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Bild
Bode-Diagramm einer Frequenzgangmessung
Ymax 2 dB, Ymin -3 dB, Format Gain, Phase (°), Unwrap phase, 30°, Trace 1: Gain Magnitude (dB), Trace 2: Gain Phase (°), 10k, 100k, 1M, 10M, R&S R1, R&S N, R&S T3
in „Netznachbildung / LISN Prüfen mit Spektrum Analyser“ · HF, Funk und Felder · · Screenshots
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Software zur Datenübertragung eines Rigol Oszilloskops
Transfer Rigol — Rigol DS1000D / DS1000E Series Detected USB Devices: 0001 Refresh Close Show Help Install Driver (64 bit) Rigol Only Reset Clear Auto Run Stop Single Force Trigger Serie: Rigol DS1000D / DS1000E
in „Neue Open Source Software macht aus deinem Oszilloskop einen Logik Analysator“ · PC Hard- und Software · · Screenshots
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Datei
FileTransfer.c
/*--[ FileTransfer.c ]--------------------------------------------------------- Author DM DATE 4-4-03 Modified CS DATE 8-25-03 Modified PKC DATE 1-24-06 (changed 'F320.h to 'F340.h) Modified PKC DATE 10-11-06 (changed
in „Puffer-Problem mit C8051F320 (8051)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
WireTransfer.pdf
FREEPHONE 0800-1-800-125 Tel:218-681-6674 FAX +31-53-484-9583 de.digikey.com 701 Brooks Ave. South, ThieRiver Falls, MN 56701 Überweisung in Euro für die Dresdner Bank AG Überweisung nur für Bestellungen/Rechnungen in Euro Bitte beachten Sie folgende Anweisungen bei der Überweisung von Euro an die Digi-Key Corporation. Die folgenden Angaben müssen in Ihrer Überweisung enthalten sein. Falls Sie eine Bezahlung in US-Dollar wünschen, kontaktieren Sie uns bitte für nähere Informationen. Bank: Dresdner Bank AG Frankfurt am Main D-60613 Frankfurt Deutschland IBAN: DE15 500 800 00 0975110500 Swift Code: DRES
in „Bestellung bei Digikex / Mouser für "Dummies"“ · Markt ·
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PDF
WireTransfer.pdf
FREEPHONE 0800-1-800-125 Tel:218-681-6674 FAX +31-53-484-9583 de.digikey.com 701 Brooks Ave. South, ThieRiver Falls, MN 56701 Überweisung in Euro für die Dresdner Bank AG Überweisung nur für Bestellungen/Rechnungen in Euro Bitte beachten Sie folgende Anweisungen bei der Überweisung von Euro an die Digi-Key Corporation. Die folgenden Angaben müssen in Ihrer Überweisung enthalten sein. Falls Sie eine Bezahlung in US-Dollar wünschen, kontaktieren Sie uns bitte für nähere Informationen. Bank: Dresdner Bank AG Frankfurt am Main D-60613 Frankfurt Deutschland IBAN: DE15 500 800 00 0975110500 Swift Code: DRES
in „Digikey Privatbestellung“ · Markt ·
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Bild
Streudiagramm mit zwei Datenwolken
denom num
in „PWM-Steller und DC-Motorparameter“ · Analoge Elektronik und Schaltungstechnik · · Diagramme
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Datei
uart-fat-transfer.c
// Die Daten nach und nach aus einem UART-Ringpuffer abholen uint32_t position = 0; uint8_t* cache = malloc(512); if (!cache) { uart_puts_p(PSTR("Arbeitsspeicher voll\n")); return 0; } uart_puts_p(PSTR("Binaere Daten JETZT senden\n\n")); while (position < length) { // Warten bis der Puffer gefüllt ist uint16_t limit; if (length-position < sizeof(cache)) limit = length-position; else limit = sizeof(cache); for (uint16_t x=0; x<limit; x++) { uart_rb_waitfordata(); cache[x] = uart_rb_rx_read(); // Darstellen des Fortschritts if (position%128==0) { uart_puts_p(PSTR(" ")); uart_putw_dec((position*100
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Datei
transfer_position_deutsch.c
usart_buffer_size; ++i) usart0_rx_buffer[i] = usart0_rx_buffer[i + 1]; } } /* Interruptsfunktion für das Transfer von Byte über USART1 */ ISR(USART1_TX_vect) { char data = UDR1; if (usart_buffer_size < usart_buffer_max_size) { usart1_tx_buffer[usart_buffer_size] = data; ++usart_buffer_size; } } /* Transfer est
