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ttester.pdf
10 Mega8L-7 Mega8A-5 Mega8L-8 8 Mega8A-6 8 Mega8L-9 t t e 6 e 6 e e / 4 / 4 r r r r E 2 E 2 0 0 -2 -2 10p 100p 1n 10n 100n 1u 10u 100u 1m 10m 100m 10p 100p 1n 10n 100n 1u 10u 100u 1m 10m 100m Capacity value / F Capacity value / F (a) mit drei ATmega8A (b) mit drei ATmega8L Abbildung 5.38
in „Sammelbestellung Transistortester III - schnelle Runde“ · Markt ·
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yaap.ini
ATmega103_Old Dev16=ATmega161 Dev17=ATmega162 Dev18=ATmega163 Dev19=ATtiny26L Dev20=ATmega8515 Dev21=ATmega32 Dev22=ATmega8 Dev23=ATmega16 Dev24=ATmega128 Dev25=ATtiny2313 [Fuses] A=CKSEL0 B=CKSEL1 C=CKSEL2
in „Mega16 Programmieren“ · Mikrocontroller und Digitale Elektronik ·
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AVRDUDE-doc-5.5.pdf
m1281 ATmega1281 m16 ATmega16 m161 ATmega161 m162 ATmega162 m163 ATmega163 m164 ATmega164 m169 ATmega169 m2560 ATmega2560 (**) m2561 ATmega2561 (**) m32 ATmega32 m324 ATmega324 m329 ATmega329 m3290 ATmega3290 m48 ATmega48 m64 ATmega64 Chapter 2: Command Line Options 4 m640 ATmega640 m644 ATmega644 m649 ATmega649 m6490 ATmega6490 m8 ATmega8 m8515 ATmega8515 m8535 ATmega8535 m88 ATmega88 t12 ATtiny12 t13 ATtiny13 t15
in „USB-ISP PRogrammer unter Ubuntu“ · PC Hard- und Software ·
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2019-02-22_SCH_ATMega_Eval_DEVEL_v0_2_.PDF
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
in „AD.wandler und FFT auf Atmega 128A“ · Mikrocontroller und Digitale Elektronik ·
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GCC_Tut_Test.pdf
etzt die Ausdrucke (1 < < PC7),... zu (1 < < 7)). Ein Ausschnitt der De▯nitionen fur Port C eines ATmega32 aus der iom32.h-Datei zur Verdeutlichung (analog f r die weiteren Ports): ▯ ▯ 1 ... 2 /* PORTC */ 3 #define PC7 7 4 #define PC6 6 5 #define PC5 5 6 #define PC4 4 7 #define PC3 3 8 #define PC2 2 9
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2016jnic.pdf
and all the commands issued from the both ROP and return-to-lib in order to compromise the Bridge ATmega32u4 chip are executed with root privileges. of Arduino Yun. The integrated Atmega32u4 chip is based on the AVR archi- C. Malware in IoT tecture. AVR is a modified Harvard architecture implemented by
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makefile-0x1F00.TXT
-> 0x3e00 #BOOTSTRT = 0x3E00 #MCU = atmega16 #MCU = atmega162 # - does not compile -- MCU = atmega165 #MCU = atmega168 #MCU = atmega169 # ------------- # BootLoader mega32 1k = 0x7C00 = (0x4000words<<1)-0x400bytes #BOOTSTRT = 0x7C00 #BOOTSTRT
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Datei
stk500boot.c
UART_TRANSMIT_COMPLETE TXC #define UART_RECEIVE_COMPLETE RXC #define UART_DATA_REG UDR #define UART_DOUBLE_SPEED U2X #elif defined(__AVR_ATmega64__) || defined(__AVR_ATmega128__) || defined(__AVR_ATmega162__) || defined(__AVR_ATmega88__) || defined(__AVR_ATmega168__) \ || defined(__AVR_AT90CAN32__) || defined(__AVR_AT90CAN64
in „[AVR] Problem mit ATmega2561 und Fleury Bootloader“ · Mikrocontroller und Digitale Elektronik ·
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PDF
radino_CC1101.pdf
