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Datei
atmega32u2.patch
0100 +++ b/src/devdescr.cc 2016-03-10 21:47:45.259999715 +0100 @@ -4333,6 +4333,72 @@ }, { 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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PDF
AVR-DD-Product-Brief-DS40002215A-1.pdf
reduces the pin count and, therefore, the available features Figure 1. AVR DD Family Overview Flash 64 KB AVR64DD14 AVR64DD20 AVR64DD28 AVR64DD32 32 KB AVR32DD14 AVR32DD20 AVR32DD28 AVR32DD32 16 KB AVR16DD14 AVR16DD20 AVR16DD28 AVR16DD32 Pins 14 20 28 32 The name of a device in the AVR DD family is decoded
in „AVR-DD im Anrollen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Values.txt
-SOIC-28 1 VG-535-64PHALBEEURO 1 versendet 1 Verbraucher 1 VCC 9-12V 1 VC 16/1/12 1 USB-Stecker 1 USB-BUCHSE-B 1 USB-B-61729 1 USART 1 UNTERSCHRIFT 1 UNBE 1 ULN2803A 1 ULN2003AD 1 UART 1 U2008B 1 TX rot 1 TX 1 TUXGR_16X2
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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Datei
Descriptions.txt
DRIVER 3 DC POWER JACK 3 ADAPTIVE BALLAST CONTROL IC 3 9-V BATTERY CLIP 3 8-bit Microcontroller with 64K Bytes In-System Programmable Flash 3 8-bit AVR Microcontroller with 2K Bytes Flash 3 8-bit AVR Microcontroller with 1K Bytes In-System Programmable Flash 3 4 Independant Resistors in one device 3 10
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
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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Datei
Arduino_wdt.h
WDP0 through \c WDP3 bits). See also the symbolic constants \c WDTO_15MS et al. */ #if defined(__AVR_XMEGA__) #if defined (WDT_CTRLA) && !defined(RAMPD) #define wdt_enable(timeout) \ do { \ uint8_t temp; \ __asm__ __volatile__ ( \ "wdr" "\n\t" \ "out %[ccp_reg], %[ioreg_cen_mask]" "\n\t" \ "lds %[tmp],
in „aktuelle AVR µC - wdt.h - kein RAMPD / CTRL / Enable Bit“ · Mikrocontroller und Digitale Elektronik ·
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atxmega128_board-sch1.pdf
TRST 8 3 TDO PB7 GND 2 5 TMS PB4 GND 10 1 TCK PB6 GND GND SW_RST JTAG 3301 GND 3 1 4 2 3V3 GND MCU XMEGA128A1 90 /Reset_PDI 95 PORTA PORTB 89 ADC0_AC0_AREF_PA0 96 3V3 1 2 1 2 PDI_Data ADC1_AC1_PA1 97 3 4 3 4 GND ADC2_AC2_DAC0_PA2 98 5 6 5 6 ADC3_AC3_DAC1_PA3 99 7 8 7 8 3 ADC4_AC4_PA4 100 9 10 9 10 GND
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atxmega128_board-sch1.pdf
PB5 9 10 8 3 PB7 GND 2 5 TMS PB4 GND 10 1 TCK PB6 GND GND JTAG SW_RST 3301 GND 3 1 4 2 3V3 GND MCU XMEGA128A1 90 /Reset_PDI ADC0_AC0_AREF_PA0 95 PORTA PORTB 89 PDI_Data ADC1_AC1_PA1 96 3V3 1 2 1 2 97 3 4 3 4 GND ADC2_AC2_DAC0_PA2 98 5 6 5 6 ADC3_AC3_DAC1_PA3 99 7 8 7 8 3 ADC4_AC4_PA4 100 9 10 9 10 13
in „ATxmega-Experimentierplatine in Gold/Schwarz ab 12.04.10 eventuell Bausatz“ · Markt ·
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PDF
AVR32-64SD20-28-32-48-ProductBrief-DS40002417.pdf
reduces the pin count and, therefore, the available features Figure 1. AVR SD Family Overview Flash 64 KB AVR64SD28 AVR64SD32 AVR64SD48 32 KB AVR32SD20 AVR32SD28 AVR32SD32 Pins 20 28 32 48 The name of a device in the AVR SD Family is decoded as follows: Figure 2. AVR SD Device Designations AVR32SD32T
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PDF
700185_wiesmeier_christoph_2016.pdf
den Modulen sowie zur Ansteuerung anderer Komponenten. Die Entscheidung fiel auf den Mikrocontroller XMEGA128A3U [7] von Atmel. Dieser besitzt einen 8 Bit RISC-Prozessor mit 32 MHz, ist in einem 64 Pin TQFP Gehause und bietet 8 kByte RAM. Damit gehort er zu den starksten 8 Bit Mikrocontrollern. Weiters
in „2A 1s Li-ion Lader + Protection“ · Analoge Elektronik und Schaltungstechnik ·
