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Datei
Slave.cpp
; DMA2_Stream5->M0AR = (uint32_t)&DAQPipe.tx_cfg_buf; DMA2_Stream5->CR |= (uint32_t)DMA_SxCR_EN; break; default: DS.counter1++; return; } // Enable SPI Tx SPI1->CR2 |= (uint16_t)SPI_I2S_DMAReq_Tx; } // On Transmit end void DMA2_Stream5_IRQHandler() { // Disable SPI Tx SPI1->CR2 &= (uint16_t)~SPI_I2S_DMAReq_Tx; // Clear ITs DMA2->HIFCR |= 0x800; }
in „2 STM32F4 SPI Master/Slave FullDuplex“ · Mikrocontroller und Digitale Elektronik ·
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PDF
U2532B.pdf
U2532B IR Transmitter and Receiver Description The IC U2532B is a complete IR-Transmitter-Receiver 2.4 kbit/s to 115.2 kbit/s and up to 500 kHz for IC according to the new IrDA 1.0 standard. ASK-modulation.
in „Temic-Datenblättern“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
_ATT_12740.pdf
; TxHeader.TransmitGlobalTime = DISABLE; TxData[0] = 1; CAN TX message TxData[1] = 2; TxData[2] = 3; TxData[3] = 4; TxData[4] = 5; TxData[5] = 6; TxData[6] = 7; TxData[7] = 8; /* USER CODE END 2 */ Modifying
in „STM32 CAN Botschaft empfangen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Dazzle_HW_mb_hsw_ult-3a-reve-0408.pdf
_4 PCIE_TX4- B29 USB3RP2 USB3_RXP1 23 A 28 PCIE_TX4-_LAN C588 0.1u/10V_4 PCIE_TX4+ A29 PETN4 B33 mDP Dongle 6 OF 19 L 28 PCIE_TX4+_LAN PETP4 +3V_S5 USB3TN2 A33 USB3_TXN1 23 G17 +3V_S5 USB3TP2 USB3_TXP1 23 TP22
in „Notebook Mainboard reparieren Aspire V5-573G, IC iTE IT8587E“ · PC Hard- und Software ·
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Datei
main.c
_t *)tx_frame_info + (LARGE_BUFFER_SIZE - 2 - tx_frame_info->payload_length); // 2 = FCF_SIZE payload = tx_frame_info->payload; for (i = 0; i < tx_frame_info->payload_length; i++) { *payload++ = i; // dummy
in „performance Testprogramm Atmel MAC“ · HF, Funk und Felder ·
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Datei
rm01.asm
;UDR0 Empty Handler rjmp nix;USART_TXC ;USART TX Complete Handler rjmp nix;ANA_COMP ;Analog Comparator Handler rjmp nix;EXT_INT2 ;IRQ2 Handler rjmp TIM0_COMP ;Timer0 Compare Handler rjmp nix;EE_RDY ;EEPROM Ready Handler rjmp nix;SPM_RDY ;Store Program
in „Bitwackeln mit USB to Seriell Wandler (Schnelligkeit)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mac.h
/ #define MAC_ADDRESS5 0x16 #define MAC_ADDRESS4 0x35 #define MAC_ADDRESS3 0xAC #define MAC_ADDRESS2 0x4B #define MAC_ADDRESS1 0xAE #define MAX_FRAME 1536 /* maximum frame length */ #define CLRT_DEFAULT 0x0000370F /* default collision window / retry */ #define IPGR_DEFAULT 0x00000C12 /* default back-to-back
in „IP-Stack bauen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AVRootloader.asm
undef polyh .undef zx .undef cmdl .undef cmdh .undef cntl .undef cnth .def a0 = r0 .def a1 = r1 .def a2 = r2 .def a3 = r3 .def b0 = r4 ; feedl .def b1 = r5 ; feedh .def b2 = r6 .def b3 = r7 ; zx .def t0 = r8 ; crcl .def t1 = r9 ; crch ;.def zerol = r10 ; zerol ;.def zeroh = r11 ; zeroh ;.def baudl = r12
