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howto_-tasmota-sml.pdf
USE_MY92X1 #undef USE_SM16716 #undef USE_SM2135 #undef USE_SONOFF_L1 #undef USE_COUNTER #undef USE_DS18x20 #undef USE_SHT #undef USE_HTU #undef USE_BH1750 #undef USE_SHT3X #undef USE_LM75AD #undef USE_ADE7953 #undef USE_MHZ19 #undef USE_SENSEAIR #undef USE_PMS5003 #undef USE_NOVA_SDS #undef USE_SERIAL_BRIDGE
in „Wärmezähler über optische M-Bus-Schnittstelle auslesen“ · Haus & Smart Home ·
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Datei
TS_5435_0118adc12_02.c
Initialisiert FKA als Textanzeige text_loeschen(); // löscht alten Text programmversion(); ADC12CTL0 = ADC12SHT02 + ADC12ON + ADC12REFON ; // Sampling time, ADC12 on ADC12CTL1 = ADC12SHP; // Use sampling timer ADC12IE = 0x10; // Enable interrupt P6SEL |= BIT4; //P6.4 ADC12MCTL4 = ADC12INCH_4 ; ADC12CTL0 |= ADC12ENC
in „Bedeutung?: Error: cannot load from …..“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AdCoCom_UMTS_kit.pdf
FRsesaercn i tI . et sys egar evoC i i Mr ednet xEegar evoCr ewoP woL gni li u- I na ni sl bacl i xaocf o sht gnl r ednt xEegar evoCr ewoP woL dedne t xe egdir bt deng i sed i ) ECPL( rednet xE 92821042 / A :i i Mti K ST MU egarevoCre woP woL DDF ST MUehT z HM0712- 0291 m et sySegar evoCgn i li u- I ti K ST
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Taz_Altium_Version.pdf
PC0 PICI0A3 H2_CS 24 H1_CS 0 1 0 VCCIO IC1 GND 1 P P4 PI (SCK1/ADC1)PC1 25 420NNCaut CORPI 1 R P 1 20 1 1 8 CO11 2 CO1C 8 , Q1 1 (ADC2)PC2 IP1A25 NF ult PIC500 VDD TXCAN PIIC51 PIC101 TXD RS PIC108 RP 1 1 2 COC 8 (ADC3)PC3 IP1A26 A3_VSENS PIC509 RST RXCAN PIIC52 VCCIO PIC102 VSS CANH PIC107 C NH P PI
in „Schaltplan richtig zeichnen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ad_lcd.c
Eingänge nutzen P6SEL=0x01; // P6.0 als A/D-Wandler benutzen, den Rest als GPIO ADC12CTL0 = ADC12ON+SHT0_0+REFON+REF2_5V; // ADC12 anschalten, n=1, referenz // auf 2,5V setzen ADC12CTL1 = SHP; // SHP benutzen ADC12MCTL0 = SREF_1+INCH_0; // Vr+=Vref+ ADC12CTL0 |= ENC; // jetzt anfangen ... for(;;) { //
in „Spannung messen“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
waage.c
Nullabgleich-Timer-Setup TACTL = TASSEL_2 + ID_3 + MC_2; // SMCLCK/8, Continuous Mode ADC10CTL0 |= ADC10SHT_3 + ADC10ON; // ADC10-S/H auf 64 P2SEL &= ~(BUTTON_T + BUTTON_Z); // P2.6 + P2.7 als GPIO P2REN |= (BUTTON_T + BUTTON_Z); // P2.6 + P2.7 als Taster P2OUT |= (BUTTON_T + BUTTON_Z); // mit PullUP P2IE
in „Programm zu groß für 1k Flash“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
Nullabgleich-Timer-Setup TACTL = TASSEL_2 + ID_3 + MC_2; // SMCLCK/8, Continuous Mode ADC10CTL0 |= ADC10SHT_2 + ADC10ON; // ADC10-S/H auf 16 P2SEL &= ~(BUTTON_T + BUTTON_Z); // P2.6 + P2.7 als GPIO BUTTON_T + BUTTON_Z P2REN |= BUTTON_T + BUTTON_Z; // P2.6 + P2.7 als Taster P2OUT |= BUTTON_T + BUTTON_Z; //
in „Programm zu groß für 1k Flash“ · Mikrocontroller und Digitale Elektronik ·
