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PDF
rtc-product-guide.pdf
to the popular DS3231S, the DS3231M replicates the 16-pin, 300-mil SO for users looking for a less-expensive solution but want the same functionally, firmware, and board layout found with the DS3231S. The DS3231M integrates
in „(empfindlicher) GPS Modul gesucht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Atmega48_LED_Test.c
Datenrichtung jeweils festlegen - je nach dem ob daten zum DS gesedent, oder vom DS empfangen werden sollen #define LED_OUT PORTB #define LED_DDR DDRB #define RELAIS_C PC1 //Relais an C1 // Kommandos an den DS1820 #define MATCH_ROM 0x55 //64 Bit code wird vom Master an ale DS gesendet - nur der DS mit dem Passenden 64Bit "namen" antwortet #define SKIP_ROM 0xCC //Master spricht alle DS simultan an - gefollgt von einem Convert_t beginnen alle mit der Temp. Konvertierung #define
in „Anfängerfrage zu switch case“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS1337_IIC_Note.pdf
Maxim/Dallas > App Notes > REAL-TIME CLOCKS Keywords: Real-Time Clock, RTC, DS1307, DS1337, DS1338, DS1339, DS1340, DS1375 Aug 05, 2004 APPLICATION NOTE 3300 Interfacing I2C Serial Real-Time Clocks to a Microcontroller 2 This application note desciibes a general hardware configuration
in „Problem mit RTC DS1337C“ · Mikrocontroller und Digitale Elektronik ·
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Datei
netzuhr_.asm
------------------- .nolist .include "tn2313def.inc" .list ; .def temp = r24 ; .dseg .org 0x0060 ; DS60: .byte 1 DS61: .byte 2 DS63: .byte 1 DS64: .byte 1 DS65: .byte 1 DS66: .byte 1 DS67: .byte 1 DS68: .byte 1 DS69: .byte 2 DS6B: .byte 1 DS6C: .byte 1 DS6D: .byte 1 DS6E: .byte 1 DS6F: .byte 1 DS70:
in „Reparaturtips für VFD von alter Elektronika-Leuchte“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
benchmark.c
@10MIPS = // PIC24@40MIPS = 0.55µs // dsPIC@30MIPS = 0.73µs // ATMEGA@16MIPS = 16.2µs // Z16F@20MIPS = 1.0µs // LPC2103@60MIPS = 2.47µs r16 = x16/y16; // signed Int32/Int32 // PIC18@10MIPS = // PIC24@40MIPS = 11.73µs // dsPIC@30MIPS = 15.63µs
in „LPC2103 63MIPS?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HEIZUNG_UNGARN.PDF
1 PIJ 50 2 PIJ 50 3 PIJ 50 4 Keyboard B B LCD[ ..0] LCD[7..0] P3 D3 1N4007 P3 PI0 J4 Q1 R10 SI2312DS PQ0 PI10 PR10 LCD7 PIJ 40 1 P0 PIJ 40 2 R11 PI0 C 3 33R C PIJ 40 3 PR12 PIJ 40 4 10k PIJ 40 5 PI1 P0 PIJ 40 6 LCD0 C77 7 LCD1 PI2 100nF PI8 40 7 NLCD PIJ 40 8 LCD2 PIJ 40 9 PIJ4 010 PIJ4 011 12 PI13
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PDF
ureflow_1.0.1.pdf
1 2 3 4 5 6 D2 U3 +3V3 5VIN1 DS14W +5V +3V3 +3V3 VIN FB1 NCP1117 1 2 3 VI VO 2 VBUS D +3V3 N C3 U5 R12 R17 GND C2 G R10 MAX6675ISA+T SW1 10K SW3 10K F1 D3 10uF 1 10uF 1.5K A 500mA DS14W 4 1 4 BTN_LEFT 1 4 BTN_RIGHT A VCC 2 3 2 3 J1
in „Feedback Schaltplan STM32G0“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Oszilloskop-Messung eines Signals
RIGOL STOP H 200us 1.00GSa/s 2.40Mpts D 0.0000000ps AX= 0.000 s AY= 80.00mV BX= 0.000 s BY= 24.00mV BX-AX= 0.000 s BY-AY= -56.00mV 1/dX= ***** Coupling CH1 DC BW Limit 20M Vpper Vmid Vlower Vavg Vrms Overshoot Min=8.00mV Vpp=72.0mV Pha1->2=***** Pha1->2=***** 1 50.0mV 2 ~50mV 3 500mV 4 500mV LA 0123 4567 8901 2345
