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Schaltplan einer Pumpensteuerung mit ATtiny84A
fresh, SW3 lower, SW4 waste, SW5 RESET, SW6 QUIT ALARM, R22 1 k, Q2 BD 677, R23 10 k, RV1 10 k, uC1 ATtiny84A-PU, C3 100 uF, R1 10 k, R2 10 k, R3 10 k, R4 10 k, R5 10 k, R6 10 k, D2 fresh empty, D3 waste full, R11 470, R12 470, R13 1.5 k, Q3 BC547, BZ1 ALARM
in „DAC-Pumpensteuerung: 5V PWM --> 12 V analog“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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PDF
attiny84.pdf
PDIP) 20M1 20-pad, 4 x 4 x 0.8 mm Body, Quad Flat No-Lead/Micro Lead Frame Package (QFN/MLF) 218 ATtiny24/44/84 8006H–AVR–10/09 ATtiny24/44/84 24.3 ATtiny84 Speed (MHz) Power Supply Ordering Code (1) Package (2) Operational Range ATtiny84V-10SSU 14S1 10 1.8 - 5.5V ATtiny84V-10PU 14P3 Industrial (-40°C to 85°C) ATtiny84V-10MU 20M1 ATtiny84-20SSU 14S1 Industrial 20 2.7 - 5.5V ATtiny84-20PU 14P3 ATtiny84-20MU 20M1 (-40°C to 85°C) Notes: 1. This device can also be supplied in wafer form. Please contact your local Atmel
in „Attiny 84 ISP?!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Attiny24a-44a-84a.pdf
20-pad, 3 x 3 x 0.85 mm Body, Very Thin Quad Flat No Lead Package (VQFN) 271 8183F–AVR–06/12 24.3 ATtiny84A Speed (MHz) (1) Supply Voltage (V) Temperature Range Package (2) Ordering Code (3) ATtiny84A-SSU 14S1 ATtiny84A-SSUR 14P3 ATtiny84A-PU ATtiny84A-CCU Industrial 15CC1 (-40°C to +85°C) (5) ATtiny84A-CCUR 20 1.8 – 5.5V ATtiny84A-MU 20M1 ATtiny84A-MUR ATtiny84A-MMH (4) 20M2 ATtiny84A-MMHR (4) ATtiny84A-SSF Industrial (7) 14S1 (-40°C to +125°C) ATtiny84A-SSFR Notes: 1. For speed vs. supply voltage, see section 20.3 “Speed
in „Kann jemand über meine Inialisierung drüberfliegen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR_ATtiny_24_44_84.pdf
PDIP) 20M1 20-pad, 4 x 4 x 0.8 mm Body, Quad Flat No-Lead/Micro Lead Frame Package (QFN/MLF) 218 ATtiny24/44/84 8006K–AVR–10/10 ATtiny24/44/84 24.3 ATtiny84 Speed (MHz) Power Supply Ordering Code (1) Package (2) Operational Range ATtiny84V-10SSU 14S1 ATtiny84V-10SSUR 14S1 10 1.8 - 5.5V ATtiny84V-10PU 14P3 Industrial (-40°C to +85°C)) ATtiny84V-10MU 20M1 ATtiny84V-10MUR 20M1 ATtiny84-20SSU 14S1 ATtiny84-20SSUR 14S1 20 2.7 - 5.5V ATtiny84-20PU 14P3 Industrial(3) ATtiny84-20MU 20M1 (-40°C to +85°C) ATtiny84-20MUR 20M1 Notes: 1. Code indicators
in „AVR Programm brennen ohne Bootloader“ · Mikrocontroller und Digitale Elektronik ·
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I/O Pin Equivalent Schematic
Figure 10-1. I/O Pin Equivalent Schematic Pxn Logic Rpu Cpin See Figure "General Digital I/O" for Details
in „µC 5V -> Triac 16VAC schalten“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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Datei
irmp-main-avr.c
