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Steuerplattine.pdf
GND +5V n 6 0 C 1 V GND 2 0 IC2 5 R 1 30 71 + RESET RESET (AD7)PA7 72 ISP 100nF C11 22pF 33 (AD6)PA6 73 1 2 D XTAL2 (AD5)PA5 74 MISO 3 MISO +5V 4 +5V C14 N C10 22pF Q3 34 (AD4)PA4 75 VZA_T1 SCK 5 SCK MOSI 6 MOSI L G XTAL1 (AD3)PA3 EA_T2 RESET RESET GND GND (AD2)PA2 76 EA_T1 98 AREF (AD1)PA1 77 ÄA_T2 100 AVCC (AD0)PA0 78 ÄA_T1 99 AGND GND GND 100nF (OC0A/OC1C/PCINT7)PB7 26 LCD (OC1B/PCINT6)PB6 25 5 5 C15 10 VCC (OC1A/PCINT5)PB5 24 + 1 GND GND 2 + GND 31 VCC (OC2A/PCINT4)PB4 23 3 +5V +5V
in „AVR MEGA 1280 schaltet sich mit 50Hz an und ab“ · Mikrocontroller und Digitale Elektronik ·
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fcc_9.pdf
QP 0.1739 33.90 9.80 43.70 54.77 -11.07 AVG 4.2579 32.24 10.35 42.59 56.00 -13.41 QP 4.4939 25.71 10.36 36.07 46.00 -9.93 AVG Remark: 1. All readings are Quasi-Peak and Average values. 2. Factor = Insertion Loss + Cable
in „Wlan2Serial Modul für 5 euro“ · Mikrocontroller und Digitale Elektronik ·
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STM103.pdf
PC2 PA2 PA5 PB0 PC6 PB15 PB14 F SSA G VREF+ PA0-WKUP PA3 PA6 PB1 PB2 PB10 PB13 H VDDA PA1 PA4 PA7 PC4 PC5 PB11 PB12 AI15494 24/92 Doc ID 13587 Rev 11 STM32F103x8, STM32F103xB Pinouts and pin description Figure
in „STM32 2 Versorgungsspannungen?“ · Mikrocontroller und Digitale Elektronik ·
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Arduino_Mega_schematics.pdf
PB1 5 6 PB2 (MOSI) L13 N RESET LMV358IDGKR G GND GND GND ICSP GND GND GND IC3 RESET 30 RESET (AD7)PA7 71 PA7 Y1 (AD6)PA6 72 PA6 XTAL2 33 XTAL2 (AD5)PA5 73 PA5 S R1 D 74 PA4 O 1M G XTAL1 34 (AD4)PA4 75 PA3 R XTAL1 (AD3)PA3 76 PA2 U CSTCE16M0V53-R0 AREF 98 (AD2)PA2 77 PA1 JP6 100 AREF (AD1)PA1 78 PA0
in „Arduino Mega 2560, schaltschranktauglich“ · Projekte & Code ·
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Dokumentation.PDF
PAR1A05512C0472ORCOR3 COR134121A944092 COR15 1P661I114128 CORCOR14I25I795A4202 71 01 041 COC6 01 COC1 COC3 A01 PA02PA32 PCOC9 R0 P R02PA0 A COC4 A01 PA0P42 PCOC10 COR2071 COR2 COX10P1P13X4A05 COX31A0P30X4A5 COX2X1A0P03X4X5 COX4X1A2P0P40X5 X1 C1P2 61 PAR2702PAC1702PAR2601 COX9 P1312X0 COC20 PAR2PAR2602OL1 COR36 COD1
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BME280_Datasheet.pdf
2.8 µA temperature 20…80 %RH, Absolute accuracy AH 25 °C, including ±3 %RH tolerance hysteresis 4 109010 %RH, Hysteresis HH 25 °C ±1 %RH 5 Nonlinearity NL H 1090 %RH, 25 °C 1 %RH Response time to 6 900 or 090 %RH, 1 s complete 63% of step 25°C Resolution RH 0.008 %RH Highest oversampling, Noise in
in „PIC18F, Sensor auslesen I2C“ · Mikrocontroller und Digitale Elektronik ·
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am29dl323db.pdf
AM29DL322DT90, WDIN D322DT90V, AM29DL322DT120, AM29DL322DB90 D322DB90V AM29DL322DB120 AM29DL323DT90, D323DT90V, AM29DL323DT120, EI, EIN, EE, EEN AM29DL323DB90 D323DB90V AM29DL323DB120 AM29DL324DT90, D324DT90V, AM29DL324DT120
in „55 Stk. Flashbausteine 32Mbit, TSSOP48, 3,3V AM29DL323DB-90“ · Markt ·
