.c. voltage equal tion with a PFC or in a drive converter with brake to the input voltage V inpears across C . s chopper. Vin C2 Vin L1 IL1 R2 TR 80...264VAC R1 D3 R1 D2 D1 80...264VAC D2 Vcc Vo s D1 Iout C1 TM C1 Vcc A CoolSET D CoolSET D FB PWM C5 D4 FB PWM C4 control C4 control L2 C5 D4 T1 T1 GND GND Vo R3 L2 R3 Figure 2: Circuits for a flyback converter (left) and a SEPIC converter (right) based on
in „Feedback ohne Optokoppler möglich?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
DCF-Uhr.bas
-- '------------------------------------------------------------------------------- Sub Zurueck If C = 2 Then 'Hier werden die S_minute = 0 'Zwischenspeicher- S_stunde = 0 'variablen auf null S_tag = 0 'gesetzt S_wota = 0 S_monat = 0 S_jahr = 2000 End If End Sub '------------------------------------
in „DCF-Uhr mit Alarmfunktion“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NREL_SPA.pdf
the annual average local temperature (in C); e 0s in degrees. Calculate the tangent argument U ¼ C þ 180: ð46Þ in degrees, then convert to radians if required by calculator or computer. Limit U to the range from 0 to 360 using step 3.2.6. 3.14.3
in „sun-tracking mit mikrocontroller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NREL_SPA.pdf
the annual average local temperature (in C); e 0s in degrees. Calculate the tangent argument U ¼ C þ 180: ð46Þ in degrees, then convert to radians if required by calculator or computer. Limit U to the range from 0 to 360 using step 3.2.6. 3.14.3
in „Sonnenscheindauer Sensor selber bauen Eigenbau ATmega Assembler“ · Projekte & Code ·
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PDF
txs0104e.pdf
JESD 22 circuit is supplied by VCCA . – A Port To ensure the high-impedance state during power up • 2000-V Human-Body Model (A114-B) or power down, OE should be tied to GND through a • 200-V Machine Model (A115-A) pulldown resistor; the minimum value of the resistor is • 1000-V Charged-Device Model (C101
in „[V] 13St. Pegelwandler 4Bit bidirektional TI 10x TXS0104EPWR 3x TXS0104E Open-Drain ,Push-Pull (6€)“ · Markt ·
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PDF
txs0104e.pdf
JESD 22 circuit is supplied by VCCA . – A Port To ensure the high-impedance state during power up • 2000-V Human-Body Model (A114-B) or power down, OE should be tied to GND through a • 200-V Machine Model (A115-A) pulldown resistor; the minimum value of the resistor is • 1000-V Charged-Device Model (C101
in „[V] 13St. Pegelwandler 4Bit bidirektional TI 10x TXS0104EPWR : 3x TXS0104E Open-Drain and Push-Pull“ · Markt ·
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PDF
tlv320aic23b.pdf
/Br) TLV320AIC23BIPWG4 ACTIVE TSSOP PW 28 50 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) TLV320AIC23BIPWR ACTIVE TSSOP PW 28 2000 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) TLV320AIC23BIPWRG4 ACTIVE TSSOP PW 28 2000 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no
in „Brauche ich zwei Enable für BCLK? Darf man das So machen?“ · FPGA, VHDL & Co. ·
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PDF
tlv320aic23b.pdf
