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Datei
RP2040-test.ino
enable // triggered by CH0 and triggers CH0 again DMA->CH1_READ_ADDR = (uint32_t) &PIO0->RXF0; // transfer FIFO loeschen DMA->CH1_WRITE_ADDR = (uint32_t) &dma_dummy; // to dummy location DMA->CH1_TRANS_COUNT = 1; // one transfer only DMA->CH1_CTRL_TRIG = 0x3f<<DMA_CH0_CTRL_TRIG_TREQ_SEL_Pos | // free running
in „RP2040 C-Programm mit Arduino IDE verwenden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
rej09b0001_r8csm.pdf
Function Function Mnemonic Description Page No. for PageNo.for Function InstructionCode /No.ofCycles Transfer MOV Transfer 90 193 MOVA Transfer effective address 92 200 MOVDir Transfer 4-bit data 93 201 POP Restore register/memory 101 211 POPM Restore multiple registers 103 213 PUSH Save register/memory/immediate data 104 214 PUSHA Save effective address 105 216 PUSHM Save multiple registers 107 217 LDE Transfer from extended data area 87 191 STE Transfer to extended data area 123 233 STNZ Conditional transfer 124 235 STZ Conditional transfer 125 235 STZX Conditional transfer 126 236 XCHG Exchange 132 242
in „Assembler durchschnitts berechnung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
NPI_Interface.vhd
is a Read request. DDR2_SDRAM_NPI_Size_pin : out std_logic_vector(3 downto 0); -- Indicates the transfer type of the request. DDR2_SDRAM_NPI_RdModWr_pin : out std_logic; -- This active high signal indicates that if the request is a write, -- MPMC should do a read/ modify/write. DDR2_SDRAM_NPI_InitDone_pin
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ESP8266-12F_Tronixlabs_Australia.pdf
holding current 10 uA, shutdown current of less than 5 uA • Within 2 ms of wake-up, connect and transfer data packets • Standby power consumption is less than 1.0 mW (DTIM3) • Operating temperature range: -40 ℃ - 125 ℃ 1.2. The main parameters Table 1 describes the main parameters of the module. Table
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PDF
eusi98lm.pdf
related to ! =▯ =2. IfH (z) isthe transfer j▯=2 with z=e inH (z)and H (z),we obtain the complex a b j▯=2 function ofthe halfband ▯lter,H (z=e ) isthetransfer ▯lter: function of the complex ▯lter with passband-stopband H (z) = H (z)+ jH (z)
in „Hilbert Transformation im uC berechnen“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
IOWA-LX-600_UMN_v1.00.pdf
Auto (Default) The computer selects the correct mode. Mode 0 PIO mode 0 selected with a maximum transfer rate of 3.3MBps. Mode 1 PIO mode 1 selected with a maximum transfer rate of 5.2MBps. Mode 2 PIO mode 2 selected with a maximum transfer rate of 8.3MBps. Mode 3 PIO mode 3 selected with a maximum transfer
in „DOS mit aktueller Technik / RAM“ · PC Hard- und Software ·
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PDF
datasheet.pdf
flags can generate a CPU interrupt requests: Table 19-2. SPI Interrupts Flag Request SPIF (SP Data Transfer) SPI Transmitter Interrupt request MODF (Mode Fault) SPI Receiver/Error Interrupt Request (if SSDIS = “0”) Serial Peripheral data transfer flag, SPIF: This bit is set by hardware when a transfer has
in „8051 Ultraschall problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Code_aktuell_.txt
; } status = claim_interface(handle); if(status != 0) return EXIT_FAILURE; status = libusb_bulk_transfer(handle,0x01,data,sizeof(data),&actual,5000); printf("%d Bytes gesendet\n",actual); if(status != 0) { fprintf(stderr,"Fehler beim Senden!\n"); perror("Fehler"); return EXIT_FAILURE; } status = libusb_bulk_transfer
in „libusb Problem :[submit_bulk_transfer] submiturb failed error -1 errno=2“ · Softwareentwicklung ·
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Datei
inc_test.asm
Overflow jmp TIMER0_COMP ; Timer0 Compare jmp TIMER0_OVF ; Timer0 Overflow jmp SPI_STC ; Serial Transfer Complete jmp USART_RXC ; USART, Rx Complete jmp USART_UDRE ; USART Data Register Empty jmp USART_TXC ; USART, Tx Complete jmp ADC_COMP ; ADC Conversion Complete jmp EE_RDY ; EEPROM Ready jmp ANA_COMP
