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Datasheet_SHT3x_DIS.pdf
10 20 30 40 50 Relative Humidity (%RH) SHT30 Relative Humidity (%RH) SHT31 Figure 2 Tolerance of RH at 25°C for SHT30. Figure 3 Tolerance of RH at 25°C for SHT31. DRH (%RH) ±6 maximal tolerance typical tolerance ±4 ±2 ±0 0 10 20 30 40 50 60 70 80 90 100 SHT35 Relative Humidity (%RH) Figure 4 Tolerance of RH at 25°C for SHT35. www.sensirion.com December 2022- Version 7 3/22 Datasheet SHT3x-DIS SHT30 SHT31 RH (%RH) RH (%RH) 100 ±
in „[V] 2x I2C Temperatur/Feuchte Sensor FS400-SHT35“ · Markt ·
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Datei
SHT11.asm
--------------------------- ; in : r18 Byte ; out : r18=$00 ACK empfangen ; r18=$FF NACK empfangen sht11_wr_byte: push r16 ldi r16,8 ; 8 Bit sht11_wr_byte10: lsl r18 ; Bit L/H brcc sht11_wr_byte20 data_high ; H-Bit rjmp sht11_wr_byte30 sht11_wr_byte20: data_low ; L-Bit sht11_wr_byte30: nop nop nop nop
in „SHT71 Assembler Code für Atmega8“ · Mikrocontroller und Digitale Elektronik ·
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sht4x.pdf
Instructions. www.sensirion.com / D1 Version 6.4 – November 2023 4 / 24 DRH (%RH) DRH (%RH) ±8 ±8 SHT40 typ ±6 ±6 SHT41 typ SHT40 max SHT41 max ±4 ±4 ±2 ±2 ±0 ±0 0 10 20 30 40 50 60 70 80 90 100 0 10 20 30 40 50 60 70 80 90 100 Relative Humidity (%RH) Relative Humidity (%RH) Figure 2. SHT40 typical and maximal relative Figure 3. SHT41 typical and maximal relative humidity accuracy at 25 °C. humidity accuracy at 25 °C. DRH (%RH) DRH (%RH) ±8 ±8 SHT43 typ ±6 ±6 SHT45 typ SHT43 max SHT45 max ±4 ±4 ±2 ±2 ±0 ±0 0 10 20 30 40 50 60 70
in „Trockenschrank für Elektronik wie funktioniert es?“ · Mechanik, Gehäuse, Werkzeug ·
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sht4x.pdf
Instructions. www.sensirion.com / D1 Version 6.4 – November 2023 4 / 24 DRH (%RH) DRH (%RH) ±8 ±8 SHT40 typ ±6 ±6 SHT41 typ SHT40 max SHT41 max ±4 ±4 ±2 ±2 ±0 ±0 0 10 20 30 40 50 60 70 80 90 100 0 10 20 30 40 50 60 70 80 90 100 Relative Humidity (%RH) Relative Humidity (%RH) Figure 2. SHT40 typical and maximal relative Figure 3. SHT41 typical and maximal relative humidity accuracy at 25 °C. humidity accuracy at 25 °C. DRH (%RH) DRH (%RH) ±8 ±8 SHT43 typ ±6 ±6 SHT45 typ SHT43 max SHT45 max ±4 ±4 ±2 ±2 ±0 ±0 0 10 20 30 40 50 60 70
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Sensirion_Humidity_Sensors_SHT25_Datasheet.pdf
communication sequence – grey I C address + read Hold during measurement blocks are controlled by SHT2x. If measurement is not completed upon “read” command, sensor does not provide ACK 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 on bit 27 (more of these iterations are possible). If bit 45
in „SHT25 Feuchteanzeige über 100%“ · Mikrocontroller und Digitale Elektronik ·
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Sensirion_Humidity_SHT21_Datasheet_V4.pdf
typ max Units SCL IN SCL C Output Low VDD = 3.0 V, SCL OUT = Voltage, VOL -4 mA < IOL < 0mA0 - 0.4 V SHT2x 0 (slave) F Output Sink - - -4 mA SDA IN SDA Current, IOL SDA OUT Input Low 30% 0 - V GND Voltage, VIL VDD Input High 70% Figure 11 Typical application circuit, including pull-up resistors Voltage
in „Rechnung mit dem PIC16F“ · 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
in „Taktanzahl einer for-Schleife“ · Mikrocontroller und Digitale Elektronik ·
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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
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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PDF
Sensirion_Humidity_Sensors_SHT3x_Datasheet_Filter_Membrane.pdf
