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tfrec-d-tx22_old.txt
Offset 20kHz (CRC 07 39) len 16 #001 1527314603 2d d4 a8 75 06 58 10 48 20 00 30 fe 41 ff 15 00 0f ff TX22(08) BAD 2 RSSI 86 Offset 28kHz (CRC 15 1b) len 18 #002 1527314607 2d d4 a8 75 06 58 10 48 20 00 30 fe 41 fe 2a 00 1f ff TX22 Id 0021 +25.8 +48.0%
in „SDR-Dekoder für TFA KlimaLogg Pro/IT+ Temperatursensoren“ · Projekte & Code ·
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PDF
NETWORK_SWITCH_2PORT.pdf
1 2 3 4 5 6 7 8 A A C1 100nF ETH_RX_P 3V3A_ETH IC1 C2 100nF ETH_RX_N CONN1 6 47 8 AVDDH TXP0 46 C3 100nF ETH_TX_N ETH_CONN1_TX_P 1 18 AVDDH TXN0 45 TD+ 1V2A_ETH 48 AVDDH RXN0 44 C4 100nF ETH_TX_P AVDDH RXP0
in „RTL8305 Switch funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
UART.c
< 8) + data; } void uart_putc_buffert(unsigned char data) { unsigned char tmphead; tmphead = (UART_TxHead + 1) & UART_TX_BUFFER_MASK; while ( tmphead == UART_TxTail ){;} UART_TxBuf[tmphead] = data; UART_TxHead = tmphead; UCSR0B |= (1<<UDRIE0); } SIGNAL( USART_RX_vect ) { unsigned char tmphead; unsigned
in „UART Software Flow Control Befehle werden ignoriert“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mpcm_mode_senden.asm
********************************************* main: ldi temp1,1 rcall usart_tx1 ldi temp1,2 rcall usart_tx1 rjmp main USART_TX1: lds buffer, UCSR1A sbrs buffer, UDRE1 rjmp USART_TX1 ; sts UDR1, temp1 ;setzen 9.bit set_sram_bit UCSR1B, temp, (1<<TXB81) sts UDR1, adresse ;normalmode widerherstellen ... clr_sram_bit UCSR1B, temp, (1<<TXB81) Ausgabe2: lds buffer, UCSR1A sbrs buffer, UDRE1 rjmp Ausgabe2 sts UDR1, temp1 ret
in „AVR-UART master slave“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
, i2c_drv_tx_nack, i2c_drv_tx_nack_handler, i2c_drv_rx_nack, i2c_drv_rx_nack_handler); i2c_hal_cb_data_set(&test_i2c_hal, i2c_drv_tx_data, i2c_drv_tx_data_handler, i2c_drv_rx_data, i2c_drv_rx_data_handler
in „PIC32MZ2048EFG100 Probleme bei I2C read“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SP3222EBEP.pdf
250kbps data rates, all drivers CC loaded with 3kΩ, 0.1µF charge pump capacitors, and AMB= +25°C. 6 30 4 TxOUT + 25 - Slew ) + Slew t 2 µ20 p T1 at 250Kbps V u ) e O ( 0 T2 at 15.6Kbps a15 e e All TX loaded 3K // CLoad r i a -2 e10 T1 at 250Kbps m o TxOUT - S T2 at 15.6Kbps s V -4 5 r All TX loaded 3K // CLoad
in „Adafruit Ultimate GPS Breakout mit SP3232 an RS232“ · Mikrocontroller und Digitale Elektronik ·
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Datei
CAN.h
BFPCTRL */ #define B1BFS 5 #define B0BFS 4 #define B1BFE 3 #define B0BFE 2 #define B1BFM 1 #define B0BFM 0 /** \brief Bitdefinition von TXRTSCTRL */ #define B2RTS 5 #define B1RTS 4 #define B0RTS 3 #define B2RTSM 2 #define
in „Atmega und CAN“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCS8051_Evoboard.pdf
16 CS RXCAN 2 3 RxD RTH 8 RTH 8 P1.5 MISO 3 4 SO_CAN 15 SO 1k 3 P1.7 MOSI 5 6 SI_CAN 14 SI 5 STB CANH 11 CANHLS CANH 7 P1.6 7 8 SCK_CAN 13 SCK TX0RTS 4 TX0RTS 6 EN 2 P3.2 INT INT_CAN 5 TX1RTS 4 12 CANLLS CANL 6 P1.2 9 10 RX0BF 12 TX1RTS 6 TX2RTS 1 NERR CANL 1 P1.3 11 12 RX1BF 11 INT TX2RTS 7 INH 9 RTL R11 P2.0 13 14 10 RX0BF 3 WAKE RTL DB9SLE P2.1 15 16 RX1BF CLKOUT PCA82C252 1k P2.2 17 18 1 2 JP13 19 20 C C O O 2x10-polig IC7 X2
