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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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Datei
eeprom_driver.h
generation.*/ /*! \file ********************************************************************* * * \brief XMEGA EEPROM driver header file. * * This file contains the function prototypes and enumerator definitions * for various configuration parameters for the XMEGA EEPROM driver. * * The driver is not intended
in „XMEGA64 Probleme mit EEPROM (Resets)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
twi_master_driver.h
generation.*/ /*! \file ********************************************************************* * * \brief XMEGA TWI master driver header file. * * This file contains the function prototypes and enumerator definitions * for various configuration parameters for the XMEGA TWI master driver. * * The driver is not
in „TWI - Hilfe!“ · Mikrocontroller und Digitale Elektronik ·
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Datei
twi_master_driver.h
generation.*/ /*! \file ********************************************************************* * * \brief XMEGA TWI master driver header file. * * This file contains the function prototypes and enumerator definitions * for various configuration parameters for the XMEGA TWI master driver. * * The driver is not
in „PCF8574AP Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
twi_master_driver.h
generation.*/ /*! \file ********************************************************************* * * \brief XMEGA TWI master driver header file. * * This file contains the function prototypes and enumerator definitions * for various configuration parameters for the XMEGA TWI master driver. * * The driver is not
in „Probleme I2C“ · Mikrocontroller und Digitale Elektronik ·
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Datei
twi_master_driver.h
generation.*/ /*! \file ********************************************************************* * * \brief XMEGA TWI master driver header file. * * This file contains the function prototypes and enumerator definitions * for various configuration parameters for the XMEGA TWI master driver. * * The driver is not
in „I2C mit Xmega128 Grundlagen“ · 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
eeprom_driver.h
generation.*/ /*! \file ********************************************************************* * * \brief XMEGA EEPROM driver header file. * * This file contains the function prototypes and enumerator definitions * for various configuration parameters for the XMEGA EEPROM driver. * * The driver is not intended
in „xmega eeprom Probleme“ · Mikrocontroller und Digitale Elektronik ·
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Datei
control_ram_version1.vhd
in std_logic ; -- ce Taktteiler im Modul "clock_gen" cpu_RD_CLK : in std_logic ; -- Takt kommt von XMega max.32MHz TRIGGER : in std_logic ; -- Taktsyncroner Impuls von einer Taktperiode wenn Trigger erkannt wurde UPDATE : in std_logic ; -- Taktsyncroner Impuls von einer Taktperiode wenn neue Control-Daten RUN : in std_logic ; -- Impuls kommt von XMega max.32MHz DATA_IN : in std_logic_vector ( 7 downto 0 ); -- Taktsyncrone Daten von ADC (Daten auch syncron zu Trigger) PRE_TRIGGER : in std_logic_vector ( 8 downto 0 ); -- Adresse, ab wo Nachtriggerdaten
in „[VHDL] Daten von ADC in BRAM speichern“ · FPGA, VHDL & Co. ·
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Datei
TWI_Slave_Xmega.c
#include "twi_slave_driver.h" //#include "global.h" static TWI_Slave_Data_t *TWI_Data; // TWI_Slave_Data_t struct instance /* Initialize TWI Device * The function enable all neccessary TWI interrupts, select TWI slave interrupt * level, generates the slave address and startet TWI device. * Parameters: * twi the TWI hardware interface * address the slave address * * ========================================================================= */ void TWI_Slave_Initialization(TWI_t *twi, unsigned char address) { // Enable Data Interrupt // Enable Address/Stop Interrupt // Enable Stop Interrupt // Set
in „TWI Slave auf Xmega“ · Mikrocontroller und Digitale Elektronik ·
