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AVR_ATtiny_24_44_84.pdf
address registers X, Y, and Z are defined as described in Figure 4-3 below. 10 ATtiny24/44/84 8006K–AVR–10/10 ATtiny24/44/84 Figure 4-3. The X-, Y-, and Z-registers 15 XH XL 0 X-register 7 0 7 0 R27 (0x1B) R26 (0x1A) 15 YH YL 0 Y-register 7 0 7 0 R29 (0x1D) R28 (0x1C) 15 ZH ZL 0 Z-register 7 0 7 0 R31
in „AVR Programm brennen ohne Bootloader“ · Mikrocontroller und Digitale Elektronik ·
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Datei
gos.txt
--------------------------------------------------------------- *) test on real hardware (i got my avr-dragon today :-) *) include other avr devices *) optimize speed & size *) test *) port to other cpus/systems/compilers (i still have my old c64/a500/a2000 and a lot of other old hardware ...) *) debug
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Datei
main.c
1307, USA. ----------------------------------------------------------------------------*/ #include <avr/io.h> #include "config.h" #include "usart.h" #include "networkcard/enc28j60.h" #include "networkcard/rtl8019.h" #include "stack.h" #include "timer.h" #include "wol.h" #include "httpd.h" #include "cmd.h" #include "telnetd.h" #include "ntp.h" #include "base64.h" #include "http_get.h" #include "lcd.h" #include "udp_lcd.h" #include "analog.h" #include "camera/cam.h" #include "camera/servo.h" #include "sendmail.h" volatile unsigned int variable[MAX_VAR]; //
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Datei
main.c
1307, USA. ----------------------------------------------------------------------------*/ #include <avr/io.h> #include "config.h" #include "usart.h" #include "networkcard/enc28j60.h" #include "networkcard/rtl8019.h" #include "stack.h" #include "timer.h" #include "wol.h" #include "httpd.h" #include "cmd.h" #include "telnetd.h" #include "ntp.h" #include "base64.h" #include "http_get.h" #include "lcd.h" #include "udp_lcd.h" #include "analog.h" #include "camera/cam.h" #include "camera/servo.h" #include "sendmail.h" volatile unsigned int variable[MAX_VAR]; //
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Datei
main.c
1307, USA. ----------------------------------------------------------------------------*/ #include <avr/io.h> #include "config.h" #include "usart.h" #include "networkcard/enc28j60.h" #include "networkcard/rtl8019.h" #include "stack.h" #include "timer.h" #include "wol.h" #include "httpd.h" #include "cmd.h" #include "telnetd.h" #include "ntp.h" #include "base64.h" #include "http_get.h" #include "lcd.h" #include "udp_lcd.h" #include "analog.h" #include "camera/cam.h" #include "camera/servo.h" #include "sendmail.h" volatile unsigned int variable[MAX_VAR]; //
in „AVR NET IO RoBue 1.5 Automatischer Ablauf“ · Mikrocontroller und Digitale Elektronik ·
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Datei
iic_tx_solo.c
