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Webserver_1-Wire.txt
/ 1. DS18B20 OW_ID_T02, // 2. DS18B20 ... OW_ID_Last }; // Endmarker #endif ... //DS18B20 auslesen // // RoBue: // In diesem Programm wird jeder Sensor einzeln zum Messen aufgefordert // und dann ausgelesen.
in „AVR für wenig Geld im LAN“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.asm
************************************** Funktion: ATtiny13a (4.8MHz) empfängt ROM und ROM Daten von DS18B20 oder DS18S20 im 5 Sekunden-Takt. Die Daten werden umgerechnet und per I2C über PCF8574 zum LCD1602/2004 übertraben. Line1: Anzeige DS18B20 oder DS18S20 (und im Fehlerfall der Code angezeigt). Line2
in „AVR ATtiny13 DS18B20/DS18S20 I2C PCF8574 LCD Temperaturanzeige“ · Projekte & Code ·
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PDF
51292S.pdf
2.75V(1) Note 1: VDDCORE Max 2: Header required for other devices. 2010 Microchip Technology Inc. DS51292S-page 29 Optional Headers TABLE 1: OPTIONAL HEADERS BY DEVICE (CON’T) Pin Header Part Device Count Number ICE/ICD Device Used VDD Max PIC18F63J11 64/80 AC162079 PIC18F85J90-ICE 3.6V PIC18F63J90
in „PIC18F877 ICD2 bzw Brenner gesucht :-(“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Multi_DS18x20.ino
// Die Sensoren in der Reihenfolge 1-N um mindestens DELTA_T abkühlen oder erwärmen void IdentMultiDS18x20() { uint8_t i, j; uint8_t Count; uint8_t UserData; float Temperature; Serial.println(F("Start IdentMultiDS18x20")); Count = sensors.getDS18Count(); // Löschen der UserIDs und Messung der Referenztemperatur
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Datei
Raumklima_SCD41_V3.py
uasyncio as asyncio from microdot import Microdot import esp32 import machine import onewire import ds18x20 import scd4x import gc import time gc.collect() async def ap_mode(ssid, password): print("Free heap before init:", gc.mem_free()) # DS18B20 on GPIO 4 dat = machine.Pin(4) ds = ds18x20.DS18X20(onewire.OneWire
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Datei
ds18x20lib.c
#### //################################################################################# #include "ds18x20lib.h" //---------------------------------------- // Reset DS18S20 //---------------------------------------- uint8_t ds1820_reset(uint8_t used_pin) { uint8_t err=100; DS1820_DDR |= 1<<used_pin;
in „DS18S20 Atmega8 zeigt immer 85°“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ds18x20lib.c
################################################################################ /* Library to use ds18x20 with ATMEL Atmega family. For short ds18x20 wires there is no need for an external pullup resistor. If the wire length exceeds one meter you should use a 4.7k pullup resistor on the data line. This
in „undefined referece in AtmelStudio 6“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ds18x20lib.c
################################################################################ /* Library to use ds18x20 with ATMEL Atmega family. For short ds18x20 wires there is no need for an external pullup resistor. If the wire length exceeds one meter you should use a 4.7k pullup resistor on the data line. This
in „Temepratursensor DS18B20“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ds18x20lib.c
################################################################################ /* Library to use ds18x20 with ATMEL Atmega family. For short ds18x20 wires there is no need for an external pullup resistor. If the wire length exceeds one meter you should use a 4.7k pullup resistor on the data line. This
