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datenblatt_pic.pdf
pin. (2) RB6 12 12 13 I/O TTL/ST Interrupt-on-change pin. Serial programming clock. (2) RB7 13 13 14 I/O TTL/ST Interrupt-on-change pin. Serial programming data. V SS 5 5 5,6 P — Ground reference for logic and I/O pins. V DD 14 14 15,16 P — Positive supply for logic and I/O pins. Legend: I= input O
in „Flußdiagramm Digitale stoppuhr auf PIC 16F84A“ · Mikrocontroller und Digitale Elektronik ·
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PDF
16F84.pdf
pin. (2) RB6 12 12 13 I/O TTL/ST Interrupt-on-change pin. Serial programming clock. (2) RB7 13 13 14 I/O TTL/ST Interrupt-on-change pin. Serial programming data. V SS 5 5 5,6 P — Ground reference for logic and I/O pins. V DD 14 14 15,16 P — Positive supply for logic and I/O pins. Legend: I= input O
in „Probleme mit Taktversorgung auf Steckbrett“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bq2040.pdf
clock PSTAT Protector status input ESCL 2 15 REF ESDA EEPROM data SMBD SMBus data input/output ESDA 3 14 SMBC LED 1-4 LED segment 1-4 SMBC SMBus clock LED 1 4 13 SMBD V SS System ground REF Voltage reference output LED 5 12 PSTAT SR Sense resistor input VOUT EEPROM supply output 2 DISP Display control input
in „Das ewige Thema - Akkucontroller BQ2040 zurück setzen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BQ2040.PDF
clock PSTAT Protector status input ESCL 2 15 REF ESDA EEPROM data SMBD SMBus data input/output ESDA 3 14 SMBC LED 1-4 LED segment 1-4 SMBC SMBus clock LED 1 4 13 SMBD V SS System ground REF Voltage reference output LED 5 12 PSTAT SR Sense resistor input VOUT EEPROM supply output 2 DISP Display control input
in „Win98 Diagnose Notebook Akku immer 50%“ · PC Hard- und Software ·
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STM32F070CBT6.pdf
. 2. Guaranteed by design, not tested in production. 3. With user calibration. High-speed internal 14 MHz (HSI14) RC oscillator (dedicated to ADC) (1) Table 36. HSI14 oscillator characteristics Symbol Parameter Conditions Min Typ Max Unit fHSI14 Frequency - 14 - MHz TRIM HSI14 user-trimming step - - 1 (2) % (2) (2) DuCy (HSI14)Duty cycle 45 - 55 % ACC Accuracy of the HSI14 T = –40 to 85 °C - ±5 % HSI14 oscillator (factory calibrated) A tsu(HSI14) HSI14 oscillator startup time 1(2) - 2 (2) μs HSI14 oscillator power IDDA(HSI14
in „Poti / Buffer / ADC / STM32“ · Mikrocontroller und Digitale Elektronik ·
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PCA9622DR_118.pdf
LED0 3 22 LED15 PCA9622DR LED1 4 21 LED14 VSS 9 24 VSS PCA9622BS LED2 10 23 LED13 V SS 5 20 V SS LED2 6 19 LED13 LED3 11 22 LED12 LED4 12 21 LED11 LED3 7 18 LED12 LED4 8 17 LED11 LED5 13 20 LED10 14 19 9 1 1 1 1 1 1 1 VSS VSS LED6 15 18 LED9
in „Kontrolle Eagle Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
