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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 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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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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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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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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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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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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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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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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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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Datei
Kapazitaetstester_03.asm
(bei mul32 waren es 33 oder 0x21) mov dcnt64u, r28 ;wegen r15 (ldi nicht erlaubt) clr drem64u0 ;clear 4 lower remainde byte clr drem64u1 ; clr drem64u2 ; clr drem64u3 ; sub drem64u4,drem64u4;and carry d64u_loop: rol dd64u0 ;shift left dividend rol dd64u1 ; rol dd64u2 ; rol dd64u3 rol dd64u4 ; rol dd64u5 ; rol dd64u6 rol dd64u7 ; ; dec dcnt64u ;decrement loop counter breq Com64 ;if counter zero invert result rol drem64u0 ;shift dividend into remainder
in „Bitte um Codebeispiele“ · Mikrocontroller und Digitale Elektronik ·
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Software-Screenshot zur Programmierung eines AVR-Mikrocontrollers
ATML2795042700001909) - Device Programming Tool Device Interface Device signature Target Voltage mEDBG AVR64DD28 UPDI Apply 0x1E961B 5,0 V Read Interface settings Device Erase Chip Erase now Flash (64 KB) C:\Users\User\OneDrive\Documents\Atmel Studio\7.0\avr64dd28-test\avr64dd28-test\Debuc Erase Flash before
in „AVR64DD28, mEDBG, Studio 7.0 - Fehler beim Schreiben von Fuses“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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Datei
mg.asm
98,97,96,95,94,93,92,91,90,89,88,87,87,86,85,84 .db 83,82,82,81,80,79,78,78,77,76,75,75,74,73,72,72 .db 71,70,69,69,68,67,67,66,65,65,64,64,63,62,62,61 .db 60,60,59,59,58,57,57,56,56,55,55,54,54,53,53,52 .db 51,51,50,50,49,49,48,48,48,47,47,46,46,45,45,44 .db 44,43,43,43,42,42,41,40,40,39,39,38,38,37,37,36 .db 35,35,34,34,33,33,32,31,31,30,30,29,29,28,28,27
in „Sequencer Prinzip ELM - Wavetable Melody Generator (ASM)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avr910.asm
data memory | 'D'(0x44) | dd | | 13d | | ;* | Read data memory | 'd'(0x64) | | dd | | | ;* | Chip erase | 'e'(0x65) | | | 13d | | ;* | Write lock bits | 'l'(0x6c) | dd | | 13d | | ;* | Leave programming mode | 'L'(0x4c) | | | 13d
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Datei
avr910.asm
data memory | 'D'(0x44) | dd | | 13d | | ;* | Read data memory | 'd'(0x64) | | dd | | | ;* | Chip erase | 'e'(0x65) | | | 13d | | ;* | Write lock bits | 'l'(0x6c) | dd | | 13d | | ;* | Leave programming mode | 'L'(0x4c) | | | 13d
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Datei
symbolliste.txt
__DEC64_MIN__ 1E-383DD #define _AVR_LOCK_H_ 1 #define __WINT_TYPE__ unsigned int #define __UINT_LEAST32_TYPE__ long unsigned int #define __SIZEOF_SHORT__ 2 #define __ULLFRACT_IBIT__ 0 #define SCNu16 "u" #define
in „Prüfen ob -Werror gesetzt (Preprocessor)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avr910_2313_v38c.asm
data memory | 'D'(0x44) | dd | | 13d | | ;* | Read data memory | 'd'(0x64) | | dd | | | ;* | Chip erase | 'e'(0x65) | | | 13d | | ;* | Write lock bits | 'l'(0x6c) | dd | | 13d | | ;* | Leave programming mode | 'L'(0x4c) | | | 13d
in „Programmer incl. neuem Code für Atmel AN910“ · Projekte & Code ·
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PDF
CFAG12864BTFHV_v3.0.pdf
