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Datei
x.txt
attiny461 attiny461a attiny48 attiny84 attiny84a attiny85 attiny861 attiny861a attiny87 attiny88 atxmega128a1 atxmega128a1u atxmega128a3 atxmega128a3u atxmega128a4u atxmega128b1 atxmega128b3 atxmega128c3 atxmega128d3 atxmega128d4 atxmega16a4 atxmega16a4u atxmega16c4 atxmega16d4 atxmega16x1 atxmega192a3
in „Eclipse (mars) und AVR -- Fehlermeldungen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mlib-gen-3.diff
(atxmega128b1) -AM_CONDITIONAL(HAS_atxmega128b1, test "x$HAS_atxmega128b1" = "xyes") - -CHECK_AVR_DEVICE(atxmega128b3) -AM_CONDITIONAL(HAS_atxmega128b3, test "x$HAS_atxmega128b3" = "xyes") - -CHECK_AVR_DEVICE(atxmega128c3) -AM_CONDITIONAL(HAS_atxmega128c3, test "x$HAS_atxmega128c3" = "xyes") - -CHECK_AVR_DEVICE(atxmega128d3) -AM_CONDITIONAL(HAS_atxmega128d3, test "x$HAS_atxmega128d3" = "xyes") - -CHECK_AVR_DEVICE
in „Fork: avr-libc version 3, für xtiny“ · Mikrocontroller und Digitale Elektronik ·
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Datei
io.h
# include <avr/iox128a1u.h> #elif defined (__AVR_ATxmega128A4U__) # include <avr/iox128a4u.h> #elif defined (__AVR_ATxmega128A3__) # include <avr/iox128a3.h> #elif defined (__AVR_ATxmega128A3U__) # include <avr/iox128a3u.h> #elif defined (__AVR_ATxmega128B1__) # include <avr/iox128b1.h> #elif defined (__AVR_ATxmega128B3__) # include <avr/iox128b3.h> #elif defined (__AVR_ATxmega128C3__) # include <avr/iox128c3.h> #elif defined (__AVR_ATxmega128D3
in „direkt in ein Register des Tiny5 schreiben“ · Mikrocontroller und Digitale Elektronik ·
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Datei
verlinkung.txt
# ATtiny84A + * ATtiny85 + - ATtiny861 + - ATtiny861A - - ATtiny87 + * ATtiny88 + * ATtiny9 + - ATxmega128A1 - - ATxmega128A1U + - ATxmega128A3 - - ATxmega128A3U - - ATxmega128A4U - - ATxmega128B1 - - ATxmega128B3 - - ATxmega128C3 + - ATxmega128D3 + - ATxmega128D4 + * ATxmega16A4 - # ATxmega16A4U -
in „MC PIC - Warum diese Ungleichbehandlung?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
NoToggle.txt
ATtiny15 ATtiny1634 ATtiny20 ATtiny22 ATtiny26 ATtiny28 ATtiny4 ATtiny40 ATtiny5 ATtiny9 ATxmega128A1 ATxmega128A3 ATxmega128A3U ATxmega128D3 ATxmega16A4 ATxmega16A4U ATxmega16D4 ATxmega192A3 ATxmega192A3U ATxmega192D3 ATxmega256A3 ATxmega256A3B ATxmega256A3BU ATxmega256A3U ATxmega256D3 ATxmega32A4 ATxmega32A4U ATxmega32D4 ATxmega64A1 ATxmega64A3 ATxmega64A3U ATxmega64D3 06.08.2016 13:08:32
in „Welche AVR besitzen die PIN Toggle Fähigkeit?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XMEGA-1.pdf
8 T/C 5 USART 88 USART 8 USART 2 SPIRT 4 SPIIT 4 SPIRT 3 TWI 2 TWII 4 TWI Ext Bus Interface 384K ATxmega384A11 256K ATxmega256A33 ATxmega256A11 ATxmega128A4 ATxmega128A3 ATxmega128A1 128K ATxmega128A4 ATxmega128A3 ATxmega128A1 64K ATxmega64A44 ATxmega64A3 ATxmega64A1 32K ATxmega32A44 16K ATxmega16A44
