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PDF
AVR_Product_Update_M__03.pdf
Complete 11/01 AVR AT90S/LS8535 Rev. D Errata 9/01 AVR AT90S/LS8535 Rev. E Errata 11/01 AVR AT90S8515Summary 9/01 AVR AT90S8515 Complete 9/01 AVR AT90S8515 Rev. B Errata 9/01 AVR AT90S8515 Rev. C Errata 9/01 megaAVR ATmega8(L) Preliminary Summary 2/03 megaAVR ATmega8(L) Preliminary Complete 2/03 megaAVR ATmega8515(L) Preliminary Summary 2/03 megaAVR ATmega8515(L) Preliminary Complete 2/03 megaAVR ATmega8535(L) Advance Information Summary 9/02 megaAVR ATmega8535(L) Advance Information (Complete) 9/02 megaAVR
in „Atmel Familie“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR_Product_Update_November_2002.pdf
Complete 11/01 AVR AT90S/LS8535 Rev. D Errata 9/01 AVR AT90S/LS8535 Rev. E Errata 11/01 AVR AT90S8515Summary 9/01 AVR AT90S8515 Complete 9/01 AVR AT90S8515 Rev. B Errata 9/01 AVR AT90S8515 Rev. C Errata 9/01 MegaAVR ATmega8(L) Preliminary Summary 9/02 megaAVR ATmega8(L) Preliminary Complete 9/02 megaAVR ATmega8515(L) Preliminary Summary 9/02 megaAVR ATmega8515(L) Preliminary Complete 9/02 megaAVR ATmega8535(L) Advance Information Summary 9/02 megaAVR ATmega8535(L) Advance Information (Complete) 9/02 megaAVR
in „Veraltete AVR's ?!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UC-Liste-Schukat.pdf
4PI 4MHz D ! ATMEGA323- ISP-MC 5V 32K-Flash 8MHz ▯ E 9,15 6,85 5,70 1 8AI TQFP44 ! ATMEGA323L- ISP-MC 2,7-5,5V 32K-Flash ▯ E 13,55 10,15 8,45 1 4AI 4MHz T ! ATMEGA8515- ISP-MC 5V 8K-Flash 16MHz ▯ E 6,85 5,15 4,30 100 16PI DIP40 ! ATMEGA8515L-ISP-MC 2,7-5,5V 8K-Flash ▯ E 7,05 5,25 4,35 100 8PI 8MHz DI ! ATMEGA8515- ISP-MC 5V 8K-Flash 16MHz ▯ E 6,25 4,65 3,85 108 16JI PLCC44 ! ATMEGA8515L-ISP-MC 2,7-5,5V 8K-Flash ▯ E 8,15 6,15 5,15
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PDF
UC-Liste-Schukat.pdf
4PI 4MHz D ! ATMEGA323- ISP-MC 5V 32K-Flash 8MHz ▯ E 9,15 6,85 5,70 1 8AI TQFP44 ! ATMEGA323L- ISP-MC 2,7-5,5V 32K-Flash ▯ E 13,55 10,15 8,45 1 4AI 4MHz T ! ATMEGA8515- ISP-MC 5V 8K-Flash 16MHz ▯ E 6,85 5,15 4,30 100 16PI DIP40 ! ATMEGA8515L-ISP-MC 2,7-5,5V 8K-Flash ▯ E 7,05 5,25 4,35 100 8PI 8MHz DI ! ATMEGA8515- ISP-MC 5V 8K-Flash 16MHz ▯ E 6,25 4,65 3,85 108 16JI PLCC44 ! ATMEGA8515L-ISP-MC 2,7-5,5V 8K-Flash ▯ E 8,15 6,15 5,15
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Datei
yaap.ini
AT90S2323 Dev7=AT90S2333 Dev8=AT90S2343 Dev9=AT90S4414 Dev10=AT90S4433 Dev11=AT90S4434 Dev12=AT90S8515 Dev13=AT90S8535 Dev14=ATmega103 Dev15=ATmega103_Old Dev16=ATmega161 Dev17=ATmega162 Dev18=ATmega163 Dev19=ATtiny26L Dev20=ATmega8515 Dev21=ATmega32 Dev22=ATmega8 [Fuses] A=CKSEL0 B=CKSEL1 C=CKSEL2 D
in „Bitte Hilfe: Inbetriebnahme Mega8“ · Mikrocontroller und Digitale Elektronik ·
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Datei
yaap.ini
AT90S2323 Dev7=AT90S2333 Dev8=AT90S2343 Dev9=AT90S4414 Dev10=AT90S4433 Dev11=AT90S4434 Dev12=AT90S8515 Dev13=AT90S8535 Dev14=ATmega103 Dev15=ATmega103_Old Dev16=ATmega161 Dev17=ATmega162 Dev18=ATmega163 Dev19=ATtiny26L Dev20=ATmega8515 Dev21=ATmega32 Dev22=ATmega8 Dev23=ATmega16 Dev24=ATmega128 Dev25
in „Mega16 Programmieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
pwmdemo.c
