-
Datei
log.txt
such file or directory makefile:339: disp.d: No such file or directory set -e; avr-gcc -MM -mmcu=atmega128 -I. -D GCC_MEGA_AVR -I. -I./FreeRTOS/include -g -O3 -funsigned-char -funsigned-bitfields -fpack-struct -fshort-enums -Wall -Wextra -Wshadow -Wpointer-arith -Wbad-function-cast -Wcast-align -Wsign-compare
in „S65 Display Unterschiede zw LPH88* und LP-88* ?“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
makefile-0x1F00.TXT
= atmega640 # - does not compile -- MCU = atmega6450 # - does not compile -- MCU = atmega6490 # ------------- # BootLoader mega128 1k = 0x1FC00 = (0x10000words<<1)-0x400bytes #BOOTSTRT = 0x1FC00 #MCU = atmega128
-
PDF
MegaBoardV1.4.pdf
von Ulrich Radig Vorwort: Im Internet kursieren zahlreiche Schaltungen und Anleitungen rund um den ATMega 103,128. Nachteile dieser Schaltungen ist meist, daß sie eine Doppelseitige Platine benötigen. Aus diesen Grund habe ich mal diese Schaltung (Board) entwickelt und hoffe das ich einigen Menschen weiter
in „ATMEGA128 funzt nicht“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
STK500-HW-Beschreibung.pdf
ATtiny11 • AT90S4433 • ATtiny12 • AT90S4434 • ATtiny15 • AT90S8515 • ATtiny22 • AT90S8535 • ATtiny28 • ATmega8 • AT90S1200 • ATmega16 • AT90S2313 • ATmega161 • AT90S2323 • ATmega163 • AT90S2333 • ATmega323 • AT90S2343 • ATmega103 (1) (1) • AT90S4414 • ATmega128 1 Diese AVR’s passen nicht in die Sockel des
in „deutsche version vom stk500 handbuch“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
STK500-HW-Beschreibung.pdf
ATtiny11 • AT90S4433 • ATtiny12 • AT90S4434 • ATtiny15 • AT90S8515 • ATtiny22 • AT90S8535 • ATtiny28 • ATmega8 • AT90S1200 • ATmega16 • AT90S2313 • ATmega161 • AT90S2323 • ATmega163 • AT90S2333 • ATmega323 • AT90S2343 • ATmega103 (1) (1) • AT90S4414 • ATmega128 1 Diese AVR’s passen nicht in die Sockel des
in „Handbuch/Anleitung zu AVR STK 500“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
STK500-HW-Beschreibung.pdf
ATtiny11 • AT90S4433 • ATtiny12 • AT90S4434 • ATtiny15 • AT90S8515 • ATtiny22 • AT90S8535 • ATtiny28 • ATmega8 • AT90S1200 • ATmega16 • AT90S2313 • ATmega161 • AT90S2323 • ATmega163 • AT90S2333 • ATmega323 • AT90S2343 • ATmega103 (1) (1) • AT90S4414 • ATmega128 1 Diese AVR’s passen nicht in die Sockel des
in „Einstieg mit dem AVR STK 500“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
STK500-HW-Beschreibung.pdf
ATtiny11 • AT90S4433 • ATtiny12 • AT90S4434 • ATtiny15 • AT90S8515 • ATtiny22 • AT90S8535 • ATtiny28 • ATmega8 • AT90S1200 • ATmega16 • AT90S2313 • ATmega161 • AT90S2323 • ATmega163 • AT90S2333 • ATmega323 • AT90S2343 • ATmega103 (1) (1) • AT90S4414 • ATmega128 1 Diese AVR’s passen nicht in die Sockel des
in „Einsteigerfragen zu STK-500“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
STK500-HW-Beschreibung.pdf
ATtiny11 • AT90S4433 • ATtiny12 • AT90S4434 • ATtiny15 • AT90S8515 • ATtiny22 • AT90S8535 • ATtiny28 • ATmega8 • AT90S1200 • ATmega16 • AT90S2313 • ATmega161 • AT90S2323 • ATmega163 • AT90S2333 • ATmega323 • AT90S2343 • ATmega103 (1) (1) • AT90S4414 • ATmega128 1 Diese AVR’s passen nicht in die Sockel des