blinking 4 times per sec) - blinks 20 times per sec if any ir code is received */ //#define MCU __AVR_ATtiny44A__ //#define __AVR_ATtiny84A__ #define _ATMEL_AVR_ #define F_CPU 8000000UL #define F_INTERRUPTS 15000 #define IRMP_PORT_LETTER A #define IRMP_BIT_NUMBER 7 #include "avr/io.h" #include "irmp.h" #include
in „Attiny84a speichert nicht in das Eprom“ · Mikrocontroller und Digitale Elektronik ·
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Sortierbox mit elektronischen Bauteilen
ATmega8 ATtiny25 ATtiny26 ATtiny45 ATtiny85 ATtiny13 ATtiny84 ATtiny2313 ATtiny44 ATtiny27 ATtiny45 ATtiny85 ATtiny25 ATtiny26 ATtiny45 ATtiny85 ATtiny13 ATtiny84 ATtiny2313 ATtiny44 ATtiny27 ATtiny45 ATtiny85 ATtiny25 ATtiny26 ATtiny45 ATtiny85 ATtiny13 ATtiny84 ATtiny2313 ATtiny44 ATtiny27
in „Nachlassauflösung, AVRs, Oszi, MM, Bücher, div. Bauteile“ · Markt · · Fotos
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Datei
Ausgabe_von_avrdude_bei_16MHz_external.txt
hardware\tools\avr/bin/avrdude -CD:\Programme\Arduino\hardware\tools\avr/etc/avrdude.conf -v -pattiny84 -cstk500v1 -PCOM18 -b19200 -Uflash:w:C:\Windows\TEMP\build29be726e8adfdce07fcfa56b8772cd26.tmp/Test_Software_Serial_ATtiny84.ino.hex:i avrdude: Version 6.0.1, compiled on Apr 15 2015 at 19:59:58 Copyright
in „ATtiny84, FTDI FT232RL, SofwareSerial.h, Arduino ISP“ · Mikrocontroller und Digitale Elektronik ·
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Datei
x.txt
attiny45 attiny461 attiny461a attiny48 attiny84 attiny84a attiny85 attiny861 attiny861a attiny87 attiny88 atxmega128a1 atxmega128a1u atxmega128a3 atxmega128a3u atxmega128a4u atxmega128b1 atxmega128b3 atxmega128c3
in „Eclipse (mars) und AVR -- Fehlermeldungen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Funksteckdosen-1.pdf
www.forum.g-heinrichs.de/download/file.php?id=193 Abb. 10 zeigt den Screenshot eines Videos von meinem Attiny-Forum. Hier wurde gerade der B-Off-Knopf gedrückt; die empfangene Byte-Folge ist 0:81:84. Zuletzt noch eine Zusammenstellung der Byte-Folgen für sämtliche Tasten meiner ELRO- Fernbedienung: Steckdose On Off A 0:69:81 0:69:84 B 0:81:81 0:81:84 C 0:84:81 0:84:84 D 0:85:17 0:85:20 © G. Heinrichs 2018 - Seite 11 -
in „Auseinandergenommene Geräte“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
uart_printf.h
Unterstuetzte Controller: Controller mit Hardware-UART - ATmega8 - ATmega8515 - ATmega48 - ATmega328 - ATtiny2313, ATtiny4313 Controller mit USI-Serial - ATtiny24 - ATtiny84 - ATtiny25 - ATtiny85 Anschlussbelegungen: MCU PORT Funk.1 Funk.2 --------------------------------------------------- ATtiny25 - ATtiny85 PB1 TxD Do (6) PB0 RxD Di (5) --------------------------------------------------- ATtiny24 - ATtiny84 PA5 TxD Do (8) PA6 RxD Di (7) --------------------------------------------------- ATtiny2313 / 4313 PD1 TxD (3) PD0 RxD (2) --------------------------------------------------- 28 pol.
