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Datei
uart.cpp
a power of 2 #endif #if ( UART_TX_BUFFER_SIZE & UART_TX_BUFFER_MASK ) #error TX buffer size is not a power of 2 #endif /* ATmega with one USART */ #define UART0_RECEIVE_INTERRUPT USART_RX_vect #define UART0_TRANSMIT_INTERRUPT
in „ATmega328p fehlerhafte UART-Anzeige mit bootloader“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ch559_keil.h
0x40 // RXD input for UART1 #define bTNOW 0x20 // tx now output for UART1, indicate transmitting #define bPWM2 0x20 // second PWM output for PWM1 #define bT2EX_ 0x20 // alternate pin for T2EX #define bCAP2_ bT2EX_ // alternate pin for CAP2
in „uC für 0,20€ CH552 / CH554 von WCH Billig Micro mit USB Funktion, Chip vorstellung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ch559_iar.h
#define bRXD1 0x40 // RXD input for UART1 #define bTNOW 0x20 // tx now output for UART1, indicate transmitting #define bPWM2 0x20 // second PWM output for PWM1 #define bT2EX_ 0x20 // alternate pin for T2EX #define
in „Doppelbelegung SBIT bei IAR“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.asm
during TX -- clear pending flag 7acc: 10 e4 ldi r17, 0x40 ; 64 USB_STORE_PENDING(x2) ;[3] 7ace: 1a bf out 0x3a, r17 ; 58 ori x1, USBIDLE ;[4] 7ad0: 01 60 ori r16, 0x01 ; 1 in x2, USBDDR ;[5] 7ad2: 11 b3 in r17
in „ATMEGA32 Minimum System Board“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ulog.c
define ADC_INT 0x80 // 1.1V #define ADC_EXT 0x40 // AIN0 Pin. // PIN DEF #define SCK A,3 #define SI B,1 #define SO A,7 #define CS B,2 #define RX A,5 #define TX A,6 #define STAT B,0 #define RS232_INV 0 // 0 or 1 #define SPI_INP 1 // read on high or low level #define ADC_REF ADC_VCC // END OF USER DEFINES
in „Tipps analoger Datenlogger“ · Mikrocontroller und Digitale Elektronik ·
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PDF
WLAN_Firmware_Spec_v5_1.pdf
36 5.2.2 "CMD_802_11_RADIO_CONTROL" Controls the radio chip page 38 5.2.3 "CMD_802_11_RF_ANTENNA" Sets/gets the Tx and Rx antenna mode page 39 5.2.4 "CMD_802_11_RF_TX_POWER" Sets/gets Radio transmit power page
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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Datei
tb_AudioInterface.vhd
others => '0'); signal D_bits: std_logic_vector(22 downto 0):=(others => '0'); signal A: integer range -2**23 to 2**23-1:=0; signal B: integer range -2**23 to 2**23-1:=0; signal C: integer range -2**23 to 2**23-1:=0; signal D: integer range -2**23 to 2**23-1:=0; file file_handler: text open write_mode is
in „Genesys 2 (Xilinx Kintex 7): Audio-Codec Implementierung und Filteranbindung“ · FPGA, VHDL & Co. ·
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Datei
rfm70.c