Boltenhagener Str. 124 Document-Nr: 3051000 077A Page 2 / 18 D-011109 Dresden radino CC1101 Datasheet Pinout andTerminal Description TopView radino Name Arduino Atmega32U4 Description / Function Pin No. Pin No. Port (bold = main function) 1 MOSI 16 PB2 SPI-MOSI
in „Homematic, Radino CSM“ · Mikrocontroller und Digitale Elektronik ·
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db_atmega8.pdf
2486P–AVR–02/06 Ordering Information (1) Speed (MHz) Power Supply Ordering Code Package Operation Range ATmega8L-8AC 32A Commercial ATmega8L-8PC 28P3 ATmega8L-8MC 32M1-A (0°C to 7C) ATmega8L-8AI 32A 8 2.7 - 5.5 (2) 32A ATmega8L-8AU ATmega8L-8PI 28P3 Industrial ATmega8L-8PU (2) 28P3 (-40C to 85C) ATmega8L-8MI 32M1-A ATmega8L-8MU (2) 32M1-A ATmega8-16AC 32A Commercial ATmega8-16PC 28P3 (0°C to 7C) ATmega8-16MC 32M1-A ATmega8-16AI 32A 16 4.5 - 5.5 (2) 32A ATmega8-16AU ATmega8-16PI 28P3 Industrial ATmega8-16PU
in „ADC-Input und Auswahlverfahren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
D810022B.PDF
ATmega8535, ATmega16 und ATmega32 mit geeignetem Schnittstellenadapter ISP-Schnittstelle für die Programmierung der Micro-Controller ATmega8535, ATmega16 und ATmega32 über die serielle RS232-Schnittstelle
in „Pollin Board mit Attiny13A“ · Mikrocontroller und Digitale Elektronik ·
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Datei
USART.c
Author: Kde-PC */ #include <avr/io.h> #include <avr/interrupt.h> #include "USART.h" #if defined(__AVR_ATmega8__) || defined(__AVR_ATmega8A__) || \ defined(__AVR_ATmega16__) || defined(__AVR_ATmega16A__) || \ defined(__AVR_ATmega32__) || defined(__AVR_ATmega32A__) || \ defined(__AVR_ATmega323__) #define USART0
in „Externe .c bringt nur theater“ · Mikrocontroller und Digitale Elektronik ·
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PDF
catalog.pdf
14.66 USD [QTY]: 2 [Category]: Microcontrollers [Desc]: MCU 32-bit STM32F ARM Cortex M4F RISC 1024KB Flash 2.5V/3.3V 100-Pin LQFP Tray MPN: ATMEGA8-16AU [ID]: 000150 [Price]: 3.12 USD [QTY]: 20 [Category]: Microcontrollers [Desc]: Microchip - ATMEGA8-16AU - Microcontroller Mcu, 8 Bit, Atmega, 16MHZ, TQFP-32 MPN: STM32F407ZGT6 [ID]: 000151 [Price]: 15.59 USD [QTY]: 2 [Category]: Microcontrollers [Desc]: MCU 32-bit STM32F ARM Cortex M4F RISC 1024KB
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catalog.pdf
14.66 USD [QTY]: 2 [Category]: Microcontrollers [Desc]: MCU 32-bit STM32F ARM Cortex M4F RISC 1024KB Flash 2.5V/3.3V 100-Pin LQFP Tray MPN: ATMEGA8-16AU [ID]: 000150 [Price]: 3.12 USD [QTY]: 20 [Category]: Microcontrollers
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Datei
twi_lib.h
#ifndef _TWI_LIB_H_ #define _TWI_LIB_H_ #if defined __AVR_ATmega128__ #define REG_UDR UDR0 #define REG_UBRRL UBRR0L #define REG_UBRRH UBRR0H #define REG_UCSRA UCSR0A #define REG_UCSRB UCSR0B #define REG_UCSRC UCSR0C #define BIT_U2X U2X0 #define BIT_RXCIE RXCIE0
in „TWI MUX per SW an einem Port“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR_ATmega_328PB.pdf
at 1MHz, 1.8V, 25°C – Active Mode: 0.2mA – Power-down Mode: 0.2μA – Power-save Mode: 1.3μA (Including 32kHz RTC) Atmel ATmega328PB [DATASHEET] 2 Atmel-42397C-8-bit AVR-ATmega328PB_Datasheet_Complete-10/2015 Table of Contents Introduction.