in „Ausgabe mittels printf über UART für ATmega / ATtiny“ · Projekte & Code ·
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Datei
uart_printf.c
AVR-MCU. Protokoll 8N1 Controller mit Hardware-UART - ATmega8 - ATmega8515 - ATmega48 - ATmega328 - ATtiny2313, ATtiny4313 Controller mit USI-Serial - ATtiny24 - ATtiny84 - ATtiny25 - ATtiny85 Anschlussbelegungen: MCU PORT Funk.1 Funk.2 --------------------------------------------------- ATtiny25 - ATtiny85
in „Ausgabe mittels printf über UART für ATmega / ATtiny“ · Projekte & Code ·
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Datei
attiny84_24ghz.ino
/* AVR standard libs */ #include <avr/wdt.h> #include <avr/power.h> #include <avr/sleep.h> #include <avr/io.h> /* C standard Libs */ #include <stdint.h> /* Projekt Libs */ #include <SPI.h> #include <nRF24L01.h> #include <DHT.h> #include <printf.h> #include <RF24.h> #include <RF24_config.h> #include <DallasTemperature.h> #include <OneWire.h> #define DHTTYPE DHT22 // DHT 22 (AM2302), AM2321 #define DHTPIN 2 // what digital pin we're connected to #define CE_PIN 8 // CE NRF24L01 #define CSN_PIN 7 // CSN NRF24L01 #define RF_CHANNEL 80 /* ACK Datensatz */ struct { uint8_t feuchte_enable, // 1 = Sende
in „[STM32F4xx] NRF24L01+ Funkmodul Source Code“ · Projekte & Code ·
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Datei
AVR-Studio_4.19.txt
previous service Packs (SP). The following new parts have been added to AVR Studio since 4.18 SP3: -ATtiny84A,ATtiny1634,ATmega3250PA,ATmega325PA,ATmega3290PA,ATXMEGA16A4U,ATXMEGA32A4U, ATXMEGA64A3U,ATXMEGA128A3U,ATXMEGA192A3U,ATXMEGA256A3U,ATXMEGA256A3BU The following additional devices are supported by simulator2 in AVR Studio 4.19: * ATtiny24 / ATtiny24A * ATtiny44 / ATtiny44A * ATtiny84 / ATtiny84A * ATtiny26 * ATmega8 / ATmega8A * ATmega16 / ATmega16A * ATmega32 / ATmega32A * ATmega64 / ATmega64A * ATmega2560 * ATmega2561 * ATmega640
in „AT90S2312 und Atmel Studio 6 ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
verlinkung.txt
ATmega8535 + * ATmega88 + * ATmega88A + * ATmega88P + # ATmega88PA + # ATmega8A - - ATmega8U2 + * ATtiny10 + * ATtiny13 - # ATtiny13A - - ATtiny1634 - - ATtiny167 + * ATtiny20 + - ATtiny2313 + - ATtiny2313A + * ATtiny24 + * ATtiny24A + * ATtiny25 + * ATtiny26 - - ATtiny261 + - ATtiny261A - # ATtiny28L + * ATtiny4 - - ATtiny40 + - ATtiny4313 + * ATtiny43U + * ATtiny44 + * ATtiny44A + * ATtiny45 - - ATtiny461 + - ATtiny461A + * ATtiny48 + * ATtiny5 - - ATtiny828 + * ATtiny84 - # ATtiny84A + * ATtiny85 + - ATtiny861
in „MC PIC - Warum diese Ungleichbehandlung?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Ausgabe_von_avrdude_bei_8MHz_internal.txt
C:\Windows\TEMP\build29be726e8adfdce07fcfa56b8772cd26.tmp/Test_Software_Serial_ATtiny84.ino.hex: avrdude: load data flash data from input file C:\Windows\TEMP\build29be726e8adfdce07fcfa56b8772cd26.tmp/Test_Software_Serial_ATtiny84.ino.hex: avrdude: input file C:\Windows\TEMP\build29be726e8adfdce07fcfa56b8772cd26.tmp/Test_Software_Serial_ATtiny84.ino.hex contains 2580 bytes avrdude: reading on-chip flash data: Reading | ################################################## | 100% 1.89s avrdude: verifying ... avrdude: 2580 bytes of flash verified