in „Einladung: XMEGA AVR - Vortrag der Firma Atmel“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Atmel_AVR1916__USB_DFU_Boot_Loader_for_XMEGA.pdf
• Atmel ATxmega128A3U • Atmel ATxmega128C3 • Atmel ATxmega64A3U • Atmel ATxmega64C3 • Atmel ATxmega32A4U • Atmel ATxmega32C4 • Atmel ATxmega16A4U • Atmel ATxmega16C4 • Atmel ATxmega128B1 3. Related items • Atmel
in „Bootloader für ATXmega“ · Mikrocontroller und Digitale Elektronik ·
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PDF
avr8-gnu-toolchain-3.4.0.663-readme.pdf
Toolchain AVR 8-bit GNU Toolchain atmega16u4 atmega32u4 at90scr100 at90usb646 at90usb647 at94k m3000 atmega128a atmega1280 atmega1281 atmega1284 atmega1284p atmega128rfa1 at90can128 at90usb1287 atmega2560 atmega2561 atxmega16a4 atxmega16a4u atxmega16d4 atxmega32a4 atxmega32a4u atxmega32d4 atxmega32x1 atxmega64a3 atxmega64a3u atxmega64d3 atxmega64a1u atxmega64a4u atxmega64b1 atxmega64b3 atxmega64c3 atxmega128a3 atxmega128a3u atxmega128b1 atxmega128b3 atxmega128d3 atxmega128d4 atxmega192a3 atxmega192a3u atxmega192c3
in „ATtiny10 ISR TIM0_COMPB_vect“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc8107.pdf
AVR1900: Getting started with ATxmega128A1 on STK600 8-bit 1 Introduction Microcontrollers This document contains information about how to get started with the ATxmega128A1 on STK 600. ® The first three sections contain info®mation ®bout
in „STK 600 und AVR Studio - Welche µC kann ich damit programmieren?“ · Mikrocontroller und Digitale Elektronik ·
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Bild
3D-Modell einer bestückten Leiterplatte
encoder, ATmega 288AI, 4/23, USB B, opt, 12V, low active, commercial use not allowed
in „Besteht Interesse an einfacher Experimentierplatine fuer den Xmega128a1?“ · Mikrocontroller und Digitale Elektronik · · Layouts
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PDF
atxmega128_board.pdf
41R PORTA PORTB PORTC PORTD PORTE PORTF 7 E 6 1 _R C30 R R I T5 T2 T3 JP_CD+ 32 1 23R 3 JP_RGB 8 31R43R T1 3 C 1 U I 2 Q14R C 9 r a C 4 04R 3 I 2 1 c c C21 33R Q C 3 5 8 6 7 93R R25 SW2 2 1 DARL_OUT 3 3 3 3 RGB Q 3 R R R R G JP_PDI A C29 I02R 1 JP_ENC 4 3SW_RST JP_IRL J C 2 R 5 JP_TSOP P 2 A R 51R I 2 1 J C _ 2 JP_CS JP_SPI_C D P 1 4 0 JP_VIN JP_TWI_C P J Q 3 2 J 32 2 1 C C JP_VCC 4 C C C C25 JP_DARL JP_DACOUT 1 C 1R C24 L1 62C C17 11C FT_BUSLINES 51C 5C 21C C23 2 JP_LED 01C 7C 22C I 8 LEDPWR 4C R JP_FT232 1 TQFP 100 I P IC7 R 1 2 3 4 5 6 7 8 6C 9E 2 B 91C 13C E E DE E E E E E 1_ C U L L L L L
in „Besteht Interesse an einfacher Experimentierplatine fuer den Xmega128a1?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ATXMEGA128A.c