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test_xmega_interrupt.asm
/* * test_xmega_interrupt.asm * * Created: 27.10.2013 08:44:38 * Author: ____ */ .def temp1 = r16 .def temp2 = r17 .def temp3 = r18 .equ Taktfrequenz = 32000000 .include "test.asm" .org 0x0000 rjmp Start_Programm
in „Interrupt Atxmega 32 A4U“ · Mikrocontroller und Digitale Elektronik ·
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Datei
test_xmega_interrupt.asm
/* * test_xmega_interrupt.asm * * Created: 27.10.2013 08:44:38 * Author: */ .def temp1 = r16 .def temp2 = r17 .def temp3 = r18 .equ Taktfrequenz = 32000000 .org 0x0000 rjmp Start_Programm .org PORTD_INT0_vect rjmp
in „Interrupt Atxmega 32 A4U“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DmxReceiverXmega.c
// // *** DMX-Receiver mit ATXmega128-A1 *** // #include <avr/io.h> #include <avr/interrupt.h> volatile uint8_t DmxRx_status = 0; volatile uint16_t DmxRx_ChannelCounter = 0; volatile uint8_t DmxRx_Value[514]; void dmx_init(void); void Clock_init(void) { OSC.CTRL |= OSC_RC32MEN_bm; while (!(OSC.STATUS & OSC_RC32MRDY_bm)); CCP = CCP_IOREG_gc; CLK.CTRL = (CLK.CTRL & ~CLK_SCLKSEL_gm) | CLK_SCLKSEL_RC32M_gc; } int main(void) { PORTE.DIR = 0xFF; // PORTE as output PORTE.OUT = 0xFF; // All LED's off PORTC.DIRCLR = PIN2_bm; dmx_init(); while(1) { //TODO:: Please write your application code } } void dmx_init
in „DMX-Receiver mit xmega - UART empfängt nur Müll“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XMega_Uniboard_brd.pdf
21 40 C20 C1 P JP4 C C C C C J C3 C2 1NOC 2*16 1Q JP3 C 6 111C J 51C IL1 9R 4CI EAGOG-M1 21C C C P 2 1 J 42CL C 11R C 2 61C 1 R 1 81C 20 D R 1X L 1 2 3 4 P 1DSE R6E RED EC19 J L0 S L S L SD D 2L S 1 E E I R C C LR R R SW1
in „Kleines Xmega-Board - Verbesserungsvorschläge?“ · Platinen ·
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XMega_Uniboard_sch.pdf
JP5 + PB5 9 10 JP3 1 2 1 2 3 4 JP_JTAG 3 4 5 6 5 6 GND 7 8 JP_PDI k 9 9 10 1 R GND JP_ADC IC1 S AVR_XMEGA_A3_ GND R 57 /Reset_PDI_CLK ADC0_AC0_AREF_PA0 62 56 PDI_Data ADC1_AC1_PA1 63 ADC2_AC2_PA2 64 100nF ADC3_AC3_PA3 1 ADC4_AC4_PA4 2 C13 ADC5_AC5_PA5 3 B 14 GND ADC6_AC6_PA6 4 24 GND ADC7_AC7_AC0OUT_PA7
in „Kleines Xmega-Board - Verbesserungsvorschläge?“ · Platinen ·
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XMega_Dev_Board.pdf
P P 1 1 1 1 1 1 1 1 2 2 2 0 1 1 2 3 4 5 6 7 8 9 1 1 J? Pin 12-22 Carrier Board Sheet: / D D File: XMega Dev Board.sch Title: Size: A4 Date: Rev: KiCad E.D.A. kicad (5.1.0)-1 Id: 1/1 1 2 3 4 5 6
in „XMega Entwicklungsboard so in Ordnung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR1304_Using_the_XMEGA_DMA_Controller.pdf
AVR1304: Using the XMEGA DMA Controller Features 8-bit • Four separate DMA channels Microcontrollers • Flexible channel priority selection • Three addressing modes: static, increment, and decrement • Source and/or destination
in „Wie funktioniert der DMA am Xmega“ · Mikrocontroller und Digitale Elektronik ·
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Datei
eeprom_driver.c
generation.*/ /*! \file ********************************************************************* * * \brief XMEGA EEPROM driver source file. * * This file contains the function implementations for the XMEGA EEPROM driver. * * The driver is not intended for size and/or speed critical code, since * most functions
in „xmega eeprom Probleme“ · 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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Datei
spi_driver.c
generation.*/ /*! \file ********************************************************************* * * \brief * XMEGA SPI driver source file. * * This file contains the function implementations the XMEGA SPI driver. * * The driver is not intended for size and/or speed critical code, since * most functions are just
in „Micro SD Karte SPI an Xmega“ · Mikrocontroller und Digitale Elektronik ·
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Datei
spi_driver.c
generation.*/ /*! \file ********************************************************************* * * \brief * XMEGA SPI driver source file. * * This file contains the function implementations the XMEGA SPI driver. * * The driver is not intended for size and/or speed critical code, since * most functions are just