in „ATtiny84, FTDI FT232RL, SofwareSerial.h, Arduino ISP“ · Mikrocontroller und Digitale Elektronik ·
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Datei
asl_unterstuetzte_prozessoren.txt
AT90S4434 AT90S8515 AT90C8534 AT90S8535 AT90USB646 AT90USB647 AT90USB1286 AT90USB1287 AT43USB355 ATTINY4 ATTINY5 ATTINY9 ATTINY10 ATTINY11 ATTINY12 ATTINY13 ATTINY13A ATTINY15 ATTINY20 ATTINY24 ATTINY24A ATTINY25 ATTINY26 ATTINY28 ATTINY40 ATTINY44 ATTINY44A ATTINY45 ATTINY48 ATTINY84 ATTINY84A ATTINY85 ATTINY87 ATTINY88 ATTINY102 ATTINY104 ATTINY167 ATTINY261 ATTINY261A ATTINY43U ATTINY441 ATTINY461 ATTINY461A ATTINY828 ATTINY841 ATTINY861 ATTINY861A ATTINY1634 ATTINY2313 ATTINY2313A ATTINY4313 ATMEGA48
in „gas as a68 m68k - was nimmt man ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR-Studio_4.19_Release_Notes.pdf
Packs (SP). Part support The following new parts have been added to AVR Studio since 4.18 SP3: -ATtiny84A,ATtiny1634,ATmega3250PA,ATmega325PA,ATmega3290PA,ATXMEGA16A4U,ATXMEGA32A4U, ATXMEGA64A3U,ATXMEGA128A3U,ATXMEGA192A3U,ATXMEGA256A3U,ATXMEGA256A3BU Check the device matrix to see which devices are
in „Plugins für AVR-Studio 4 Was“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Preview_of__io.h_.pdf
/iotn24.h> #elif defined (__AVR_ATtiny24A__) # include <avr/iotn24a.h> #elif defined (__AVR_ATtiny44__) # include <avr/iotn44.h> #elif defined (__AVR_ATtiny44A__) # include <avr/iotn44a.h> #elif defined (__AVR_ATtiny84__) # include <avr/iotn84.h> #elif defined (__AVR_ATtiny84A__) # include <avr/iotn84a.h> #elif defined (__AVR_ATtiny261__) # include <avr/iotn261.h> #elif defined (__AVR_ATtiny261A__) # include <avr/iotn261a.h> #elif defined
in „µC am Mac mit C programmieren“ · Mikrocontroller und Digitale Elektronik ·
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Software-Fenster zur Mikrocontroller-Programmierung
Device Interface Device signature Target Voltage STK500 AT90CAN128 ISP Apply not read Read --- Read ATtiny45 ATtiny461 ATtiny461A ATtiny48 ATtiny828 ATtiny84 ATtiny841 ATtiny84A ATtiny85 ATtiny861 Select tool, device and interface. Close
in „STK500 erkennt ATTiny45 nicht“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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Datei
TimerPrescalersSorted.txt
: <Prescaler>1:8:64:256:1024</Prescaler> ATtiny461.xml:5500: <TIMER1> ATtiny48.xml:1909: <CORE_VERSION>V2</CORE_VERSION> ATtiny48.xml:6422: <TIMER0> ATtiny48.xml:6434: <TIMER1> ATtiny84.xml:16: <CORE_VERSION>V2</CORE_VERSION> ATtiny84.xml:4728: <TIMER0> ATtiny84.xml:4740: <TIMER1> ATtiny84.xml:4756: <Prescaler>1:8:64:256:1024</Prescaler> ATtiny85.xml:16: <CORE_VERSION>V2</CORE_VERSION> ATtiny85.xml:4291: <TIMER0> ATtiny85.xml:4303:<!-- <TIMER1> ATtiny861
in „Timer Vorteiler Werte Definition“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Arduino_wdt.h
|| defined(WDP3) /** \ingroup avr_watchdog See \c WDTO_15MS Note: This is only available on the ATtiny2313, ATtiny24, ATtiny44, ATtiny84, ATtiny84A, ATtiny25, ATtiny45, ATtiny85, ATtiny261, ATtiny461, ATtiny861, ATmega48, ATmega88, ATmega168, ATmega48P, ATmega88P, ATmega168P, ATmega328P, ATmega164P,