Datasheet Membrane Option 3 Technical Drawing 0.2 . . 2 2 0.2 2.2 0.9 2.5 Figure1Dimensionaldrawingof SHT3xmembranesensor package. Pin 1 is indicated through the cut corner of the membrane. 4 Shipping Package Ø1.5 +.1 /-0.0 4.00 2.00 ±.05 SEE Note 2 Ø1.00 MIN 0.30 ±.05 4.00 SEE Note 1 1.75 ±.1 A R 0.2 MAX
in „Filtermembran“ · 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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dbsht1x7xdeutschdk0704.pdf
/71 ▯▯▯ SHT15 Auflösung▯ ▯ ▯ ▯▯▯▯ ▯▯▯▯ ▯▯▯▯ ▯rF▯ - 2 ▯ ▯ ▯ ▯▯ ▯▯ Eit - 1 SHT75 Wiederholbarkeit▯ ▯ ▯ ±▯▯▯▯ ▯ ▯rF▯ (1)▯ 0 10 20 30 40 50 60 70 80 90 100 % rF Genauigkeit OLQHDULsiert Viehe Abb1 °C Unsicherheit Temperatur
in „Auswertung Luftfeuchtesensor“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sht.c
0x03 #define SHT_CMD_HUMID 0x05 #define SHT_CMD_WR_STAT 0x06 #define SHT_CMD_RD_STAT 0x07 #define SHT_CMD_RESET 0x1E #define SHT_VOLTAGE_COMPENSATION_D1_5V -40.1 #define SHT_VOLTAGE_COMPENSATION_D1_4V -39.8 #define
in „MSP430 liest vom SHT11 nur das MSB“ · Mikrocontroller und Digitale Elektronik ·
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FeuchteSHT7x.pdf
Driesen + Kern GmbH V3.01August 2007 SHT1x Produktbeschreibung einem äußerst attraktiven Preis. Jeder Sensmitter wird in einer Präzisionsfeuchtigkeitskammer kalibriert und die Der SHT1x/7x ist ein “single chip” Multisensormodeul Kalibrationskoeffizienten
in „Suche Elektronikbastler“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
sht11.c
#include "config.h" #include "sht11.h" static uint8_t sht11_sda; #define SHT11_CMD_TEMP 0x03 #define SHT11_CMD_HUMID 0x05 #define SHT11_CMD_WSTAT 0x06 #define SHT11_CMD_RSTAT 0x07 #define SHT11_CMD_RESET 0x1E ///////////////////////
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Sensirion_Humidity_SHT21_Sample_Code_V1.2.pdf
RH=11bit, T=11bit SHT2x_RES_MASK = 0x81 // Mask for res. bits (7,0) in user reg. } etSHT2xResolution; typedef enum { SHT2x_EOB_ON = 0x40, // end of battery SHT2x_EOB_MASK = 0x40, // Mask for EOB bit(6) in user reg. } etSHT2xEob; typedef enum { SHT2x_HEATER_ON = 0x04, // heater on SHT2x_HEATER_OFF = 0x00, // heater off SHT2x_HEATER_MASK = 0x04, // Mask for Heater bit(2) in user reg. } etSHT2xHeater; // measurement signal selection typedef enum
in „SHT11 SHT21 unterschiedliche Luftfeuchte Werte“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sht11.asm
, SCK BCF SHT, DATA MOVLW d'255' CALL delay_us BSF SHT, SCK BCF SHT, DATA MOVLW d'255' CALL delay_us BSF SHT, SCK BSF SHT, DATA MOVLW d'255' CALL delay_us BCF SHT, SCK BSF SHT, DATA MOVLW d'255' CALL delay_us RETURN
in „Sensirion SHT71 mit PIC18F2550“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sht11.c
#include "config.h" #include "sht11.h" #define SHT11_CMD_TEMP 0x03 #define SHT11_CMD_HUMID 0x05 #define SHT11_CMD_WSTAT 0x06 #define SHT11_CMD_RSTAT 0x07 #define SHT11_CMD_RESET 0x1E #define F_CPU 16000000 //////////////////////////
in „SHT11 an ATmega2560 Es funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sht11.c
#include "config.h" #include "sht11.h" #define SHT11_CMD_TEMP 0x03 #define SHT11_CMD_HUMID 0x05 #define SHT11_CMD_WSTAT 0x06 #define SHT11_CMD_RSTAT 0x07 #define SHT11_CMD_RESET 0x1E #define F_CPU 16000000 //////////////////////////
in „SHT11 an ATmega2560 Es funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
|= ( 1 << SHT_DATA_PIN) #define CLEAR_SHT_DATA SHT_DATA_PORT &= ~( 1 << SHT_DATA_PIN) #define SET_SHT_SCK SHT_SCK_PORT |= ( 1 << SHT_SCK_PIN) #define CLEAR_SHT_SCK SHT_SCK_PORT &= ~( 1 << SHT_SCK_PIN) #define MAKE_SHT_DATA_PIN_OUTPUT
in „Temperatur Feuchtigkeitssensor SHT7x Software/ hardware Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
schematic-T962.pdf
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 P0.7/SSEL0/PWM2/EINT2 31 TREF (SHT 3) GND 9 45 P0.15