in „++++Programmübertragung auf STK500++++“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
STK500-HW-Beschreibung.pdf
ATtiny11 • AT90S4433 • ATtiny12 • AT90S4434 • ATtiny15 • AT90S8515 • ATtiny22 • AT90S8535 • ATtiny28 • ATmega8 • AT90S1200 • ATmega16 • AT90S2313 • ATmega161 • AT90S2323 • ATmega163 • AT90S2333 • ATmega323 • AT90S2343 • ATmega103 (1) (1) • AT90S4414 • ATmega128 1 Diese AVR’s passen nicht in die Sockel des
in „STK500 - welcher Prozessor in welchem Sockel?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
STK500-HW-Beschreibung.pdf
ATtiny11 • AT90S4433 • ATtiny12 • AT90S4434 • ATtiny15 • AT90S8515 • ATtiny22 • AT90S8535 • ATtiny28 • ATmega8 • AT90S1200 • ATmega16 • AT90S2313 • ATmega161 • AT90S2323 • ATmega163 • AT90S2333 • ATmega323 • AT90S2343 • ATmega103 (1) (1) • AT90S4414 • ATmega128 1 Diese AVR’s passen nicht in die Sockel des
in „Evaluation Boards“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
STK500-HW-Beschreibung.pdf
ATtiny11 • AT90S4433 • ATtiny12 • AT90S4434 • ATtiny15 • AT90S8515 • ATtiny22 • AT90S8535 • ATtiny28 • ATmega8 • AT90S1200 • ATmega16 • AT90S2313 • ATmega161 • AT90S2323 • ATmega163 • AT90S2333 • ATmega323 • AT90S2343 • ATmega103 (1) (1) • AT90S4414 • ATmega128 1 Diese AVR’s passen nicht in die Sockel des
in „STK500 mit AVRDRAGON via JTAG verbinden“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
STK500_HW_BESCHREIBUNG_2.PDF
ATtiny11 • AT90S4433 • ATtiny12 • AT90S4434 • ATtiny15 • AT90S8515 • ATtiny22 • AT90S8535 • ATtiny28 • ATmega8 • AT90S1200 • ATmega16 • AT90S2313 • ATmega161 • AT90S2323 • ATmega163 • AT90S2333 • ATmega323 • AT90S2343 • ATmega103 (1) (1) • AT90S4414 • ATmega128 1 Diese AVR’s passen nicht in die Sockel des
in „Suche deutsche Übersetzung für STK500“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
STK500-HW-Beschreibung.pdf
ATtiny11 • AT90S4433 • ATtiny12 • AT90S4434 • ATtiny15 • AT90S8515 • ATtiny22 • AT90S8535 • ATtiny28 • ATmega8 • AT90S1200 • ATmega16 • AT90S2313 • ATmega161 • AT90S2323 • ATmega163 • AT90S2333 • ATmega323 • AT90S2343 • ATmega103 (1) (1) • AT90S4414 • ATmega128 1 Diese AVR’s passen nicht in die Sockel des
in „STK500 als ISP“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
stk500user_guide_de.pdf
ATtiny11 • AT90S4433 • ATtiny12 • AT90S4434 • ATtiny15 • AT90S8515 • ATtiny22 • AT90S8535 • ATtiny28 • ATmega8 • AT90S1200 • ATmega16 • AT90S2313 • ATmega161 • AT90S2323 • ATmega163 • AT90S2333 • ATmega323 • AT90S2343 • ATmega103 (1) (1) • AT90S4414 • ATmega128 1 Diese AVR’s passen nicht in die Sockel des
in „ATmega32 ISP“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
adc.h
adcref_t; #elif defined(__AVR_ATmega164A__) || \ defined(__AVR_ATmega164P__) || \ defined(__AVR_ATmega164PA__) || \ defined(__AVR_ATmega324A__) || \ defined(__AVR_ATmega324PA__) || \ defined(__AVR_ATmega644A__) || \ defined(__AVR_ATmega644PA
in „Library für alle AVRs erstellen“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
weg.c
