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Tabelle mit Produktübersicht von SHT40A und SHT41A Sensoren
Device Overview Product Details SHT40A-xD1B ±3 %RH / ±0.3 °C, I2C addr.: 0x44, 0x45, PWM interface 2.3 V ... 5.5 V SHT40A-FD1B ±3 %RH / ±0.3 °C, PWM interface, 2.3 V ... 5.5 V SHT40A-AW1B ±3 %RH / ±0.3 °C, 0x44 I2C addr., wettable flanks, 2.3 V ... 5.5V SHT41A-AD1P ±2 %RH / ±0.2 °C, 0x44 I2C addr., 2.3 V ... 5.5 V, protective cover SHT41A-AW1B ±2 %RH / ±0.2 °C, 0x44 I2C addr., wettable flanks, 2.3 V ... 5.5 V SHT41A-AWLB (samples avail.) ±2 %RH / ±0.2
in „Bosch BME680 - Wirklich so schlecht?“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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sht4x.pdf
is <0.04 °C/y. And please note that it is different for the SHT43. www.sensirion.com / D1 Version 6.4 – November 2023 6 / 24 DT (°C) DT (°C) ±1.0 ±1.0 SHT40 typ SHT41 typ ±0.8 SHT40 max ±0.8 SHT41 max ±0.6 ±0.6 ±0.4 ±0.4 ±0.2 ±0.2 ±0.0 ±0.0 -40 -20 0 20 40 60 80
in „Trockenschrank für Elektronik wie funktioniert es?“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
sht4x.pdf
is <0.04 °C/y. And please note that it is different for the SHT43. www.sensirion.com / D1 Version 6.4 – November 2023 6 / 24 DT (°C) DT (°C) ±1.0 ±1.0 SHT40 typ SHT41 typ ±0.8 SHT40 max ±0.8 SHT41 max ±0.6 ±0.6 ±0.4 ±0.4 ±0.2 ±0.2 ±0.0 ±0.0 -40 -20 0 20 40 60 80
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Diagramme der relativen Luftfeuchtigkeitsgenauigkeit von SHT-Sensoren
SENSIRION ΔRH (%RH) ±8 ±6 ±4 ±2 ±0 SHT40 typ SHT40 max Relative Humidity (%RH) Figure 2. SHT40 typical and maximal relative humidity accuracy at 25 °C. ΔRH (%RH) ±8 ±6 ±4 ±2 ±0 SHT41 typ SHT41 max Relative Humidity (%RH) Figure 3. SHT41 typical and maximal relative humidity accuracy at 25 °C. ΔRH (%RH) ±8 ±6 ±4 ±2 ±0 SHT43 typ SHT43 max Relative Humidity (%RH) Figure 4. SHT43 typical and maximal relative humidity accuracy at 25 °C. ΔRH (%RH) ±8 ±6 ±4 ±2 ±0 SHT45 typ SHT45 max Relative Humidity (%RH) Figure 5. SHT45
in „Silica Gel trocknen“ · Offtopic · · Screenshots
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Sensirion_Humidity_Sensors_SHT3x_Datasheet_Filter_Membrane.pdf
www.sensirion.com August 2019 - Version 3 2/4 5 Quality Name Quantity Order Number 5.1 Material Contents SHT30-DIS-F2.5kS 2500 1-101466-01 The device is fully RoHS and WEEE compliant, e.g. free of Pb, Cd, and Hg. SHT30-DIS-F10kS 10000 1-101454-01 SHT31-DIS-F2.5kS 2500 1-101462-01 SHT31-DIS-F10kS 10000 1-101463-01 SHT35-DIS-F2.5kS 2500 1-101465-01 6 Ordering Information SHT35-DIS-F10kS 10000 1-101469-01 Different SHT3x output versions can be ordered in tape Table 1 SHT3x membrane ordering options. and reel packaging
in „Filtermembran“ · Mikrocontroller und Digitale Elektronik ·
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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
communication sequence – grey I C address + read Hold during measurement blocks are controlled by SHT2x. If measurement is not 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 completed upon “read” command, sensor does not provide ACK K K on bit 27 (more of these iterations are possible). If bit
in „Rechnung mit dem PIC16F“ · 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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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
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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Datasheet_SHT3x_DIS.pdf
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 ±4 ±4 ±4 ±4 ±4 ±4 ±4 ±4 100