/*Header Dateien Einbinden*/ #include <avr/io.h> #include <avr/interrupt.h> /*Funktionen für Bitmanipulation*/ /*Schreibweise sbi(PORTA.OUT,0); */ /*Schreibweise bis(PORTA.IN,0); */ /*OUT*/ #define sbi(ADDRESS,BIT) ADDRESS |= (1<<BIT) // set Bit #define cbi(ADDRESS,BIT) ADDRESS &= ~(1<<BIT) // clear Bit #define toggle(ADDRESS,BIT) ADDRESS ^= (1<<BIT) // Bit umschalten /*IN*/ #define bis(ADDRESS,BIT) ADDRESS & (1<<BIT) // bit is set? #define bic(ADDRESS,BIT) !(ADDRESS & (1<<BIT)) // bit is clear? /*Funktionen deklarieren*/ void port_config(void); void reg_init(void); void clock_init(void); //void
in „XMEGA LCD Initialisieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Preview_of__io.h_.pdf
defined (__AVR_ATxmega64D3__) # include <avr/iox64d3.h> #elif defined (__AVR_ATxmega128A1__) # include <avr/iox128a1.h> #elif defined (__AVR_ATxmega128A1U__) # include <avr/iox128a1u.h> #elif defined (__AVR_ATxmega128A3__) # include <avr/iox128a3.h> #elif defined (__AVR_ATxmega128D3__) # include <avr/iox128d3.h> #elif defined (__AVR_ATxmega192A3__) # include <avr/iox192a3.h> #elif defined (__AVR_ATxmega192D3__) # include <avr/iox192d3.h> #
in „µC am Mac mit C programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
avrdude.pdf
ATtiny45 t461 ATtiny461 t5 ATtiny5 t84 ATtiny84 t85 ATtiny85 t861 ATtiny861 t88 ATtiny88 t9 ATtiny9 x128a1 ATxmega128A1 x128a1d ATxmega128A1revD x128a3 ATxmega128A3 x128a4 ATxmega128A4 x128d4 ATxmega128D4 x16a4 ATxmega16A4 x16d4 ATxmega16D4 x192a1 ATxmega192A1 x192a3 ATxmega192A3 x256a1 ATxmega256A1 x256a3
in „AVRDude als Tool in AVR Studio 4 einbinden“ · Mikrocontroller und Digitale Elektronik ·
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Datei
releasenotes414rc1.txt
RC1 ================================ STK600 and JTAGICE mkII in AVR Studio 4.14 RC1 support only ATxmega128A1 revision D. The final release will have full support for ATxmega128A1 and ATxmega64A1 in STK600 and JTAGICE mkII. The release candidate do not support XMEGA in the JTAGICE mkII command line application. AVR Simulator 2 has full support for ATxmega128A1 and ATxmega64A1 in RC1. Note that code that is written for ATxmega128A1 revision D might need modifications to run on the production revision of the device. Bug Fixes ========= The following
in „Honeywell Rondostat HR20E per AVR steuern und konfigurieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AVRootloader.asm
AT90S8515 ;.include "8535def.inc" ; AT90S8535 ;.include "AT86RF401def.inc" ; AT86RF401 ;.include "ATxmega128A1def.inc" ; ATxmega128A1 ;.include "ATxmega128A3def.inc" ; ATxmega128A3 ;.include "ATxmega256A3Bdef.inc" ; ATxmega256A3B ;.include "ATxmega256A3def.inc" ; ATxmega256A3 ;.include "ATxmega16A4def.inc" ; ATxmega16A4 ;.include "ATxmega32A4def.inc" ; ATxmega32A4 ;.include "ATxmega64A1def.inc" ; ATxmega64A1 ;.include "ATxmega64A3def.inc" ; ATxmega64A3 ;.include "m103def.inc" ; ATmega103 ;.include "tn10def.inc
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Datei
AVRootloader.asm