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Datei
usart-adc.txt
104 uint8_t BitCnt; // Bit count, used when transmitting byte char TXByte; int integer; char string[20]; // TXByte via UART when Transmit() is called // Function Definitions void Transmit (void); void sendChar (char c); void UartPutS (char *s); void main (void) { WDTCTL = WDTPW + WDTHOLD; // Stop watchdog
in „MSP430G2231 USART letztes Zeichen kaputt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
waage.c
Nullabgleich-Timer-Setup TACTL = TASSEL_2 + ID_3 + MC_2; // SMCLCK/8, Continuous Mode ADC10CTL0 |= ADC10SHT_3 + ADC10ON; // ADC10-S/H auf 64 P2SEL &= ~(BUTTON_T + BUTTON_Z); // P2.6 + P2.7 als GPIO P2REN |= (BUTTON_T + BUTTON_Z); // P2.6 + P2.7 als Taster P2OUT |= (BUTTON_T + BUTTON_Z); // mit PullUP P2IE
in „Programm zu groß für 1k Flash“ · Mikrocontroller und Digitale Elektronik ·
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PDF
telos-revb-2004-09-27.pdf
POWER D22 USB INTERFACE U_VCC P_DVCC P_DVCC 1 2 VCCin VCCin Used for Reading Serial / Programming 1 L20 Connects and Powered via USB P_DVCC C23 C24 C25 R29 LLSD103A D U_VCC N 10u 10k D 1 2 G 0.1u 0.1u F Bead 240-1035-1 R20 U_VCC3.3 3 Vout Vin 2 U_VCC C20 470 U_AVCC U25 0.1u C22 3 3 2 1 0.1u TC55RP33 C21 U20 33n C C C U22 C C C I 4 6 V V V C 25 TXD 4 R22 3V3OUT A TXD RXD USB- RXD 24 RTS USB IDENTIFICATION EEPROM 3 3 8 USBDM RTS# 23 27 R23 CTS# 22 DSR 2 2 USB+ 7 USBDP DTR# 21 DTR D20 27 R24 DSR# 20 R25 U23
in „Mic Amp an 2.4GHz Sender - Störung“ · HF, Funk und Felder ·
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PDF
rudi_____RX-V4A_TSR-400.pdf
1A ST 7 20 89 S 6VDD 2 4 15 B1 P0RX3P AVDD09TX 1 1 EARC_MCK no_use 1B C 4A no_use HRX_WS0/DL2 21 88 F 5OE 6 1 3 I 1 to 004.sht AVDD09RX0 TX0P C 1 6 / R93 1Y 3B EARC_WCK/DL2 to DIGITAL 4/5 C126 22 87 5 C . 4 T 1
in „Test in der Schaltung STR3A400“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c
//#include "usart.h" //#include "ADC.h" //#include "dataflash.h" //#include "speed.h" //#include "Sht.h" //#include "alarm.h" //#include "onewire.h" //#include "ds18x20.h" //#include "KXPS5-3157.h" #include "delay.h" // eingefügt //#include "MAX6675.h" //#include "menu.h" // fuer menues //#define pLCDREG_test
in „Arduino flashen über Makefile“ · Mikrocontroller und Digitale Elektronik ·
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PDF
vestel_17ips11-r2.pdf
R152 12V_DC 12V DIODE OPS. 24V DIODE OPS. 3 2 S132 C105 C102 47p PIN_9 12V_AC 10R 10R 10R 10R STPS20H100CFP 24V_AC D131 +24VCC 2kV S139 12V_AC R168 R186 R151 R169 C165 C164 D130 10R 10R 10R 10R 1u 1u SF10L60U AC4 4 1 AC1 R182 R164 25V 25V LF101 100k 100k HER207 12V_AC F110 12V_DC TR100 R110 R181 A +
in „LCD-Fernseher Hintergrundbeleuchtung defekt?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