status; // Bank1 register initialization value const uint8_t Bank1_reg0_5[][4] PROGMEM = { {0x40, 0x4B, 0x01, 0xE2}, // from 0 to 8 inversed => MSByte first; LSByte last {0xC0, 0x4B, 0x00, 0x00}, {0xD0, 0xFC, 0x8C, 0x02}, {0x99, 0x00, 0x39, 0x41}, {0xF9, 0x9E, 0x86, 0x0B}, {0x24, 0x06, 0x7F, 0xA6} };
in „RFM70 und ATMega16 benötige Hilfe!!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LAN9214_V10_neutr_Sch.pdf
V V V V 10 10n 1 Tx+ 2 3 1 1u 100n V18b Vdd2 C22 1 TCT Vdd39 C23 100n Tx- ETN4 R55 1 22R 3 Tx- +3V 62 51 C24 10n Rx+ ETN1 R58 22R 4 R1 Vdd18USBPLL Vdd4 1 1 Rx+ 1 48 Vdd18EthPLL Vdd54 C25 100n 6 RCT C2 27p 57 C26 10n Rx-
in „LAN9514 schematic“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schaltplan.pdf
A _ _ _ _ TxD und RxD remapped!! B C C C C RTS 10 V V V V V 18 SWITCH VLMKE3400-GS08 R15 LED-RED 11 PA0-WKUP PB0 19 ANALOG 10k LED-GREEN 12 PA1 PB1 20 CS-1 13 PA2 /TxD-2 PB2 39 TDO Q2 PA3 /RxD-2 TDO/ PB3 BC846B CS
in „STM32 und USB-Bulk Transfer“ · Mikrocontroller und Digitale Elektronik ·
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Datei
enc28j60.c
value is 0x3422, do not modify the reserved "3"!! //RevA Datasheet page 9: write as '0000', see RevB Datasheet: write 0011! //read silicon revision //was geht hier vor?? Trotzdem die Bank 2 ist (0x40), gibt er beim Lesen der RevID keine neue Bank aus, trotzdem kommt der Wert 05. Vielleicht ist es gar
in „ENC28J60 correct value of PHLCON and mirrored registers“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ALSE_UART_us.pdf
Bertrand CUZEAU - info@alse-fr.com Application Architecture UARTS RS 232 Output SDout[7:0] Din[7:0] Tx TX * TXout RS232 Inputs I14 LD_SDout LD TxBusy TxBusy RawRx RX TxBusy (0=active) RXFLEX * D Q Rx SDin[7:0] SDout[7:0] SDout[7:0] * CTSFLEX I15 CLK Baud[2:0] Baud[2:0] Dout[7:0] SDin[7:0] LD_SDout LD_SDout
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Datei
rfm70.cpp
uint8_t cmd_activate[]={0x50,0x73}; static PROGMEM uint8_t cmd_tog1[]={0xd9 | 0x06, 0x9e, 0x86, 0x0b}; //assosciated with set1[4]! static PROGMEM uint8_t cmd_tog2[]={0xd9 & ~0x06, 0x9e, 0x86, 0x0b}; static PROGMEM uint8_t cmd_flush_rx[]={0xe2,0x00}; static PROGMEM uint8_t cmd_flush_tx[]={0xe1,0x00};
in „Arduino RFM70“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Files.txt
MicroXplorer Configuration settings - do not modify CAD.formats= CAD.pinconfig= CAD.provider= Dma.Request0=SPI2_TX Dma.RequestsNb=1 Dma.SPI2_TX.0.Direction=DMA_MEMORY_TO_PERIPH Dma.SPI2_TX.0.Instance=DMA1_Channel5 Dma.SPI2_TX.0.MemDataAlignment=DMA_MDATAALIGN_BYTE Dma.SPI2_TX.0.MemInc=DMA_MINC_ENABLE Dma.SPI2_TX.0.Mode=DMA_NORMAL Dma.SPI2_TX.0.PeriphDataAlignment=DMA_PDATAALIGN_BYTE Dma.SPI2_TX.0.PeriphInc=DMA_PINC_DISABLE Dma.SPI2_TX.0.Priority=DMA_PRIORITY_LOW Dma.SPI2_TX.0.RequestParameters=Instance,Direction
in „Probleme das Ili9341 Board zum laufen zu bekommen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HausAutoTest.pdf