in „aktuelle AVR µC - wdt.h - kein RAMPD / CTRL / Enable Bit“ · Mikrocontroller und Digitale Elektronik ·
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Datei
io.h
#elif defined (__AVR_ATtiny102__) # include <avr/iotn102.h> #elif defined (__AVR_ATtiny104__) # include <avr/iotn104.h> #elif defined (__AVR_ATtiny20__) # include <avr/iotn20.h> #elif defined (__AVR_ATtiny40__) # include <avr
in „direkt in ein Register des Tiny5 schreiben“ · Mikrocontroller und Digitale Elektronik ·
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Datei
USI_TWI_Master.h
been tested. * * 12/15/08 Added declaration of USI_TWI_Start_Memory_Read -jkl * 25-sept-2011 Added attiny84 support -Frank van den Berg ****************************************************************************/ //********** Defines **********// // Defines controlling timing limits - SCL <= 100KHz. #
in „Attin84 I2C mit der USI läuft nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Send_to_R_DS18B20.ino
--------------------------------------------------------------------------------- // TempTX-tiny ATtiny84 Based Wireless Temperature Sensor Node // By Nathan Chantrell http://nathan.chantrell.net // Updated by Martin Harizanov (harizanov.com) to work with DS18B20 // To use with DS18B20 instead of TMP36
in „DS18B20 Sensoren zeigen immer wieder -127°C an“ · Mikrocontroller und Digitale Elektronik ·
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Datei
USI_I2C_Master.h
///////////////////////////////////// //Microcontroller Dependent Definitions #if defined (__AVR_ATtiny24__) | defined (__AVR_ATtiny44__) | defined (__AVR_ATtiny84__) |\ defined (__AVR_ATtiny24A__) | defined (__AVR_ATtiny44A__) | defined (__AVR_ATtiny84A__) #define DDR_USI DDRA #define PORT_USI PORTA
in „USI_TWI_Master.c von Atmel“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RL-Extender.pdf
Erweiterung der bestehenden Steuerung zur Steuerung eines einzelnen Rollladens auf AVR-Basis mit ATtiny84 Optimiertes Design hinsichtlich Aufbautechnik und Zuverlässigkeit Programmstruktur, welche Adaptionen der Firmware rückwirkungsfrei zulässt Remanente Speicherung projektierter Daten im EEPROM
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Datei
mlib-gen-3.diff
"x$HAS_attiny828" = "xyes") - -CHECK_AVR_DEVICE(attiny84) -AM_CONDITIONAL(HAS_attiny84, test "x$HAS_attiny84" = "xyes") - -CHECK_AVR_DEVICE(attiny841) -AM_CONDITIONAL(HAS_attiny841, test "x$HAS_attiny841" = "xyes") - -CHECK_AVR_DEVICE(attiny84a) -AM_CONDITIONAL(HAS_attiny84a, test "x$HAS_attiny84a" = "xyes") - -CHECK_AVR_DEVICE(attiny85) -AM_CONDITIONAL(HAS_attiny85, test "x$HAS_attiny85" = "xyes") - -CHECK_AVR_DEVICE(attiny861) -AM_CONDITIONAL
in „Fork: avr-libc version 3, für xtiny“ · Mikrocontroller und Digitale Elektronik ·
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PDF
avr-typen.pdf
TQFP VFBGA UFBGA CBGA MLF (WQFN) SOIC TSSOP SOT23 UDFN/USON kB MHz bits kB B V V Komische Serie ATtiny4 0,5 0 0 6 8 ATtiny5 0,5 4 8 6 8 12 4 4 0 0 0 1 nein 0,03 0 nein 1,8..5,5 1,8..5,5 1 2 1 2 nein ATtiny9 1 0 0 6 8 ATtiny10 1 4 8 6 8 5er-Serie ATtiny25 2 0,12 128 8 20 8 8 ATtiny45 4 20 6 6 1 1 0 4