AT90S8515 ;.include "8535def.inc" ; AT90S8535 ;.include "AT86RF401def.inc" ; AT86RF401 ;.include "ATxmega128A1def.inc" ; ATxmega128A1 ;.include "ATxmega128A3def.inc" ; ATxmega128A3 ;.include "ATxmega256A3Bdef.inc" ; ATxmega256A3B ;.include "ATxmega256A3def.inc" ; ATxmega256A3 ;.include "ATxmega16A4def.inc" ; ATxmega16A4 ;.include "ATxmega32A4def.inc" ; ATxmega32A4 ;.include "ATxmega64A1def.inc" ; ATxmega64A1 ;.include "ATxmega64A3def.inc" ; ATxmega64A3 ;.include "m103def.inc" ; ATmega103 ;.include "tn10def.inc
in „Bootloader von Hagen - Port toggeln während des Flashens“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR4100.pdf
X32K_1v8 TinyAVR ATtiny461A X32K_1v8 TinyAVR ATtiny84 X32K_1v8 TinyAVR ATtiny861A X32K_1v8 XMEGA ATxmega128A1 X32K_XMEGA XMEGA ATxmega128A3 X32K_XMEGA 22 AVR4100 Atmel-8333E-AVR-03/2015 AVR4100 Device Family Device Oscillator module XMEGA ATxmega128A4 X32K_XMEGA XMEGA ATxmega128B1 X32K_XMEGA XMEGA ATxmega128B3 X32K_XMEGA XMEGA ATxmega128D3 X32K_XMEGA XMEGA ATxmega128D4 X32K_XMEGA XMEGA ATxmega16A4 X32K_XMEGA XMEGA ATxmega16D4 X32K_XMEGA XMEGA ATxmega192A1 X32K_XMEGA XMEGA ATxmega192A3 X32K_XMEGA XMEGA ATxmega192D3 X32K_XMEGA XMEGA
in „Passende Kondensatoren für Uhrenquarz gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATxMEGA_128_Board_2.pdf
ATxMEGA 128 Board 2 Inhalt Funktionsübersicht.................................................................................................................................. 2 ATxMEGA128 - Funktionen...
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PDF
ATxMEGA_128_Board_3.pdf
ATxMEGA 128 Board 3 Inhalt Funktionsübersicht.....................................................................................................................2 ATxMEGA128 - Funktionen.................
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Datei
AVRootloader.asm
ATmega1284P ;.include "m128Adef.inc" ; ATmega128A ;.include "m128def.inc" ; ATmega128 ;.include "m161def.inc" ; ATmega161 ;.include "m162def.inc" ; ATmega162 ;.include "m163def.inc" ; ATmega163 ;.include "m164Pdef.inc" ; ATmega164P
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PDF
as5installer_stable-5.0.1038-readme-1.pdf
Full Control AVR Xmega Series AVR Dragon AVRISP mkII AVR ONE! JTAGICE mkII QT600 Simulator STK600 ATxmega128A1 Full Control Full Full Full Full Control ATxmega128A3 Full Control Full Full Full Control ATxmega128D3 Full Control Full Full Full Control ATxmega16A4 Full Control Full Full Full Control ATxmega16D4
in „AVR-Studio 5“ · Mikrocontroller und Digitale Elektronik ·
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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 ·
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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 ·
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Datei
output.txt