ADTS2,1<<ADTS1,1<<ADTS0); return 0; } // avr-gcc --version // avr-g++ --version // avr-g++ -c -mmcu=atmega128rfa1 -pedantic -Wall -o weg.o weg.c // avr-gcc -c -mmcu=atmega128rfa1 -pedantic -Wall -o weg.o weg.c // avr-g++ -c -mmcu=atmega128rfa1 -pedantic -Wall -DAVR_IO=1 -o weg.o weg.c // >>>>>>>>>> Das geht ohne Warnung <<<<<<< // avr-gcc -c -mmcu=atmega128rfa1 -pedantic -Wall -DAVR_IO=1 -o weg.o weg.c
in „avr-g++ with avr/io.h seems to hide warnings“ · µC & Digital Electronics ·
-
Datei
irsndconfig.h
section: * * Change hardware pin here: IRSND_XMEGA_OC0A = OC0A on ATxmegas supporting OC0A, e.g. ATxmega128A1U * IRSND_XMEGA_OC0B = OC0B on ATxmegas supporting OC0B, e.g. ATxmega128A1U * IRSND_XMEGA_OC0C = OC0C on ATxmegas supporting OC0C, e.g. ATxmega128A1U * IRSND_XMEGA_OC0D = OC0D on ATxmegas supporting OC0D, e.g. ATxmega128A1U * IRSND_XMEGA_OC1A = OC1A on ATxmegas supporting OC1A, e.g. ATxmega128A1U * IRSND_XMEGA_OC1B = OC1B on ATxmegas supporting OC1B, e.g. ATxmega128A1U *----------------------------------------------
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
-
Datei
erase.txt
avrdude.conf" Using Port : \\.\COM2 Using Programmer : arduino Overriding Baud Rate : 19200 AVR Part : ATMEGA128 Chip Erase delay : 9000 us PAGEL : PD7 BS2 : PA0 RESET disposition : dedicated RETRY pulse : SCK serial program mode : yes parallel program mode : yes Timeout : 200 StabDelay : 100 CmdexeDelay :
in „ATMega128a verflasht Turigy 9xr“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
avr.h
=atmega48|\ mmcu=atmega88|\ mmcu=atmega64|\ mmcu=atmega644*|\ mmcu=atmega645|\ mmcu=atmega6450|\ mmcu=atmega649|\ mmcu=atmega6490|\ mmcu=atmega128|\ mmcu=atmega162|\ mmcu=atmega164*|\ mmcu=atmega165*|\ mmcu
in „ATtiny24 - ISR wird nie gerufen __vectors> fehlt“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
Fehler.txt
: Comm.c avr-gcc -c -mmcu=atmega169 -I. -gstabs -O3 -funsigned-char -funsigned-bitfields -fpack-struct -fshort-enums -Wall -Wstrict-prototypes -Wa,-adhlns=Comm.lst -std=gnu99 -Wp,-M,-MP,-MT,Comm.o,-MF,.dep/Comm.o.d Comm.c -o Comm.o
in „Avr Butterfly über Seriell nicht zu programmieren“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
irsndconfig.h
section: * * Change hardware pin here: IRSND_XMEGA_OC0A = OC0A on ATxmegas supporting OC0A, e.g. ATxmega128A1U * IRSND_XMEGA_OC0B = OC0B on ATxmegas supporting OC0B, e.g. ATxmega128A1U * IRSND_XMEGA_OC0C = OC0C on ATxmegas supporting OC0C, e.g. ATxmega128A1U * IRSND_XMEGA_OC0D = OC0D on ATxmegas supporting OC0D, e.g. ATxmega128A1U * IRSND_XMEGA_OC1A = OC1A on ATxmegas supporting OC1A, e.g. ATxmega128A1U * IRSND_XMEGA_OC1B = OC1B on ATxmegas supporting OC1B, e.g. ATxmega128A1U *----------------------------------------------
in „Umfrage: welche IR-Protokolle nutzt ihr mit IRMP?“ · PC Hard- und Software ·
-
Datei
AVRrescue.c
ATmega128 {0x1E, 0x97, 0x03, 0x42, 0x99, 0xFF}, // ATmega1280 {0x1E, 0x97, 0x04, 0x42, 0x99, 0xFF}, // ATmega1281 {0x1E, 0x97, 0x05, 0x42, 0x99, 0xFF}, // ATmega1284P {0x1E, 0x97, 0x06, 0x42, 0x99, 0xFF},
in „AVR-Rescue: standalone Parallel HV-Programmer“ · Projekte & Code ·
-
Datei
main.c
//***************************************************/; //* Hardware : ET-BASE AVR MEGA64/128 */; //* CPU : ATMEL-ATmega128 */; //* X-TAL : 16.00 MHz */; //* Complier : CodeVisionAVR V1.24.7e */; //* Last Update : 9-03-2006 (ETT CO.,LTD) */; //* : WWW.ETT.CO.TH */; //* Description : RS232 Channel