); wait_for_twint_set(); // After data is transmitted, TWINT is set by hardware and TWSR will be 0x28 if an ACK // is received for data and 0x30 in case of received data-NACK. lcd_gotoxy(5,1); lcd_putsf("OK2"); delay_ms(2000); if ((TWSR & 0xF8)==0x28) // If the value read from status register TWSR is 0x28, an ACK for sent data { // has been received. iic_stop(); lcd_gotoxy(0,3); lcd_putsf("Data ACK, TWSR=0x28"); delay_ms(2000); } else if ((TWSR & 0xF8)==0x30) // If the value read from status register
in „I²C (TWI) CodeVison - Problem bei Pinbelegung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
assembler_beginner.pdf
, kein Übertrag. Das Ergebnis ist hex 0EE6B280, was dezimal 250000000 ist und offenbar korrekt ... Avr-Asm-Tutorial 64 http://www.avr-asm-tutorial.net Die Multiplikation hat 19 Taktzyklen gebraucht, das ist sehr viel schneller als die Software-Multiplikation. Ein weiterer Vorteil: die benötigte Zeit
in „Assembler Tutorial als PDF ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ffft.S
output it in linear scale. ; ; The number of points FFT_N is defined in "ffft.h" and the value can be 64, ; 128, 256 or 512. ; ;----------------------------------------------------------------------------; ; 16bit fixed-point FFT performance with a MegaAVR @16MHz (measured) ; ; Points: Input, Execute, Output
in „Problem mit undefined reference to“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATtiny261A_Complete.pdf
with this option selected. 28 ATtiny261A/461A/861A 8197C–AVR–05/11 ATtiny261A/461A/861A It is possible to reach a higher accuracy than factory calibration by changing the OSCCAL regis- ter from software. See “OSCCAL – Oscillator
in „USI Interface als SPI Schnittstelle beim ATtiny261A“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR-ASM_Tutorial.pdf
AVR-Tutorial Aufbau des Tutorials • Einleitung: Worum geht es überhaupt? • BenötigteAusrüstung: Welche Hard- und Software brauche ich, umAVR-Mikrocontroller zu programmieren? • I/O-Grundlagen: Wie kann
in „AVR-Tutorial als PDF“ · Offtopic ·
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Datei
AVRprogDeviceCodes.txt
codes listed only. The rest of the 256 codes were not recognized. These values may be used in appnote AVR910(as a HW programmer interface) or in bootloaders in individual AVRs. AVRprog(part of AVRStudio) should be used as windows application interface for both uses. DeviceCode,RecognizedAs -------------
in „Bootloader Programmierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XMega-FPGA_V0.0.01.pdf
2 45 FPGA_IO_17/4.7D 118 IO_L63N_SCP6_0 IO_L62P_D5_2 44 FPGA_IO_14/4.6D FPGA_SRAM_A10/2.6C 117 IO_L64P_SCP5_0 IO_L62N_D6_2 43 FPGA_IO_15/4.7D FPGA_SRAM_A11/2.6C 116 41 FPGA_IO_12/4.6D 115 IO_L64N_SCP4_0 IO_L64P_D8_2 40 FPGA_SRAM_A12/2.6C 114 IO_L65P_SCP3_0 IO_L64N_D9_2 38 FPGA_IO_13/4.7D FPGA_SRAM_A13
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mega644.pdf
regular. 5.2 In-System Reprogrammable Flash Program Memory The ATmega164P/324P/644P contains 16K/32K/64K bytes On-chip In-System Reprogramma- ble Flash memory for program storage. Since all AVR instructions are 16 bits or 32 bits wide, the Flash is organized as 32/64 x 16. For software security, the Flash