Wall -c -std=gnu99 -MD -MP -MF "eeprom_driver.d" -MT"eeprom_driver.d" -MT"eeprom_driver.o" -mmcu=atxmega128a1 -o"eeprom_driver.o" ".././eeprom_driver.c" Finished building: .././eeprom_driver.c Building file: .././PID_Reglerkarte.c Invoking: AVR/GNU C Compiler : (AVR_8_bit_GNU_Toolchain_3.4.1_830) 4.6.2
in „strtoul führt zu Kompilerfehler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AVR-Studio_4.19.txt
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 4.19: * ATtiny24 / ATtiny24A * ATtiny44
in „AT90S2312 und Atmel Studio 6 ?“ · Mikrocontroller und Digitale Elektronik ·
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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 ·
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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 ·
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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 ·
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PDF
AVR-Studio_4.19_Release_Notes.pdf
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: See a list of all supported devices
in „Plugins für AVR-Studio 4 Was“ · Mikrocontroller und Digitale Elektronik ·
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PDF
xmega_a1.pdf
- 3.6V 100C1 ATxmega128A1-CU 128K + 8K 2 KB 8 KB 32 1.6 - 3.6V ATxmega64A1-CU 64K + 4K 2 KB 4 KB 32 1.6 - 3.6V ATxmega128A1-C7U 128K + 8K 2 KB 8 KB 32 1.6 - 3.6V 100C2 ATxmega64A1-C7U 64K + 4K 2 KB 4 KB 32 1.6 - 3.6V
in „Welchen Wert hat der Pull-up-Widerstand dieses XMega?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
kicad_8450_dcm_liste_neu_v3.pdf
, JTAG, USB ATXMEGA128A4-AU TQFP44, 128k Flash, 8k Boot, 8k SRAM, 2k EEPROM, JTAG ATXMEGA128A4-MH VQFN44, 128k Flash, 8k Boot, 8k SRAM, 2k EEPROM, JTAG ATXMEGA128A4U-AU TQFP44, 128k Flash, 8k Boot, 2k SRAM, 1k EEPROM, JTAG, USB ATXMEGA128A4U-MH QFN44, 128k Flash, 8k Boot, 8k SRAM, 2k EEPROM, JTAG, USB ATXMEGA128B1-AU TQFP100, 128k Flash, 8k Boot, 8k SRAM, 2k EEPROM, JTAG, USB, LCD ATXMEGA128B3-AU TQFP64, 128k Flash, 8k Boot, 8k
in „KiCAD Eeschema, Bibliotheksdokumentation *.dcm als PDF-Datei“ · Platinen ·
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Datei
AVRrescue.c
ATmega1284 {0x1E, 0x97, 0x42, 00, 00, 00}, // ATxmega128A3 {0x1E, 0x97, 0x44, 00, 00, 00}, // ATxmega192A3 {0x1E, 0x97, 0x48, 00, 00, 00}, // ATxmega128D3 {0x1E, 0x97, 0x49, 00, 00, 00}, // ATxmega192D3 {0x1E, 0x97, 0x4C, 00, 00, 00}, // ATxmega128A1 {0x1E, 0x97, 0x81, 0x62, 0x99, 0xFF}, // AT90CAN128 {0x1E, 0x98, 0x01, 0x42, 0x99, 0xFF}, // ATmega2560 {0x1E, 0x98, 0x02, 0x42, 0x99, 0xFF}, // ATmega2561 {0x1E, 0x98, 0x42, 00, 00, 00}, // ATxmega256A3 {0x1E, 0x98, 0x43, 00, 00, 00}, // ATxmega256A3B
in „AVR-Rescue: standalone Parallel HV-Programmer“ · Projekte & Code ·
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PDF
atxmega128_board-sch1.pdf