in „GPS + Mega128 + VERZWEIFLUNG“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
Makefile-1.txt
assembler code only # # To rebuild project do "make clean" then "make all". # # MCU name #MCU = atmega32 MCU = atmega644 #MCU = atmega644p #MCU = atmega128 #Fuse settings for ATmega644 ifeq ($(MCU), atmega644) FUSE_BITS = -u -U lfuse:w:0xff:m -U hfuse:w:0xdf:m HEX_FILE_NAME = MEGA644 endif #Fuse settings
-
Datei
wiring.c
// this needs to be called before setup() or some functions won't // work there sei(); // on the ATmega168, timer 0 is also used for fast hardware pwm // (using phase-correct PWM would mean that timer 0 overflowed half as often // resulting in different millis() behavior on the ATmega8 and ATmega168)
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
-
Datei
Handschalter.bas
) 2009 by Thorsten Wurm 'Beschreibung : MXT-Control 'Version : Handschalter 400450 'Controller : ATMega128 '----------------------------------------------------------------------------------------- 'V1.0 28.05.2009 '----------------------------------------------------------- ' ACHTUNG !!!! ' JTAG deaktivieren
in „3.5" TFT-Display an Atmega128“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
2019-02-22_SCH_ATMega_Eval_DEVEL_v0_2_.PDF
IN LEDs B ATmega128 B 23 IO's JTAG ISP Taster/DIP-Schalter USB (UART) OLED 128x64 C C OLED 128x64 Piezo HEADER Drehenkoder (I2C) D D Title ATMega_EvalDEVEL Size Number Revision A3 2 - Block Diagramm 0.2 Date: 22.02.2019
in „AD.wandler und FFT auf Atmega 128A“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
irsndconfig.h
section: * * Change hardware pin here: IRSND_XMEGA_OC0A = OC0A on ATxmegas supporting OC0A, e.g. ATxmega128A1U * IRSND_XMEGA_OC0B = OC0B on ATxmegas supporting OC0B, e.g. ATxmega128A1U * IRSND_XMEGA_OC0C = OC0C on ATxmegas supporting OC0C, e.g. ATxmega128A1U * IRSND_XMEGA_OC0D = OC0D on ATxmegas supporting OC0D, e.g. ATxmega128A1U * IRSND_XMEGA_OC1A = OC1A on ATxmegas supporting OC1A, e.g. ATxmega128A1U * IRSND_XMEGA_OC1B = OC1B on ATxmegas supporting OC1B, e.g. ATxmega128A1U *----------------------------------------------
in „IRSND Daten für Roomba“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
irsndconfig.h
section: * * Change hardware pin here: IRSND_XMEGA_OC0A = OC0A on ATxmegas supporting OC0A, e.g. ATxmega128A1U * IRSND_XMEGA_OC0B = OC0B on ATxmegas supporting OC0B, e.g. ATxmega128A1U * IRSND_XMEGA_OC0C = OC0C on ATxmegas supporting OC0C, e.g. ATxmega128A1U * IRSND_XMEGA_OC0D = OC0D on ATxmegas supporting OC0D, e.g. ATxmega128A1U * IRSND_XMEGA_OC1A = OC1A on ATxmegas supporting OC1A, e.g. ATxmega128A1U * IRSND_XMEGA_OC1B = OC1B on ATxmegas supporting OC1B, e.g. ATxmega128A1U *----------------------------------------------
in „IR Fernbedienung mit IRSND“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
usb-isp_installation_de.pdf