in „ATmega328PB: UART(MC) empfängt falsche Daten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
catalog-3.pdf
]: 20.2015 USD [QTY]: 2 [Category]: Microcontrollers [Desc]: MCU 32-bit STM32F ARM Cortex M4F RISC 1024KB Flash 2.5V/3.3V 100-Pin LQFP Tray MPN: ATMEGA8-16AU [ID]: 000150 [Price]: 4.2994 USD [QTY]: 20 [Category]: Microcontrollers [Desc]: Microchip - ATMEGA8-16AU - Microcontroller Mcu, 8 Bit, Atmega, 16MHZ, TQFP-32 MPN: STM32F407ZGT6 [ID]: 000151 [Price]: 21.483 USD [QTY]: 2 [Category]: Microcontrollers Page 61/105 Bauteileliste vom 12.08.2022 [Desc]:
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PDF
A300_ATMEGA8xxx.pdf
, Power-save, Power-down, and Standby I/O and Packages – 23 Programmable I/O Lines – 28-lead PDIP, 32-lead TQFP, and 32-pad MLF Operating Voltages – 2.7 - 5.5V (ATmega8L) – 4.5 - 5.5V (ATmega8) Speed Grades – 0 - 8 MHz (ATmega8L) – 0 - 16 MHz (ATmega8) Power Consumption at 4 Mhz, 3V, 25°C – Active: 3.6
in „atMega8-16 Au beschreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATmega8.pdf
7.8% Max (1) 230.4kbps 460.8kbps 250kbps 0.5Mbps 460.8kbps 921.6kbps 1. UBRR = 0, Error = 0.0% 154 ATmega8(L) 2486Z–AVR–02/11 ATmega8(L) Table 62. Examples of UBRR Settings for Commonly Used Oscillator Frequencies (Continued) osc= 8.0000MHz osc= 11.0592MHz osc= 14.7456MHz Baud U2X = 0 U2X = 1 U2X = 0 U2X
in „Mikrocontroller und 15'' TFT LCD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
305000076A_radino_WiFi.pdf
076A Page 2 / 17 D-011109 Dresden radinoWiFi Datasheet Pinout andTerminal Description TopView radino Name Arduino Atmega32U4 Description / Function Pin No. Pin No. Port (bold = main function) 1 MOSI 16 PB2 SPI-MOSI
in „Wlan2Serial Modul für 5 euro“ · Mikrocontroller und Digitale Elektronik ·
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Datei
IRremoteInt.h
46 // Teensy 1.0 #elif defined(__AVR_AT90USB162__) #define IR_USE_TIMER1 // tx = pin 17 // Teensy 2.0 #elif defined(__AVR_ATmega32U4__) //#define IR_USE_TIMER1 // tx = pin 14 //#define IR_USE_TIMER3 // tx = pin 9 #define IR_USE_TIMER4_HS // tx = pin 10 // Teensy++ 1.0 & 2.0 #elif defined(__AVR_AT90USB646
in „IR library auf Atmega328 8Mhz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATMEGA8_DATENBLATT.pdf
(1) 230.4 kbps 460.8 kbps 250 kbps 0.5 Mbps 460.8 kbps 921.6 kbps 1. UBRR = 0, Error = 0.0% 160 ATmega8(L) 2486X–AVR–06/10 ATmega8(L) Table 62. Examples of UBRR Settings for Commonly Used Oscillator Frequencies (Continued) fosc= 8.0000 MHz fosc=11.0592 MHz fosc= 14.7456 MHz Baud U2X = 0 U2X = 1 U2X
in „I2C/TWI TWBR > 10 warum?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
my_xprintf.c