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Datei
main18.asm
transmit_WS2812 movlw high(rgb_byte) movwf FSR0H movlw low(rgb_byte) movwf FSR0L movf INDF0,w movwf tx_buf,ACCESS txloop_1 movlw .7 ; Transmit 7 bits movwf tx_cnt,ACCESS txloop_0 movlw b'11111100' ; Transmit '1', Soll: 700ns +/- 150ns, ist 750ns btfss tx_buf,7,ACCESS ; txloop0: Sends bit <7:1> movlw b
in „[ASM & C] PIC12/PIC18/PIC24 WS2812 SPI Library“ · Projekte & Code ·
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Datei
rfm22b.c
addr, unsigned char data) { uint16_t data_16 = data | (addr << 8); // 16 Bit Addresse bilden RFM22B_CS_LOW(); while (SPI_I2S_GetFlagStatus(RFM22B_SPI, SPI_I2S_FLAG_TXE) == RESET){}; SPI_I2S_SendData(RFM22B_SPI,data_16); while (SPI_I2S_GetFlagStatus(RFM22B_SPI, SPI_I2S_FLAG_RXNE) == RESET){}; RFM22B_CS_HIGH
in „STM32 und RFM22B“ · Mikrocontroller und Digitale Elektronik ·
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Datei
IC_CC1101.h
Wake On Radio control #define FREND1 0x21 // Front end RX config #define FREND0 0x22 // Front end TX config #define FSCAL3 0x23 // Frequency synthesizer calibration 3 #define FSCAL2 0x24 // Frequency synthesizer calibration 2 #define FSCAL1 0x25 // Frequency synthesizer calibration 1 #define FSCAL0
in „In-Circuit radino CC1101 Modul Hängt im SPI Transfer“ · Mikrocontroller und Digitale Elektronik ·
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Datei
IC_CC1101.h
Wake On Radio control #define FREND1 0x21 // Front end RX config #define FREND0 0x22 // Front end TX config #define FSCAL3 0x23 // Frequency synthesizer calibration 3 #define FSCAL2 0x24 // Frequency synthesizer calibration 2 #define FSCAL1 0x25 // Frequency synthesizer calibration 1 #define FSCAL0
in „Homematic, Radino CSM“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PeriphCode.c
= DMA_Priority_Medium; DMA1Tx_InitStructure.DMA_Priority = DMA_Priority_Medium; DMA1Rx_InitStructure.DMA_M2M = DMA_M2M_Disable; DMA1Tx_InitStructure.DMA_M2M = DMA_M2M_Disable; DMA_Init(DMA1_Channel2, &DMA1Rx_InitStructure); DMA_Init(DMA1_Channel3, &DMA1Tx_InitStructure); SPI_I2S_DMACmd(SPI1, SPI_I2S_DMAReq_Rx, ENABLE); SPI_I2S_DMACmd(SPI1, SPI_I2S_DMAReq_Tx, ENABLE); SPI_Cmd(SPI1, ENABLE); DMA_Cmd(DMA1_Channel2, ENABLE); DMA_Cmd(DMA1_Channel3, ENABLE)
in „STM32F0 SWD LockOut“ · Mikrocontroller und Digitale Elektronik ·
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PDF
fronius_tp1500_inventor_sm.pdf
the - Mount the temperature sensor (9) and the suppressor circuit (79) using a M4x14- temperature TX20 screw (31) sensor - Tighten the M4x14-TX20 screw (31) with a torque of 2 Nm (Fig.4) - Plug the 2-pole Molex plug (40) onto the LCA15 board - Fix the cable harness for the 2-pole Molex plug (40) and
in „SMD Zenerdiode, welcher wert? (SMPS)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ds1820.pdf