R R20 GND U17 0 D8 1ULN2803 LED 14 SER QA 15 1 1B 1C 18 2 1 R 9 1 2 O 17 R15 QB 2B C 2C D6 D 8 Ub+ 11 SRCLK QC 2 3 3B 3C 16 LED I 7 5V 10 SRCLR QD 3 4 4B 4C 15 2 1 R 2 S 4 5 14 R16 J 6 QE 5B 5C D3 5 12 RCLK QF 5 6 6B 6C 13 LED 4 13 6 7 D 12 2 1 5 GND
in „AT32UC3C2 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HausAutoTest.pdf
2 1 R 1 R26 GND U17 0 2 D8 1ULN2803 LED 14 SER QA 15 1 1B 1C 18 3 2 1 R 9 1 2 O 17 4 1 R21 QB 2B C 2C 1 D6 D 8 Ub+ 11 SRCLK QC 2 3 3B 3C 16 5 1 LED I 7 5V 10 SRCLR QD 3 4 4B 4C 15 6 _ 2 1 R 2 S 4 5 14
in „AT32UC3C2 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HausAutoTest.pdf
R 1 R26 GND U17 0 2 D8 1ULN2803 LED 14 SER QA 15 1 1B 1C 18 3 2 1 R 9 1 2 O 17 4 1 R21 QB 2B C 2C 1 D6 D 8 Ub+ 11 SRCLK QC 2 3 3B 3C 16 5 1 LED I 7 5V 10 SRCLR QD 3 4 4B 4C 15 6 _ 2 1 R 2 S D 4 5 14 7 N R22 J 6 N QE 5B
in „AT32UC3C2 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HausAutoTest.pdf
R26 GND U17 0 11 D8 1ULN2803 LED 14 SER QA 15 1 1B 1C 18 10 2 1 R 9 1 2 O 17 9 R21 QB 2B C 2C D6 D 8 Ub+ 11 SRCLK QC 2 3 3B 3C 16 8 1 LED I 7 5V 10 SRCLR QD 3 4 4B 4C 15 7 X 2 1 R 2 S D 4 5 14 6 0 R22 J 6 N QE 5B 5C N D3 5 G 12 RCLK QF 5 6 6B 6C 13 5
in „Layout prüfen“ · Platinen ·
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PDF
USB_Type-C_Spec_R2.1_-_May_2021.pdf
values of INEXT and IFEXT shall meet the following requirements: • INEXT ≤ −40 dB to 12.5GHz, for TX1 to RX1, TX2 to RX2, TX1 to RX2, TX2 to RX1, TX1 to TX2, and RX1 to RX2, • IFEXT ≤ −40 dB to 12.5GHz, for TX1 to RX1, TX2 to RX2, TX1 to RX2, TX2 to RX1, TX1 to TX2, and RX1 to RX2
in „USB-C Dual-Role-Device DRD mit integriertem OTG FS PHY“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_Xilinx_Virtex-5_LX.pdf
_P AC21 TX_DATA1_N AA19 RX_DATA1_N AB21 TX_DATA2_P AD19 RX_DATA2_P AE25 TX_DATA2_N AC19 RX_DATA2_N AD25 TX_DATA3_P AB20 RX_DATA3_P W24 TX_DATA3_N AB19 RX_DATA3_N W23 TX_DATA4_P V19 RX_DATA4_P AA23 TX_DATA4_N W19
in „Ethernetschnittstelle programmieren - Anfänger“ · FPGA, VHDL & Co. ·
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PDF
Datenblatt_Xilinx_Virtex-5_LX.pdf
_P AC21 TX_DATA1_N AA19 RX_DATA1_N AB21 TX_DATA2_P AD19 RX_DATA2_P AE25 TX_DATA2_N AC19 RX_DATA2_N AD25 TX_DATA3_P AB20 RX_DATA3_P W24 TX_DATA3_N AB19 RX_DATA3_N W23 TX_DATA4_P V19 RX_DATA4_P AA23 TX_DATA4_N W19
in „Ethernetschnittstelle Xilinx Virtex 5“ · FPGA, VHDL & Co. ·
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Datei
bs.asm
STACKPOINTER_INIT: ldi temp0, low(RAMEND) out SPL, temp0 ; initialize Stackpointer ser status_RX ser status_TX ldi temp0, 0x5A out OSCCAL, temp0 ldi temp0, 0b01000010 out DDRD, temp0 ser temp0 out DDRB, temp0 clr temp1 ; ********************************************************************** CLEAR_CHART: clr temp0