***************************************************** void xprintDEC(xprintf_t x) { #ifdef XPRINTF_32 const uint32_t dv[] = {1000000000UL, 100000000UL, 10000000UL, 1000000UL, 100000UL, 10000UL, 1000UL, 100UL, 10UL, 1UL}; #else const uint16_t dv[] = {10000U, 1000U, 100U, 10U, 1U}; #endif char c; uint8
in „"printf" for small pockets || für ganz arme uC“ · Projekte & Code ·
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atmega_328.pdf
1K Bytes 2K Bytes 2 instruction words/vector ATmega328P 32K Bytes 1K Bytes 2K Bytes 2 instruction words/vector ATmega48A/48PA/88A/88PA/168A/168PA/328/328P support a real Read-While-Write Self-Pro- gramming mechanism
in „1 Wire mit Atmega328“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Inputs.ino
= 1000; #elif defined(__AVR_ATmega32U4__) int inputPins[] = {18, 19, 20, 21, 4, 6, 8, 9, 10, 2, 3, 5, 7, 14, 15, 16}; Input inputs[16]; int memoryLocationEncoder = 800; int memoryLocationMatrix = 512; int memoryLocationDeviceID = 1000
in „Dauerkontakt vom Schalter in Impuls umwandeln“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
graphic2.c
was uint8_t u.s.w. steht siehe inttypes.h typedef uint8_t u08; typedef int8_t s08; typedef uint16_t u16; typedef int16_t s16; typedef uint32_t u32; typedef int32_t s32; //Globale Variablen //Für die Grafik selbst
in „Optimierung mittels typecast“ · Mikrocontroller und Digitale Elektronik ·
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Mega8-88_ADR_doc2553.pdf
I/O registers are not functionally equivalent, see Table 4 for detailed information. (cont.) ATmega8 ATmega88 I/O Register I/O Register I/O Register I/O Register name address name address PORTD 0x12 (0x32) PORTD 0x0B (0x2B) ) DDRD 0x11 (0x31) DDRD 0x0A (0x2A) F PIND 0x10 (0x30) PIND 0x09 (0x29) x
in „Einstellbarer Frequenzgenerator für 0.12 Hz - 8 MHz mit Atmega 8 und Bascom“ · Projekte & Code ·
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Atmega8_nach_Atmega88_doc2553.pdf
I/O registers are not functionally equivalent, see Table 4 for detailed information. (cont.) ATmega8 ATmega88 I/O Register I/O Register I/O Register I/O Register name address name address PORTD 0x12 (0x32) PORTD 0x0B (0x2B) ) DDRD 0x11 (0x31) DDRD 0x0A (0x2A) F PIND 0x10 (0x30) PIND 0x09 (0x29) x
in „I2C master libraryVON pfleury [Fehlersuche]“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Replacing_ATmega8_by_ATmega88.pdf
I/O registers are not functionally equivalent, see Table 4 for detailed information. (cont.) ATmega8 ATmega88 I/O Register I/O Register I/O Register I/O Register name address name address PORTD 0x12 (0x32) PORTD 0x0B (0x2B) ) DDRD 0x11 (0x31) DDRD 0x0A (0x2A) F PIND 0x10 (0x30) PIND 0x09 (0x29) x
in „AVR-Board Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schematic_Prints.pdf
8 7 6 5 30 PD5(XCK1) PG4(TOSC1) 19 31 R114 P1 U27F S2 32 PD6(T1) ATmega128 22K 61 PD7(T2) +5V 2 1 60 PF0(ADC0) ATmega128 B 4 3 59 PF1(ADC1) TP29 TP33 TP35 B NC 6 5 58 PF2(ADC2) D16 TP28 TP30 TP34 TP36 8 7 PF3(ADC3) 1 2 3 4 R119 10 9 TCK 57 PF4(ADC4