in „[V] 2x I2C Temperatur/Feuchte Sensor FS400-SHT35“ · Markt ·
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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
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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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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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
in „SHT11 SHT21 unterschiedliche Luftfeuchte Werte“ · Mikrocontroller und Digitale Elektronik ·
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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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schematic-T962.pdf
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/RI1/EINT2/AD1.5 P0.10/RTS1/CAP1.0/AD1.2 35 3.3V V2 2 k 58 P0.23
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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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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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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
regler.txt
crystal P1OUT = 0; P1DIR = BIT6|BIT7|BIT4|BIT0; ADC10CTL0 = ADC10ON + REFON + REF2_5V + SREF_1 + ADC10SHT_3; //ADC10CTL0 = ADC10SHT_2 | ADC10ON | REFON | REF2_5V; // Input channel 1, trigger using ADC10SC bit , no clock division , // internal ADC clock , single channel single conversions ADC10CTL1 = INCH
in „MSP430G2231 mit BUZ 11 PWM Ansteuerung“ · 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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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
disassebled_minimal_change_crash.asm
.36+0x1a2> 41aa: 5c 91 ld r21, X 41ac: f1 01 movw r30, r2 41ae: a0 81 ld r26, Z 41b0: b1 81 ldd r27, Z+1 ; 0x01 41b2: 2c 91 ld r18, X 41b4: 52 13 cpse r21, r18 41b6: 23 c0 rjmp .+70 ; 0x41fe <_ZN5myMAC13radio_receiveEb.constprop
in „Bizarrer Firmware crash - ATmega4808. Wie Debuggen?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
disassebled_original_working.asm
41ca: 00 0c add r0, r0 41cc: 88 0b sbc r24, r24 41ce: 99 0b sbc r25, r25 41d0: 0e 94 95 40 call 0x812a ; 0x812a <__floatsisf> 41d4: 20 e0 ldi r18, 0x00 ; 0 41d6: 30 e0 ldi r19, 0x00 ; 0 41d8: 40 e0 ldi r20, 0x00 ; 0 41da: 5f e3 ldi r21, 0x3F ; 63 41dc: 0e 94 f4 40 call 0x81e8 ; 0x81e8 <__mulsf3> 41e0: f5 01 movw r30, r10 41e2: 60 83 st Z, r22 41e4: 71 83 std Z+1, r23 ; 0x01 41e6: 82 83 std Z+2, r24 ; 0x02 41e8: 93
in „Bizarrer Firmware crash - ATmega4808. Wie Debuggen?“ · Mikrocontroller und Digitale Elektronik ·
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vestel_17ips71-r3_sch.pdf
_1 V_3 D30 D40 SB5100 35V 35V 2 26R 10R 10R S7 D22 C69 S4 22u S22 UF5402 UF5402 2 FS2 10R 10R S14 D41 D42 SB5100 16V 510V TH4 TH1 +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
in „TV PSU 17IPS71 Sekundärseitig Kurzschluss?“ · Analoge Elektronik und Schaltungstechnik ·
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vestel_17ips71-r3_sch.pdf
_1 V_3 D30 D40 SB5100 35V 35V 2 26R 10R 10R S7 D22 C69 S4 22u S22 UF5402 UF5402 2 FS2 10R 10R S14 D41 D42 SB5100 16V 510V TH4 TH1 +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
in „L40f278x3cw-3DU Vestel 171ps71“ · Analoge Elektronik und Schaltungstechnik ·
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Sensirion_CO2_Sensors_SCD30_Interface_Description.pdf