in „CD-Player pfeifendes Geräusch“ · Mikrocontroller und Digitale Elektronik · · Oszi-Bilder
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Bild
Oszilloskop-Messung einer periodischen Schwingung
RIGOL RUN H 500ms 1.00MSa/s 6.00M pts 0.0000000ps D 10.0mV T 2 15.6794kHz Kopplung DC Horizontal Period Freq Rise Time Fall Time +Width -Width 1 2.00V 2 10.0mV BW Grenzw AUS Verhältnis 10X Invers AUS Volt/Div Grob Einheit [V]
in „Sinus PWM erzeugen“ · Mikrocontroller und Digitale Elektronik · · Oszi-Bilder
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PDF
DS_OPA656_2008-12_7.pdf
TYPICAL CHARACTERISTICS: V = ± 5V (Cont.) S T = +25°C, G = +2, R = 250Ω, R = 100Ω, unless otherwise noted. A F L 2-TONE, 3RD-ORDER INPUT CURRENT AND VOLTAGE NOISE DENSITY INTERMODULATION SPURIOUS 100 –30 ) PI 50Ω B –40 50Ω OPA656 PO ( 50Ω e –50 250Ω 15MHz ) e z z L √ H u –60 250Ω V A10 r ( ( p 10MHz e i S –70 Input Voltage Noise 7nV/√Hz e 5MHz r –80 - r Input Current Noise 1.3fA/√Hz 3 –90 2MHz 1 –100 10 100 1k 10k 100k 1M 10M –10 –8 –6 –4 –2 0 2 4 6 8 f (Hz) Single-Tone Load Power (dBm) COMMON-MODE REJECTION RATIO AND POWER-SUPPLY REJECTION RATIO vs FREQUENCY OPEN-LOOP GAIN AND PHASE 110 70 0
in „Frequenzeinteilung BodeDiagramm“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Bootloader230.a51
1 for ch559 or ch557 bReqError: DBIT 1 ; 1 on request Errors dseg at 0x21 ; gloabal vars wValueLo: ds 1 ; 0x21 BootKey: ds 8 ; 0x22 Marker0: ds 1 ; 0x2A rlen: ds 1 ; 0x2B reqlen: ds 1 ; 0x2C cmdbuffer: ds 64 ; 0x2D ds 2 ; 0x6d spare bRequest: ds 1 ; 0x6F SnSum: ds 1 ; 0x70 DescAddr: ds 2 ; 0x71 CAddr: ds 2 ; 0x73 Marker1: ds 1 STACK: xseg at 0 EP0_BUFFER: ds 8 ; 0x0000 the control endpoint ds 4 ; spare EP2_BUFFER: ds 64 ; 0x000C bulk out Response: ds 64 ; 0x004C bulk in cseg at StartAddress ; bootloader
in „uC für 0,20€ CH552 / CH554 von WCH Billig Micro mit USB Funktion, Chip vorstellung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NTE2399.pdf
Current I V = 1000V, V = 0V − − 100 A DSS DS GS VDS = 800V, GS= 0V, J = +125 C − − 500 A Gate−to−Source Forward Leakage GSS VGS = −20V − − −100 nA Gate−to−Source Reverse Leakage GSS VGS = 20V − − 100 nA Total Gate Charge Q g ID= 3.1A, DS = 400V
in „Kühlkörper eines NTE2399 berechnen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS1210.pdf
5% or 10% power-fail detection VBAT1 4 13 VBAT2 ▯ Low forward voltage drop on the V CC switch NC 5 12 NC TOL 6 11 CEO ▯ Optional 16-pin SOIC surface mount package NC 7 10 NC ▯ Optional industrial temperature range of GND CE -40°C to +85°C 8 9 DS1210S 16-pin SOIC (300-mil) See Mech. Drawings Section PIN
in „Suche Chip aus Mega-Drive-2-Spielplatine“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS1210.pdf
5% or 10% power-fail detection VBAT1 4 13 VBAT2 ▯ Low forward voltage drop on the V CC switch NC 5 12 NC TOL 6 11 CEO ▯ Optional 16-pin SOIC surface mount package NC 7 10 NC ▯ Optional industrial temperature range of GND CE -40°C to +85°C 8 9 DS1210S 16-pin SOIC (300-mil) See Mech. Drawings Section PIN