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Datei
AVRrescue.c
ATmega8535 {0x1E, 0x93, 0x0A, 0x62, 0xDF, 0xF9}, // ATmega88 {0x1E, 0x93, 0x0B, 0x62, 0xDF, 0xFF}, // ATtiny85 {0x1E, 0x93, 0x0C, 0x62, 0xDF, 0xFF}, // ATtiny84 {0x1E, 0x93, 0x0D, 0x62, 0xDF, 0xFF}, // ATtiny861 {0x1E, 0x93, 0x0F, 0x62, 0xDF, 0xF9}, // ATmega88P {0x1E, 0x93, 0x10, 0xDF, 00, 00}, // ATmega8HVA
in „AVR-Rescue: standalone Parallel HV-Programmer“ · Projekte & Code ·
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Datei
HvspFuseRestore.c
with at least 8 IO pins License: GNU General Public License DESCRIPTION: Restore the fuse bits of a ATtiny13 or ATtiny24/44/84 or ATtiny25/45/85 to factory default using High-voltage Serial Programming (HVSP). This will reset the RSTDISBL fuse bit and change back the RESET Pin from a I/O line to a Reset
in „ATtiny13 und STK200 über PonyProg2000 flashen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Raspi_temp_Sender.ino
--------------------------------------------------------------------------------- // TempTX-tiny ATtiny84 Based Wireless Temperature Sensor Node // By Nathan Chantrell http://nathan.chantrell.net // Updated by Martin Harizanov (harizanov.com) to work with DS18B20 // To use with DS18B20 instead of TMP36
in „RFM 12B SP Rev.1 mit 5V oder nicht ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Synth.asm
.nolist .include "tn2313def.inc" ; Define device ATtiny2313 .list .macro WriteSram ; (register, const) ldi XL, low(SRAM_START) ldi XH, high(SRAM_START) ldi rmp, 0 j0: cpi rmp, @1 breq j1 st X+, @0 inc rmp rjmp j0 j1: ldi XL, low(SRAM_START) ldi XH, high
in „Attiny2313 Timer16 Bit, Normal Mode, unsauber“ · Mikrocontroller und Digitale Elektronik ·
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Datei
usiTwiSlave.c
USI_START_VECTOR USI_START_vect #define USI_OVERFLOW_VECTOR USI_OVERFLOW_vect #elif defined( __AVR_ATtiny24A__ ) | \ defined( __AVR_ATtiny44A__ ) | \ defined( __AVR_ATtiny24__ ) | \ defined( __AVR_ATtiny44__ ) | \ defined( __AVR_ATtiny84__ ) #define DDR_USI DDRA #define PORT_USI PORTA #define PIN_USI PINA
in „I2C Übertragungsproblem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
usiTwiSlave.c
USI_START_VECTOR USI_START_vect #define USI_OVERFLOW_VECTOR USI_OVERFLOW_vect #elif defined( __AVR_ATtiny24A__ ) | \ defined( __AVR_ATtiny44A__ ) | \ defined( __AVR_ATtiny24__ ) | \ defined( __AVR_ATtiny44__ ) | \ defined( __AVR_ATtiny84__ ) #define DDR_USI DDRA #define PORT_USI PORTA #define PIN_USI PINA
in „Abfrage Taster durch USI vom Slave mit zwei AVR“ · Mikrocontroller und Digitale Elektronik ·
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Datei
usiTwiSlave.c
USI_START_VECTOR USI_START_vect #define USI_OVERFLOW_VECTOR USI_OVERFLOW_vect #elif defined( __AVR_ATtiny24A__ ) | \ defined( __AVR_ATtiny44A__ ) | \ defined( __AVR_ATtiny24__ ) | \ defined( __AVR_ATtiny44__ ) | \ defined( __AVR_ATtiny84__ ) #define DDR_USI DDRA #define PORT_USI PORTA #define PIN_USI PINA
in „Attiny - Arduino I2C Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ESP8266-WiFi-Relais.bas