in „ATXMega32e5 SPI MISO immer 0 mit AT45DB161 Flash IC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ebi_driver.c
generation.*/ /*! \file ********************************************************************* * * \brief XMEGA External Bus Interface driver source file. * * This file contains the function implementations for the XMEGA EBI driver. * * The driver is not intended for size and/or speed critical code, since *
in „SDRAM und Xmeaga-A X-Plained“ · Mikrocontroller und Digitale Elektronik ·
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Datei
usart_driver.c
generation.*/ /*! \file ********************************************************************* * * \brief * XMEGA USART driver source file. * * This file contains the function implementations the XMEGA interrupt * and polled USART driver. * * The driver is not intended for size and/or speed critical code, since
in „XMEGA + iPod“ · Mikrocontroller und Digitale Elektronik ·
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Datei
clksys_driver.c
generation.*/ /*! \file ********************************************************************* * * \brief XMEGA Clock System driver source file. * * This file contains the function implementations for the XMEGA Clock * System driver. * * The driver is not intended for size and/or speed critical code, since *
in „IPOD and AVR anschließen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
usart_driver.c
generation.*/ /*! \file ********************************************************************* * * \brief * XMEGA USART driver source file. * * This file contains the function implementations the XMEGA interrupt * and polled USART driver. * * The driver is not intended for size and/or speed critical code, since
in „IPOD and AVR anschließen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AVRootloader.asm
byte2(RamEnd) xout SPH, cmdl .endif clr zeroh ldi polyl, byte1(POLYNOM) ldi polyh, byte2(POLYNOM) .if XMega ldi cmdl, byte3(BootSign *2) xout RAMPZ, cmdl .elif RAMPZ xout RAMPZ, zerol .endif .if UseAutobaud ; baudrate detection abd: ldi cmdl, byte3(BootDelay / 6) ; autobaud based on P.Dannegger with some
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PDF
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
eeprom_driver.c
generation.*/ /*! \file ********************************************************************* * * \brief XMEGA EEPROM driver source file. * * This file contains the function implementations for the XMEGA EEPROM driver. * * The driver is not intended for size and/or speed critical code, since * most functions
in „XMEGA64 Probleme mit EEPROM (Resets)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
twi_master_driver.c
generation.*/ /*! \file ********************************************************************* * * \brief * XMEGA TWI master driver source file. * * This file contains the function implementations the XMEGA master TWI * driver. * * The driver is not intended for size and/or speed critical code, since * most functions
in „TWI - Hilfe!“ · Mikrocontroller und Digitale Elektronik ·
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Datei
twi_master_driver.c
generation.*/ /*! \file ********************************************************************* * * \brief * XMEGA TWI master driver source file. * * This file contains the function implementations the XMEGA master TWI * driver. * * The driver is not intended for size and/or speed critical code, since * most functions
in „PCF8574AP Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
twi_master_driver.c
generation.*/ /*! \file ********************************************************************* * * \brief * XMEGA TWI master driver source file. * * This file contains the function implementations the XMEGA master TWI * driver. * * The driver is not intended for size and/or speed critical code, since * most functions
in „Probleme I2C“ · Mikrocontroller und Digitale Elektronik ·
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Datei
twi_master_driver.c