in „DS1210 als Ersatz für BA6162?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BF256_ON.pdf
Max Unit OFF CHARACTERISTICS Gate–Source Breakdown Voltage (–I = –1.0 Adc, V = 0) –V 30 – — Vdc G DS (BR)GSS Gate–Source Voltage (DS = 15 Vdc,D= 200 A) –V GS 0.5 — 7.5 Vdc Gate Reverse Current (–VGS = 20 Vdc, DS = 0) –IGSS — — 5.0 nAdc ON CHARACTERISTICS Zero–Gate–Voltage Drain Current (Note 1.) (VDS
in „BF256, Pinbelegung unterschiedlich“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
24fc256.pdf
is not tested but ensured by characterization. 1998-2022MicrochipTechnologyInc.anditssubsidiaries DS20001203Y-page 5 24AA256/24LC256/24FC256 FIGURE 1-1: BUS TIMING DATA 5 4 2 D3 SCL 7 3 SDA 8 9 10 IN 6 16 13 14 SDA OUT (protected) WP 11 12 (unprotected) DS20001203Y-page 6 1998-2022MicrochipTechnologyInc.anditssubsidiaries
in „Wodtke HP-S5 HP Er3 EEPROM Schreib-/Lesefehler“ · Haus & Smart Home ·
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Datei
RTC_init.bas
Sub Changetime 'configure the scl and sda pins Config Sda = Portd.1 Config Scl = Portd.0 'address of ds1307 Const Ds1307w = &HD0 ' Addresses of Ds1307 clock Const Ds1307r = &HD1 Config Clock = User ' this will dim the bytes automatic Config Date = Dmy , Separator = . ' Deutsch Dim Weekday As Byte Goto
in „RTC8563 und BASCOM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Viper12a.pdf
normal operation automatically. DD DDoff Figure 8. Overvoltage sequence V DD VDDovp VDDon VDDoff t V DS t 12/21 Doc ID 11977 Rev 2 VIPER12A-E Operation pictures 9 Operation pictures Figure 9. Rise and fall time Figure 10. Start-up V DD current IDD I DD0 VDDhyst V VDDoff VDDon DD IDDch VDS = 100 V F sw=
in „Reparatur Netzteil elektrischer Kamin“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
K4S56163LF.pdf
Reserved Full Page Length x16 : 256Mb(512) Register Programmed with Extended MRS Address BA1 BA0 A12 ~ A10/AP A9 A8 A7 A6 A5 A4 A3 A2 A1 A0 Function Mode Select *1 DS *1 PASR RFU RFU EMRS for PASR(Partial Array Self Ref.) & DS(Driver Strength) Mode Select Driver Strength PASR BA1 BA0 Mode A6 A5 Driver
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS3502-3122456.pdf
and Industrial Controls Mechanical POT Replacement Ordering Information PART TEMP RANGE PIN-PACKAGE DS3502U+ -40°C to +100°C 10 μSOP Pin Configuration and Typical Operating Circuit appear at DS3502U+T&R -40°C to +100°C 10 μSOP end of data sheet. +Denotes a lead(Pb)-free/RoHS-compliant package. T&R = Tape
in „Anschluss des Potentiometers an den Microcontroller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS3502-3122456.pdf
and Industrial Controls Mechanical POT Replacement Ordering Information PART TEMP RANGE PIN-PACKAGE DS3502U+ -40°C to +100°C 10 μSOP Pin Configuration and Typical Operating Circuit appear at DS3502U+T&R -40°C to +100°C 10 μSOP end of data sheet. +Denotes a lead(Pb)-free/RoHS-compliant package. T&R = Tape
in „Anschluss des Potentiometers an den Microcontroller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PSU.pdf