in „Gesucht: Mikrocontroller mit LAN und CAN“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rfid.ino
RFCfgReg 0x26 #define GsNReg 0x27 #define CWGsPReg 0x28 #define ModGsPReg 0x29 #define TModeReg 0x2A #define TPrescalerReg 0x2B #define TReloadRegH 0x2C #define TReloadRegL 0x2D #define TCounterValueRegH 0x2E #define TCounterValueRegL 0x2F //Page 3:TestRegister #define Reserved30 0x30 #define TestSel1Reg
in „Arduino leonardo invalid suffix "B9FD4" umgehen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
projectMainProg.c
clear bit UDRIE0 in register UCSR0B } } signed int USART0_putchar(char ch) { unsigned int Ptr; Ptr = uart0TxInBufPtr + 1; if (Ptr >= Tx0BufSize) Ptr = 0; if (Ptr != uart0TxOutBufPtr) { uart0TxBuf[Ptr] = ch; uart0TxInBufPtr = Ptr; if (Tx0Empty
in „Atmega128 USART Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Remote1.asm
cbi portb,4 ;Slave Enable ; [Name] [Header] ;1 Configuration Setting (80h) ldi temp1,0x80 ldi temp2,0b11010111 ;Tx-register enabled, Rx-FIFO-Buffer enabled, rcall Send ;f-Band=433MHz, Anpassung des internen Clock mit 12pF ;2 Power Management (82h) ldi temp1,0x82 ldi temp2,0b00111001 ;Empfänger aus,
in „Probleme mit SPI und RFM12“ · Mikrocontroller und Digitale Elektronik ·
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Datei
RFM12.txt
Rauschen zu minimieren! '=== Configuration Setting === 'Hex = 80 & xx 'Bit-Syntax: 10000000 | el | ef | b1 | b0 | x3 | x2 | x1 | x0 'el (TX FIFO) = Sendepuffer für Datentransfer nutzen (1 = An / 0 = Aus) 'ef (RX FIFO) = Empfangspuffer für Datenspeicherung nutzen (1 = An / 0 = Aus) 'b... = Zu nutzende Basisfrequenz
in „bidirektionale RS232 Funkbrücke mit RFM12“ · Projekte & Code ·
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PDF
Schematic_ED2109-015.pdf
100nF 100nF 9 8 S S STM32F401CCU6 C18 VDDA/VREF+ VSSA/VREF- 10k U U 1uF GND GND STM32F401CCU6 GND X2 IC3 GND A4 VBUS1 D+ A6 C19 GND A9 VBUS2 D+ B6 USB_DP+ 16 VCC TXD 2 OSCA_1 2 B4 VBUS3 D- A7 USB_DP- 4 V3 RXD 3 2 B9 VBUS4 D- B7 22pF Y3 C9 C12 RTS# 14 XTAL1 3 GND A2 100nF 100nF 13 1 TX1+ A3 5 DTR# 12 C13 AbraconAB26TRQ-32.768KHZ-T TX1- B2 GND GND 6 D+ DCD# 11 OSCA_2 MNT1 TX2+ B3 D- RI# I 10 1 MNT2 CASE1 TX2- DSR# 9 GND 22pF AbraconABS07-LR-32.768KHZ-6-1-T CASE2 CTS# MNT3 CASE3 RX1+ B11 15 R232 C14 D MNT4 CASE4 RX1- B10 X0 8 OSCB_
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PDF
88E1111_DS.pdf
+S_CLKS_OUT+S_OUT-LINK1000 N ve N LED_ R B RX_DV RXD0 Rar ,VDDO CRS COL AVDD LINK100DDOH B D C RX_CLKVDDO MRXD2 RXD4 RXD7 DVDD DVDD LINK10LED_RX C U D TX_CLKRX_ER RXD1 VSS VSS VSS DVDD CONFIGLED_TX D . A ge NT LED_ c. n T E TX_ENGdX_CEKDVDD VSS
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PDF
MSP430_Testprogramme.pdf
interrupt flag reti ; return from interrupt P2_ISR_2 bit.b #BIT2,&P2IFG ; and so on... jz P2_ISR_3 xor.b #BIT2,&P1OUT bic.b #BIT2,&P2IFG reti P2_ISR_3 bit.b #BIT5,&P2IFG jz end_P2_ISR xor.b #BIT3,&P1OUT bic.b #BIT5,&P2IFG reti end_P2_ISR clr.b &P2IFG