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Datei
AVRootloader.asm
include "m8535def.inc" ; ATmega8535 ;.include "m88def.inc" ; ATmega88 ;.include "m88PAdef.inc" ; ATmega88PA ;.include "m88Pdef.inc" ; ATmega88P ;.include "m8Adef.inc" ; ATmega8A ;.include "m8def.inc" ; ATmega8 ;.include "pwm216def.inc" ; AT90PWM216 ;.include "pwm2Bdef.inc" ; AT90PWM2B ;.include "pwm2def.inc" ; AT90PWM2 ;.include "pwm316def.inc" ; AT90PWM316 ;.include "pwm324def.inc" ; AT90PWM324 ;.include "pwm3Bdef.inc" ; AT90PWM3B ;.include "pwm3def.inc" ; AT90PWM3 ;.include "tn13Adef.inc" ; ATtiny13A ATTENTION
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print.pdf
IC4 C15 L X3-2 2 X3-3 R GND GND GND GND RS232 Anschluss 5 6 IC2 + 1C F V C1 1 C1+ C 1 D Conroller AT90S8515 / ATMega161 / ATMega162 IC2P V+ 2 + N N 100nF 3 C1- D 5G V- 6 + N ISP Anschluss 1 4 C2+ u 3 G JP1 C2 1 C X1 GND 5 C2- 5 VTG 2 1 MISO 100nF 1 + RST 5 4 MOSI TXD 11 T1IN T1OUT 14 _TXD 2 6 GND 6 3
in „Labor Netzteil“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan_FARBE.pdf
SPI2_SCK PB13 27 28 PG11 F_CS PA1 27 28 PA0 PA14 27 28 PA13 JTMS/SWDIO PA13 105 PA12/USART1_RTS/CANTX/TIM1_ETR/USBDP PE10/FSMC_D7 64 PE11 D7 SPI2_NSS PB12 29 30 PG15 SD_CS PA3 29 30 PA2 PA12 29 30 PA11 JTCK/SWCLK PA14 109 PA13/JTMS-SWDIO
in „STM32 Port-Initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
t6963c.h
GLCD_CTRL_PORT PORTA #define GLCD_CTRL_PIN PINA #define GLCD_CTRL_DDR DDRA // control signals #define GLCD_WR PA4 #define GLCD_RD PA3 #define GLCD_CE PA6 #define GLCD_CD PA5 #define GLCD_RESET PA7 #define GLCD_FS PA2 // display properties #define GLCD_NUMBER_OF_LINES 64 #define GLCD_PIXELS_PER_LINE 240 #define
in „Ansteuerung LCD-Display mit t6369c-Chip und 16Mhz Taktfrequenz“ · Mikrocontroller und Digitale Elektronik ·
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CY7C68013.pdf
5 RDY1/*SLWR 98 CTL5 6 RDY2 A3 97 7 RDY3 96 A2 8 RDY4 A1 95 9 RDY5 94 10 A0 AVCC GND 93 11 XTALOUT PA7/*FLAGD/SLCS# 92 12 91 XTALIN PA6/*PKTEND 13 AGND PA5/FIFOADR1 90 14 NC 89 PA4/FIFOADR0 15 NC D7 88 16 NC 87 17 D6 VCC D5 86 18 DPLUS CY7C68013 PA3/*WU2 85 19 84 DMINUS 128-pin TQFP PA2/*SLOE 20 GND
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CY7C68013.pdf
5 RDY1/*SLWR 98 CTL5 6 RDY2 A3 97 7 RDY3 96 A2 8 RDY4 A1 95 9 RDY5 94 10 A0 AVCC GND 93 11 XTALOUT PA7/*FLAGD/SLCS# 92 12 91 XTALIN PA6/*PKTEND 13 AGND PA5/FIFOADR1 90 14 NC 89 PA4/FIFOADR0 15 NC D7 88 16 NC 87 17 D6 VCC D5 86 18 DPLUS CY7C68013 PA3/*WU2 85 19 84 DMINUS 128-pin TQFP PA2/*SLOE 20 GND
in „Stereokamera CY7C68013A + 2 mal MT9D131“ · Mikrocontroller und Digitale Elektronik ·
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Luftfeuchtesensor_20VALVO.pdf
Technische Information 3 tiL V 0 angezeigten relativen Feuchte in Abhängigkeit von Relative Feuchten über 90% führen leicht zu Met3- , der Zeit. Die Kurven machen deutlich, d,aß 90 % des fehlern, da es dabei, hervorgerufen durch räumliche jeweils neuen stationären Endwertes nach etwa zwei Temperaturunterschiede