in „Hilfe Ladereglung Atmega16 Assembler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
x9119.h
wiper counter register of device addr (0-7) void x9119_write_wcr(uint8_t addr, uint16_t value); // transfer wiper counter register to data register reg (0-3) of device addr (0-7) void x9119_xfr_wcr_to_dr(uint8_t addr, uint8_t reg); // transfer data register reg (0-3) to wiper counter register of device
in „AVR TWI im Master Reciver Mode daten an slave schicken“ · Mikrocontroller und Digitale Elektronik ·
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Datei
FT800_config.c
(void) { digitalWrite(FT_PDN, HIGH); // Power-Down high } void spi_transmit(uint8_t data) { SPI.transfer(data); } uint8_t spi_receive(uint8_t data) { return SPI.transfer(data); } uint8_t fetch_flash_byte(const uint8_t *data) { return(pgm_read_byte_near(data)); } #endif
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LIS302DL_AN.pdf
the bus Receiver The device which receives data from the bus Master The device which initiates a transfer, generates clock signals and terminates a transfer Slave The device addressed by the master 2 There are two signals associated with the I C bus: the Serial Clock Line (SCL) and the Serial DAta line
in „Verwirrung mit LIS302“ · Mikrocontroller und Digitale Elektronik ·
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PDF
11000.pdf
a write or a read to the SPIDR register). 0: Hardware management (SS managed by exter- 0: Data transfer is in progress or the flag has been nal pin) cleared. 1: Software management (internal SS signal con- 1: Data transfer between the device and an exter- trolled by SSI bit. External SSpin free for
in „Programmierung von ST72F321Bj9“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PC16550D.pdf
information reported includes the type and coby 1 to (26b 1) and generates the 16c clock. i dition of the transfer operations being performed by theY Independent receiver clock input. e ing, or break interrupt).r conditions (parity, overrun, YrMODEM control functions (CTS, RTS, DSR, DTR, RI, r and DCD). / The
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Datei
OPS_ATMEGA8.asm
TIM1_OVF ; Timer 1 Overflow Handler rjmp TIM0_OVF ; Timer 0 Overflow Handler rjmp SPI_STC ; SPI Transfer Complete Handler rjmp USART_RXC ; USART TX Complete Handler rjmp USART_UDRE ; UDR Empty Handler rjmp USART_TXC ; Usart TX Complete Handler rjmp ADC_COMPLETE ; ADC Conversion Complete Handler rjmp
in „AtMega8 - ret geht manchmal nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
demo_spi_irq.c
initial step for SPI, 1=wait while SPI is running u8 tasten_scanner=0; SIGNAL ( SIG_SPI ) // SPI Transfer Completion Interrupt Service Routine { switch_ptr [ spi_irq_cnt ] = SPDR; /* read SPI I/O Data Register, bit= 0 => switch pressed */ spi_irq_cnt--; if (spi_irq_cnt != 0xFF) SPDR = led_ptr [ spi_irq_cnt
in „Seltsames SPI Verhalten (Mega88, RFM12)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
Befehl wurde gesendet*/ /* 000----- */ } /* 000----- */ } while ((SPI0SR & 0x80) == 0); /*warten bis Transfer beendet*/ temperatur= SPI0DR; PORTB = ~0xF0; /*KONTROLLE: Alle LEDs - leuchten Transfer beendet*/ /* 0000---- */ //wait(10000); PORTA|= 0x01; /* CS auf EINS setzen */ return temperatur; } void wait
in „HCS12 - SPI Schnittstelle programmieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Atmega32_SPI.txt
PINB3) | (1 << PINB2) | (1 << PINB1); //SPI-------------- SPCR = (1<<SPE)|(1<<MSTR); } void SPI_Transfer(uint8_t sendByte){ SPDR = sendByte; while(!(SPSR & (1 << SPIF))); // Warten bis Fertig gesendet } void send_tlc5941_pwm(uint16_t pwm_array[]) { uint8_t bit_count_in; // Zähler für Bits in den Eingangsdaten
in „AtMega 48 Timmer“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Neu_Textdokument.h
, buf_fifo, BLOCK, &bw); #endif//}// // lcd_streamwrite_px(buf_fifo,BLOCK);//22-3-394122 // DMA_transfer_SSP0x(0);//lcd tested ok restzeit=0; while(zl_href)restzeit++;//Anpassung Geschwindigkeit cmos zl_px=BLOCK; zl_href=ZEILEN; while(zl_px){//buffer-modus al422_readData_cyc(); buf_fifo[2*BLOCK-zl_px