MASTER DISABLES Y STRONG PULLUP Y STRONG PULLUP MASTER MASTER MASTER MASTER RX“0s” RX“1s” RX“0s” RX“1s” B4h BEh 4Eh N READ N B8h N N POWER SUPPLY RECALL E2 READ WRITE ? SCRATCHPAD SCRATCHPAD ? ? ? Y Y Y Y MASTER TXTHBYTE TO SCRATCHPAD N Y MASTER R XATA BYTE PARASITE FROM SCRATCHPAD POWERED MASTER BEGIN2
in „Thermometer mit ds18s20 und LED Annzeige“ · Projekte & Code ·
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Datei
stm32f4xx_spi.h
IS_I2S_MODE(MODE) (((MODE) == I2S_Mode_SlaveTx) || \ ((MODE) == I2S_Mode_SlaveRx) || \ ((MODE) == I2S_Mode_MasterTx)|| \ ((MODE) == I2S_Mode_MasterRx)) /** * @} */ /** @defgroup SPI_I2S_Standard * @{ */ #define
in „STM32F4XX SPI Slave“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GD32F103xx_Datasheet_V2.5.pdf
12 PB12 25 13 14 15 16 17 18 19 20 21 22 23 24 P P P P P P P P P P V V A A A A A B B B B B S D 3 4 5 6 7 0 1 2 0 1 _ _ 1 1 13 GD32F103xx Datasheet Figure 2-7. GD32F103Tx QFN36 pinouts V O S O P P P P P A A _ T B B B B B 1 1 3 0 7 6 5 4 3 5 4 36 35 34 33 32 31 30 2928 1 VDD_3 27 V DD
in „Unterschiede CS32F103C8T6 und STM32F103C8T6“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
Interrupt gesetzt { switch(ZustandProg) { case 1: // wenn von AUS --> EIN System_Start(); tx = 0; break; case 2: // in Betrieb ==> EIN _NOP(); _NOP(); tx = 0; break; case 3: // wenn von EIN --> AUS System_Stop(); tx = 0; break; default: // dieser Zustand dürfte normalerweise nie auftreten, wenn
in „MSP430 F5529 Wobbel-Generator“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet_ds1820.pdf
CHART Figure 10 (cont’d) B8h B4h RECALL N READ N E2 POWER SUPPLY ? ? Y Y DS1820 2ECALLS FROM E PROM MASTER Y MASTER Y TX RESET TXRESET ? ? N N PARASITE Y MASTER N DEVICE N BUSY CONVERTING Y POWERED TXRESET TEMPERATURE ? ? ? MASTER
in „Kennt sich irgendwer mit CVAVR aus, geht um DS1820“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS1820_DAL.pdf
CHART Figure 10 (cont’d) B8h B4h RECALL N READ N E2 POWER SUPPLY ? ? Y Y DS1820 2ECALLS FROM E PROM MASTER Y MASTER Y TX RESET TXRESET ? ? N N PARASITE Y MASTER N DEVICE N BUSY CONVERTING Y POWERED TXRESET TEMPERATURE ? ? ? MASTER
in „DS1820 physikalisch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet_ds1820.pdf
CHART Figure 10 (cont’d) B8h B4h RECALL N READ N E2 POWER SUPPLY ? ? Y Y DS1820 2ECALLS FROM E PROM MASTER Y MASTER Y TX RESET TXRESET ? ? N N PARASITE Y MASTER N DEVICE N BUSY CONVERTING Y POWERED TXRESET TEMPERATURE ? ? ? MASTER
in „CVAVR und DS1820 nix als Ärger!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1820.pdf
CHART Figure 10 (cont’d) B8h B4h RECALL N READ N E2 POWER SUPPLY ? ? Y Y DS1820 2ECALLS FROM E PROM MASTER Y MASTER Y TX RESET TXRESET ? ? N N PARASITE Y MASTER N DEVICE N BUSY CONVERTING Y POWERED TXRESET TEMPERATURE ? ? ? MASTER
in „1-Wire und DS1820 Testprog“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDS_DS18S20.pdf
