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PDF
Chip_-_Infosheet.pdf
Rapid Prototyping Module with,.ATmega128 pController, Crumb128 is a low-cost, easy to use and small-formfactor module combining Atmels ATmega128 AVR microcontroller with a standard serial port with RS232 transceiver, USB2.0 (full speed
in „12 Led's mit C++ ansprechen atmega128“ · Softwareentwicklung ·
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PDF
Chip_-_Infosheet.pdf
Rapid Prototyping Module with,.ATmega128 pController, Crumb128 is a low-cost, easy to use and small-formfactor module combining Atmels ATmega128 AVR microcontroller with a standard serial port with RS232 transceiver, USB2.0 (full speed
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PDF
avr8-gnu-toolchain-3.4.0.663-readme.pdf
atmega16hvb atmega16hvbrevb atmega16u4 atmega32 atmega32a atmega323 atmega324a atmega324p atmega325 atmega325a atmega325p atmega325pa atmega3250 atmega3250p atmega3250pa atmega328 atmega328p atmega329 atmega329p
in „ATtiny10 ISR TIM0_COMPB_vect“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MsTimer2.cpp
msecs = ms; func = f; } void MsTimer2::start() { count = 0; overflowing = 0; #if defined (__AVR_ATmega168__) || defined (__AVR_ATmega48__) || defined (__AVR_ATmega88__) || defined (__AVR_ATmega328P__) || (__AVR_ATmega1280__) TCNT2 = tcnt2; TIMSK2 |= (1<<TOIE2); #elif defined (__AVR_ATmega128__) TCNT2
in „ATMEGA 328 Timer 2 Issues“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Crumb128_051120.pdf
t e Crumb128 V2.0 e Rapid Prototyping Module with ATmega128 µController. h s Crumb128 is a low-cost, easy to use and small-formfactor module o combining Atmels ATmega128 AVR microcontroller with a standard serial
in „Crumb128 Probleme bei der Inbetriebnahme“ · Mikrocontroller und Digitale Elektronik ·
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Datei
log.txt
COLLECT_GCC_OPTIONS='-w' '-O2' '-flto' '-D' 'STACK_SIZE=2048' '-D' 'NO_TRAMPOLINES' '-D' 'SIGNAL_SUPPRESS' '-mmcu=atmega128' '-I' '/home/georg/gnu/install/gcc-4.7/avr/include' '-v' '-save-temps' /local/gnu/install/gcc-4.7/libexec/gcc/avr/4.7.0/cc1 -fpreprocessed 980709-1.i -quiet -dumpbase 980709-1.c -mmcu=atmega128
in „avr-libc: relocation truncated to fit“ · Mikrocontroller und Digitale Elektronik ·
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Datei
chips.xml
>YES</CALIB> <PLACEMENT>.\Images\Placements\ZIF_DIP_40.bmp</PLACEMENT> </CHIP> <CHIP> <NAME>ATmega168/ATmega168V/ATmega168A</NAME> <FLASH>16384</FLASH> <EEPROM>512</EEPROM> <SIG>0x0006941E</SIG> <PAGE>128</PAGE> <LFUSE layout="2">YES</LFUSE> <HFUSE layout="3">YES</HFUSE> <EFUSE layout="2">YES</EFUSE
in „extreme Burner AVR 1.4.3 + ATTiny Erweiterungen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
avrdude.pdf
AT90USB1286 usb1287 AT90USB1287 usb162 AT90USB162 usb646 AT90USB646 usb647 AT90USB647 usb82 AT90USB82 m103 ATmega103 m128 ATmega128 m1280 ATmega1280 m1281 ATmega1281 m1284p ATmega1284P Chapter 2: Command Line Options 5 m1284rfr2 ATmega1284RFR2 m128rfa1 ATmega128RFA1 m128rfr2 ATmega128RFR2 m16 ATmega16 m161 ATmega161
in „AVRDude als Tool in AVR Studio 4 einbinden“ · Mikrocontroller und Digitale Elektronik ·
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Datei
yaap.ini