in „Hygrometer: Einkaufsliste“ · Mikrocontroller und Digitale Elektronik ·
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Luftfeuchtesensor_VALVO.pdf
Technische Information 3 tiL V 0 angezeigten relativen Feuchte in Abhängigkeit von Relative Feuchten über 90% führen leicht zu Met3- , der Zeit. Die Kurven machen deutlich, d,aß 90 % des fehlern, da es dabei, hervorgerufen durch räumliche jeweils neuen stationären Endwertes nach etwa zwei Temperaturunterschiede
in „Luftfeuchte messen“ · Mikrocontroller und Digitale Elektronik ·
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Luftfeuchtesensor_VALVO.pdf
Technische Information 3 tiL V 0 angezeigten relativen Feuchte in Abhängigkeit von Relative Feuchten über 90% führen leicht zu Met3- , der Zeit. Die Kurven machen deutlich, d,aß 90 % des fehlern, da es dabei, hervorgerufen durch räumliche jeweils neuen stationären Endwertes nach etwa zwei Temperaturunterschiede
in „Auswertung eines kapazitiven Feuchtesensors“ · Analoge Elektronik und Schaltungstechnik ·
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Luftfeuchtesensor_VALVO.pdf
Technische Information 3 tiL V 0 angezeigten relativen Feuchte in Abhängigkeit von Relative Feuchten über 90% führen leicht zu Met3- , der Zeit. Die Kurven machen deutlich, d,aß 90 % des fehlern, da es dabei, hervorgerufen durch räumliche jeweils neuen stationären Endwertes nach etwa zwei Temperaturunterschiede
in „resistiven Feuchtesensor auswerten“ · Mikrocontroller und Digitale Elektronik ·
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cpp.txt
//PIN 4 PIN 39,40 / PG1 = 0 /PG2 = 1 /PG5 = 21 PORTG |= (1<<PG5)|(1<<PG1)|(1<<PG2); DDRA &= ~((1<<PA0)|(1<<PA1)|(1<<PA2)|(1<<PA3)|(1<<PA4)|(1<<PA5)|(1<<PA6)|(1<<PA7)); // PIN 22-29 / PA7 = 12/ PA6= 13 / PA5 = 12/ PA5 = 13 / PA4 =14 PORTA |= (1<<PA0)|(1<<PA1)|(1<<PA2)|(1<<PA3)|(1<<PA4)|(1<<PA5)|(1<<PA6)|(1<<PA7); // PA3 = 15 / PA2 = 16 / PA1 = 17 / PA0 = 18 DDRC &= ~((1<<PC0)|(1<<PC1)|(1<<PC2)|(1<<PC3)|(1<<PC4)|(1<<PC5)|(1<<PC6)|(1<<PC7)); //PIN 30 - 37 / PC0 = 4 / PC1 = 5 / PC2= 6/ PC3 = 7 / PC4 = 8 PORTC
in „Probleme: C++ Programmierung MEGA 2560“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.cpp
//PIN 4 PIN 39,40 / PG1 = 0 /PG2 = 1 /PG5 = 21 PORTG |= (1<<PG5)|(1<<PG1)|(1<<PG2); DDRA &= ~((1<<PA0)|(1<<PA1)|(1<<PA2)|(1<<PA3)|(1<<PA4)|(1<<PA5)|(1<<PA6)|(1<<PA7)); // PIN 22-29 / PA7 = 12/ PA6= 13 / PA5 = 12/ PA5 = 13 / PA4 =14 PORTA |= (1<<PA0)|(1<<PA1)|(1<<PA2)|(1<<PA3)|(1<<PA4)|(1<<PA5)|(1<<PA6)|(1<<PA7); // PA3 = 15 / PA2 = 16 / PA1 = 17 / PA0 = 18 DDRC &= ~((1<<PC0)|(1<<PC1)|(1<<PC2)|(1<<PC3)|(1<<PC4)|(1<<PC5)|(1<<PC6)|(1<<PC7)); //PIN 30 - 37 / PC0 = 4 / PC1 = 5 / PC2= 6/ PC3 = 7 / PC4 = 8 PORTC
in „Probleme: C++ Programmierung MEGA 2560“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan.pdf
