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Drei AVR64DU28 Mikrocontroller
AVR64DU28 2403DHU
in „AVRs mit USB?“ · Mikrocontroller und Digitale Elektronik · · Fotos
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Mikrocontroller AVR64EA28
AVR64EA28 2326URR
in „AVR64EA28: PIT-Interrupt“ · Mikrocontroller und Digitale Elektronik · · Fotos
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Software zur Mikrocontroller-Programmierung AVR64DD28
mEDBG (ATML2795042700001909) - Device Programming Tool: mEDBG Device: AVR64DD28 Interface: UPDI Target Voltage: 5,0 V Fuse Name: Value BODCFG.ACTIVE: BOD disabled BODCFG.LVL: 1.9V BODCFG.SAMPFREQ: Sample frequency is 128 Hz BODCFG.SLEEP: BOD disabled Fuses Fuse Register:
in „AVR64DD28, mEDBG, Studio 7.0 - Fehler beim Schreiben von Fuses“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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Ausschnitt aus einem Datenblatt zum AVR64EA28 Mikrocontroller
AVR64EA28.pdf (SECURED) - Adobe Reader 24.4.1.2 Configure RTC To operate the RTC, follow these steps: 1. Set the compare value in the Compare (RTC.CMP) register, and/or the overflow value in the Period
in „AVR64EA28: PIT-Interrupt“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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Mikrocontroller AVR64EA28 in DIP-Gehäuse
AVR64EA28 e3 223760D
in „AVR64EA28: PIT-Interrupt“ · Mikrocontroller und Digitale Elektronik · · Fotos
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Silicon Issue Summary Errata AVR64EA28/32/48
AVR64EA28_Errata.pdf - Adobe Reader Silicon Issue Summary Legend - Erratum is not applicable. X Erratum is applicable. Peripheral Short Description Valid for Silicon Revision Device Rev. B1(1) Rev. B2 NVMCTRL
in „AVR64EA28: PIT-Interrupt“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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Software-Screenshot zur AVR-Mikrocontroller-Programmierung
MCHP3372031800002110) - Device Programming Tool Device Interface Device signature Target Voltage nEDBG AVR64EA28 UPDI Apply 0x1E9620 3,3 V Read Interface settings Detected device AVR64EA28 Tool information Device name AVR64EA28 Tool settings Device signature 0x1E9620 Device information Revision b Device identifier AVR Memories NVM version 3 Fuses OCD version 1 Lock bits Startup oscillator frequency 3M2 Production file Metal revision B1 Datasheet information CPU AVR8X Flash size 64 KB EEPROM size 1 KB Reading device
in „AVR64EA28: PIT-Interrupt“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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Fehlermeldung Atmel AVR Studio TargetService
Error One or more registers differs Details Timestamp: 2024-06-02 16:25:54.849 Severity: ERROR ComponentId: 20000 StatusCode: 0 One or more registers differs Atmel.VsIde.AvrStudio.Services.TargetService.RegistersMismatchException: Close
in „AVR64DD28, mEDBG, Studio 7.0 - Fehler beim Schreiben von Fuses“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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Datei
io.h
.h> #elif defined (__AVR_AVR64DD14__) # include <avr/ioavr64dd14.h> #elif defined (__AVR_AVR64DD20__) # include <avr/ioavr64dd20.h> #elif defined (__AVR_AVR64DD28__) # include <avr/ioavr64dd28.h> #elif defined (__AVR_AVR64DD32__) # include <avr/ioavr64dd32.h> #elif defined (__AVR_AVR64DU28__) # include <avr/ioavr64du28.h> #elif defined (__AVR_AVR64DU32__) # include <avr/ioavr64du32.h> #elif defined (__AVR_AVR16EA28__) # include <avr/ioavr16ea28