=256 LockBits=XxxxxxBAx Fuses=xxGxMxLK ;*** [ATmega161] ProgramSize=16384 DataSize=512 Signature=0x9401 Algorithm=3 PageSize=128 LockBits=XxxFEDCBA Fuses=xH0FECBA ;*************************************************** [ATmega162] ProgramSize=16384 DataSize
in „Bitte Hilfe: Inbetriebnahme Mega8“ · Mikrocontroller und Digitale Elektronik ·
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Datei
doswrite3.c
64); strcpy_P(filename,PSTR("77.bin")); WriteTestFile(filename,buffer,77); strcpy_P(filename,PSTR("128.bin")); WriteTestFile(filename,buffer,128); #if defined (__AVR_ATmega644__) || defined (__AVR_ATmega128__) strcpy_P(filename,PSTR("MAX.bin")); WriteTestFile(filename,buffer,BUFFER_SIZE); #endif puts
in „ATmega32 + SD-Karte (Klabunde-Lib)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
NoToggle.txt
AT90S4414 AT90S4433 AT90S4434 AT90S8515 AT90S8515comp AT90S8535 AT90S8535comp AT90SCR100H ATA6289 ATmega103 ATmega103comp ATmega128 ATmega128A ATmega16 ATmega161 ATmega161comp ATmega162 ATmega163 ATmega16A ATmega32 ATmega323 ATmega32A ATmega64 ATmega64A ATmega64HVE ATmega8 ATmega8515 ATmega8535 ATmega8A
in „Welche AVR besitzen die PIN Toggle Fähigkeit?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc7593.pdf
back from the Stack, the Stack Pointer is incre- mented by two, and the I-bit in SREG is set. 18 ATmega32U6/AT90USB64/128 7593J–AVR–03/09 ATmega32U6/AT90USB64/128 5. AVR ATmega32U6/AT90USB64/128Memories This section describes the different memories in the ATmega32U6/AT90USB64/128. The AVR architecture
in „Problem mit dem TC4469“ · Mikrocontroller und Digitale Elektronik ·
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PDF
atmel-8393-mcu_wireless-atmega256rfr2-atmega128rfr2-atmega64rfr2_datasheet.pdf
process technology. Minimum and Maximum values will be available after the device is characterized. 2 ATmega256/128/64RFR2 8393C-MCU Wireless-09/14 ATmega256/128/64RFR2 3 Overview The ATmega256/128/64RFR2 is a low-power CMOS 8-bit microcontroller based on the AVR enhanced RISC architecture combined with a
in „AVR-Verlustleistung maximieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
benchmark.c
x_sin=0.9; // clear 256 single bytes // PIC18@10MIPS = // PIC24@40MIPS = 96.2µs // dsPIC@30MIPS = 128.26µs // ATMEGA@16MIPS = 641µs // LPC2103@60MIPS = 46.93µs pa8 = a; for (i=0; i<256; i++) { *pa8++=0; } // fill 256 single bytes // PIC18@10MIPS = // PIC24@40MIPS = // dsPIC@30MIPS = 128.26µs // ATMEGA
in „LPC2103 63MIPS?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schematic_Prints.pdf
) 43 29 PD4(ICP1) PG3(TOSC2) 18 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/TCK) K A P P P P P P
in „ATMega128 und AVR mkII - Resetproblem?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AVRootloader.asm
; copyright HR .nolist ; supported devices ;.include "can128def.inc" ; AT90CAN128 ;.include "can32def.inc" ; AT90CAN32 ;.include "can64def.inc" ; AT90CAN64 ;.include "m1280def.inc" ; ATmega1280 ;.include "m1281def.inc" ; ATmega1281 ;.include "m1284Pdef.inc" ; ATmega1284P ;.include "m128Adef.inc" ; ATmega128A ;.include "m128def.inc" ; ATmega128 ;.include "m161def.inc" ; ATmega161 ;.include "m162def.inc" ; ATmega162 ;.include "m163def.inc" ; ATmega163 ;.include
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Datei