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Datei
bs.asm
STACKPOINTER_INIT: ldi temp0, low(RAMEND) out SPL, temp0 ; initialize Stackpointer ser status_RX ser status_TX ldi temp0, 0x5A out OSCCAL, temp0 ldi temp0, 0b01000010 out DDRD, temp0 ser temp0 out DDRB, temp0 clr temp1 ; ********************************************************************** CLEAR_CHART: clr temp0
in „USART bricht bei RX --> TX ab“ · Mikrocontroller und Digitale Elektronik ·
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Datei
RFM22_Config.h
0x3B, // addr: 0x0A -def 0x06, Microcontroller Output Clock,Reserved Reserved clkt[1] clkt[0] enlfc mclk[2] mclk[1] mclk[0] 0x12, // TX_ANT addr: 0x0B -def 0x00, GPIO_0, gpio0drv[1] gpio0drv[0] pup0 gpio0
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PDF
HausAutoTest.pdf
R R20 GND U17 0 D8 1ULN2803 LED 14 SER QA 15 1 1B 1C 18 2 1 R 9 1 2 O 17 R15 QB 2B C 2C D6 D 8 Ub+ 11 SRCLK QC 2 3 3B 3C 16 LED I 7 5V 10 SRCLR QD 3 4 4B 4C 15 2 1 R 2 S 4 5 14 R16 J 6 QE 5B 5C D3 5 12 RCLK QF 5 6 6B 6C 13 LED 4 13 6 7 D 12 2 1 5 GND
in „AT32UC3C2 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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Datei
msp430g2xx1_ta_uart9600.c
0x40; // P1.6 if (rxBuffer & 0x20) P1OUT |= 0x80; else P1OUT &= ~0x80; // P1.7 if (rxBuffer & 0x40) P2OUT |= 0x40; else P2OUT &= ~0x40; // P2.6 if (rxBuffer & 0x80) P2OUT |= 0x80; else P2OUT &= ~0x80; // P2.7 // Echo received character TimerA_UART_tx(rxBuffer); } } //----------------------------------
in „Erfahrungen UART TI Launchpad“ · Mikrocontroller und Digitale Elektronik ·
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PDF
onkyo_tx_nr_616_service_manual.pdf.pdf
7 0 O 1 FROM BADG-1087 FROM BADG-1087 T T 2.5mm FFC CABLE P101B NSCT-09P2102 P5502B BD TO BD P5503B BD TO BD P5504B BD TO BD MODEL T6 TX-NR616 A6 T 2 3 4H51 6 7 8 9 1 2 3 4 5 6 7 8 9 1 1 1 1 1 1 1 1 1 1 2 1 2 3 4 5 6 7 1 2 3 4 5 6 7 8 9 1 1 1
in „Onkyo verstärker“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
usb_device.c
USB_WriteEndpoint(uint8_t endpt, uint8_t *txbuf, uint32_t length) { LPC_USB->Ctrl = 0x02 | ((endpt & 0x0F) << 2); LPC_USB->TxPLen = length; while(!(LPC_USB->DevIntSt & TxENDPKT)) { LPC_USB->TxData = *((__packed uint32_t *)txbuf); txbuf += 4; } LPC_USB->Ctrl = 0x00; LPC_USB->DevIntClr = TxENDPKT; USB_SIE_ReadWrite
in „LPC1788 USB Device“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lib_AT91SAM7S256.h
2004// //* CVS Reference : /lib_usart.h/1.5/Thu Nov 21 16:01:54 2002// //* CVS Reference : /lib_spi2.h/1.2/Tue Aug 23 15:37:28 2005// //* CVS Reference : /lib_pitc_6079A.h/1.2/Tue Nov 9 14:43:56 2004// //* CVS Reference : /lib_aic_6075b.h/1.2/Thu Jul 7 07:48:22 2005// //* CVS Reference : /lib_twi.h/