in „direkt in ein Register des Tiny5 schreiben“ · Mikrocontroller und Digitale Elektronik ·
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Software-Fenster zur Mikrocontroller-Programmierung
ATML2795042700001909) - Device Programming Tool Device Interface Device signature Target Voltage mEDBG AVR64DD28 UPDI 0x1E961B 5,0 V Interface settings Detected device Device name AVR64DD28 Device signature 0x1E961B Revision T Device identifier AVR NVM version 2 OCD version 1 Startup oscillator frequency 3M2 Metal revision A3 Datasheet information CPU AVR8X Flash size 64 KB EEPROM size 512 bytes Reading device ID...OK Close
in „AVR64DD28, mEDBG, Studio 7.0 - Fehler beim Schreiben von Fuses“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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PDF
AVR128DA28_32_48_64.pdf
Horizontal migration to the left reduces the pin count, and therefore, the available features Figure 1. AVR-DA Family Overview Flash 128 KB AVR128DA28 AVR128DA32 AVR128DA48 AVR128DA64 64 KB AVR64DA28 AVR64DA32 AVR64DA48 AVR64DA64 32 KB AVR32DA28 AVR32DA32 AVR32DA48 Pins 28 32 48 64 Note: Marked devices are
in „AVR64EA28: PIT-Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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Microchip Packs Repository Webseite
Device Support (3.0.158) Download Microchip ATtiny Series Device Support (3.0.151) Download Microchip AVR-Dx Series Device Support (2.3.272) Download AVR128DA28 AVR128DA32 AVR128DA48 AVR128DA64 AVR128DB28 AVR128DB32 AVR128DB48 AVR128DB64 AVR16DD14 AVR16DD20 AVR16DD28 AVR16DD32 AVR32DA28 AVR32DA48 AVR32DB28 AVR32DB32 AVR32DB48 AVR32DD14 AVR32DD20 AVR32DD28 AVR32DD32 AVR64DA28 AVR64DA32 AVR64DA48 AVR64DA64 AVR64DB32 AVR64DB48 AVR64DB64 AVR64DD14 AVR64DD20 AVR64DD28 AVR64DD32 2.3.272 (2022-12-16) - MPLAB X600
in „AVR64DD20 - USART stürzt bei großem Buffer ab“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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AVR_Product_Update_November_2002.pdf
02 megaAVR ATmega32(L) Preliminary Summary 10/02 megaAVR ATmega32(L) Preliminary Complete 10/02 megaAVR ATmega64(L) Preliminary Summary 9/02 megaAVR ATmega64(L) Preliminary Complete 9/02 megaAVR ATmega128(L) Preliminary
in „Veraltete AVR's ?!“ · Mikrocontroller und Digitale Elektronik ·
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Vergleichstabelle von Mikrocontroller-Spezifikationen
MVI0 TCA TCB RTC ADC DAC OPAMP ZCUD UART SPI TWI EVYSY WDT VREF PTC USB AVR128DB64 AVR128DB48 AVR128DB32 AVR128DB28 AVR64DB64 AVR64DB48 AVR64DB32 AVR64DB28 AVR64DD32 AVR64DD28 AVR64DD20 AVR64DD14 AVR32DD32 AVR32DD28 AVR32DD20 AVR32DD14 AVR16DD32 AVR16DD28 AVR16DD20 AVR16DD14 AVR64EA48 AVR64EA32 AVR64EA28 AVR32EA48 AVR32EA28 AVR16EA48 AVR16EA32 AVR16EA28
in „Moderne AVR (Nachfolger Atmega und Attiny)“ · Mikrocontroller und Digitale Elektronik · · Diagramme
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PDF
AVR_Product_Update_M__03.pdf
megaAVR ATmega32(L) Preliminary Summary 10/02 megaAVR ATmega32(L) Preliminary Complete 10/02 megaAVR ATmega64(L) Preliminary Summary 9/02 megaAVR ATmega64(L) Preliminary Complete 9/02 megaAVR ATmega128(L) Preliminary
in „Atmel Familie“ · Mikrocontroller und Digitale Elektronik ·
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Ausschnitt aus einem Datenblatt von AVR Mikrocontrollern
AVR64DD28_32.pdf (SECURED) - Adobe Reader Memory Overview Table 1. Memory Overview AVR16DD14 AVR32DD14 AVR64DD14 AVR16DD20 AVR32DD20 AVR64DD20 AVR16DD28 AVR32DD28 AVR64DD28 AVR16DD32 AVR32DD32 AVR64DD32