Housings_QFP:TQFP-32_7x7mm_Pitch0.8mm 26 t 2 s PIN19 1 t P N Q DIODE a U_ADC_max = 4,58V (Vref ( 1 + 0,12 ) s (PCINT11/ADC3)PC3 y 0 i s 4 N B_2 r _ s 27 r 1 p PIN22 2 : R R 0 Diodel_SMD:Diode-MiniMELF_Handsoldering Spannung_st r 8 R 1 e (PCINT12/SDA/ADC4)PC4 SDA_MCUX C _ C 8 o 2 S D2 n n l _ R R PIN19 19
in „Labornetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS3930.pdf
5 DS3930 16 LO 0-5 2-WIRE INTERFACE SCL LO0-5 I/O0 6 15 HI3-5 DS3930 I/O 7 14 I/0 H3-5 1 W3 I/O2 8 13 W4 NONVOLATILE I/O I/1 W3 V CC 9 12 W 5 VCC I/2 W4 TERMINALS W GND 10 11 I/3 VCC 5 DECOUPLI0.1µFP DIGITAL
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PDF
ureflow.pdf
1 2 3 4 5 6 D2 U1 +3V3 DS14W +5V +3V3 +3V3 VIN FB1 NCP1117 3 VI VO 2 VBUS D +3V3 N C2 U4 R14 R19 G R11 MAX6675ISA+T SW1 10K SW3 10K F1 D3 1 22uF 1.5K A 500mA DS14W C1 4 1 4 BTN_LEFT 1 4 BTN_RIGHT A 10uF / 25V VCC 2 3 2 3 J1 C4
in „Feedback Schaltplan STM32G0“ · Mikrocontroller und Digitale Elektronik ·
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Datei
benchmark.c
// dsPIC@30MIPS = 15.63µs // ATMEGA@16MIPS = 42.19µs // Z8Enc!XP@20MIPS = 82.0µs // Z16F@20MIPS = 1.0µs // LPC2103@60MIPS = 2.52µs r32 = x32/y32; // float/float // PIC18@10MIPS = // PIC24@40MIPS = 9.63µs // dsPIC@30MIPS = 12.83µs // ATMEGA@16MIPS = 91.44µs // Z8Enc!XP@20MIPS = 67.0µs // Z16F@20MIPS = 6.0µs // LPC2103@60MIPS = 3.7µs rf = xf/yf; // float/float // PIC18@10MIPS = // PIC24@40MIPS = 2.9µs // dsPIC
in „LPC2103 63MIPS?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
benchmark.c
// dsPIC@30MIPS = 15.63µs // ATMEGA@16MIPS = 42.19µs // Z8Enc!XP@20MIPS = 82.0µs // Z16F@20MIPS = 1.0µs // LPC2103@60MIPS = 2.52µs r32 = x32/y32; // float/float // PIC18@10MIPS = // PIC24@40MIPS = 9.63µs // dsPIC@30MIPS = 12.83µs // ATMEGA@16MIPS = 91.44µs // Z8Enc!XP@20MIPS = 67.0µs // Z16F@20MIPS = 6.0µs // LPC2103@60MIPS = 3.7µs rf = xf/yf; // float/float // PIC18@10MIPS = // PIC24@40MIPS = 2.9µs // dsPIC
in „ATMEL billiger und leistungsfähiger als PIC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Temperatursensor.pdf
DS1821 PRELIMINARY DS1821 Programmable Digital Thermostat FEATURES PIN ASSIGNMENT Requires no external components DALLASLLAS Measurestemperaturesfrom–55⋅Cto+125⋅Cin1⋅C DS18212434 1 2 3 increments.Fahrenheitequivalentis
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Datei
ds3231.c
/* * ds3231.c * * Created: 09.12.2017 19:19:54 * Author: Vidit */ #include <util/twi.h> //#include "C:\Users\Vidit\Desktop\datenloggerconfig\datenloggerconfig\rtc3.h" #include <avr/io.h> #include <avr/pgmspace.h> #include "C:\Users\Vidit\Desktop\tesds3231\tesds3231\ds3231.h" #include "C:\Users\Vidit\Desktop\tesds3231\tesds3231\uart1.h" #include "C:\Users\Vidit\Desktop\tesds3231\tesds3231\i2cnew.h" unsigned char time[10]; //xxam:xx:xx; unsigned char date[12]; //xx/
in „i2c send data“ · Mikrocontroller und Digitale Elektronik ·
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PDF
elektronische_Bauelemente.pdf
AD595CQ 189 Differenzempfänger DS26C32ATN 16 Monostabiler Multivibrator SN74LS221N 25 RS232-Transceiver-IC MC145407P 41 8bit-microcontroller PIC16LC73A-041/SP 9 C-MOS MM74HC266AN MC74HC266 18 Operationsverstärker AD707BQ 18 Spannungspegelumsetzer
