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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
in „AVR64EA28: PIT-Interrupt“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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Mikrocontroller AVR64EA28
AVR64EA28 2326URR
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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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 .equ toggle = VPORTA_IN .equ ISR_TCB = 6 .equ f_live = 7 .def tmpi = r4 .def
in „AVR64EA28: PIT-Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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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 (RTC.PER
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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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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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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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
in „AVR64EA28: PIT-Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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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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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 = VPORTA_DIR
in „AVR64EA28: PIT-Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AVRxt.asm
.include "AVR64EA28def.inc" ;.include "AVR128DA28def.inc" ;.include "AVR64EA28def.inc" ;.include "AVR16EB28def.inc" ;.include "AVR32DD28def.inc" ;.include "m4809def.inc" .equ DIR_LED = VPORTA_DIR .equ IN_LED = VPORTA_IN
in „AVR64EA28: PIT-Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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Übersicht der AVR EA Familien-Mikrocontroller
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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Schaltplan einer Li-Ion Akku-Ladestation mit AVR-Mikrocontroller
-DOUT, PD0-AIN, PC2-DOUT, PC3-DOUT, PD3-DIN, ICLED green, PD4-DIN, ICLED red, Li-Charger Modul, AVR64EA28, PA3-DIN, PA0, PA2-DIN, PA4, PA5-DIN, PA1-DIN, PAT-DIN, PA6-DIN, PD1-DOUT, PD2-DOUT, PD5-DIN, 81K, 33u, 100n, 470, green/orange, START/STOPP
in „Li-Akku Reihenschaltung einzeln nacheinander laden (Switch-Control) Asm@AVR64EA28“ · Projekte & Code · · Schaltpläne
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Schaltplan eines Li-Ionen-Batterie-Ladegeräts mit AVR-Mikrocontroller
5VDC GND PC1DOUT PD0-AIN PC2-DOUT PC3-DOUT ICLED green PD3-DIN ICLED red PD4-DIN Li-Charger Modul AVR64EA28 PC0-DOUT PA3-DIN PA0-IN PA2-DIN PA2-DOUT PA6-DIN PA1-DIN PA5-DIN GND VDD PD1-DOUT PD2-DOUT PD5-DIN 81K 33u 100n 470 green/orange START/STOPP 81K
in „Li-Akku Reihenschaltung einzeln nacheinander laden (Switch-Control) Asm@AVR64EA28“ · Projekte & Code · · Schaltpläne
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Vergleichstabelle von Mikrocontroller-Spezifikationen
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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L4xCH.txt
======================================= .EQU VERTAG = 27 .EQU VERMON = 2 .EQU VERJHR = 24 ;CPU: AVR64EA28 @ Fuse 16 MHz ;PORT-Alloc: DA0/IPU: REL4K0- DC0/OUT1: RELAY1 ; DA1/IPU: REL3K0- DC1/OUT1: RELAY2 ; DA2/IPU: REL2K0- DC2/OUT1: RELAY3 ; DA3/IPU: REL1K0- DC3/OUT1: RELAY4 ; DA4/IPD: REL1K0+ RPD ; DA5
in „Li-Akku Reihenschaltung einzeln nacheinander laden (Switch-Control) Asm@AVR64EA28“ · Projekte & Code ·
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io.h
ioavr32ea32.h> #elif defined (__AVR_AVR32EA48__) # include <avr/ioavr32ea48.h> #elif defined (__AVR_AVR64EA28__) # include <avr/ioavr64ea28.h> #elif defined (__AVR_AVR64EA32__) # include <avr/ioavr64ea32.h> #elif defined (__AVR_AVR64EA48__) # include <avr/ioavr64ea48.h> #elif defined (__AVR_DEV_LIB_NAME_
in „direkt in ein Register des Tiny5 schreiben“ · Mikrocontroller und Digitale Elektronik ·