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Datei
SHT21.c
*************************************************************/ sht21_humi_val = sht21_humi_val / 2^16; sht21_humi_val = sht21_humi_val * 175.72; sht21_humi_val = -46.85 + sht21_humi_val; return sht21_humi_val; } } /**************************************************
in „SHT21 auslesen mit I2C Lib von P.Fleury“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SHT11.asm
----- ; CRC x^8+x^5+x^4+1 ; 21 Word/131 Cycles (32µs @ 4MHz) ; ; in : r16 Byte ; r17 CRC alt ; out : r17 CRC neu sht11_crc: push r16 push r18 push r19 ldi r19,8 ; 8 Bits sht11_crc10: clr r18 lsl r16 ror r18 ; Bit7 nach r18,7 eor r18
in „SHT71 Assembler Code für Atmega8“ · Mikrocontroller und Digitale Elektronik ·
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Datei
app.c
static void APS_DataConf(APS_DataConf_t *confInfo); static void initTransmitData(void); static uint16_t sht21TempDataBig; static uint16_t sht21HumDataBig; uint8_t sht21Temp_txt[8]; uint8_t sht21Hum_txt[8]; uint8_t sht21TempHum_txt[17]; static AppState_t appstate=APP_INIT_STATE; struct { uint8_t command[1]
in „Convert Hex CS_UID to ascii and write to UART“ · µC & Digital Electronics ·
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PDF
Sensirion_Humidity_SHT21_Sample_Code_V1.2.pdf
Sample Code for SHT21 Supporting Communication Software Preface This sample code is made to communicate with SHT2x CRC checksum control, set resolution, read serial humidity and temperature sensors. The purpose of the
in „SHT11 SHT21 unterschiedliche Luftfeuchte Werte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Sensirion_Humidity_SHT21_Datasheet_V4.pdf
information such as Application Notes is 1.0 1.0 NC VSS SDA available from the web page www.sensirion.com/sht21. For more information please contact Sensirion via info@sensirion.com. Figure 1: Drawing of SHT21 sensor package, dimensions are given in mm (1mm = 0.039inch), tolerances are ±0.1mm. The For SHT2x
in „Rechnung mit dem PIC16F“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SHT21.c
; i2c_start_wait(SHT21write); i2c_write(0b11111110); //soft reset _delay_ms(20); //wait for the sht21 to reboot i2c_rep_start(SHT21write); i2c_write(0b11100110); //enter config register /********************************
in „SHT21 auslesen mit I2C Lib von P.Fleury“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SHT21.h
void sht21_init (int resolution, int end_of_batt, int OCH, int OTP_r); int get_sht21_data_str (int measuretype, int holdmode, int crcmode); int convert_sht21_str_sht21_val (int data); #define SHT21 0x40; //for
in „SHT21 auslesen mit I2C Lib von P.Fleury“ · Mikrocontroller und Digitale Elektronik ·
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PDF
dbsht1x7xdeutschdk0704.pdf
Bestellinformation Generator GND Temp. Type Genauigkeit Genauigkeit Package/ Sensor VDD Feuchte Temperatur Bauform SHT11 +/- 3,0 % rF +/- 0,4 °C @25°C SMD (LCC) SHT15 +/- 2 % rF +/- 0,3 °C @25°C SMD (LCC) SHT71 +/- 3,0 % rF +/- 0,4 °C @25°C 4-Pin, einreihig SHT75 +/- 1,8 % rF +/- 0,3 °C@25°C 4-Pin, einreihig Driesen