Nachttemperatur // VA-Ende -> Counter unsigned int var_array[MAX_VAR_ARRAY] = {10,50,30,0,0,0,0,0,25,1,20,20,20,20,20,20,20,20,4,0,18,0,4,0,18,0,4,0,18,0,4,0,18,0,4,0,18,0,4,0,18,0,4,0,18,0,4,0,18,0,15,15,15,15,15,15,15,0}; // RoBue: // Die Uhrzeit wird zentral in main.c berechnet (s.u.) // Die anderen Programmteile
in „HTML-Header zerschossen?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
out.txt
0x08003140: e000e400 .... DCD 3758154752 0x08003144: e000e100 .... DCD 3758153984 $t _ZN16mb_uart32_de_irq20register_callback_rxEPFvPhmmPvES1_ 0x08003148: 6181 .a STR r1,[r0,#0x18] 0x0800314a: 6202 .b STR r2,[r0,#0x20] 0x0800314c: 2000 . MOVS r0,#0 0x0800314e: 4770 pG BX lr _ZN16mb_uart32_de_irq20register_callback_txEPFvPhmmPvES1
in „ARM Bootloader mit ELF, Einstieg nicht bei 0x08000000“ · Mikrocontroller und Digitale Elektronik ·
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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_1 + 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
waage.c
TACTL = TASSEL_2 + ID_3 + MC_2; // Set the timer A to SMCLCK/8, Continuous Mode ADC10CTL0 |= ADC10SHT_3; // S/H auf 64 P2SEL &= ~(BUTTON_T + BUTTON_Z); // P2.6 + P2.7 als GPIO P2REN |= (BUTTON_T + BUTTON_Z); // P2.6 + P2.7 als Taster P2OUT |= (BUTTON_T + BUTTON_Z); // mit PullUP P2IE |= (BUTTON_T +
in „Programm zu groß für 1k Flash“ · Mikrocontroller und Digitale Elektronik ·
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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
control1.c
/f_timer = 64Hz ( ACLK = 32,687kHz) 15,6ms (0x200) //f_timer = 1021Hz ( ACLK = 32,687kHz) 0,9ms (0x20) //f_timer = 127Hz ( ACLK = 32,687kHz) 7,8ms (0x100) //f_timer = 409Hz ( ACLK = 32,687kHz) 2,44ms (0x50) //f_timer = 32Hz ( ACLK = 32,687kHz) (0x3FD) } //f_timer = 320Hz ( ACLK = 32,687kHz) (0x66) void
in „MSP430 Timing Probleme“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
0x30 ); __delay_cycles( 100UL ); // 100us lcd_nibble( 0x30 ); __delay_cycles( 100UL ); lcd_nibble( 0x20 ); __delay_cycles( 100UL ); // switch to 4 bit mode lcd_command( 0x28 ); // 2 lines 5*7 lcd_command( 0x08 ); // display off lcd_command( 0x01 ); // display clear lcd_command( 0x06 ); // cursor increment
in „MSP430 Launchpad lcd Ansteuerung, Vergleic. Atmel AVR“ · Projekte & Code ·
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PDF
DiscoveryF3_adap.pdf
RX PIP377 8 PIP308 PC12_UART5_TX PB9_IN3 R1PIR190PIR1901 P7P1080PIP10108 PA3_ONLPF4J1011 12 PIJNLPA20OU NLPE PIJ211 12 PINLPE2 C0 100nF PIP106 7 PIP107 9 PIP309 Label: UART5 COR20 9 PIP10109 A NLPAIJ1013 14 PIJNLPA40OU NLPE PIJ213 14 PINLPE4 M25P32-VMW6TG PA9_UART1_RX PIP310 11 PIP3011 VCC5V PC6_IN4
in „[V] STM32F3 Discovery + Adapterboard für ein FlyingF3 (FlightControl) mit der Taulabssoftware“ · Markt ·
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Datei
main.c
resetted in the // loop, which is waiting from a message which means if // I send a at-command, read 20 signs and reset the i // after Ive read my stuff //--------------------------------------------------------- i++; dispChar(6, 1); UART_FLAG = true; // sets the global rx-flag -> main loop _BIC_SR_IRQ