GND AT45DB161D-SU GND GND 3 3 + C29 C5 C6 100nF 100n1F00nF GND GND IC2 6 6 2 5 61 PF0_ADC0 E C C C PA0_AD0 51 TEMP 60 PF1_ADC1 A A V V PA1_AD1 50 3 59 PF2_ADC2 PA2_AD2 49 3 58 PF3_ADC3 PA3_AD3 48 + TCK 57 PF4_ADC4_TCK PA4_AD4 47 TMS 56 PF5_ADC5_TMS AT90USB PA5_AD5 46 7 TDO 55 PF6_ADC6_TDO PA6_AD6 45 4 TDI 54 PF7_ADC7_TDI PA7_AD7 44 3 1 UART 3 3 2 2 3 SCL 25 PD0_OC0B_SCL_INT0 PC0_A8 35 + 1 3 2 SDA 26 PD1_OC2B_SDA_INT1 PC1_A9 36 W 1 5 1 27 PD2_RXD1_INT2 PC2_A10 37 S 4 28 PD3_TXD1_INT3 PC3_A11_T3 38 k k 30 PD4_ICP1 PC4_A12
in „Datenlogger mit AT90USB“ · Mikrocontroller und Digitale Elektronik ·
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Lenkrad_sch.pdf
R7 150 C 1 9 I8 O8 10 blau RESET IC1 GND CD+ LED10 R8 150 20 44 LED8 rot B C1 22p Q1 16M RESET (AD7)PA7 45 LED9 GND 5 LED9 R9 150 B 23 (AD5)PA5 46 LED10 + rot XTAL2 (AD4)PA4 47 LED11 rot8 24 XTAL1 (AD3)PA3 48 LED12 V (AD2)PA2 49 LED13 GND R10 150 + C2 22p 62 AREF (AD1)PA1 50 LED14 5 GND 64 AVCC (AD0)PA0
in „CAN auslesen AT90CAN128“ · Mikrocontroller und Digitale Elektronik ·
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Lenkrad_sch.pdf
R7 150 C 1 9 I8 O8 10 blau RESET IC1 GND CD+ LED10 R8 150 20 44 LED8 rot B C1 22p Q1 16M RESET (AD7)PA7 45 LED9 GND 5 LED9 R9 150 B 23 (AD5)PA5 46 LED10 + rot XTAL2 (AD4)PA4 47 LED11 rot8 24 XTAL1 (AD3)PA3 48 LED12 V (AD2)PA2 49 LED13 GND R10 150 + C2 22p 62 AREF (AD1)PA1 50 LED14 5 GND 64 AVCC (AD0)PA0
in „CAN auslesen AT90CAN128“ · Mikrocontroller und Digitale Elektronik ·
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STM32-P207-P407_rev_D.pdf
U7 2 6 7 9 6 8 3.3V_MCU_EN 17 VDD_5 PA4/SPI1_NSS/SPI3_NSS/USART2_CK/DCMI_HSYNC/OTG_HS_SOF/I2S3_WS/ADC12_IN4/DAC1_OUT DCMI_HSYNC PA4 3 7 1 1 1 1 CAMERA CMOS SAMSUNG 700 + CONNECTOR HN1x2(Close) 52 VDD_6 41 SPI1_SCK PA5 CAN1_TX 1 TXD 8 R118
in „Mit STM32F4 einen Laser ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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STM32F405-7x.pdf
and pin description STM32F405xx, STM32F407xx 5. If the device is delivered in an UFBGA176 or WLCSP90 and the BYPASS_REG pin is set to VDD (Regulator off/internal reset ON mode), then PA0 is used as an internal Reset (active low). Table 7. FSMC pin definition FSMC Pins(1) LQFP100 (2)WLCSP90 NOR/PSRAM
in „STM32 DCMI (Kamera) Pinbelegung“ · Mikrocontroller und Digitale Elektronik ·
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BME680.pdf
‒1100 hPa ±0.6 hPa pressure 0‒65°C 700‒900hPa, Arel ±0.12 hPa 25‒40 °C, at constant Relative accuracy humidity pressure 900‒1100hPa Arel 25‒40 °C, at constant ±0.12 hPa humidity Resolution of R P Highest oversampling 0.18 Pa pressure output data Full bandwidth, highest 1.4 Pa oversampling 11 cm Noise in pressure N P,fullBW 0.2 Pa Reduced bandwidth, highest oversampling 1.7 cm Solder drift Minimum solder height 50µm -0.5
in „PIR-Sensor wird von BME680 gestört, warum?“ · Mikrocontroller und Digitale Elektronik ·
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BME680.pdf
‒1100 hPa ±0.6 hPa pressure 0‒65°C 700‒900hPa, Arel ±0.12 hPa 25‒40 °C, at constant Relative accuracy humidity pressure 900‒1100hPa Arel 25‒40 °C, at constant ±0.12 hPa humidity Resolution of R P Highest oversampling 0.18 Pa pressure output data Full bandwidth, highest 1.4 Pa oversampling 11 cm Noise in pressure N P,fullBW 0.2 Pa Reduced bandwidth, highest oversampling 1.7 cm Solder drift Minimum solder height 50µm -0.5
