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Atmel_AVR1916__USB_DFU_Boot_Loader_for_XMEGA.pdf
Flexible in-system programmer 2. Related parts This documentation applies to the following Atmel AVR XMEGA parts: • Atmel ATxmega128A1U • Atmel ATxmega64B1 • Atmel ATxmega64A1U • Atmel ATxmega128B3 • Atmel ATxmega256A3BU • Atmel ATxmega64B3 • Atmel ATxmega256A3U • Atmel ATxmega384C3 • Atmel ATxmega192A3U
in „Bootloader für ATXmega“ · Mikrocontroller und Digitale Elektronik ·
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Tabelle mit Atmel Microcontroller Modellen und Gehäusen
8-bit Atmel Microcontroller VQFN44 32 XMega16E5 8-bit Atmel Microcontroller TQFP32 21 XMega256A3 8-bit Atmel Microcontroller TQFP64 XMega256A3 8-bit Atmel Microcontroller; gebraucht TQFP64 6 XMega256A3U 8-bit Atmel Microcontroller TQFP64 80 XMega256A3U 8-bit Atmel Microcontroller; gebraucht TQFP64 7 XMega32A4U 8-bit Atmel Microcontroller TQFP44 16 XMega32E5 8-bit Atmel Microcontroller TQFP32 23 XMega384A3U 8-bit Atmel Microcontroller TQFP64
in „[V] div. Stiftleisten“ · Markt · · Screenshots
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AVR4100.pdf
X32K_XMEGA XMEGA ATxmega256A1 X32K_XMEGA XMEGA ATxmega256D3 X32K_XMEGA XMEGA ATxmega32A4 X32K_XMEGA XMEGA ATxmega32D4 X32K_XMEGA XMEGA ATxmega348A1 X32K_XMEGA XMEGA ATxmega64A1 X32K_XMEGA XMEGA ATxmega64A3 X32K_XMEGA XMEGA ATxmega64A4 X32K_XMEGA XMEGA ATxmega64B1 X32K_XMEGA XMEGA ATxmega64B3 X32K_XMEGA XMEGA ATxmega64D3 X32K_XMEGA XMEGA ATxmega64D4 X32K_XMEGA XMEGA ATxmega256A3B X32K_XRTC32 23 Atmel-8333E-AVR-03/2015
in „Passende Kondensatoren für Uhrenquarz gesucht“ · Mikrocontroller und Digitale Elektronik ·
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xmega_a1.pdf
Features • High-performance, Low-power 8/16-bit AVR XMEGA Microcontroller Non-Volatile Program and Data Memories – 64K - 384K Bytes of In-System Self-Programmable Flash – 4K - 8K Bytes Boot Section with Independent Lock Bits – 2 KB - 4 KB EEPROM – 4 KB -
in „Welchen Wert hat der Pull-up-Widerstand dieses XMega?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
xmega_freq_cntr.h
that clocks in TCCb's * count into TCCA's Capture register CCA. * Input: none * Output: none */ void xmega_freq_cntr_start_meas(void); void xmega_freq_cntr_start_meas1(void); /* CLK_SEL values CLK_SEL CPU_clk_div_by 0 OFF 1 div by 1 2 div by 2 3 div by 4 4 div by 8 5 div by 64 6 div by 256 7 div by 1024
in „Frequenzmessung von zwei Signalen mit ATxmega 128 A1“ · Mikrocontroller und Digitale Elektronik ·
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doc8383.pdf
code xmega_freq_cntr-drvr.c The driver code xmega_freq_cntr-drvr-drvr.h Contains #define device assignments avr1617_xmega_freq_cntr.aps The AVR Studio project file Open the avr1617_xmega_freq_cntr.aps file with
in „Frequenzmessung von zwei Signalen mit ATxmega 128 A1“ · Mikrocontroller und Digitale Elektronik ·
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Datei
releasenotes414rc1.txt
support for the ELF production file format. * Programming dialogs have been upgraded to support new XMEGA features. * Upgraded verbose I/O view for easier debugging of complex parts and the new XMEGA family. * Upgraded USB driver. * Full support for 32-bit and 64-bit version s of Vista * The new AVR Wireless