/Br) TLV320AIC23BIPWG4 ACTIVE TSSOP PW 28 50 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) TLV320AIC23BIPWR ACTIVE TSSOP PW 28 2000 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) TLV320AIC23BIPWRG4 ACTIVE TSSOP PW 28 2000 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no
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PDF
tlv320aic23b.pdf
/Br) TLV320AIC23BIPWG4 ACTIVE TSSOP PW 28 50 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) TLV320AIC23BIPWR ACTIVE TSSOP PW 28 2000 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) TLV320AIC23BIPWRG4 ACTIVE TSSOP PW 28 2000 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no
in „Mit welcher Frequenz muss jetzt der Muxer laufen?“ · FPGA, VHDL & Co. ·
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PDF
tl494.pdf
25 Green (RoHS CU NIPDAU N / A for Pkg Type 0 to 70 TL494CN & no Sb/Br) TL494CNSR ACTIVE SO NS 16 2000 Green (RoHS CU NIPDAU Level-1-260C-UNLIM 0 to 70 TL494 & no Sb/Br) TL494CNSRG4 ACTIVE SO NS 16 2000 Green (RoHS CU NIPDAU Level-1-260C-UNLIM 0 to 70 TL494 & no Sb/Br) TL494CPW ACTIVE TSSOP PW 16 90 Green (RoHS CU NIPDAU Level-1-260C-UNLIM 0 to 70 T494 & no Sb/Br) TL494CPWG4 ACTIVE TSSOP PW 16 90 Green (RoHS CU NIPDAU Level-1-260C-UNLIM 0 to 70 T494 & no Sb/Br) TL494CPWR ACTIVE TSSOP PW 16 2000 Green (RoHS CU NIPDAU Level-1-260C-UNLIM
in „TL494 - LED-Strip soft Start und dimmen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
154-155pec.pdf
µF Tolerance on C R ±20% Rated voltage range, U R 10 to 100 V 250 to 400 V L Category temperature range −40 to +85 °C Endurance test at 85 °C 5000 hours (400 V: 2000 hours) Useful life at 85 °C 12000 hours (400 V: 5000
in „[V] 12x Elkos BCcomponents 22.000µF / 100V; alles v. Elektor Gigant 2000“ · Markt ·
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PDF
DesignGuide5843revB.pdf
rail C4 0.1uf Ceramic Capacitor Supply filter capacitor for 2.5 volt rail C5 0.1uf Ceramic Capacitor Supply filter capacitor for MEMS accelerometer R1 2000 ohm Resistor Serial bus clock pull-up, 2000 ohms for
in „HMC5843-eval“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CS8190-D.pdf
determined by the time combination of voltages (Figure 2) across the meter coil constant formed by RT and C4. Increasing the value of C4 moves the needle to the 0° position. Connecting a large will reduce the ripple on the F/V output but will also increacapacitor(> 2000 mF) to the V CC lead (C2 in Figure 9
in „Drehspulinstrument (Air Core) steuern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TLV3201.txt
30 13 13 MCNS R21 36 14 1E6 V32 14 37 2 M45 38 39 13 13 NEN L=3U W=3000U R133 38 40 1E6 V52 40 13 1 C27 37 13 1E-12 V53 38 41 1.111E-6 R134 13 41 1E12 C34 40 38 1E-18 M50 42 43 13 13 NEN L=3U W=300U M51 44 42 13 13 NEN L=3U W=300U R299 42 40 1E4 R300 44 40 1E4 C36 40 42 2.1E-12 C106 40 44 14.5E-12 M47
in „LTSpice - Problem mit neuem Bauteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BSN10.pdf
D DC drain current − 175 mA DM peak drain current − 300 mA P total power dissipation up to T = 25 °C (note 1) − 830 mW tot amb Tstg storage temperature range −65 150 °C Tj junction temperature − 150 °C THERMAL RESISTANCE SYMBOL PARAMETER THERMAL RESISTANCE Rth j-a from junction to ambient (note 1) 150