in „ATMega128 und AVR mkII - Resetproblem?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stk500boot.c
UART_TRANSMIT_COMPLETE TXC #define UART_RECEIVE_COMPLETE RXC #define UART_DATA_REG UDR #define UART_DOUBLE_SPEED U2X #elif defined(__AVR_ATmega64__) || defined(__AVR_ATmega128__) || defined(__AVR_ATmega162__) || defined(__AVR_ATmega88__) || defined(__AVR_ATmega168__) \ || defined(__AVR_AT90CAN32__) || defined(__AVR_AT90CAN64
in „ATmega328p + stk500v2 (Peter ihm sein Bootloader), Flash bleibt leer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ZigBit_OEM_Module_Product_Datasheet.pdf
-B0 Pinout T U T T X X A K _ O I C R R T A L L K I O L 7 6 T T T T D C _ D E 3 2 1 0 M M C P OP A A R R C C U N S S P P OP I I I G G U U U U I I C D R O G G G S P S S 18 17 16 15 14 13 12 11 10 98 7 6 5 4 3 2 1 GPIO3
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platformio.ini
-DTIMER_SERIAL=TIM9 board = rumba32_f446ve upload_protocol = dfu monitor_speed = 500000 # # MKS Robin Nano V1.2 and V2 using hal STM32 # [env:mks_robin_nano35_stm32] platform = ${common_stm32.platform} extends = common_stm32 build_flags
in „Ender3 Z-Achse fährt mit Marlin nur nach oben“ · Mechanik, Gehäuse, Werkzeug ·
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Datei
main.c
library test project. Compiler: avr-gcc (WinAVR 20060421) Based on Sensirion sample code app note, rev. 2.05 MCU: ATmega8, 4MHz crystal, Vcc = 5V (important for SHT11 calculations) sensor: SHT11, DATA with external 10k pullup connected to PD4, SCK connected to PD3 MCU <-> PC: UART HFUSE/LFUSE: 0xC9/0x9F
in „Unabhängiger Timer gesucht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stk500boot.c
UART_TRANSMIT_COMPLETE TXC #define UART_RECEIVE_COMPLETE RXC #define UART_DATA_REG UDR #define UART_DOUBLE_SPEED U2X #elif defined(__AVR_ATmega64__) || defined(__AVR_ATmega128__) || defined(__AVR_ATmega162__) || defined(__AVR_ATmega88__) || defined(__AVR_ATmega168__) \ || defined(__AVR_AT90CAN32__) || defined(__AVR_AT90CAN64
in „STK500v2-Bootloader von Peter Fleury“ · Projekte & Code ·
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Datei
fat.c
per FAT entry #ifdef USE_FATBUFFER // UpdateFATBuffer(FATFirstSector + ((U32)cluster * 2) / BYTE_PER_SEC); UpdateFATBuffer(FATFirstSector + (U8)((U16)cluster >> 8) ); // cv=(union Convert *)&fatbuf[((U32)cluster * 2) & (BYTE_PER_SEC-1)]; cv=(union Convert *)&fatbuf[((U16)cluster
in „ATmega32 + SD-Karte (Klabunde-Lib)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
fat.c
ifdef USE_FAT16 if(FATtype==FAT16) { //two bytes per FAT entry // UpdateFATBuffer(FATFirstSector + ((U32)cluster * 2) / BYTE_PER_SEC); // UpdateFATBuffer(FATFirstSector + ((unsigned int)cluster) / (BYTE_PER_SEC/2)); UpdateFATBuffer(FATFirstSector + (U8)( (U16)cluster >> 8 )); // Buffer index is max 511