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avr-libc-user-manual-1.8.0.pdf
• atmega16u2 • atmega16u4 • atmega32u2 • atmega32u4 • atmega32u6 XMEGA Devices: • atxmega16a4 • atxmega16d4 • atxmega32a4 • atxmega32d4 • atxmega64a1 • atxmega64a1u • atxmega64a3 • atxmega64d3 • atxmega128a1 • atxmega128a1u • atxmega128a3 • atxmega128d3 • atxmega192a3
in „Interrupt Probleme beim Arduino“ · Mikrocontroller und Digitale Elektronik ·
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Datei
clksys_driver.asm
/*! \file ************************************************** * * * \brief XMEGA Clock System driver source file. * * * *********************************************************** */ ; Register definieren_____________ ; Hier werden den "General Purpose Working Register" Namen vergeben
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man_gcc.pdf
", "atxmega32c4", "atxmega32d3", "atxmega32d4", "atxmega32e5", "atxmega8e5". "avrxmega4" "XMEGA" devices with more than 64@tie{}KiB and up to 128@tie{}KiB of program memory. mcu@tie{}= "atxmega64a3", "atxmega64a3u", "atxmega64a4u", "atxmega64b1", "atxmega64b3", "atxmega64c3", "atxmega64d3", "atxmega64d4". "avrxmega5" "XMEGA" devices with more than 64@tie{}KiB and up to 128@tie{}KiB of program memory and more than 64@tie{}KiB of RAM. mcu@tie{}= "atxmega64a1", "atxmega64a1u". "avrxmega6" "XMEGA" devices
in „avr-g++: external linkage von const/PROGMEM Symbol.“ · Mikrocontroller und Digitale Elektronik ·
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MyPC_sch.pdf
8 0 SO 6 100k 3 . . R 1 VS_DREQ 8 IOVCC0 14 R4 3 3 GND V DREQ IOVCC1 19 IC7 ETH_SO . R5 26 IOVCC2 XMEGA128A1 3 100k VS_TX 27 TX 5 AVR_RST 90 /Reset_PDI 95 PA0 CVCC1 7 PDI_DATA 89 PDI_Data ADC0_ADC1_AC1_PA1 96 PA1 33 GPIO0 CVCC2 24 ADC2_AC2_DAC0_PA2 97 PA2 34 GPIO1 CVCC3 31 ADC3_AC3_DAC1_PA3 98 PA3 9
in „Bitte Schaltplan&Layout checken“ · Mikrocontroller und Digitale Elektronik ·
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MyPC_sch.pdf
PC_MISO SO 6 100k 3 3 . R 1 VS_DREQ 8 IOVCC0 14 R4 3 3 GND V DREQ IOVCC1 19 IC7 ETH_SO . R5 26 IOVCC2 XMEGA128A1 3 VS_TX 27 RX 5 AVR_RST 90 95 PA0 100k TX CVCC0 7 PDI_DATA 89 /Reset_PDI ADC0_AC0_AREF_PA0 96 PA1 33 CVCC1 24 PDI_Data ADC1_AC1_PA1 97 PA2 34 GPIO0 CVCC2 31 ADC2_AC2_DAC0_PA2 98 PA3 9 GPIO2 CVCC3
in „Bitte Schaltplan&Layout checken“ · Mikrocontroller und Digitale Elektronik ·
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Atmel_ARM_Toolchain.pdf
extract to the location, from where you want to run from. Linux builds are available from here . Note 64-bit version of libncurses and libc are required to run the tools. 2.3 Downloading/Installing on Mac OS ® For Mac, the Atmel ARM GNU Toolchain is available as tar.gz archive which can be extracted using
in „Atmel SAM Frage“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Assembler.s
Avr.Macro.SetPtr .importObject Avr.Macro.StorVar .importObject Avr.Macro.xCmd .importObject Avr.Macro.XmegaNVM .importObject Avr.Macro.XmegaReg .dseg .org sramStart dVarClassAvrHundertstel: .BYTE 1 dVarClassAvrSekunden: .BYTE 1 dVarClassAvrMinuten: .BYTE 1 dVarClassAvrStunden: .BYTE 1 dVarClassAvrMonat:
in „ISR macht Newbie fertig :P“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
DAC_CHSEL0_bm ; DAC.CTRLC = DAC_REFSEL_AVCC_gc; DAC.TIMCTRL = (DAC_CONINTVAL_32CLK_gc | DAC_REFRESH_64CLK_gc); DAC.CTRLA &= ~(DAC_ENABLE_bm); } static void InitSDRAM(void) { /* * Configure the EBI port with 12 address lines, no address latches or * low pin count, and set it in SDRAM mode with 3-port EBI
in „Xmega128-a1-explained und ASF“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP79521.pdf