in „Auswertung Luftfeuchtesensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sht4x.pdf
Included I2C communication timing in section 4.2 20 Introduced new product version in Table 11Table 11 21 Updated ordering information in Table 12 November 2022 4 all Updated Datasheet with new SHT43 4 Edited Table 1 with SHT43 data 5 Inserted Figure 4 5 Edited Table 2 with SHT43 data 6 Inserted Figure 8
in „Trockenschrank für Elektronik wie funktioniert es?“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
sht4x.pdf
Included I2C communication timing in section 4.2 20 Introduced new product version in Table 11Table 11 21 Updated ordering information in Table 12 November 2022 4 all Updated Datasheet with new SHT43 4 Edited Table 1 with SHT43 data 5 Inserted Figure 4 5 Edited Table 2 with SHT43 data 6 Inserted Figure 8
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Datei
SHT21.h
#define SHT21_CMD_MEAS_T_NO_HOLD 0xF3 #define SHT21_CMD_MEAS_RH_NO_HOLD 0xF5 #define SHT21_I2C_ADR 0x80 #define SHT21read 0b10000001 #define SHT21write 0b10000000 //for the config register //measuring solution
in „SHT21 auslesen mit I2C Lib von P.Fleury“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sht21.c
#include <stdint.h> #include "main.h" #include "sht21.h" #include "i2c.h" #include <util/delay.h> uint8_t sht21_read(int8_t* temperature, int8_t* humidity) { uint8_t low, high; uint16_t temp; // read temperature i2c_start(); if (!i2c_write(SHT21_I2C_ADR
in „SHT21 auslesen mit I2C Lib von P.Fleury“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datasheet_SHT3x_DIS.pdf
Typ. ±1.5 %RH SHT35 Accuracy tolerance 1 Max. Figure 4 - Low, typ. 0.21 %RH Repeatability2 Medium, typ. 0.15 %RH High, typ. 0.08 %RH Resolution Typ. 0.01 %RH Hysteresis at 25°C 0.8 %RH Specified range3 extended 4 0
in „[V] 2x I2C Temperatur/Feuchte Sensor FS400-SHT35“ · Markt ·
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schematic-T962.pdf
F4 4 390 C16 F3 3 F2 2 F1 1 1 3 3 S8550 GND U13 GND 7 5 4 2 GND 0.47uF k 0 A D 2 3 1 GND 3.3V 1 P0.21/PWM5/AD1.6/CAP1.3 D DV D D P1.31/~TRST 20 V V V P1.30/TMS 52 55 P0.20/MAT1.3/SSEL1/EINT3 P0.25/AD0.4/AOUT 9 AD0 (SHT 2) 27 P0.4/SCK0/CAP0.1/AD0.6 P0.17/CAP1.2/SCK1/MAT1.2 47 46 P0.16/EINT0/MAT0.2/CAP0.2
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Sensirion_Humidity_Sensors_SHT25_Datasheet.pdf
sequence – grey blocks are and the remainder of accessible bits optionally with default controlled by SHT2x. In this example, the resolution is set to 8bit or non-default values. / 12bit. The end of battery alert is activated when the battery 5.7 CRC Checksum power falls below 2.25V. SHT21 provides a CRC
in „SHT25 Feuchteanzeige über 100%“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ass.txt
, Y bc8: 83 30 cpi r24, 0x03 ; 3 bca: 21 f4 brne .+8 ; 0xbd4 <SHT75Temperature+0x14> { SHT75ResetConnection(); bcc: 0e 94 d2 05 call 0xba4 ; 0xba4 <SHT75ResetConnection> *error_code = 0; bd0: 18 82 st Y, r1 bd2: 02 c0 rjmp .+4 ; 0xbd8 <SHT75Temperature+0x18> } if (*error_code == 0) bd4: 88 23 and r24, r24 bd6: 49 f4 brne .+18 ; 0xbea <SHT75Temperature+0x2a> SHT75Start (); bd8: 0e 94 bb 05 call 0xb76 ; 0xb76 <SHT75Start> if (*error_code == 0) bdc: 88 81 ld r24, Y bde: 88 23 and r24, r24 be0: 21 f4 brne .+8 ; 0xbea <SHT75Temperature+0x2a