esp32-c3_technical_reference_manual_en.pdf
316 14.6.1 SPI anc Cache’s Access to External Flash 317 14.6.1.1 Address 317 14.6.1.2 Access Configuration 317 14.6.2 CPU’s Access to Cache 317 14.6.2.1 Split Regions 318 14.6.3 Access Configuration 318 14.7
in „Mit dem ESP32C3 laufen lernen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
esp32-c3_technical_reference_manual_en.pdf
316 14.6.1 SPI anc Cache’s Access to External Flash 317 14.6.1.1 Address 317 14.6.1.2 Access Configuration 317 14.6.2 CPU’s Access to Cache 317 14.6.2.1 Split Regions 318 14.6.3 Access Configuration 318 14.7
in „ESP32C3 > PLL“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Weidezaun_S03_4093.pdf
AWG26-18 0,129-0,823qmm B8,2mm 0,21€/10 6,5mm GND 155°C Vin 3 9 D +Solar- 2 ( - ( UVLO=1,98V 100mV A 0 SS14 1 2 3 Terminal Plug Set 15EDG 2,54mm 4A 125V AWG26-18 0,129-0,823qmm PA66 -40/105°C B8,1mm 2,83€/5 3 FB 0,1-1uA EN 4 A S +Ub 1ND SS14 40V 1A SMA 0,2V GND Oese1-2 0,6V 1,5Von/0,4Voff x € LM2936ZEP-5,0
in „Weidezaun gegen Schnecken mit Netztrafo und Rohr DN160 für Hobbygärtner“ · Projekte & Code ·
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Datei
MINI68.TXT
ALTERREGFLAG,D7; !ALTERNATIVE MASKE BTST 15,D7; !STACK ANZEIGEN ? BEQ.S OUTREGY; !NEIN BTST.B 5,STATUSREG; !SS ODER US ? BNE.S OUTREGY; !SS IST ES BCLR 15,D7; !US, DANN SS LOESCHEN BSET 16,D7; !UND US SETZEN BRA.S OUTREGY; !UND AUSGEBEN OUTREGX: BSR PCRLF; !FUER 'R' OUTREG: MOVEM.L D0-A6,-(A7); !ALLES RETTEN
in „[S] MPU (Z80/6502/68k)“ · Markt ·
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Datei
swdisplay_nokia.h
0x1E }, // 9 { 0x00, 0x36, 0x36, 0x00, 0x00 }, // : { 0x00, 0x56, 0x36, 0x00, 0x00 }, // ; { 0x08, 0x14, 0x22, 0x41, 0x00 }, // < { 0x14, 0x14, 0x14, 0x14, 0x14 }, // = { 0x00, 0x41, 0x22, 0x14, 0x08 }, // > { 0x02, 0x01, 0x51, 0x09, 0x06 }, // ? { 0x32, 0x49, 0x59, 0x51, 0x3E }, // @ { 0x7E, 0x11, 0x11
in „Nokia 5110 LCD defekt ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avr.txt
XTAL2 19 PB5 bzw. SCK 11 PD5 T1 18 PB4 bzw. MISO 12 PD6 AIN0 17 PV4 bzw. MOSI 13 PD7 AIN1 16 PV4 bzw. SS 14 PB0 ICP 15 PV4 bzw. OC1 Grundfunktionen: ---------------- RESET : MC neu starten VCC : Versorgungsspannung (meist +5 Volt) GND : Grund / Masse XTAL1 : Eingang von Oszillator XTAL2 : Ausgang zu Oszillator
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PDF
stfpc311.pdf
input. 1 IR_DATA_IN I Remote control input. Feeds the IR data from photodiode to this pin. SEG1/KS1 to 14 to 25 O Segment output pins (dual function as key source). SEG12/KS12 V V outputs high voltage pull-down level--33.3V max. 12, 26 SS POWER FD DD 27 to 34 SEG13/GRID16 O These pins are selectable for
in „VFD flackert (ausgschaltete Segmente)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UTC-88Nxx_Voltage-Detector.pdf