in „C Datein werden in Eclipse nicht kompiliert“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HSULM_BlueCAN.pdf
B 100n 100n GND RF B GND RFGND LED1 GND RFGND GND U2 GND GND V V + D + 3 V U1P C5 100n 2 S CAN_L V CAN_H V IC3 5 6 k U1 GND GND X1 X2 2 7805TV + R 3 CAN_H 1 CAN_H 1 X3-2 + 1 VI VO 3 2 2 C 1 7 CAN 3 3 C C1 GND C2 + C3 3 CAN_TX TXD CANH 1 CAN_L 4 CAN_L 4 100n 2 100n D 4 6 2 5 5 10u L CAN_RX RXD CANL 3 GND 6 GND 6 8 4 7 4 7 X3-1 RS 5 2 8 2 8 22-23-2021 VREF + + GND GND GND GND GND GND RJ45-8L-B RJ45-8L-B MCP2551SN
in „Schaltplan für CAN“ · Platinen ·
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Datei
Code.txt
stm32f0xx_misc.h" #include "stm32f0xx_usart.h" #include "stm32f0xx_flash.h" #include <stdio.h> // Defines #define TX_BUFFER_SIZE 32 #define RX_BUFFER_SIZE 256 #if TX_BUFFER_SIZE < 2 #error TX_BUFFER_SIZE is too small, It must be larger then 1. #elif ((TX_BUFFER_SIZE & (TX_BUFFER_SIZE-1)) != 0 ) #error TX_BUFFER_SIZE
in „STM32F030F4 HSI Clock mit PLL“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Beispiel.bas
Watchdog = 1024 '1s Do If Rx_complete = 1 Then Waitms 10 'Beruhigung auf den Bus Result = Rx_data(2) And &H07 If Result = Scannode Then Select Case Rx_data(1) Case "S" : If Scanflag = 0 Then Scanflag = 1 Newscandata = 0 End If Tx_data(1) = "s" Tx_data(2) = Scannode Or &H30 Result = Addchksum(2) Sendflag = 1 Reset Tx_complete Tx_ptr = 0 End If ' result = scannode Reset Rx_complete Rx_ptr = 0 Rx_data(1) = 0 Rx_data(2) = 255 Rx_data(3) = 0 End If 'if rxcomplete If Sendflag = 1 Then If Ucsra.udre = 1 Then 'udre = 1
in „Sporadische Aussetzer Serielle Kummunikation AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Acer_Aspire_5742G_Compal_LA-5893P_Rev0.1_Schematic.pdf
1 2 DIS@ 0.1U_0402_16V7K PEG_HTX_C_GRX_P4 J28 RSVD26 RSVD_TP_79 AD7 B PEG_TX[11] E27 PEG_HTX_GRX_P3 C573 1 2 DIS@ 0.1U_0402_16V7K PEG_HTX_C_GRX_P3 RSVD27 RSVD_TP_80 W3 B PEG_TX[12] D28 PEG_HTX_GRX_P2 C548
in „Laptop Akkus ausbauen und mit Netzteil betreiben“ · PC Hard- und Software ·
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PDF
slaa044.pdf
******************************* MSP430 IrDA SIR Encoder/Decoder A-3 A Software Listing init_Px BIC.B #0DH,&P1DIR ;P1.0/2/3 input BIS.B #02H,&P1DIR ;P1.1 output BIC.B #07H,&P1SEL ;P1.0 general I/O ports ;P1.1/2 module ports during TX BIS.B #02H,&P1OUT ;set P1.1 – high BIC.B #0FFH,&P1IFG ;clear interrupt
in „MSP430 - IrDA Empfänger“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS2761.pdf
DS2761 High-Precision Li+ Battery Monitor www.maxim-ic.com FEATURES PIN CONFIGURATION 1 2 3 4 § Lithium-Ion (Li+) Safety Circuit - Overvoltage Protection CC 1 16 VIN A - Overcurrent/Short-Circuit Protection SNS B PLS 2 15 VDD PLS DC DQ - Undervoltage Protection DC 2 14 PIO C § Zero Volt Battery
in „Akkustand mit AVR feststellen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rfm70.h