in „MSP430 UART0 RX-ISR“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rotary.txt
takt equ p3.2 richtung equ p1.7 graycode EQU 20h BITS equ 21h Counter equ 30h Tabelle: DB 0, 1, 0FFH,0,0FFH,0,0,1,1,0,0,0FFH,0,0FFH,1,0 ORG 0 ;************************************************************************** ;* * ;* ****** Demoprogramm LCD
in „8051 Projekt Rotary Encoder“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GA-5486AL.pdf
DATA SRAM respectively. • CACHE MEMORY SIZE SETTING 3-3 GA-5486AL Size 128K 256K 512K JP4 2-4 OPN SHT SHT JP4 1-3 OPN OPN SHT DATA SRAM 32K8 4 pcs 64K8 4 pcs 128K8 4 pcs TAG SRAM 8K8 16K8 32K8 JP4 JP4 JP4 4 2 4 2 4 2 3 1 3 1 3 1 128KB 256KB 512KB 3.5 CPU INSTALLATION AND JUMPERS SETUP The CPU is a sensitive
in „Sucher 486er bis DX4 100“ · Markt ·
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Datei
880eed3fe10373c0a5d4ca8d0892cc67.txt
DC3840_BLACK_WHITE is not set DC3840_USART_0=y DC3840_USE_USART=0 # DC3840_UDP_DEBUG is not set # FS20_SUPPORT is not set # FS20_SEND_SUPPORT is not set # FS20_RECEIVE_SUPPORT is not set # FS20_RECEIVE_WS300_SUPPORT is not set # DEBUG_FS20_REC is not set # DEBUG_FS20_REC_QUEUE is not set # DEBUG_FS20_REC_VERBOSE is not set # DEBUG_FS20_WS300 is not set # DEBUG_FS20_WS300_VERBOSE is not set # IR_SUPPORT is not set # RC5_SUPPORT is not set # RC5_SUPPORT is not set # RC5_UDP_SUPPORT is not set CONF_RC5_SERVER="192.168.100.3" # DEBUG_RC5
in „Ethersex will nicht so richtig“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SHT15mitUART0.c
//UART0 interrupt source: Transmit buffer empty //Disable UART0 continuous receive mode u0brg = 0x20; //UART0 bit rate: 19200 s0tic = 0x00; //Disable the UART0 transmit interrupt s0ric = 0x00; //Disable the UART0 receive interrupt te_u0c1 = 1; //Enable UART0 transmission re_u0c1 = 1; //Enable UART0
in „R8C: Sensorausgabe über UART0?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
FET140_demolist_C.txt
ADC12, Sample A10 Temp, Set P1.0 if Temp ++ ~2C fet140_adc12_04.c - ADC12, Extend Sampling Period with SHT Bits fet140_adc12_05.c - ADC12, Using an External Reference fet140_adc12_06.c - ADC12, Repeated Sequence of Conversions fet140_adc12_07.c - ADC12, Repeated Single Channel Conversions fet140_adc12_08
in „MSP430 UART Baudrate einstellen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
msp430f1232.pdf
SMCLK = LFXT1 = LF 35% 65% P1.4/SMCLK, 2.2 V/3 V CL= 20 pF f = f 50%− 50% 50%+ SMCLK LFXT1/n 15 ns 15 ns t(Xdc) Duty cycle of O/P 50%− 50%+ SMCLK = DCOCLK 2.2 V/3 V 15 ns 50% 15 ns frequency P20 = LFXT1 = fXT1 40% 60% P2.0/ACLK, P20 = LFXT1 = fLF 2.2 V/3 V 30% 70% CL= 20 pF P20 = LFXT1/n 50% t(TAdc) TA0, TA1, TA2, CL= 20 pF, Duty cycle = 50% 2.2 V/3 V 0 ±50 ns NOTES: 1. The limits of the system clock MCLK has to be met. MCLK and SMCLK can have different frequencies.