in „AVR64DD20 - USART stürzt bei großem Buffer ab“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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PDF
AVR-DD-Product-Brief-DS40002215A-1.pdf
Horizontal migration to the left reduces the pin count and, therefore, the available features Figure 1. AVR DD Family Overview Flash 64 KB AVR64DD14 AVR64DD20 AVR64DD28 AVR64DD32 32 KB AVR32DD14 AVR32DD20 AVR32DD28 AVR32DD32 16 KB AVR16DD14 AVR16DD20 AVR16DD28 AVR16DD32 Pins 14 20 28 32 The name of a device
in „AVR-DD im Anrollen“ · Mikrocontroller und Digitale Elektronik ·
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Microchip Packs Repository Webseite
Series Device Support (2.0.401) Download Atmel ATtiny Series Device Support (2.0.368) Download Atmel AVR-Dx Series Device Support (2.2.253) Download AVR128DA48 AVR128DA32 AVR128DA48 AVR128DA64 AVR128DB28 AVR128DB32 AVR128DB48 AVR128DB64 AVR16DD14 AVR16DD20 AVR16DD28 AVR16DD32 AVR16DA32 AVR16DA48 AVR32DB28 AVR32DB32 AVR32DB48 AVR32DD14 AVR32DD20 AVR32DD28 AVR32DD32 AVR64DA28 AVR64DA32 AVR64DA48 AVR64DA64 AVR64DB28 AVR64DB32 AVR64DB48 AVR64DB64
in „AVR64DD20 - USART stürzt bei großem Buffer ab“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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Tabelle mit Mikrocontroller-Unterstützung und Funktionen
Device Name MPLABX AVR128DB64 AVR16DD14 AVR16DD20 AVR16DD28 AVR16DD32 AVR16DU14 AVR16DU20 AVR16DU28 AVR16DU32 AVR16EA28 AVR16EA32 AVR16EA48 AVR16EB14 AVR16EB20 AVR16EB28 AVR16EB32 AVR32DA28 AVR32DA32 AVR32DA48 AVR32DB28 AVR32DB32 AVR32DB48 AVR32DD14 AVR32DD20 AVR32DD28 AVR32DD32 AVR32DU14 AVR32DU20 AVR32DU28 AVR32DU32 AVR32EA28 AVR32EA32 AVR32EA48 AVR64DA28 AVR64DA32 AVR64DA48 AVR64A64 C Compiler Version
in „AVR64DD28, mEDBG, Studio 7.0 - Fehler beim Schreiben von Fuses“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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make_all.txt
-Wa,-adhlns=base64.lst -std=gnu99 base64.c \ | sed 's,\(.*\)\.o[ :]*,\1.o \1.d : ,g' > base64.d; \ [ -s base64.d ] || rm -f base64.d set -e; avr-gcc -MM -mmcu=atmega32 -I. -g -Os -funsigned-char -funsigned-bitfields -fpack-struct
in „C code automatisch in hexfile compilieren“ · Mikrocontroller und Digitale Elektronik ·
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Vergleichstabelle von AVR-Mikrocontrollern
AVR64DA32 AVR64DA48 AVR32DA28 AVR32DA32 AVR32DA48 AVR128DB28 AVR128DB32 AVR128DB48 AVR128DB64 AVR64DB28 AVR64DB32 AVR64DB48 AVR64DB64 AVR32DB28 AVR32DB32 AVR32DB48 AVR16DD14 AVR16DD20 AVR16DD28 AVR16DD32 AVR32DD14 Mvio TCA TCB RTC ADC DAC OPAMP ZCD USART SPI TWI EVSYS WDT BOD VREF PTC USB
in „Arduino Bibliotheken funktionieren nicht beim AVR128DB-Prozessor“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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Datei
AVRxt.asm
: 'AVR macro assembler 2.2.8 (build 80 Jan 14 2020 18:27:50)' */ .include "AVR64EA28def.inc" /* .include "AVR64EA28def.inc" .include "AVR16EB28def.inc" .include "AVR128DA28def.inc" */ .equ dir = VPORTA_DIR
in „AVR64EA28: PIT-Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
make-compilermeldungen.txt
-Wa,-adhlns=base64.lst -std=gnu99 base64.c \ | sed 's,\(.*\)\.o[ :]*,\1.o \1.d : ,g' > base64.d; \ [ -s base64.d ] || rm -f base64.d set -e; avr-gcc -MM -mmcu=atmega644 -I. -g -Os -funsigned-char -funsigned-bitfie lds
in „GCC: wie kompiliere ich ETH_M32EX von Ulrich Radig richtig?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
avr-typen.pdf