in „Taktanzahl einer for-Schleife“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SHT11-1.asm
'H' Feuchte messen cpi w,84 breq temperatur ; wenn 'T' Temperatur messen rjmp loop feuchte: rcall sht11_reset rcall sht11_rf rcall sht11_rd rcall sht11_c_rf mov w,R2 rcall rs_send mov w,R1 rcall rs_send rjmp loop temperatur: rcall sht11_reset rcall sht11_t rcall sht11_rd rcall sht11_c_t mov w,R2 rcall
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Datei
libsht.c
--------------------------------------------------------- void _sht_get_measurement_data(sht_value *p_sht_value, unsigned char *p_checksum) //-------------------------------------------------------------------- { sht_value sht_value_temp; sht_value_temp.i = 256*sht_read_byte(ACK); //read the first byte (MSB) sht_value_temp.i +=sht_read_byte(ACK); //read the second byte (LSB) *p_checksum =sht_read_byte(noACK); //read checksum *(p_sht_value)= sht_value_temp; }
in „SHT11 misst Mist“ · Mikrocontroller und Digitale Elektronik ·
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Datei
UARTProtokoll.c
-----------------------------------------*/ case 102: /* Messung der Temperatur mit Kommastelle */ sht_measurement_temp = SHT21_Temperatur_HM_K(); break; /*-------------------------------------------------------------*/ case 101: /* Messung der Feuchtigkeit ohne Kommastelle */ sht_measurement_humidity
in „Timer1 im CTC und LCD Probleme“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SHT_TEST.c
--------------------------------------------------------- void _sht_get_measurement_data(sht_value *p_sht_value, unsigned char *p_checksum) //-------------------------------------------------------------------- { sht_value sht_value_temp; sht_value_temp.i = 256*sht_read_byte(ACK); //read the first byte (MSB) sht_value_temp.i +=sht_read_byte(ACK); //read the second byte (LSB) *p_checksum =sht_read_byte(noACK); //read checksum *(p_sht_value)= sht_value_temp; }
in „SHT11 an ATmega2560 Es funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
KlimaSensorKomm.c
SHT75_CLK_1 PORTC |= (1<<SHT75_CLK); // Taktport wird hart (5V) auf 1 gesetzt #define SHT75_CLK_0 PORTC &= ~(1<<SHT75_CLK); // Taktport wird hart (GND) auf 0 gesetzt // Befehle für den SHT #define STATUS_REG_WRITE
in „SHT75 - CRC Check: Ich finde den Fehler nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
I2CwithISR.c
#include "msp430x22x4.h" #define BMP085 0 #define SHT21 1 unsigned char sensor; // sensor: übergabevariable zu obigen defines #define TEMP 0 #define HUMI 1 #define PRESS 2 unsigned char mmode; // messmodus: übergabevariable zu obigen defines unsigned short
in „msp430f2274 bmp085 i2c ohne interrupt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sht.c
// Power Up Delay } static void sht_start(void) { int i; sht_setdat(1); for (i=0;i<10;i++) { sht_clkhi(); sht_clklo(); } sht_clkhi(); sht_setdat(0); sht_clklo(); sht_clkhi(); sht_setdat(1); sht_clklo(); } static void sht_sendbyte(unsigned
