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Datei
fixapfel.cpp
--------------------------------------------- //--- Routinen für die serielle Schnittstelle (ATmege168 und ATmega32 und codekompatible Typen) --- //------------------------------------------------------------------------------------------------- #if 0 // Keine Hardwareabhängigen Teile hier, sondern in
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PDF
Atmel-8209-8-bit_AVR_ATmega16M1-32M1-64M1_Datasheet_1_.pdf
8-bit AVR Microcontroller ATmega16M1/32M1/64M1 DATASHEET COMPLETE Introduction ® The Atmel ATmega16M1/32M1/64M1 is a low-power CMOS 8-bit microcontroller based on the AVR enhanced RISC architecture. By executing powerful instructions
in „Externer Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
bootload.lst
m8535def.inc" 25 ;.include "m88def.inc" 26 ;.include "m16def.inc" 27 ;.include "m162def.inc" 28 ;.include "m168def.inc" 29 30 ; set the FirstBootStart fuse on these AVRs: 31 ;.include "m32def.inc" 32 ;.include "m64def.inc" 33 ;.include "m644def.inc" 34 ;.include "m128def.inc" 35 ;.include "m1281def.inc" 36 ;.include "m2561def.inc" 37 38 39 ; remove comment sign to exclude API-Call: 40 ; only on ATmega >= 8kB supported 41 // #define APICALL 0 42 43 ; remove comment sign to exclude Watchdog trigger: 44 // #define WDTRIGGER 0 45 46 ; remove comment sign to exclude CRC: 47 // #define CRC 0 48 49 ; remove
in „Peter Danneggers Bootloader (fastboot) für AVR-GCC-Toolchain“ · Projekte & Code ·
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PDF
Arduino_Project_Handbook_25_Practical_Projects_to_Get_You_Started.pdf
3). Pin 1 is below this indentation, and the pins are numbered 1–28 counterclockwise from there. ATMEGA Arduino ATMEGA Arduino Table 25-1: Pin Function Pin Function The ATmega chip’s pins and their corresponding 1 Reset 15 Pin 9 Arduino pins 2 Pin 0 16 Pin 10 3 Pin 1 17 Pin 11 4 Pin 2 18 Pin 12 5 Pin
in „LED Driver mit µC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
doc7593.pdf
ASSR” on page 165. For details on clock sources and prescaler, see “Timer/Counter Prescaler” on page 168. 15.3 Counter Unit The main part of the 8-bit Timer/Counter is the programmable bi-directional counter unit. Figure 15-2 shows a block diagram of the counter and its surrounding environment. 150 ATmega32U6
in „Problem mit dem TC4469“ · Mikrocontroller und Digitale Elektronik ·
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PDF
atmel-8393-mcu_wireless-atmega256rfr2-atmega128rfr2-atmega64rfr2_datasheet.pdf
. XTAL1 and XTAL2 shall never be forced to supply voltage at the same time. 3.4 Compatibility to ATmega128RFA1 Backward compatibility of the ATmega256/128/64RFR2 to the ATmega128RFA1 is provided in most cases. However some incompatibilities may exist. The ATmega256/128/64RFR2 uses the same package as
in „AVR-Verlustleistung maximieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
man_gcc.pdf
", "atmega165a", "atmega165p", "atmega165pa", "atmega168", "atmega168a", "atmega168p", "atmega168pa", "atmega168pb", "atmega169", "atmega169a", "atmega169p", "atmega169pa", "atmega32", "atmega32a", "atmega32c1
in „avr-g++: external linkage von const/PROGMEM Symbol.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Kalman_C.txt
from the SparkFun IMU 5 Degrees of Freedom // IMU every 1/50th of a second using 10-bit ADC on an ATmega168. The first // column is the rate from the gyro (degrees/sec) and the second column is the // accelerometer pitch attitude from horizontal in degrees. float sample_data[SAMPLE_COUNT][2] = { {0.016088
in „Einmal C-Programm prüfen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DeviceList.txt