in „DMA-Datentransfer OV7670 -> ARM-MCU“ · Mikrocontroller und Digitale Elektronik ·
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Datei
spi.c
atmega32 at page 133 //portdirection DDRB |= 0x40; //MISO -> output SPCR = 0xC0; //SPI enable } //SPI transfer complete ISR(SPI_STC_vect) { SPDR = 0x04; //return 0x04 to master PORTC = SPDR; //reading SPI-data } //main int main(void) { spi_sklave_init(); DDRC = 0xFF; //8Bit SPI-Dataframe from master on Port
in „SPI: Bidirektionale Datenübertragung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TWI.h
pTWI->TWI_CR = (1 << 1); //* Stopbefehl senden while((pTWI->TWI_SR & (1 << 0))==0); //* Warten bis Transfer abgeschlossen } __inline int AT91F_TWI_ReadData(AT91PS_TWI pTWI,char iaddr) { pTWI->TWI_IADR = iaddr; pTWI->TWI_CR = (1 << 0); //* Startbefehl senden while((pTWI->TWI_SR & (1 << 1))==0); //* Warten
in „TWI mit AT91SAM7S“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
MSP-FET430P140 Demo - DMA0, Rpt'd Blk to DAC0, Sine Output, TACCR1, DCO // // Description: DMA0 is used to transfer a sine look-up table word-by-word // as a repeating block to DAC12_0. The effect is sine wave output. Timer_A // operates in upmode with CCR1 loading DAC12_0 on rising edge and DAC12_OIFG // triggering next DMA0 transfer. DAC12_0 uses internal Vref. // ACLK= n/a, MCLK= SMCLK= TACLK= default DCO ~ 800kHz // //* MSP430F169 Device Required *// // // MSP430F169 // ----------------- // /|\| XIN|- // | | | // --|RST XOUT
in „Bitte, bitte helft mir: MSP430 DMA Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
display_dogxl.h
disp_set_page (uint8_t page); //goto page void dma_spi_tranfer(); //transfers vram content to spi (DMA-Transfer); void reset_dma(); uint8_t vram_transfer(); //graphic functions inline void clear_vram(); inline void SetPixel(uint8_t x, uint8_t y, uint8_t greyscale); uint8_t display_bitmap(uint8_t *data, uint8
in „PIC 32 EA DOG XL 160/7 Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
w5500_spi.c
--------------------------------------------------- //w5500 Chip Select void w5500_CS(int w5500_transfer) { if(w5500_transfer==1) P1OUT &= ~BIT1; else P1OUT |= BIT1; } //-END-------------------------------------------------------------------------- //-Function-----------------------------------------
in „Wiznet W5500 Datenübertragung via Ethernet“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
sp_driver.h" // Declare your global variables here volatile unsigned char usart_latest_error = USART_DATA_TRANSFER_SUCCEED; // Kommunikationspuffer volatile unsigned char usart_tx_buffer[USART_TX_BUFFER_SIZE]; volatile unsigned char usart_rx_buffer[USART_RX_BUFFER_SIZE]; volatile unsigned short usart_rx_data[USART_RX_BUFFER_SIZE
in „Jump zum Bootloader beim XMEGA“ · Mikrocontroller und Digitale Elektronik ·
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Datei
FT800_config.c
(void) { digitalWrite(FT_PDN, HIGH); // Power-Down high } void spi_transmit(uint8_t data) { SPI.transfer(data); } uint8_t spi_receive(uint8_t data) { return SPI.transfer(data); } uint8_t fetch_flash_byte(const uint8_t *data) { return(pgm_read_byte_near(data)); } #endif
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BF1009S_Appnote__INF.pdf
SCL is at a stable high level. This start condition must precede any command and initiate a data transfer onto the bus. Stop Condition (STO): A stop condition is defined by a low to high transition of the SDA while the SCL line is at a stable high level. This condition terminate the communication between
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PDF
AHT10_Aosong_en_draft_0c.pdf
previous one. figure. 13 and map 14 Triggered by the falling edge of the conversion. Figure 13 Start Transfer Status ( S ) - When SCL is high, SDA transitions from high to low. The start state is a special bus state controlled by the host, indicating theBit[2:0] Reserved Reserved start of the slave transfer