AVRootloader.asm
; copyright HR .nolist ; supported devices ;.include "can128def.inc" ; AT90CAN128 ;.include "can32def.inc" ; AT90CAN32 ;.include "can64def.inc" ; AT90CAN64 ;.include "m1280def.inc" ; ATmega1280 ;.include "m1281def.inc" ; ATmega1281 ;.include "m1284Pdef.inc" ; ATmega1284P ;.include "m128Adef.inc" ; ATmega128A ;.include "m128def.inc" ; ATmega128 ;.include "m161def.inc" ; ATmega161 ;.include "m162def.inc" ; ATmega162 ;.include "m163def.inc" ; ATmega163 ;.include
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Datei
AVRootloader.asm
; copyright HR .nolist ; supported devices ;.include "can128def.inc" ; AT90CAN128 ;.include "can32def.inc" ; AT90CAN32 ;.include "can64def.inc" ; AT90CAN64 ;.include "m1280def.inc" ; ATmega1280 ;.include "m1281def.inc" ; ATmega1281 ;.include "m1284Pdef.inc" ; ATmega1284P ;.include "m128Adef.inc" ; ATmega128A ;.include "m128def.inc" ; ATmega128 ;.include "m161def.inc" ; ATmega161 ;.include "m162def.inc" ; ATmega162 ;.include "m163def.inc" ; ATmega163 ;.include
in „Bootloader von Hagen - Port toggeln während des Flashens“ · Mikrocontroller und Digitale Elektronik ·
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Datei
benchmark.c
dsPIC@30MIPS = 64.26µs // ATMEGA@16MIPS = 329µs // Z16F@20MIPS = 39.0µs // LPC2103@60MIPS = 23.47µs pa16 = (short*)a; for (i=0; i<128; i++) { *pa16++=0; } // fill 128 16bit words // PIC18@10MIPS = // PIC24@40MIPS = 48.20µs // dsPIC@30MIPS = 64.26µs // ATMEGA@16MIPS = 345µs // Z16F@20MIPS = 38.0µs // LPC2103@60MIPS = 27.73µs pa16 = (short*)a; for (i=0; i<128; i++) { *pa16++=0x2211; } // copy 128 16bit words // PIC18@10MIPS = // PIC24@40MIPS = 70.67µs //
in „LPC2103 63MIPS?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
kicad_8450_dcm_liste_neu_v3.pdf
, 128k Flash, 8k SRAM, 4k EEPROM, JTAG ATMEGA1281-16MU MLF/QFN64, 128k Flash, 8k SRAM, 4k EEPROM, JTAG ATMEGA1284-AU TQFP44, 128k Flash, 16k SRAM, 4k EEPROM, JTAG ATMEGA1284-MU VQFN44, 128k Flash, 16k SRAM
in „KiCAD Eeschema, Bibliotheksdokumentation *.dcm als PDF-Datei“ · Platinen ·
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PDF
ATMegaEvoBoard.pdf
ATMegaEvoBoard Entwicklungsboard für den ATMega128, ATMega64 oder AT90CAN128 Hattingen, 09.05.2005 (c) Mike Schaub RS232 Die auf dem ATMegaEvoBoard vorhandene RS232-Schnittstelle kann durch Setzen der beiden
in „AT90CAN128 Development board“ · Mikrocontroller und Digitale Elektronik ·
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Datei
benchmark.c
PIC24@40MIPS = 48.20µs // dsPIC@30MIPS = 64.26µs // ATMEGA@16MIPS = 329µs // Z8Enc!XP@20MIPS = 315.5µs // Z16F@20MIPS = 39.0µs // LPC2103@60MIPS = 23.47µs pa16 = (short*)a; for (i=0; i<128; i++) { *pa16++=0; } // fill 128 16bit words // PIC18@10MIPS = // PIC24@40MIPS = 48.20µs // dsPIC@30MIPS = 64.26µs // ATMEGA@16MIPS = 345µs // Z8Enc!XP@20MIPS = 314.5µs // Z16F@20MIPS = 38.0µs // LPC2103@60MIPS = 27.73µs pa16 = (short*)a; for (i=0; i<128; i++) { *pa16++=0x2211; } // copy 128 16bit words // PIC18@10MIPS =
in „LPC2103 63MIPS?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
benchmark.c