in „Anfängerfrage: MSP430F2274“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
LATBbits.LATB3 //RB3 PIN 22 // Output Port of the Heartbeat // RFID Reader PIns // Soft uArt #define SOFT_TX LATBbits.LATB2 //RB2//pin 23 TX #define SOFT_RX LATBbits.LATB1 //RB1//pin24 RX /** Function Declarations *************************************/ // MP3 Player UART //Stepp Motor UART void initUART1(int
in „PIC32 sendet nur 0x00 über UART (MPLABX)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
RFM02.c
#include <avr/io.h> #include <util/delay.h> void SPI_init(void){ DDRB |= (1<<PB3)|(1<<PB5)|(1<<PB2); PORTB |= (1<<PB2); SPCR = (1<<SPE)|(1<<MSTR)|(1<<SPR0)|(1<<SPR1); } //************************************************************* void SPI_tx (uint16_t cdata){ PORTB&= ~(1<<PB2); if (cdata > 255)
in „Datenübertragung mit Funkmodul RFM01-RFM02“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MB1137.pdf
P0R3101 P0R3102 P0U8B012PD7 PF7 R35,SB125 & SB127 removed only for F303ZE USB_SOF PA80PA8 100 P0U8A0100 P0U813139 PB80PB8 SB5 Closed USART3_TX PD80PD8 77 P0U8B077 P0U2B020 PF80PF8 P0TP101 N0PA9 PA8 PB8 P0U8A0140 N0PB9 680
in „Suche Mikrocontroller mit 16Bit ADCs und DACs“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MEGA_WiFi-R3-AT2560-ESP8266-32MB-CH340G-1.pdf
ESP-TX D3 ESP_TX R8 GND [OCO0A/OC1C/PCINT7]PB7 25 PB6 PL3 25 26 PL2 [OC1B/PCINT6]PB6 27 28 R10 ESP-RESET [OC1A/PCINT5]PB5 24 PB5 PL1 29 30 PL0 ESP-RESET ESP-RX R12 VDD3.3 +5V [OC2A/PCINT4]PB4 23 PB4 PB3 31
in „Compilation error: exit status 1“ · Mikrocontroller und Digitale Elektronik ·
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Datei
owx.h
owx_WRITE 0 //=========================================================================== v u8 owx_tx_buffer[20]={'a','b','c','d','e','f','g','h','i','j'}; v u8 owx_rx_buffer[20]={0,1,2,3,4,5,6,7,8,9,0,1,2,3,4,5,6,7,8,9}; v u8 crc=0,owx_len; //=========================================================
in „mikrokontroller per I2C verbinden“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rs232.txt
REQ_USART3_RX; // DMA_InitStruct.Priority = LL_DMA_PRIORITY_HIGH; // LL_DMA_Init(DMA1, LL_DMA_STREAM_2, &DMA_InitStruct); // LL_DMA_EnableStream(DMA1, LL_DMA_STREAM_2); //------------------------------ // USART DMA aktivieren //------------------------------ LL_USART_Enable(USART3); LL_USART_EnableDMAReq_TX
in „STM32H7 USART geht nicht mehr mit Compiler V6.14“ · Mikrocontroller und Digitale Elektronik ·
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Datei
IC_CC1101.cpp
Low Byte Event0 Timeout halRfWriteReg(WORCTRL,0xFB); //Wake On Radio Control halRfWriteReg(FREND1,0xB6); //Front End RX Configuration // halRfWriteReg(FREND0,0x10); //Front End TX Configuration halRfWriteReg(FSCAL3,0xEA); //Frequency Synthesizer Calibration halRfWriteReg(FSCAL2,0x2A); //Frequency Synthesizer
in „In-Circuit radino CC1101 Modul Hängt im SPI Transfer“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Programm.txt