in „MSP430 liest vom SHT11 nur das MSB“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sht21.h
#define SHT21_CMD_MEAS_T_NO_HOLD 0xF3 #define SHT21_CMD_MEAS_RH_NO_HOLD 0xF5 #define SHT21_I2C_ADR 0x80 uint8_t sht21_read(int8_t* temperature, int8_t* humidity);
in „SHT21 auslesen mit I2C Lib von P.Fleury“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ELF_Format.pdf
specifies the section’s semantics. Figure 1-10: Section Types, sh_type _ ____________________________ SHT_NULL 0 SHT_PROGBITS 1 SHT_SYMTAB 2 SHT_STRTAB 3 SHT_RELA 4 SHT_HASH 5 SHT_DYNAMIC 6 SHT_NOTE 7 SHT_NOBITS 8 SHT_REL 9 SHT_SHLIB 10 SHT_DYNSYM 11 SHT_LOPROC 0x70000000
in „elf32-avr object file format (gcc)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
1-Wire-Slave_SHT11.bas
************************************************************************* ' SHT-Sensor initialisieren Sht_init: Config Pind.6 = Output Config Pind.7 = Output Set Dataout For Ctr = 1 To 12 Set Sck Waitus 2 Reset Sck Waitus 2 Next Ctr Return ' SHT-Sensor Werte auslesen 'Routine to
in „1-Wire OW-wire slave device <=4MHz low current AVR assembler ATmega8“ · Projekte & Code ·
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Datei
sht11.c
#include "lpc21xx.h" #include "sht71.h" #include "delay.h" #include "math.h" // DATA = P0.27 // SCK = P0.26 //MYDEF'S #define IODIR IODIR1 #define IOSET IOSET1 #define IOCLR IOCLR1 #define SCK 0x04000000 #define SCK_HIGH
in „LPC2148 und SHT11“ · Mikrocontroller und Digitale Elektronik ·
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Datei
senden.c
sekunden >= 60) sekunden = 0; if( (sekunden == 5) || (sekunden == 15) ) messen = 1; if (messen == 1) { // SHT15-Messung unsigned char sht_checksum, sht_error=0; sht_value humidity; sht_value temperature; float dewpoint; unsigned char do_cycle=0; do { if (do_cycle>1) _delay_ms(200); do_cycle++; sht_error=sht_softreset(SHT_DATA_PIN); if (sht_error) { break; } sht_error=sht_measure(&humidity, &sht_checksum, HUMI, SHT_DATA_PIN); if (sht_error) { break; } sht_error=sht_measure(&temperature, &sht_checksum, TEMP, SHT_DATA_PIN
in „Atmega328p Sleep-Modus, ich komme nicht weiter“ · Mikrocontroller und Digitale Elektronik ·
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Datei
senden.c
/ grüne LED aus _delay_ms(500); */ read_adc(); if(sekunden == 5) messen = 1; if (messen == 1) { // SHT15-Messung unsigned char sht_checksum, sht_error=0; sht_value humidity; sht_value temperature; float dewpoint; unsigned char do_cycle=0; do { if (do_cycle>1) _delay_ms(200); do_cycle++; sht_error=sht_softreset(SHT_DATA_PIN); if (sht_error) { break; } sht_error=sht_measure(&humidity, &sht_checksum, HUMI, SHT_DATA_PIN); if (sht_error) { break; } sht_error=sht_measure(&temperature, &sht_checksum, TEMP, SHT_DATA_PIN
in „Atmega328p Sleep-Modus, ich komme nicht weiter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Sensirion_Humidity_SHT1x_SHT7x_CRC_Calculation_V1.pdf