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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
in „Projekt Solarmax RS485 auslesen, mit Modscan 32“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
SHT Error (SoftReset) %i\r\n", sht_error); break; } sht_error=sht_measure(&humidity, &sht_checksum, HUMI, SHT_DATA_PIN); if (sht_error) { usart_write("SHT Error (HUMI) %i\r\n", sht_error); break; } sht_error=sht_measure(&temperature, &sht_checksum, TEMP, SHT_DATA_PIN); if (sht_error) { usart_write("SHT Error (TEMP) %i\r\n", sht_error); break; } sht_raw_to_physical(&humidity, &temperature); if (do_cycle>=5)
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Datei
main.c
SHT Error (SoftReset) %i\r\n", sht_error); break; } sht_error=sht_measure(&humidity, &sht_checksum, HUMI, SHT_DATA_PIN); if (sht_error) { usart_write("SHT Error (HUMI) %i\r\n", sht_error); break; } sht_error=sht_measure(&temperature, &sht_checksum, TEMP, SHT_DATA_PIN); if (sht_error) { usart_write("SHT Error (TEMP) %i\r\n", sht_error); break; } sht_raw_to_physical(&humidity, &temperature); if (do_cycle>=5)
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Datei
main.c
SHT Error (SoftReset) %i\r\n", sht_error); break; } sht_error=sht_measure(&humidity, &sht_checksum, HUMI, SHT_DATA_PIN); if (sht_error) { usart_write("SHT Error (HUMI) %i\r\n", sht_error); break; } sht_error=sht_measure(&temperature, &sht_checksum, TEMP, SHT_DATA_PIN); if (sht_error) { usart_write("SHT Error (TEMP) %i\r\n", sht_error); break; } sht_raw_to_physical(&humidity, &temperature); if (do_cycle>=5)
in „AVR NET IO RoBue 1.5 Automatischer Ablauf“ · 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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Datei
main.c
UCSRC = 0x86; UBRRH = 0x00; UBRRL = 0x67; unsigned char error =0; unsigned char checksum; char buffer[30]; sht_value humidity; sht_value temperature; error=sht_softreset(); _delay_ms(10); //Warten if (error) { sprintf(buffer, "SHT11 Error (SoftReset) %i\n", error); uart_puts(buffer); } error=sht_measure(&humidity, &checksum, HUMI); _delay_ms(10); if (error) { sprintf(buffer, "SHT11 Error (HUMI) %i\n", error); uart_puts(buffer); } error=sht_measure(&temperature, &checksum, TEMP); _delay_ms(10); if (error) { sprintf(buffer, "SHT11 Error (TEMP) %i\n", error); uart_puts(buffer);
in „Temperatur Feuchtigkeitssensor SHT7x Software/ hardware Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FTSH-105-01-L-D-K.pdf
x .0500[1.270]) -.010[-0.25] -L: 10µ" LIGHT SELECTIVE GOLD IN CONTACT -EL: BOARD LOCKS (SEE FIG 6, SHT 2) AREA, MATTE TIN ON TAIL (9 POS MIN; -02 & -03 LEAD STYLES ONLY) (No OF POS x .0500[1.270]) - .0500[1.270] -S: 30µ" SELECTIVE GOLD IN CONTACT AREA, (USE ONLY WHEN MATING WITH CLP) MATTE TIN ON TAIL
in „J-Link EDU Mini“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HT_AN_AlertMode.pdf
Alert Mode of SHT3x-DIS Allows to use SHT3x-DIS as a humidity and temperature watchdog SHT3x-DIS features an Alert Mode, when operated in the needed next to the sensor to switch an LED on or start a periodic data acquisition
in „Sensirion STS31 - Alert Pin“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main_simple.c
:%02i",uhr.tag,uhr.monat,uhr.jahr,uhr.stunde,uhr.minute,uhr.second); usart_put("\n%s\n",time_str); sht11_start_measure(); do { flag = sht11_measure_finish(); } while ( flag != 1 ); utoa(sht11_get_hum_raw(0),feuchte1_raw_str,10); itoa(sht11_get_hum(0),feuchte1_str,10); utoa(sht11_get_hum_raw(1),feuchte2_raw_str,10); itoa(sht11_get_hum(1),feuchte2_str,10); utoa(sht11_get_temp_raw(0),temp1_raw_str,10); itoa(sht11_get_temp(0),temp1_str,10); utoa(sht11_get_temp_raw(1),temp2_raw_str,10); itoa(sht11_get_temp(1),temp2_str,10);