*********************/ #include <inttypes.h> #include <avr/io.h> /* * constants */ #if __AVR_AT90S8515__ #define XTAL 4000000L // Crystal frequency in Hz #define OC1A_PIN PD5 // OC1A pin (for AT90S8515 use PD5, for ATmega8 use PB1) #define OC1A_DDR DDRD // OC1A DDR (for AT90S8515 use DDRD, for ATmega8 use DDRB) #define WGM12 CTC1 // for compatibility with AT90S8515 #define WGM10 PWM10 // for compatibility with AT90S8515 #elif __AVR_ATmega8__ #define XTAL 1000000L // Crystal frequency in Hz #define OC1A_PIN PB1 // OC1A pin (for AT90S8515 use PD5, for ATmega8 use
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Datei
flashled.c
*********/ #include <inttypes.h> #include <avr/io.h> /* ** constant definitions */ #if __AVR_AT90S8515__ #define XTAL 4000000L // Crystal frequency in Hz #define OC1A_PIN PD5 // OC1A pin (for AT90S8515 use PD5, for ATmega8 use PB1) #define OC1A_DDR DDRD // OC1A DDR (for AT90S8515 use DDRD, for ATmega8 use DDRB) #define WGM12 CTC1 // for compatibility with AT90S8515 #elif __AVR_ATmega8__ #define XTAL 1000000L // Crystal frequency in Hz #define OC1A_PIN PB1 // OC1A pin (for AT90S8515 use PD5, for ATmega8 use PB1) #define OC1A_DDR DDRB // OC1A DDR (for AT90S8515
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Datei
dumpspecs1.txt
avr3 !mmcu=avr4 mmcu=avr5; *multilib_defaults: mmcu=avr2 *multilib_extra: *multilib_matches: mmcu=atmega103 mmcu=avr3;mmcu=atmega603 mmcu=avr3;mmcu=at43usb320 mmcu=avr3;mmcu=at43usb355 mmcu=avr3;mmcu=at76c711 mmcu=avr3;mmcu=atmega8515 mmcu=avr4;mmcu=atmega8535 mmcu=avr4;mmcu=atmega8 mmcu=avr4;mmcu=atmega48
in „ATtiny24 - ISR wird nie gerufen __vectors> fehlt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ATmegaBOOT.c
/(BAUD_RATE*16L)-1) >> 8; UCSRA = 0x00; UCSRB = _BV(TXEN)|_BV(RXEN); #elif defined __AVR_ATmega168__ UBRR0L = (uint8_t)(F_CPU/(BAUD_RATE*16L)-1); UBRR0H = (F_CPU/(BAUD_RATE*16L)-1) >> 8; UCSR0B = (1<<RXEN0) | (1<<TXEN0
in „Bootloader startet überhaupt nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
yaap.ini
AT90S2323 Dev7=AT90S2333 Dev8=AT90S2343 Dev9=AT90S4414 Dev10=AT90S4433 Dev11=AT90S4434 Dev12=AT90S8515 Dev13=AT90S8535 Dev14=ATmega103 Dev15=ATmega103_Old Dev16=ATmega161 Dev17=ATmega162 Dev18=ATmega163 Dev19=ATtiny26L Dev20=ATmega8515 Dev21=ATmega8 Dev22=ATmega32 Dev23=ATmega16 Dev24=ATmega128 [Fuses
in „Problem: ATMega16 und YAAP“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ATMEGA8515L_STK500_code.asm
RESET: ser r16 out DDRB, r16 ; Port B Data Direction Register loop: out PORTB, r16 ; Port B Data Register sbis PIND, PIND0 ; Port D Input Pins Address inc r16 sbis PIND, PIND1 ; Port D Input Pins Address dec r16 sbis PIND, PIND2 ; Port D Input Pins Address ror r16 sbis PIND, PIND3 ; Port D Input Pins Address rol r16 sbis PIND, PIND4 ; Port D Input Pins Address com r16 sbis PIND, PIND5 ; Port D Input Pins Address neg r16 sbis PIND, PIND6 ; Port D Input Pins Address swap r16 delay: dec r17 brne delay dec r18 brne delay rjmp loop
in „STK500 CD ISO Image“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVRISPmkII_UG.pdf
the selected file above) 22 Example 2: stk500 -cUSB:00001A52 -ut4.5 -ua4.5 -!3686000 -I460800 -dATMEGA8515 -lFF -fD9E4 -ms - ifC:\input.hex -pf -vf –e Description: stk500 Runs the file stk500.exe -cUSB:00001A52 Select USB port with the specific AVRISP mkII series number* -ut4.5 Set the target voltage
in „AVRISP mkII - 10-polig?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVRISPmkII_UG.pdf