Modbus 6 0x003B argument Full sequence examples: Protocol Data to write Description Set Write Cmd Cmd SHT SHT CRC Stop Temperature Header MSB LSB Offset Offset Offset Start MSB LSB Start 0xC2 0x54 0x03 0x01 0xF4 0x33 Stop Get Temperature Offset Write: Start Write Cmd Cmd Stop Header MSB LSB I2C Start 0xC2 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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vestel_17mb95m_r2-1_sch.pdf
A3 0 VESTEL 3 SCH NAME : 05_POWER T. SHT:10 DRAWN BY : <YOUR NAME HERE> 08-10-2013_08:59 1 2 3 4 5 6 7 8 AX M 1 2 3 4 5 6 7 8 OPTIONS TABLE PANEL SUPPLY SWITCH FHD 50Hz 3D FFC 1 R298 2 3 3V3_VCC 10k OP_PIN4 6 n V C140 5 4 4 2 2 1 1 9 8 7 6
in „Vestel TV Board 17MB95M zwei SMD Bauteile finden“ · Analoge Elektronik und Schaltungstechnik ·
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AdCoCom_UMTS_kit.pdf
ecner f noc sser p esuohe r aw pohs ... ar f egar evoc ST MU t e G )ti Keno r f deri uqer 6( 100- 41 FCS- MN .)sdao l nwod/ st cudor( m oc. mococda . www 32721042 / A : sr t cennoc FR m orf lt r t ar ugÞnoc eerf et daol nwod,ti K r ST MUeh t r f st gnel l bac et l ul ac li sae oT d )ti Kenor of dedne mm ocer m 02( NFJ 05- 41 FCSe l bac FR nit ai di sut t s dna mr l a DEL u 22721042 / A : l bac der ugfinocnU tr opt ut uo annet na eerf- CD m l ppusr ewopl aco l r ot o meR m2 dna 8, 01 L ) NFJ 05- 41 FCS ( sel bac FR3 l ort
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Datei
Sinussweep.txt
[34] = 3811; a[35] = 3843; a[36] = 3873; a[37] = 3901; a[38] = 3928; a[39] = 3952; a[40] = 3975; a[41] = 3996; a[42] = 4015; a[43] = 4032; a[44] = 4047; a[45] = 4060; a[46] = 4071; a[47] = 4080; a[48] = 4087; a[49] = 4092; a[50] = 4095; a[51] = 4095; a[52] = 4092; a[53] = 4087; a[54] = 4080; a[55] =
in „Sinuserzeugung mit DAC: Probleme Interrupterzeugung für DAC durch TimerB Compareregister“ · Mikrocontroller und Digitale Elektronik ·
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Datei
msp430x20x2_adc10_14_Beispiel_von_TI_.cpp
Instruments Inc. // May 2006 // Built with CCE Version: 3.2.0 and IAR Embedded Workbench Version: 3.41A //****************************************************************************** #include "msp430x20x2.h" void main(void) { WDTCTL = WDTPW + WDTHOLD; // Stop WDT ADC10CTL1 = INCH_1 + CONSEQ_3; // A1/A0, repeat multi channel ADC10CTL0 = ADC10SHT_2 + MSC + ADC10ON + ADC10IE; ADC10AE0 = 0x03; // P1.0,1 ADC option select ADC10DTC1 = 0x20; // 16 conversions for (;;) { ADC10CTL0 &= ~ENC; while (ADC10CTL1 & BUSY); // Wait if ADC10 core is active
in „MSP430 Leistungsmessung 230V“ · Mikrocontroller und Digitale Elektronik ·
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Datei
msp430x20x2_adc10_10.c
L. Westlund // Texas Instruments Inc. // May 2006 // Built with IAR Embedded Workbench Version: 3.41A //****************************************************************************** #include "msp430x20x2.h" void main(void) { WDTCTL = WDTPW + WDTHOLD; // Stop WDT ADC10CTL1 = INCH_3 + CONSEQ_1; // A3/A2/A1, single sequence ADC10CTL0 = ADC10SHT_2 + MSC + ADC10ON + ADC10IE; ADC10DTC1 = 0x03; // 3 conversions ADC10AE0 |= 0x0E; // P1.3,2,1 ADC10 option select P1DIR |= 0x01; // Set P1.0 output for (;;) { ADC10CTL0 &= ~ENC; while (ADC10CTL1 & BUSY
in „MSP430 ADC10: Zwei Kanäle hintereinander abfragen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
msp430x22x4_adc10_10.txt
Instruments Inc. // April 2006 // Built with CCE Version: 3.2.0 and IAR Embedded Workbench Version: 3.41A //****************************************************************************** #include "msp430x22x4.h" void main(void) { WDTCTL = WDTPW + WDTHOLD; // Stop WDT ADC10CTL1 = INCH_2 + CONSEQ_1; // A2/A1/A0, single sequence ADC10CTL0 = ADC10SHT_2 + MSC + ADC10ON + ADC10IE; ADC10DTC1 = 0x03; // 3 conversions ADC10AE0 |= 0x07; // P2.2,1,0 ADC10 option select P1DIR |= 0x01; // Set P1.0 output for (;;) { ADC10CTL0 &= ~ENC; while (ADC10CTL1 & BUSY