in „LCD Anzeige und DS18B20“ · Mikrocontroller und Digitale Elektronik ·
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Datei
owucnet.c
ONEWIRE_CMD_READROM 0x33 #define ONEWIRE_CMD_MATCHROM 0x55 #define ONEWIRE_CMD_SKIPROM 0xcc #define DS18B20_ROM_FAMILYID 0x28 #define DS18B20_CMD_CONVERTTEMP 0x44 #define DS18B20_CMD_RSCRATCHPAD 0xbe #define DS18B20_DECIMAL_STEPS_12BIT 625 //.0625 #define DS18B20_INVALIDTEMP 0xffff #define ONEWIRE_SENSORNAME_MAX
in „DS18B20: Mehrere Sensoren am Bus, nur letzte Temp. stimmt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
7Temperaturen_DS18B20_ohne_Seriel.ino
aus). sensors.begin(); //Starten Sie die Bibliothek discoverOneWireDevices(); if ((Anzahl_Sensoren_DS18B20 > 0)) { myDS18B20.begin(); for (byte i = 0 ; i < myDS18B20.getDeviceCount(); i++) { if (myDS18B20.getAddress(DS18B20_Adressen, i)) { myDS18B20.setResolution(DS18B20_Adressen ); } } } } void loop
in „Arduino Programmierung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
7Temperaturen_DS18B20_ohne_Seriel.ino
aus). sensors.begin(); //Starten Sie die Bibliothek discoverOneWireDevices(); if ((Anzahl_Sensoren_DS18B20 > 0)) { myDS18B20.begin(); for (byte i = 0 ; i < myDS18B20.getDeviceCount(); i++) { if (myDS18B20.getAddress(DS18B20_Adressen, i)) { myDS18B20.setResolution(DS18B20_Adressen ); } } } } void loop
in „Arduino Programmierung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
onewire.c
/* Datenblatt - de0508 # http://mct.de/download/maxim/ds1820.pdf ds18b20 lib 0x02 # http://pdfserv.maximintegrated.com/en/an/AN162.pdf copyright (c) Davide Gironi, 2012 Released under GPLv3. Please refer to LICENSE file for licensing information. */ #include
in „Delay mit Timer“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Luefter.asm
] ;r16[in]: start with LSBIT DS1820_writeByte: push r18 push r19 ldi r18,0b00000001 mov r19,r16 DS1820_writeByte_Loop: cpi r18,0 breq DS1820_writeByte_exit sbrc r19,0 ;if(r16.0==0) skipNext rcall DS1820_write1 ;destroy(r16,r17) sbrs r19,0 ;if(r16.0==1) skipNext rcall DS1820_write0 ;destroy(r16,r17) DS1820_writeByte_Loop_update: lsr r19 ;r16>>1 lsl r18 ;r18<<1 rjmp DS1820_writeByte_Loop DS1820_writeByte_exit: pop r19 pop r18 ret /*------------------------------------
in „DS1820 temperatur - falsch oder richtig“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Luefter.asm
-------------------------- DS1820_readByte ------------------------------------------------------------------------*/ ;r20[out] DS1820_readByte: push r18 push r19 ldi r18,1 ldi r19,0 DS1820_readByte_loop: cpi r18,9 breq DS1820_readByte_exit
in „DS1820 temperatur - falsch oder richtig“ · Mikrocontroller und Digitale Elektronik ·
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Datei
RaumklimaServer.py
</h1>" async def ap_mode(ssid, password): print("Free heap before init:", gc.mem_free()) # DS18B20 on GPIO 4 dat = machine.Pin(4) ds = ds18x20.DS18X20(onewire.OneWire(dat)) ds_sensors = ds.scan() print('DS18B20 sensors:', ds_sensors) gc.collect() # SCD41 I2C i2c = machine.I2C(1, scl=machine.Pin
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Datei
AN_111.bas
' DS18B20_two_thermo.bas for Atmel AVR vith BASCOM - AVR and Dallas semiconductors DS18B20 temperature sensors - NO extra hardware ' Program "DUAL DS Thermo" ' Messures and displays temperature in 1/10 celcius
in „ds18s20 mit Bascom unter Proteus“ · Mikrocontroller und Digitale Elektronik ·