the selected file above) 22 Example 2: stk500 -cUSB:00001A52 -ut4.5 -ua4.5 -!3686000 -I460800 -dATMEGA8515 -lFF -fD9E4 -ms - ifC:\input.hex -pf -vf –e Description: stk500 Runs the file stk500.exe -cUSB:00001A52 Select USB port with the specific AVRISP mkII series number* -ut4.5 Set the target voltage
in „ISP Leiterbahnen an ATMega328 funktionieren nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart_printf.c
AVR_ATtiny45__ || __AVR_ATtiny85__ || \ __AVR_ATtiny24__ || __AVR_ATtiny44__ || __AVR_ATtiny84__ || \ __AVR_ATmega48__ || __AVR_ATmega88__ || __AVR_ATmega168__ || __AVR_ATmega328P__ || \ __AVR_ATmega328__ || \ __AVR_ATmega8__ || __AVR_ATmega8515__ /* -------------------------------------------------------- Registernamen von ATmega8, 8515, ATtiny2313 und 4313 anpassen -------------------------------------------------------- */ #if defined __AVR_ATmega8__ || __AVR_ATmega8515__ || \ __AVR_ATtiny2313__ || __AVR_ATtiny4313__ #define
in „Ausgabe mittels printf über UART für ATmega / ATtiny“ · Projekte & Code ·
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PDF
AVR042.pdf
Example layout Figure 6-1 (A-D) shows a schematic and PCB layout using a crystal oscillator for ATmega8515, decoupling digital supply from VCC is seen. Note the ground plane surrounding the crystal and the very short distance between the crystal and the ATmega8515. 12 AVR042 2521F-AVR-04/08 AVR042 Figure 6-1. (A) basic schematic of required/recommended connections for AT90S8515. (B) Copper PCB layout. (C) and (D) top and bottom silk prints. U1 ATmega8515 1 39 2 PB0/T0 AD0/PA 38 3 PB1/T1 AD1/PA 37 PB2/AIN0 AD2/PA 4 PB3/AIN1 AD3/PA 36 5 PB4/SS AD4/PA 35 6 PB5/MOSI AD5/PA 34
in „Beschaltung MEGA128 mit ISP und UARD0“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR042.pdf
Example layout Figure 6-1 (A-D) shows a schematic and PCB layout using a crystal oscillator for ATmega8515, decoupling digital supply from VCC is seen. Note the ground plane surrounding the crystal and the very short distance between the crystal and the ATmega8515. 12 AVR042 2521F-AVR-04/08 AVR042 Figure 6-1. (A) basic schematic of required/recommended connections for AT90S8515. (B) Copper PCB layout. (C) and (D) top and bottom silk prints. U1 ATmega8515 1 39 2 PB0/T0 AD0/PA 38 3 PB1/T1 AD1/PA 37 PB2/AIN0 AD2/PA 4 PB3/AIN1 AD3/PA 36 5 PB4/SS AD4/PA 35 6 PB5/MOSI AD5/PA 34
in „Widerstände an MISO und MOSI?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc2521.pdf
Example layout Figure 6-1 (A-D) shows a schematic and PCB layout using a crystal oscillator for ATmega8515, decoupling digital supply from VCC is seen. Note the ground plane surrounding the crystal and the very short distance between the crystal and the ATmega8515. 12 AVR042 2521F-AVR-04/08 AVR042 Figure 6-1. (A) basic schematic of required/recommended connections for AT90S8515. (B) Copper PCB layout. (C) and (D) top and bottom silk prints. U1 ATmega8515 1 39 2 PB0/T0 AD0/PA 38 3 PB1/T1 AD1/PA 37 PB2/AIN0 AD2/PA 4 PB3/AIN1 AD3/PA 36 5 PB4/SS AD4/PA 35 6 PB5/MOSI AD5/PA 34
in „Quarz will nicht anschwingen Atmega8“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR042.pdf