..5,5 2,7..5,5 4 12 2 8 nein ATmega32U4 32 3,3 1024 44sawn 44 CAN-fähige Typen AT90CAN32 32 2 1024 64sawn 64 AT90CAN64 64 16 53 8 1 1 2 8 10 1 nein 4 2048 ja 2,7..5,5 2,7..5,5 4 8 2 7 ja 64sawn 64 AT90CAN128 128 4 4096 64sawn 64 Alte mega-Serie ATmega8 3 1 28 32 32 ATmega8A 8 16 23 2 1 1 1 8 10 1 nein
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Tabelle zum Speicherzugriff bei LOCK.KEY Invalid Key
Table 8-6. Memory Access Locked (LOCK.KEY Invalid Key)(1) Memory Section CPU Access UPDI Access Read Write Read Write Flash Yes Yes No No SRAM Yes Yes No No EEPROM Yes Yes No No SIGROW Yes No No No USERROW Yes Yes No Yes(2) FUSE Yes No No No LOCK Yes No No No Registers Yes Yes No No
in „AVR64DD28, mEDBG, Studio 7.0 - Fehler beim Schreiben von Fuses“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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AVR32-64SD20-28-32-48-ProductBrief-DS40002417.pdf
Horizontal migration to the left reduces the pin count and, therefore, the available features Figure 1. AVR SD Family Overview Flash 64 KB AVR64SD28 AVR64SD32 AVR64SD48 32 KB AVR32SD20 AVR32SD28 AVR32SD32 Pins 20 28 32 48 The name of a device in the AVR SD Family is decoded as follows: Figure 2. AVR SD Device
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Microchip Studio Device Programming Fenster
AVR64DU28 - Microchip Studio File Edit View AssistX Project Build Debug Tools Window Help nEDBG (MCHP3372031800002110) - Device Programming Tool Device Interface Device signature Target Voltage nEDBG AVR64DU28 UPDI 0x1E9622 3,5 V Interface settings Device identifier AVR NVM version 4 OCD version 1 Startup oscillator frequency 3M2 Metal revision A3 Device information Memories Fuses Lock bits Production file Datasheet information AVR64DU28-SSOP/SDIP AVR64DU28-VQFN CPU
in „Verkauft microchipdirect unprogrammierbare AVR16EB28?“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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Microchip Studio Device Programming Fenster
AVR64DU28 - Microchip Studio File Edit View VassistX Project Build Debug Tools Window Help nEDBG (MCHP3372031800002110) - Device Programming Tool Device Interface Device signature Target Voltage nEDBG AVR64DU28
in „[S] Nachfolger für AVR Dragon: UPDI Programmer + Debugger für AVR 8-Bitter in MC Studio v7 gesucht“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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Build_started_28.10.2008_at_15_33_50.txt
-MD -MP -MT base64.o -MF dep/base64.o.d -c ../base64.c avr-gcc.exe -I"D:\www\atmel\webserver\Wil\avr-webserver101\avr-webserver\." -mmcu=atmega644p -Wall -gdwarf-2 -std=gnu99 -DF_CPU=14745600UL -Os -funsigned-char -funsigned-bitfields
in „AVR Studio: plugin-Error“ · Mikrocontroller und Digitale Elektronik ·
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avr.h
\ mmcu=atmega64*|\ mmcu=atmega128*|\ mmcu=at90can*|\ mmcu=at90usb*|\ mmcu=at94k:-m avr5}\ %{mmcu=atmega256*:-m avr6}\ %{mmcu=atmega324*|\ mmcu=atmega325|\ mmcu=atmega3250|\ mmcu=atmega329|\ mmcu=atmega3290|\ mmcu=atmega406
in „ATtiny24 - ISR wird nie gerufen __vectors> fehlt“ · Mikrocontroller und Digitale Elektronik ·
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Übersicht der AVR EA Familien-Mikrocontroller
Family Overview The figure below shows the AVR EA Family devices, laying out pin count variants and memory sizes: Vertical migration is possible without code modification, as these devices are fully pin and feature compatible Horizontal migration to the left reduces the pin count and, therefore, the available features Figure 1. AVR EA Family Overview Flash 64 KB AVR64EA28 AVR64EA32 AVR64EA48 32 KB AVR32EA28 AVR32EA32 AVR32EA48 16 KB AVR16EA28 AVR16EA32 AVR16EA48 Pins 28 32 48