in „Honeywell Rondostat HR20E per AVR steuern und konfigurieren“ · Mikrocontroller und Digitale Elektronik ·
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XMEGA-1.pdf
XMEGA Introduction © Atmel Norway 2005 XMEGA™ • XMEGA targets • Leadership on Peripheral Performance • Leadership in Low Power Consumption • Extending AVR market reach • XMEGA AVR family • 44 - 100 pin packages
in „Einladung: XMEGA AVR - Vortrag der Firma Atmel“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AVRootloader.asm
; ATmega645 ;.include "m6490def.inc" ; ATmega6490 ;.include "m649def.inc" ; ATmega649 ;.include "m64Adef.inc" ; ATmega64A ;.include "m64def.inc" ; ATmega64 ;.include "m8515def.inc" ; ATmega8515 ;.include "m8535def.inc" ; ATmega8535 ;.include "m88def.inc" ; ATmega88 ;.include "m88PAdef.inc" ; ATmega88PA
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Atmel-42005-8-and-16-bit-AVR-Microcontrollers-XMEGA-E_Manual.pdf
Group configuration Typical closed window periods 0000 8CLK 8ms 0001 16CLK 16ms 0010 32CLK 32ms 0011 64CLK 64ms 0100 128CLK 0.128s 0101 256CLK 0.256s 0110 512CLK 0.512s 0111 1KCLK 1.0s 1000 2KCLK 2.0s 1001 4KCLK 4.0s 1010 8KCLK 8.0s 1011 – Reserved XMEGA E MANUAL 130 Atmel–42005E–AVR–XMEGA E–11/2014 WPER
in „ATxmega8E5 - ADC Gain Korrektur“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avr1617_xmega_freq_cntr.c
triggers a TCCA interrupt, * terminating the frequency measurement\n */ cpu_clk_to_32_mhz(); // Changes XMEGA frequency to 32 MHz // Initialize frequency counter system //sendUART('y'); xmega_freq_cntr_init(); // Initializes XMEGA timer/counters and Event System xmega_tcca_clk_freq_sel(CLK_SEL); // Selects the clock divider of TCCA. In this example to 1/64 of CLKcpu. xmega_tccd_clk_freq_sel(CLK_SEL); // Enter main application loop while(1){ /* User Application code */ result = 0; // Clear previous result result1 = 0; xmega_freq_cntr_start_meas(); // take
in „Frequenzmessung von zwei Signalen mit ATxmega 128 A1“ · Mikrocontroller und Digitale Elektronik ·
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XPLAIN_Shematic.pdf
Top-Level Xplain.SchDoc 1 2 3 4 5 6 7 8 1 2 3 4 5 6 7 8 2 3 1 1 T T JTAG/PDIInterface PQ2 NTC_EN XMEGA_PDI_DATA XMEGA_PDI_DATA XMEGA_RESET_PDI_CLK XMEGA_RESET_PDI_CLK PQ3 AUDIO_SD V3P3 J100 V3P3 1 HEADER2x5 1 1 RTC,32768Hz TCK PB6 1 2 P P C100 A TDO PB7 3 4 T T 22p A 5 6 GND TMS PB4 0 7 8 C Epson FC
in „Xplain: Schaltplan gesucht“ · Mikrocontroller und Digitale Elektronik ·
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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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AVRootloader.asm
devices ;.include "can128def.inc" ; AT90CAN128 ;.include "can32def.inc" ; AT90CAN32 ;.include "can64def.inc" ; AT90CAN64 ;.include "m1280def.inc" ; ATmega1280 ;.include "m1281def.inc" ; ATmega1281 ;.include "m1284Pdef.inc" ; ATmega1284P ;.include "m128def.inc" ; ATmega128 ;.include "m161def.inc" ; ATmega161
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Atmel-8072-Using-the-XMEGA-Clock-System_ApplicationNote_AVR1003.pdf