Example layout Figure 6-1 (A-D) shows a schematic and PCB layout using a crystal oscillator for ATmega8515, decoupling digital supply from VCC is seen. Note the ground plane surrounding the crystal and the very short distance between the crystal and the ATmega8515. 12 AVR042 2521F-AVR-04/08 AVR042 Figure 6-1. (A) basic schematic of required/recommended connections for AT90S8515. (B) Copper PCB layout. (C) and (D) top and bottom silk prints. U1 ATmega8515 1 39 2 PB0/T0 AD0/PA 38 3 PB1/T1 AD1/PA 37 PB2/AIN0 AD2/PA 4 PB3/AIN1 AD3/PA 36 5 PB4/SS AD4/PA 35 6 PB5/MOSI AD5/PA 34
in „Mein erstes Projekt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR042.pdf
Example layout Figure 6-1 (A-D) shows a schematic and PCB layout using a crystal oscillator for ATmega8515, decoupling digital supply from VCC is seen. Note the ground plane surrounding the crystal and the very short distance between the crystal and the ATmega8515. 12 AVR042 2521F-AVR-04/08 AVR042 Figure 6-1. (A) basic schematic of required/recommended connections for AT90S8515. (B) Copper PCB layout. (C) and (D) top and bottom silk prints. U1 ATmega8515 1 39 2 PB0/T0 AD0/PA 38 3 PB1/T1 AD1/PA 37 PB2/AIN0 AD2/PA 4 PB3/AIN1 AD3/PA 36 5 PB4/SS AD4/PA 35 6 PB5/MOSI AD5/PA 34
in „Programier leitungen doppelt nutzen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR042-doc2521.pdf
Example layout Figure 6-1 (A-D) shows a schematic and PCB layout using a crystal oscillator for ATmega8515, decoupling digital supply from VCC is seen. Note the ground plane surrounding the crystal and the very short distance between the crystal and the ATmega8515. 12 AVR042 2521F-AVR-04/08 AVR042 Figure 6-1. (A) basic schematic of required/recommended connections for AT90S8515. (B) Copper PCB layout. (C) and (D) top and bottom silk prints. U1 ATmega8515 1 39 2 PB0/T0 AD0/PA 38 3 PB1/T1 AD1/PA 37 PB2/AIN0 AD2/PA 4 PB3/AIN1 AD3/PA 36 5 PB4/SS AD4/PA 35 6 PB5/MOSI AD5/PA 34
in „Anfänger: Atmel 8 beschaltung ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR_8-bit_AppNote_HardwareDesignConsiderations_AVR042.pdf
inductor. Generally, the AVR devices where power and ground lines are placed close together (like the ATmega8535) will get better decoupling than devices with industry standard pin-out (like the ATmega8515), where the power and ground pins are placed in opposite corners of the DIP package. This disadvantage
in „RFM01 Problem“ · 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
doc1925.pdf
following devices in all speed grades: n ATtiny11 n AT90S4433 n ATtiny12 n AT90S4434 n ATtiny15 n AT90S8515 n ATtiny22 n AT90S8535 n ATtiny28 n ATmega8 n AT90S1200 n ATmega16 n AT90S2313 n ATmega161 n AT90S2323 n ATmega163 n AT90S2333 n ATmega323 (1) n AT90S2343 n ATmega103 n AT90S4414 n ATmega128(1) Note
in „STK500 als ISP“ · Mikrocontroller und Digitale Elektronik ·
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PDF
stk500.pdf
following devices in all speed grades: n ATtiny11 n AT90S4433 n ATtiny12 n AT90S4434 n ATtiny15 n AT90S8515 n ATtiny22 n AT90S8535 n ATtiny28 n ATmega8 n AT90S1200 n ATmega16 n AT90S2313 n ATmega161 n AT90S2323 n ATmega163 n AT90S2333 n ATmega323 (1) n AT90S2343 n ATmega103 n AT90S4414 n ATmega128(1) Note
in „STK500 mit Breadboard“ · Mikrocontroller und Digitale Elektronik ·
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PDF
top2008.pdf
