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PDF
I_C-Slave_1200_AN_302.pdf
1. START and STOP Conditions SDA SCL START STOP CONDITION CONDITION Rev. 0951B–AVR–05/02 1 Data transfer is always initiated by a Bus Master device. A high to low transition on the SDA line while SCL is high is defined to be a START condition (or a repeated start con- dition). A START condition is always
in „2 AVRs über I2C verbinden?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
I_C-Slave_1200_AN_302.pdf
1. START and STOP Conditions SDA SCL START STOP CONDITION CONDITION Rev. 0951B–AVR–05/02 1 Data transfer is always initiated by a Bus Master device. A high to low transition on the SDA line while SCL is high is defined to be a START condition (or a repeated start con- dition). A START condition is always
in „I2C Slave für AT90S2313“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd_test2.c
; // Memory Write lcdCommand(0x2C); for (uint32_t i = 0; i < LCD_WIDTH * LCD_HEIGHT; i++) { SPI.transfer(color << 8); SPI.transfer(color & 0xFF); } } void lcdInit(char v) { if(v==1){ Serial2.println("Variante 1"); lcdCommand(0xFF); lcdData(0xA5); delay(150); lcdCommand(0xFF); lcdData(0xA5); delay(120
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PDF
LTV-356T.pdf
6 — — V IE=10A, F =0 Breakdown Voltage Collector Current C 2.5 — 30 mA IF=5mA VCE5V 1. Current Transfer Ratio CTR 50 — 600 % Collector-Emitter IF=20mA VCE(sat) — — 0.2 V Saturation Voltage IC=1mA TRANSFER 10 11 DC500V, Isolation Resistance Riso 510 110 — CHARACTERISTICS 40 ~ 60% R.H. Floating Capacitance
in „1500V 8A mit MOSFET schalten“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
AT91SAM7S256.h
((unsigned int) 0x1 << 0) // (PDC) Receiver Transfer Enable #define AT91C_PDC_RXTDIS ((unsigned int) 0x1 << 1) // (PDC) Receiver Transfer Disable #define AT91C_PDC_TXTEN ((unsigned int) 0x1 << 8) // (PDC) Transmitter Transfer Enable #define AT91C_PDC_TXTDIS
in „C Datein werden in Eclipse nicht kompiliert“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AT91SAM7S256.h
((unsigned int) 0x1 << 0) // (PDC) Receiver Transfer Enable #define AT91C_PDC_RXTDIS ((unsigned int) 0x1 << 1) // (PDC) Receiver Transfer Disable #define AT91C_PDC_TXTEN ((unsigned int) 0x1 << 8) // (PDC) Transmitter Transfer Enable #define AT91C_PDC_TXTDIS
in „AT91SAM7S256 Timer Counter PWM“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AT91SAM7.h
((unsigned int) 0x1 << 0) // (PDC) Receiver Transfer Enable #define AT91C_PDC_RXTDIS ((unsigned int) 0x1 << 1) // (PDC) Receiver Transfer Disable #define AT91C_PDC_TXTEN ((unsigned int) 0x1 << 8) // (PDC) Transmitter Transfer Enable #define AT91C_PDC_TXTDIS
in „arm-elf-ld problem, undefined reference to `__gccmain'“ · µC & Digital Electronics ·
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Datei
AT91SAM7S64.h
((unsigned int) 0x1 << 0) // (PDC) Receiver Transfer Enable #define AT91C_PDC_RXTDIS ((unsigned int) 0x1 << 1) // (PDC) Receiver Transfer Disable #define AT91C_PDC_TXTEN ((unsigned int) 0x1 << 8) // (PDC) Transmitter Transfer Enable #define AT91C_PDC_TXTDIS
in „arm-elf-ld problem, undefined reference to `__gccmain'“ · µC & Digital Electronics ·
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PDF
DS1339.pdf
must leave the data line HIGH to enable the master to generate the STOP condition. Figure 8. Data Transfer on I C Serial Bus Depending upon the state of the R/ W bit, two types of data transfer are possible: 1) Data transfer from a master transmitter to a slave receiver. The first byte transmitted by the
in „Sehr lange Zeitspannen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
JLX12864G-086.pdf