in „AVR Controller braucht zu viel Strom“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATmegaXX4.pdf
regular. 7.2 In-System Reprogrammable Flash Program Memory The ATmega164P/324P/644P contains 16/32/64K bytes On-chip In-System Reprogrammable Flash memory for program storage. Since all AVR instructions are 16 or 32 bits wide, the Flash is organized as 32/64 x 16. For software security, the Flash Program
in „Atmega644PA Timer3“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATtiny841_Datasheet.pdf
14.4k 68 0.6% 138 -0.1% 79 0.0% 159 0.0% 86 -0.2% 173 -0.2% 19.2k 51 0.2% 103 0.2% 59 0.0% 119 0.0% 64 0.2% 129 0.2% 28.8k 34 -0.8% 68 0.6% 39 0.0% 79 0.0% 42 0.9% 86 -0.2% 38.4k 25 0.2% 51 0.2% 29 0.0% 59 0.0% 32 -1.4% 64 0.2% 57.6k 16 2.1% 34 -0.8% 19 0.0% 39 0.0% 21 -1.4% 42 0.9% 76.8k 12 0.2% 25 0.2%
in „TOCPMSA1 und TOCPMCOE Verhalten beim Attiny 841“ · Mikrocontroller und Digitale Elektronik ·
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ATtiny441_841.pdf
14.4k 68 0.6% 138 -0.1% 79 0.0% 159 0.0% 86 -0.2% 173 -0.2% 19.2k 51 0.2% 103 0.2% 59 0.0% 119 0.0% 64 0.2% 129 0.2% 28.8k 34 -0.8% 68 0.6% 39 0.0% 79 0.0% 42 0.9% 86 -0.2% 38.4k 25 0.2% 51 0.2% 29 0.0% 59 0.0% 32 -1.4% 64 0.2% 57.6k 16 2.1% 34 -0.8% 19 0.0% 39 0.0% 21 -1.4% 42 0.9% 76.8k 12 0.2% 25 0.2%
in „Suche nach ATtiny mit ADC und Gain > 20x“ · Mikrocontroller und Digitale Elektronik ·
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ATtiny841_Datasheet.pdf
14.4k 68 0.6% 138 -0.1% 79 0.0% 159 0.0% 86 -0.2% 173 -0.2% 19.2k 51 0.2% 103 0.2% 59 0.0% 119 0.0% 64 0.2% 129 0.2% 28.8k 34 -0.8% 68 0.6% 39 0.0% 79 0.0% 42 0.9% 86 -0.2% 38.4k 25 0.2% 51 0.2% 29 0.0% 59 0.0% 32 -1.4% 64 0.2% 57.6k 16 2.1% 34 -0.8% 19 0.0% 39 0.0% 21 -1.4% 42 0.9% 76.8k 12 0.2% 25 0.2%
in „sleep und Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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ATtiny841_Datasheet.pdf
14.4k 68 0.6% 138 -0.1% 79 0.0% 159 0.0% 86 -0.2% 173 -0.2% 19.2k 51 0.2% 103 0.2% 59 0.0% 119 0.0% 64 0.2% 129 0.2% 28.8k 34 -0.8% 68 0.6% 39 0.0% 79 0.0% 42 0.9% 86 -0.2% 38.4k 25 0.2% 51 0.2% 29 0.0% 59 0.0% 32 -1.4% 64 0.2% 57.6k 16 2.1% 34 -0.8% 19 0.0% 39 0.0% 21 -1.4% 42 0.9% 76.8k 12 0.2% 25 0.2%
in „Takt-Vorskalierungsregister beim Attiny841“ · Mikrocontroller und Digitale Elektronik ·
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Datei
minidds.asm
0x00,0x02,0x04,0x06,0x08,0x0a,0x0c,0x0e,0x10,0x12,0x14,0x16,0x18,0x1a,0x1c,0x1e .byte 0x20,0x22,0x24,0x26,0x28,0x2a,0x2c,0x2e,0x30,0x32,0x34,0x36,0x38,0x3a,0x3c,0x3e .byte 0x40,0x42,0x44,0x46,0x48,0x4a,0x4c,0x4e,0x50,0x52,0x54,0x56,0x58,0x5a,0x5c,0x5e .byte 0x60,0x62,0x64,0x66,0x68,0x6a,0x6c,0x6e,0x70,0x72,0x74,0x76,0x78,0x7a
in „assembler kompilieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
miniDDS.asm
0x00,0x02,0x04,0x06,0x08,0x0a,0x0c,0x0e,0x10,0x12,0x14,0x16,0x18,0x1a,0x1c,0x1e .db 0x20,0x22,0x24,0x26,0x28,0x2a,0x2c,0x2e,0x30,0x32,0x34,0x36,0x38,0x3a,0x3c,0x3e .db 0x40,0x42,0x44,0x46,0x48,0x4a,0x4c,0x4e,0x50,0x52,0x54,0x56,0x58,0x5a,0x5c,0x5e .db 0x60,0x62,0x64,0x66,0x68,0x6a,0x6c,0x6e,0x70,0x72,0x74,0x76,0x78,0x7a