// PIC24@40MIPS = 48.20µs // dsPIC@30MIPS = 64.26µs // ATMEGA@20MIPS = 231.4µs // Z8Enc!XP@20MIPS = 315.5µs // Z16F@20MIPS = 39.0µs // LPC2103@60MIPS = 23.47µs pa16 = (short*)a; for (i=0; i<128; i++) { *pa16++=0; } // fill 128 16bit words // PIC18@10MIPS = // PIC24@40MIPS = 48.20µs // dsPIC@30MIPS = 64.26µs // ATMEGA@20MIPS = 244.2µs // Z8Enc!XP@20MIPS = 314.5µs // Z16F@20MIPS = 38.0µs // LPC2103@60MIPS = 27.73µs pa16 = (short*)a; for (i=0; i<128; i++) { *pa16++=0x2211; } // copy 128 16bit words // PIC18@10MIPS
in „LPC2103 63MIPS?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
benchmark.c
PIC24@40MIPS = 48.20µs // dsPIC@30MIPS = 64.26µs // ATMEGA@16MIPS = 329µs // Z8Enc!XP@20MIPS = 315.5µs // Z16F@20MIPS = 39.0µs // LPC2103@60MIPS = 23.47µs pa16 = (short*)a; for (i=0; i<128; i++) { *pa16++=0; } // fill 128 16bit words // PIC18@10MIPS = // PIC24@40MIPS = 48.20µs // dsPIC@30MIPS = 64.26µs // ATMEGA@16MIPS = 345µs // Z8Enc!XP@20MIPS = 314.5µs // Z16F@20MIPS = 38.0µs // LPC2103@60MIPS = 27.73µs pa16 = (short*)a; for (i=0; i<128; i++) { *pa16++=0x2211; } // copy 128 16bit words // PIC18@10MIPS =
in „ATMEL billiger und leistungsfähiger als PIC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
easytoweb_avr.pdf
Embedded Webserver Modul easy T o W eb -AVR mit AT mega 128 TM Der easyToWeb-AVR Embedded Webserver - eine leistungsfähige Lösung mit ATmega128™ und 10 Mbit-Ethernetcontroller CS8900A. easyToWeb-AVR Features • ATmega128 TM Microcontroller • 10 Mbit Ethernetcontroller
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Datei
device2007.txt
ATTINY11, ATTINY12, ATTINY15L, ATTINY26, ATTINY26L, ATTINY28L, ATTINY28V, ATTINY2313, ATTINY2313V, ATMEGA8, ATMEGA8L, ATMEGA16, ATMEGA16L, ATMEGA32, ATMEGA32L, ATMEGA8515, ATMEGA8515L, ATMEGA8535, ATMEGA8535L, ATMEGA48*PDIP28, ATMEGA88*PDIP28, ATMEGA168*PDIP28, ATMEGA48V*PDIP28, ATMEGA88V*PDIP28, ATMEGA168V*PDIP28, ATMEGA161, ATMEGA161L, ATMEGA162, ATMEGA162L, ATMEGA162V, ATMEGA162U, ATMEGA163, ATMEGA163L, AT90S2323, AT90LS2323, AT90S2343, AT90LS2343, ____MPU-DALLAS DS87C520, DS89C420, DS89C430, DS89C440, DS89C450,
in „24C04 beschreiben und auslesen“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Tabelle mit Mikrocontroller-Produkten und USB-Schnittstellen
Product Number of USB Modules USB Interface USB Active Clock Tuning ATmega128A4U 1 None No ATmega128A1U 1 None No ATmega128B1 1 None No ATmega32A4U 1 Full Speed No ATmega32C3 1 None No ATmega32C4 1 Full Speed No ATmega384C3 1 None No ATmega64A1U 1 None No ATmega8U2 1 Full Speed No ATmega16U2 1 Full Speed No ATMEGA16U4 1 Full Speed No ATmega128B3 1 None No ATMEGA32C1 1 None No ATMEGA64C1 1 None No ATMEGA165A 1 None No
in „AVRs mit USB?“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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Datei
augabe.txt
und Einstellungen\\Daniel\\Eigene Dateien\\Arduino\\libraries\\U8glib\\src\\clib\\u8g_dev_ssd1351_128x128.c" -o "C:\\DOKUME~1\\Daniel\\LOKALE~1\\Temp\\arduino_build_180034\\libraries\\U8glib\\clib\\u8g_dev_ssd1351_128x128.c.o" "C:\\Programme\\Arduino\\hardware\\tools\\avr/bin/avr-gcc" -c -g -Os -w -
in „Marlin auf anet e12“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVRMicrocontrollers_Peripheral_Integration.pdf
/160x/320x/480x 28–48 8–48 1–6 1.8–5.5 20 10 16 ü ü ü 4 3 ü 5 ü ü ü ü ü ü 4 1 1 ü ü ü 3 ü ATmega64A/128A 64 64–128 4 2.7–5.5 16 10 8 ü ü ü 2 6 2 2 ü ü ü ü 2 1 1 ü 6 ATmega164PA/324PA/644PA/1284P 44 16–128 1–16 1.8–5.5 20 10 8 ü ü ü 4 2/2/4 ü 2 1/1/2 ü ü ü ü 2 1 1 ü 6 ü ATmega165PA/325PA/645P 44