......................................................................12 Atmel AVR1003: Using the XMEGA Clock System [APPLICATION NOTE] 2 Atmel-8072F-Using-the-XMEGA-Clock-System_AVR1003_Application Note-07/2016 1. Introduction The Atmel XMEGA Clock System is a set of highly flexible modules that provides
in „ATXMEGA384C3-AU ADC mist ungenau“ · Mikrocontroller und Digitale Elektronik ·
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Xmega_Stick.PDF
5 green D33 65100516121 Würth R3 100R PIR301 P5%302PID30PID302 GND GND green Serial Dataflash for XMEGA 64MBIT Switch 3 PCS Micro B B Switch Switch1 GND OWwitchCh3 Switch2 SPI_DATAFLASH U1 Switch 3 1 8 MISO P I2U 1SI 1 SO P 7 U 1 0 8 C2 I2 2 02 I2 0 I2 POSPIADAFAS0\SS\ MOSI P I U 1 0 3 GND P I U 1 0
in „AtXmega256A3U Board mit USB Interface“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AVR-Studio_4.19.txt
ATtiny84A * ATtiny26 * ATmega8 / ATmega8A * ATmega16 / ATmega16A * ATmega32 / ATmega32A * ATmega64 / ATmega64A * ATmega2560 * ATmega2561 * ATmega640 Bug Fixes 13075 - avrdragon.exe not able generate .cac file in Windows 7 64 bit 13735 - AVRISPmkII: STK500 command line utility doesn't correctly verify
in „AT90S2312 und Atmel Studio 6 ?“ · Mikrocontroller und Digitale Elektronik ·
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INSTR_SET.pdf
ld r3,-Y ; Load r3 with data space loc. $62(Y pre dec) ldd r4,Y+2 ; Load r4 with data space loc. $64 Words: 1 (2 bytes) Cycles: 2 Cycles XMEGA: (i) 1(1) (ii) 11) (iii) 21) (iv) 2(1) Note: 1. IF the LD instruction is accessing internal SRAM, one extra cycle is inserted. 86 AVR Instruction Set 0856G–AVR
in „Schritt für Schritt zum Programierer!“ · Mikrocontroller und Digitale Elektronik ·
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INSTR_SET.pdf
ld r3,-Y ; Load r3 with data space loc. $62(Y pre dec) ldd r4,Y+2 ; Load r4 with data space loc. $64 Words: 1 (2 bytes) Cycles: 2 Cycles XMEGA: (i) 1(1) (ii) 11) (iii) 21) (iv) 2(1) Note: 1. IF the LD instruction is accessing internal SRAM, one extra cycle is inserted. 86 AVR Instruction Set 0856G–AVR
in „Maschinensprache für ATMEL“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR_Instruction_Set__doc0856.pdf
ld r3,-Y ; Load r3 with data space loc. $62(Y pre dec) ldd r4,Y+2 ; Load r4 with data space loc. $64 Words: 1 (2 bytes) Cycles: 2 Cycles XMEGA: (i) 1(1) (ii) 11) (iii) 21) (iv) 2(1) Note: 1. IF the LD instruction is accessing internal SRAM, one extra cycle is inserted. 86 AVR Instruction Set 0856G–AVR
in „Benötigte Taktzyklen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
avr_instruction_set.pdf
ld r3,-Y ; Load r3 with data space loc. $62(Y pre dec) ldd r4,Y+2 ; Load r4 with data space loc. $64 Words: 1 (2 bytes) Cycles: 2 Cycles XMEGA: (i) 1(1) (ii) 11) (iii) 21) (iv) 2(1) Note: 1. IF the LD instruction is accessing internal SRAM, one extra cycle is inserted. 86 AVR Instruction Set 0856G–AVR
in „HEX Code Tabelle“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Assembler_Manual.pdf
ld r3,-Y ; Load r3 with data space loc. $62(Y pre dec) ldd r4,Y+2 ; Load r4 with data space loc. $64 Words: 1 (2 bytes) (2) Cycles: (i) 1 (ii) 2 (2) (iii) 3 Cycles XMEGA: (i) 1(1) (1) (ii) 1 (iii) 21) (1) (iv) 2 Notes: 1. IF the LD instruction is accessing internal SRAM, one extra cycle is inserted.