CHART Figure 10 (cont’d) B8h B4h RECALL N READ N E2 POWER SUPPLY ? ? Y Y DS1820 2ECALLS FROM E PROM MASTER Y MASTER Y TX RESET TXRESET ? ? N N PARASITE Y MASTER N DEVICE N BUSY CONVERTING Y POWERED TXRESET TEMPERATURE ? ? ? MASTER
in „2x HW Uart / Sinnvoll?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ds1820.pdf
CHART Figure 10 (cont’d) B8h B4h RECALL N READ N E2 POWER SUPPLY ? ? Y Y DS1820 2ECALLS FROM E PROM MASTER Y MASTER Y TX RESET TXRESET ? ? N N PARASITE Y MASTER N DEVICE N BUSY CONVERTING Y POWERED TXRESET TEMPERATURE ? ? ? MASTER
in „DS1820 Umrechnung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ds1820.pdf
CHART Figure 10 (cont’d) B8h B4h RECALL N READ N E2 POWER SUPPLY ? ? Y Y DS1820 2ECALLS FROM E PROM MASTER Y MASTER Y TX RESET TXRESET ? ? N N PARASITE Y MASTER N DEVICE N BUSY CONVERTING Y POWERED TXRESET TEMPERATURE ? ? ? MASTER
in „1-Wire Protokollablauf“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ds1820_eng-ds.pdf
CHART Figure 10 (cont’d) B8h B4h RECALL N READ N E2 POWER SUPPLY ? ? Y Y DS1820 2ECALLS FROM E PROM MASTER Y MASTER Y TX RESET TXRESET ? ? N N PARASITE Y MASTER N DEVICE N BUSY CONVERTING Y POWERED TXRESET TEMPERATURE ? ? ? MASTER
in „DS18S20, DS18B20, DS1820?!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS1820_DALLAS.pdf
CHART Figure 10 (cont’d) B8h B4h RECALL N READ N E2 POWER SUPPLY ? ? Y Y DS1820 2ECALLS FROM E PROM MASTER Y MASTER Y TX RESET TXRESET ? ? N N PARASITE Y MASTER N DEVICE N BUSY CONVERTING Y POWERED TXRESET TEMPERATURE ? ? ? MASTER
in „18x20 welches Messprinzip“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c
= 0; } /* USER CODE END WHILE */ /* USER CODE BEGIN 3 */ } /* USER CODE END 3 */ } void HAL_I2SEx_TxRxHalfCpltCallback(I2S_HandleTypeDef *hi2s1){ callback_state = 1; } void HAL_I2SEx_TxRxCpltCallback(I2S_HandleTypeDef *hi2s1){ callback_state = 2; } /** * @brief I2S1 Initialization Function * @
in „STM32H745 I2S DMA (NUCLEO-STM32H745ZI-Q DualCore)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
usblc6-4sc6.pdf
1 VBUS VBUS VBUS RX LS/FS RX LS/FS R X HS RX HS+ RX LS/FS - D+ RX LS/FS - RX HS - RX HS - TX HS - D- TX HS - GND GND RS USBLC6-2SC6 GND R S TX LS/FS TX LS/FS RS R S TX LS/FS - TX LS/FS - R PD RPD DEVICE- + 3.3V UPSTREAM RPU TRANSCEIVER USB connector SW 2 SW 1 VBUS VBUS RX LS/FS RX LS/FS T X H+ TX HS+ RX LS/FS - D+ RX LS/FS - RX HS - RX HS - TX HS - D- TX HS - GND GND RS USBLC6-2P6 GND R S TX LS/FS USBLC6-4SC6 TX LS/FS RS R S TX LS/FS - TX LS/FS - R PD RPD Mode SW 1 SW 2 Low Speed LS Open Closed
in „Instabile USB Verbindung mit USBLC6-4SC6“ · Mikrocontroller und Digitale Elektronik ·
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Datei
u-boot-output.txt