in „Atmel Studio 7: Assembler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
profibus.c
for non-commercial use //* \note Info: http://www.mikrocontroller.net/topic/106174 //* \date 2010.04.28 Porting to AVR (WinAVR), Einar S. //* \note Pins used: USART RX / TX, Portd:2 controls TX enable. //* \note Crystal: see header file. //*/ #include <avr/io.h> #include <avr/signal.h> #include <avr/interrupt.h
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PDF
XM64_schematic.pdf
R8 G 10uF 100nF100n1F00n1F00nF GND 10k 100R P$1 P$2 D VCC R2 C1C2 R3 N SV1 SWITCH1 IC1 G 5V D 6 5 AVR_XMEGA_A3_ JP1 JP7 N 4 3 57 62 1 1 G 2 1 56 /Reset_PDI_CLK ADC0_AC0_AREF_PA0 63 2 2 PDI_Data ADC1_AC1_PA1 64 3 3 VCC ADC2_AC2_PA2 1 4 4 ADC3_AC3_PA3 2 5 5 D ADC4_AC4_PA4 3 6 6 N 14 ADC5_AC5_PA5 4 7 VCC
in „XMega DFU programmierung am Mac“ · Mikrocontroller und Digitale Elektronik ·
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Datei
timer.c
#include <avr/io.h> #include <avr/interrupt.h> #include "timer.h" #include "main.h" void timerInit() { // Timer0A setzen TCCR0A = (1<<WGM01); // CTC TCCR0B = (1<<CS01) | (1<<CS00); // PreScaler auf 64 -> 28,8 OCR0A
in „Rechecksignal auslesen und weiterleiten - Aussetzer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
grasshopper_schematic.pdf
PA27(SPI1-NPCS3/TIMER1-CLK0) PC27(LCDC-DATA1/MACB1-TXD2) F8 PC27 [1] [1,6] SW1 60 59 [1,6] LED6 L9 PA28(PWM-PWM0/TIMER1-A2) PC28(LCDC-DATA2/MACB1-TXD3) E8 PC28[1] 62 61 [1,6] LED7 M9 PA29(PWM-PWM1/TIMER1-B2) PC29(LCDC-DATA3/MACB1-RXD2) D8 PC29 [1] 64 63 [1,6] N9 B8 VIN LED8 R9 PA30(SM-GCLK0/TIMER1-CLK1
in „Grasshopper Inbetriebnahme“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dann.lst
MAX7219_SCK; 60 .LM2: 61 0002 BA9A sbi 55-0x20,2 25:dann.c **** MAX7219_DDR |= 1<<MAX7219_STB; 63 .LM3: 64 0004 BB9A sbi 55-0x20,3 26:dann.c **** MAX7219_PORT &= ~(1<<MAX7219_STB); 66 .LM4: 67 0006 C398 cbi 56-0x20,3 68 0008 2CE0 ldi r18,lo8(12) 69 .L2: 27:dann.c **** 28:dann.c **** for( i = 12; i; i-- ){
in „Welchen WINAVR nehmen ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Schnellblink.ino.asm
c:\temp\arduino_build_111654/Schnellblink.ino.elf: file format elf32-avr Disassembly of section .text: 00000000 <__vectors>: 0: 0c 94 34 00 jmp 0x68 ; 0x68 <__ctors_end> 4: 0c 94 3e 00 jmp 0x7c ; 0x7c <__bad_interrupt> 8: 0c 94 3e 00 jmp 0x7c ; 0x7c <__bad_interrupt> c:
in „C++ Klassenbibliothek für AVR“ · Mikrocontroller und Digitale Elektronik ·
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Datei
tn13servo1.asm
zwei Servopositionen mit ATTiny13 Beispielprogramm für Rolf Hegewald zum leichteren Einstieg in die AVR-ASM-Welt 01/2012 www.hanneslux.de Mit den Tastern kann (gemäß einem RS-Flipflop) zwischen zwei Zuständen umgeschaltet werden. Ein Modellbauservo fährt gemäß zuletzt betätigtem Taster zu der zugehörigen
in „Taster-Entprellung am Tiny13 in Assembler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Cinni-Regler_V1-1.c