in „MSP430 Interrupt Prioritäten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
msp430g2452.pdf
8 8 1 LF, DCO, VLO MSP430G2352IRSA16 10 16-QFN MSP430G2352IPW14 10 14-TSSOP MSP430G2252IN20 16 20-PDIP MSP430G2252IPW20 1 2 256 1x TA3 8 8 1 LF, DCO, VLO 16 20-TSSOP MSP430G2252IRSA16 10 16-QFN MSP430G2252IPW14 10 14-TSSOP MSP430G2152IN20 16 20-PDIP MSP430G2152IPW20 16 20-TSSOP 1 1 128 1x TA3 8 8 1 LF, DCO, VLO MSP430G2152IRSA16 10 16-QFN MSP430G2152IPW14 10 14-TSSOP MSP430G2412IN20 16 20-PDIP MSP430G2412IPW20 1 8 256 1x TA3 8 - 1 LF, DCO, VLO 16 20-TSSOP MSP430G2412IRSA16 10 16-QFN MSP430G2412IPW14 10 14-TSSOP MSP430G2312IN20 16 20-PDIP MSP430G2312IPW20 16 20-TSSOP 1 4 256 1x TA3
in „MSP430 Gleitkommazahl in Flash speichern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SGP41.pdf
...................................................................................................20 6.1 Packaging Information.....................................................................................................................................................20 www.sensirion.com version
in „SGP41 I²C-Gassensor wieso nicht erreichbar?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ferrite_als_magnetostriktive_Resonatoren_eth-32736-02.pdf
0 60 80 100 0 20 4 0 6 0 8 0 100 0 2 0 4 0 6 0 S O 100 6 0 0 400 4 0 4 0 0 1 d) < X =*. M 200 20 /\ W y " \ • m 20 40 60 80 100 20 4 0 60 80 100 20 40 60 8 0 100 2 0 4 0 0 2 0 \ TP ej «. io S 2 0 0 S. 10 o V " - — 2
in „Ferritkernsättigung von außen detektieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Schnellstart_OrCAD_PCB_Editor_16_6.pdf
U3A U3B U3B VCC Add inter-sheet Cross reference Edit part and net properties references report 5 HS/ SHT2 6 XREF 7 U1A e U2AU3A U1A d SEL/ SHT3 ABCDEh2i3 U3A U3B . 45689fghj9 U3B VCC GND 87665swert D “40”H = COMPGROUP = “1” A C Generate Backannotate from Netlist for w PCB design Bill of Materials PCB design
in „OrCAD Handbuch gesucht“ · Markt ·
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PDF
msp430g2553_MIXED_SIGNAL_MICROCONTROLLER.pdf
24 32-QFN MSP430G2353IPW28 LF, 24 28-TSSOP 1 1 4 256 2x TA3 8 8 1 DCO, MSP430G2353IPW20 VLO 16 20-TSSOP MSP430G2353IN20 16 20-PDIP MSP430G2253IRHB32 24 32-QFN LF, MSP430G2253IPW28 24 28-TSSOP MSP430G2253IPW20 1 1 2 256 2x TA3 8 8 1 DCO, 16 20-TSSOP VLO MSP430G2253IN20 16 20-PDIP MSP430G2153IRHB32 24 32-QFN LF, MSP430G2153IPW28 1 1 1 256 2x TA3 8 8 1 DCO, 24 28-TSSOP MSP430G2153IPW20 16 20-TSSOP VLO MSP430G2153IN20 16 20-PDIP MSP430G2513IRHB32 24 32-QFN MSP430G2513IPW28 LF, 24 28-TSSOP 1 1 16 512 2x TA3 8 - 1 DCO, MSP430G2513IPW20 VLO 16 20-TSSOP MSP430G2513IN20 16 20-PDIP MSP430G2413IRHB32