in „Empfangen und Übertragung von Daten über USART“ · Mikrocontroller und Digitale Elektronik ·
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PDF
toner_transfer_test.pdf
toner_transfer_test.pdf
in „Aufruf: Drucker/Toner-Vergleich für Toner-Transfer“ · Platinen ·
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Datei
MSP_VOL2.ASM
ldi i2cdata,$10 ; STATUS-REGISTER rcall i2c_do_transfer ldi i2cdata,$00 ; HIGH rcall i2c_do_transfer ldi i2cdata,$BB ; LOW rcall i2c_do_transfer ldi i2cdata,$05 ; CONTROL-HIGH rcall i2c_do_transfer ldi i2cdata,$D0 ; CONTROL-LOW rcall i2c_do_transfer rcall
in „Mein MSP3400 und mein MSP3410 wollen nicht funktionieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Volume2.asm
word address rcall i2c_do_transfer ; Execute transfer mov i2cdata,r26 ; Set write data rcall i2c_do_transfer ; Execute transfer rcall i2c_stop ; Send stop condition rcall Warte ldi i2cadr,$80+i2cwr ; Set device address and write rcall
in „AVR300.asm + EEPROM = Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
OLED_Test.ino
library // charge-pump voltage measured: 8,1V #if 0 digitalWrite(DC, LOW); // write commands SPI.transfer(0xa8); // set mux-ratio SPI.transfer(0x3f); // set mux-ratio SPI.transfer(0x8d); // charge-pump command SPI.transfer(0x14); // turns on the charge-pump SPI.transfer(0x20); // sets up memory-mode SPI.transfer
in „SH1106 Init-Sequenz“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lwip_speed.txt
: Transfer speed (send) was 81.63 KByte/s Socket_SendTo_Udp: Testing Send with data length 64 Socket_SendTo_Udp: Transfer speed (send) was 160.00 KByte/s Socket_SendTo_Udp: Testing Send with data length 128
in „Datenrate STM32F107 HAL + Lwip“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dmesg_vorher.txt
usb-storage: Bulk Command S 0x43425355 T 0x7 L 0 F 0 Trg 0 LUN 0 CL 6 usb-storage: usb_stor_bulk_transfer_buf: xfer 31 bytes usb-storage: Status code 0; transferred 31/31 usb-storage: -- transfer complete usb-storage: Bulk command transfer result=0 usb-storage: Attempting to get CSW... usb-storage: usb_stor_bulk_transfer_buf
in „GNUBLIN www.gnublin.org“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Self_ADC.asm
i2c_start ; Send start condition and address ldi i2cdata, 0x08 ; Write word address rcall i2c_do_transfer ; Execute transfer ldi i2cdata, 0xEE ; Set write data rcall i2c_do_transfer ; Execute transfer rcall i2c_stop ; Send stop condition nop ldi i2cadr, 0x80 ; Set device address and write rcall i2c_start ; Send start condition and address ldi i2cdata, 0x08 ; Write word address rcall i2c_do_transfer ; Execute transfer ldi i2cdata, 0xCE ; Set write data rcall i2c_do_transfer ; Execute transfer rcall i2c_stop ; Send stop condition ldi switch_a, 0xCE ldi i2cadr, 0x80 ; Set device address and write
in „Mein altes Programm will nicht mehr“ · Mikrocontroller und Digitale Elektronik ·
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Datei
prog.asm
ldi data, 0x01 ; memory rcall transfer ; #3 rcall transfer ; #4 rcall transmit ldi data, 0x30 rcall transfer ; #1 ldi data, 0x00 rcall transfer ; #2 ldi data, 0x00 ; manufacturer (should be $1E for Atmel) rcall transfer ; #3 rcall transfer
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Datei
dmesg_nachher.txt
usb-storage: Bulk Command S 0x43425355 T 0x9 L 18 F 128 Trg 0 LUN 0 CL 6 usb-storage: usb_stor_bulk_transfer_buf: xfer 31 bytes usb-storage: Status code 0; transferred 31/31 usb-storage: -- transfer complete usb-storage: Bulk command transfer result=0 usb-storage: usb_stor_bulk_transfer_sglist: xfer 18 bytes