EXAMPLE_PDCA_CLOCK_PB AVR32_PDCA_CLK_PBA #elif BOARD == UC3C_EK # define EXAMPLE_USART (&AVR32_USART2) # define EXAMPLE_USART_RX_PIN AVR32_USART2_RXD_0_1_PIN # define EXAMPLE_USART_RX_FUNCTION AVR32_USART2_RXD_0_1_FUNCTION # define EXAMPLE_USART_TX_PIN AVR32_USART2_TXD_0_1_PIN # define EXAMPLE_USART_TX_FUNCTION
in „Kann keine Daten vom Controller empfangen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
usart_driver.h
USART_RX_BUFFER_MASK ( USART_RX_BUFFER_SIZE - 1 ) /* \brief Transmit buffer mask.*/ #define USART_TX_BUFFER_MASK ( USART_TX_BUFFER_SIZE - 1 ) #if ( USART_RX_BUFFER_SIZE & USART_RX_BUFFER_MASK ) #error RX buffer size is not a power of 2 #endif #if ( USART_TX_BUFFER_SIZE & USART_TX_BUFFER_MASK ) #error TX buffer size is not a power of 2 #endif /* \brief USART transmit and receive ring buffer. */ typedef struct USART_Buffer { /* \brief Receive buffer. */ volatile uint8_t RX[USART_RX_BUFFER_SIZE]; /* \brief
in „XMEGA + iPod“ · Mikrocontroller und Digitale Elektronik ·
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Datei
usart_driver.h
USART_RX_BUFFER_MASK ( USART_RX_BUFFER_SIZE - 1 ) /* \brief Transmit buffer mask.*/ #define USART_TX_BUFFER_MASK ( USART_TX_BUFFER_SIZE - 1 ) #if ( USART_RX_BUFFER_SIZE & USART_RX_BUFFER_MASK ) #error RX buffer size is not a power of 2 #endif #if ( USART_TX_BUFFER_SIZE & USART_TX_BUFFER_MASK ) #error TX buffer size is not a power of 2 #endif /* \brief USART transmit and receive ring buffer. */ typedef struct USART_Buffer { /* \brief Receive buffer. */ volatile uint8_t RX[USART_RX_BUFFER_SIZE]; /* \brief
in „IPOD and AVR anschließen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
usart_driver.h
USART_RX_BUFFER_MASK ( USART_RX_BUFFER_SIZE - 1 ) /* \brief Transmit buffer mask.*/ #define USART_TX_BUFFER_MASK ( USART_TX_BUFFER_SIZE - 1 ) #if ( USART_RX_BUFFER_SIZE & USART_RX_BUFFER_MASK ) #error RX buffer size is not a power of 2 #endif #if ( USART_TX_BUFFER_SIZE & USART_TX_BUFFER_MASK ) #error TX buffer size is not a power of 2 #endif /* \brief USART transmit and receive ring buffer. */ typedef struct USART_Buffer { /* \brief Receive buffer. */ volatile uint8_t RX[USART_RX_BUFFER_SIZE]; /* \brief
in „IPOD and AVR anschließen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
schematics.pdf
2005_17:26 Sheet 1 of 11 A B C D A B C D A[1:19] U35 D[0:15] A1 J14A1 D0M9 D0 U35 A2 K14A2 D1N9 D1 PJ0_MDC C7MDC GPIO/UART0_TX/DMAR0 M1 PF0_UART0_TX A3 L14A3 D2P9 D2 A4 J13 M8 D3 PJ1_MDIO B7MDIO GPIO/UART0_RX/DMAR1/TACI1 L1 PF1_UART0_RX A4 D3 B11 L2 A5 K13 N8 D4 PJ2_SCL SCL GPIO/UART1_TX/TMR7 PF2_PB1 A5 D4 C11 L3 A6 L13 P8 D5 PJ3_SDA SDA GPIO/UART1_RX/TMR6/TACI6 PF3_PB2 U35 A6 D5 D7 L4 A7 K12 M7 D6 PJ4_CAN_RX DR0SEC/CAN_RX/TACI0 GPIO/TMR5/SPI_SSEL6
in „Versorgung“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
433MHz__odul_antenne_0900766b802fb241.pdf