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - 28 APPENDIX C: NEOTEC NT7107C 64 CHANNEL COMMON DRIVER SPECIFICATIONS - - - - - - - - - - - 32 APPENDIX D: NEOTEC NT7108C 64 CHANNEL SEGMENT DRIVER SPECIFICATIONS Crystalfontz America, Inc. CFAG12864B-TFH-V
in „avr asm LCD Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
910.asm
memory | 'D'(0x44) | dd | | 13d | | ;* | Read data memory | 'd'(0x64) | | dd | | | ;* | Chip erase | 'e'(0x65) | | | 13d | | ;* | Write lock bits | 'l'(0x6c) | dd | | 13d | | ;* | Write fuse bits | 'f'(0x66) | dd | | 13d |
in „avr910 programmer“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ISP_Programmer_avr910.asm
| 'V' | |dd dd | | 9 | ;* | Return hardware version | 'v' | |dd dd | | 9 | ;* | Return programmer type | 'p' | | dd | | 10 | ;* | Set LED | 'x' | dd | | 13d | 12 | ;* | Clear LED | 'y' | dd | | 13d | 12 | ;* | Universial
in „RS232 <--> RS485“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AVR910-m8.txt
| 'V' | |dd dd | | 9 | ;* | Return hardware version | 'v' | |dd dd | | 9 | ;* | Return programmer type | 'p' | | dd | | 10 | ;* | Set LED | 'x' | dd | | 13d | 12 | ;* | Clear LED | 'y' | dd | | 13d | 12 | ;* | Universial
in „Wer wandelt ASM ---> Hex ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ISP_AVR910.ASM.txt
| 'V' | |dd dd | | 9 | ;* | Return hardware version | 'v' | |dd dd | | 9 | ;* | Return programmer type | 'p' | | dd | | 10 | ;* | Set LED | 'x' | dd | | 13d | 12 | ;* | Clear LED | 'y' | dd | | 13d | 12 | ;* | Universial
in „ISP Adapter für Atmel über RS232“ · Mikrocontroller und Digitale Elektronik ·
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Datei
at90isp_ver23.asm
| 'V' | |dd dd | | 9 | ;* | Return hardware version | 'v' | |dd dd | | 9 | ;* | Return programmer type | 'p' | | dd | | 10 | ;* | Set LED | 'x' | dd | | 13d | 12 | ;* | Clear LED | 'y' | dd | | 13d | 12 | ;* | Universial
in „avr910 Pins Kurzschluss“ · 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
Packages.txt
1X09 5 02P 4 -XXX0603 4 -XXR0805 4 W237-4 4 V234/12 4 TO92N 4 TO92-ECB 4 TO252 4 SOD87-2 4 SOD80C 4 SO28W 4 SO-18W 4 SMS-0 4 SMD 4 SMCC12 4 SIL10 4 SHK20L 4 SFT1030 4 SDBMF-009XXBXX2 4 SC08 4 SA52-11 4 SA39 4 S64Y 4 S64W 4 S05K275 4 R2K5B2 4 PN87520 4 PICOFUSE 4 P642 4 P2-38-17 4 P1-10 4 MOUNT_HOLE_5MM5
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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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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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
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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Datei
stk500_at90s1200_mega8535.asm
| 'V' | |dd dd | | 9 | ;* | Return hardware version | 'v' | |dd dd | | 9 | ;* | Return programmer type | 'p' | | dd | | 10 | ;* | Set LED | 'x' | dd | | 13d | 12 | ;* | Clear LED | 'y' | dd | | 13d | 12 | ;* | Universial command | ':' | 3*dd | dd | 13d | | ;* | New universal command | '.' | 4*dd | dd | 13d | | ;* | Special test command | 'Z' | 2*dd | dd | | | ;* +-----------------------------------+-----+-------+------+-----+------+ ;* ;
in „STK500 defekter Prozessor“ · Mikrocontroller und Digitale Elektronik ·
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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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Datei
AVR910.ASM
| dd | | | ;* | Chip erase | 'e' | | | 13d | | ;* | Write lock bits | 'l' | dd | | 13d | | ;* | Write fuse bits | 'f' | dd | | 13d | 11 | ;* | Read fuse and lock bits | 'F' | | dd | | 11 | ;* | Leave programming
in „AVRProg von Atmel und AT90S2313“ · Mikrocontroller und Digitale Elektronik ·
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Datei
prog.asm
; Baudrate .equ tn12 = 0x55 .equ tn15 = 0x56 .equ S1200D = 0x13 .equ S2313A = 0x20 .equ S4414A = 0x28 .equ S8515A = 0x38 .equ S2323A = 0x48 .equ S2343A = 0x4C .equ S2333A = 0x34 .equ S4433A = 0x30 .equ S4434 = 0x6C .equ S8535 = 0x68 .equ m83 = 0x65 .equ m161 = 0x60 .equ m163 = 0x64 .equ m603 = 0x42 .