in „AVR Studio: Großes Projekt aus mehreren kleinen erstellen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
fat.c
ifdef USE_FAT16 if(FATtype==FAT16) { //two bytes per FAT entry // UpdateFATBuffer(FATFirstSector + ((U32)cluster * 2) / BYTE_PER_SEC); // UpdateFATBuffer(FATFirstSector + ((unsigned int)cluster) / (BYTE_PER_SEC/2)); UpdateFATBuffer(FATFirstSector + (U8)( (U16)cluster >> 8 )); // Buffer index is max 511
in „AVR Studio: Großes Projekt aus mehreren kleinen erstellen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DataLogger.pdf
7 8 g 32 PA5(ADC5) PC5(TDI) 24 TDI 9 10 g X3-1 1 31 PA6(ADC6) PC6(TOSC1) 25 DISP_RS JTAG_ATMEGA e +5V +5V +5V +5V +5V +5V 30 PA7(ADC8) PC7(TOSC2) 26 DISP_RW r X3-2 2 DISPLAY_DATA_EN GND . 40 9 s case open switch
in „datenlogger - ausreisser erkennen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Reflow.pdf
Q1 1 10k G05R RN1 4 10k R-EU_M1206 R11, R15, R21, R27 1 10k RESEU-10 R1 1 10k TRIM_EU-B64Y R5 1 10uH L-EU0207/10 L1 2 22p C2,5-3 C4, C5 2 47k R-EU_M1206 R20, R32 2 56k R-EU_M1206 R12, R22 2 82k R-EU_M1206 R13, R25 1 100 RESEU-10 R6 8 100n C2,5-3 C2, C3, C6, C7, C8, C9, C11, C13 2 220nF C2,5-3 C10, C12 1 220uF/35V ELC-5L C1 2 470k R-EU_M1206 R16, R28 2 560 RESEU-10 R3, R4 1 ATMEGA32-PU MEGA32-P IC1 1 AVR-ISP-6 AVR-ISP-6 J1 1 AVR-ISP-10 AVR-ISP-10 J2 1 B80C1500 RB1A B1 3 BC557 BC557 T1, T2, T3 1 DTS63N 40-
in „Reflow - Pizza Ofen“ · Platinen ·
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PDF
Reflow.pdf
Q1 1 10k G05R RN1 4 10k R-EU_M1206 R11, R15, R21, R27 1 10k RESEU-10 R1 1 10k TRIM_EU-B64Y R5 1 10uH L-EU0207/10 L1 2 22p C2,5-3 C4, C5 2 47k R-EU_M1206 R20, R32 2 56k R-EU_M1206 R12, R22 2 82k R-EU_M1206 R13, R25 1 100 RESEU-10 R6 8 100n C2,5-3 C2, C3, C6, C7, C8, C9, C11, C13 2 220nF C2,5-3 C10, C12 1 220uF/35V ELC-5L C1 2 470k R-EU_M1206 R16, R28 2 560 RESEU-10 R3, R4 1 ATMEGA32-PU MEGA32-P IC1 1 AVR-ISP-6 AVR-ISP-6 J1 1 AVR-ISP-10 AVR-ISP-10 J2 1 B80C1500 RB1A B1 3 BC557 BC557 T1, T2, T3 1 DTS63N 40-
in „Reflow - Lötofen T962 , T962a und Elektor neu“ · Platinen ·
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PDF
Reflow.pdf
Q1 1 10k G05R RN1 4 10k R-EU_M1206 R11, R15, R21, R27 1 10k RESEU-10 R1 1 10k TRIM_EU-B64Y R5 1 10uH L-EU0207/10 L1 2 22p C2,5-3 C4, C5 2 47k R-EU_M1206 R20, R32 2 56k R-EU_M1206 R12, R22 2 82k R-EU_M1206 R13, R25 1 100 RESEU-10 R6 8 100n C2,5-3 C2, C3, C6, C7, C8, C9, C11, C13 2 220nF C2,5-3 C10, C12 1 220uF/35V ELC-5L C1 2 470k R-EU_M1206 R16, R28 2 560 RESEU-10 R3, R4 1 ATMEGA32-PU MEGA32-P IC1 1 AVR-ISP-6 AVR-ISP-6 J1 1 AVR-ISP-10 AVR-ISP-10 J2 1 B80C1500 RB1A B1 3 BC557 BC557 T1, T2, T3 1 DTS63N 40-
in „Was haltet ihr hier von diesem Reflow-Ofen?“ · Platinen ·
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PDF
Atmel-8209-8-bit_AVR_ATmega16M1-32M1-64M1_Datasheet_1_.pdf