3V3 3V3 1N4004 SW_1 SW_2 SW_3 SW_4 D2 D 3301 3301 3301 3301 G R S 3 1 3 1 3 1 3 1 B1 W 1 4 2 4 2 4 2 4 2 P 2 0 1 XIN-1 D P 2 2 I5 2 I 2 I 2 I 2I9 2 I1 2 I 2 I GND RECTIFIER-DIL C31 + C17 C15 L K R 1 1 1 1 1 1 1 1 11R 1 1 1 1 1 1 GND GND XIN-2 80 7 0 6 0 5 0 40 30 2 0 1 0 GND W237-102 470u 100n 220u 100n D- D - D - D - D- D- D - D - 1 0 L K L K L K L K L K L K L K L K SW_5 SW_6 SW_7 SW_8 R 1 3301 3301 3301 3301 3 1 3 1 3 1 3 1 GND 4 2 4 2 4 2 4 2 JP_LED 3V3 3V3 3V3 1 2 3 4 GND GND GND GND JP_PDI 5 6 1 2 7 8 JP_SW 3 4 JP_VIN JP_VCC 9 10 1 2 5 6 1 1 C20 3 4 JP_JTAG 2 2 5 6 VREF VCC 4 7 100n 7 8 SRST
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PDF
atxmega128_board-sch2.pdf
3V3 U$43 PH0 1 2 PH1 IC3A +8V PK0 23 A0 DQ0-4/1-8 5 PJ0 0 3 0 3 PH2 3 4 PH3 PB2 3 PK1 24 A1 DQ1-4/3-8 11 PJ1 1 R 1 R PH4 5 6 PH5 1 PK2 25 A2 DQ2-4/4-8 44 PJ2 PH6 7 8 CLK IC5 2 PK3 26 A3 DQ3-4/6-8 50 PJ3 k 7 k 9 PJ0 9 10 PJ1 JP_DARL 1 I1 O1 18 1 LM358N PK4 29 1 3 1 3 11 12 PJ3 1 2 2 17 2 8 30 A4 2 R R PJ2 13 14 3 4 3 I2 O2 16 3 47k PK5 31 A5 DQ0-8 8 PJ4 15 16 PJ5 5 6 4 I3 O3 15 4 +C29 PK6 32 A6 DQ2-8 47 PJ6 17 18 PJ7 7 8 5 I4 O4 14 5 E R24 PK7 33 A7 DQ5-8 53 PK0 19 20 PK1 9 10 6 I5 O5 13 6 S 47u PJ4 A8 DQ7-8 3V3 PK2 PK3 I6 O6 2 k JP_DAC1 4 PJ5 34 A9 3V3 PK4 21 22 PK5 7 I7 O7 12 7 R50 A PJ6 22 A10
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PDF
atxmega128_board-sch1.pdf
3V3 3V3 1N4004 D2 SW_1 SW_2 SW_3 SW_4 D 3301 3301 3301 3301 G R 2 3 1 3 1 3 1 3 1 B1 W 1 4 2 4 2 4 2 4 2 XIN-1 P 2 0 0 0 0 0 0 0 0 1 0 E P 2 2 I5 2 I 2 I 2 I 2I9 2 I1 2 I 2 I GND RECTIFIER-DIL C31 + C17 C15 L K R 1 1 1 1 1 1 1 1 11R 1 1 1 1 1 1 GND GND XIN-2 82 7 2 6 2 5 2 42 32 2 2 1 2 GND W237-102 470u 100n 220u 100n D- D - D - D - D- D- D - D - 1 8 L K L K L K L K L K L K L K L K SW_5 SW_6 SW_7 SW_8 R 1 3301 3301 3301 3301 3 1 3 1 3 1 3 1 GND 4 2 4 2 4 2 4 2 JP_LED 3V3 3V3 3V3 1 2 3 4 GND GND GND GND JP_PDI 5 6 1 2 7 8 JP_SW 3 4 JP_VIN JP_VCC 9 10 1 2 5 6 1 1 C20 3 4 JP_JTAG 2 2 5 6 VREF 4
in „ATxmega-Experimentierplatine in Gold/Schwarz ab 12.04.10 eventuell Bausatz“ · Markt ·
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atxmega128_board-sch2.pdf
3V3 U$43 PH0 1 2 PH1 IC3A +8V PK0 23 A0 DQ0-4/1-8 5 PJ0 0 3 0 3 PH2 3 4 PH3 PB2 3 PK1 24 A1 DQ1-4/3-8 11 PJ1 1 R 1 R PH4 5 6 PH5 1 PK2 25 A2 DQ2-4/4-8 44 PJ2 PH6 7 8 CLK IC5 2 PK3 26 A3 DQ3-4/6-8 50 PJ3 k 7 k 9 PJ0 9 10 PJ1 JP_DARL 1 I1 O1 18 1 LM358N PK4 29 A4 1 3 1 3 11 12 PJ3 1 2 2 I2 17 2 8 30 2 R R PJ2 13 14 3 4 3 O2 16 3 47k PK5 31 A5 DQ0-8 8 PJ4 15 16 PJ5 5 6 4 I3 O3 15 4 +C29 PK6 32 A6 DQ2-8 47 PJ6 17 18 PJ7 7 8 5 I4 O4 14 5 E R24 PK7 33 A7 DQ5-8 53 PK0 19 20 PK1 9 10 6 I5 O5 13 6 S 47u PJ4 A8 DQ7-8 3V3 PK2 PK3 I6 O6 2 k JP_DAC1 4 PJ5 34 A9 3V3 PK4 21 22 PK5 7 I7 O7 12 7 R50 A PJ6 22 A10
in „ATxmega-Experimentierplatine in Gold/Schwarz ab 12.04.10 eventuell Bausatz“ · Markt ·