) AT90LS8535 AT90LS8535(PLCC44) AT90LS8535(TQFP44) AT90S8535 AT90S8535(PLCC44) AT90S8535(TQFP44) ATMEGA16(DIP40) ATMEGA16(TQFP44) ATMEGA16L(DIP40) ATMEGA16L(TQFP44) ATMEGA32(DIP40) ATMEGA32(TQFP44) ATMEGA8(DIP28) ATMEGA8(TQFP32) ATMEGA8A(DIP28) ATMEGA8A(TQFP32) ATMEGA48(DIP28) ATMEGA48(TQFP32) ATMEGA88(DIP28) ATMEGA88(TQFP32) ATMEGA168(DIP28) ATMEGA168(TQFP32) ATMEGA162(DIP40) ATMEGA162(PLCC44) ATMEGA162(TQFP44) ATMEGA8515(DIP40) ATMEGA8515(PLCC44) ATMEGA8515(TQFP44) ATMEGA8535(DIP40) ATMEGA8535(PLCC44) ATMEGA8535
in „[V] Genius G540 EPROM/Flash/uC Programmer (USB)“ · Markt ·
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PDF
ATMega164_324_644_1284pa.pdf
ATmega164PA, ATmega324A, ATmega324PA, ATmega644A, ATmega644PA, ATmega1284 and ATmega1284P Device Flash EEPROM RAM Units ATmega164A 16 K 512 1 K ATmega164PA 16 K 512 1 K ATmega324A 32 K 1 K 2 K ATmega324PA
in „Hilfe bei AD-Wandler!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Mega32.pdf
Programmable I/O Lines – 40-pin PDIP, 44-lead TQFP, and 44-pad MLF Operating Voltages – 2.7 - 5.5V for ATmega32L – 4.5 - 5.5V for ATmega32 Speed Grades – 0 - 8 MHz for ATmega32L – 0 - 16 MHz for ATmega32 Power Consumption at 1 MHz, 3V, 25°C for ATmega32L – Active: 1.1 mA – Idle Mode: 0.35 mA – Power-down Mode
in „AVR Timer/Counter Zeit berechnen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATmega1284P_128KByte.pdf
, program debugger/simulators, in-circuit emulators, and evaluation kits. 2.2 Comparison between ATmega164A, ATmega164PA, ATmega324A, ATmega324PA, ATmega644A, ATmega644PA, ATmega1284 and ATmega1284P Table 2-1. Differences between ATmega164A, ATmega164PA, ATmega324A, ATmega324PA, ATmega644A, ATme- ga644PA, ATmega1284 and ATmega1284P Device Flash EEPROM RAM Units ATmega164A 16K 512 1K ATmega164PA 16K 512 1K ATmega324A 32K 1K 2K ATmega324PA 32K 1K 2K bytes ATmega644A 64K 2K 4K ATmega644PA 64K 2K 4K ATmega1284
in „ATmega1284P versus ohne P“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATmega32.pdf
Programmable I/O Lines – 40-pin PDIP, 44-lead TQFP, and 44-pad QFN/MLF Operating Voltages – 2.7V - 5.5V for ATmega32L – 4.5V - 5.5V for ATmega32 Speed Grades – 0 - 8MHz for ATmega32L – 0 - 16MHz for ATmega32 Power Consumption at 1MHz, 3V, 25°C – Active: 1.1mA – Idle Mode: 0.35mA – Power-down Mode: < 1µA 2503Q–AVR
in „STK500 als ISP“ · Mikrocontroller und Digitale Elektronik ·
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PDF
atmega2560_2561.pdf
Consumption – Active Mode: 1 MHz, 1.8V: 510 µA Speed Grade (see “Maximum speed vs. VCC” on page 376): – ATmega640V/ATmega1280V/ATmega1281V: 0 - 4 MHz @ 1.8 - 5.5V, 0 - 8 MHz @ 2.7 - 5.5V – ATmega2560V/ATmega2561V: 0 - 2 MHz @ 1.8 - 5.5V, 0 - 8 MHz @ 2.7 - 5.5V – ATmega640/ATmega1280/ATmega1281: 0 - 8 MHz @
in „Ethernet Buchse“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datasheet_ATmega1281_doc2549.pdf
Power-down Mode: 0.1 µA at 1.8V Speed Grade: – AT0 - 4 MHz @ 1.8 - 5.5V, 0 - 8 MHz @ 2.7 - 5.5V – ATmega2560V/ATmega2561V: 0 - 2 MHz @ 1.8 - 5.5V, 0 - 8 MHz @ 2.7 - 5.5V – ATmega640/ATmega1280/ATmega1281: 0 - 8 MHz @ 2.7 - 5.5V, 0 - 16 MHz @ 4.5 - 5.5V – ATmega2560/ATmega2561: 0 - 16 MHz @ 4.5 - 5.5V
in „LM73 über TWI/I2C mit Atmega1281 auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATMega16.pdf
Programmable I/O Lines – 40-pin PDIP, 44-lead TQFP, and 44-pad MLF Operating Voltages – 2.7 - 5.5V for ATmega16L – 4.5 - 5.5V for ATmega16 Speed Grades – 0 - 8 MHz for ATmega16L – 0 - 16 MHz for ATmega16 Rev. 2466E–AVR–10/02 1 Pin Configurations Figure 1. Pinouts ATmega16 PDIP (XCK/T0) PB0 PA0 (ADC0) (T1)
in „DCF auf INT0“ · Mikrocontroller und Digitale Elektronik ·
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PDF
_ATmega32.pdf