in „MMC SD library FAT16 FAT32 read write“ · Projekte & Code ·
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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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Datei
msp430f149.h
Hold 0 Select 3 */ #define SHT10 (0x1000) /* ADC12 Sample Hold 0 Select 0 */ #define SHT11 (0x2000) /* ADC12 Sample Hold 1 Select 1 */ #define SHT12 (0x4000) /* ADC12 Sample Hold 2 Select 2 */ #define SHT13 (0x8000) /* ADC12 Sample
in „MSP430 Portfehler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dht11.c
stdint.h> #include <avr/io.h> #include "lcd_select.h" static uint8_t gDHT11_data[5] = {0, 0, 0, 0}; v u16 sht11_TMP,sht11_HUM,tmp; //======================================= void dht11_messung (void){ long i; u8 xx; u8 endwhile=1; //u16 n, tmp[50]; cli(); //led_on; xx=dht11_read_data(); sht11_HUM=getHumidity(); sht11_TMP=getTemp(); sei(); lg(2,10); //li(gDHT11_data[0]);li(gDHT11_data[1]);li(gDHT11_data[2]);li(gDHT11_data[3]); lcd_int(sht11_TMP);lw("/");lcd_int(sht11_HUM); //led_off; /* lg(3,1); lcd_int4(gDHT11
in „Temperatursensor DHT22/AM2302 // ATMega328P“ · 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
SHT75.txt
HIGH_BYTE res 1 ; Oberste 8 bit LOW_BYTE res 1 ; untere 8 bit GLOBAL HIGH_BYTE, LOW_BYTE EXTERN DELAY_30ms #define SENSOR_DATA PORTA, 1 #define SENSOR_SCK PORTB, 2 #define SENSOR_DATA_DIR TRISA, 1 #define SENSOR_SCK_DIR TRISB, 2 PROG1 Code ; START ;ORG 0x000 goto START_SHT ; ;org 0x0005 ; Interrupt ;retfie START_SHT GLOBAL START_SHT ;***********************Init**************************************** movlw 0x005 movwf HIGH_BYTE movwf LOW_BYTE movwf ADDR_COMM movlw b'00000101' ; Messe Feuchte movwf ADDR_COMM bsf
in „SHT75 am PIC 16F877A“ · 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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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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Datei
io430x16x.h
SHT0_8 (8*0x100u) #define SHT0_9 (9*0x100u) #define SHT0_10 (10*0x100u) #define SHT0_11 (11*0x100u) #define SHT0_12 (12*0x100u) #define SHT0_13 (13*0x100u) #define SHT0_14 (14*0x100u) #define SHT0_15 (15
in „Pins ein und ausschalten“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Text7.txt
lcall h_1 sjmp $ h_1: lcall transmission_start lcall datum_ausgabe lcall warte_2 ;warteschleife für sht messung setb c jnb datum,datum_einlesen clr a lcall datum_einlesen mov r7,a mov a,#1 lcall datum_einlesen mov r6,a clr c mov a,r6 add a,#60h ;-4000 low byte mov r6,a mov r7,a addc a,#0f0h ;-4000 high byte mov r7,a ret sht_conn: mov r5,#10 ;connection reset für sensor setb datum abcd: setb takt setb datum nop clr takt setb datum nop djnz r5,abcd Transmission_start: setb takt ;startsequenz initialisierung nop nop clr datum
in „sht 71:werte auf dem display ausgeben“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Multi_SD_SIM.ino
nicht gemessen const float No_Value = -1.0; // Vorbelegung, Wert nicht gemessen // DHT1, DHT2, Si7021, SHT31a, SHT31b, BMEa, BMEb, DS18B20a,DS18B20b float SensorTemp[10] = {No_Val, No_Val, No_Val, No_Val, No_Val, No_Val, No_Val, No_Val, No_Val, No_Val}; // DHT1, DHT2, Si7021, SHT31a, SHT31b, BMEa, BMEb ,
in „Wird diese if-Schleife jemals ausgeführt?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Sensirion_CO2_Sensors_SCD30_Interface_Description.pdf
Subsidiaries www.sensirion.com Version 1.0 – D1 – May 2020 1/21 1 Digital interface description The SCD30 digital interface is compatible with the I2C protocol and the Modbus protocol. For selecting Modbus protocol, the SEL pin needs to be pulled to VDD Voltage during power-up of the SCD30 sensor module.