einem NOT-AUS wieder zu aktivieren muss es ' kurz von der Versorgungsspannung getrennt werden! ' Der ATTINY44 oder ATTINY84 wird genutzt $regfile = "Attiny44.dat" '$regfile = "Attiny84.dat" ' Ein externer 7,3728Mhz Baudratenquarz wird genutzt $crystal = 7372800 $hwstack = 50 $swstack = 50 $framesize = 50
in „WiFi Relais mit ESP8266 ESP-01 Modul (Bascom)“ · Projekte & Code ·
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Datei
irsndconfig.h
ATmegas supporting OC0, e.g. ATmega162 * IRSND_OC0A = OC0A on ATmegas/ATtinys supporting OC0A, e.g. ATtiny84, ATtiny85, ATtiny87/167 * IRSND_OC0B = OC0B on ATmegas/ATtinys supporting OC0B, e.g. ATtiny84, ATtiny85 *------------------------------------------------------------------------------------------
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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Datei
irsndconfig.h
ATmegas supporting OC0, e.g. ATmega162 * IRSND_OC0A = OC0A on ATmegas/ATtinys supporting OC0A, e.g. ATtiny84, ATtiny85, ATtiny87/167 * IRSND_OC0B = OC0B on ATmegas/ATtinys supporting OC0B, e.g. ATtiny84, ATtiny85 *------------------------------------------------------------------------------------------
in „IR Signal falsch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
as5installer_stable-5.0.1038-readme-1.pdf
ATtiny261 Full Control Full Full Full Control ATtiny261A Full Control Full Full Full Control ATtiny28 Full ATtiny4 Control Full Control ATtiny40 Control Full Control ATtiny4313 Full Control Full Full Full
in „AVR-Studio 5“ · Mikrocontroller und Digitale Elektronik ·
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PDF
A300_DS_DIAMEX-AVR_REF1.pdf
DIAMEX-AVR USB ISP-Programmer für ATMEL AVR, STK500, ATmega, ATtiny, AT90 USB ISP-Programmer für Atmel Prozessoren zum Discountpreis - Made in Germany - Wenn mal wieder der ISP-Programmer abgeraucht ist, weil das Gehäuse aus Kostengründen fehlte, die Datenübertragung
in „Universeller RC5-Fernbedienungsempfänger“ · Mikrocontroller und Digitale Elektronik ·
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PDF
usb-isp_installation_de.pdf
AT90S1200, AT90S2313, AT90S2333, AT90S2343, AT90S4414, AT90S4433, AT90S4434, AT90S8515, AT90S8535 Tiny ATtiny12, ATtiny13, ATtiny15, ATtiny2313, ATtiny24, ATtiny25, ATtiny26, ATtiny44, ATtiny45, ATtiny84, ATtiny85, ATtiny86, ATtiny261, ATtiny461, ATtiny861 Mega Atmega88, Atmega103, Atmega128, Atmega1280, Atmega1281
in „Atmega läuft nur mit Programmer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
usb-isp_installation_de.pdf
AT90S1200, AT90S2313, AT90S2333, AT90S2343, AT90S4414, AT90S4433, AT90S4434, AT90S8515, AT90S8535 Tiny ATtiny12, ATtiny13, ATtiny15, ATtiny2313, ATtiny24, ATtiny25, ATtiny26, ATtiny44, ATtiny45, ATtiny84, ATtiny85, ATtiny86, ATtiny261, ATtiny461, ATtiny861 Mega Atmega88, Atmega103, Atmega128, Atmega1280, Atmega1281
in „Diamex USB ISP Programmer“ · Mikrocontroller und Digitale Elektronik ·
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Datei
small_printf.c