= 1 [Warning] DQSO 0 in TX per-bit = 4 > DQSO 0 in WL = 1 DQSO 1 in TX per-bit = 0 <= DQSO 1 in WL = 0 [Warning] DQSO 2 in TX per-bit = 7 > DQSO 2 in WL = 0 [Warning] DQSO 3 in TX per-bit = 9 > DQSO 3 in WL = 0 Tx DQM dly = 0x2022 Tx DQM dly bit4 = 0x0 DRAMC_DQODLY1=3432333h DRAMC_DQODLY2=24213133h DRAMC_DQODLY3=4214h DRAMC_DQODLY4=32103012h Tx DQ dly bit4 = 0x0 Tx DQS dly = 0x9704 Tx DQS dly bit4 = 0x0 TX Byte0: DQ - 13, DQS - 19
in „Linux Kernel 5.1.1. auf dem BPi-R2“ · PC Hard- und Software ·
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Datei
comm.c
CTI (Character Time-out indicator) wird nicht beachtet else if (int_stat == UIIR_CTI_INT) { foo = U2LSR; // IRQ durch lesen löschen foo = U2RBR; } // ---- THRE Interrupt (Uart TX FIFO leer: U2LSR auslesen für weitere Infos) else if (int_stat == UIIR_THRE_INT) { // Hw TX FIFO wieder auffüllen cnt = TxFifo.count
in „Retro Fieber: Z80 oder 68000 ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Sender_und_Empf_nger.txt
Datenregister (Tx-Mode) ; ;2 Power Management (82h) ldi temp1,0x82 ldi temp2,0b00011001 ;b0(dc): disable Clockoutput rcall Send ;b1(ew): enable Wake-up Timer ;b2(eb): enable Low-Battery Detector ;b3(ex): Fährt den Oszillator
in „Funkmodul RFM12“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS1820-DS1820S.pdf
48h None 1 2 the scratchpad to EEPROM. Recall E Recalls TH and TLdata from B8h DS18S20 transmits recall status EEPROM to the scratchpad. to master. Read Power Signals DS18S20 power B4h DS18S20 transmits supply status
in „1-Wire & Pull-UP“ · Mikrocontroller und Digitale Elektronik ·
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Datei
hardcopy.c
0+1] = 'B'; // ID von Bitmap Schnittstelle.ucData_tx[1+1] = 'M'; // ID von Bitmap if (hardcopy.ucRahmen == 0) { Schnittstelle.ucData_tx[2+1] = 0x3E; // Dateigröße (Byte 0) => 4158 = 0x103E Schnittstelle.ucData_tx
in „G16-Format: Wandlung in BMP?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Code_Temperatur_Touch.txt
expandedcolortbl;;} \paperw11900\paperh16840\margl1440\margr1440\vieww14560\viewh23580\viewkind0 \pard\tx566\tx1133\tx1700\tx2267\tx2834\tx3401\tx3968\tx4535\tx5102\tx5669\tx6236\tx6803\pardirnatural\partightenfactor0 \f0\fs24 \cf0 //Library f\'fcr Display (inkl. Touch)\ #include <Elegoo_GFX.h> // Core graphics
in „Arduino Auswertung Touchscreen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Can.h
= 4, prop = 7 brgcon3 = 00000111b; // no filter, phase2=8 ciocon = 00100000b; // drive CanTX high when recessive; no cancap // interrupts //>>> // receive buffer control //rxb0con = 01000100b; // extended frames only, enable double buffer
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Datei
Can.h
= 4, prop = 7 brgcon3 = 00000111b; // no filter, phase2=8 ciocon = 00100000b; // drive CanTX high when recessive; no cancap // interrupts //>>> // receive buffer control rxb0con = 01000100b; // extended frames only, enable double buffer
in „MCP25055 CAN I/O Expander wie einfach programmieren?“ · Haus & Smart Home ·
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Datei