in „BME680 Berechnung Temperatur Luftfeuchtigkeit Druck Gas Fragen Initialisierung Assembler ASM ATmega8“ · Mikrocontroller und Digitale Elektronik ·
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Datei
t6963c.h
GLCD_CTRL_PORT PORTA #define GLCD_CTRL_PIN PINA #define GLCD_CTRL_DDR DDRA // control signals #define GLCD_WR PA4 // war pc0 #define GLCD_RD PA3 // war pc1 #define GLCD_CE PA2 // war pc2 #define GLCD_CD PA1 // War PC 3 C.W. #define GLCD_RESET PA0 // war pc4 #define GLCD_FS PA7 // war pc5 // display properties #
in „Font tool von Christian R. verbessert“ · Projekte & Code ·
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Datei
t6963c.h
GLCD_CTRL_PORT PORTA #define GLCD_CTRL_PIN PINA #define GLCD_CTRL_DDR DDRA // control signals #define GLCD_WR PA4 // war pc0 #define GLCD_RD PA3 // war pc1 #define GLCD_CE PA2 // war pc2 #define GLCD_CD PA1 // War PC 3 C.W. #define GLCD_RESET PA0 // war pc4 #define GLCD_FS PA7 // war pc5 // display properties #
in „Seltsames Problem mit Grafik Display“ · Mikrocontroller und Digitale Elektronik ·
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HY-LandTiger_SCH.pdf
F:\宇电子 \HY-LandTiger\LandTiger.DdbDrawn By: 1 2 3 4 5 6 1 2 3 4 U3 TRSTOUT 10 18 TDIIN TRESOUT 11 PA0-WKUP PB0 19 TRSTIN TRESIN 12 PA1 PB1 20 TCKIN 13 PA2 PB2/BOOT1 39 D TMSIN 14 PA3 PB3/JTDO 40 D TCKOUT 15 PA4 PB4/JNTRST 41 JP4 JP3 PA5 PB5 +5V TDOIN 16 PA6 PB6 42 JTAG_SEL VCC TMSOUT 17 PA7 PB7 43 3V3
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AD8656.pdf
125°C 550 μV Offset Voltage Drift ΔV OSΔT −40°C ≤ TA≤ +125°C 0.4 2.3 μV/°C Input Bias Current B 1 10 pA −40°C ≤ TA≤ +125°C 500 pA Input Offset Current OS 10 pA −40°C ≤ T ≤ +125°C 500 pA A Input Voltage Range 0 5 V Common-Mode Rejection Ratio CMRR VCM= 0 V to 5 V 85 100 dB Large Signal Voltage Gain AVO
in „OP verstärkt zu viel“ · Analoge Elektronik und Schaltungstechnik ·
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Bild
Technische Spezifikation Speed and position feedback signal
feedback signal Measuring condition : Rotation : Clockwise, Counterclockwise Speed : 1500min-1 Pins : PA1, PB1 (PA2, PB2 for sub spindle) Vs Ripple voltage is 70mV or less. 0V PA1 (PA2) 0V PB1 (PB2) θ Mount the sensor so that the output signal ripple voltage is 70 mV or less. Check that the measured value
in „Wie erzeugt ein Asynchronmotor ein Haltemoment?“ · Analoge Elektronik und Schaltungstechnik · · Screenshots
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Avrisp_Sch.pdf
VCC HARTING-09185066922 10 PD5 AIN0/PB0 11 1 A A A A A A 33 2 GND PD6 2 PB5 (MOSI) ( ( ( ( ( (ADC4) PA4 32 GND PB6 (MISO) (ADC5) PA5 1 3 R32 GND 3 PB7 (SCK) (ADC6) PA6 31 AT90S1200-4SC 4 RESET (ADC7) PA7 30 R5 68K VCC 5 VCC AREF 29 11 2VCC VCC GND 6 GND AGND 28 C11 0R 1 J4 XC1 7 27 2 1 2 1 1 1 3 8 XTAL2
in „AVRisp serial upgrade failed“ · Mikrocontroller und Digitale Elektronik ·