in „BMP280 + AHT10 auf dem gleichen I2C Bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BT-WiFi-52rf5541.pdf
A 10bits/12bits SAR ADC is integrated in BK2535. Total 8 channels can be selected used for ADC transfer. The ADC supports continue mode and single transfer mode, and the sample rate can be 1kHz to 32kHz. In single transfer mode, it will generate interrupt every time after transform. The input of ADC
in „JDY-40 ein neuer Geniestreich aus China?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sim18_module_osp_manual__cs-129291-dc-8__1_.pdf
Configuration Request O e n Hardware Configuration Response Hardware Configuration Response I t Time Transfer Request Time Transfer Request O Time Transfer Response Time Transfer Response I Frequency Transfer Request Frequency Transfer Request O Frequency Transfer Response Frequency Transfer Response I Approximate
in „Schlampiges GPS-Receiver Datenblatt (Maestro 2035-H)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
coLinux-APN1-d.pdf
Dateitransfer und Benutzerdialog. Durch das Embedded-Linux kann hierfür zum Beispiel FTP (File Transfer Protocol) oder TFTP (Trivial File Transfer Protocol) benutzt werden. Für den Dialog mit der Benutzeroberfläche (Shell) eines Embedded-Linux kommt Telnet zum Einsatz. Auf dem PC wird ein Telnet-Client
in „Starter-Kit für den ARM Einstieg“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TCST230.pdf
0, E = 0 ICEO 100 nA Coupler Parameter Test Conditions Type Symbol Min. Typ. Max. Unit Current transfer ratioV = 5 V, TCST1103, CTR 10 20 % CE F = 20 mA TCST2103 TCST1202, CTR 5 10 % TCST2202 TCST1300, CTR 1.25 2.5 % TCST2300 Collector current VCE = 5 V, TCST1103, C 2 4 mA F = 20 mA TCST2103 TCST1202
in „Gabel Lichtschranke“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CNY37_CNY36_VIS.pdf
0, E = 0 ICEO 100 nA Coupler Parameter Test Conditions Type Symbol Min. Typ. Max. Unit Current transfer ratioVCE = 5 V, TCST1103, CTR 10 20 % F = 20 mA TCST2103 TCST1202, CTR 5 10 % TCST2202 TCST1300, CTR 1.25 2.5 % TCST2300 Collector current V = 5 V, TCST1103, I 2 4 mA CE C F = 20 mA TCST2103 TCST1202
in „CNY37 - Gabellichtschranke“ · Mikrocontroller und Digitale Elektronik ·
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Datei
HD44780.INC
0x20 ;Variables used for initializing the LCD ; d1,d2,d3 ;Delay-routines ; Lcd_Data ;used for data transfer to LCD (ASCII-Code) ; Lcd_Control ;used for HD44780 instructions ; Lcd_Status ;used to copy the LCD-PORT, detecting busyflag ; ENDC ; ;LABELS and CONSTANTS in LCD_INIT.INC ; ; LCD_PORT Bit3:7 D4:D7
in „PIC LCD Ausgabe von Strings“ · Mikrocontroller und Digitale Elektronik ·
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Datei
HD44780.INC
0x20 ;Variables used for initializing the LCD ; d1,d2,d3 ;Delay-routines ; Lcd_Data ;used for data transfer to LCD (ASCII-Code) ; Lcd_Control ;used for HD44780 instructions ; Lcd_Status ;used to copy the LCD-PORT, detecting busyflag ; ENDC ; ;LABELS and CONSTANTS in LCD_INIT.INC (to declare in your ASM-File
in „Probleme mit LCD an PIC 16f887“ · Mikrocontroller und Digitale Elektronik ·
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PDF
epp.pdf
which may affect the operation of devices. This is further discussed latter. EPP has a typical transfer rate in the order of 500KB/S to 2MB/S. This is achieved by allowing the hardware contained in the port to generate handshaking, strobing etc, rather that have the software do it, which was the case
in „Parallele Schnittstelle“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HCF4069UB.pdf
ns 15 25 50 TLH, THL Transition Time 5 100 200 10 50 100 ns 15 40 80 Minimum and Maximum Voltage Transfer Charac- Typical Voltage Transfer Characteristics as a teristics. Function of Temperature. Typical Current and Voltage Transfer Charac- Typical Output Low (sink) Current Characteristics. teristics.