in „Sensor daten über UART verschicken (mit PIC)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
msp430x20x2.h
output of Ref. */ #define ADC10SR (0x400) /* ADC10 Sampling Rate 0:200ksps / 1:50ksps */ #define ADC10SHT0 (0x800) /* ADC10 Sample Hold Select 0 */ #define ADC10SHT1 (0x1000) /* ADC10 Sample Hold Select 1 */ #define SREF0 (0x2000) /* ADC10 Reference Select 0 */ #define SREF1 (0x4000) /* ADC10 Reference Select 1 */ #define SREF3 (0x8000) /* ADC10 Reference Select 2 */ #define ADC10SHT_0 (0*0x800u) /* 4 x ADC10CLKs */ #define ADC10SHT_1 (1*0x800u) /* 8 x ADC10CLKs */ #define ADC10SHT_2 (2*0x800u) /* 16 x ADC10CLKs */ #define ADC10SHT_3 (3*0x800u) /* 64 x ADC10CLKs */ #define SREF_
in „msp430x20x2.h gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
P2V_ESC_P1-2.pdf
TITLDJI P2V+ ESC Board - Troubleshooting & Repair AUTHORP. Harden DATE SHT1/7 The Handiman’s Guide to the DJIV.2 ESC Theory,Troubleshooting, and Repair by Paul Harden Introduction. This guide is the result of repairing Motor Commutation Sequence several DJI V.2 ESC (Electronic
in „lächerliche Frage : was ist "kv" ?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
sht11.c
HP InfoTech s.r.l. http://www.hpinfotech.ro e-mail:office@hpinfotech.ro Project : Version : Date : 30.03.2004 Author : Nick Schres Company : Comments: Chip type : ATmega8 Program type : Application Clock frequency : 8,000000 MHz Memory model : Small External SRAM size : 0 Data Stack size : 256 ******
in „SHT11 Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
hallo.c
HP InfoTech s.r.l. http://www.hpinfotech.ro e-mail:office@hpinfotech.ro Project : Version : Date : 30.03.2004 Author : Nick Schres Company : Comments: Chip type : ATmega16 Program type : Application Clock frequency : 4,000000 MHz Memory model : Small External SRAM size : 0 Data Stack size : 256 *****
in „SHT11 Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
hallo.c
HP InfoTech s.r.l. http://www.hpinfotech.ro e-mail:office@hpinfotech.ro Project : Version : Date : 30.03.2004 Author : Nick Schres Company : Comments: Chip type : ATmega16 Program type : Application Clock frequency : 4,000000 MHz Memory model : Small External SRAM size : 0 Data Stack size : 256 *****
in „SHT11 Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
hallo.c
HP InfoTech s.r.l. http://www.hpinfotech.ro e-mail:office@hpinfotech.ro Project : Version : Date : 30.03.2004 Author : Nick Schres Company : Comments: Chip type : ATmega16 Program type : Application Clock frequency : 4,000000 MHz Memory model : Small External SRAM size : 0 Data Stack size : 256 *****
in „SHT11 Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
512410-sp-01-en-PROGRAM__SCHALTNETZTEIL_PSP_12010.pdf
SCHEMATIC CIRCUIT DIAGRAM OF KEYBOARD PCB 5 4 3 2 1 5 4 3 2 1 R5 C16 68E/3W MOR 1nF/100V DIP HV+ SHUNT MBR30H100 T130-26 1 2 = + R44 Q3 0 D12A 8 C46 C29 C28 R10-R15 C31 C30 D R 20V / D 47E I V V 0.15/5W/WW V 6 5 V 4K7x6 / R16 5 0-10A 0 C9 B R29 F / / F F 2 X 1 u F 0 0.15/5W/WW u RL2 K T 10K 0 0 1 R17 0 5 0
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
SYS_SCL PAN_SDA TOUCHPAD_SDA VESTEL PROJECT NAME : 17mb100-r1 A3 PAN_SCL TOUCHPAD_SCL SCH NAME : 19 T. SHT:19 DRAWN BY : <YOUR NAME HERE> 25-10-2014_14:53 1 2 3 4 5 6 7 8 AX M 1 2 3 4 5 6 7 8 470uF 4V 470uF 4V 30081307 30081307 1V15_VCC U30 MST7410DY C2240 C2037 C2386 C1597C1598C1599C1600C1601C1602C1201C20C1603
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