Real-Time Clock/Calendar Device Selection Table Part Number SRAM (Bytes) EEPROM (Kbits) Unique ID MCP79510 64 1 Blank MCP79520 64 2 Blank ™ MCP79511 64 1 EUI-48 MCP79521 64 2 EUI-48™ ™ MCP79512 64 1 EUI-64 MCP79522 64 2 EUI-64™ • 128-Bit Protected EEPROM Area: Timekeeping Features • Real-Time Clock/Calendar
in „RTC -> MCP79521“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP794xx.pdf
with - Operating from VCC : 1.2 µA at 3.3V - Operating from battery backup: 925 nA at EUI-48 and EUI-64 addresses, respectively. Custom 3.0V programming is also available. • Automatic Switchover to Battery Backup Package Types User Memory SOIC, TSSOP, MSOP • 64-Byte Battery-Backed SRAM TDFN X1 1 8 VCC • 64-Bit Protected EEPROM Area: X1 1 8 V CC - Robust write unlock sequence X2 2 7 MFP X2 2 7 MFP ™ VBAT 3 6 SCL VBAT 3 6 SCL - EUI-48 MAC address (MCP79401) VSS 4 5 SDA - EUI-64 ™ MAC address (MCP79402) VSS
in „MCP794xx EUI-64 Node Adresse“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SD_DOGM_test2.s
Avr.Macro.SetPtr .importObject Avr.Macro.StorVar .importObject Avr.Macro.xCmd .importObject Avr.Macro.XmegaNVM .importObject Avr.Macro.XmegaReg .dseg .org sramStart dVarClassAvrA: .BYTE 1 dVarClassAvrSector: .BYTE 1 dVarClassAvrFilecnt: .BYTE 1 dVarClassAvrDircnt: .BYTE 1 dVarClassAvrFsize: .BYTE 4 dVarClassAvrChars
in „SPI und 2 "Bausteine"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SAMA5D2_PTC_Firmware_UG.pdf
mutual capacitance and self-capacitance sensing – Up to 8 buttons in Self-capacitance mode – Up to 64 buttons in Mutual Capacitance mode – Supports Lumped mode configuration (1) • Calibration – Load compensating charge sensing – Parasitic capacitance compensation together with the electrode capacitance
in „Was ist bzw. war Atmel QTouch?“ · Mikrocontroller und Digitale Elektronik ·
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mikrobeginner_gesamt.pdf
) 150 (125) 256 1024 128 1 256 (500) 250 (512) 200 (640) 160 (800) (1000) 8 250 (64) 200 (80) 160 (100) 128 (125) 128.000 64 250 (8) 200 (10) 256 250 (2) 1024 Für 1,2 MHz Takt bietet sich eine CTC-Teilung durch 250 (125 für 2 Hz) bei einem Vorteiler von 64 an. Da die zweite LED ein
in „Attiny26 PortD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATtiny416_50002683A.pdf
operating system will ® perform a®driver software inst®llation. The driver file supports both 32- and 64-bit versions of Microsoft Windows XP, Windows Vista , Windows 7, Windows 8, and Windows 10. The drivers for the kit are included with Atmel Studio. Once the Xplained Nano board is powered the green status
in „Neue 8-Bit Tinys vorgestellt: 417/814/816/817“ · Mikrocontroller und Digitale Elektronik ·
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Datei
All.txt
TEST PIN 1 TP10 TPB2,54 TPB2,54 B2,54 Test pad 1 TP10 P1-13 P1-13 P1-13 TEST PIN 1 TON5 TRIM_1234-S64YW S64YW POTENTIOMETER 1 TON4 TRIM_1234-S64YW S64YW POTENTIOMETER 1 TON3 TRIM_1234-S64YW S64YW POTENTIOMETER 1 TON2 TRIM_1234-S64YW S64YW POTENTIOMETER 1 TLL 5800 NFETV TO220V 1 TLH 5800 NFETV TO220V
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
KSZ8851SNL.pdf
0x63 WF3CRC1 0x0000 0x63 Wakeup Frame 3 CRC1 Register [15:8] Wakeup Frame 3 Byte Mask 0 Register 0x64 [7:0] 0x64 - 0x65 WF3BM0 0x0000 0x64 0x65 Wakeup Frame 3 Byte Mask 0 Register [15:8] to Wakeup Frame 3 Byte Mask 1 Register 0x67 0x66 [7:0] 0x66 - 0x67 WF3BM1 0x0000 0x67 Wakeup Frame 3 Byte Mask 1 Register
in „KSZ8851 Ethernet komplizierte Frage.“ · Mikrocontroller und Digitale Elektronik ·
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24fc256.pdf