Programmable I/O Lines – 40-pin PDIP, 44-lead TQFP, and 44-pad MLF Operating Voltages – 2.7 - 5.5V for ATmega32L – 4.5 - 5.5V for ATmega32 Speed Grades – 0 - 8 MHz for ATmega32L – 0 - 16 MHz for ATmega32 Rev. 2503C–AVR–10/02 1 Pin Configurations Figure 1. Pinouts ATmega32 PDIP (XCK/T0) PB0 PA0 (ADC0) (T1)
in „Anschwingvorgang µC & Quarz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AtMega644P_Datasheet.pdf
back from the Stack, the Stack Pointer is incre- mented by three, and the I-bit in SREG is set. 16 ATmega644 2593O–AVR–02/12 ATmega644 6. AVR Memories This section describes the different memories in the ATmega644. The AVR architecture has two main memory spaces, the Data Memory and the Program Memory
in „Alkoholmessgerät programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
atmega644.pdf
back from the Stack, the Stack Pointer is incre- mented by three, and the I-bit in SREG is set. 16 ATmega644 2593O–AVR–02/12 ATmega644 6. AVR Memories This section describes the different memories in the ATmega644. The AVR architecture has two main memory spaces, the Data Memory and the Program Memory
in „SPI-Kommunikation Atmega644 - ADS1118“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.lst
008c 0895 ret 133 .LFE9: 135 .data 136 .LC0: 137 0000 4578 7465 .string "External Memory Test for ATmega2561" 137 726E 616C 137 204D 656D 137 6F72 7920 137 5465 7374 138 .LC1: 139 0024 3D3D 3D3D .string "===================================\n" 139 3D3D 3D3D 139 3D3D 3D3D 139 3D3D 3D3D 139 3D3D 3D3D 140
in „RAM-Bankswitching - wie am geschicktesten mit GCC auf AVR?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
simple_server.c
or http://baseurl/password/ * * Title: Microchip ENC28J60 Ethernet Interface Driver * Chip type : ATMEGA88 with ENC28J60 * Note: there is a version number in the text. Search for tuxgraphics *********************************************/ /********************************************* * modified: 2011-
in „Webpage Webserver“ · Mikrocontroller und Digitale Elektronik ·
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PDF
simulavr.pdf
what type of device it has to simulate. The following devices are supported: at90s8515, at90s4433, atmega128, atmega168, atmega16, at- tiny25 and other. To find out, which devices are supported with your current installation, use the help option! ‘-f --file <name>’ load ELF-file <name> for simulation in
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Datei
RGB_LED_10bitPWM.asm
------------------------------------------- ;HSB -> RGB Wandler, in AVR-Assembler, für ATiny und ATmega ;Kurzfeatures: (Details und ausführliche Erläuterungen im Quelltext) ;------------------------------------------------------------------- ;*Codegrösse nur ca.300 Words auf Atiny, ca.280 auf ATmega
in „Mega8 Assembler RGB Fader“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PWM_test_2.c
******************************************************* // Copyright // Version /* * Chip type : ATMEGA 88 * Clock frequency : clock 20 Mhz Ein- und Ausgänge PORT B 0 (14) = PORT B 1 (15) = (OC1A/PCINT1) PWM Ausgabe, PORT B 2 (16) = (SS/OC1B/PCINT2) PWM Ausgabe, PORT B 3 (17) = PORT B 4 (18) = PORT B
in „Skalierung von Integerwerten“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avr-video-8-8.asm
; ; ; ; AVR-Video V4 ; Jan Baare 10.02.2005 ; ; ; ;Serielles ASCII-Video Terminalprogramm für ATMEGA-8 und Fernsehgerät ; - 24 Zeilen zu je 28 Zeichen ; - PAL-kompatibles BAS Videosignal ; - Betrieb an jedem SW- oder Farbfernsehgerät mit ; Video-IN bzw. BAS-IN Anschluss oder über SCART ; - RS-232
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Datei
flashlog.txt