Phasenanschnitt über // TRIAC-SolidStateRelais // HW: // - µC: Atmel ATmega8L-8PU // (8MHz / 2,7-5,5V / DIL28 schmal / -40...+85°C) // - Clock: 8 Mhz Quarz an XTAL1/XTAL2 // - PC0(ADC0,Pin23): Analogeingang Poti (=Sollwert) // rechts = kleinerer Wert // - PD0(RxD,Pin2)/PD1(TxD,Pin3): UART (zum Debuggen) // -
in „Vorstellung Drehzahlregler mit Triac in Steckergehäuse“ · Mikrocontroller und Digitale Elektronik ·
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Datei
FFT232b.asm
----------------------------------------------------; ; 16bit fixed point FFT performance with megaAVR @16MHz ; ; Points: Input, FFT, Output, Total: Throughput ; 64pts: .17ms, 1.9ms, 1.4ms, 3.5ms: 18.3kpps (expected) ; 128pts: .34ms, 4.4ms, 2.6ms, 7.3ms: 17.5kpps (measured) ; 256pts: .68ms, 10.1ms, 5.2ms
in „Schnelle FFT in Assembler“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
attiny84.pdf
address registers X, Y, and Z are defined as described in Figure 4-3 below. 10 ATtiny24/44/84 8006H–AVR–10/09 ATtiny24/44/84 Figure 4-3. The X-, Y-, and Z-registers 15 XH XL 0 X-register 7 0 7 0 R27 (0x1B) R26 (0x1A) 15 YH YL 0 Y-register 7 0 7 0 R29 (0x1D) R28 (0x1C) 15 ZH ZL 0 Z-register 7 0 7 0 R31
in „Attiny 84 ISP?!“ · Mikrocontroller und Digitale Elektronik ·
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Datei
fft232.asm
----------------------------------------------------; ; 16bit fixed point FFT performance with megaAVR @16MHz ; ; Points: Input, FFT, Output, Total: Throughput ; 64pts: .17ms, 1.9ms, 1.4ms, 3.5ms: 18.3kpps (expected) ; 128pts: .34ms, 4.4ms, 2.6ms, 7.3ms: 17.5kpps (measured) ; 256pts: .68ms, 10.1ms, 5.2ms
in „Schnelle FFT in Assembler“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
fft232.asm
----------------------------------------------------; ; 16bit fixed point FFT performance with megaAVR @16MHz ; ; Points: Input, FFT, Output, Total: Throughput ; 64pts: .17ms, 1.9ms, 1.4ms, 3.5ms: 18.3kpps (expected) ; 128pts: .34ms, 4.4ms, 2.6ms, 7.3ms: 17.5kpps (measured) ; 256pts: .68ms, 10.1ms, 5.2ms
in „Schnelle FFT in Assembler“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
abused_bootloder_disassembly.txt
andi r16, 0x7B ; 123 1b58: 10 91 81 00 lds r17, 0x0081 1b5c: 11 0f add r17, r17 1b5e: c6 51 subi r28, 0x16 ; 22 1b60: d0 40 sbci r29, 0x00 ; 0 1b62: 02 bb out 0x12, r16 ; 18 1b64: 11 f0 breq .+4 ; 0x1b6a <_binary_boot_raw_start+0x1b6a> 1b66: 10 93 7b 00 sts 0x007B, r17 1b6a: 10 e4 ldi r17, 0x40 ; 64
in „ATmega-Bootloader vom Hauptprogramm aus flashen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
atmega2560_2561.pdf
. PCINT9, Pin Change Interrupt Source 9. The PJ0 pin can serve as External Interrupt Sources Table 64 and Table 65 relates the alternate functions of Port J to the overriding signals shown in Figure 36 on page 88 108 ATmega640/1280/1281/2560/2561 2549I–AVR–07/06 ATmega640/1280/1281/2560/2561 Table 64
in „Ethernet Buchse“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ttester.pdf
8-bit AVR with 4/8/16/32KBytes In-System Programmable Flash - ATme- ga48 - ATmega328,. Manual, 8271D-AVR-05/11, 2011 [4] Atmel Corporation Atmel AVR126: ADC of megaAVR in Single Ended Mode,. Application Note,
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PDF