command to register #define RFM70_CMD_RD_RX_PLOAD 0x61 // Define RX payload command #define RFM70_CMD_WR_TX_PLOAD 0xA0 // Define TX payload command #define RFM70_CMD_FLUSH_TX 0xE1 // Define flush TX register command #define RFM70_CMD_FLUSH_RX 0xE2 // Define flush RX register command #define RFM70_CMD_REUSE_TX_PL
in „RFM70 Timing Problem?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
for ACLK *// // // MSP430G2xx1 // ----------------- // /|\| XIN|- // | | | 32kHz // --|RST XOUT|- // | | // | CCI0B/TXD/P1.1|--------> // | | 9600 8N1 // | CCI0A/RXD/P1.2|<-------- // // D. Dang // Texas Instruments Inc. // October
in „MSP430 - Timer Operation Wechsel?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
for ACLK *// // // MSP430G2xx1 // ----------------- // /|\| XIN|- // | | | 32kHz // --|RST XOUT|- // | | // | CCI0B/TXD/P1.1|--------> // | | 9600 8N1 // | CCI0A/RXD/P1.2|<-------- // // D. Dang // Texas Instruments Inc. // October
in „MSP430 - Timer Operation Wechsel?“ · 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 „Homematic, Radino CSM“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mbportserial.c
register empty interrupt */ void prvvMBPUSART2_TXE_ISR( void ) { BOOL bHasMoreData = TRUE; UBYTE ubTxByte; MBP_ASSERT( IDX_INVALID != xSerialHdls[UART_2_IDX].ubIdx ); if( NULL != xSerialHdls[UART_2_IDX].pbMBMTransmitterEmptyFN ) { bHasMoreData = xSerialHdls[UART_2_IDX].pbMBMTransmitterEmptyFN( xSerialHdls[UART_2_IDX].xMBMHdl, &ubTxByte ); } if( !bHasMoreData ) { xSerialHdls[UART_2_IDX].pbMBMTransmitterEmptyFN = NULL; /* The transmitter is disabled when the last
in „FreeRTOS + LWIP + UART Interrupt Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ml50x_schematics.pdf
B3 NC 1 2 AVTT_TX_116 L3AVTTTX1_116 TXN0_116 F2 SFP_TX_P E3AVTTTX1_120 TXN0_120 B4 NC AVCC_MGT FERRITE-220 AVTTTX2_116 TXP0_116 AVTTTX2_120 TXP0_120 FB73 J3 J1 SMA_RX_N AVCC_MGT F4 C1 NC 1 2 AVCC_MGT_116
in „DDR2 RAM Ansteuerung mit Virtex-5 ML507“ · FPGA, VHDL & Co. ·
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Datei
PLC-LOX-300.ino
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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Datei
rfm70.h
command to register #define RFM70_CMD_RD_RX_PLOAD 0x61 // Define RX payload command #define RFM70_CMD_WR_TX_PLOAD 0xA0 // Define TX payload command #define RFM70_CMD_FLUSH_TX 0xE1 // Define flush TX register command #define RFM70_CMD_FLUSH_RX 0xE2 // Define flush RX register command #define RFM70_CMD_REUSE_TX_PL
in „RFM70 Timing Problem?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XPort-Pro_IG.pdf
-40 85 C Table 2-5 Recommended Operating Conditions Parameter Symbol Min Typical Max Units Supply Voltage VCC 3.15 3.3 3.46 Vdc Supply Voltage Ripples VCC_PP 2 % 100Base-TX Active CC 225 270 mA (Evolution) 100Base-TX