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Avrisp_Sch.pdf
VCC HARTING-09185066922 10 PD5 AIN0/PB0 11 1 A A A A A A 33 2 GND PD6 2 PB5 (MOSI) ( ( ( ( ( (ADC4) PA4 32 GND PB6 (MISO) (ADC5) PA5 1 3 R32 GND 3 PB7 (SCK) (ADC6) PA6 31 AT90S1200-4SC 4 RESET (ADC7) PA7 30 R5 68K VCC 5 VCC AREF 29 11 2VCC VCC GND 6 GND AGND 28 C11 0R 1 J4 XC1 7 27 2 1 2 1 1 1 3 8 XTAL2
in „Fragen zu den Tutorials“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Avrisp_Sch.pdf
VCC HARTING-09185066922 10 PD5 AIN0/PB0 11 1 A A A A A A 33 2 GND PD6 2 PB5 (MOSI) ( ( ( ( ( (ADC4) PA4 32 GND PB6 (MISO) (ADC5) PA5 1 3 R32 GND 3 PB7 (SCK) (ADC6) PA6 31 AT90S1200-4SC 4 RESET (ADC7) PA7 30 R5 68K VCC 5 VCC AREF 29 11 2VCC VCC GND 6 GND AGND 28 C11 0R 1 J4 XC1 7 27 2 1 2 1 1 1 3 8 XTAL2
in „MEGA8 direkt an schnittstelle?“ · Mikrocontroller und Digitale Elektronik ·
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Avrisp_Schema.pdf
VCC HARTING-09185066922 10 PD5 AIN0/PB0 11 1 A A A A A A 33 2 GND PD6 2 PB5 (MOSI) ( ( ( ( ( (ADC4) PA4 32 GND PB6 (MISO) (ADC5) PA5 1 3 R32 GND 3 PB7 (SCK) (ADC6) PA6 31 AT90S1200-4SC 4 RESET (ADC7) PA7 30 R5 68K VCC 5 VCC AREF 29 11 2VCC VCC GND 6 GND AGND 28 C11 0R 1 J4 XC1 7 27 2 1 2 1 1 1 3 8 XTAL2
in „Programmierboard im Selbstbau“ · Mikrocontroller und Digitale Elektronik ·
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atmega_fusebit_doctor_V2h_schematic.pdf
330 X1-1 GND LED1 E R27 1 A VCC 10K J E GND GND GND 1 2 C IC3 C GND 2 9 33 S1 R26 GND + RESET (ADC7)PA7 34 START 1K ATMEGA8-DOC (ADC5)PA5 35 3 1 DATA 12 XTAL2 (ADC4)PA4 36 4 2 1 PC6(/RESET) PC0(ADC0) 23 R7 1K RDY (ADC3)PA3 37 PC1(ADC1) 24 R8 1K BS1 MEGA8/88/168... XTAL1 13 XTAL1 (ADC2)PA2 38 N 22 AGND PC2(ADC2) 25 R9 1K XA0 SV2 V (ADC1)PA1 39 GND G 21 AREF PC3(ADC3) 26 R10 1K XA1 20 BS2 1 1 PC6(/RESET) PC0(ADC0) 23 DATA6 32 AREF (ADC0)PA0 40 BS2 20 AVCC PC4(ADC4/SDA) 27 19 DATA0 + PC1(ADC1) 24 DATA7 30 AVCC VCC PC5(ADC5/SCL) 28 R11 1K
in „Gibt's ein Gerät zum RSTDISBL zurücksetzen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
stm32f405rg.pdf
oscillator mode (for PC14, PC15, PH0 and PH1). 5. If the device is delivered in an UFBGA176 or WLCSP90 and the BYPASS_REG pin is set to VDD (Regulator off/internal reset ON mode), then PA0 is used as an internal Reset (active low). Table 8. FSMC pin definition FSMC (1) (2)WLCSP90 Pins NOR/PSRAM/ LQFP100
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MX23C8111-2.6.pdf
Access Package - 1M x 8 (byte mode) Time Time - 512K x 16 (word mode) Fast access time MX23C8111MC-90 90ns 50ns 44 pin SOP - Random access: 90ns (max.) MX23C8111MC-10 100ns 50ns 44 pin SOP - Page access: 50ns (max.) Current MX23C8111MC-12 120ns 60ns 44 pin SOP - Operating: 60mA MX23C8111PC-10 100ns 50ns
in „Unbekannte ICs, Suchmaschien?“ · Mikrocontroller und Digitale Elektronik ·
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Patent_und_Gebrauchsmuster.pdf