, ATTINY2313(DIP20), ATTINY2313V(DIP20),ATTINY2313, ATMEGA8, ATMEGA8L, ATMEGA16, ATMEGA16L, ATMEGA8535, ATMEGA8535L, ATMEGA8515, ATMEGA8515L, ATMEGA32, ATMEGA32L, ATMEGA48*PDIP28, ATMEGA88*PDIP28, ATMEGA88P*PDIP28, ATMEGA88PA*PDIP28,ATMEGA_ALL, ATMEGA168*PDIP28, ATMEGA328*PDIP28, ATMEGA328V*PDIP28, ATMEGA48V*PDIP28, ATMEGA88V*PDIP28, ATMEGA168V*PDIP28,ATMEGA_ALL, ATMEGA161, ATMEGA161L, ATMEGA162, ATMEGA162L, ATMEGA162V, ATMEGA162U, ATMEGA163, ATMEGA163L, AT90S2323
in „[V] Top 853 Universal Programmer + 74er Tester“ · Markt ·
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PDF
doc2521.pdf
Example layout Figure 6-1 (A-D) shows a schematic and PCB layout using a crystal oscillator for ATmega8515; decoupling digital supply from VCC is seen. Note the ground plane surrounding the crystal and the very short distance between the crystal and the ATmega8515. 15 2521J-AVR-06/10 Figure 6-1. (A) basic schematic of required/recommended connections for AT90S8515. (B) Copper PCB layout. (C) and (D) top and bottom silk prints. U1 ATmega8515 1 39 2 PB0/T0 AD0/PA 38 3 PB1/T1 AD1/PA 37 PB2/AIN0 AD2/PA 4 PB3/AIN1 AD3/PA 36 5 PB4/SS AD4/PA 35 6 PB5/MOSI AD5/PA 34
in „ATmega8: Das Buch“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avr.h
/* Definitions of target machine for GNU compiler, for ATMEL AVR at90s8515, ATmega103/103L, ATmega603/603L microcontrollers. Copyright (C) 1998, 1999, 2000, 2001, 2002, 2003, 2004, 2005 Free Software Foundation, Inc. Contributed by Denis Chertykov (denisc@overta.ru) This file
in „ATtiny24 - ISR wird nie gerufen __vectors> fehlt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
robot.c
Fleury <pfleury@gmx.ch> http://jump.to/fleury Date: December 2003 Software: AVR-GCC 3.3 Hardware: AT90S8515 at 4 Mhz, ATmega8 with 1 Mhz Description: This example shows how to generate voltages between VCC and GND using Pulse Width Modulation (PWM). A LED with a series resistor should be connected from PD5
in „Problem mit PWM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ICprog-AVR.pdf
werden. ATmega: ATmega8, ATmega16, ATmega32, ATmega64, AT- Abbildung 2 zeigt die dazugehorige Pinnummerierung der Stiftleiste J2. mega102, ATmega128, ATmega161, ATmega162, ATmega163, ATmega169, ATmega8515, ATme-
in „USB Programmer ICprog-AVR“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.c
27 22:00:28 peter Exp $ Software: AVR-GCC 3.3 Hardware: any AVR with built-in UART, tested on AT90S8515 at 4 Mhz and ATmega at 1Mhz DESCRIPTION: An interrupt is generated when the UART has finished transmitting or receiving a byte. The interrupt handling routines use circular buffers for buffering received
in „UART im AVR Studio simulieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
device2007.txt
AT89C51ED2, AT89C51ID2, AT89S54, AT89S58, AT89S64, AT90S1200, AT90S2313, AT90S4414, AT90LS4414, AT90S8515, AT90LS8515, AT90S4434, AT90S8535, AT90LS8535, AT90S4434, AT90LS4434, AT90S2333, AT90S4433, 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
in „24C04 beschreiben und auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
assembler_beginner.pdf
zu allen Ports über 10-polige Pfostenstecker. Die Experimente können mit dem mitgelieferten AT90S8515 oder ATmega8515 sofort beginnen. Das Board wird über eine serielle Schnittstelle (COMx) an den Rechner gekoppelt und von den neueren Versionen des Studio's von ATMEL bedient. Für die Programmierung
in „Assembler Tutorial als PDF ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR042_Hardware_Design_Considerations_doc2521.pdf