ATtiny26, ATtiny44, ATtiny45, ATtiny84, ATtiny85, ATtiny86, ATtiny261, ATtiny461, ATtiny861 Mega Atmega88, Atmega103, Atmega128, Atmega1280, Atmega1281, Atmega16, Atmega161, Atmega162, Atmega163, Atmega164, Atmega168, Atmega169, Atmega2560, Atmega2561, Atmega32, Atmega324, Atmega325, Atmega3250,Atmega329x, Atmega48, Atmega64, Atmega640, Atmega644, Atmega645, Atmega6450, Atmega649x, Atmega8, Atmega8515, Atmega8535 Weitere ATCAN128, AT90PWM2, AT90PWM2B, AT90PWM3, AT90PWM3B, AT90USB162, AT90USB646, AT90USB647,
in „Atmega läuft nur mit Programmer“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
usb-isp_installation_de.pdf
ATtiny26, ATtiny44, ATtiny45, ATtiny84, ATtiny85, ATtiny86, ATtiny261, ATtiny461, ATtiny861 Mega Atmega88, Atmega103, Atmega128, Atmega1280, Atmega1281, Atmega16, Atmega161, Atmega162, Atmega163, Atmega164, Atmega168, Atmega169, Atmega2560, Atmega2561, Atmega32, Atmega324, Atmega325, Atmega3250,Atmega329x, Atmega48, Atmega64, Atmega640, Atmega644, Atmega645, Atmega6450, Atmega649x, Atmega8, Atmega8515, Atmega8535 Weitere ATCAN128, AT90PWM2, AT90PWM2B, AT90PWM3, AT90PWM3B, AT90USB162, AT90USB646, AT90USB647,
in „Diamex USB ISP Programmer“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
config.xml
BOOTSZ1="0" BOOTSZ0="1"/> <Setting caption="256 words" BOOTSZ1="1" BOOTSZ0="0"/> <Setting caption="128 words" BOOTSZ1="1" BOOTSZ0="1"/> </BootSize> </AVR> <AVR name="m16" caption="ATmega16"> <Fuse name="OCDEN" bit="7" fuseByte="hfuse" default="1" desc="Enable OCD (on chip debug)" mode="expert"/> <Fuse
in „Fuseeditor, grafische Benutzeroberfläche für AVRdude“ · Projekte & Code ·
-
PDF
A300_DS_DIAMEX-AVR_REF1.pdf
ATtiny26, ATtiny44, ATtiny45, ATtiny84, ATtiny85, Attiny86, ATtiny261, ATtiny461, ATtiny861 Mega Atmega88, ATmega103, ATmega128, ATmega1280, ATmega1281, ATmega16, ATmega161, ATmega162, ATmega163, ATmega164, ATmega168, ATmega169, ATmega2560, ATmega2561, ATmega32, ATmega324, ATmega325, ATmega3250, ATmega329x, ATmega48, ATmega64, ATmega640, ATmega644, ATmega645, ATmega6450, ATmega649x, ATmega8, ATmega8515, ATmega8535, Weitere AT90CAN128, AT90PWM2, AT90PWM2B, AT90PWM3, AT90PWM3B, AT90USB162, AT90USB646, AT90USB647
in „Universeller RC5-Fernbedienungsempfänger“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
wiring.c
// this needs to be called before setup() or some functions won't // work there sei(); // on the ATmega168, timer 0 is also used for fast hardware pwm // (using phase-correct PWM would mean that timer 0 overflowed half as often // resulting in different millis() behavior on the ATmega8 and ATmega168)
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
-
Datei
AVR-Studio_4.19.txt
SP). The following new parts have been added to AVR Studio since 4.18 SP3: -ATtiny84A,ATtiny1634,ATmega3250PA,ATmega325PA,ATmega3290PA,ATXMEGA16A4U,ATXMEGA32A4U, ATXMEGA64A3U,ATXMEGA128A3U,ATXMEGA192A3U,ATXMEGA256A3U,ATXMEGA256A3BU The following additional devices are supported by simulator2 in AVR Studio
in „AT90S2312 und Atmel Studio 6 ?“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
AVRprogDeviceCodes.txt
C 0x13,AT90S1200 0x20,AT90S2313 0x28,AT90S4414 0x30,AT90S4433 0x34,AT90S2333 0x38,AT90S8515 0x3A,ATmega8515 0x3B,ATmega8515 BOOT 0x41,ATmega103 0x42,ATmega603 0x43,ATmega128 0x44,ATmega128 BOOT 0x48,AT90S2323 0x4C,AT90S2343 0x50,ATtiny11 0x51,ATtiny10 0x55,ATtiny12 0x56,ATtiny15 0x58,ATtiny19 0x5C,ATtiny28