in „GNUBLIN www.gnublin.org“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Futaba-VFD.asm
rcall Transfer ldi tmpdat, 0b01001101 ;1-M rcall Transfer ldi tmpdat, 0b01101001 ;2-i rcall Transfer ldi tmpdat, 0b01101011 ;3-k rcall Transfer ldi tmpdat, 0b01110010 ;4-r rcall Transfer ldi tmpdat, 0b01101111 ;
in „FUTABA Chip in Glass (CIG) VFDisplays“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR1304_Using_the_XMEGA_DMA_Controller.pdf
and burst mode. 2.3 Block Transfer and Repeat Mode The concept of a Block Transfer in this context refers to the operation of performing all data transfers necessary to transfer the number of bytes given by the block size. The block
in „Wie funktioniert der DMA am Xmega“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Fehler-Log.txt
12 01 00 02 00 00 00 40 0c 09 00 10 00 10 01 02 03 01 <\r><\n> ERROR: In ControlTransfer at Line 469 - rc = 5<\r><\n> ERROR: In enumerateDevice at Line 334 - c = 0 rc = 5<\r><\n> Ein USB-Geraet an den USB-Port stecken.<\r><\n> ERROR: In ControlTransfer at Line 469 - rc = 5<\r><\n> ERROR
in „USB-Host LPC1769“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MSD.txt
) TransferFlags: 0x00000000 TransferBuffer: 0x0000001f (31) length 0000: 00 00 00 00 00 00 00 ff 24 00 00 00 80 00 06 12 0010: 00 00 00 24 00 00 00 00 00 00 00 00 00 00 00 11 ??? up n/a 0.081 BULK_OR_INTERRUPT_TRANSFER - 0x00000000 URB Header (length: 72) SequenceNumber: 11 Function: 0009 (BULK_OR_INTERRUPT_TRANSFER) TransferFlags: 0x00000000 No TransferBuffer 12 ??? down n/a 0.081 BULK_OR_INTERRUPT_TRANSFER 00 00 00 00 00 00 00 00 URB Header (length: 72) SequenceNumber: 12 Function: 0009 (BULK_OR_INTERRUPT_TRANSFER
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Datei
spi_mem_drv.c
serial memory spi_transfer(READ); //transmitt the op_code READ #ifndef EEPROM_TYPE spi_transfer((char)(address>>16)); // Address phase is 3 byte long for SPI flashes #endif spi_transfer((char)(address>>8)); //send MSByte address
in „Grafikfähiger LCD Controller für 320x240 LCD mit 4 Graustufen“ · Projekte & Code ·
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Datei
eve1.cpp
>> 8); SPI.transfer(address); SPI.transfer(data); SPI.transfer(data >> 8); SPI.transfer(data >> 16); SPI.transfer(data >> 24); SPI.setSS(HIGH); } unsigned char rd8(unsigned long address) { unsigned char data = 0; SPI.setSS
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Datei
Programm.txt
MSBFIRST); // deklariert Bitreihenfolge SPI.setDataMode(SPI_MODE1); // digitalWrite(CS,LOW); SPI.transfer(0x40 | 0x00); // MUX0 SPI.transfer(0x00); SPI.transfer(B00000001); // AIN0 und AIN1 SPI.transfer(0x40 | 0x01); // VBIAS deaktiviert SPI.transfer(0x00); SPI.transfer(B00000001); // VBIAS on AIN0 SPI.transfer
in „50/60 Hz Unterdrückung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
VTX.asm
ldi i2cadr,34 rcall i2c_start ldi i2cdata,2 rcall i2c_do_transfer mov i2cdata,PRA rcall i2c_do_transfer rcall i2c_stop rcall WARTE ldi i2cadr,34 rcall i2c_start ldi i2cdata,3 rcall i2c_do_transfer mov i2cdata,PRD rcall i2c_do_transfer rcall i2c_stop rcall WARTE ldi i2cadr,34 rcall i2c_start ldi i2cdata,4 rcall i2c_do_transfer mov i2cdata,DISPLAY rcall i2c_do_transfer rcall i2c_stop rcall WARTE ldi i2cadr,34 rcall i2c_start ldi i2cdata,5 rcall i2c_do_transfer mov i2cdata,DISCTRL rcall i2c_do_transfer rcall i2c_stop rcall
in „OSD mit MC1377P und SAA5281P läuft durch“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32_eval_sdio_sd.c
SDTransferState: Data Transfer state. * This value can be: * - SD_TRANSFER_OK: No data transfer is acting * - SD_TRANSFER_BUSY: Data transfer is acting */ SDTransferState SD_GetStatus(void) { SDCardState cardstate = SD_CARD_TRANSFER
in „STM3210E EVAL SD-Controller SDIO + HiTOP“ · Mikrocontroller und Digitale Elektronik ·