ttester.pdf
8-bit AVR with 4/8/16/32KBytes In-System Programmable Flash - ATme- ga48 - ATmega328,. Manual, 8271D-AVR-05/11, 2011 [4] Atmel Corporation Atmel AVR126: ADC of megaAVR in Single Ended Mode,. Application Note,
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PDF
ttester.pdf
8-bit AVR with 4/8/16/32KBytes In-System Programmable Flash - ATme- ga48 - ATmega328,. Manual, 8271D-AVR-05/11, 2011 [4] Atmel Corporation Atmel AVR126: ADC of megaAVR in Single Ended Mode,. Application Note,
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Datei
ODM100.c
Latin Small Letter V {0x3C,0x40,0x30,0x40,0x3C}, // ( 87) w - 0x0077 Latin Small Letter W {0x44,0x28,0x10,0x28,0x44}, // ( 88) x - 0x0078 Latin Small Letter X {0x0C,0x50,0x50,0x50,0x3C}, // ( 89) y - 0x0079 Latin Small Letter Y {0x44,0x64,0x54,0x4C,0x44}, // ( 90) z - 0x007A Latin Small Letter Z {0x00,0x08,0x36,0x41,0x00
in „Frage zum ODM100 OLED Bausatz von ELV“ · Mikrocontroller und Digitale Elektronik ·
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Datei
oled1.c
Latin Small Letter V {0x3C,0x40,0x30,0x40,0x3C}, // ( 87) w - 0x0077 Latin Small Letter W {0x44,0x28,0x10,0x28,0x44}, // ( 88) x - 0x0078 Latin Small Letter X {0x0C,0x50,0x50,0x50,0x3C}, // ( 89) y - 0x0079 Latin Small Letter Y {0x44,0x64,0x54,0x4C,0x44}, // ( 90) z - 0x007A Latin Small Letter Z {0x00,0x08,0x36,0x41,0x00
in „AVR Oled Display odm 100-Wie ansteuern?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
oled.c
Latin Small Letter V {0x3C,0x40,0x30,0x40,0x3C}, // ( 87) w - 0x0077 Latin Small Letter W {0x44,0x28,0x10,0x28,0x44}, // ( 88) x - 0x0078 Latin Small Letter X {0x0C,0x50,0x50,0x50,0x3C}, // ( 89) y - 0x0079 Latin Small Letter Y {0x44,0x64,0x54,0x4C,0x44}, // ( 90) z - 0x007A Latin Small Letter Z {0x00,0x08,0x36,0x41,0x00
in „ODM100 OLED bleibt schwarz“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ODM100.c
Latin Small Letter V {0x3C,0x40,0x30,0x40,0x3C}, // ( 87) w - 0x0077 Latin Small Letter W {0x44,0x28,0x10,0x28,0x44}, // ( 88) x - 0x0078 Latin Small Letter X {0x0C,0x50,0x50,0x50,0x3C}, // ( 89) y - 0x0079 Latin Small Letter Y {0x44,0x64,0x54,0x4C,0x44}, // ( 90) z - 0x007A Latin Small Letter Z {0x00,0x08,0x36,0x41,0x00
in „SSD 1351 - OLED ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Lichtorgel.ino
zum abgleich des Eingangsspannungsteilers //Entwickelt 2015 von Christof Rieger //sollte auf allen AVR-8 Arduinos laufen mit 16MHz und mindestens mit ATmega168 //Ein Geschenk an die Arduinogemeinde. Die Vermarktung des Cods ist verboten !!! //#include <LiquidCrystal.h> //Der Wert der überschritten werden
in „5 Kanal Digital-Lichtorgel für Arduino“ · Projekte & Code ·
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Datei
iotn841.h
SUCH DAMAGE. ****************************************************************************/ #ifndef _AVR_ATTINY841_H_INCLUDED #define _AVR_ATTINY841_H_INCLUDED #ifndef _AVR_IO_H_ # error "Include <avr/io.h> instead of this file." #endif #ifndef _AVR_IOXXX_H_ # define _AVR_IOXXX_H_ "iotn841.h" #else # error