in „[V] 2St. gebrauchte Lantronix XPORT PRO Module -LAN-Seriell, KLEINEN DEFKTEN , zu Fädeln (beide 8€)“ · Markt ·
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PDF
XPort-Pro_IG.pdf
-40 85 C Table 2-5 Recommended Operating Conditions Parameter Symbol Min Typical Max Units Supply Voltage VCC 3.15 3.3 3.46 Vdc Supply Voltage Ripples VCC_PP 2 % 100Base-TX Active CC 225 270 mA (Evolution) 100Base-TX
in „[V] 3St. gebrauchte Lantronix XPORT PRO Module -LAN-Seriell MIT KLEINEN DEFKTEN (alle für 15€)“ · Markt ·
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PDF
XPort-Pro_IG.pdf
-40 85 C Table 2-5 Recommended Operating Conditions Parameter Symbol Min Typical Max Units Supply Voltage VCC 3.15 3.3 3.46 Vdc Supply Voltage Ripples VCC_PP 2 % 100Base-TX Active CC 225 270 mA (Evolution) 100Base-TX
in „[V] 1x gebrauchtes Lantronix XPORT PRO Module -LAN-Seriell Module (13€)“ · Markt ·
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Datei
Log-2.txt
: CreateFile] [Memory Allocation! txBuf = 0x32ed838 ] [UsbTxFile start! run_addr=0xffffffff] [UsbTxFile end] Find Device From Name Opened successfully. Opened successfully. [SUCCESS: ReadFile otgtype0) hRead0x1b0)] [SUCCESS: CreateFile]
in „falsche u-boot nand geflasht,J-Tag möglichkeit für Flytouch2?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lib_rdm_in.c
5); uint8_t TxCh= gTxCh; if (TxCh == 0) { UBRRL = ((F_OSC/4000)-1); //250kbaud UDR = 0xCC; //send alternate start code gTxCh= 1; } else { if (TxCh > (RdmField[2]+1)) { PORTD ^= (1<<PD7); //LED: responding _delay_us(20); PORTD &= ~(1<<2); //enable reception RxState= IDLE; //wait for break UCSRB = (1<<RXEN)|(1<<RXCIE); } else { UDR= RdmField[TxCh++]; //send data gTxCh= TxCh; } } }
in „Warning: expression dangerous with linker stubs“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lib_rdm_in.c
**** ISR (UART_TX_vect) { _delay_us(5); uint8_t TxCh= gTxCh; if (TxCh == 0) { UBRRL = ((F_OSC/4000)-1); //250kbaud UDR = 0xCC; //send alternate start code gTxCh= 1; } else { if (TxCh > (RdmField[2]+1)) { PORTD ^= (1<<PD7); //LED: responding _delay_us(20); PORTD &= ~(1<<2); //enable reception RxState= IDLE; //wait for break UCSRB = (1<<RXEN)|(1<<RXCIE); } else { UDR= RdmField[TxCh++]; //send data gTxCh= TxCh; } } }
in „[C-Code Optimierung] RDM responder“ · Mikrocontroller und Digitale Elektronik ·
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Datei
msp430g2xx1_ta_uart9600.c
for ACLK *// // // MSP430G2xx1 // ----------------- // /|\| XIN|- // | | | 32kHz // --|RST XOUT|- // | | // | CCI0B/TXD/P1.1|--------> // | | 9600 8N1 // | CCI0A/RXD/P1.2|<-------- // // D. Dang // Texas Instruments Inc. // October
in „MSP430 launchpad TimerA_UART“ · Mikrocontroller und Digitale Elektronik ·