Patentfähigkeit zu betrachten sind. Bitte lesen Sie § 43 Abs. 1 PatG. GeschmMG PCT MarkenG © 1996-2009 PA Dr. Ralf Sieckmann, Düsseldorf 3 Dieser Antrag kann von jedem, also nicht nur dem Patentanmelder gestellt werden. Das Ergebnis der Recherche und ggf. die hierbei gefundenen Druckschriften werden dem
in „Patent anmelden“ · Offtopic ·
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PDF
TM56E6422-tenxtechnology.pdf
) (Analog output) ADC0 PA0 CIN2 PWM5O 1/2 bias PA1 ADC1 PWM1O 1/2 bias CIP1 ADC2 PA2 CIP2 PWM4O 1/2 bias ADC3 PA3 CIN1 PWM2O 1/2 bias PA4 ADC4 PWM0P 1/2 bias XIN ADC5 PA5 XOUT PWM3O 1/2 bias PA6 ADC6 PWM0N 1/2 bias PA7 PB0 ADC7
in „MCU identifikation/Datenblatt - MC9989A0ZQ“ · Mikrocontroller und Digitale Elektronik ·
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DiscoveryF3_adap.pdf
P1P1 PWM inputs VCC5V J1 J2 R2 COU1 VCC5V P3OP3 Label: s.Bus Rx COR17 P1_101 PIJ101 2 PIJ1LNRS NLPF90IN PIJ211 2 PINLPF100IN R1R1 U1 PIP101 Label: GND PD6_UART2_RX PIP311 2 PIP302 PD5_UART2_TX PA8_IN1 R1PIR170PIR1701 P1P1020PIP10102 GND NLPC10I2C20EOCJ103 4 PIJNLPC00ADC 0IN PF9_NLPF PIJ233 4 PINLPF1IN8
in „[V] STM32F3 Discovery + Adapterboard für ein FlyingF3 (FlightControl) mit der Taulabssoftware“ · Markt ·
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atxmega128_board-sch1.pdf
TDO PB7 GND 2 5 TMS PB4 GND 10 1 TCK PB6 GND GND SW_RST JTAG 3301 GND 3 1 4 2 3V3 GND MCU XMEGA128A1 90 /Reset_PDI 95 PORTA PORTB 89 ADC0_AC0_AREF_PA0 96 3V3 1 2 1 2 PDI_Data ADC1_AC1_PA1 97 3 4 3 4 GND ADC2_AC2_DAC0_PA2 98 5 6 5 6 ADC3_AC3_DAC1_PA3 99 7 8 7 8 3 ADC4_AC4_PA4 100 9 10 9 10 GND ADC5_AC5_PA5 13 GND ADC6_AC6_PA6 1 k 23 GND ADC7_AC7_AC0OUT_PA7 2 R 1 33 GND 43 GND ADC0_AC0_AREF_PB0 5 53 GND ADC1_AC1_PB1 6 GND 100n100n100n100n100n 63 7 PORTC PORTD 73 GND ADC2_AC2_DAC0_PB2 8 3V3 1 2 1 2 130n150n1701090n10n
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atxmega128_board-sch1.pdf
3 PB7 GND 2 5 TMS PB4 GND 10 1 TCK PB6 GND GND JTAG SW_RST 3301 GND 3 1 4 2 3V3 GND MCU XMEGA128A1 90 /Reset_PDI ADC0_AC0_AREF_PA0 95 PORTA PORTB 89 PDI_Data ADC1_AC1_PA1 96 3V3 1 2 1 2 97 3 4 3 4 GND ADC2_AC2_DAC0_PA2 98 5 6 5 6 ADC3_AC3_DAC1_PA3 99 7 8 7 8 3 ADC4_AC4_PA4 100 9 10 9 10 13 GND ADC5_AC5_PA5 1 23 GND ADC6_AC6_PA6 2 k GND ADC7_AC7_AC0OUT_PA7 R 1 33 GND 43 GND ADC0_AC0_AREF_PB0 5 53 GND ADC1_AC1_PB1 6 GND 100n100n100n100n100n 63 GND ADC2_AC2_DAC0_PB2 7 PORTC PORTD 73 GND 8 3V3 1 2 1 2 130n150n1701090n10n
in „ATxmega-Experimentierplatine in Gold/Schwarz ab 12.04.10 eventuell Bausatz“ · Markt ·
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v1-oben.pdf
470 C-RES IC2 R-RES-ISP 30 71 10k 100µF RESET/PG5 PA7 72 PA6 73 R-RES GND PA5 C PA4 74 C-AVµC PA3 75 3 CV 0 PA2 76 3 C0µHµ PA1 77 GND + -V 0 100µF F 100 AVCC PA0 78 470 C µ E F - 0 C-AVCC A 099 AGND (OC2A/PCINT15)PB7 26 4 3 4 3 4 3 4 3 4 3 4 3 4 3 4 3
in „first Projekt - div Steuerungen per Atmel im Auto“ · Mikrocontroller und Digitale Elektronik ·
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v1-oben.pdf