in „Zero Flag und Conditional Branches“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR-Studio_4.19_Release_Notes.pdf
/ ATtiny84A * ATtiny26 * ATmega8 / ATmega8A * ATmega16 / ATmega16A * ATmega32 / ATmega32A * ATmega64 / ATmega64A * ATmega2560 * ATmega2561 * ATmega640 Bug Fixes 13075 - avrdragon.exe not able generate .cac file in Windows 7 64 bit 13735 - AVRISPmkII: STK500 command line utility doesn't correctly verify
in „Plugins für AVR-Studio 4 Was“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc0856.pdf
ld r3,-Y ; Load r3 with data space loc. $62(Y pre dec) ldd r4,Y+2 ; Load r4 with data space loc. $64 Words: 1 (2 bytes) Cycles: 2 Cycles XMEGA: (i) 1(1) (ii) 11) (iii) 21) (iv) 2(1) Note: 1. IF the LD instruction is accessing internal SRAM, one extra cycle is inserted. 86 AVR Instruction Set 0856F–AVR
in „Wie schnell ist euer uC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
usart_driver.h
generation.*/ /*! \file ********************************************************************* * * \brief XMEGA USART driver header file. * * This file contains the function prototypes and enumerator definitions * for various configuration parameters for the XMEGA USART driver. * * The driver is not intended
in „XMEGA + iPod“ · Mikrocontroller und Digitale Elektronik ·
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Datei
usart_driver.h
generation.*/ /*! \file ********************************************************************* * * \brief XMEGA USART driver header file. * * This file contains the function prototypes and enumerator definitions * for various configuration parameters for the XMEGA USART driver. * * The driver is not intended
in „IPOD and AVR anschließen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
usart_driver.h
generation.*/ /*! \file ********************************************************************* * * \brief XMEGA USART driver header file. * * This file contains the function prototypes and enumerator definitions * for various configuration parameters for the XMEGA USART driver. * * The driver is not intended
in „IPOD and AVR anschließen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR1304_Using_the_XMEGA_DMA_Controller.pdf
make the XMEGA DMAC a powerful module for all data oriented applications, such as signal processing and industrial control. This application note describes the basic functionality of the XMEGA DMAC with code examples
in „Wie funktioniert der DMA am Xmega“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XMEGA-A3BU_XPLAINED_Design_Documentation_rev2.PDF
1 2 3 4 5 6 7 8 U_PowerManagement XMEGA-A3BU_XPLAINED_PowerManagement.SchDoc A A XMEGA-A3BU_XPLAINED_Sensors.SchDoc U_XMEGA-A3BU_XPLAINED_Sensors U_XMEGA-A3BU_XPLAINED_MCU U_IO XMEGA-A3BU_XPLAINED_MCU.SchDoc XMEGA-A3BU_XPLAINED_IO.SchDoc
in „LED toggeln mit ATxmega256A3BU“ · Mikrocontroller und Digitale Elektronik ·
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PDF
as5installer_stable-5.0.1038-readme-1.pdf
Edition • Windows Vista (x86) with Service Pack 1 - all editions except Starter Edition • Windows XP (x64) with Service Pack 2 • Windows Vista (x64) with Service Pack 1, • Windows 7 (x86 and x64) • Windows Server 2003 R2 (x86 and x64) Hardware Requirements: • Computer that has a 1.6GHz or faster processor
in „AVR-Studio 5“ · Mikrocontroller und Digitale Elektronik ·
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PDF
avr8-gnu-toolchain-3.4.0.663-readme.pdf
atmega6450 atmega6450a atmega6450p atmega649a atmega649p atmega6490 atmega6490a atmega6490a atmega64a atmega64c1 atmega64m1 atmega64hve atmega32hvb atmega32hvbrevb at90can64 at90pwm216 at90pwm316 atmega16c1 atmega32c1 atmega16m1 atmega32m1 6 AVR 8-bit GNU Toolchain AVR 8-bit GNU Toolchain atmega16u4
in „ATtiny10 ISR TIM0_COMPB_vect“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ebi_driver.h