50 dBc Operating Temperature -20 +70 Deg C Dynamic Timing Power up to stable receiver data out 5 mS 2 Power up to full RF out 4 mS 2 Standby to RX mode 3 mS Standby to TX mode 2 mS Changing from TX to RX mode 3 mS Changing from RX to TX mode 1 uS Data Bit rate 20 20,000 bps Notes 1. Supply voltage should have <10mV ripple. DS0353-4 Sept ‘02 ©2002 Reg. No. 227 4001, ENGLAND Page 2 D UAL B AND FM W IRELESS T RANSCEIVER RXQ1 Mechanical Dimensions Top View RF GND 1 18 CS Antenna 2 17 Vcc RF GND 3 16 Rx SELECT NC 4 15 Tx SELECT . GND 5 14 Tx 2 NC 6 13 NC NC 7 12 Rx NC 8 11 NC GND
in „Funkempfänger/sender gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ein___Ausg_nge.pdf
/OC1C PE0/RXD0/PDI 2 1N5819 PE1/TXD0/PDO 3 Ausgangsgrößen 0-5V oder 0-10V 330yF 35 4 Eventuell PWM 36 PC0/A8 PE2/XCK0/AIN0 5 TxD Rs232 37 PC1/A9 PE3/OC3A/AIN1 6 38 PC2/A10 PE4/OC3B/INT4 7 39 PC3/A11 PE5/OC3C/INT5 8 C 40
in „Messtechnik (Ein & Ausgangsproblem)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Block_Diagram.pdf
2 UART TX/RX UART <-> USB STM32H7 LQFP FT4232H UART TX/RX Microcontroller 3 USBDP1 / USBDN1 STM32H7 LQFP B B UART TX/RX Microcontroller 4 2 Port USB HUB STM32H7 LQFP USB2502 USBDP0 / USBDNO Connector USB Type A UART TX/RX VBUS_DET Microcontroller 5 STM32H7 LQFP USBDP2 / USBDN2 UART TX/RX VBUS_DETfor detection of Microcontroller 6 UART <-> USB USBsupplyvoltage. STM32H7 LQFP FT4232H C C UART TX/RX Microcontroller 7 STM32H7
in „FTDI ft232rl - mehrere Chips an einem Bus“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SPI_V2.vhd
SPI_send is when A => if SPI_Tx_ANFO = '1' then -- Weitergehen wenn SPI Sendeanforderung von Core Masterblock anliegt SPI_send <= B; else SPI_send <= A; end if; when B => if new_data = '1' then -- Wenn new_Data auf 1 geht SPI_Master_IRQ <= '0'; -- wird Interrupt für Silabs chip gesetzt so dass Daten abgeholt werden SPI_Tx_Rdy <= '0'; -- SPI Tx_Rdy wird auf 0 gesetzt ( Signal für Core Masterblock) SPI_Tx_Rdy_intern<='0'; -- Signal fuer MOSI Daten Übergeben State Machine SPI_send <= C; else SPI_send <= B; end if; when C
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Datei
i2c.c
returned case TW_ST_ARB_LOST_SLA_ACK: // 0xB0: GCA+R has been received, ACK has been returned #ifdef I2C_DEBUG uart_tx_string("I2C: ST->SLA_ACK\r\n",UART_NO); #endif // we are being addressed as slave for reading (data must be transmitted back
in „TWI, I2C Master-Slave mit AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DE_Technisches_Handbuch_RIO_Module_V4795.pdf
Moduldeckel zu finden Schlitzschraubendreher öffnen Parameter Wert Baudrate Uart1 Config 1 ON = 115.200kB OFF = 57.600kB (Standard) RIO37 Mastermode < Config 2 ON = Modul agiert als Mastermodul (Busankoppler) OFF = Modul agiert als Slavemodul, wie ein RIO16 Notbetrieb: nach 2 min ohne Buskommunikation ON
in „PWM-Signal 24V 500Hz wandeln in 10V PWM“ · Haus & Smart Home ·
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clockmicro-clockmicrov2.pdf
2 100n B 0 B SER SER 2 PC13/RTC_OUT/RTC_TAMPER OSC32IN 3 +3.3V GND GND OSC32OUT 4 PC14/RCC_OSC32_IN +3.3V PC15/ADC1_EXTI15/ADC2_EXTI15/RCC_OSC32_OUT U8 C24 4 VCC CLK 3 18 10 PB0/ADC1_IN8/ADC2_IN8/TIM1_
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Datei
A--0191c-i-DS10_be-kon_Ka09_b.c