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Datei
WetterstationServer.py
not found</h1>" async def ap_mode(ssid, password): print("Free heap before init:", gc.mem_free()) # DS18B20 on GPIO 4 dat = machine.Pin(4) ds = ds18x20.DS18X20(onewire.OneWire(dat)) ds_sensors = ds.scan() print('DS18B20 sensors:', ds_sensors) gc.collect() # SCD41 I2C i2c = machine.I2C(1, scl=machine.Pin
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Datei
Wetterstation1.py
esp32 import machine import onewire import ds18x20 import time async def ap_mode(ssid, password): # Setup DS18B20 on GPIO 4 dat = machine.Pin(4) ds = ds18x20.DS18X20(onewire.OneWire(dat)) sensors = ds.scan() print('Found DS18B20 sensors:', sensors
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Datei
Wetterstation2.py
uasyncio as asyncio from microdot import Microdot import esp32 import machine import onewire import ds18x20 import time async def ap_mode(ssid, password): # Setup DS18B20 on GPIO 4 dat = machine.Pin(4) ds = ds18x20.DS18X20(onewire.OneWire(dat)) sensors = ds.scan() print('Found DS18B20 sensors:', sensors
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PDF
Funkgeraeteliste_Chirp.pdf
Dec-2022 Yes 0.01% Kenwood_TK-388G ImpliedbyKenwood_TK-762G 5-Dec-2022 Yes 0.00% Kenwood_TK-7102 @kk7ds 15-Feb-2019 Yes 0.02% Kenwood_TK-7108 @kk7ds 15-Feb-2019 Yes 0.01% Kenwood_TK-7160K @kk7ds 27-Jan-2023 Yes Kenwood_TK-7160M ImpliedbyKenwood_TK-7160K 27-Jan-2023 Yes Kenwood_TK-7180 @kk7ds 18-Oct-2022
in „Welcher USB-Adapter für Baofeng UV-5R gut?“ · HF, Funk und Felder ·
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Datei
WetterstationServer.py
not found</h1>" async def ap_mode(ssid, password): print("Free heap before init:", gc.mem_free()) # DS18B20 on GPIO 4 dat = machine.Pin(4) ds = ds18x20.DS18X20(onewire.OneWire(dat)) ds_sensors = ds.scan() print('DS18B20 sensors:', ds_sensors) gc.collect() # SCD41 I2C i2c = machine.I2C(1, scl=machine.Pin
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PDF
baerp_17.pdf
5 6 7 1 2 3 4 5 6 7 1 2 3 4 5 6 7 1 2 3 4 5 6 7 1 2 3 4 5 6 7 1 2 3 4 5 6 7 1 2 3 4 5 6 7 D20 D19 D18 D17 DS2 DS6 DS11 DS16 DS22DS26 DS31 DS36 J4 D16 4 5 DS1 DS7 4 5 DS12 4 5 DS17 4 5 4 DS21DS27 4 5 DS32 4 5 DS37 4 5 20 D15 D D D16 D D D16 D D D16 D D D16 D D15 D16 D D D16 D D D16 D D D16 19 D14 18 D19 D20 D19 D20 D19 D20 D19 D20 D18 D19 D20 D19 D20 D19 D20 D19 D20 17 1 1 DS3 1 1 DS8 DS14 1 1 DS19 1 1 1 DS23 1 1 DS28DS34 1 1 3 DS39 1 1 C 7 8 7 8 7 8 7 8 7 7 8 7 8 S 7 8 C 16 DS4 DS9 DS13 DS15DS18 DS24 DS29DS33 D DS38 15 DS5 DS10 DS20
in „Welcher Transistor“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
ds18x20lib.c
#include "ds18x20lib.h" //---------------------------------------- // Reset DS18S20 //---------------------------------------- uint8_t ds1820_reset(uint8_t used_pin) { uint8_t err=100; DS1820_PORT &= ~(1<<used_pin
in „DS18B20 probleme mit Pull-Up“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ds18x20lib.c
#include "ds18x20lib.h" //---------------------------------------- // Reset DS18S20 //---------------------------------------- uint8_t ds1820_reset(uint8_t used_pin) { uint8_t err=100; DS1820_PORT &= ~(1<<used_pin
in „DS18B20 probleme mit Pull-Up“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ds18x20lib.c
#include "ds18x20lib.h" //---------------------------------------- // Reset DS18S20 //---------------------------------------- uint8_t ds1820_reset(uint8_t used_pin) { uint8_t err=100; DS1820_PORT &= ~(1<<used_pin