in „Pegelwandler lässt TWI erfrieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
BinaryClockDCF2.c
C0 bis C3 * LEDs für die Zehnerstelle: Port B0 bis B2 * * Button für Stundenänderung: Port D0 - PulledUp * Button für Minutenänderung: Port D1 - PulledUp */ #define Latch PORTB #define LatchS PORTB3 #define
in „Binäruhr mit DCF-Empfänger zeigt falsche Zeit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Infineon_IRLB8721_DataSheet_v01_01_EN-3363432.pdf
Parameter Max. Units V Drain-to-Source Voltage 30 DS V V GS Gate-to-Source Voltage ± 20 I @ T = 25°C Continuous Drain CurreGS@ 10V 62 D C ID@ T C 100°C Continuous Drain CurreGS@ 10V 44 A IDM Pulsed Drain Current 250 P DT =C25°C Maximum Power Dissipation 65 W P DT =C100°C Maximum Power Dissipation 33
in „LED Ansteuerung für Lazertag Projekt“ · Mikrocontroller und Digitale Elektronik ·
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uln2003lv.pdf
Device Status Package Type Package Pins Package Eco Plan Lead/Ball Finish MSL Peak Temp Op Temp (°C) Device Marking Samples (1) Drawing Qty (2) (6) (3) (4/5) ULN2003LVDR ACTIVE SOIC D 16 2500 Green (RoHS CU SN Level-1-260C-UNLIM -40 to 85 UN2003LV & no Sb/Br) ULN2003LVPWR ACTIVE TSSOP PW 16 2000 Green
in „PCF8574 ULN2003 Relais Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
zbox.c
eeSpeicher[IntEEPROM] EEPROM; uint8_t messageBuf[15]; zeitdatum zd; int main (void) { init(); beep(2000); for(uint8_t i=0;i<=200;i++) _delay_ms(250); setzeUhr(); uint8_t sek, altsek=0; uint8_t pins=0xff; uint8_t l=0; while(0==0) { leseUhr(); if (TWIStatusReg.lastTransOK) { if (altsek!=sek) { beep(20);
in „RTC PCF 8583 Uhrenprobleme“ · Mikrocontroller und Digitale Elektronik ·
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Datei
FlipDot.ino
break; // IC2, lade IC3, Spalten + Zeilen HIGH } mcp.writeGPIOAB(tmp); // Speicherpuls erzeugen delay(2000); tmp &= ~0xFF; // Steuerbus auf 0x00, alles inaktiv mcp.writeGPIOAB(tmp); delay(2000); } void schreibeRegister(uint8_t ziffer, uint8_t funktion, uint8_t wert) { uint16_t tmp; if (ziffer > 7) return
in „Flipdot Display Projekt (Hilfe Logik Erbeten)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mcp_flipdot_v3.ino
break; // IC2, lade IC3, Spalten + Zeilen HIGH } mcp.writeGPIOAB(tmp); // Speicherpuls erzeugen delay(2000); mcp.writeGPIOAB(0xFFFF); delay(2000); } void schreibeRegister(uint8_t ziffer, uint8_t funktion, uint8_t wert) { uint16_t tmp; if (ziffer > 7) return; tmp = ((uint16_t)wert <<8); mcp.writeGPIOAB(tmp
in „Flipdot Display Projekt (Hilfe Logik Erbeten)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRF4905.pdf
-44V Coss = Cds + Cgd e16 V = -28V ) a DS F 5000 o ( C iss V c e12 n 4000 r i C o a oss - p 3000 t C t 8 , a C 2000 G C rss ,S G4 1000 - FOR TEST CIRCUIT 0 A 0 SEE FIGURE 13 A 1 10 100 0 40 80 120 160 200 -VDS , Drain-to-Source Voltage (V) Q G Total Gate
in „Frage zu Push Pull Abwärtswandler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BD139-16.pdf
60 V BD139 − 80 V VEBO emitter-base voltage open collector − 5 V I collector current (DC) − 1.5 A C CM peak collector current − 2 A BM peak base current − 1 A Ptot total power dissipation Tmb≤ 70 °C − 8 W Tstg storage temperature −65 +150 °C T junction temperature − 150 °C j Tamb operating ambient