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Datei
CS5524_Skeletton_V2.ino
0b11111111; PORTD &= ~(1 << PD4); //CS5524 Chip-select auf low for(int i = 1; i <= 15; i++) { spi_transfer(data); } data = 0b11111110; spi_transfer(0xFE); data = 0b00000011; spi_transfer(0x03); data = 0b00100000; spi_transfer(0x20); data = 0b00000000; for(int i = 1; i <= 3; i++) { spi_transfer(data); }
in „ADC CS5524 mit Atmega328“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f4_sdio_sd.c
SD_GetStatus(void) { SDCardState cardstate = SD_CARD_TRANSFER; cardstate = SD_GetState(); if (cardstate == SD_CARD_TRANSFER) { return(SD_TRANSFER_OK); } else if(cardstate == SD_CARD_ERROR) { return (SD_TRANSFER_ERROR); } else { return(SD_TRANSFER_BUSY); } }
in „Probleme bei SDIO mit STM32F4“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dma.c
channels[0].data; dma1_channels[0].data = (dma_channel_data_t*) 0; if(error) { if(channel_data->transfer_error) channel_data->transfer_error(0); } else { if(channel_data->transfer_ends) channel_data->transfer_ends(0); } } #endif //DMA1_CHANNELS > 0 #if DMA1_CHANNELS > 1 void DMA1_Channel2_IRQHandler(
in „STM32L1xx DMA+SPI: 2 Bugs“ · Mikrocontroller und Digitale Elektronik ·
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Datei
r5f2136cy.inc
----------------------------- ; DTC Transfer Vector Area 11 (Uart0 Transfer) ;------------------------------------------------------------------------------------ .equ DTCVCT11 , 0x2C0B ;------------------------------------------------------
in „Universelle Mikrocontroller Toolchain (Linux)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
t1.pdf
transfer Vn1 → Vn3 ControlSystemsBase.TransferFunction{ControlSystemsBase.Continuous, ControlSystemsBase.SisoRational{Float64}} 6749.174234249629s + 3.1045092202401855e10 ------------------------------------------------------ 1.0s^2 + 3.3249567489219275e6s + 1.0841948327616016e12 Continuous-time transfer function model ControlSystemsBase.TransferFunction{ControlSystemsBase.Discrete{Float64}, ControlSystemsBase.SisoRational{Float64}} 0.00494503188189118z --------------------------------------------
in „Unterschiede LTspice - Octave“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
H83003H.PDF
DTS2A DTS1A DTS0A Initial value 0 0 0 0 0 0 0 0 Read/Write R/W R/W R/W R/W R/W R/W R/W R/W Data transfer enable Data transfer Enables or disables select 0A data transfer Selects block Data transfer transfer mode Data transfer size interrupt enable Selects byte or Enables or disables the word size CPU
in „H8/300 Frage (genauer H8/3003)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
HvspFuseRestore.c
); transferByte(0x00, 0x64); transferByte(0x00, 0x6C); pollSDO(); transferByte(0x00, 0x4C); pollSDO(); } static void writeFuseHighBits(uint8_t code) { transferByte(0x40, 0x4C); transferByte(code, 0x2C); transferByte
in „ATtiny13 und STK200 über PonyProg2000 flashen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
i2c_functions_efm32.txt
defining the I2C transfer to take place. The * referenced structure must exist until the transfer has fully completed. ******************************************************************************/ I2C_TransferReturn_TypeDef I2CDRV_Transfer(I2C_TransferSeq_TypeDef *seq) { I2C_TransferReturn_TypeDef ret; /* Do a polled transfer */ ret = I2C_TransferInit(I2C0, seq); while (ret == i2cTransferInProgress) { ret = I2C_Transfer(I2C0); } return
in „i2c energy micro EFM32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HCL-ATA_host_controller.pdf
Figure 2 gives the skeletal view of ATA HOST controller. The PVCI controller controls the data transfer through PVCI bus to the ATA device and to the internal IP Core registers. FIFO interface of the core provides DMA data transfer from and to the DATA in and Data out FIFO. In DMA data in transfer,