in „Neuigkeiten vom Halbleiter- und Komponentenmarkt“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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Datei
dumpspecs1.txt
=attiny2313:-m avr2}%{mmcu=atmega103|mmcu=atmega603|mmcu=at43*|mmcu=at76*:-m avr3}%{mmcu=atmega8*|mmcu=atmega48:-m avr4}%{mmcu=atmega16*|mmcu=atmega32*|mmcu=atmega64*|mmcu=atmega128|mmcu=at90can128|mmcu=at94k:-m avr5}
in „ATtiny24 - ISR wird nie gerufen __vectors> fehlt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
link_mit_-v.txt
funsigned-bitfields -fpack-struct -fshort-enums -MD -MP -MT MPX4115A.o -MF dep/MPX4115A.o.d -c ../MPX4115A.c avr-gcc -mmcu=atmega644 -v -Wl,-Map=ETH_M32_EX.map wol.o analog.o base64.o cmd.o dhcpc.o dnsc.o http_get.o httpd.o lcd.o main.o ntp.o sendmail.o stack.o telnetd.o timer.o udp_lcd.o usart.o enc28j60.o servo.o
in „Fehler bei exp()“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Fehlermeldungen.txt
.o -MF dep/base64.o.d -c ../base64.c avr-gcc -I"C:\Dokumente und Einstellungen\erster\Eigene Dateien\ETH_M32EX\." -mmcu=atmega32 -Wall -gdwarf-2 -Os -std=gnu99 -funsigned-char -funsigned-bitfields -fpack-struct -fshort-enums
in „GCC: wie kompiliere ich ETH_M32EX von Ulrich Radig richtig?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AVRxt.asm
; SLdt 240502 PIT-Interrupt auf AVR64EA28 ; avrasm2 .include "AVR64EA28def.inc" /* .include "AVR128DA28def.inc" .include "AVR64EA28def.inc" .include "AVR16EB28def.inc" .include "AVR32DD28def.inc" .include "m4809def.inc" */ .equ DIR_LED
in „AVR64EA28: PIT-Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AVRxt.asm.txt
; SLdt 240502 PIT-Interrupt auf AVR64EA28 ; avrasm2 .include "AVR64EA28def.inc" /* .include "AVR128DA28def.inc" .include "AVR64EA28def.inc" .include "AVR16EB28def.inc" .include "AVR32DD28def.inc" .include "m4809def.inc" */ .equ DIR_LED
in „AVR64EA28: PIT-Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AVRxt.asm.txt
; SLdt 240502 PIT-Interrupt auf AVR64EA28 ; avrasm2 .include "AVR64EA28def.inc" /* .include "AVR128DA28def.inc" .include "AVR64EA28def.inc" .include "AVR16EB28def.inc" .include "AVR32DD28def.inc" .include "m4809def.inc" */ .equ DIR_LED
in „AVR64EA28: PIT-Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AVRxt.asm
; SLdt 2405021744 PIT-Interrupt auf AVR64EA28 ; avrasm2 .include "AVR64EA28def.inc" /* .include "AVR128DA28def.inc" .include "AVR64EA28def.inc" .include "AVR16EB28def.inc" .include "AVR32DD28def.inc" .include "m4809def.inc" */ .equ DIR_LED
in „AVR64EA28: PIT-Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AVRxt.asm
; SLdt 2405070930 Interrupt auf AVR64EA28 ; avrasm2 .include "AVR64EA28def.inc" /* f [kHz]: live TCA TCB .include "AVR128DA28def.inc" ; 666 31 31 .include "AVR64EA28def.inc" ; 550 0 0 .include "AVR16EB28def.inc" ; 555 * 26 *: hat keinen TCA .include "AVR32DD28def.inc" ; 667 31 31 */ .equ dir = VPORTA_DIR .equ toggle = VPORTA_IN .equ ISR_TCA = 5 .equ ISR_TCB = 6 .equ f_live = 7 .def tmpi = r4 .def tmp0 = r16 ;=============== .org 0 rjmp reset .org TCA0
in „AVR64EA28: PIT-Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AVRxt.asm
; SLdt 2405061640 PIT-Interrupt auf AVR64EA28 ; avrasm2 .include "AVR64EA28def.inc" /* .include "AVR128DA28def.inc" .include "AVR64EA28def.inc" .include "AVR16EB28def.inc" .include "AVR32DD28def.inc" .include "m4809def.inc" */ .equ DIR_LED
in „AVR64EA28: PIT-Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK200.pdf