in „MSP430 ADC10 mehrere Kanäle“ · 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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Datei
Code.c
Instruments Inc. // April 2006 // Built with CCE Version: 3.2.0 and IAR Embedded Workbench Version: 3.41A //****************************************************************************** #include "msp430x22x4.h" void main(void) { WDTCTL = WDTPW + WDTHOLD; // Stop WDT ADC10CTL0 = SREF_1 + ADC10SHT_2 + REFON
in „MSP430 LPM-Handling, verstehe Code nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SGP41.pdf
Information Use the part names and product numbers shown in the following table when ordering the SGP41 gas sensor and accessories. For the latest product information and local distributors, visit www.sensirion.com. Part Name Description Ordering size Product Number SGP41-D-R4 SGP41 sensor components as tape on reel 2’500 pcs 3.000.060 SEK-SVM4x Evaluation Kit 1 SVM41 PCB equipped with SGP41, an SHT40, and an 1 pc 3.000.630 MCU; 1 USB cable; 1 jumper wire cable; direct humidity compensated VOC and NO Index output via UART or I C 2 x interface www.sensirion.com/my-sgp-ek
in „SGP41 I²C-Gassensor wieso nicht erreichbar?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
___Voltcraft_PSP1405__SCHALTNETZTEIL_Schaltplan.pdf
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 41 10pF 10pF S D D / C16 C15 4 L 5 4 20 P0.0 . K O . N D D N . . . . . . . . T . . 0 3 R63 0E 0 C D 0 O O V G 3 3 3 3 2 0 2 2 S 3 3 R 4K7 P T T P I I L D P P P P P P P P R P P I R4 R2 NC 2 J4 1 2 2 2 2
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
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 41 10pF 10pF S D D / C16 C15 4 L 5 4 20 P0.0 . K O . N D D N . . . . . . . . T . . 0 3 R63 0E 0 C D 0 O O V G 3 3 3 3 2 0 2 2 S 3 3 R 4K7 P T T P I I L D P P P P P P P P R P P I R4 R2 NC 2 J4 1 2 2 2 2
in „Labor Schaltnetzteil PSP1405 (Voltcraft) haut es immer die beiden IRF840 durch.“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
usart-adc.txt
CALDCO_1MHZ; // SMCLK = DCO = 1MHz P1SEL |= TXD + BIT3; P1DIR |= TXD + BIT6 + BIT4 + BIT0; P1DIR |= 0x41; // Set P1.0, P1.6 to output direction P1IE |= 0x08; // P1.3 interrupt enabled P1IES |= 0x08; // P1.3 Hi/lo edge P1IFG &= ~0x08; //AD Wandelung ADC10CTL0 = ADC10ON + REFON + REF2_5V + SREF_1; //ADC10CTL0 = ADC10SHT_2 | ADC10ON | REFON | REF2_5V; // Input channel 1, trigger using ADC10SC bit , no clock division , // internal ADC clock , single channel single conversions ADC10CTL1 = INCH_3 | SHS_0 | ADC10DIV_0 |
in „MSP430G2231 USART letztes Zeichen kaputt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hitachi_55hk6t64u_55293dlb_48hk6t64u_48293dlb_chassis_17mb100-r1_17ips20-r9_sm.pdf
...................................................................................................41 8. 2Gb DDR3 SDRAM.....................................................................................................................................................42 9. 32Gbit (4G x 8 bit) NAND Flash
in „Vestel Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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MSP430_Testprogramme.pdf
Project_4_(TimerA) ......................................................................................41 1.2.4.1. TimerA_1.c .....................................................................................41 1.2.5. Project_5_(TimerA_PWM)..............................................................