in „Belohnung: Wer macht mit bei meinem Projekt?“ · FPGA, VHDL & Co. ·
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Datei
USB_descr_1.txt
bInterfaceSubClass: ff bInterfaceProtocol: ff iInterface: 0 Endpoint Descriptors: bEndpointAddress: 1 Transfer Type: Bulk wMaxPacketSize: 40 bInterval: 0 Endpoint Descriptors: bEndpointAddress: 81 Transfer Type: Bulk wMaxPacketSize: 40 bInterval: 0 Endpoint Descriptors: bEndpointAddress: 2 Transfer Type: Bulk wMaxPacketSize: 40 bInterval: 0 Endpoint Descriptors: bEndpointAddress: 4 Transfer Type: Bulk wMaxPacketSize: 40 bInterval: 0 Endpoint Descriptors: bEndpointAddress: 86 Transfer Type: Bulk wMaxPacketSize: 40 bInterval: 0 Endpoint Descriptors: bEndpointAddress: 88 Transfer Type:
in „USB - Gerät von unbekanntem Hersteller: Wie an weitere Informationen kommen?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
tda_MEGA.asm
Warte mov i2cadr,tda6610 rcall i2c_start ldi i2cdata,$05 rcall i2c_do_transfer mov i2cdata,bass rcall i2c_do_transfer rcall i2c_stop rcall Warte mov i2cadr,tda6610 rcall i2c_start ldi i2cdata,$00 rcall i2c_do_transfer mov i2cdata,decsw rcall i2c_do_transfer rcall i2c_stop rcall Warte mov i2cadr,tda6610 rcall i2c_start ldi i2cdata,$07 rcall i2c_do_transfer mov i2cdata,sw rcall i2c_do_transfer rcall i2c_stop rcall Warte mov i2cadr,sda2516 rcall i2c_start ldi i2cdata,$00 rcall i2c_do_transfer mov i2cdata,vol rcall i2c_do_transfer rcall i2c_stop rcall
in „Wie schaltet man beim ATMEGA32 den I²C-Bus frei?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
OLED_Test.ino
library // charge-pump voltage measured: 8,1V #if 0 digitalWrite(DC, LOW); // write commands SPI.transfer(0xa8); // set mux-ratio SPI.transfer(0x3f); // set mux-ratio SPI.transfer(0x8d); // charge-pump command SPI.transfer(0x14); // turns on the charge-pump SPI.transfer(0x20); // sets up memory-mode SPI.transfer
in „SH1106 Init-Sequenz“ · Mikrocontroller und Digitale Elektronik ·
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Datei
pluggin_in.html
<TD WIDTH=50% BGCOLOR="#D3E5FA"> <P ALIGN=CENTER><FONT FACE="Arial, sans-serif"><FONT SIZE=3><B>TransferFlags </B></FONT></FONT></P> </TD> <TD WIDTH=50% BGCOLOR="#D3E5FA"> <P ALIGN=CENTER><FONT FACE="Arial, sans-serif"><FONT SIZE=3>0x2 ( USBD_TRANSFER_DIRECTION_OUT USBD_SHORT_TRANSFER_OK ) </FONT></FONT
in „USB Device Stack + mmc_lib + fat_lib?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
spiTransferByte(0x00); spiTransferByte(0x00); spiTransferByte(Pixels); spiTransferByte(0x00); LATCH_SELECT_PORT |= _BV(CS_LEDS); LATCH_SELECT_PORT &= ~_BV(CS_LEDS); #endif } */ /******************************
in „Unöffentliche Hilfe bei meinem Programm“ · Mikrocontroller und Digitale Elektronik ·
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PDF
gpdma.pdf
.( single and burst request lines, there’s an acknowledge signal from the DMA.nd a last-request Transfer width is the data width used to transfer a single data item from source or to destination. (byte), 16 bits (half-word) or 32 bits (word).fer widths. You can choose transfer width to be 8 bits transfer
in „AT91SAM7SXX und TWI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
JLX12864G-378.pdf
initial_lcd() { lcd_cs1=0; Rom_CS = 1; lcd_reset=0; /*低电平复位*/ delay(20); lcd_reset=1; /*复位完毕*/ delay(20); transfer_command_lcd(0xe2); /*软复位*/ delay(5); transfer_command_lcd(0x2c); /*升压步聚 1*/ delay(5); transfer_command_lcd(0x2e); /*升压步聚 2*/ delay(5); transfer_command_lcd(0x2f); /*升压步聚 3*/ delay(5); transfer_command_lcd(0x25); /*粗调对比度,可设置范围 0x20~0x27*/ transfer_command_lcd(0x81); /*微调对比度*/ transfer_command_lcd(0x1f); /*0x1a,微调对比度的值,可设置范围 0x00~0x3f*/ transfer_command_lcd(0xa2); /*1/9 偏压比(bias)*/ transfer_command_lcd(0xc8); /*行扫描顺序:从上到下*/ transfer_command_lcd