in „Signalverzögerung im Minutenbereich“ · Mikrocontroller und Digitale Elektronik ·
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PDF
msp430g2553_controller.pdf
24 32-QFN MSP430G2353IPW28 LF, 24 28-TSSOP 1 1 4 256 2x TA3 8 8 1 DCO, MSP430G2353IPW20 VLO 16 20-TSSOP MSP430G2353IN20 16 20-PDIP MSP430G2253IRHB32 24 32-QFN LF, MSP430G2253IPW28 24 28-TSSOP MSP430G2253IPW20 1 1 2 256 2x TA3 8 8 1 DCO, 16 20-TSSOP VLO MSP430G2253IN20 16 20-PDIP MSP430G2153IRHB32 24 32-QFN LF, MSP430G2153IPW28 1 1 1 256 2x TA3 8 8 1 DCO, 24 28-TSSOP MSP430G2153IPW20 16 20-TSSOP VLO MSP430G2153IN20 16 20-PDIP MSP430G2513IRHB32 24 32-QFN MSP430G2513IPW28 LF, 24 28-TSSOP 1 1 16 512 2x TA3 8 - 1 DCO, MSP430G2513IPW20 VLO 16 20-TSSOP MSP430G2513IN20 16 20-PDIP MSP430G2413IRHB32
in „MSP430g2553 externe Taktquelle“ · Mikrocontroller und Digitale Elektronik ·
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PDF
msp430g2553_MIXED_SIGNAL_MICROCONTROLLER.pdf
24 32-QFN MSP430G2353IPW28 LF, 24 28-TSSOP 1 1 4 256 2x TA3 8 8 1 DCO, MSP430G2353IPW20 VLO 16 20-TSSOP MSP430G2353IN20 16 20-PDIP MSP430G2253IRHB32 24 32-QFN LF, MSP430G2253IPW28 24 28-TSSOP MSP430G2253IPW20 1 1 2 256 2x TA3 8 8 1 DCO, 16 20-TSSOP VLO MSP430G2253IN20 16 20-PDIP MSP430G2153IRHB32 24 32-QFN LF, MSP430G2153IPW28 1 1 1 256 2x TA3 8 8 1 DCO, 24 28-TSSOP MSP430G2153IPW20 16 20-TSSOP VLO MSP430G2153IN20 16 20-PDIP MSP430G2513IRHB32 24 32-QFN MSP430G2513IPW28 LF, 24 28-TSSOP 1 1 16 512 2x TA3 8 - 1 DCO, MSP430G2513IPW20 VLO 16 20-TSSOP MSP430G2513IN20 16 20-PDIP MSP430G2413IRHB32
in „LiPo-Akku+LowPower: 5V Controller oder Spannungswandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
slas272d.pdf
PARAMETER TEST CONDITIONS MIN TYP MAX UNIT TA0..2, TB0–TB6, fTAx Internal clock source, SMCLK signal C L 20 pF DC System applied (see Note 1) MHz fACLK, fMCLK, P5.6/ACLK, P5.4/MCLK, P5.5/SMCLK C L 20 pF System f SMCLK P2.0/ACLK ACLK = LFXT1 = fXT1 40% 60% C L 20 pF, ACLK = LFXT1 = fLF 30% 70% V CC = 2.2 V
in „MSP430 Interrupt Port1“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DOKUMENTATION_MSP430-F2013.pdf
MSP430x20x1, MSP430x20x2, MSP430x20x3 MIXED SIGNAL MICROCONTROLLER SLAS491F - AUGUST 2005 - REVISED MARCH 2011 D Low Supply Voltage Range 1.8 V to 3.6 V D Brownout Detector D Ultralow Power Consumption D Serial
in „MSP430 2013 XOUT/XIN ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
WCU_Kilobot_Schematic.txt