DESCRIPTION SOT-143 SOT-25 4 1 VOUT Voltage Detection Output Pin 2 2 VDD Voltage Input Pin 1 3 V GND Pin SS - 4 NC No Connection (Note) 3 5 CD Connection Pin For Delay Capacitor Note: The NC pin is electrically open and can be connDDor SS. V UNISONICTECHNOLOGIESCO.,LTD 2 of 8 www.unisonic.com.tw QW-R502-368
in „Identifikation Step Up(?) aus China PowerBank-PCB“ · Mikrocontroller und Digitale Elektronik ·
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PDF
power.pdf
to power supply implementation. 2 Power Considerations l Power connections for PICmicro MCUs ® l V SS l Commonly referred to as common, ground, or 0 volts l V DD l Positive voltage with respect to V SS l Typically +5 volts l Can range from +2 to +5.5 volts depending upon application and device. Getting
in „Problem b. Brennen des PIC16F884“ · Mikrocontroller und Digitale Elektronik ·
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Datei
pins_arduino.h
|30 AVCC XTAL2 12| |29 PC7 D23 (TOSC2) XTAL1 13| |28 PC6 D22 (TOSC1) (RXD) D8 PD0 14| |27 PC5 D21 (TDI) (TXD) D9 PD1 15| |26 PC4 D20 (TDO) (INT0) D10 PD2 16| |25 PC3 D19 (TMS) (INT1) D11 PD3 17| |24 PC2 D18 (TCK) (OC1B) D12 PD4 18| |23 PC1 D17 (SDA) (OC1A) D13 PD5 19| |22 PC0 D16 (SCL) (ICP1) D14 PD6 20| |21 PD7 D15 (OC2) +--------+ */ const static uint8_t SDA = 8; const static uint8_t SCL = 9; const static uint8_t SS = 4; const static uint8_t MOSI = 5; const static uint8_t MISO = 6; const static
in „Arduino IDE mit Atmega32 - AD Wandler sind nicht benutzbar“ · Mikrocontroller und Digitale Elektronik ·
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PDF
H_.pdf
SCK)PB7 GND (SCK)PB7 (MISO)PB6 7 GND GND (MISO)PB6 7 10 VCC (MOSI)PB5 6 10 VCC (MOSI)PB5 6 11 GND (SS)PB4 5 11 GND (SS)PB4 5 4 4 (AIN1/OC0)PB3 3 (AIN1/OC0)PB3 3 (AIN0/INT2)PB2 2 (AIN0/INT2)PB2 2 (T1)PB1 (T1)PB1 (T0/XCK)PB0 1 (T0/XCK)PB0 1 29 29 (TOSC2)PC7 28 (TOSC2)PC7 28 (TOSC1)PC6 27 (TOSC1)PC6 27
in „Problem mit ISP“ · Mikrocontroller und Digitale Elektronik ·
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PDF
P89LPC933_934_935_936_6.pdf
19 P0.7/T1/KBI7 P1.3/INT0/SDA 11 18 P1.0/TXD P1.2/T0/SCL 12 17 P1.1/RXD P2.2/MOSI 13 16 P2.5/SPICLK 14 15 P2.4/SS P2.3/MISO 002aab071 Fig 2. P89LPC933/934 TSSOP28 pin configuration P2.0/ICB/DAC0/AD03 1 28 P2.7/ICA P2.1/OCD/AD02 2 27 P2.6/OCA P0.0/CMP2/KBI0/AD01 3 26 P0.1/CIN2B/KBI1/AD10 P1.7/OCC/AD00 4
in „AD-Wandlung p89lpc936“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LS7060_LS7062.pdf
UNIT Storage Temperature TSTG -55 to +150 °C Operating Temperature TA 0 to +70 °C Voltage (any pin toSS) VIN +10 to -0.3 V DC ELECTRICAL CHARACTERISTICS: (VDD = +5V ± 5%, V SS = 0V, TA= 0˚C to +70˚C unless otherwise noted.) PARAMETER SYMBOL Min MAX UNIT CONDITIONS Power Supply Current IDD - 15 mA At Maximum