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Datei
W5500_SPI.c
*******************************/ { uint8_t rd_val; W5500_CS_low(); // CS=0, SPI start W5500_SPI_transfer ( (uint8_t)(addr >> 16) ); W5500_SPI_transfer ( (uint8_t)(addr >> 8) ); W5500_SPI_transfer ( ((uint8_t)addr) | OPMODE_SINGLE_READ); rd_val = W5500_SPI_transfer (0); W5500_CS_high(); // CS=1, SPI end
in „Wiznet W5500 Datenübertragung via Ethernet“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ledcontroller.c
(1000); //8x Blau SPI_Transfer_RGB_Byte(0x11, 0x11, 0x11, 0x11); delay_ms(1000); //8x Rot/Grün = Gelb SPI_Transfer_RGB_Byte(0x66, 0x66, 0x66, 0x66); delay_ms(1000); //8x Rot/blau = Magenta SPI_Transfer_RGB_Byte(0x55, 0x55, 0x55
in „RGB LED Treiber“ · Mikrocontroller und Digitale Elektronik ·
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Datei
realtek.txt
4 Endpoint Descriptor: bLength 7 bDescriptorType 5 bEndpointAddress 0x81 EP 1 IN bmAttributes 3 Transfer Type Interrupt Synch Type None Usage Type Data wMaxPacketSize 0x0010 1x 16 bytes bInterval 4 Endpoint Descriptor: bLength 7 bDescriptorType 5 bEndpointAddress 0x02 EP 2 OUT bmAttributes 2 Transfer
in „Rezension: Odys My Book 14 unter Ubuntu“ · PC Hard- und Software ·
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Datei
libMPSSE_spi.h
0x00000000 /* transferOptions-Bit0: If this bit is 1 then it means that the transfer size provided is in bytes */ #define SPI_TRANSFER_OPTIONS_SIZE_IN_BITS 0x00000001 /* transferOptions-Bit1: if BIT1 is 1 then CHIP_SELECT line will be enables at start of transfer */ #define SPI_TRANSFER_OPTIONS_CHIPSELECT_ENABLE 0x00000002 /* transferOptions-Bit2: if BIT2 is 1 then CHIP_SELECT line will be disabled at end of transfer */ #define SPI_TRANSFER_OPTIONS_CHIPSELECT_DISABLE
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Datei
EZUSB.pas
IOCTL_BinTerm_SETINTERFACE = $00222040; Const IOCTL_BinTerm_GET_STRING_DESCRIPTOR = $00222044; // Perform an IN transfer over the specified bulk or interrupt pipe. // // lpInBuffer: BULK_TRANSFER_CONTROL stucture specifying the pipe number to read from // nInBufferSize: sizeof(BULK_TRANSFER_CONTROL) // lpOutBuffer:
in „Einteilung von data, pdata, xdata, code?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sh7020.pdf
Instructions Classifi- Operation Number of cation Types Code Function Instructions Data 5 MOV Data transfer, immediate data transfer,39 transfer peripheral module data transfer, structure data transfer MOVA Effective address transfer MOVT T bit transfer SWAP Swap of upper and lower bytes XTRCT Extraction
in „welche GPS-Maus ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
64F3048F16-Hitachi.pdf
DTIE DTS2 DTS1 DTS0 Initial value 0 0 0 0 0 0 0 0 Read/Write R/W R/W R/W R/W R/W R/W R/W R/W Data transfer enable Data transfer select Enables or disables These bits select the data data transfer transfer activation source Data transfer size Data transfer interrupt enable Selects byte or Enables or disables
in „CPU Melkanlage auslesbar? 64F3059F16“ · Mikrocontroller und Digitale Elektronik ·
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Datei
eve.cpp
(5); SPI.transfer(address >> 16 | 0x80); SPI.transfer(address >> 8); SPI.transfer(address); SPI.transfer(data); SPI.transfer(data >> 8); SPI.setSS(HIGH); } void wr32(unsigned long address, unsigned long data) { SPI.setSS(LOW); delayMicroseconds(5); SPI.transfer(address >> 16 | 0x80); SPI.transfer(address >> 8); SPI.transfer(address); SPI.transfer(data); SPI.transfer(data >> 8); SPI.transfer(data >> 16); SPI.transfer(data >> 24); SPI.setSS(HIGH); } unsigned