10 0 "Default Font" REF-DES 480 1290 0 6 97 10 0 "Default Font" PART-TYPE "PCB DECAL" MLF-32 0 140 20 0 1 1 140 20 0 1 2 140 20 0 1 3 140 20 0 1 4 140 20 0 1 5 140 20 0 1 6 140 20 0 1 7 140 20 0 1 8 140 20 0 1 9 140 20 0 1 10 140 20 0 1 11 140 20 0 1 12 140 20 0 1 13 140 20 0 1 14 140 20 0 1 15 140 20 0 1 16 140 20 0 1 17 140 20 0 1 18 140 20 0 1 19 140 20 0 1 20 140 20 0 1 21 140 20 0 1 22 140 20 0 1 23 140 20 0 1 24 140 20 0 1 25 140 20 0 1 26 140 20 0 1 27 140 20 0 1 28 140 20 0 1 29 140 20 0 1 30 140 20 0 1
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PDF
MSP430F2274_Family_datasheet.pdf
1.00 1.65 3 V 1.35 2.25 V 0.25 0.55 V CC VIT- Negative-going input threshold voltage 2.2 V 0.55 1.20 V 3 V 0.75 1.65 2.2 V 0.2 1.0 Vhys Input voltage hysteresisIT+ - VIT- V 3 V 0.3 1.0 R Pullup/pulldown resistor For pullup: IN= VSS; 20 35 50 kΩ Pull For pulldown: IN = VCC C I Input capacitance VIN =
in „UART_Initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MSP430F233TPM.pdf
code memory Flash 0xFFFF to 0x8000 0xFFFF to 0x4000 0xFFFF to 0x2100 RAM (total) Size 4KB 4KB 4KB 0x20FF to 0x1100 0x20FF to 0x1100 0x20FF to 0x1100 Extended Size 2KB 2KB 2KB 0x20FF to 0x1900 0x20FF to 0x1900 0x20FF to 0x1900 Mirrored Size 2KB 2KB 2KB 0x18FF to 0x1100 0x18FF to 0x1100 0x18FF to 0x1100
in „MSP430 SPI A25L080 Flash“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MSP430F5438IPZ.pdf
CCI1A 19-P1.2 19-P1.2 58-P8.1 61-P8.1 TA0.1 CCI1B CCR1 TA1 TA0.1 58-P8.1 61-P8.1 DV SS GND DV CC V CC 20-P1.3 20-P1.3 TA0.2 CCI2A 20-P1.3 20-P1.3 59-P8.2 62-P8.2 TA0.2 CCI2B 59-P8.2 62-P8.2 CCR2 TA2 TA0.2 DV SS GND DV V CC CC 21-P1.4 21-P1.4 TA0.3 CCI3A 21-P1.4 21-P1.4 60-P8.3 63-P8.3 TA0.3 CCI3B 60-P8.3
in „Strombelastbarkeit MSP430“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CD_DS_SCD4x_Datasheet_D1.pdf
signal compensation is realized with on the SCD4x can help maintain low CO co2centrations the built-in SHT4x humidity and temperature sensor. for a healthy, productive environment. Product Overview Functional Block Diagram Products Details SCD40-D-R2 Base accuracy, specified range 400 – 2’000 ppm SCD41-D-R2
in „Review: USB→LT1763-3.3 V + SCD41-D-R2 (I²C), Funduino (ATMEGA2560)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
msp430fr2532.pdf
3.0 9 ) A2.5 µ 8 ( t 7 n e r2.0 u 6 u C y l 5 p1.5 p 4 u S S1.0 3 3 3 M M L 2 L0.5 1 0 0.0 -40 -30 -20 -10 0 10 20 30 40 50 60 70 80 -40 -30 -20 -10 0 10 20 30 40 50 60 70 80 Temperature (°C) Temperature (°C) LPM3 LPM3.5 V CC = 3 V RTC SVS Disabled VCC = 3 V XT1 SVS Enabled Figure 5-1. LPM3 Supply Current
in „MSP430 Output nur auf zwei von vier Pinnen möglich?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
msp430f5529.pdf