ATmega32 9 7 5 3 1 ATmega323 ISPSupportonly-no 10 8 6 4 2 G G G G boardsupport: N N N N c D D D D ATmega64 Socket Support ATmega169 DEVICE SOCKET DEVICE SOCKET DEVICE SOCKET ISP supportonly- AT90S1200 20D ATmega48 28D ATtiny26 20A boardsupporton STK300: AT90S2313 20D ATmega88 28D ATtiny2313 20D AT90S2323
in „Wer kennt dieses AVR-Board?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
take1.lst
128,0,1,0 26 .stabs "float:t(0,12)=r(0,1);4;0;",128,0,1,0 27 .stabs "double:t(0,13)=r(0,1);4;0;",128,0,1,0 28 .stabs "long double:t(0,14)=r(0,1);4;0;",128,0,1,0 29 .stabs "void:t(0,15)=(0,15)",128,0,1,0 30 .stabs "/usr/lib/gcc/avr/4.3.4/../../../avr/include/stdint.h",130,0,0,0 31 .stabs "int8_t:t(1,1)=(0,10)
in „Byteweise mit Carry addieren?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AVRxt.asm
; SLdt 2405031200 PIT-Interrupt auf AVR64EA28 ; avrasm2 .include "m4809def.inc" /* .include "AVR128DA28def.inc" .include "AVR64EA28def.inc" .include "AVR16EB28def.inc" .include "AVR32DD28def.inc" .include "m4809def.inc" */ .equ DIR_LED =
in „AVR64EA28: PIT-Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mlib-gen-3.diff
/Makefile - avr/lib/avr5/atmega406/Makefile - avr/lib/avr5/atmega64rfr2/Makefile - avr/lib/avr5/atmega644rfr2/Makefile - avr/lib/avr5/atmega64/Makefile - avr/lib/avr5/atmega64a/Makefile - avr/lib/avr5/atmega640/Makefile
in „Fork: avr-libc version 3, für xtiny“ · Mikrocontroller und Digitale Elektronik ·
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Pinbelegung AVR128DA28/32/48/64 VQFN und TQFP
AVR128DA28/32-48-64 Er... 64-Pin VQFN and TQFP Pinout PA2 PA1 PG7 PC6 PG4 VDD GND PG3 PG1 UPD1 PF5 PF4 PF3 PF2 PF1 PF0 PE7 PE6 PE5 PE4 PE3 PE2 PE1 PE0 GND AVDD PD7 PD6 PD5 PD4 PD3 PD2 PD1 PC7 PC6 PC5 PC4
in „AVR128DA64 TCA1 funktioniert nicht mit alternativen Output?“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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Datei
x.txt
atxmega32a4 atxmega32a4u atxmega32c4 atxmega32d4 atxmega32e5 atxmega32x1 atxmega384c3 atxmega384d3 atxmega64a1 atxmega64a1u atxmega64a3 atxmega64a3u atxmega64a4u atxmega64b1 atxmega64b3 atxmega64c3 atxmega64d3 atxmega64d4 avr1 avr2 avr25 avr3 avr31 avr35 avr4 avr5 avr51 avr6 avrxmega2 avrxmega4 avrxmega5 avrxmega6
in „Eclipse (mars) und AVR -- Fehlermeldungen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Assembler_Manual.pdf
(3-bit) s: Bit in the Status Register (3-bit) X,Y,Z: Indirect Address Register (X=R27:R26, Y=R29:R28 and Z=R31:R30) A: I/O location address q: Displacement for direct addressing (6-bit) Rev. 0856J–AVR–07/2014 Instruction Set Manual_AVR_07/2014 1. I/O Registers 1.1 RAMPX, RAMPY, RAMPZ Registers concatenated
in „Zero Flag und Conditional Branches“ · Mikrocontroller und Digitale Elektronik ·
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INSTR_SET.pdf
otherwise. R (Result) equals Rd after the operation. Example: add r1,r2 ; Add r2 to r1 (r1=r1+r2) add r28,r28 ; Add r28 to itself (r28=r28+r28) Words: 1 (2 bytes) Cycles: 1 16 AVR Instruction Set 0856G–AVR–07/08 AVR Instruction Set ADIW – Add Immediate to Word Description: Adds an immediate value (0 - 63
in „Schritt für Schritt zum Programierer!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INSTR_SET.pdf
otherwise. R (Result) equals Rd after the operation. Example: add r1,r2 ; Add r2 to r1 (r1=r1+r2) add r28,r28 ; Add r28 to itself (r28=r28+r28) Words: 1 (2 bytes) Cycles: 1 16 AVR Instruction Set 0856G–AVR–07/08 AVR Instruction Set ADIW – Add Immediate to Word Description: Adds an immediate value (0 - 63
in „Maschinensprache für ATMEL“ · Mikrocontroller und Digitale Elektronik ·