------------------------------- */ int main(void) { int a, b, counter; char ch; char mytext[] = "ATtiny2313"; a= 12; b= 34; ch= 's'; uart_init(115200); tiny_printf(PSTR("\n\n\rDemo: tiny_printf mit ATtiny2313")); tiny_printf(PSTR("\n\r--------------------------------")); tiny_printf(PSTR("\n\n\rMultiplikation %d * %d = %d\n\r"),a,b,a*b); tiny_printf(PSTR("Zahlensystem %dd = %xh\n\r"),84, 84); tiny_printf(PSTR("ASCII Zeichen %c = %xh = %dd\n\n\r"),ch, ch, ch); tiny_printf(PSTR("16 Bit Hexzahl: %xh\n\r"),3481); tiny_printf(PSTR("\n\rEingefuegter Text: %s\n\n\r"),mytext); counter= 0; while
in „#define Ich bekomme ein Makro nicht hin.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
irsndconfig.h
----------------------------------------------------------------------------------- * AVR ATMega/ATTiny section: * * Change hardware pin here: IRSND_OC2 = OC2 on ATmegas supporting OC2, e.g. ATmega8 * IRSND_OC2A = OC2A on ATmegas supporting OC2A, e.g. ATmega88 * IRSND_OC2B = OC2B on ATmegas supporting
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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PDF
Arduino.pdf
AVR_ATmega2560__) ADMUX = _BV(REFS0) | _BV(MUX4) | _BV(MUX3) | _BV(MUX2) | _BV(MUX1); #elif defined (__AVR_ATtiny24__) || defined(__AVR_ATtiny44__) || defined(__AVR_ATtiny84__) ADMUX = _BV(MUX5) | _BV(MUX0); #elif defined (__AVR_ATtiny25__) || defined(__AVR_ATtiny45__) || defined(__AVR_ATtiny85__) ADMUX = _BV(
in „Aref Spannung, was ist besser?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
irsndconfig.h
----------------------------------------------------------------------------------- * AVR ATMega/ATTiny section: * * Change hardware pin here: IRSND_OC2 = OC2 on ATmegas supporting OC2, e.g. ATmega8 * IRSND_OC2A = OC2A on ATmegas supporting OC2A, e.g. ATmega88 * IRSND_OC2B = OC2B on ATmegas supporting
in „Umfrage: welche IR-Protokolle nutzt ihr mit IRMP?“ · PC Hard- und Software ·
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Datei
irsndconfig.h
----------------------------------------------------------------------------------- * AVR ATMega/ATTiny section: * * Change hardware pin here: IRSND_OC2 = OC2 on ATmegas supporting OC2, e.g. ATmega8 * IRSND_OC2A = OC2A on ATmegas supporting OC2A, e.g. ATmega88 * IRSND_OC2B = OC2B on ATmegas supporting
in „IRSND Daten für Roomba“ · Mikrocontroller und Digitale Elektronik ·
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Datei
irsndconfig.h
----------------------------------------------------------------------------------- * AVR ATMega/ATTiny section: * * Change hardware pin here: IRSND_OC2 = OC2 on ATmegas supporting OC2, e.g. ATmega8 * IRSND_OC2A = OC2A on ATmegas supporting OC2A, e.g. ATmega88 * IRSND_OC2B = OC2B on ATmegas supporting
in „IR Fernbedienung mit IRSND“ · Mikrocontroller und Digitale Elektronik ·
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Datei
irsndconfig.h
----------------------------------------------------------------------------------- * AVR ATMega/ATTiny section: * * Change hardware pin here: IRSND_OC2 = OC2 on ATmegas supporting OC2, e.g. ATmega8 * IRSND_OC2A = OC2A on ATmegas supporting OC2A, e.g. ATmega88 * IRSND_OC2B = OC2B on ATmegas supporting
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·