in „Suche Manual/Schaltplan CN3165 Voltcraft Universalzähler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ProSeminar_-__AAC.pdf
Datenkompression- Proseminar-Unterlagen Johann Wolfgang Goethe Universität Frankfurt am Main-InformatikDK SS2006 © Dr.-Ing The Anh Vuong, Frankfurt - Bielefeld 2006. Änderungen und Irrtümer vorbehalten. Advanced Audio Coding – AAC 14 K kbps Kilobyte, die zum Speichern einer Sekunde belegt werden Kompressionsgrad
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PDF
datasheet.pdf
CE A1 24 25 A 0 VSS 13 32 VSS FPT-48P-M19 OE 14 31 DQ /A -1 DQ 0 15 30 DQ 7 A1 24 (Marking Side) 25 A 0 A2 23 26 CE DQ 8 16 29 DQ 14 A3 22 27 V SS A4 21 28 OE A5 20 DQ 0 DQ 1 17 28 DQ 6 29 A6 19 30 DQ 8 DQ 9 18 27 DQ 13 A7 18 31 DQ 1 N.C. 17 32 DQ
in „Eprom Hersteller bzw. Vergleichstype gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SP3232ECP-L.pdf
capacitor 6 6 5 V- -5.5V output generated by the charge pump 7 7 6 T OUT RS-232 driver output. 15 17 14 1 T2OUT RS-232 driver output. 8 8 7 R1IN RS-232 receiver input 14 16 13 R2IN RS-232 receiver input 9 9 8 R OUT TTL/CMOS receiver output 13 15 12 1 R2OUT TTL/CMOS receiver output 10 10 9 T1IN TTL/CMOS
in „MAX232 CPE PDIP Fake“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SP3232ECP-L.pdf
capacitor 6 6 5 V- -5.5V output generated by the charge pump 7 7 6 T OUT RS-232 driver output. 15 17 14 1 T2OUT RS-232 driver output. 8 8 7 R1IN RS-232 receiver input 14 16 13 R2IN RS-232 receiver input 9 9 8 R OUT TTL/CMOS receiver output 13 15 12 1 R2OUT TTL/CMOS receiver output 10 10 9 T1IN TTL/CMOS
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PDF
slaa081-clock-system.pdf
BCSCTL1 must be 0 for best results. 2. Two external 82-pF capacitors were connected between X IN and V SS , and X OUT and V SS . 3. All components were soldered, and leads were kept to a minimum length. Table A–3. XT1/XT2 455-kHz Ceramic Resonator Characteristics TEMPERATURE V CC fACLK ICC V CC(ACLK)low
in „Interne Oszillatoren des MSP430“ · Mikrocontroller und Digitale Elektronik ·
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PDF
slaa081.pdf
BCSCTL1 must be 0 for best results. 2. Two external 82-pF capacitors were connected between X IN and V SS , and X OUT and V SS . 3. All components were soldered, and leads were kept to a minimum length. Table A–3. XT1/XT2 455-kHz Ceramic Resonator Characteristics TEMPERATURE V CC fACLK ICC V CC(ACLK)low
in „MSP430-MCLK/SMCLK einstellung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
webcam-starter.h
//Die Uhrzeit seht in folgenden Variablen volatile unsigned char ss = 0; //Globale Variable für die Sekunden volatile unsigned char mm = 0; //Globale Variable für die Minuten volatile unsigned char hh = 0; //Globale Variable für die Stunden volatile unsigned char day
in „GCC: Erhalte viele "multiple definition of."“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ReadNUID.ino