in „DS18B20 probleme mit Pull-Up“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ds18x20lib.c
#include "ds18x20lib.h" //---------------------------------------- // Reset DS18S20 //---------------------------------------- uint8_t ds1820_reset(uint8_t used_pin) { uint8_t err=100; DS1820_PORT &= ~(1<<used_pin
in „DS18B20 Temperaturauswertung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ds18x20lib.c
#include "ds18x20lib.h" //---------------------------------------- // Reset DS18S20 //---------------------------------------- uint8_t ds1820_reset(uint8_t used_pin) { uint8_t err=100; DS1820_PORT &= ~(1<<used_pin
in „DS18B20 probleme mit Pull-Up“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS1821.pdf
“High Resolution Temperature Measurement with Dallas Direct-to-Digital Temperature Sensors”. 5 of 18 DS1821 6 of 18 DS1821 OPERATION – THERMOSTAT When the DS1821 is in thermostat mode (T/R ¯ = 1 in the status/configuration register), temperature conversions are performed continuously beginning at power-up
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Datei
Compiler.h
************************************** * FileName: Compiler.h * Dependencies: None * Processor: PIC18, PIC24F, PIC24H, PIC24E, dsPIC30F, dsPIC33F, * dsPIC33E, PIC32 * Compiler: Microchip C32 v1.00 or higher * Microchip C30 v3.01 or higher * Microchip C18 v3.13 or higher * HI-TECH PICC-18 PRO 9.63 or
in „Anfängerproblem PIC18“ · Mikrocontroller und Digitale Elektronik ·
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Datei
B--0193_DS18B20_Nr27_29_30_31_Rest32_33_34_b.h
(fuehler27); send_18B20(0xbe); temp27_lesen(); return(temp27); } int ds18b20_nr29_lesen(void) { reset_18B20(); send_18B20(0x55); sende_seriennummer_ds18B20SN (fuehler29); send_18B20(0xbe); temp29_lesen(); return(temp29); } int ds18b20_nr30_lesen(void) { reset_18B20(); send_18B20(0x55); sende_seriennummer_ds18B20SN (fuehler30); send_18B20(0xbe); temp30_lesen(); return(temp30); } int ds18b20_nr31_lesen(void) { reset_18B20(); send
in „Sende/Empfangsvorgang mittels nur 1St. µC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC18FXX80_to_PIC18FXXK80_Migration_Guide.pdf
has provided a checklist of the most • PIC18F66K80 Family Data Sheet (DS39977) • PIC18F2480/2580/4480/4580 Data Sheet important differences and similarities. (DS39637) Additional features, such as Charge Time Measure- ment Unit, 1.8V operation and 12-bit A/D, provide new • PIC18F2585/2680/4585/4680 Data Sheet (DS39625) applications for the PIC18FXXK80 family that were not • PIC18F6585/8585/6680/8680 Family Data Sheet possible with previous device families. Ultimately, (DS30491
in „Umstieg von PIC18F4620 auf PIC18F46K20“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN162.pdf
the DS18X20/DS1822 1-Wire® temperature sensor in a microcontroller environment Abstract: This application introduces the user to simple 1-Wire software for interfacing a microcontroller to the DS18B20, DS18S20
in „Temperaturfühler identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS2413.pdf
18 DS2413: 1-Wire Dual Channel Addressable Switch Read/Write Time Slots Data communication with the DS2413 takes place in time slots, which carry a single bit each. Write-time slots transport data from
in „OneWire Problem DS2413“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
); lcd_puts("Einstellungen:"); cli(); } } void disptemp(int sensor) { // Routine für 2x40 LCD if ( DS18X20_start_meas( DS18X20_POWER_PARASITE, &gSensorIDs[sensor-1][0] ) == DS18X20_OK ) { delay_ms(DS18B20_TCONV_12BIT); if ( DS18X20_read_meas( &gSensorIDs[sensor-1][0], &subzero, &cel, &cel_frac_bits)