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PDF
MSP430F5438IPZ.pdf
2009–REVISED MARCH 2010 Port P5, P5.0 and P5.1, Input/Output With Schmitt Trigger Pad–Logic To ADC12 INCHx–=–y To/From ADC12–Reference P5REN.x DV SS 0 DV CC 1 1 P5DIR.x 0 1 P5OUT.x 0 Module–X–OUT 1 P5.0/A8/VREF+/VeREF+ P5DS.x P5.1/A9/VREF!/VeREF! P5SEL.x 0:–Low–drive 1:–High–drive P5IN.x EN Bus Keeper
in „Strombelastbarkeit MSP430“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RJH60F5DPQ.pdf
e a 2.2 80 A r 80 r C e r i 1.8 c Tc = 75°C m e o o 40 r C 25°C –25°C t 1.4 e l 0 C 1.0 2 4 6 8 10 12 6 8 10 12 14 16 18 20 Gate to Emitter Voltage VGE (V) Gate to Emitter Voltage VGE (V) Collector to Emitter Saturation Voltage Gate to Emitter Cutoff Voltage vs. Junction Temparature (Typical) ) vs. Junction
in „Inverter Elektroden-Schweißgerät abgeraucht -> IGBT defekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
70044.pdf
02969—Rev. D, 22-Jan-01 DG300A/301A/302A Vishay Siliconix TYPICAL CHARACTERISTICS (25_C UNLESS NOTED) DS(on) vs. VDand Power Supply r vs. V and Temperature 60 DS(on) D ) 90 ) T = 25_C V+ = 15 V A V– = –15 V e e n n 50 t 70 "5 V t s s e e n n 40 O O e 50 "8 V e TA= 125_C u u o o 30 - "10 V - a a TA= 25_C D "12 V D ) 30 ) o "15 V o 20 S S r r TA= –55_C "20 V 10 –25 –15 –5 5 15 25 10 –15 –10 –5 0 5 10 15 V – Drain Voltage (V) V – Drain Voltage (V) D D Switching Time and Break-Before-Make Time rDS(on) vs. VDand
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Datei
ds1307.bas
crystal = 3686400 $baud = 19200 '$lib "i2c_twi.lbx" Config Sda = Portc.4 Config Scl = Portc.5 Const Ds1307w = &HD0 Const Ds1307r = &HD1 'Config Twi = 100000 Dim Weekday As Byte Declare Sub Setweekday Config Clock = User Config Date = Dmy , Separator = . Date$ = "08.05.12" Time$ = "22:44:00" Weekday = 2 Call Setweekday Do Print Time$ Print Date$ Waitms 500 Loop Getdatetime: I2cstart I2cwbyte Ds1307w I2cwbyte 0 I2cstart I2cwbyte Ds1307r I2crbyte _sec , Ack I2crbyte _min , Ack I2crbyte _hour , Ack I2crbyte Weekday , Ack I2crbyte _day , Ack I2crbyte _month , Ack I2crbyte _year , Nack I2cstop _
in „RTC DS1307 mit Bascom konfigurieren und abfragen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
control.c
KEY2 ))){ // Warten bis der gewünschte Monat eingestellt ist if(enc_delta>enc_alt){ wahl++; if(wahl>12) wahl=1; enc_alt = enc_delta; } if(enc_alt>enc_delta){ wahl--; if(wahl<1) wahl=12; enc_alt = enc_delta; } if(wahl<10){ sprintf(tmp,"0%d",wahl); Print2(tmp,5,65,schwarz); } else{ sprintf(tmp,"%d",wahl
in „Datentypen Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Linear_Power_MOSFETS_Basic_and_Applications.pdf
or off. In the Ohmic region, the device acts as a resistor with almost a constant on- resistance R DS (on)nd is equal to V ds Ids.he linear-mode of operation, the device operates in the ‘Current-Saturated’ region where the drain current (I ) ds a function of the gate-source voltage (V )gsnd defined by
in „Gleichstromlast MOSFET“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Seite141.pdf