~SWRST; // Initialize USART state machine IE2 |= UTXIE1; // URXIE1 + // Enable USART1 TX interrupt } void E32_konfiguration_festlegen(void) { txbuffer[0] = 0xC0; // sichert die Parameter nach Stromausfall txbuffer[1] = 0x44; // Adresse oberes Byte
in „Sende/Empfangsvorgang mittels nur 1St. µC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rf22.c
write(0x09, 0x7f); // xtal load capacitance rf22_write(0x0A, 0x02); // uC CLK: 10MHz rf22_write(0x0b, 0xf2); // GPIO0: TX_ANT - f2 rf22_write(0x0c, 0xf5); // GPIO1: RX ANT - f5 rf22_write(0x0d, 0x00); // GPIO2: uC Clock out rf22_write(0x0e, 0x00); rf22_write(0x0f, 0x70); // ADC Input: GND rf22_write
in „RFM22B Beispiel Projekt gesucht.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LicheeTang-RV_Schematic_.pdf
_P zLCD_R2 7 R2 TPY2 5 YN GND 6 IO_L4N_1 J11 L4_N zSPI2_MOSI K13 VCCO_1 GND B7 R23_P 5 5 B19_P zLCD_R3 8 R3 A IO_L5P_1 L13 L5_P zUART2_TX N15 VCCO_1 GND D13 T3_P 6 6 B21_P zLCD_R4 9 R4 NS2009 A IO_L5N_1 M13 L5_
in „Einen Softcore (AVR) an andere FPGA anpassen?“ · FPGA, VHDL & Co. ·
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Datei
TIRIS2.ASM
; TIRIS2.ASM ; TIRIS reader with external amplifier ; AT90S1200 processor , 12.00 MHz XTAL ; RS232 out 10 bytes data+crc, 2 bytes CRC checksum result ; combined TX/RX-coil ; .device at90s1200 .nolist .include
in „??90s1200 -> Tiny2313 Proggi anpassen??“ · Mikrocontroller und Digitale Elektronik ·
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Datei
p18f6622.inc
NOT_CS EQU H'0002' CCP2_PORTE EQU H'0007' P2D EQU H'0000' P2C EQU H'0001' P2B EQU H'0002' P3C EQU H'0003' P3B EQU H'0004' P1C EQU H'0005' P1B EQU H'0006' P2A_PORTE EQU H'0007' ;----- PORTF Bits -----------------------------
in „PIC18F6620 lesen, schreiben“ · Mikrocontroller und Digitale Elektronik ·
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Datei
webradio.txt
----> SDMMC1_CK PA15 ------> S_TIM2_CH1_ETR PE5 ------> DCMI_D6 PE6 ------> DCMI_D7 PG13 ------> ETH_TXD0 PB9 ------> I2C1_SDA PB6 ------> QUADSPI_BK1_NCS PG15 ------> FMC_SDNCAS PG11 ------> ETH_TX_EN PJ13 ------> LTDC_B1 PD0 ------> FMC_D2_DA2 PC11 ------> SDMMC1_D3 PC10 ------> SDMMC1_D2 PA12 ------> USB_OTG_FS_DP PI4 ------> SAI2_MCLK_A PK7 ------> LTDC_DE PK6 ------> LTDC_B7 PK5 ------> LTDC_B6 PG12 ------> LTDC_B4 PG10 ------> SAI2
in „ESP8266 Webradio Stream“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PLC-LOX.txt
define oneWireTempByte 11 #define oneWireVadByte 12 #define oneWireVsensByte 13 #define oneWireDS18B20Byte 40 #define inputPacketBufferSize UDP_TX_PACKET_MAX_SIZE char inputPacketBuffer[UDP_TX_PACKET_MAX_SIZE]; #define outputPacketBufferSize 100 char outputPacketBuffer[outputPacketBufferSize]; EthernetUDP
in „1 Wire auf 2 GPIO pins“ · Mikrocontroller und Digitale Elektronik ·
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PDF
USB_Programmer_V1.1_2007-11-04.pdf
RESET LED 1 2 3 14-Vss (ground) C1 C2 7 - TMS FULL SPEED USB, mini Con TX LED USB PWR LED +3.3VD 100n 100n 8-Vss (ground) DGND DGND +3.3VD +3.3V_OUT DGND R1 1 1 U1 B R2 SN74LVC4T245 9 - TCK B 10k 2 DIR1 B J400 10k