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Datei
foo.dwarf-3.txt
ULLACCUM_MIN__ 0.0ULLK" .LASF812: .string "PRIoLEAST16 \"o\"" .LASF676: .string "countlsk __builtin_avr_countlsk" .LASF179: .string "__DEC64_EPSILON__ 1E-15DD" .LASF914: .string "stderr (__iob[2])" .LASF1297: .string "FOC2B 6" .LASF1126: .string "MONDR _SFR_IO8 (0x31)" .LASF875: .string "SCNxLEAST16 \
in „Simple C Frage zum Typ enum“ · Mikrocontroller und Digitale Elektronik ·
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Datei
webpage_V1.3.h
Schaltanweisungen -------------------------------------------------------- --> "<br><hr><p>PORTB -> ENC28J60<br>PORTC -> LCDisplay</p>\r\n" "Webserver von Ulrich Radig " SoftVers "<br>\r\n" "Compiliert am "__DATE__" um "__TIME__" mit GCC Version "__VERSION__"<br>\r\n" ""RoBueVers" für AVR-NET-IO\r\n" "</
in „AVR für wenig Geld im LAN“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GCC_Tut_Test.pdf
Make▯les (1.6). D:\tmp\gcc_tut\quickstart>dir Verzeichnis von D:\tmp\gcc_tut\quickstart 6 KAPITEL 1. AVR-GCC-TUTORIAL 28.11.2006 22:53 <DIR> . 28.11.2006 22:53 <DIR> .. 28.11.2006 20:06 118 main.c 28.11.2006 20:03 16.810 Makefile 2 Datei(en) 16.928 Bytes Nun gibt man make all ein. Falls das mit WinAVR
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Datei
cc-fft-out.txt
with-system-zlib --enable-long-long --enable-nls --without-included-gettext --disable-libssp --build=x86_64-linux-gnu --host=x86_64-linux-gnu --target=avr CFLAGS='-g -O2 -fdebug-prefix-map=/tmp/buildd/gcc-avr-4.9.2+Atmel3.5.3=. -fstack-protector-strong -Wformat ' CPPFLAGS='-Wdate-time -D_FORTIFY_SOURCE=2'
in „STM32 Arduino“ · Mikrocontroller und Digitale Elektronik ·
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Datei
iom128.h
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. */ #ifndef __IOM128 #define __IOM128 1 #define AVR_MEGA 1 #define AVR_ENHANCED 1 /* * Predefined SFR Addresses. * NOTE: These addresses will be either DATA MEMORY or I/O MEMORY addresses, * depending on how you define __SFR_OFFSET (0x0 for I/O, 0x20
in „AVRGCC und neue Megas?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
iom128.h
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. */ #ifndef __IOM128 #define __IOM128 1 #define AVR_MEGA 1 #define AVR_ENHANCED 1 /* * Predefined SFR Addresses. * NOTE: These addresses will be either DATA MEMORY or I/O MEMORY addresses, * depending on how you define __SFR_OFFSET (0x0 for I/O, 0x20
in „Problem mit Mega128 USART“ · Mikrocontroller und Digitale Elektronik ·