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AVRMicrocontrollers_Peripheral_Integration.pdf
ü ü ü ü ü ATmega3250PA/6450P 100 32–64 2–4 1.8–5.5 20 10 8 2 2 2 1 1 1 1 5 AVR-DA Family 28-64 32-128 4–16 1.8–5.5 24 12 12 ü 10 ü ü 1-3 9–17 3–6 ü 1 1–5 ü ü ü ü ü ü 3–6 1–2 2 ü ü ü ü ü 3 ü ATxmega A1U/A3U/A4U Family 44-100 16–128 2–8 1.6–3.6 32 12 12/16 ü ü 12 ü ü 5-8 ü ü ü 5-8 ü ü ü ü ü ü 5-8 ü 2-4 2-4 ü ü ü 4 ü 5 ü ATxmega B1/B3 Family 64–100 64–128 4–8 1.6–3.6 32 12 8 ü ü ü ü 2/3 ü ü ü 2/3 ü ü ü ü ü ü 1/2 ü 1 1 ü ü ü ü 2 ü 5 ü ATxmega C3/D3/C4/D4 Family 44-64 16–384 2–32 1.6–3.6 32 12 12/16 ü ü ü ü 4/5 ü ü ü 4/5 ü
in „Nachfolger von Atmega169“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TWI.h
----------------------------- # # -------- Definitionen/Prototypen zur TWI-Kommunikation mit dem ATxmega128A1 als Master ----------- # # Target: hD2_ATxmega128A1 # Compiler: GCC version 4.3.2 unter WinAVR-20090313 # Bearbeiter: E. Münz 08/2009 # # Beschreibung: -Funktionen zur TWI-Kommunikation mit dem ATxmega128A1 als Master # # Hinweise: -keine ##################################################################################################*/ #ifndef TWI_h #define TWI_h #ifndef F_CPU #define F_CPU 8000000UL
in „TWI I2C Xmega“ · Mikrocontroller und Digitale Elektronik ·
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xMegaTeile.pdf
TAN.100/6,3 Reichelt 1 220 R-EU_R0603 R16 CSD 1 220n C-EUC1206 C4 CSD 1 220p C-EUC0603 C10 CSD 1 ATXMEGA128 ATXMEGA128 IC1 ATXMEGA128A1-AU CSD 1 ENC28J60 ENC28J60 IC3 30363 CSD 1 ES2D SS24 D1 Digikey 1 FT232RL FT232RL IC5 3021 CSD 1 L5973D L5973D IC2 Digikey 1 MAX3232 MAX232 IC4 MAX 3232 CSE Reichelt
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xMegaTeile.pdf
22n C-EUC0603 C6 CSD 1 100p C-EUC0603 C13 CSD 1 100n C-EUC1206 C4 CSD 1 220p C-EUC0603 C10 CSD 1 ATXMEGA128 ATXMEGA128 IC1 ATXMEGA128A1-AUCSD 1 ENC28J60 ENC28J60 IC3 30363 CSD 1 ES2D SS24 D1 CSD 1 FT232RL FT232RL IC5 3021 CSD MICROSD_SF- 1 MICROSD MICROSD_SF-MICROSD SDSLOT 20195 CSD 1 L5973D L5973D IC2
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xMegaTeile.pdf
TAN.100/6,3 Reichelt 1 220 R-EU_R0603 R16 CSD 1 220n C-EUC1206 C4 CSD 1 220p C-EUC0603 C10 CSD 1 ATXMEGA128 ATXMEGA128 IC1 ATXMEGA128A1-AU CSD 1 ENC28J60 ENC28J60 IC3 30363 CSD 1 ES2D SS24 D1 Digikey 1 FT232RL FT232RL IC5 3021 CSD 1 L5973D L5973D IC2 Digikey 1 MAX3232 MAX232 IC4 MAX 3232 CSE Reichelt
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TeileListe.pdf
C16 CSD 115-06N100 2 150 R-EU_R0603 R6, R7 CSD 10-060150 2 270 R-EU_R0603 R4, R5 CSD 10-060270 1 ATXMEGA128A3 ATXMEGA128A3 IC3 Reichelt ATXMEGA 192A3-AU 1 FT232RL FT232RL IC2 CSD 3021 1 IRLML6401 IRLML6401 T1 CSD 13763 1 MICROSD_SWITCH MICROSD_SWITCH U$1 CSD 020195 1 TS1117CM3.3 LM1117SOT223 IC1 CSD
in „ATxMega Stick“ · Markt ·
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TeileListe.pdf