in „OpenOCD/FT2232 JTAG Communication failure“ · µC & Digital Electronics ·
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PDF
AVR32-64SD20-28-32-48-ProductBrief-DS40002417.pdf
0, TxD 0, MOSI(3) 0, SDA(HC) 0, WO0 0, IN0 EXTCLK (3) 45 31 23 27 5 PA1 XTALHF2 0, RxD 0, MISO(3) 0, SCL(HC)3) 0, WO1 0, IN1 0, XCK 46 32 24 28 6 PA2 TWI Fm+ AIN22 0, TxD3) 0, SDA(HC) 0, WO2 0, WO EVOUTA 0
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PDF
philips_chassis_qfu2.1e_la.pdf
TX2-A+ D26 SPDIFIN SPDIFO E26 SPDIFO USB2-DM AC29 D2_N TB2_P C9 TX2-B- AB25 C10 TX2-B+ C26 Y26 3J07 SCKI2SOUT USB2-RREF AC27 USBPPON2 TB2_N A10 TX2-C- 7J00-9 B26 SCKIN SCKI2SOUT Y27 3J08 10R TXRTUNE2 TC2
in „Netzteil Philips LED TV reparieren??“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
pinout_blackpill.pdf
1 1 A A P P K S STM32F103C8T6 BLACKPILL C M J J K O D C D 3 G W W 3 S S 37 34 5V 5V CK3 T1BKIN NSS2 SMBAI2 PB12 B12 25 5V 22 5V B11 PB11 SDA2 RX3 T2C4N CTS3 T1C1N SCK2 PB13 B13 26 5V 21 5V B10 PB10 SCL2 TX3 T2C3N RTS3 T1C2N MISO2 PB14 B14 27 5V 19 ~ B1 PB1 ADC9 T3C4 T1C3N T1C3N MOSI2 PB15 B15 28 5V
in „pinout blackpill STM32F103C8T6“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ioMate.NET-1.0_schematic.pdf
15 2 100R 3 26 MOTEN RX- 14 3 4 AV+ MOTEN 25 /INT R8 RX- /INT 5 RX+ /CS 24 /CS 10M TX+ 11 6 R2 6 23 /WR CENTER_TX 10 7 7 TX+ /WR 22 /RD X1 R3 8R TX- /RD TX- 9 8 8 VDD1 ALE 21 ALE 8R 9 20 TG41-2006P C10 C11
in „Arduino Nano und ENC28J60 Ethernet Shield“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Funk.asm
and serial,data cbi portb,data_out breq tx2 sbi portb,data_out tx2: sbrs ctrl,send rjmp tx2 ldi temp,1<<send sbrc ctrl,send eor ctrl,temp pop serial lsr serial brne tx1 ret ;*********************************************** rfm_init: cbi portb,
in „RFM02 die Xte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
nightsky_arx15.pdf
_1_N_J 9 2 NV_RX_1_P_C A1 B12 44 NV_RX_1_P_J 8 3 GND GND 7 4 NV_TX_2_N_C NV_TX_1_P_C A2 B11 NV_RX_1_P_C 44 NV_TX_2_P_J 6 5 NV_TX_2_P_C NV_TX_1_N_C A3 TX0_N RX0_N B10 NV_RX_1_N_C s D3 C5 1u_6.3V_X5R_02 A4 VBUS VBUS
in „SMD TGAJ TVS Diode USB“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ili9341_gfx.c
iy + 1)) { if (corners & 1) { tx = x + ix; ty = y - iy; ili9341_draw_line(lcd, color, tx, ty, tx, ty + 2 * iy + delta); } if (corners & 2) { tx = x - ix; ty = y - iy; ili9341_draw_line(lcd, color, tx, ty, tx, ty + 2 * iy + delta); } } if (iy != py) { if (corners & 1) { tx = x + py; ty = y - px; ili9341_draw_line(lcd, color, tx, ty, tx, ty + 2 * px + delta); } if (corners & 2) { tx = x - py; ty = y - px; ili9341_draw_line(lcd, color, tx, ty, tx, ty + 2 * px + delta); }
in „STM32U575 und ILI9341 SPI DMA Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DN_042.pdf
RE 7 B 6 3 DE A Tx 4 DI GND 5 R21 2k2 The “Tx En” line switches the driver chip between transmit and receive mode (On = Transmit). The key is to switch this back to RX mode as soon as the final charac- ter
in „problem bei rs485 sender-aktivierung“ · Mikrocontroller und Digitale Elektronik ·