Compatibility communications or data acquisition. This device also has a page write capability of up to 64 bytes of data. • Page Write Time: 5 ms, maximum This device is capable of both random and sequential • Self-Timed Erase/Write Cycle reads up to the 256K boundary. Functional address • 64-Byte Page Write
in „Wodtke HP-S5 HP Er3 EEPROM Schreib-/Lesefehler“ · Haus & Smart Home ·
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simulavr.pdf
.) ▯ The current version of simulavr is not validated against the avr-gcc regression tests. ▯ AVR XMEGA are completely not yet simulated by simulavr. 10.2 CPU Limitations This chapters describes an overview of limitations for simulavr. Specific limitations see below. This chapter focuses only on the
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Datei
AVRDUDE-Meldung.txt
message: 0x82 0xff memory contents: 0xff avrdude: erasing chip avrdude: jtagmkII_chip_erase(): Sending Xmega chip erase command: avrdude: jtagmkII_send(): sending 6 bytes avrdude: Sent: . [1b] . [16] . [00] . [06] . [00] . [00] . [00] . [0e] 4 [34] . [00] . [00] . [00] . [00] . [00] . [0b] . [0f] avrdude:
in „PDI + AVR Dragon“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Micrel.pdf
2019 Microchip Technology Inc. MIC2915X/30X/50X/75X FIGURE 2-61: MIC2950x Line Transient. FIGURE 2-64: MIC2975x Dropout Voltage vs. Temperature. FIGURE 2-62: MIC2950x Output FIGURE 2-65: MIC29751-3.3 Dropout Impedance vs. Frequency. Characteristics. FIGURE 2-63: MIC2975x Dropout Voltage FIGURE 2-66:
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Datei
irmp.c
context, so use the ...I version of the function #else #if (IRMP_EXT_LOGGING == 0) # if defined (__AVR_XMEGA__) while (!(USARTC1.STATUS & USART_DREIF_bm)) { ; } USARTC1.DATA = ch; # else // AVR_MEGA while (!(UART0_UCSRA & UART0_UDRE_BIT_VALUE)) { ; } UART0_UDR = ch; # endif // __AVR_XMEGA__ #else sendextlog
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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Datei
irmp.c
context, so use the ...I version of the function #else #if (IRMP_EXT_LOGGING == 0) # if defined (__AVR_XMEGA__) while (!(USARTC1.STATUS & USART_DREIF_bm)) { ; } USARTC1.DATA = ch; # else // AVR_MEGA while (!(UART0_UCSRA & UART0_UDRE_BIT_VALUE)) { ; } UART0_UDR = ch; # endif // __AVR_XMEGA__ #else sendextlog
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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Datei
irmp.c
RESET); USART_SendData(STM32_UART_COM, '\r'); } #else #if (IRMP_EXT_LOGGING == 0) # if defined (__AVR_XMEGA__) while (!(USARTC1.STATUS & USART_DREIF_bm)); USARTC1.DATA = ch; # else //AVR_MEGA while (!(UART0_UCSRA & UART0_UDRE_BIT_VALUE)) { ; } UART0_UDR = ch; #endif //__AVR_XMEGA__ #else sendextlog(ch);
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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Datei
AVR.html
rowspan="1" style="width: 8.485%;" class="hcp11" width="8.485%"> <p class="hcp2" align="right">ATmega64</p> </td> <td colspan="1" rowspan="1" style="width: 6.776%;" class="hcp13" width="6.776%"> <p class="hcp14" align="center">a</p> </td> <td colspan="1" rowspan="1" style="width: 5.598%;" class="hcp13"
in „Billige Alternative zu AVR STK 500 oder Wie brenne ich günstig mein Programm auf den Mikrochip?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avrdude_out.txt
command_sequence == 6) Raw message: 12 84 00 e8 03 00 [AVR] Data returned: 0x00 0xe8 0x03 0x00 JTAG clock Xmega: 1000 kHz avrdude: jtag3_getparm() avrdude: Sending get parameter (scope 0x12, section 1, parm 49) command: avrdude: jtag3_edbg_send(): sending 6 bytes avrdude: Sent: . [80] . [11] . [00] . [0a] .
in „avrdude braucht lange zum Beenden (Linux)“ · Mikrocontroller und Digitale Elektronik ·