---------------------------------------------------- * RST/Reset RST 9 5 D9 RESET/ICSP-5 RST * SPI SS SDA(SS) 10 53 D10 10 10 * SPI MOSI MOSI 11 / ICSP-4 51 D11 ICSP-4 16 * SPI MISO MISO 12 / ICSP-1 50 D12 ICSP-1 14 * SPI SCK SCK 13 / ICSP-3 52 D13 ICSP-3 15 */ #include <SPI.h> #include <MFRC522.h> #define SS_PIN 10 #define RST_PIN 9 MFRC522 rfid(SS_PIN, RST_PIN); // Instance of the class MFRC522::MIFARE_Key key; // Init array that will store new NUID byte nuidPICC[3]; void setup() { Serial.begin(9600); SPI.begin
in „Arduino UNO und MFRC522 NFC Reader/Writer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Multiplexer_Voltmeter_Logger.pdf
DRV_RELAY_1-/3.5A 560 560 LED2 R13 LED12 R23 D DRV_RELAY_2+/3.5A DRV_RELAY_2-/3.5A D 560 560 LED3 R14 LED13 R24 DRV_RELAY_3+/3.5A DRV_RELAY_3-/3.5A 560 560 LED4 LED14 R15 DRV_RELAY_4+/3.5B R25 DRV_RELAY_4-/3.5B 560 560 LED5 R16 LED15 R26 DRV_RELAY_5+/3.5B DRV_RELAY_5-/3.5B 560 560 LED6 R17 LED16 R27
in „PM2528 als Scannermultimeter mit GPIB“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AR-500X-Controller.pdf
V P2.7PI243 PIC1011 +5V 4 P2.3PI372 PIC1022 r P PIIC04 RESET P2.6PI233 PIC1033 a R166 PC C5 PIIC05 SS P2.2PI362 PIC1044 B B P P P0 KK SRDUH-SS-105D1 10k PQ 1uF PIIC08 RD P2.5PI223 PIC1055 y B PD R17 CD5 P2 CQ5 PC PIIC09 PSEN P2.1PI352 PIC1066 e PDD3 PI11 PR0 PDKPI0 PIQ02 2N3906 PII100 WR P2.4PI213 PIC1077
in „SCN8049H Prozessor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hexa_neu.pdf
)PD7 21 PD6(AIN0) 12 7 3 (ICP)PD6 20 GND PD7(AIN1) 13 6 2 (OC1A)PD5 19 1 GND (OC1B)PD4 18 PB0(ICP) 14 (INT1)PD3 17 PB1(OC1A) 15 ISP1 16 16 22-23-2041 (INT0)PD2 15 PB2(SS/OC1B) 17 X19-1 SCK (TXD)PD1 14 PB3(MOSI/OC2) 18 X19-2 X8-4 MOSI (RXD)PD0 PB4(MISO) 19 X19-3 X8-3 PB5(SCK) X19-4 X8-2 MISO MEGA32-P X8-1 N$5 IC3 GND 22-23-2041 + V MAX232 8 R2IN R2OUT 9 13 12 7 R1IN R1OUT 10 14 T2OUT T2IN 11 T1OUT T1IN 5 C2- 6 u + u C 1 V C 1 C2+ 4 6 V- + 1 1 1 1 1 1 + C1- 3 u GND 3 2 1 0 3 2 1 0 3 2 1 0 3 2 1 0 3 2 1 0 3 2 1 0 + 2 V+ 5 0 2 2 2 - 3 3 3 - 4 4 4 - 5 5 5 - 6 6 6 - 7 7 7 - u 8
in „ISP zerschiesst Atmegas?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
19410_WFG7002_SFG7002_KM.pdf
74HC132 AG 0 100n IC302 L300 R ker 1 REF V- 20 -5VA 13 10uH SMD 5k - AG 2 GND OUT 19 SIG fmax IC300 14 3 18 12 C 0 6 - A0 A0 GND L301 + TL084 R 7 A1 4 A1 V+ 17 +5VA k IC300 FA 5 16 10uH SMD 0 0 Frequenz 4 5 + D COSC DV+ R 1 TL084 6 GND DGND 15 Frequenzbereich 7 14 R312 DADJ SYNC 2k2 TTL 1 0 8 FADJ PDI
in „Projekt: DDS basierter Funktionsgenerator mit AD5930“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SPI_Test.c