CRC Checksum Calculation For Safe Communication of SHT1x and SHT7x Sensors Preface SHT1x and SHT7x humidity and temperature sensors In case data transmission from the sensor to the communicate with the Sensirion specific digital interface microcontroller
in „Brauche Hilfe bei SHT11 CRC Berechnung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tmote-sky-datasheet.pdf
Humidity/Temperature Sensor The optional humidity/temperature sensor is manufactured by Sensirion AG. The SHT11 and SHT15 models may be directly mounted on the Tmote module in the U3 component position. The SHT11/SHT15 sensors are calibrated and produce a digital output. The calibration coefficients are stored
in „MSP430 - Beste Möglichkeit der Kommunikation“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Datalogger_main.c
include <avr/io.h> #include <avr/eeprom.h> #include "i2c_functions.h" #include "usart.h" #include "sht21.h" #include "RV_8564_C2_functions.h" #include "24Cxx_functions.h" #include <util/delay.h> #include <avr/interrupt.h> #include <avr/sleep.h> volatile unsigned long i=0; volatile unsigned long adress_max
in „ATMega88 UART nimmt erst zweites Zeichen an“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2_updated_pcb_design.pdf
Humidity sensor SPI NOR Flash L A C D 3.3V 3 3 _ _ 3 3 C C C? . I I 100nF A 3 A U? 5 6 A L GNDREF SHT30-DIS C? D C 5 100nF 8 VCC GNDS 4 D C? 9 2 ADDR D SDA 1 I2C0_SDA U? PAD 6 V 4 100nF SHT30_RST 7 RESETS D SCL 3 I2C0_SCL R? W25Q128JVS R S AALERT SHT30_ALERT 4.7k GNDREF 8 U? V P C GNDREF ATECC608A-SSHDA
in „Schaltplan für mein erstes Dev board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pcb_design.pdf
Humidity sensor SPI NOR Flash L A C D 3.3V 3 3 _ _ 3 3 C C C? . I I 100nF A 3 A U? 5 6 A L GNDREF SHT30-DIS C? D C 5 100nF 8 VCC GNDS 4 D C? 9 2 ADDR D SDA 1 I2C0_SDA U? PAD 6 V 4 100nF SHT30_RST 7 RESETS D SCL 3 I2C0_SCL R? W25Q128JVS R S AALERT SHT30_ALERT 4.7k GNDREF 8 U? V P C GNDREF ATECC608A-SSHDA
in „Schaltplan für mein erstes Dev board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MaxComm_Protokollbeschreibung_DE.pdf
50SHT-S2 11115 SolarMax 330C-SV 330 SolarMax 990TS-SV ST 20409 SolarMax 60SHT 11110 SolarMax 300C 300 SolarMax 660TS-SV ST 20406 SolarMax 50SHT 11105 SolarMax 125 126 SolarMax 330TS-SV ST 20403 SolarMax 30SHT 11100 SolarMax 100 101 SolarMax 300TS MT 20318 SolarMax 28SHT 11095 SolarMax 100C 100 SolarMax 300TS ST 20316 SolarMax 25SHT 11090 SolarMax 80C 80 SOLARMAX GmbH August 2022 MaxComm Protokoll Seite 7 SolarMax 100TS 20314 SolarMax 22SHT 11085 SolarMax 60 61 SolarMax
in „Projekt Solarmax RS485 auslesen, mit Modscan 32“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Zwei offene Kartons mit Elektronikkomponenten und Kabeln
CAUTION SHT 21 45 SHT 30 31 SHT 40 41 45
in „[V] 2x I2C Temperatur/Feuchte Sensor FS400-SHT35“ · Markt · · Fotos
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PDF
Sensirion_CO2_Sensors_SCD30_Interface_Description.pdf
0x54 0x03 Stop Read: Start Read SHT SHT CRC Stop Header Offset Offset MSB LSB Start 0xC3 0x01 0xF4 0x33 Stop Set Temperature Offset Request: Slave Function Address Address Content Content CRC CRC Example: Set temperature offset to 5 K