generation.*/ /*! \file ********************************************************************* * * \brief XMEGA External Bus Interface driver header file. * * This file contains the function prototypes and enumerator definitions * for various configuration parameters for the XMEGA EBI driver. * * The driver
in „SDRAM und Xmeaga-A X-Plained“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ebi_driver.h
generation.*/ /*! \file ********************************************************************* * * \brief XMEGA External Bus Interface driver header file. * * This file contains the function prototypes and enumerator definitions * for various configuration parameters for the XMEGA EBI driver. * * The driver
in „Viel RAM am kleinen Controller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FPGA_Spartan6.pdf
IO_L49N_D4_2 44 FPGA_IO_17/4.7D 117 IO_L63N_SCP6_0 IO_L62P_D5_2 43 FPGA_IO_14/4.6D FPGA_SRAM_A10/2.6C IO_L64P_SCP5_0 IO_L62N_D6_2 FPGA_IO_15/4.7D FPGA_SRAM_A11/2.6C 116 IO_L64N_SCP4_0 IO_L64P_D8_2 41 FPGA_IO_12/4.6D FPGA_SRAM_A12/2.6C 115 IO_L65P_SCP3_0 IO_L64N_D9_2 40 FPGA_IO_13/4.7D FPGA_SRAM_A13/2.6C 114
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Platine_Schaltplan.pdf
PA2 971 TASTER 2 5 GND 94 PA1 963 1 3 83 PB7 12 5 VIN T 22V 4 AVCC PA0 95 2 4 74 PB6 11 4 Z E 1 3 5 64 PB5 10 3 Y E 2 83 PB7 12 4 6 54 PB4 9 2 X R 74 PB6 11 5 7 44 PB3 8 C 1 GND T 64 PB5 10 34 PB2 7 1 G 2E 54 PB4 9 C C 24 PB1 6 3 P ENABLE ENABLE E 44 PB3 8 2 R 1 C 14 VCC PB0 5 S VCC VCC R C 34 PB2 7 1
in „Kleine Überprüfung von meiner ersten großen Platine“ · Platinen ·
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Datei
irsnd.c
, choose IRSND_XMEGA_OC0A, IRSND_XMEGA_OC0B, IRSND_XMEGA_OC0C, IRSND_XMEGA_OC0D, IRSND_XMEGA_OC1A, or IRSND_XMEGA_OC1B in irsndconfig.h # endif // IRSND_OCx #elif defined (PIC_C18) // Microchip C18 compiler //Nothing here
in „IR Fernbedienung mit IRSND“ · Mikrocontroller und Digitale Elektronik ·
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PDF
xminilab-manual.pdf
automatic waveform measurements, and waveform references. used as a development board for the AVR XMEGA microcontroller. • Display options: Persistence, Different grid options. Figure 2: Xminilab Block Diagram DS-Xminilab-1.6 - February, 2012 Page | 1 Xminilab User’s Manual About this manual This manual
in „USART - xmodem (Xminilab) - Bildübertragung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
xminilab-manual.pdf
automatic waveform measurements, and waveform references. used as a development board for the AVR XMEGA microcontroller. • Display options: Persistence, Different grid options. Figure 2: Xminilab Block Diagram DS-Xminilab-1.6 - February, 2012 Page | 1 Xminilab User’s Manual About this manual This manual
in „ATXmega32 flashen mit ATMEL Flip (Xminilab)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Atmel-JTAGICE3_UserGuide.pdf
, consult the AVR32UC Technical Reference Manuals, located on www.atmel.com/uc3. 4.3.2. Atmel AVR XMEGA OCD (JTAG and PDI physical) The Atmel AVR XMEGA OCD is otherwise known as PDI (Program and Debug Interface). Two physical interfaces (JTAG and PDI physical) provide access to the same OCD implementation
in „Arduino Nano über ISP programmieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
/***************************************************************************** Xminilab - AVR XMEGA Oscilloscope and Development Kit Gabotronics C.A. November 2011 Copyright 2011 Gabriel Anzziani This program is distributed under the terms of the GNU General Public License ATXMEGA32A4U Compiled with
in „ATXmega - Pin Eingang oder Ausgang“ · Mikrocontroller und Digitale Elektronik ·
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XM64_schematic.pdf