***** // G L O B A L V A R I A B L E //************************************** volatile display_mem[14]={0x01,0x02,0x04,0x08,0x10,0x20,0x40,0x80, 0x40,0x20,0x10,0x08,0x04,0x02, }; // 14 Positionen volatile unsigned int pos; //************************************** // M A I N //************************************** void main(void) { PORTB = 0xFF; DDRB = 0xFF; // SCK/MOSI/SS als Ausgang / (0xFF)Alle Ausgang //SPI //SPCR = 0x50; // SPE/MSTR/CPOL=0/CPHA=0 SPI Mode 0 //SPCR = 0x54; // SPE/MSTR/CPOL=0/CPHA=1 SPI Mode 1 //SPCR = 0x58; // SPE/MSTR/CPOL=1/CPHA=0 SPI Mode 2 SPCR
in „HC595 ansteuern in C“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SPI_Test.c
***** // G L O B A L V A R I A B L E //************************************** volatile display_mem[14]={0x01,0x02,0x04,0x08,0x10,0x20,0x40,0x80, 0x40,0x20,0x10,0x08,0x04,0x02, }; // 14 Positionen volatile unsigned int pos; //************************************** // M A I N //************************************** void main(void) { PORTB = 0x00; DDRB = 0xFF; // SCK/MOSI/SS als Ausgang / (0xFF)Alle Ausgang //SPI //SPCR = 0x50; // SPE/MSTR/CPOL=0/CPHA=0 SPI Mode 0 //SPCR = 0x54; // SPE/MSTR/CPOL=0/CPHA=1 SPI Mode 1 //SPCR = 0x58; // SPE/MSTR/CPOL=1/CPHA=0 SPI Mode 2 SPCR
in „HC595 ansteuern in C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Vishay_0_96_inch_OLED_128x64_SSD1306.pdf
not used. 29 V Ground of analog circuit LSS This is an analog ground pin. It should be connected toSS externally. Reserved pin (supporting pin) 30 NC (GND) The supporting pins can reduce the influences from stresses on the function pins. These pins must be connected to external ground. Revision: 14-Dec
in „Mit Wire.h über I2C auf LCD-Display 1602 zugreifen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ads1118.pdf
16 (16) 16 (16) 16 (16) 16 (15.33) 250 16 (15.57) 16 (15.75) 16 (15.57) 16 (15.66) 16 (15.96) 16 (14.75) 475 16 (15.49) 16 (15.13) 16 (15.66) 16 (15.13) 16 (14.95) 16 (14.26) 860 16 (14.8) 16 (14.9) 16 (15.07) 16 (14.95) 16 (14.61) 16 (13.8) 16 Submit Documentation Feedback Copyright © 2010–2019, Texas
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PDF
ads1118.pdf
16 (16) 16 (16) 16 (16) 16 (15.33) 250 16 (15.57) 16 (15.75) 16 (15.57) 16 (15.66) 16 (15.96) 16 (14.75) 475 16 (15.49) 16 (15.13) 16 (15.66) 16 (15.13) 16 (14.95) 16 (14.26) 860 16 (14.8) 16 (14.9) 16 (15.07) 16 (14.95) 16 (14.61) 16 (13.8) 16 Submit Documentation Feedback Copyright © 2010–2019, Texas
in „SPI-Kommunikation Atmega644 - ADS1118“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD1303.pdf
Row4 RAM12 COM5 Row5 RAM5 Row13 RAM13 Row5 RAM13 Row5 RAM5 Row13 RAM13 Row5 RAM13 COM6 Row6 RAM6 Row14 RAM14 Row6 RAM14 Row6 RAM6 Row14 RAM14 Row6 RAM14 COM7 Row7 RAM7 Row15 RAM15 Row7 RAM15 Row7 RAM7 Row15 RAM15 Row7 RAM15 COM8 Row8 RAM8 Row16 RAM16 Row8 RAM16 Row8 RAM8 Row16 RAM16 Row8 RAM16 COM9 Row9
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PDF
uP1542-DS-F00A0.pdf