5 3 5 R 2 1 0 P 1 -61.0 0 3 0 3 0 3 1 R1057 5 4 R 2 D S D S D S 8 MICA CAPACITOR 5 0 1 1 1 1 9 7 -12.4 S 1 C3906KT146(R,S) Q1065 RY107 P P POLYPROPYLENE FILM CAPACITOR -56.0 1 D 0 K 0 K 0 K - 2 0 2 0 2 0 981-2A-5DS-SP7 6 S SEMICONDUCTIVE CERAMIC CAPACITOR R 1 R 1 R 1 RY107 0 5 Y - 981-2A-5DS-SP7 R 2
in „Welcher Kondensator ist das? Womit kann ich ihn ersetzten?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
91008b.pdf
regulated voltage is cost effective and can be justified. However, there are applications where the PIC12/16/17 is the main controller and low voltage Assuming a line voltage of V 1= 115V and line is not required by other components except the PIC12/ frequency = 60 Hz, 16/17. In these instances, the cost
in „5VDC aus 230VAC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
20002234D.pdf
3.20 0.8 1.2 1.6 2 2.4 2.8 0 1 2 3 4 5 6 7 8 9 10 V IN) IOUT(mA) FIGURE 2-9: 3.3V V vs. V . FIGURE 2-12: PWM Pulse-Skipping Mode OUT IN Threshold vs. I OUT . DS20002234D-page 6 2010-2015 Microchip Technology Inc. MCP1640/B/C/D Note: Unless otherwise indicated, V = EN = 1.2V, C = C = 10 µF, L = 4.7 µH
in „NRF24L01+ durch MCP1640 gestört?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM2991.pdf
T05A Order Number LM2991T Flow LB03 See NS Package Number T05D TO263 5-Lead Surface-Mount Package DS011260-11 Top View DS011260-12 Side View Order Number LM2991S See NS Package Number TS5B 16-Lead Ceramic Dual-in-Line Package 16-Lead Ceramic Surface-Mount Package DS011260-29 DS011260-30 Top View Order
in „Negative Low Dropout Adjustable Regulator gesucht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Uhr_Temp.asm
index = r20 .def EE_index = r21 .def IRQ_index = r22 .def EE_Adr = r23 .def rawlow = r24 ;Rohwert DS18B20 LSB .def rawhigh = r25 ;Rohwert DS18B20 MSB .equ DQ = 7 ;Datenleitung des Ds18B20 .equ DS_DDR = DDRC ;Port des DS18B20 .equ DS_Port = PortC .equ DS_Pin = PinC .equ LCD = PortB ;LCD-Datenport .equ
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Datei
oneWire.h
410 /* Prototypes **********************************************************************/ uint8_t ds1820_reset(GPIO_TypeDef * port, uint16_t used_pin); //reset device void ds1820_wr_bit(uint8_t wrbit, GPIO_TypeDef * port, uint16_t used_pin); //write one bit to device void ds1820_wr_byte(uint8_t wrbyte, GPIO_TypeDef * port, uint16_t used_pin); //write one byte to device uint8_t ds1820_re_bit(GPIO_TypeDef * port, uint16_t used_pin); //read one bit from device uint8_t ds1820_re_byte(GPIO_TypeDef * port, uint16_t used_pin); //read one byte from device float ds1820_read_temp(GPIO_TypeDef
in „Timingproblem mit Onewire und STM32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
30262e.pdf
the above devices in all MCLR 4 6 15 OSC2/CLKOUT VSS 5 F 14 VDD packages. RB0/INT 6 X 13 RB7 RB1 7 12 RB6 1.1 Hardware Requirements RB2 8 11 RB5 RB3 9 10 RB4 The PIC16F8X devices require one programmable power supply for V (4.5V to 5.5V) and PPof 12V to 14V. Both supplies should have a minimum resolu
in „PGD und PGC beim PIC16F84A“ · Mikrocontroller und Digitale Elektronik ·
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PDF
chy100_family_datasheet.pdf