in „Nachfolger von Atmega169“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATT5FCA9.pdf
ATmega324P ATmega8515 ATtiny22 AT90S2333 ATmega128 STK501 ATmega325 STK502 ATmega8535 ATtiny2313 AT90S2343 ATmega1280 STK503 ATmega329 STK502 AT90CAN32 STK501 ATtiny2STK504 AT90S4414 ATmega1281 STK501 ATmega406
in „Angebot STK500+STK501+JTAGICE“ · Mikrocontroller und Digitale Elektronik ·
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PDF
as5installer_stable-5.0.1038-readme-1.pdf
Full Control AT90USB647 Full Control Full Full Control AT90USB82 Full Control Full Full Control ATmega128 Full Control Full Full Full Control ATmega1280 Full Control Full Full Control ATmega1281 Full Control Full Full Control ATmega1284 Full Control Full Full Full Control ATmega1284P Full Control Full Full Full Control ATmega128A Full Control Full Full Full Control ATmega128RFA1 Full Control Full Full Control ATmega16 Full Control Full Full Control ATmega162 Full Control Full Full Control 6 AVR Studio 5 AVR Studio 5 AVR
in „AVR-Studio 5“ · Mikrocontroller und Digitale Elektronik ·
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PDF
avr-libc-user-manual-1.8.0.pdf
- ATmega640, ATmega1280, ATmega1281, - _vect OW5 Overflow ATmega2560, ATmega2561 TWI_vect SIG_2WIRE_- 2-wire Serial AT90CAN128, AT90CAN32, AT90CAN64, - SERIAL Interface ATmega128, ATmega1284P, ATmega16, - ATmega163
in „Interrupt Probleme beim Arduino“ · Mikrocontroller und Digitale Elektronik ·
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Datei
log.txt
such file or directory makefile:342: disp.d: No such file or directory set -e; avr-gcc -MM -mmcu=atmega128 -I. -D GCC_MEGA_AVR -I. -I./FreeRTOS/include -g -Os -funsigned-char -funsigned-bitfields -fpack-struct -fshort-enums -Wall -Wextra -Wshadow -Wpointer-arith -Wbad-function-cast -Wcast-align -Wsign-compare
in „Reengineering: Siemens S65 Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR4100.pdf
crystal soldered directly to MCU by using pin extensions. Figure 4-5. 100-pin TQFP package (e.g ATmega6490, ATmega2560, ATxmega128A1) with narrow pin pitch is also possible to use, but requires a steady hand when soldering. 11 Atmel-8333E-AVR-03/2015 4.2 Negative resistance test and safety factor The
in „Passende Kondensatoren für Uhrenquarz gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UC-Liste-Schukat.pdf
ATMEGA16L- ISP-MC 2,7-5,5V 16K-Flash ▯ E 8,40 6,30 5,25 1 8MHz D 8PI ! ATMEGA16- ISP-MC 5V 16K-Flash 16MHz ▯ E 5,95 4,45 3,70 1 16AI TQFP44 ! ATMEGA16L- ISP-MC 2,7-5,5V 16K-Flash ▯ E 8,10 6,10 5,10 1 8MHz T 8AI ! ATMEGA103- ISP-MC 5V 128K-Flash 6MHz ▯ E 13,55 10,15 8,45 1 6AI TQFP64 ! ATMEGA128- ISP-MC 5V 128K-Flash ▯ E 14,25 10,65 8,85 1 16AI 16MHz TQFP6 ! ATMEGA128L- ISP-MC 2,7-5,5V 128K-Flash ▯ E 14,25 10,65 8,85
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PDF
UC-Liste-Schukat.pdf
ATMEGA16L- ISP-MC 2,7-5,5V 16K-Flash ▯ E 8,40 6,30 5,25 1 8MHz D 8PI ! ATMEGA16- ISP-MC 5V 16K-Flash 16MHz ▯ E 5,95 4,45 3,70 1 16AI TQFP44 ! ATMEGA16L- ISP-MC 2,7-5,5V 16K-Flash ▯ E 8,10 6,10 5,10 1 8MHz T 8AI ! ATMEGA103- ISP-MC 5V 128K-Flash 6MHz ▯ E 13,55 10,15 8,45 1 6AI TQFP64 ! ATMEGA128- ISP-MC 5V 128K-Flash ▯ E 14,25 10,65 8,85 1 16AI 16MHz TQFP6 ! ATMEGA128L- ISP-MC 2,7-5,5V 128K-Flash ▯ E 14,25 10,65 8,85