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 7
in „XMega DFU programmierung am Mac“ · Mikrocontroller und Digitale Elektronik ·
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PDF
avrdude.pdf
x256a1 ATxmega256A1 x256a3 ATxmega256A3 x256a3b ATxmega256A3B x32a4 ATxmega32A4 x32d4 ATxmega32D4 x64a1 ATxmega64A1 x64a3 ATxmega64A3 x64a4 ATxmega64A4 x64d4 ATxmega64D4 ucr2 deprecated, (*) The AT90S2323 and ATtiny22 use the same algorithm. (**) Flash addressing above 128 KB is not supported by all
in „AVRDude als Tool in AVR Studio 4 einbinden“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Devices.txt
84 LED10MM 75 CPOL-EUE2,5-6E 74 JP1E 72 TOPLED-3 72 DOPPELDIODE 72 C5/3 69 IRF9530 67 R-EU_R1206W 64 LEDSQR2X5 64 LEDSMT1206 63 C-EU050-030X075 59 ML10 58 CPOL-EUE2.5-6 57 PINHD-1X8 57 C5/5 57 1N4148DO35-7 56 R-EU_0411/12 54 10-XX 52 NEWRRM10 51 S2 51 RESEU-10 50 MEGA8-P 50 C-EUC0805N 48 1,6/0,8 46
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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atmel-42330-atmel-ice_userguide.pdf
microcontrollers on both JTAG and aWire interfaces ® • Programming and on-chip debugging of all Atmel AVR XMEGA family devices on both JTAG and PDI 2-wire interfaces • Programming (JTAG, SPI, UPDI) and debugging of all Atmel AVR 8-bit microcontrollers with OCD support on either JTAG, debugWIRE or UPDI interfaces
in „AVRISP mkII Connect Failed“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Atmel-ICE_UserGuide.pdf
microcontrollers on both JTAG and aWire interfaces ® • Programming and on-chip debugging of all Atmel AVR XMEGA family devices on both JTAG and PDI 2-wire interfaces • Programming (JTAG, SPI, UPDI) and debugging of all Atmel AVR 8-bit microcontrollers with OCD support on either JTAG, debugWIRE or UPDI interfaces
in „Atmel ICE Programmer und UPDI“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Dump_SD.txt
..A...`fj.. 01a0 b0 42 4f 4f 54 4d 47 52 20 20 20 20 0d 0a 52 65 .BOOTMGR ..Re 01b0 6d 6f 76 65 20 64 69 73 6b 73 20 6f 72 20 6f 74 move disks or ot 01c0 68 65 72 20 6d 65 64 69 61 2e ff 0d 0a 44 69 73 her media....Dis 01d0 6b 20 65 72 72 6f 72 ff 0d 0a 50 72 65 73 73 20 k error...Press 01e0 61 6e 79
in „SD Karte lässt sich nicht initialisieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
io.h
<avr/iox64a3u.h> #elif defined (__AVR_ATxmega64A4U__) # include <avr/iox64a4u.h> #elif defined (__AVR_ATxmega64B1__) # include <avr/iox64b1.h> #elif defined (__AVR_ATxmega64B3__) # include <avr/iox64b3.h> #elif
in „direkt in ein Register des Tiny5 schreiben“ · Mikrocontroller und Digitale Elektronik ·
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Datei
atmega32u2.patch
0100 +++ b/src/devdescr.cc 2016-03-08 22:14:49.018155272 +0100 @@ -4199,6 +4199,70 @@ }, { 0 }, // Xmega device descr. }, + // DEV_ATMEGA32U2 + // Get these data from the AVRStudio-Installation + // Atmel/AVR Tools/Partdescriptionfiles + { + "atmega32u2", + 0x958A, + 128, 256, // 32768 bytes flash + 4
in „avarice und atmega32u2“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.asm
;HD44780 Display 2x16 Xmega-Assemblerbaustein ;(c)2013 J.KORDAS jkordas(at)web.de ;---------------------------------------------------------------------------------- ;Aufruf mit 200 Hz (optimal) ;Display/(Virtual-)Portbelegung
in „HD44780 Display 2x16 Xmega-Assemblerbaustein“ · Projekte & Code ·
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Datei
X32A4_mit_4Kanal-ADC_MCP3428.bas
$regfile = "xm32a4def.dat" $crystal = 32000000 '32MHz $hwstack = 64 $swstack = 40 $framesize = 40 $lib "xmega.lib" $external _xmegafix_clear $external _xmegafix_rol_r1014 Config Osc = Disabled , 32mhzosc = Enabled '32MHz Config Sysclock = 32mhz , Prescalea = 1 , Prescalebc
in „? MCP342x Beispiel-Code / Hilfe ?“ · Mikrocontroller und Digitale Elektronik ·