in „Bootloader Programmierung“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
Log.txt
---- ---- ------ ----- ----- --------- eeprom 65 20 4 0 no 1024 4 0 3600 3600 0xff 0xff flash 65 6 128 0 yes 32768 128 256 4500 4500 0xff 0xff lfuse 0 0 0 0 no 1 0 0 4500 4500 0x00 0x00 hfuse 0 0 0 0 no 1 0 0 4500 4500 0x00 0x00 efuse 0 0 0 0 no 1 0 0 4500 4500 0x00 0x00 lock 0 0 0 0 no 1 0 0 4500 4500
in „AVR Bootloader lock/fuse bits“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
irsndconfig.h
section: * * Change hardware pin here: IRSND_XMEGA_OC0A = OC0A on ATxmegas supporting OC0A, e.g. ATxmega128A1U * IRSND_XMEGA_OC0B = OC0B on ATxmegas supporting OC0B, e.g. ATxmega128A1U * IRSND_XMEGA_OC0C = OC0C on ATxmegas supporting OC0C, e.g. ATxmega128A1U * IRSND_XMEGA_OC0D = OC0D on ATxmegas supporting OC0D, e.g. ATxmega128A1U * IRSND_XMEGA_OC1A = OC1A on ATxmegas supporting OC1A, e.g. ATxmega128A1U * IRSND_XMEGA_OC1B = OC1B on ATxmegas supporting OC1B, e.g. ATxmega128A1U *----------------------------------------------
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
-
Datei
config.xml
name="m128" caption="ATmega128"> <Fuse name="UNUSED_E7" bit="7" fuseByte="efuse" default="1" desc="unused" mode="expert"/> <Fuse name="UNUSED_E6" bit="6" fuseByte="efuse" default="1" desc="unused" mode="expert
in „Fuseeditor, grafische Benutzeroberfläche für AVRdude“ · Projekte & Code ·
-
PDF
AVR-Studio_4.19_Release_Notes.pdf
support The following new parts have been added to AVR Studio since 4.18 SP3: -ATtiny84A,ATtiny1634,ATmega3250PA,ATmega325PA,ATmega3290PA,ATXMEGA16A4U,ATXMEGA32A4U, ATXMEGA64A3U,ATXMEGA128A3U,ATXMEGA192A3U,ATXMEGA256A3U,ATXMEGA256A3BU Check the device matrix to see which devices are supported by which tools
in „Plugins für AVR-Studio 4 Was“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
twitest.c
Exp $ */ // Simple demo program that talks to a Ds1621 using the builtin TWI interface // of an ATmega device. //----------------------------------------------------------------------------- #include <inttypes.h> #include <stdio.h> #include <stdlib.h> #include <avr/io.h> #include <util/twi.h> /* Note
in „I2C-Bus und DS1631“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
spminterface.h
| defined (__AVR_ATmega644A__) || defined (__AVR_ATmega644P__) || defined (__AVR_ATmega644PA__) #define funcaddr___bootloader__do_spm 0xe07c #elif defined (__AVR_ATmega128__) #define funcaddr___bootloader__do_spm 0x1e08c
in „[ATMega] Programm aus externem EEprom laden“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
releasenotes414rc1.txt
support ============ The following new parts have been added to AVR Studio since 4.13 SP2: * ATxmega128A1 * ATxmega64A1 * ATmega32M1 * ATmega32C1 * ATmega32U4 * ATtiny167 * ATtiny88 Check the device matrix in the help system to see which devices are supported by which tools. New Features ============
in „Honeywell Rondostat HR20E per AVR steuern und konfigurieren“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
owaf.c