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PDF
8-bit-MCU-Overview.pdf
4-32 0.5-3 128 1.8-5.5 20 12 15 6x 12 8 6 2 1 3 AVR-DA Family 28-64 32-128 4–16 512 1.8–5.5 24 12 22 10 -3 16 16 1 5 3–6 1–2 3 AVR-DD Family 14-32 16–64 2–8 256 1.8–5.5 24 12 23 10 1 16 9 1 3 2 1 3 AVR-EA Family 28-48 16-64 2-6 512 1.8-5.5 20 12 28 6x 12 10 6 3 1 3 Speciality Families ATmega8U2/16U2/32U2 32 8–32 0.5–1 2.7–5.5 16 – – 4 6
in „Moderne AVR (Nachfolger Atmega und Attiny)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
8-bit-MCU-Overview.pdf
4-32 0.5-3 128 1.8-5.5 20 12 15 6x 12 8 6 2 1 3 AVR-DA Family 28-64 32-128 4–16 512 1.8–5.5 24 12 22 10 -3 16 16 1 5 3–6 1–2 3 AVR-DD Family 14-32 16–64 2–8 256 1.8–5.5 24 12 23 10 1 16 9 1 3 2 1 3 AVR-EA Family 28-48 16-64 2-6 512 1.8-5.5 20 12 28 6x 12 10 6 3 1 3 Speciality Families ATmega8U2/16U2/32U2 32 8–32 0.5–1 2.7–5.5 16 – – 4 6
in „AVR®DD family, low pin count devices“ · Mikrocontroller und Digitale Elektronik ·
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PDF
8-bit-MCU-Overview.pdf
4-32 0.5-3 128 1.8-5.5 20 12 15 6x 12 8 6 2 1 3 AVR-DA Family 28-64 32-128 4–16 512 1.8–5.5 24 12 22 10 -3 16 16 1 5 3–6 1–2 3 AVR-DD Family 14-32 16–64 2–8 256 1.8–5.5 24 12 23 10 1 16 9 1 3 2 1 3 AVR-EA Family 28-48 16-64 2-6 512 1.8-5.5 20 12 28 6x 12 10 6 3 1 3 Speciality Families ATmega8U2/16U2/32U2 32 8–32 0.5–1 2.7–5.5 16 – – 4 6
in „AVR®DD family, low pin count devices“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.lst
main.bin: file format elf32-avr Disassembly of section .text: 00000000 <__vectors>: 0: 19 c0 rjmp .+50 ; 0x34 <__ctors_end> 2: 20 c0 rjmp .+64 ; 0x44 <__bad_interrupt> 4: 1f c0 rjmp .+62 ; 0x44 <__bad_interrupt> 6: 1e c0 rjmp .+60
in „Attiny412 - String über USART“ · Mikrocontroller und Digitale Elektronik ·
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Datei
tft_data.c
0x28, 0x28, 0x28, 0x28, 0x28, 0xff, 0xc0, 0x0, 0x11, 0x8, 0x0, 0x64, 0x0, 0x64, 0x3, 0x1, 0x22, 0x0, 0x2, 0x11, 0x1, 0x3, 0x11, 0x1, 0xff, 0xc4, 0x0, 0x1c, 0x0, 0x1, 0x0, 0x3, 0x0, 0x3, 0x1, 0x1, 0x0, 0x0
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Datei
main.asm
;[-12] 78e8: 6f 93 push r22 ; [---] ;[-11] lds YL, usbInputBufOffset;[-10] 78ea: c0 91 81 00 lds r28, 0x0081 ; [---] ;[-9] clr YH ;[-8] 78ee: dd 27 eor r29, r29 subi YL, lo8(-(usbRxBuf));[-7] [rx loop init] 78f0: c8 57 subi r28, 0x78 ; 120 sbci YH, hi8(-(usbRxBuf));[-6] [rx loop init] 78f2: df 4f sbci
in „ATMEGA32 Minimum System Board“ · Mikrocontroller und Digitale Elektronik ·