in „CD4049 in rauscharm, gibts das?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
USB.txt
(Endpoint Descriptor) bEndpointAddress : 0x81 (Direction=IN EndpointID=1) bmAttributes : 0x02 (TransferType=Bulk) wMaxPacketSize : 0x0040 (64 bytes) bInterval : 0x00 (ignored) ----------------- Endpoint Descriptor ----------------- bLength : 0x07 (7 bytes) bDescriptorType : 0x05 (Endpoint Descriptor) bEndpointAddress : 0x02 (Direction=OUT EndpointID=2) bmAttributes : 0x02 (TransferType=Bulk) wMaxPacketSize : 0x0040 (64 bytes) bInterval : 0x00 (ignored) ----------------- Device Qualifier Descriptor ----------------- Error : request skipped because low-speed device -----------
in „Suche ATMEL USB virtuellen COM Port Treiber AT mega“ · Mikrocontroller und Digitale Elektronik ·
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Datei
USB.txt
(Endpoint Descriptor) bEndpointAddress : 0x81 (Direction=IN EndpointID=1) bmAttributes : 0x02 (TransferType=Bulk) wMaxPacketSize : 0x0040 (64 bytes) bInterval : 0x00 (ignored) ----------------- Endpoint Descriptor ----------------- bLength : 0x07 (7 bytes) bDescriptorType : 0x05 (Endpoint Descriptor) bEndpointAddress : 0x02 (Direction=OUT EndpointID=2) bmAttributes : 0x02 (TransferType=Bulk) wMaxPacketSize : 0x0040 (64 bytes) bInterval : 0x00 (ignored) ----------------- Device Qualifier Descriptor ----------------- Error : request skipped because low-speed device -----------
in „Suche ATMEL USB virtuellen COM Port Treiber AT mega“ · Mikrocontroller und Digitale Elektronik ·
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Datei
UsbTreeView_report_mega2560__2_.txt
(Endpoint Descriptor) bEndpointAddress : 0x82 (Direction=IN EndpointID=2) bmAttributes : 0x03 (TransferType=Interrupt) wMaxPacketSize : 0x0008 (8 bytes) bInterval : 0xFF (255 ms) Data (HexDump) : 07 05 82 03 08 00 FF ....... ---------------- Interface Descriptor ----------------- bLength : 0x09 (9 bytes
in „FT232 ähnliches USB mit atmega32u4 unter C“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sp2_zynq_wrapper.h
MST_BRST_MASK : user logic master burst assertion control * -- MST_DONE_MASK : user logic master transfer done status * -- MST_BSY_MASK : user logic master busy status * -- MST_BRRD : user logic master burst read request * -- MST_BRWR : user logic master burst write request * -- MST_SGRD : user logic
in „ZYNQ: AXI Lite Master Periph um in den DRAM zu schreiben“ · FPGA, VHDL & Co. ·
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Datei
audio.c
uint8_t value) { while (I2C1 ->SR2 & I2C_SR2_BUSY ) ; I2C1 ->CR1 |= I2C_CR1_START; // Start the transfer sequence. while (!(I2C1 ->SR1 & I2C_SR1_SB )) ; // Wait for start bit. I2C1 ->DR = 0x94; while (!(I2C1 ->SR1 & I2C_SR1_ADDR )) ; // Wait for master transmitter mode. I2C1 ->SR2; I2C1 ->DR = address
in „STM32F4Discovery Audio "Störgeräusche"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Programmer_Manual.pdf
Use the DATa:STARt and DATa:STOP commands to specify the portion of the waveform that you want to transfer. 5. Use the WFMPRe? command to transfer waveform preamble information. 6. Use the CURVe? command to transfer waveform data. TDS200, TDS1000/2000, TDS1000B/2000B, TPS2000 Programmer 2-43 Command Groups