in „Neue ATtinies 441 und 841“ · Mikrocontroller und Digitale Elektronik ·
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Datei
solarcontrol.c
#include <avr/interrupt.h> #include <avr/signal.h> #include <avr/io.h> #include <stdint.h> #include <stdlib.h> #include <string.h> /* Funktion-Definitionen */ void initClock (void); void initUsart (uint32_t baud)
in „Ich werd aus den Warnungen des Compilers nicht schlau ;-)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
40001893B.pdf
0x3800 Table 6-3. Physical Properties of Flash Memory Property ATtiny1617/1616/1614 Size 16KB Page size 64B Number of pages 256 Start address 0x8000 © 2017 Microchip Technology Inc. Datasheet Preliminary DS40001893B-page 20 8-bit AVR Microcontroller 6.2 Memory Map Figure 6-1. Memory Map ATtiny1617/ATtiny1616
in „ATtiny1614 CPU Takt Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATtiny1614_1616_1617.pdf
0x3800 Table 6-3. Physical Properties of Flash Memory Property ATtiny1617/1616/1614 Size 16KB Page size 64B Number of pages 256 Start address 0x8000 © 2017 Microchip Technology Inc. Datasheet Preliminary DS40001893B-page 20 8-bit AVR Microcontroller 6.2 Memory Map Figure 6-1. Memory Map ATtiny1617/ATtiny1616
in „124Bus Beschreibung verfuegbar?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
spi.c
**********************************************************************/ #include "spi.h" #include <avr/io.h> #include <avr/iom8.h> /* Êàê ýòî ïîíèìàåòñÿ SPI èñïîëüçóåò òðè ñîåäèíåíèÿ(SS ïîä÷èíåííîãî ìîæåò áûòü ïðîñàæå íà 0). Íî åñëè âû õîòèòå èñïîëüçîâàòü sleep mode íà ïîä÷èíåííîì, òîãäà íóæíî èñïîëüçîâàòü
in „SPI hängt beim Warten auf Ende der Übertragung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
regler_sensor_lcd.c
/* * main.c * * Created: 11.03.2013 10:28:50 * Author: */ #include <avr/io.h> #include <util/delay.h> #include <avr/interrupt.h> #include <stdio.h> #include <stdlib.h> #include "UART.h" #include "1wire.h" #include "measure.h" #include "hardware.h
in „LCD Display funktioniert bei Zusammenstellung nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.h
to newer AVR-GCC compiler !" #endif #include <inttypes.h> #include <avr/pgmspace.h> #include "main.h" #if LCD_IO_MODE #elif defined(__AVR_AT90S4414__) || defined(__AVR_AT90S8515__) || defined(__AVR_ATmega64__) || \ defined(__AVR_ATmega8515__)|| defined(__AVR_ATmega103__) || defined(__AVR_ATmega128__) || \ defined(__AVR_ATmega161__) || defined(__AVR_ATmega162__) /* * memory mapped mode is only supported when the device has an
in „DCF auf INT0“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mw_lcd.h
to newer AVR-GCC compiler !" #endif #include <inttypes.h> #include <avr/pgmspace.h> #include "mw_main.h" #if LCD_IO_MODE #elif defined(__AVR_AT90S4414__) || defined(__AVR_AT90S8515__) || defined(__AVR_ATmega64__) || \ defined(__AVR_ATmega8515__)|| defined(__AVR_ATmega103__) || defined(__AVR_ATmega128__) || \ defined(__AVR_ATmega161__) || defined(__AVR_ATmega162__) /* * memory mapped mode is only supported when the device has an
in „DCF auf INT0“ · Mikrocontroller und Digitale Elektronik ·