V + S E 470 - 0 IC2 3 R 1 30 RESET/PG5 PA7 71 3 R-RES-ISP C-RES PA6 72 + PA5 73 3 4,5nf PA4 74 3 PA3 75 + GND PA2 77 GND L-AVCC 100 PA1 78 C-VCC1 C-VCC2 C-VCC3 100µF E AVCC PA0 470 10µH R 99 26 4 3 4 3 4 3 4 3 4 3 4 3 4 3 4 3 SV2 100µF 100µF
in „first Projekt - div Steuerungen per Atmel im Auto“ · Mikrocontroller und Digitale Elektronik ·
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Arduino_-_PinMapping2560.pdf
PCINT12 ) 67 PJ4 ( PCINT13 ) 68 PJ5 ( PCINT14 ) 69 PJ6 ( PCINT 15 ) 70 PG2 ( ALE ) Digital pin 39 71 PA7 ( AD7 ) Digital pin 29 72 PA6 ( AD6 ) Digital pin 28 73 PA5 ( AD5 ) Digital pin 27 74 PA4 ( AD4 ) Digital pin 26 75 PA3 ( AD3 ) Digital pin 25 76 PA2 ( AD2 ) Digital pin 24 77 PA1 ( AD1 ) Digital pin 23 78 PA0 ( AD0 ) Digital pin 22 79 PJ7 80 VCC VCC 81 GND GND 82 PK7 ( ADC15/PCINT23 ) Analog pin 15 83 PK6 ( ADC14/PCINT22 ) Analog pin 14 84 PK5 ( ADC13/PCINT21 ) Analog pin 13 85 PK4 ( ADC12/PCINT20 ) Analog
in „3D Drucker zum Laserengraver umbauen?“ · Mechanik, Gehäuse, Werkzeug ·
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Fusedoc_Schema.pdf
100 GND red 330 R27 LED1 S 1 A GND GND VCC 10K J E 1 2 C GND IC3 C V START R26 GND 1 9 RESET (ADC7)PA7 33 DTSM-3 1K GND + (ADC6)PA6 34 1 2 ATMEGA8-DOC (ADC5)PA5 35 DATA 12 XTAL2 (ADC4)PA4 36 1 PC6(/RESET) PC0(ADC0) 23 R7 1K RDY (ADC3)PA3 37 PC1(ADC1) 24 R8 1K BS1 XTAL1 13 XTAL1 (ADC2)PA2 38 D 22 25 XA0 SV2 MEGA8/88/168... 39 GND G 21 GND PC2(ADC2) 26 R9 1K XA1 20 BS2 2 1 23 DATA6 32 (ADC1)PA1 40 BS2 20 AREF PC3(ADC3) 27 R10 1K 19 DATA0 + PC6(/RESET) PC0(ADC0) 24 DATA7 30 AREF (ADC0)PA0 AVCC PC4(ADC4/SDA) 28 PAG 18 DATA1 22 PC1(ADC1) 25 31 AVCC 8 DATA7 VCC PC5(ADC5/SCL) R11 1K 17 21 GND PC2
in „Fehlersuche defektes Bauteil (Fusebit Doctor)“ · Mikrocontroller und Digitale Elektronik ·
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SGMOP17C.pdf
TYP MAX UNITS INPUT CHARACTERISTICS Input Offset Voltage OS ) 5 120 μV Input Bias Current BI ) 100 pA Input Offset CurrentOSI ) 100 pA Input Voltage Range 0 3.5 V V CM= 0.1V to 3.5V 99 125 Common Mode Rejection Ratio (1(CMRR) dB -40℃ ≤ T ≤ +125℃ 97 A R L 10kΩ, V O 0.3V to 4.7V 110 135 Large Signal Voltage
in „Identifikation SOT23-5 ST3SK“ · Analoge Elektronik und Schaltungstechnik ·
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datasheet.pdf
48 47 46 45 44 43 42 41 40 39 38 37 VBAT 1 36 VDD_2 PC13-TAMPER-RTC 2 35 VSS_2 PC14-OSC32_IN 3 34 PA13 PC15-OSC32_OUT 4 33 PA12 PA11 PD0-OSC_IN 5 32 PD1-OSC_OUT 6 LQFP48 31 PA10 NRST 7 30 PA9 VSSA 8 29 PA8 VDDA 9 28 PB15 27 PB14 PA0-WKUP 10 PA1 11 26 PB13 PA2 12 25 PB12 13 14 15 16 17 18 19 20 21 22
in „ARM Audio Spektrum Analyser“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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LCD_EA_DOGS.c
************************************************************** #define LCD_SDA PB0 #define LCD_SCK PA0 #define LCD_CD PA1 #define LCD_RST PA2 #define LCD_CS0 PA3 #define PORTA_Init DDRA = (1<<LCD_SCK)|(1<<LCD_CD)|(1<<LCD_RST)|(1<<LCD_CS0) #define PORTB_Init DDRB = (1<<LCD_SDA)|(1<<PB1) //************
in „EA DODS102W-6 macht nix“ · Mikrocontroller und Digitale Elektronik ·