in „Anfängerfrage: MSP430F2274“ · Mikrocontroller und Digitale Elektronik ·
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Soil_Moisture_Sensor_Schematic.pdf
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
in „Pflanzensensor Akkulaufzeit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IEE_03602-105-05220.pdf
Lo C Add –106 & –151 to Tables and Outlines, Revise 95–07–31 M. Englehart Section 4, Correct Typo Sht. 40 \ E.O. 31107 D Change -105 Current Ratings on Sht. 16 95–11–15 B. Lo \E.O. 31186 E Add -120, -121, -130, -134 & -160 to Tables and 96-11-7 B. Lo Outlines, Revise Section 4.4 Sht 29 \ E.O. 32196
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PDF
IEE_03602-105-05220.pdf
Lo C Add –106 & –151 to Tables and Outlines, Revise 95–07–31 M. Englehart Section 4, Correct Typo Sht. 40 \ E.O. 31107 D Change -105 Current Ratings on Sht. 16 95–11–15 B. Lo \E.O. 31186 E Add -120, -121, -130, -134 & -160 to Tables and 96-11-7 B. Lo Outlines, Revise Section 4.4 Sht 29 \ E.O. 32196
in „[V] VFD 20x2 unbenutzt“ · Markt ·
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PDF
rudi_____RX-V4A_TSR-400.pdf
C125 15 94 13 0.1/10 P1RX2M 16 93 TX2P Noreplacement HBCK/DSDCK P1RX2P 17 92 TX2M to 002.sht HMCK 2 IC1 part available. DGND AUP_SEL DGND +3.3H1 A1 VSS 18 91 AVDD09TX +3.3H1 (CPU) MUX to 004.sht VDD09 TX1P SELECT VCC 19 MN864798YA 90 1 1 (DIR) P0RX3M TX1M サービス部品供給なし to DIGITAL 2/5 HRX_MCLK
in „Test in der Schaltung STR3A400“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
code.c
+ DAC12AMP_5 + DAC12ENC; // 1 reference voltage, medium speed } void init_ADC(void) { ADC12CTL0 = SHT0_14 + ADC12ON ; ADC12CTL1 = CSTARTADD_0 + SHS_0 + SHP + ADC12DIV_0 + ADC12SSEL_2 + CONSEQ_0; ADC12MCTL0 = SREF_2 + INCH_3; //ADC12MEM0, A3 PIN5 ADC12CTL0 |= ENC; //ADC startfähig machen } void init_SIO
in „[MSP430] Variablenuebergabe an ISR“ · Mikrocontroller und Digitale Elektronik ·
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Datei
code_funzt.c
+ DAC12AMP_5 + DAC12ENC; // 1 reference voltage, medium speed } void init_ADC(void) { ADC12CTL0 = SHT0_14 + ADC12ON ; ADC12CTL1 = CSTARTADD_0 + SHS_0 + SHP + ADC12DIV_0 + ADC12SSEL_2 + CONSEQ_0; ADC12MCTL0 = SREF_2 + INCH_3; //ADC12MEM0, A3 PIN5 ADC12CTL0 |= ENC; //ADC startfähig machen } void init_SIO
in „[MSP430] Variablenuebergabe an ISR“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
Interrupt //Configure UART-Device UCA0CTL1 |= UCSSEL_1; // CLK = ACLK UCA0BR0 = 0x03; // 32k/9600 - 3.41 UCA0BR1 = 0x00; // UCA0MCTL = 0x06; // Modulation UCA0CTL1 &= ~UCSWRST; // **Initialize USCI state machine** } void init_adc() { //--------------------------------------------------------- // activates
in „MSP430 UART0 RX-ISR“ · Mikrocontroller und Digitale Elektronik ·