PowerSDR_database_export_18.09.2010_18.27.xml
</TX> </BandText> <BandText> <Low>144.2</Low> <High>144.2</High> <Name>2M Calling</Name> <TX>true</TX> </BandText> <BandText> <Low>144.200001</Low> <High>144.274999</High> <Name>2M CW/SSB</Name> <TX>true<
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Datei
spi.c
_5; spi_periph2->dma_channel_rx.transfer_ends = spi2_trans_end; spi_periph2->dma_channel_rx.transfer_error = spi2_trans_error; spi_periph2->dma_channel_rx.PeripheralBaseAddr = (uint32_t) &(SPI2->DR); spi_periph2->dma_channel_tx.transfer_ends = (void*) 0; spi_periph2->dma_channel_tx.transfer_error = (void*) 0; spi_periph2->dma_channel_tx.PeripheralBaseAddr = (uint32_t) &(SPI2->DR); #ifdef SPI2_QUEUE_SIZE spi_periph2->transaction_queue = spi2_queue; spi_periph2->queue_size
in „STM32L1xx DMA+SPI: 2 Bugs“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mcp2515_defs.h
// BFPCTRL #define B1BFS 5 #define B0BFS 4 #define B1BFE 3 #define B0BFE 2 #define B1BFM 1 #define B0BFM 0 // TXRTSCTRL #define B2RTS 5 #define B1RTS 4 #define B0RTS 3 #define B2RTSM 2 #define B1RTSM 1 #define B0RTSM 0 /
in „MCP2515 sendet kein SO Signal an MISO (SPI)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX3949_Datenblatt.pdf
Trailing Time After the Last SCL Edge T 500 ns Total bus capacitance on one line with SDA, SCL Load C B 20 pF 4.7kΩ pullup toCC VSEL FOUR-LEVEL DIGITAL INPUT (Table 2) 5/6V Input Voltage High 3-wire address, ADDR[6:5] = 11b CC VCC V + 0.2 Input Voltage Mid-High 3-wire address, ADDR[6:5] = 10b 3/6VCC 2/3 x 5/6VCC V + 0.2 V CC - 0.2 1/6VCC 1/3 x 3/6VCC Input Voltage Mid-Low 3-wire address, ADDR[6:5] = 01b + 0.2 V CC - 0.2 V 1/6VCC Input Voltage Low 3-wire address, ADDR[6:5] = 00b 0 - 0.2 V Maxim Integrated 6 www.maximintegrated.com
in „MAX3949 über I2Can Arduino wird nicht gefunden“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rf_defines.h
NRF24L01_REG_DEFAULT_VAL_TX_ADDR_0 0xE7 #define NRF24L01_REG_DEFAULT_VAL_TX_ADDR_1 0xE7 #define NRF24L01_REG_DEFAULT_VAL_TX_ADDR_2 0xE7 #define NRF24L01_REG_DEFAULT_VAL_TX_ADDR_3 0xE7 #define NRF24L01_REG_DEFAULT_VAL_TX_ADDR_4
in „[STM32F4xx] NRF24L01+ Funkmodul Source Code“ · Projekte & Code ·
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PDF
Lan_Karte_Doku.pdf
Name Polarisierung Beschreibung 0 W RX_START Das eine DV = LOW aus der RX FIFO "weglesen" DV in die TX FIFO schreiben und danach ein DV = LOW 1 RW TX_FLG_DV byte 2 RW TX_EN nTX_EN TX Pfad ist aktiv 3 W IRQ_RX_clear nIRQ_RX_clear RX Pfad IRQ quittieren 4 RW IRQ_RX_Enable RX IRQ aktivieren RX Paketgöße
in „Space Age 2 der 32Bit MIPS Rechner in TTL“ · Projekte & Code ·
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PDF
HAL_STM32F1.pdf
Underflow Error: late data arrival from the memory ETH_DMATXDESC_DB Deferred Bit ETH_DMATXDESC_TBS2 Transmit Buffer2 Size ETH_DMATXDESC_TBS1 Transmit Buffer1 Size ETH_DMATXDESC_B1AP Buffer1 Address Pointer ETH_DMATXDESC_B2AP Buffer2 Address Pointer ETH DMA Tx descriptor Checksum Insertion Control ETH_DMATXDESC_CHECKSUMBYPASS