450 Yes AT09S2323 – – – >450 >450 Yes AT90S2343 1.0 – – – – Yes AT90S4433 – – – >450 >450 Yes AT90S8515 – – – >450 >450 Yes AT90S8535 – – – >450 >450 Yes ATmega161 – – – >450 >450 Yes ATmega163 1.0 Yes 32.768 >450 >450 Yes ATmega323 1.0 Yes 32.768 >450 >450 Yes ATmega103 – – – >450 >450 Yes Be aware that
in „Atmega 8A PU“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.h
define BAUD 9600L #define UBRR_VAL ((F_CPU+BAUD * 8)/(BAUD*16)-1) //clever runde #define BAUD_REAL (F_CPU/(16*(UBRR_VAL+1))) //reale Baudrate #define BAUD_ERROR ((BAUD_REAL*1000)/BAUD-1000) //Fehler in Promille #if (_
in „[Atmega8]LCD-Display+UART“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Devices.txt
BLITZ_250WS 3 BF245 3 BD243 3 BC556 3 BC327_SMD 3 BC327-25 3 BAT19 3 BAS40-04 3 BAS15 3 ATMEGA644A 3 AT90S8515P 3 AT90S4433P 3 AT8C51SND1A-PLCC84 3 AD1857 3 AB9V 3 9450-1 3 93LC46SM 3 90G-2 3 87758-1016 3 78L05Z 3 74HCT373N 3 74HCT244N 3 74HCT125D 3 74AC32N 3 74AC14D 3 733989-55 3 733980-62
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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Datei
ATmega8515.asm
######################################################################### ; # # ; # Pin Belegung ATmega8515 # ; # # ; # Port D0 = Eingang langsamer # ; # Port D1 = Eingang schneller # ; # Port D2 = Eingang rechts # ; # Port D3 = Eingang links # ; # Port D4 = Motor Ein/Aus # ; # Port D5 = # ; # Port D6
in „mC arbeitet nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Values.txt
3 BCR135 3 BC556 3 BC327_SMD 3 BC327-25 3 BAT19 3 Attack-wiper 3 ATMEGA644A 3 AT90S8515P 3 ADS7816 3 AD1857 3 AB9V 3 9450-1 3 93LC46SM 3 91K 3 8.66k 3 82R 3 82k 3 829r 3 82114R 3 80 3 78L05SMD 3 750K 3 74HCT373N 3 74HCT244N 3 74HCT125D 3 74AC32N 3 74AC14D 3 7474N 3 6u8
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
as5installer_stable-5.0.1038-readme-1.pdf
Full Control ATmega649P Full Control Full Full Full ATmega64A Full Control Full Full Control ATmega64M1 Full Control Full Full Control ATmega8 Control Control ATmega8515 Control Control ATmega8535 Control Control ATmega88
in „AVR-Studio 5“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.c
power of 2 #endif #if defined(__AVR_AT90S2313__) || defined(__AVR_AT90S4414__) || defined(__AVR_AT90S8515__) || \ defined(__AVR_AT90S4434__) || defined(__AVR_AT90S8535__) || \ defined(__AVR_ATmega103__) /* old AVR classic or ATmega103 with one UART */ #define UART0_RECEIVE_INTERRUPT UART_RX_vect #define
in „Timerberechnung die hunderste“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.c
power of 2 #endif #if defined(__AVR_AT90S2313__) || defined(__AVR_AT90S4414__) || defined(__AVR_AT90S8515__) || \ defined(__AVR_AT90S4434__) || defined(__AVR_AT90S8535__) || \ defined(__AVR_ATmega103__) /* old AVR classic or ATmega103 with one UART */ #define UART0_RECEIVE_INTERRUPT UART_RX_vect #define
in „Fehler beim kompilieren des Bootloadertoutorials in C“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.c
power of 2 #endif #if defined(__AVR_AT90S2313__) || defined(__AVR_AT90S4414__) || defined(__AVR_AT90S8515__) || \ defined(__AVR_AT90S4434__) || defined(__AVR_AT90S8535__) || \ defined(__AVR_ATmega103__) /* old AVR classic or ATmega103 with one UART */ #define UART0_RECEIVE_INTERRUPT UART_RX_vect #define