in „Transistor als Schalter (BD139) richtig auslegen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bd139.pdf
60 V BD139 − 80 V VEBO emitter-base voltage open collector − 5 V I collector current (DC) − 1.5 A C CM peak collector current − 2 A BM peak base current − 1 A Ptot total power dissipation Tmb≤ 70 °C − 8 W Tstg storage temperature −65 +150 °C T junction temperature − 150 °C j Tamb operating ambient
in „Basisvorwiderstand Berechung beim BD139 richtig?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BD329.PDF
V V collector-emitter voltage open base − 20 V CEO VEBO emitter-base voltage open collector − 5 V C collector current (DC) − 3 A CM peak collector current − 3 A BM peak base current − 1 A P total power dissipation T ≤ 45 °C − 15 W tot mb Tstg storage temperature −65 +150 °C Tj junction temperature − 150 °C Tamb operating ambient temperature −65 +150 °C THERMAL CHARACTERISTICS SYMBOL PARAMETER CONDITIONS VALUE UNIT R thermal resistance from junction to ambiennote 1 100 K/W th j-a Rth j-mb thermal resistance
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PDF
ADNS-3090_DS_S_V1.0_20130514144306.pdf
4inches, Speed=6ips,Resolution=3500cpi 4500 WhitePaper 4000 Manila WhiteFormica 3500 i , BlackFormica c 3000 r SpruceWood s n 2500 c n t 2000 s R 1500 1000 500 0 1.6 1.7 1.8 1.9 2.0 2.1 2.2 2.3 2.4 2.5 2.6 2.7 2.8 2.9 3.0 3.1 3.2 3.3 3.4 DistancefromLensReference Planeto Navigation Surface, Z(mm) Figure11
in „STM32F4: SPI: MISO Flanken zeigen komisches Verhalten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADNS-3090_DS_S_V1.0_20130514144306.pdf
4inches, Speed=6ips,Resolution=3500cpi 4500 WhitePaper 4000 Manila WhiteFormica 3500 i , BlackFormica c 3000 r SpruceWood s n 2500 c n t 2000 s R 1500 1000 500 0 1.6 1.7 1.8 1.9 2.0 2.1 2.2 2.3 2.4 2.5 2.6 2.7 2.8 2.9 3.0 3.1 3.2 3.3 3.4 DistancefromLensReference Planeto Navigation Surface, Z(mm) Figure11
in „STM32F4: Datenübertragung extrem langsam“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2N5088-89.pdf
TO−92 2N5089 30 CASE 29 Emitter − Base Voltage VEBO 3.0 Vdc STYLE 1 Collector Current − Continuous C 50 mAdc 1 1 2 2 Total Device DissipationA@ T = 25°C PD 625 mW 3 3 Derate above 25°C 5.0 mW/°C STRAIGHT LEAD BENT LEAD BULK PACK TAPE & REEL Total Device DissipationC@ T = 25°C PD 1.5 W AMMO PACK Derate
in „rauscharmer NPN min 200v gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
arm-jtag.pdf
â COMPATIBLE DONGLE FOR PROGRAMMING AND DEBUGGING Features: PIN.9 (TCK) JTAG clock. • program LPC2000 family and other (tested PIN.11 (RTCK) JTAG retimed clock. with OKI ML674000) ARM flash Implemented on certain ASIC ARM microcontrollers implementations the host ASIC may need to • uses ARM standard
in „Platinen mit GPS - Empfänger bei ebay“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CS1504_Protocol.pdf
Months 1 - 12 Years 0 - 99 Example of a set time string to set the time to 10/25/00 9:12:35 PM [06 23 0C 15 19 0A 00] Hex Set Time String: Count* byte Byte byte byte byte byte 06 23 0C 15 19 0A 00 35 seconds 12 minutes 21 hours or 9:00 PM 25 day 10 month Year = 2000 *The Count value in this string must