myuisp --erase Atmel AVR ATmega8 is found. Erasing device ... Reinitializing device Atmel AVR ATmega8 is found. myuisp --upload if=test3.hex -v=3 --hash=32 --verify Reset inactive time (t_reset) 1000 us AVR Direct Parallel Access succeeded after 0 retries. Vendor Code: 0x1e Part Family: 0x93 Part Number: 0x07 Atmel AVR ATmega8 is found. Page Write Enabled, size=64 FLASH Write Delay (t_wd_flash): 12500 us EEPROM Write Delay (t_wd_eeprom): 25000 us Uploading: flash ############### (total 450 bytes transferred in 0.68 s (661
in „ATMega8 nur bei geringer Taktfrequenz flashbar“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ee24xx.lst
1 .file "ee24xx.c" 2 .arch atmega16 3 __SREG__ = 0x3f 4 __SP_H__ = 0x3e 5 __SP_L__ = 0x3d 6 __tmp_reg__ = 0 7 __zero_reg__ = 1 8 .global __do_copy_data 9 .global __do_clear_bss 11 .text 12 .Ltext0: 57 .global ee24xx_init 59 ee24xx_init
in „I2C EEPROM Adressierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HAP-CU-TechDok-20080319.pdf
glättet. Darunter findet man das Herzstück der Control Unit, den Mikrocontroller. Hier wird ein ATmega32 von ATMEL verwendet. Der Reset-Pin wird nicht verwendet und deshalb über R1 mit VCC verbunden. PAD4 bis PAD6 dienen der Aufnahme eines externen Quarz. Dieser muss eine Frequenz von 12 MHz aufweisen
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PDF
Powermeter.pdf
should then fit into 4kB and the microcontroller can be replaced by an ATmega48, for example. • Add functions such as remote reading, demand recording or multiple tariffs. Upgrade to ATmega168, for example, if the firmware exceeds 8kB. • Add integrated LCD support simply by migrating to ATmega169. No software is ever complete and there are probably as many potential improvements Meter Firmware as there are readers of this document. The good news is the firmware is open source and can be
in „230V Leistung erfassen mit ATmega128“ · Mikrocontroller und Digitale Elektronik ·
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PDF
volt230.pdf
should then fit into 4kB and the microcontroller can be replaced by an ATmega48, for example. • Add functions such as remote reading, demand recording or multiple tariffs. Upgrade to ATmega168, for example, if the firmware exceeds 8kB. • Add integrated LCD support simply by migrating to ATmega169. No software is ever complete and there are probably as many potential improvements Meter Firmware as there are readers of this document. The good news is the firmware is open source and can be
in „Netzteil ohne Trafo“ · Mikrocontroller und Digitale Elektronik ·
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PDF
energymeter.pdf
should then fit into 4kB and the microcontroller can be replaced by an ATmega48, for example. • Add functions such as remote reading, demand recording or multiple tariffs. Upgrade to ATmega168, for example, if the firmware exceeds 8kB. • Add integrated LCD support simply by migrating to ATmega169. No software is ever complete and there are probably as many potential improvements Meter Firmware as there are readers of this document. The good news is the firmware is open source and can be
in „Leistungsmessung über Shunt?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
doc2566.pdf
should then fit into 4kB and the microcontroller can be replaced by an ATmega48, for example. • Add functions such as remote reading, demand recording or multiple tariffs. Upgrade to ATmega168, for example, if the firmware exceeds 8kB. • Add integrated LCD support simply by migrating to ATmega169. No software is ever complete and there are probably as many potential improvements Meter Firmware as there are readers of this document. The good news is the firmware is open source and can be
in „Cadsoft Eagle“ · Platinen ·
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Datei
fft232.asm