, 7.0mm × 7.0mm body, 0.65mm pitch quad flat no lead package (QFN) 2.2. ATmega32M1 Speed [MHz] Power Supply [V] Ordering Code Package Operational Range 16 2.7 - 5.5 ATmega32M1-AU 32A Industrial ATmega32M1-MU PV (-40°C to 85°C) Note: All packages are Pb free, fully LHF
in „Externer Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
v_Ausgabe.txt
Program Files (x86)\Atmel\Studio\7.0\shellUtils\make.exe clean rm -rf main.o rm -rf main.d rm -rf "gcc-9.2.0-atmega-attiny-Test.elf" "gcc-9.2.0-atmega-attiny-Test.a" "gcc-9.2.0-atmega-attiny-Test.hex" "gcc-9.2.0-atmega-attiny-Test.lss" "gcc-9.2.0-atmega-attiny-Test.eep" "gcc-9.2.0-atmega-attiny-Test.map"
in „cannot read spec file 'device-specs/specs-atmega4808'“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
URSEL_BIT_VALUE (0) #endif #define UART0_TXEN_BIT_VALUE (1<<TXEN0) #define UART0_UDR UDR0 #define UART0_U2X U2X0 #else #define UART0_UBRRH UBRRH #define UART0_UBRRL UBRRL #define UART0_UCSRA UCSRA #define UART0_UCSRB UCSRB #define UART0_UCSRC UCSRC #define UART0_UDRE_BIT_VALUE (1<<UDRE) #define UART0_UCSZ1
in „IRMP-Anwendung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
crumb_128.pdf
1 2 3 4 J2 VCC VCC RS232 Enable VCC VCC VCC 3 2 1 GND VCC C4 C3 C11 GND D GND GND D L1 100n 100n R1 C5 10uH 100n 4k7 GND 5 C7 1 100n U2 C8 CON1 U1 CON2 16 2 100n 1 64 12 /FORCEOFF C C1+ 4 1 RXD0 2 /PEN AVCC
in „Crumb128 Probleme bei der Inbetriebnahme“ · Mikrocontroller und Digitale Elektronik ·
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PDF
I2cBusSniffer.pdf
CLK SCK #RESET MISO J6 shunt J6 for 9600 baud, leave open for 115K 9600 U1 5V ATMEGA161 1 PB0(OC0/T0) VCC PB1(OC2/T1) PA0(AD0) 1 MOSI PB2(RXD1/AIN0) PA1(AD1) 2 PB3(TXD1/AIN1) PA2(AD2) 4 MISO PB4(#SS) PA3(AD3) 5 SCK PB6(MISO) PA5(AD5) 6 PB7(SCK) PA6(AD6) 7 RXD #RESET #RESET
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Datei
serial_blank.c
U2X0 U2X #define RXEN0 RXEN #define TXEN0 TXEN #define UCSZ00 UCSZ0 #define UCSZ01 UCSZ1 #define UDRE0 UDRE #define UDR0 UDR #define RXC0 RXC #endif /* -------------------------------------------------
in „ATMega8 USART“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATMEGA88-DB.pdf
10PI 28P3 (3) ATmega48V-10AU (2) 32A Industrial 10 1.8 - 5.5 (2) ATmega48V-10MMU 28M1 (-40C to 85C) (2) ATmega48V-10MU 32M1-A ATmega48V-10PU (2) 28P3 ATmega48-20AI 32A ATmega48-20MI 32M1-A ATmega48-20PI 28P3 Industrial
in „Schieberegister SN54HC595 mit Atmel atmega 88 ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TT_Bausatz_mit_Deek_Robot-DIL28_Umbauten.pdf
Transistortester: China-Bausatz mit Deek_Robot „Arduino pro mini“ Platine statt Atmega in DIL28 : Aufbaudokumentation Stand 1.8.2016 ATmega328P 28 PDIP 32MLF TOP view Korr: TxD/PD1 RxD/PD0 TOP view TOP view Bottom view Arduino pro mini: Arduino pro micro: Schaltplan Transistortester