voltage V or the internal soft REF The uP1542 integrates MOSFET gate drives that are start voltage SS whichever is smaller dominates the powered from the VCC pin and support 12V+12V driving behavior of the non-inverting inputs of the error amplifier. SS internally ramps up toVCC and the output voltage
in „Ersatz Mosfet für ein Defektes Nas System“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
S5_-_95U_Anleitung.pdf
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in „SPS Eingänge werden regelmäßig beschädigt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PBL3717A.PDF
comparatorsoff 0.69 RTC T. 3 SUPPLY VOLTAGE B Supply Voltage Input for Half Output Stage See also pin 14. 4 GROUND Ground Connection. With pins 5, 12 and 13 also conducts heat from die to printed circuit copper. 5 GROUND See pin 4. 6 LOGIC SUPPLY Supply Voltage Input for Logic Circuitry 7 INPUT 1 This pin
in „Schrittmotor mit PBL3717A“ · Mikrocontroller und Digitale Elektronik ·
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Datei
spi_send.c
CCP_IOREG_gc; /*Clock auf 32Mhz einstellen*/ CLK.CTRL = CLK_SCLKSEL_RC32M_gc; } void port_init(void){ /* SS pin as output with wired AND and pull-up. MOSI & CLK as output*/ PORTC.DIRSET = PIN4_bm|PIN1_bm|PIN3_bm; PORTC.PIN4CTRL = PORT_OPC_WIREDANDPULL_gc; /* Set SS output to high. (No slave addressed). */
in „XMEGA DMA SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
C_CABLINE_E.pdf
] TWINCOAX AWG#40 SGC AWG#36,#40 10p Horizontal 20p CABLINE IV 0.5mm 1.0mm TWINCOAX AWG#40 30p 13 14 [Various Soldeing] DISCRETE AWG#32,#36 40p 10p Horizontal SGC AWG#40,#42 15p CABLINE V 0.4mm 1.0mm TWINCOAX AWG#40 25p 15 16 35p [Various Soldeing] DISCRETE AWG#36 40p 20p Vertical 30p CABLINE-SS 0.4mm
in „Apple Imac- IPEX LCD Verbindung beim Display abgerissen- HILFE“ · PC Hard- und Software ·
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PDF
CU40046.pdf
direction 0 ? 0 0 Character data write Module ß Host 0 ? 0 1 Command data write Module ß Host 0 1 1 X Data read Module à Host 1 X X X No operation Module X Host ? Falling edge of pulse X : don't care Note: The control lines \RD and EN or \WR and R
in „Atmega8 + serielles VFD 4x40 in Bascom verwenden?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
WSM200.pdf
P0D92M00202 P 475/400V C06 PKB-07-C 0 X11 VH-7a6) 3 4 1 P0X101 P P 15:15 ¦ ¦ 0 0 0 C19 VH-03a2) K ß ß C 2 1 / » » Port VH7-a6) P 471/2KV 0 0 471/2KV 1 Ò Ò 3 R47 R48 3 P022/1W01 P02P20/212W10/21KVP01221/1PK0V1052:1501 P015:1502 P 2 1 0 C2 0 0 P0R4701 P0R4702 P0R4801 P0R4802 0 0 P0X11011 ¦ ¦ C P 1 1 P 22/1W 25:16 ß ß P 472/3KV R32 0 Q18 0 R30 P0475/400PV040715/400V 02 P0X11022 221/1KV 1W/2K ¡ ¡ 5W/47 P 6.8R 6.8R P 1 Ò Ò Q19 5W/47 475/400V P0X11033 K 0 0 0 0 0 0 / P P 0 0 K2837X3 K0837X3 0 P0475/400PV040715/400V
in „Inverter Elektroden-Schweißgerät abgeraucht -> IGBT defekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2019-02-22_SCH_ATMega_Eval_DEVEL_v0_2_.PDF