in „Interrupts machen mich irre... HILFEEEE!!! :-)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
benchmark.c
Int16/Int16 // PIC18@10MIPS = // PIC24@40MIPS = 0.55µs // dsPIC@30MIPS = 0.73µs // ATMEGA@16MIPS = 16.2µs // LPC2103@60MIPS = 2.47µs r16 = x16/y16; // signed Int32/Int32 // PIC18@10MIPS = // PIC24@40MIPS = 11.73µs // dsPIC
in „LPC2103 63MIPS?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
readWebsiteFromSD___Funktion.txt
jede Zeile aus //Prüfe auf Codes und ersetzte sie dann mit dem passenden Werten if(strstr(lbuffer, "~ds18b20TempIn~") != NULL) { //DS18B20 Innen if(ds18b20_tempInside != 1000) { sprintf(tempBuffer, "%.2f", ds18b20_tempInside); sprintf(lbuffer, "%s\r\n", replace_str(lbuffer, "~ds18b20TempIn~", tempBuffer)); }else{ sprintf(lbuffer, "%s\r\n", replace_str(lbuffer, "~ds18b20TempIn~", "Can't find the Temp Sensor")); } } if(strstr(lbuffer, "~ds18b20TempOut~") != NULL) { //DS18B20 Außen if(ds18b20_tempOutside != 1000) { sprintf(tempBuffer, "%.2f", ds18b20_tempOutside);
in „ATMega644 hängt sich auf und resettet sich selbst, nach lesen einer SD Karte und ENC28J60“ · Mikrocontroller und Digitale Elektronik ·
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Datei
WC12h_STM32F103-Temp-bug_neu1.txt
: 26 (- new client) (CMD N173000) (CMD N180c00) DS18xxx temperature: 24 (- new client) (- empty http request) RTC temperature: 26 (- new client) (CMD R04) read rtc: We 2016-09-21 18:01:44 DS18xxx temperature: 24 RTC temperature: 26 read rtc: We 2016-
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Datei
benchmark.c
40MIPS = 11.73µs // dsPIC@30MIPS = 15.63µs // ATMEGA@16MIPS = 42.19µs // Z16F@20MIPS = 1.0µs // LPC2103@60MIPS = 2.52µs r32 = x32/y32; // float/float // PIC18@10MIPS = // PIC24@40MIPS = 9.63µs // dsPIC@30MIPS = 12.83µs //
in „LPC2103 63MIPS?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1789204.pdf
. Amplitude. 2007-2013 Microchip Technology Inc. DS20002052C-page 5 MCP1401/02 Note: Unless otherwise indicated, T = A25°C with 4.5V V DD 18V. 80 1.2 ) ) VDD= 18V n A 1.0 Input = 1 (70 ( l tD1 n 0.8 e60 e D u o C 0.6 a50 n g D2 c 0.4 p e r40 u 0.2
in „Low Side MOSFET Treiber als Pegelwandler“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
PID-DS1820_BAS.txt
------------------------------------------------ Config 1wire = Portc.5 'Eingang für 1-Wire Sensor DS18x20 '--------- Subroutinen ------------------------------------------------------- Declare Sub Ds18xauslesen ' Temperatur auslesen Declare Sub Ds18xSuchen ' Sensor am Bus Suchen + CRC Prüfen Declare
in „Programm bleibt hängen (Atmel, BASCOM)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
22103a.pdf
or INTCAP (INT clears only if interrupt condition does not exist.) © 2008 Microchip Technology Inc. DS22103A-page 31 MCP23018/MCP23S18 NOTES: DS22103A-page 32 © 2008 Microchip Technology Inc. MCP23018/MCP23S18 2.0 ELECTRICAL CHARACTERISTICS Absolute Maximum Ratings (†) Ambient temperature under bias..
in „MCP23S18 I/O Expander“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PLC-LOX.txt
: if (!oneWireSubTimer.isOver()) { return; } if ((oneWireCnt < DS18B20count)){ dsconvertcommand(ds,sensors18B20[oneWireCnt]); oneWireCnt++; } else { oneWireCnt = 0; oneWireState++; } break; case 3: if (!oneWireSubTimer.isOver()) { return; } if ((oneWireCnt < DS18B20count)){ if (rtuOn) { Mb.MbData[oneWireDS18B20Byte + oneWireCnt] = dsreadtemp(ds,sensors18B20[oneWireCnt])*100; } else { sendMsg("1w " + oneWireAddressToString(sensors18B20[oneWireCnt]) + " " + String(dsreadtemp(ds,sensors18B20[oneWireCnt]),