pop AL reti ;----------------------------------------------------------; ; Initialize peripherals (ATmega8-16AC @16MHz) reset: clr _0 ;Zero reg. ldiw Z, RAMTOP ;Clear all variables ldiw X, RAMEND-RAMTOP+1 ; st Z+, _0 ; sbiw XL, 1 ; brne PC-2 ;/ sbiw ZL, 1 ;SP ú » outw SP, Z ;/ outi PORTB, 0b00101000 ;Port
in „Schnelle FFT in Assembler“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
fft232.asm
pop AL reti ;----------------------------------------------------------; ; Initialize peripherals (ATmega8-16AC @16MHz) reset: clr _0 ;Zero reg. ldiw Z, RAMTOP ;Clear all variables ldiw X, RAMEND-RAMTOP+1 ; st Z+, _0 ; sbiw XL, 1 ; brne PC-2 ;/ sbiw ZL, 1 ;SP ú » outw SP, Z ;/ outi PORTB, 0b00101000 ;Port
in „Schnelle FFT in Assembler“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
VirtualWire.cpp
setting 16 bit regs // is handled by the compiler OCR1A = nticks; // Enable interrupt #ifdef TIMSK1 // atmega168 TIMSK1 |= _BV(OCIE1A); #else // others TIMSK |= _BV(OCIE1A); #endif // TIMSK1 #endif // __AVR_ATtiny85__ // Set up digital IO pins pinMode(vw_tx_pin, OUTPUT); pinMode(vw_rx_pin, INPUT); pinMode(
in „Korrigierte "VirtualWire" Library für Attiny84 / 85“ · Projekte & Code ·
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Datei
foo.dwarf-3.txt
bit_is_clear(sfr, bit))" .LASF1649: .string "GNU C 4.8.0 20130306 (experimental) -fpreprocessed -mmcu=atmega168 -mrelax -g3 -Os -std=gnu99" .LASF1264: .string "WGM10 0" .LASF1452: .string "SIG_TWI _VECTOR(24)" .LASF1569: .string "AVR_STACK_POINTER_LO_ADDR _SFR_IO_ADDR(SPL)" .LASF597: .string "UACCUM_MIN"
in „Simple C Frage zum Typ enum“ · Mikrocontroller und Digitale Elektronik ·
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PDF
avr-libc-user-manual.pdf
• at90s2333 • at90s2343 • at90s4414 • at90s4433 • at90s4434 • at90s8515 • at90c8534 • at90s8535 ATmega Type Devices: • atmega8 • atmega103 • atmega128 • atmega16 • atmega161 • atmega162 • atmega163 • atmega169 • atmega32 • atmega323 • atmega64 [untested] • atmega8515 [untested] • atmega8535 [untested
in „C Tutorial gesucht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avr910.asm
Corrected Devic entry for ATTiny13 ;* V3.8 06.11.05 (Klaus) New Devicecodes (inoffiacal) for Mega48/88/168 and others, ;* Lockbyte write enhanced for newer Devices. Commands in ;* Note 17 implemented. Not comletely tested. ;* Code cleanup to save some Bytes. ;* V3.7e 11.01.05 (Klaus) Matched Devicecodes
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Datei
avr910.asm
Corrected Devic entry for ATTiny13 ;* V3.8 06.11.05 (Klaus) New Devicecodes (inoffiacal) for Mega48/88/168 and others, ;* Lockbyte write enhanced for newer Devices. Commands in ;* Note 17 implemented. Not comletely tested. ;* Code cleanup to save some Bytes. ;* V3.7e 11.01.05 (Klaus) Matched Devicecodes
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Datei
gcc9.2_binutils2.34_Konsolenausgabe.txt
/avr5/atmega165a avr/lib/avr5/atmega165p avr/lib/avr5/atmega165pa avr/lib/avr5/atmega168 avr/lib/avr5/atmega168a avr/lib/avr5/atmega168p avr/lib/avr5/atmega168pa avr/lib/avr5/atmega169 avr/lib/avr5/atmega169a avr
in „Toochain bauen avr-gcc-x.x mit binutils-2.34 funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
gcc10.0.1_binutils2.34_Konsolenausgabe_b.txt
/avr5/atmega165a avr/lib/avr5/atmega165p avr/lib/avr5/atmega165pa avr/lib/avr5/atmega168 avr/lib/avr5/atmega168a avr/lib/avr5/atmega168p avr/lib/avr5/atmega168pa avr/lib/avr5/atmega169 avr/lib/avr5/atmega169a avr
in „Toochain bauen avr-gcc-x.x mit binutils-2.34 funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR-ASM_Tutorial.pdf
RFM02 auf dem Board aufzulöten. Siehe: • Pollin Funk-AVR-Evaluationsboard • http://www.pollin.de ATmega8-Entwicklungsplatine Eine weitere Möglichkeit ist dieATmega8-Entwicklungsplatine von shop.mikrocontroller.net. Diese enthält eine Fassung für den Controller, einen Spannungswandler, die Beschaltung