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PDF
WIZ-EmbeddedWebServser_User_Manual_V1_0_2.pdf
Power The power can be controlled by using power switch after connitg the DC 5V (500mA) adaptor. ② ATmega128 JTAG Connector © Copyright 2007 WIZnet Inc. All rights reserved WIZ-Embedded WebServer User’s Manual Figure 3. AVR JTAG Connector 12 ③ ATmega128 ISP Connector Figure 4. AVR ISP Connector ④ WIZ-Embedded
in „[V] Ethernet Webserver mit ATMEGA128 und 2x Ohne MCU“ · Markt ·
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PDF
STK200.pdf
8D ATmega103 AT90S2343 8D ATmega8 28D ATtiny13 8D ATmega128 AT90S2333 28D ATmega16 40A ATtiny15 8D AT90S4433 28D ATmega161 40D ATtiny22 8D AT90S4414 40D ATmega163 40A AT90S8515 40D ATmega8535 40A Order Code:
in „Wer kennt dieses AVR-Board?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stk500boot.c
BOOTLOADER_ADDRESS in Makefile if you want to change the size of the bootloader) */ #if defined (__AVR_ATmega8__) #define BOOTSIZE 512 #elif defined (__AVR_ATmega128__) || defined (__AVR_ATmega88__) || defined (__AVR_ATmega168__) || defined (__AVR_ATmega328__) || defined (__AVR_ATmega16__) #define BOOTSIZE
in „ATmega328p + stk500v2 (Peter ihm sein Bootloader), Flash bleibt leer“ · Mikrocontroller und Digitale Elektronik ·
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Datei
spi.c
Verdrahtung: ATMEGA128 -> ATMEGA32 PB0 -------> PB4 (/SS) PB1 -------> PB7 (SCK) PB2 -------> PB5 (MOSI) PB3 -------> PB6 (MISO) Sklave: ATMEGA32 //=====================================================================
in „SPI AT128 <-> AT32“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AVRootloader.asm
; copyright HR .nolist ; supported devices ;.include "can128def.inc" ; AT90CAN128 ;.include "can32def.inc" ; AT90CAN32 ;.include "can64def.inc" ; AT90CAN64 ;.include "m1280def.inc" ; ATmega1280 ;.include "m1281def.inc" ; ATmega1281 ;.include "m1284Pdef.inc" ; ATmega1284P ;.include "m128def.inc" ; ATmega128 ;.include "m161def.inc" ; ATmega161 ;.include "m162def.inc" ; ATmega162 ;.include "m163def.inc" ; ATmega163 ;.include "m164Pdef.inc" ; ATmega164P ;.include
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PDF
Dokumentation_MBHATM128-0206.pdf
ATmega128, kann es zur programmierbaren Ansteuerung/Regelung, in Verbindung mit elektrischen und elektronischen Baugruppen, die mit Kleinspannungen betrieben werden dienen. Für die direkte oder indirekte
in „atmega128 modul“ · Markt ·
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Datei
fehler.txt
dependencies for file: C:\Users\Judith\Documents\Arduino\libraries\U8glib\src\clib\u8g_dev_ssd1351_128x128.c Using cached library dependencies for file: C:\Users\Judith\Documents\Arduino\libraries\U8glib\src\clib\u8g_dev_ssd1353_160x128.c Using cached library dependencies for file: C:\Users\Judith\Documents
in „Marlin auf anet e12“ · Mikrocontroller und Digitale Elektronik ·
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Datei
asl_unterstuetzte_prozessoren.txt