max. A C1 Strom: 600 mA max. A J1 V2 R1 1 100 nF 2 GL34M 250mR 5 V1 3 U2 Vin VS 5V C2 4 IN- GND U1 SS14 GND L1 4µ7 R2 OUT 1 ANA_CUR 5 VIN SW 6 27k 3 IN+ BOOST 1 15 uH Strom : 500 mA max. C3 GND Rsense = 25 mR 4 EN VFB 3 100n R3 INA180A42DBVR Gain: 200V/V V3 52k3 CN1 CN2 X29 R5 Vmess = Imess*0.025Ohm*
in „AD.wandler und FFT auf Atmega 128A“ · Mikrocontroller und Digitale Elektronik ·
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Arduino_Uno_Rev3-schematic.pdf
2 1 8 1 XTAL2(PC0) (PDI/MOSI/PCINT2)PB2 15 (MISO)PB4 17 1 (SCLK/PCINT1)PB1 (MOSI)PB3 2 2 1 XTAL1 (SS/PCINT0)PB0 14 10 XTAL2 (SS)PB2 16 $ $ 3 (OC1)PB1 15 P P 4 5 4 9 XTAL1 (ICP)PB0 14 32 AVCC (INT4/ICP1/CLK0)PC7 22 6 2 1 (OC1A/PCINT8)PC6 23 4 21 AREF (ADC5)PC5 28 5 2 7 P P (PCINT9/OC1B)PC5 25 20 AVCC
in „ISP Leiterbahnen an ATMega328 funktionieren nicht“ · Mikrocontroller und Digitale Elektronik ·
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Arduino_Uno_Rev3-schematic.pdf
2 1 8 1 XTAL2(PC0) (PDI/MOSI/PCINT2)PB2 15 (MISO)PB4 17 1 (SCLK/PCINT1)PB1 (MOSI)PB3 2 2 1 XTAL1 (SS/PCINT0)PB0 14 10 XTAL2 (SS)PB2 16 $ $ 3 (OC1)PB1 15 P P 4 5 4 9 XTAL1 (ICP)PB0 14 32 AVCC (INT4/ICP1/CLK0)PC7 22 6 2 1 (OC1A/PCINT8)PC6 23 4 21 AREF (ADC5)PC5 28 5 2 7 P P (PCINT9/OC1B)PC5 25 20 AVCC
in „Atmega16u2 USB testen“ · Mikrocontroller und Digitale Elektronik ·
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Arduino_Uno_Rev3-schematic.pdf
2 1 8 1 XTAL2(PC0) (PDI/MOSI/PCINT2)PB2 15 (MISO)PB4 17 1 (SCLK/PCINT1)PB1 (MOSI)PB3 2 2 1 XTAL1 (SS/PCINT0)PB0 14 10 XTAL2 (SS)PB2 16 $ $ 3 (OC1)PB1 15 P P 4 5 4 9 XTAL1 (ICP)PB0 14 32 AVCC (INT4/ICP1/CLK0)PC7 22 6 2 1 (OC1A/PCINT8)PC6 23 4 21 AREF (ADC5)PC5 28 5 2 7 P P (PCINT9/OC1B)PC5 25 20 AVCC
in „Arduino qualmt -> hoher Stromverbrauch!?“ · Mikrocontroller und Digitale Elektronik ·
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PIC_32_MX_110_F_016_-_I-SO__11-2-3___SO_28_.pdf
SDI2R SDI2R<3:0> • • OCFB OCFBR OCFBR<3:0> 1111 = Reserved 0000 = RPA3 INT1 INT1R INT1R<3:0> 0001 = RPB14 0010 = RPB0 T5CK T5CKR T5CKR<3:0> 0011 = RPB10 0100 = RPB9 0101 = RPC9(1) IC2 IC2R IC2R<3:0> 0110 = RPC2(2) (2) 0111 = RPC4 1000 = Reserved SS2 SS2R SS2R<3:0> • • • OCFA OCFAR OCFAR<3:0> 1111 = Reserved
in „pic32 flash und i/o speed“ · Mikrocontroller und Digitale Elektronik ·
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PIC_32M_X_220_F_032_B-50I-SP_____DIP_28_.pdf
SDI2R SDI2R<3:0> • • OCFB OCFBR OCFBR<3:0> 1111 = Reserved 0000 = RPA3 INT1 INT1R INT1R<3:0> 0001 = RPB14 0010 = RPB0 T5CK T5CKR T5CKR<3:0> 0011 = RPB10 0100 = RPB9 0101 = RPC9(1) IC2 IC2R IC2R<3:0> 0110 = RPC2(2) (2) 0111 = RPC4 1000 = Reserved SS2 SS2R SS2R<3:0> • • • OCFA OCFAR OCFAR<3:0> 1111 = Reserved
in „PIC32MX flash access time“ · Mikrocontroller und Digitale Elektronik ·