in „1 Wire auf 2 GPIO pins“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MPASM__MPLINK__MPLIB_User_s_Guide.pdf
Guides and Libraries The MPLINK linker and MPLIB librarian also work with the MPLAB C Compiler for PIC18 MCUs (formerly MPLAB C18). For more information on the compiler, see: • MPLAB C Compiler for PIC18 MCUs Getting Started (DS51295) • MPLAB ® C Compiler for PIC18 MCUs User's Guide (DS51288) ® • MPLAB
in „Anfängerfrage zu Assembler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Test_ESP8266_DS18B20.ino
Complete project details at https://RandomNerdTutorials.com https://randomnerdtutorials.com/esp8266-ds18b20-temperature-sensor-web-server-with-arduino-ide/ mit Sensor DS18B20 *********/ #include <Arduino.h> #include <ESP8266WiFi.h> #include <Hash.h> #include <ESPAsyncTCP.h> #include <ESPAsyncWebServer.h
in „HTML Anzeige - Farbe Meldetext ändern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS1339.pdf
IOL (Note 3) 3 mA V CC≥ 2.0V (-2) Logic 0 Out V OL= 0.2 (VCC; IOL (Note 3) 3 mA 1.8V < VCC < 2.0V (DS1339-2) Logic 0 Out V OL= 0.2 (VCC; IOL (Note 3) 250 mA 1.3V < V < 1.8V (DS1339-2) CC V Active Current I (Note 4) 450 mA CC CCA V Standby Current I (Note 5) 80 150 mA CC CCS 2 of 18 2 DS1339 I C Serial
in „Sehr lange Zeitspannen?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
benchmark.c
PIC18@10MIPS = // PIC24@40MIPS = 9.63µs // dsPIC@30MIPS = 12.83µs // ATMEGA@16MIPS = 91.44µs // Z8Enc!XP@20MIPS = 67.0µs // Z16F@20MIPS = 6.0µs // LPC2103@60MIPS = 3.7µs rf = xf/yf; // float/float // PIC18@10MIPS = // PIC24@40MIPS = 2.9µs // dsPIC@30MIPS = 3.9µs // ATMEGA@16MIPS = 123.56µs // Z8Enc!XP@20MIPS = 60.0µs // Z16F@20MIPS = 5.0µs // LPC2103@60MIPS = 0.76µs rf = xf*yf; // sin(float) // PIC18@10MIPS = // PIC24@40MIPS = 55.05µs // dsPIC
in „LPC2103 63MIPS?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
benchmark.c
PIC18@10MIPS = // PIC24@40MIPS = 9.63µs // dsPIC@30MIPS = 12.83µs // ATMEGA@20MIPS = 25.15µs // Z8Enc!XP@20MIPS = 67.0µs // Z16F@20MIPS = 6.0µs // LPC2103@60MIPS = 3.7µs rf = xf/yf; // float/float // PIC18@10MIPS = // PIC24@40MIPS = 2.9µs // dsPIC@30MIPS = 3.9µs // ATMEGA@20MIPS = 7.9µs // Z8Enc!XP@20MIPS = 60.0µs // Z16F@20MIPS = 5.0µs // LPC2103@60MIPS = 0.76µs rf = xf*yf; // sin(float) // PIC18@10MIPS = // PIC24@40MIPS = 55.05µs // dsPIC
in „LPC2103 63MIPS?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
benchmark.c
PIC18@10MIPS = // PIC24@40MIPS = 9.63µs // dsPIC@30MIPS = 12.83µs // ATMEGA@16MIPS = 91.44µs // Z8Enc!XP@20MIPS = 67.0µs // Z16F@20MIPS = 6.0µs // LPC2103@60MIPS = 3.7µs rf = xf/yf; // float/float // PIC18@10MIPS = // PIC24@40MIPS = 2.9µs // dsPIC@30MIPS = 3.9µs // ATMEGA@16MIPS = 123.56µs // Z8Enc!XP@20MIPS = 60.0µs // Z16F@20MIPS = 5.0µs // LPC2103@60MIPS = 0.76µs rf = xf*yf; // sin(float) // PIC18@10MIPS = // PIC24@40MIPS = 55.05µs // dsPIC
in „ATMEL billiger und leistungsfähiger als PIC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PDF-Demo_Board.pdf
. 256K x 8 Serial EEPROM. 15. LCD display. 16. Piezo buzzer. 17. Prototype area for user hardware. 18. Microchip TC74 thermal sensor. DS51275A-page 2 2002 Microchip Technology Inc. Introduction 7 9 8 2 15 13 10 11 3 5 14 12 4 17 18 1 16 2 6 Figure 1.1: PICDEM 2 Plus Hardware 1.3 Sample Devices Two
in „PIC steuert LED sehr seltsam“ · Mikrocontroller und Digitale Elektronik ·