in „Sensor daten über UART verschicken (mit PIC)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Multi_SD_SIM.ino
unter http://beelogger.de // Version 2020.04.13 // für Tobias Weiberle abgeänderter Sketch -- 24.04.21 // // SMS senden alle 2 Tage #include <SPI.h> #include <Wire.h> #include "Multi_SD_config.h" // Konfiguration und Kalibrierung eintragen #include "beelogger_config.h" //############### Konfig Start #
in „Wird diese if-Schleife jemals ausgeführt?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
vestel_17mb95m_r2-1_sch.pdf
DQSL DDR0_DQSLB C18 A_DDR3_DQSLB B_DDR3_DQSLB K25 DDR1_DQSLB DDR0_DQSU B18 A_DDR3_DQSU B_DDR3_DQSU J21 DDR1_DQSU A18 J20 DDR0_DQSUB A_DDR3_DQSUB B_DDR3_DQSUB DDR1_DQSUB F F PROJECT NAME : 17mb95m-r2 A3 VESTEL SCH NAME : 02_MSTAR_DDR3 T. SHT:10 DRAWN BY : <YOUR NAME HERE> 01-10-2013_12:14 1 2 3 4 5 6 7
in „Vestel TV Board 17MB95M zwei SMD Bauteile finden“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c
//****************************************************************************** // MSP430G2x21/G2x31 Demo - I2C Master Transmitter / Reciever, multiple bytes // // Description: I2C Master communicates with I2C Slave using // the USI. Master data should increment from 0x55 with each transmitted
in „MSP430G2231 - I2C TI-Code funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
Instruments Inc. // Feb 2005 // Built with CCE Version: 3.2.0 and IAR Embedded Workbench Version: 3.21A //****************************************************************************** #include <msp430x44x.h> void main(void) { WDTCTL = WDTPW+WDTHOLD; // Stop watchdog timer P6SEL |= 0x01; // Enable A/D channel A0 //ADC12CTL0 = ADC12ON+SHT0_15 + REFON + REF2_5V; ADC12CTL0 = ADC12ON+SHT0_2; // Turn on ADC12, set sampling time ADC12CTL1 = SHP; // Use sampling timer ADC12CTL0 |= ENC; // Enable conversions while (1) { ADC12CTL0 |= ADC12SC
in „MSP430-449STK2 ADC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
512410-sp-01-en-PROGRAM__SCHALTNETZTEIL_PSP_12010.pdf
220E 100n 1206 C R45 Q4 0 3 R79 R89 C 8 1.5K 1206 + 1 V F 1K5 1206 LM358 2 5 47E I R76 1K 1206 220E SHT / R78 CON5 5 C10 B R43 TER. SENSE 1 X 12K 1206 R91 T 10K Is R80 1 2 3 P P 1K 1206 / 1K u C83 1K 1K R75 . R77 1206 CON7 2 R61 0 HV- C14 C85 0 1 6K8 1206 C64 1 1 8 _ 0 47nF 1206 2 2 6 R59 100n 1206 4n7
in „Tipps zum Reparieren eines Voltcraft PSP12010“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
hitachi_55hk6t64u_55293dlb_48hk6t64u_48293dlb_chassis_17mb100-r1_17ips20-r9_sm.pdf
6V37 6V37 6V3 1 6V3 1 470n6V3 AD23 AVDD_DDR_VBN_C_0 SCH NAME : 2 T. SHT:2 AD24 AVDD_DDR_VBN_C_1 DRAWN BY : 11-11-2014_17:28 <YOUR NAME HERE> 1 2 3 4 5 6 7 8 AX M 1 2 3 4 5 6 7 8 F21 G33 DDR12_A00 C21 A_DDR3_A0 B_DDR3_A0 J36 DDR34_A00 DDR12_A01 A_DDR3_A1 B_DDR3_A1 DDR34_
in „Vestel Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
disassebled_minimal_change_crash.asm
: c1 f7 brne .-16 ; 0x3a0 <_Z8sht_crc8PKhhh.constprop.61+0xa> 3b0: 81 81 ldd r24, Z+1 ; 0x01 3b2: 86 27 eor r24, r22 3b4: 98 e0 ldi r25, 0x08 ; 8 3b6: 21 e3 ldi r18, 0x31 ; 49 3b8: 87 ff sbrs r24, 7 3ba: 03 c0 rjmp .+6 ; 0x3c2 <_Z8sht_crc8PKhhh.constprop