in „CAN auf STM32F4“ · Mikrocontroller und Digitale Elektronik ·
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Datei
enc28j60.asm
enc_sp_l0 enc_sp_m0: ;//send anyway... ;//setup write pointer: ldi param1,ENC28J60_REG_EWRPTL ldi param2,low(ENC28J60_TX_BUFFER_START) rcall enc28j60_write_address ;enc28j60_write_address(ENC28J60_REG_EWRPTL, (ENC28J60_TX_BUFFER_START&0xFF)); ldi param1,ENC28J60_REG_EWRPTH ldi param2,high(ENC28J60_TX_BUFFER_START
in „ENC28J60 verliert Packete“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
PD3 // Pins #define PORT_LED PORTB #define PIN_LED 0x01 // PB0 // States #define STOP 0 #define REC 2 // MMC #define START_SECTOR 528 // This is the sector number where the search for midi files begins (no FAT32 readings!) #define TX_BUF_SIZE 128 #define RX_BUF_SIZE 128 // Variables u08 sharedmem[512
in „NMEA wird nicht richtig empfangen (SkyTraq 6 ST22, ATmega8L)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
N73_RM-132_schematics_v1.pdf
MBus F11 VBat1 HeadDet J10 7 K11 VBat2 TXCCONV(1:0) ~4V A8 AFC J11 0 RF part VBat3 TxC1 J7 1 VBAT F10 VBat4 D11 VBat5 C11 VBatCP SIMClkC1 B7 0 B3 C7 1 SIM connector VBatH SIMDaC1 ~4V N6508 1.8V C2204 C2203 A6 SIMClk2 SIMRstC1 B5 2 X6513 VIO
in „[V] 30 5x7 LED-Matrixen, Nokia N73 Handy-Teile“ · Markt ·
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PDF
ds1990a.pdf
recovery times. For more heavily loaded systems, an active pullup such as that found in the DS2480B may be required. Analog Devices │ 2 www.analog.com DS1990A Serial Number iButton Electrical Characteristics (continued) (Limits are 100% production tested at T = +25°C and/or T = +85°C. Limits over the
in „V 30 iButton DS1990A“ · Markt ·
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Datei
UART_STM32F10x.c
available 0, // Signal DCD change event 0, // RI Line available 0, // Signal RI change event 0 }; /* UART2 DMA */ #if (RTE_USART2_TX_DMA != 0) static const DMA_INFO USART2_DMA_TX = { DMAx_CHANNELy(RTE_USART2_TX_DMA_NUMBER, RTE_USART2_TX_DMA_CHANNEL), RTE_USART2_TX_DMA_NUMBER, RTE_USART2_TX_DMA_CHANNEL, RTE_USART2
in „Einbindung einer .c ohne .h“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Schaltplan eines ESP32-basierten Mikrocontroller-Moduls
CAN_RX 02 026 CAN_B ENC_A SCK 11 025 TX2 GND 12 024 TX2 SD_DET 13 023 RESET 14 022 ENC_BTN 15 021 ENC_A 16 020 CAN_H 17 019 CAN_L 18 018 MOSI 19 017 CAN_RX 20 016 CAN_TX 21 015 CAN_RX 22 014 CAN_TX 23 013 CAN_RX 24 012 CAN_TX 25 011 CAN_RX 26 010 CAN_TX 27 009 CAN_RX 28 008 CAN_TX 29 007 CAN_RX 30 006 CAN_TX 31 005 CAN_RX 32 004 CAN_TX 33 003 CAN_RX 34 002 CAN_TX 35 001 CAN_RX 36 000 CAN_TX J1 1 2 3 4 5 6 7 8 9 10 11 12 13
in „PCB Schaltplan“ · Mikrocontroller und Digitale Elektronik · · Screenshots