in „Wie macht man solche Lichtmodes? Lauflicht, PWM und Co“ · Mikrocontroller und Digitale Elektronik ·
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PDF
problems.pdf
test_origport/AT-AVR/GCC/problems.txt # # Select the processor and appropriate linker script below # # # At90S8515 # #MCU = at90s8515 #LDFLAGS = -T../source/avr85xx.x ############# # # Atmega103 # # MCU = atmega103 # #LDFLAGS = -T../source/avrmega103.x # LDFLAGS = -T../source/avr3.x ############# # # Atmega8 # MCU
in „no interrupts for atmega32 but for atmega8“ · Mikrocontroller und Digitale Elektronik ·
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Datei
demux.asm
;**** A P P L I C A T I O N N O T E ************************************ ;* ;* Title : 8ch DMX512 Demultiplexer ;* Version : v1.2 ;* Last updated : 02.11.07 ;* Target : Transceiver Rev.3.01 [ATmega8515] ;* ;* written
in „DMX Demultiplexer (Atmega8515-16)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
demux.asm
;**** A P P L I C A T I O N N O T E ************************************ ;* ;* Title : 8ch DMX512 Demultiplexer ;* Version : v1.2 ;* Last updated : 02.11.07 ;* Target : Transceiver Rev.3.01 [ATmega8515] ;* ;* written
in „AVR Duty Cycle anpassung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Receive.asm
Receive.asm ;* Project: LED-PIPE ;* Version: 1.0 ;* Autor: Joachim Geiger ;* Date: 07.04.2007 ;* Target: Atmega8515 8MHz ;* ;********************************************************* .include "m8515def.inc" ;Register and Pin definitions .def temp = r16 .def tempH = r17 .def dmx_byte = r18 .def dmx_status = r19
in „Fragen zu PWM“ · Mikrocontroller und Digitale Elektronik ·
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Datei
01_prog.c
****************************************************************************/ #define F_CPU 8000000L #define DEBOUNCE 256L #define EIN 1 #define AUS 0 #define LED_GRUEN PIND7 #define LED_GELB PIND6 #define LED_ROT PIND5 #define uchar unsigned char #define uint unsigned int /*************************
in „Zwei displays mit Atmega 16“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd_new.h
peter Exp $ Software: AVR-GCC 3.3 Hardware: any AVR device, memory mapped mode only for AT90S4414/8515/Mega ***************************************************************************/ /** @defgroup pfleury_lcd LCD library @code #include <lcd.h> @endcode @brief Basic routines for interfacing a HD44780U-based
in „mal wieder ein LCD am Atmega8“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.h
peter Exp $ Software: AVR-GCC 3.3 Hardware: any AVR device, memory mapped mode only for AT90S4414/8515/Mega ***************************************************************************/ /** @defgroup pfleury_lcd LCD library @code #include <lcd.h> @endcode @brief Basic routines for interfacing a HD44780U-based
in „[AVR] Lcd Init funktioniert aber der Rest nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd_new.h
peter Exp $ Software: AVR-GCC 3.3 Hardware: any AVR device, memory mapped mode only for AT90S4414/8515/Mega ***************************************************************************/ /** @defgroup pfleury_lcd LCD library @code #include <lcd.h> @endcode @brief Basic routines for interfacing a HD44780U-based
in „HD44780 on Atmega32 with Peter Fleurys library“ · µC & Digital Electronics ·