in „AVR-Tutorial als PDF“ · Offtopic ·
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Datei
avr-m8_z80.asm
License ; along with this program. If not, see <http://www.gnu.org/licenses/>. ;.nolist #if defined atmega8 .include "m8def.inc" #elif defined atmega168 .include "m8def.inc" #else /* default */ .include "m88def.inc" ;FUSE_H=0xDF ;FUSE_L=0xF7 #endif .list #ifndef DRAM_DQ_ORDER /* If this is set to 1, the
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avr-m8_z80.asm
License ; along with this program. If not, see <http://www.gnu.org/licenses/>. ;.nolist #if defined atmega8 .include "m8def.inc" #elif defined atmega168 .include "m8def.inc" #else /* default */ .include "m88def.inc" ;FUSE_H=0xDF ;FUSE_L=0xF7 #endif .list #ifndef DRAM_DQ_ORDER /* If this is set to 1, the
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Datei
FFT232b.asm
pop AL reti ;----------------------------------------------------------; ; Initialize peripherals (ATmega8 @ 18,432MHz) reset: clr _0 ;Zero reg. ldiw Z, RAMTOP ;Clear all variables ldiw X, RAMEND-RAMTOP+1 ; st Z+, _0 ; sbiw XL, 1 ; brne PC-2 ;/ sbiw ZL, 1 ;SP ú » outw SP, Z ;/ outi PORTB, 0b00101000 ;Port
in „Schnelle FFT in Assembler“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
main.c
/*ATMega8*/ // avrdude -p m8 -c ponyser -P /dev/ttyS0 -U flash:w:main.hex -U lfuse:w:0xe0:m -U hfuse:w:0xd9:m #ifndef F_CPU #error F_CPU undefined #endif #define STR_HELPER(x) #x #define STR(x) STR_HELPER(x
in „AVR/GCC: pgm_read_byte funktioniert, pgm_read_word nicht?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
gcc10_binutils2.33.1_flex_Konsolenausgabe.txt
/avr5/atmega165a avr/lib/avr5/atmega165p avr/lib/avr5/atmega165pa avr/lib/avr5/atmega168 avr/lib/avr5/atmega168a avr/lib/avr5/atmega168p avr/lib/avr5/atmega168pa avr/lib/avr5/atmega169 avr/lib/avr5/atmega169a avr
in „Toochain bauen avr-gcc-x.x mit binutils-2.34 funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avr910_2313_v38c.asm
Corrected Devic entry for ATTiny13 ;* V3.8 06.11.05 (Klaus) New Devicecodes (inoffiacal) for Mega48/88/168 and others, ;* Lockbyte write enhanced for newer Devices. Commands in ;* Note 17 implemented. Not comletely tested. ;* Code cleanup to save some Bytes. ;* V3.7e 11.01.05 (Klaus) Matched Devicecodes
in „Programmer incl. neuem Code für Atmel AN910“ · Projekte & Code ·
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Datei
irmp.c
2009-2011 Frank Meyer - frank(at)fli4l.de * * $Id: irmp.c,v 1.110 2011/09/22 10:19:44 fm Exp $ * * ATMEGA88 @ 8 MHz * * Supported mikrocontrollers: * * ATtiny45, ATtiny85 * ATtiny84 * ATmega8, ATmega16, ATmega32 * ATmega162 * ATmega164, ATmega324, ATmega644, ATmega644P, ATmega1284 * ATmega88, ATmega88P, ATmega168, ATmega168P, ATmega328P * * Typical manufacturers of remote controls: * * SIRCS - Sony * NEC - NEC, Yamaha, Canon, Tevion, Harman/Kardon, Hitachi, JVC, Pioneer, Toshiba, Xoro, Orion, and many other
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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Datei
irmp.c
2009-2011 Frank Meyer - frank(at)fli4l.de * * $Id: irmp.c,v 1.116 2012/02/24 11:40:41 fm Exp $ * * ATMEGA88 @ 8 MHz * * Supported mikrocontrollers: * * ATtiny45, ATtiny85 * ATtiny84 * ATmega8, ATmega16, ATmega32 * ATmega162 * ATmega164, ATmega324, ATmega644, ATmega644P, ATmega1284 * ATmega88, ATmega88P, ATmega168, ATmega168P, ATmega328P * * Typical manufacturers of remote controls: * * SIRCS - Sony * NEC - NEC, Yamaha, Canon, Tevion, Harman/Kardon, Hitachi, JVC, Pioneer, Toshiba, Xoro, Orion, and many other
in „ATmega resettet dauernd“ · Mikrocontroller und Digitale Elektronik ·