************************/ #if defined (__RASPBERRY_PI__) #include <stdio.h> #elif defined (__AVR_ATmega168__) \ || defined (__AVR_ATmega644__) \ || defined (__AVR_ATmega32__) \ || defined (__AVR_ATmega328P__) \ || defined (__AVR_ATmega8__) #include <avr/io.h> #include <avr/interrupt.h> #include <util
in „1 Wire manche Teilnehmer antworten nicht“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
main.c
* * Simple demo program that talks to a 24Cxx I²C EEPROM using the * builtin TWI interface of an ATmega device. */ #include <inttypes.h> #include <stdio.h> #include <stdlib.h> #include <avr/interrupt.h> #include <avr/io.h> #include <util/twi.h> /* Note [1] */ #define DEBUG 1 /* * System clock in Hz. */ #define F_CPU 1000000 /* Note [2] */ /* * Compatibility defines. This should work on ATmega8, ATmega16, * ATmega163, ATmega323 and ATmega128 (IOW: on all devices that * provide a builtin TWI interface). * * On the 128, it defaults to USART 1. */ #ifndef UCSRB # ifdef UCSR1A /* ATmega128 *
in „IS24C01B I2C ATmega 16“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
wiring.c
// this needs to be called before setup() or some functions won't // work there sei(); // on the ATmega168, timer 0 is also used for fast hardware pwm // (using phase-correct PWM would mean that timer 0 overflowed half as often // resulting in different millis() behavior on the ATmega8 and ATmega168)
in „Sekunden,Minuten zählen mit der Funktion Millis()“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
DeviceList.txt
) AT90LS8535 AT90LS8535(PLCC44) AT90LS8535(TQFP44) AT90S8535 AT90S8535(PLCC44) AT90S8535(TQFP44) ATMEGA16(DIP40) ATMEGA16(TQFP44) ATMEGA16L(DIP40) ATMEGA16L(TQFP44) ATMEGA32(DIP40) ATMEGA32(TQFP44) ATMEGA8(DIP28) ATMEGA8(TQFP32) ATMEGA8A(DIP28) ATMEGA8A(TQFP32) ATMEGA48(DIP28) ATMEGA48(TQFP32) ATMEGA88(DIP28) ATMEGA88(TQFP32) ATMEGA168(DIP28) ATMEGA168(TQFP32) ATMEGA162(DIP40) ATMEGA162(PLCC44) ATMEGA162(TQFP44) ATMEGA8515(DIP40) ATMEGA8515(PLCC44) ATMEGA8515(TQFP44) ATMEGA8535(DIP40) ATMEGA8535(PLCC44) ATMEGA8535
in „[V] Genius G540 EPROM/Flash/uC Programmer (USB)“ · Markt ·
-
Datei
rs232-baudrate.c
INSTALL_INTERRUPT_HANDLER() ///////////////////////////// Functions //////////////////////////////////// #if defined(ATMEGA168) || defined(ATMEGA128) || defined(AT90CAN128) uint32_t rs232CalculateBaudrate(uint16_t ubrr, uint8_t ps) { return (MAIN_CLK * pwr(2, ps) / (16 * (ubrr + 1))); } uint16_t rs232CalculateUBBR(uint32
in „AVR TWI Master und Slave Funtionen in C“ · Projekte & Code ·
-
Datei
dude5.4arduino_avr910.txt
0x41 = ATMEGA103 Device code: 0x42 = (unknown) Device code: 0x43 = ATMEGA128 Device code: 0x44 = (unknown) Device code: 0x45 = ATMEGA64 Device code: 0x46 = (unknown) Device code: 0x47 = (unknown) Device code: 0x48
in „avrdude - Probleme unter Mac OS X 10.7 (Lion)“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
dude5.6_avr910.txt
0x41 = ATMEGA103 Device code: 0x42 = (unknown) Device code: 0x43 = ATMEGA128 Device code: 0x44 = (unknown) Device code: 0x45 = ATMEGA64 Device code: 0x46 = (unknown) Device code: 0x47 = (unknown) Device code: 0x48
in „avrdude - Probleme unter Mac OS X 10.7 (Lion)“ · Mikrocontroller und Digitale Elektronik ·