ATTINY461A ATTINY828 ATTINY841 ATTINY861 ATTINY861A ATTINY1634 ATTINY2313 ATTINY2313A ATTINY4313 ATMEGA48 ATMEGA8 ATMEGA8515 ATMEGA8535 ATMEGA88 ATMEGA8U2 ATMEGA16 ATMEGA161 ATMEGA162 ATMEGA163 ATMEGA164 ATMEGA165 ATMEGA168 ATMEGA169 ATMEGA16U2 ATMEGA16U4 ATMEGA32 ATMEGA323 ATMEGA324 ATMEGA325 ATMEGA3250 ATMEGA328 ATMEGA329 ATMEGA3290 ATMEGA32U2 ATMEGA32U4 ATMEGA32U6 ATMEGA406 ATMEGA64 ATMEGA640 ATMEGA644 ATMEGA644RFR2 ATMEGA645 ATMEGA6450 ATMEGA649 ATMEGA6490 ATMEGA103 ATMEGA128 ATMEGA1280 ATMEGA1281 ATMEGA1284
in „gas as a68 m68k - was nimmt man ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ET-BASE_AVR_ATmega64-128_Schematic.pdf
PB7 PC0 1 2 PC1 3 4 PC2 3 4 PC3 C RESET RESET 5 6 PC0(A8) 35 PC0 PC4 5 6 PC5 C PB1 SCK 7 8 63 GND ATMEGA64/128 PC1(A9) 36 PC1 PC6 7 8 PC7 PE1 MISO 9 10 GND GND 0.1uF 0.1uF PC2(A10) 37 PC2 +5V 9 10 GND PC3(A11) 38 PC3 24 XTAL1 PC4(A12) 39 PC4 40 PORTD 22pF PC5(A13) 41 PC5 PC6(A14) 42 PC6 PD0 1 2 PD1 +5V
in „Programmierung mit AVRISP mkII klappt nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVRDUDE-doc-5.5.pdf
that you can enter the programming specifications. Currently, the following MCU types are understood: c128 AT90CAN128 pwm2 AT90PWM2 pwm3 AT90PWM3 1200 AT90S1200 2313 AT90S2313 2333 AT90S2333 2343 AT90S2343 (*) 4414 AT90S4414 4433 AT90S4433 4434 AT90S4434 8515 AT90S8515 8535 AT90S8535 m103 ATmega103 m128 ATmega128 m1280 ATmega1280 m1281 ATmega1281 m16 ATmega16 m161 ATmega161 m162 ATmega162 m163 ATmega163 m164 ATmega164 m169 ATmega169 m2560 ATmega2560 (**) m2561 ATmega2561 (**) m32 ATmega32 m324 ATmega324
in „USB-ISP PRogrammer unter Ubuntu“ · PC Hard- und Software ·
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PDF
ttester.pdf
ersetzt. 30 (a) zusammengebaut (b) mit abgenommenem Display Abbildung 2.24. Bestückter Bausatz mit 160x128 Pixel Farbdisplay Beide Bausätze verwenden einen gesockelte DIP Version des ATmega328P und haben keinen ISP Stecker für das Aufspielen neuer Softwareversionen. Die erste Version verwendet ausschließlich
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tm.patch
57.000000000 +0100 @@ -11,7 +11,8 @@ #warning "F_CPU wird auf 16Mhz gesetzt." #endif -#if defined(__AVR_ATmega48__) \ +#if defined(__AVR_ATmega8__) \ + || defined(__AVR_ATmega48__) \ || defined(__AVR_ATmega88__) \ || defined(__AVR_ATmega168__) \ || defined(__AVR_ATmega328__) \ @@ -20,7 +21,9 @@ #define PWM_PIN 1 //#define PWM_DDR DDRB //#define PWM_PIN 2 -#elif defined(__AVR_ATmega164__) \ +#elif defined(__AVR_ATmega16__) \ + || defined(__AVR_ATmega32__) \ + || defined(__AVR_ATmega164__) \ || defined(__AVR_ATmega324__) \ || defined(__AVR_ATmega644__) \ || defined(__AVR_ATmega1284
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PDF
m128lcpu.pdf
SPECIFICATIONS A high performance 8 bit-microcontroller with low power consumption. - ATmega64L/ATmega128L Family AVR® of Atmel® . RISC architecture - 133 powerful instructions, most of which execute in 1 cycle . Memories: - 64K/128K bytes FLASH EPROM for program: endurance 1000 cycles. -
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Datei
Warnings.txt
Build started 29.1.2008 at 20:13:00 avr-gcc.exe -I"D:\Projekte\Eingangssystem_01\Headerfiles" -mmcu=atmega128 -Wall -gdwarf-2 -O0 -fsigned-char -MD -MP -MT Eingangssystem_01.o -MF dep/Eingangssystem_01.o.d -c ../Eingangssystem_01.c ../Eingangssystem_01.c: In function 'main': ../Eingangssystem_01.c:187:
in „Fehlermeldung mit AVR Studio“ · Mikrocontroller und Digitale Elektronik ·