in „Tektronix über R232 auslesen ABER FFT und nicht Waveform“ · Mikrocontroller und Digitale Elektronik ·
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Datei
proggy.asm
für Timer 1 Overflow rjmp UnusedInt_ISR ;Routine für Timer 0 Overflow rjmp UnusedInt_ISR ;SPI - Transfer beendet rjmp UART_RxC ;UART: Byte empfangen rjmp UART_DRE ;UART: Datenregister leer rjmp UnusedInt_ISR ;UART: Transfer beendet rjmp UnusedInt_ISR ;Analog-Komperator UnusedInt_ISR: reti ;**********
in „Problem mit Speicherung einer Sms auf den UC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lsusb.txt
0 Endpoint Descriptor: bLength 7 bDescriptorType 5 bEndpointAddress 0x81 EP 1 IN bmAttributes 2 Transfer Type Bulk Synch Type None Usage Type Data wMaxPacketSize 0x0400 1x 1024 bytes bInterval 0 bMaxBurst 15 Endpoint Descriptor: bLength 7 bDescriptorType 5 bEndpointAddress 0x02 EP 2 OUT bmAttributes 2 Transfer Type Bulk Synch Type None Usage Type Data wMaxPacketSize 0x0400 1x 1024 bytes bInterval 0 bMaxBurst 15 Binary Object Store Descriptor: bLength 5 bDescriptorType 15 wTotalLength 42 bNumDeviceCaps 3
in „Externe Festplatte: Linux nicht erkannt, Windows problemlos“ · PC Hard- und Software ·
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Datei
ADXL345_Achsenauslesen.ino
Bit 14=0 (Einzelbyte) uint16_t command = ((address << 8) | value); digitalWrite(CS_PIN, LOW); SPI.transfer16(command); digitalWrite(CS_PIN, HIGH); } //Register read uint16_t readRegister(uint8_t registerAddress){ //Erstes Byte = Read/Write (Bit 15) + mehrere Bytes (Bit 14) + Adresse (Bit 13-8) + Daten
in „ADXL380 mit SPI auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
M41T94.pdf
4. Century/Hours Register The E input is used to initiate and terminate a data 5. Day Register transfer. The SCL input is used to synchronize data transfer between the master (micro) and the 6. Date Register slave (M41T94) devices. 7. Month Register The SCL input, which is generated by the micro- 8.
in „ST M41T94 SPI Timing“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MFprot_LP.PDF
D D D D D (D = MS byte of integer to subtract) Acknowledge: 1 F F F F F F X (F = Status flags) Transfer Value (only operates on Value Data Structure) Command to transfer (copy) Value Data Structure. The command loads the value from the specified block address and then stores the result at the same or
in „Spannung/Strom glätten für RFID-Leser“ · Mikrocontroller und Digitale Elektronik ·
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PDF
24fc256.pdf
data transfer, SDA is allowed to change only during SCL low. Changes during SCL high are reserved for indicating the Start and Stop conditions. 1998-2022MicrochipTechnologyInc.anditssubsidiaries DS20001203Y-page
in „Wodtke HP-S5 HP Er3 EEPROM Schreib-/Lesefehler“ · Haus & Smart Home ·
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PDF
PCF8574_4.pdf
PINNING 5.1 DIP16 and SO16 packages 5.2 SSOP20 package 6 CHARACTERISTICS OF THE I C-BUS 6.1 Bit transfer 6.2 Start and stop conditions 6.3 System configuration 6.4 Acknowledge 7 FUNCTIONAL DESCRIPTION 7.1 Addressing 7.2 Interrupt output 7.3 Quasi-bidirectional I/Os 8 LIMITING VALUES 9 HANDLING 10 DC
in „PCF8574 Routine in C“ · Mikrocontroller und Digitale Elektronik ·