in „Kugelschreiber mit Barcodescanner bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX9814.pdf
MICBIAS 0.707 VRMS Regulated Output Level AGC enabled, VTH = 0.7V 1.26 1.40 1.54 V P-P AGC Attack Time t C = 470nF (Note 3) 1.1 ms ATTACK CT A/R = GND 1:500 Attack/Release Ratio A/R A/R = VDD 1:2000 ms/ms A/R = unconnected 1:4000 Maxim Integrated 2 www.maximintegrated.com MAX9814 Microphone Amplifier with
in „Impedanzanpassung MAX9814 <-> PCM2912A“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
ism.asm
R17,$80 out CLKPR,R17 ldi R17,3 ;divide clock by 8 out CLKPR,R17 ldw $100 rcall delay c_eepr_wr: sbic EECR,EEPE rjmp c_eepr_wr out EEAR,XL out EEDR,R16 sbi EECR,EEMPE sbi EECR,EEPE ldw $2000 rcall delay ldi R17,$80 out CLKPR,R17 clr R17 ;no clock division out CLKPR,R17 rjmp config_lp c_send_str
in „Beispielprogramm für RFM12 433MHz Funk-Module“ · Projekte & Code ·
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PDF
CZX.pdf
range: - 40 C to + 100 C miniature version Test voltage: 2000 V D. C., 1 s for C < 1μF 1900 V D. C., 1 s for C ≥ 1μF Marking KNB1560 for C = 0,01μF to 1μF (for Max. pulse rise time du/dt, at standard version): Capacitance
in „Maschinensteuerung Widerstand verbrannt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
auips7121.pdf
=85°C, Tj=125°C A Rth=50°C/W, Dpak 6cm² footprint ⎯ 3.8 Rifb Ifb resistor 1.5 ⎯ kΩ www.irf.com 3 AUIPS7121R Static Electrical Characteristics Tj=25°C, Vcc=28V (unless otherwise specified) Symbol Parameter
in „HIGH SIDE Treiber AUIPS7121R“ · Analoge Elektronik und Schaltungstechnik ·
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tcst2103-279826.pdf
V, I = 20 mA TCST2202 CTR 5 10 % CE F TCST2300 CTR 1.25 2.5 % TCST2103 C 2 4 mA Collector current VCE = 5 V,FI = 20 mA TCST2202 C 1 2 mA TCST2300 C 0.25 0.5 mA F = 20 mA, C = 1 mA TCST2103 VCEsat 0.4 V Collector emitter saturation IF= 20 mA, C = 0.5 mA TCST2202 VCEsat 0.4
in „Spulenwicklungszähler, mit Gabellichtschranke wie an "gehackten" Taschenrechner, anschließen ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Schieberegister_SN74HC595_Datenblatt.pdf
of 2500 SN74HC595DR HC595 Reel of 250 SN74HC595DT −40°C to 85°C Tube of 40 SN74HC595DW SOIC − DW Reel of 2000 SN74HC595DWR HC595 SOP − NS Reel of 2000 SN74HC595NSR HC595 SSOP − DB Reel of 2000 SN74HC595DBR HC595 CDIP − J Tube of 25 SNJ54HC595J SNJ54HC595J
in „Auswahl Schalterarray“ · Mikrocontroller und Digitale Elektronik ·
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2n6075.pdf
s (t = 8.3 ms) PIN ASSIGNMENT *Peak Gate Power P GM 10 Watts 1 Main Terminal 1 (Pulse Width 1.0 sC T = 85⋅C) 2 Main Terminal 2 *Average Gate Power P G(AV) 0.5 Watt (t = 8.3 msC T = 85⋅C) 3 Gate *Peak Gate Voltage V GM 5.0 Volts (Pulse Width 1.0 sC T = 85⋅C) ORDERING INFORMATION *Operating Junction
in „Probleme mit Triac bzw. Entstörung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS011252.PDF
Voltage 26V Lead Temperature (Soldering 10 sec ) 230§C ESD Susceptability (Note 3) 2000V Electrical Characteristics V INe 14V IOUT e 5 mA C OUT e 10 mF unless otherwise indicated Boldface type refers to limits over the entire operating temperature rangeb40
in „[V] 20 Stück LM2984CT“ · Markt ·