in „Bizarrer Firmware crash - ATmega4808. Wie Debuggen?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
disassebled_original_working.asm
: c1 f7 brne .-16 ; 0x3a0 <_Z8sht_crc8PKhhh.constprop.61+0xa> 3b0: 81 81 ldd r24, Z+1 ; 0x01 3b2: 86 27 eor r24, r22 3b4: 98 e0 ldi r25, 0x08 ; 8 3b6: 21 e3 ldi r18, 0x31 ; 49 3b8: 87 ff sbrs r24, 7 3ba: 03 c0 rjmp .+6 ; 0x3c2 <_Z8sht_crc8PKhhh.constprop
in „Bizarrer Firmware crash - ATmega4808. Wie Debuggen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
___Voltcraft_PSP1405__SCHALTNETZTEIL_Schaltplan.pdf
50 CN9 T.S P2.2 VDDI0 12 DAC2/ADC14 P2.1 49 1 10uF\35V VDD10 CN4 13 DAC3/ADC15 ADuC 7026 P2.7 48 2 C21 R66 120K P3.7 47 14 TMS P3.6 46 100nF CN11 15 45 TDI XCLK1 C5 U2 R65 120K 16 44 1 8 17 P0.1 XCLK0 32.768KHz P2.3 43 XTL1 NC 2 3 7 P0.7 R3 R1 8 18 P4.6 P2.0 42 1 VDDI0 10M 3 7 6 J11 19 P4.7 IRQ0/P0.5
in „Labor Schaltnetzteil PSP1405 (Voltcraft) haut es immer die beiden IRF840 durch.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
000512411-qs-01-en-SCHALTPLAN_PROGRAM__SCHALTNETZTEIL_PSP_1.pdf
50 CN9 T.S P2.2 VDDI0 12 DAC2/ADC14 P2.1 49 1 10uF\35V VDD10 CN4 13 DAC3/ADC15 ADuC 7026 P2.7 48 2 C21 R66 120K P3.7 47 14 TMS P3.6 46 100nF CN11 15 45 TDI XCLK1 C5 U2 R65 120K 16 44 1 8 17 P0.1 XCLK0 32.768KHz P2.3 43 XTL1 NC 2 3 7 P0.7 R3 R1 8 18 P4.6 P2.0 42 1 VDDI0 10M 3 7 6 J11 19 P4.7 IRQ0/P0.5
in „Labor Schaltnetzteil PSP1405 (Voltcraft) haut es immer die beiden IRF840 durch.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
vestel_17ips71-r3_sch.pdf
+400V 1 3.15A/250V S8 UF5402 UF5402 D13 S9 V1 LF2 LF1 D33 D34 S24 CN1 S2 1 2 2 1 S33 FS1 C306 C19 C21 C20 UF5402 +24Vdc OUTPUT C305 C3 C6 RL207 RL207 47p D12 C5V1 C5V1 26R B P2 3.15A/250V 56n 4 3 3 4 100n 56n S6 2kV 39u 39u 39u +24VCC F12 B 275V 275V 275V +400V 450V 450V 450V UF5402 D300 D301 6 R S23
in „TV PSU 17IPS71 Sekundärseitig Kurzschluss?“ · Analoge Elektronik und Schaltungstechnik ·
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vestel_17ips71-r3_sch.pdf
+400V 1 3.15A/250V S8 UF5402 UF5402 D13 S9 V1 LF2 LF1 D33 D34 S24 CN1 S2 1 2 2 1 S33 FS1 C306 C19 C21 C20 UF5402 +24Vdc OUTPUT C305 C3 C6 RL207 RL207 47p D12 C5V1 C5V1 26R B P2 3.15A/250V 56n 4 3 3 4 100n 56n S6 2kV 39u 39u 39u +24VCC F12 B 275V 275V 275V +400V 450V 450V 450V UF5402 D300 D301 6 R S23
in „L40f278x3cw-3DU Vestel 171ps71“ · Analoge Elektronik und Schaltungstechnik ·
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Soil_Moisture_Sensor_Schematic.pdf
1 2 3 4 5V_USB 5V_USB 5V_USB 3V3_USB C21 A 47µ A P2 CC1 R22 IC21 R21 R23 RXD GP2 P22k RST 9 RST TXD 21 1k CO2 1k COI2 20 CR1 VBUS3 N\RT 8 RXD PR1124PI20 P O R X D PR3 PI20 PI710 VBUS PII241 TXD P VREGIN DCD PII200 1k NVU DTR 23 DTR CR4 5V_USB 5V_USB R25 PI610 22 PR41 PI20 P O T X D P21 47k C22 PIC10 VDD DSR PII194 RTS P 100n C23 RTS PII203 NLR EN VBUS 1 IC22 CO2 PC PIC10 VIO CTS PII202 CP1 D- 2 D- 1 I/O1 I/O1 6 CC P0100n RI/CLK 1 NLT Q21A 3 D+ 2 5 GND GND CO2INT 3 PII209 UMH3NTN P
in „Pflanzensensor Akkulaufzeit“ · Mikrocontroller und Digitale Elektronik ·