Product Highlights VOUT D+ • Fully supports Quick Charge 2.0 specification • Class A: 5 V, 9 V, and 12 V output voltage D- GND • Class B: 5 V, 9 V, 12 V, and 20 V output voltage • USB battery charging specification revision 1.2 compatible • Automatic USB DCP shorting D + to D- line • Default 5 V mode
in „Handy mit "Falscher" Spannungshohe laden.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PI4IOE5V9555.pdf
/O Port 0 Input/Output 5 10 7 IO0_6 I/O Port 0 Input/Output 6 11 8 IO0_7 I/O Port 0 Input/Output 7 12 9 GND G Ground 13 10 IO1_0 I/O Port 1 Input/Output 0 14 11 IO1_1 I/O Port 1 Input/Output 1 15 12 IO1_2 I/O Port 1 Input/Output 2 16 13 IO1_3 I/O Port 1 Input/Output 3 17 14 IO1_4 I/O Port 1 Input/Output
in „Schachbrettposition Erkennung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DUE_Faradays_law.pdf
ADC->ADC_CR=2; analogWriteResolution(12); // 12-bit! } void loop() { while(Serial.available() > 0) Serial.read();//clear InBuffer while(!(Serial.available() > 0)); // wait for SendData do_x = Serial.read(); switch(do_x) { case 'A': ADC->ADC_CHER
in „Arduino Due in plain C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
91055b.pdf
by Microchip. No licenses are con- veyed, implicitly or otherwise, under any intellectual property dsPIC, dsPICDEM.net, ECONOMONITOR, FanSense, rights. FlexROM, fuzzyLAB, In-Circuit Serial Programming, ICSP, ICEPIC, microPort, Migratable Memory, MPASM, MPLIB, MPLINK, MPSIM, PICC, PICDEM, PICDEM.net,
in „MC mit USB Interface“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm5642.pdf
(V DS sensing), R DS-ON will show more variation than a current-sense resistor, largely due to temperature variation. R will increase proportional to temperature according to a specific DS-ON temperature coefficient
in „Komisches Verhalten von LM5642MTCX“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c
der Sensoren // Position 0-4 eig. ID, Pos. 5+6 ist die Temperatur, Pos. 7 CRC-Byte PROGMEM uint8_t DS18B20IDs[MAXSENSORS+1][OW_ROMCODE_SIZE] = { OW_ID_T01, // 1. DS18B20 OW_ID_T02, OW_ID_T03, OW_ID_T04, OW_ID_T05, OW_ID_T06, OW_ID_T07, OW_ID_T08, OW_ID_Last }; // Endmarker uint8_t auslesen = 0; // 0
in „HTML-Header zerschossen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN1154_Precision_Temperature_Sensing_with_RTD_Circuits.pdf
low cost, high performance, plug and play solution for all RTDs. © 2008 Microchip Technology Inc. DS01154A-page 5 AN1154 NOTES: DS01154A-page 6 © 2008 Microchip Technology Inc. Note the following details of the code protection feature on Microchip devices: • Microchip products meet the specification
in „PT100 Zehntel Grad Auflösung“ · Analoge Elektronik und Schaltungstechnik ·
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DS_SJDP120R085_rev1.3.pdf
Parameter Symbol Conditions Unit Min Typ Max Off Characteristics Drain-Source Blocking Voltage BV DS VGS = -15 V, D = 600 µA 1200 - - V V DS= 1200 V, V GS < -15 V, - 10 - Tj = 25 C Total Drain Leakage Current DSS µA V DS= 1200 V, V GS < -15 V, Tj= 150 C - 100 - VGS = -15 V, VDS = 0V - -0.1 -0.3 Total
in „Siliziumkarbid-JFETS“ · Analoge Elektronik und Schaltungstechnik ·