generation.*/ /*! \file ********************************************************************* * * \brief * XMEGA TWI master driver source file. * * This file contains the function implementations the XMEGA master TWI * driver. * * The driver is not intended for size and/or speed critical code, since * most functions
in „I2C mit Xmega128 Grundlagen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SPI_Driver.c
generation.*/ /*! \file ********************************************************************* * * \brief * XMEGA SPI driver source file. * * This file contains the function implementations the XMEGA SPI driver. * * The driver is not intended for size and/or speed critical code, since * most functions are just
in „SPI mit XMEGA und Display“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Xmega_IO_bits_definition.h
// Generic Port Pins #ifndef PIN0_bm #define PIN0_bm 0x01 #define PIN0_bp 0 #define PIN1_bm 0x02 #define PIN1_bp 1 #define PIN2_bm 0x04 #define PIN2_bp 2 #define PIN3_bm 0x08 #define PIN3_bp 3 #define PIN4_bm 0x10 #define PIN4_bp 4 #define PIN5_bm 0x20 #define PIN5_bp 5 #define PIN6_bm 0x40 #define PIN6_bp 6 #define PIN7_bm 0x80 #define PIN7_bp 7 #endif // ***** PORTA ************************ // PORTA - Port A Data Register #define PORTA0 0 // Port A Data Register bit 0 #define PA0 0 // For compatibility #define PORTA1 1 // Port A Data Register bit 1 #define PA1 1 // For compatibility #define
in „ATMEGA zu XMEGA Code“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Xmega_test_5_debounce.c
/************************************************************************/ /* */ /* Debouncing 8 Keys */ /* Sampling 4 Times */ /* With Repeat Function */ /* */ /* Author: Peter Dannegger */ /* danni@specs.de */ /* */ /************************************************************************/ #include <stdint.h> #include <avr/io.h> #include <avr/interrupt.h> #ifndef F_CPU #define F_CPU 32000000 // processor clock frequency #warning kein F_CPU definiert #endif #define KEY_DDR PORTA_DIR #define KEY_PORT PORTA #define KEY_PIN PORTA_IN #define KEY0 0 #define KEY1 1 #define KEY2 2 #define ALL_KEYS (1
in „Peter Dannegger's Debounce Routine für Xmega“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Xmega_test_5_debounce.c
/************************************************************************/ /* */ /* Debouncing 8 Keys */ /* Sampling 4 Times */ /* With Repeat Function */ /* */ /* Author: Peter Dannegger */ /* danni@specs.de */ /* */ /************************************************************************/ #include <stdint.h> #include <avr/io.h> #include <avr/interrupt.h> #ifndef F_CPU #define F_CPU 32000000 // processor clock frequency #warning kein F_CPU definiert #endif #define KEY_DDR PORTA_DIR #define KEY_PORT PORTA #define KEY_PIN PORTA_IN #define KEY0 0 #define KEY1 1 #define KEY2 2 #define ALL_KEYS (1
in „Peter Dannegger's Debounce Routine für Xmega“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Xmega_test_7_PWM.c
/* Eine 8-kanalige PWM mit intelligentem Lösungsansatz ATxmega256 A3 @ 32 MHz */ #define F_CPU 32000000L // Systemtakt in Hz #include <util/delay.h> // Defines an den Controller und die Anwendung anpassen #define F_PWM 100L // PWM-Frequenz in Hz #define PWM_PRESCALER 8 // Vorteiler für den Timer #define PWM_STEPS 256 // PWM-Schritte pro Zyklus(1..256) #define PWM_PORT PORTD.OUT // Port für PWM #define PWM_DDR PORTD.DIR // Datenrichtungsregister für PWM #define PWM_CHANNELS 8 // Anzahl der PWM-Kanäle // ab hier nichts ändern, wird alles berechnet #define T_PWM (F_CPU/(PWM_PRESCALER*F_PWM*PWM_STEPS)
in „AtXmega Software PWM (Bsp aus Forum)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Xmega_test_7_PWM.c
/* Eine 8-kanalige PWM mit intelligentem Lösungsansatz ATxmega256 A3 @ 32 MHz */ #define F_CPU 32000000L // Systemtakt in Hz // Defines an den Controller und die Anwendung anpassen #define F_PWM 100L // PWM-Frequenz in Hz #define PWM_PRESCALER 8 // Vorteiler für den Timer #define PWM_STEPS 256 // PWM-Schritte pro Zyklus(1..256) #define PWM_PORT PORTD.OUT // Port für PWM #define PWM_DDR PORTD.DIR // Datenrichtungsregister für PWM #define PWM_CHANNELS 8 // Anzahl der PWM-Kanäle // ab hier nichts ändern, wird alles berechnet #define T_PWM (F_CPU/(PWM_PRESCALER*F_PWM*PWM_STEPS)) // Systemtakte pro PWM-Takt