R7, R8 CSD 10-060150 2 270 R-EU_R0603 R3, R4 CSD 10-060270 1 470n C-EUC0603 C3 CSD 115-06N470 1 ATXMEGA128A3 ATXMEGA128A3 IC3 DigiKey ATXMEGA192A3-AU-ND 1 MCP2200SOIC20 MCP2200SOIC20 IC2 DigiKey MCP2200-I/SO-ND 1 MICROSD_SWITCH MICROSD_SWITCH U$1 CSD 020195 1 TS1117CM3.3 V_REG_LM1117SOT223IC1 CSD 223
in „ATxMega Stick“ · Markt ·
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TeileListe.pdf
R-EU_R0603 R3, R4 CSD 10-060270 0,04 € 0,08 € 1 470n C-EUC0603 C3 CSD 115-06N470 0,04 € 0,04 € 1 ATXMEGA128A3 ATXMEGA128A3 IC3 DigiKey ATXMEGA192A3-AU-ND 6,03 € 6,03 € 1 MCP2200SOIC20 MCP2200SOIC20 IC2 DigiKey MCP2200-I/SO-ND 1,62 € 1,62 € 1 MICROSD_SWITCH MICROSD_SWITCH U$1 CSD 020195 2,10 € 2,10 €
in „ATxMega Stick“ · Markt ·
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Datei
Arduino_wdt.h
will be as large as three times when operating at Vcc = 3 V, while the newer devices (e. g. ATmega128, ATmega8) only experience a negligible change. Possible timeout values are: 15 ms, 30 ms, 60 ms, 120 ms, 250 ms, 500 ms, 1 s, 2 s. (Some devices also allow for 4 s and 8 s.) Symbolic constants are formed
in „aktuelle AVR µC - wdt.h - kein RAMPD / CTRL / Enable Bit“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TWI.c
------------------------------------------ # # -------- Funktionen zur TWI-Kommunikation mit dem ATxmega128A1 als Master ----------------------- # # Target: hD2_ATxmega128A1 # Compiler: GCC version 4.3.2 unter WinAVR-20090313 # Bearbeiter: E. Münz 08/2009 # # Beschreibung: -Funktionen zur TWI-Kommunikation mit dem ATxmega128A1 als Master unter den # Bedingungen der hD2 # # Hinweise: -Die Funktionen sind auf die Hardware der hD2 optimiert. Es ist nicht zu empfehlen # diese Bibliothek auf eine andere Hardware zu portieren
in „TWI I2C Xmega“ · Mikrocontroller und Digitale Elektronik ·
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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" ;
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CrumbX128A1_V1.0_infosheet.pdf
CrumbX128A1 V1.0 Infosheet CrumbX128A1-1.0 OEM module with USB, RS485, SD-Card based on Atmel's AVR ATxmega128A1 processor. AVAILABLE PROCESSOR OPTIONS Module Processor RAM EEPROM Flash Peripherals CrumbX128A1 V1.0 ATxmega128A1 8kB SRAM 2kB EEPROM 128kB Flash - CP2102 USB-UART converter - mini USB B 5pin connector - MAX3362 3.3V RS485 transceiver - status LED and tiny reset button VOLTAGE REGULATOR A 3.3V LDO voltage
in „[V] LCD Display, xMega128 mit USB, AM/FM Radio Empfänger“ · Markt ·
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TeileListe.pdf
Menge Wert Device Bauteile 5 10-XX S1, S2, S3, S4, S5 1 ATXMEGA128 ATXMEGA128 IC1 1 220p C-EUC0603 C10 1 100p C-EUC0603 C13 1 22n C-EUC0603 C6 2 15p C-EUC0603 C21, C22 3 10n C-EUC0603 C17, C27, C33 4 22p C-EUC0603 C2, C3, C11, C12 C1, C8, C14, C15, C18, C19, C23