V 0 HD,MI SOMI input data hold time 2.4 V 0 PMMCOREV = 3 ns 3.0 V 0 UCLK edge to SIMO valid, 1.8 V 20 C L 20 pF ns PMMCOREV = 0 3.0 V 18 VALID,MO SIMO output data valid time(2) UCLK edge to SIMO valid, 2.4 V 16 C L 20 pF ns PMMCOREV = 3 3.0 V 15 C L 20 pF 1.8 V -10 PMMCOREV = 0 ns t SIMO output data
in „Fragen zu ADC“ · Mikrocontroller und Digitale Elektronik ·
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8019AS.pdf
D6H TAG I/O Format Length: fixed 8 bytes Item byte 47H I/O information 00H Min. I/O base bits 7-0 20H Min. I/O base bits 15-8 02H Max. I/O base bits 7-0 80H Max. I/O base bits 15-8 03H Base alignment 20H Range length 20H TAG IRQ Format Length: fixed 4 bytes Item byte 23H IRQ mask bits 7-0 38H IRQ mask
in „Webserver mit ISA Netzwerkkarte“ · Mikrocontroller und Digitale Elektronik ·
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EWARM_DevelopmentGuide.ENU.pdf
ThecompilerplacessubroutinepointersforperformingC++dynamic initializationinto sections of the ELF section typesPREINIT_ARRAY and SHT_INIT_ARRAY . By default, the linker will place these into a linker-created block, ensuring that all sections of the section tSHT_PREINIT_ARRAY are placed before those of the type SHT_INIT_ARRAY .Ifanysuchsectionswereincluded
in „Viele Flags effizient speichern und schreiben/Byte in Bitfeld?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
buildroot-2011.02-Mini2440-linux-2.6.39.patch
mini2440/linux-2.6.37.6-patches/linux-2.6.37.6-0005.patch 2011-05-25 21:40:17.000000000 +0200 @@ -0,0 +1,20 @@ +--- /arch/arm/mach-s3c2440/mach-mini2440.c 2011-05-25 20:35:36.635576001 +0200 ++++ /arch/arm/mach-s3c2440/mach-mini2440.c 2011-05-25 21:14:12.755576001 +0200 +@@ -222,6 +222,17 @@ + S3C2410_LCDCON5
in „mini2440 Odyssee“ · Mikrocontroller und Digitale Elektronik ·
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Datei
buildroot-2011.02-Mini2440-linux-2.6.39.patch
mini2440/linux-2.6.37.6-patches/linux-2.6.37.6-0005.patch 2011-05-25 21:40:17.000000000 +0200 @@ -0,0 +1,20 @@ +--- /arch/arm/mach-s3c2440/mach-mini2440.c 2011-05-25 20:35:36.635576001 +0200 ++++ /arch/arm/mach-s3c2440/mach-mini2440.c 2011-05-25 21:14:12.755576001 +0200 +@@ -222,6 +222,17 @@ + S3C2410_LCDCON5
in „mini2440 Odyssee“ · Mikrocontroller und Digitale Elektronik ·
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Datei
config-mod-LK511-mt7623n-BPiR2.txt
not set CONFIG_SENSORS_PCF8591=m # CONFIG_PMBUS is not set CONFIG_SENSORS_PWM_FAN=m CONFIG_SENSORS_SHT15=m CONFIG_SENSORS_SHT21=m CONFIG_SENSORS_SHT3x=m CONFIG_SENSORS_SHTC1=m CONFIG_SENSORS_SIS5595=m CONFIG_SENSORS_DME1737=m CONFIG_SENSORS_EMC1403=m CONFIG_SENSORS_EMC2103=m CONFIG_SENSORS_EMC6W201=m
in „Linux Kernel 5.1.1. auf dem BPi-R2“ · PC Hard- und Software ·