in „AtXmega Software PWM (Bsp aus Forum)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Xmega_test_9_outputcompare.c
#include <avr/io.h> #include <avr/interrupt.h> #include <stdint.h> #include <stdio.h> ISR (TCC0_OVF_vect) { PORTC.OUT = 0b00111111; } ISR (TCC0_CCA_vect) { PORTC.OUT = 0b11001100; } ISR (TCC0_CCB_vect) { PORTC.OUT = 0b00110011; } int main(void) { PMIC.CTRL |= PMIC_HILVLEN_bm |PMIC_MEDLVLEN_bm|PMIC_LOLVLEN_bm; //Interruptlevel freigeben PORTC.DIR = 0xFF; // Port C als Ausgang OSC.CTRL |= OSC_RC32MEN_bm; //32 Mhz Clock while(!(OSC.STATUS & OSC_RC32MRDY_bm)); CCP = CCP_IOREG_gc; CLK.CTRL = 0x01; sei(); // Interrupts freigeben TCC0.CTRLB = 0b11110000; // select Modus: Normal TCC0.PER = 20000; // Zähler Top-Wert
in „AtXmega Timer Compare“ · Mikrocontroller und Digitale Elektronik ·
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Ausschnitt aus einem Atmel XMEGA C3 Datenblatt
Atmel 8361-8-and-16-bit- AVR-XMEGA-Microcontrollers-ATxmega384C3_Datasheet.pdf (SECURED) - Adobe Reader 35.6 ADC Characteristics Table 35-8. Power Supply, Reference, and Input Range Symbol Parameter Condition Min. Typ. Max. Units AVCC
in „ATXMEGA384C3-AU ADC mist ungenau“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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Datei
Versand.txt
Platinen ohne Xmega 1 Platine 0,55* bis 3 0,90* mehr 1,45* Platinen mit Xmega bis 15 1,45* *optional als Einwurf Einschreiben für 1,60 Aufpreis. Versichert bis 25 . Für höhere Versicherungssumme geht es dann nur noch
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PDF
tbl.pdf
Characteristika Inter-Device-Communication Gera¨e PC (Win, Linux) und Mikroprozessoren (AtMega, AtXMega) Sprache PC C# und C++ Sprache uC C Master im System 1 (bis zu 3 vorgesehen, noch nicht implementiert) Slaves im System bis zu 255 (jeweilige Busspezifikationen beachten) Protokoll M3S Letzte gr¨ßere
in „API-Feedback / Protokollfeedback: Kommunikationsstack für serielle Bussysteme“ · Mikrocontroller und Digitale Elektronik ·
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C-Quellcode für AVR-Mikrocontroller
main.c C:\Users\derpo\Desktop\Atmel XMEGA-XPLAINED\XMEGA Software\LED PORTx\LED PORTx\main.c /* * LED PORTx.c * * Created: 22.07.2023 21:23:37 * Author: xyz */ #include <avr/io.h> #include "util/delay.h" int main(void) { #define LEDPORT
in „LED toggeln mit ATxmega256A3BU“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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Datei
Test_Drehgeber.asm
***************************************************************** ;* * ;* * ;* Controller-Typ: AT_XMEGA128A1 * ;* Taktfrequenz: 2 MHz Interner Oszilator * ;* Board: AT XMega128A1 Experimentierboard von Michael G. * ;* * ;* Autor: Steffen Hörhold * ;* Date: 18.10.2009 * ;* Version: 1.0 * ;* Beschreibung: Dieses Beispiel dient zum Test eines Drehencoder * ;* dessen Auswertung die Hardware des XMega128A1 über- * ;* nimmt. Das Ergebnis wird am PortC angezeigt. * ;* * ;* Am PortA blinkt Bit0 mittels eines Timers mit 1Hz * ;* * ;* * ;***************************************************************
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Datei
AVR-Studio_4.19.txt
interrupt rising flank on tiny2313 triggers on both flanks 13959 - External interrupt rising flank on xmega128a1 triggers on both flanks 12515 - Xmega16D4 is not setting ADC MUX registers 14565 - Wrong PC mask in ATmega32 model 14622 - Timer 0 output compare & overflow interrupts don't work on ATmega64
in „AT90S2312 und Atmel Studio 6 ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
read_prodsig.c
#include </usr/lib/avr/include/util/delay.h> #include <stdio.h> #include <string.h> #include "../XmegaA3U-Board/AN17453_XMEGA_Clocksystem/code/clksys_driver.h" #include "./lcd.h" #define LED_rt PIN0_bm //red led at E0 #define LED_ge PIN1_bm //yellow led at E1 #define LED_gn PIN2_bm //green led at E2
in „XMEGA64A3U - Prodsig-Bytes lesen“ · Mikrocontroller und Digitale Elektronik ·