模块初始化*/ void initial_lcd() { cs1=0; reset=0; /*低电平复位*/ delay(100); reset=1; /*复位完毕*/ delay(20); transfer_command(0xe2); /*软复位*/ delay(5); transfer_command(0x2c); /*升压步聚 1*/ delay(5); transfer_command(0x2e); /*升压步聚 2*/ delay(5); transfer_command(0x2f); /*升压步聚 3*/ delay(5); transfer_command(0x23); /*粗调对比度,可设置范围 0x20~0x27*/ transfer_command(0x81); /*微调对比度*/ transfer_command(0x28); /*0x1a,微调对比度的值,可设置范围 0x00~0x3f*/ transfer_command(0xa2); /*1/9 偏压比(bias)*/ transfer_command(0xc8); /*行扫描顺序:从上到下*/ transfer_command(0xa0); /*列扫描顺序:从左到右
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PDF
cd00004444-understanding-and-minimising-adc-conversion-errors-stmicroelectronics.pdf
output the digital code 00h for -5V, 80h for 0V and FFh for +5V. Figure 13. Bipolar and Unipolar ADC transfer curves Digital Digital output FFh FFh Output 80h Analog Input 00h 00h Analog Bipolar ADC Unipolar ADC Input transfer curve transfer curve 3.6 HARDWARE AVERAGING To improve ADC accuracy, you can perform
in „12bit AnalogDigitalWandler“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
USI_TWI_Master.c
define F_CPU F_OSC #include <util/delay.h> #include "USI_TWI_Master.h" unsigned char USI_TWI_Master_Transfer( unsigned char ); unsigned char USI_TWI_Master_Stop( void ); union USI_TWI_state { unsigned char errorState; // Can reuse the TWI_state for error states due to that it will not be need if there exists
in „Butterfly USI als TWI Master verwenden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Optokoppler.pdf
LITE-ON TECHNOLOGY CORPORATION Property of LITE-ON Only FEATURES * Current transfer ratio ( CTR : MIN. 50% at IF=5mA, V CE=5V ) * High input-output isolation voltage ( Vis=3,750Vrms ) * High collector-emitter voltage ( VCEO = 80V ) * Employs double transfer mold technology * Subminiature
in „Encoderauswertung, Verständnisfrage und Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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Datei
USI_TWI_Master.c
include <avr/io.h> #include "USI_TWI_Master.h" #include <util/delay.h> unsigned char USI_TWI_Master_Transfer( unsigned char ); unsigned char USI_TWI_Master_Stop( void ); union USI_TWI_state { unsigned char errorState; // Can reuse the TWI_state for error states due to that it will not be need if there exists
in „C-Code optimieren (passt nicht in Attiny2313) :(“ · Mikrocontroller und Digitale Elektronik ·
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Datei
USI_TWI_Master.c
include "ini_uC.h" #include <util/delay.h> #include "USI_TWI_Master.h" unsigned char USI_TWI_Master_Transfer( unsigned char ); unsigned char USI_TWI_Master_Stop( void ); union USI_TWI_state { unsigned char errorState; // Can reuse the TWI_state for error states due to that it will not be need if there exists
in „I2C ATtiny167 mit USI“ · Mikrocontroller und Digitale Elektronik ·
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Datei
USI_TWI_Master.c
include <avr/io.h> #include "USI_TWI_Master.h" #include <util/delay.h> unsigned char USI_TWI_Master_Transfer( unsigned char ); unsigned char USI_TWI_Master_Stop( void ); union USI_TWI_state { unsigned char errorState; // Can reuse the TWI_state for error states due to that it will not be need if there exists
in „TWI mit USI nach AN-310“ · Mikrocontroller und Digitale Elektronik ·
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Datei
USI_TWI_Master.c
include <inavr.h> #include <ioavr.h> #endif #include "USI_TWI_Master.h" unsigned char USI_TWI_Master_Transfer(unsigned char); unsigned char USI_TWI_Master_Stop(void); union USI_TWI_state { unsigned char errorState; // Can reuse the TWI_state for error states due to that it will not be need if there // exists
in „Atmel AVR TWI Library - Verständnisfrage zu Pointer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BF256_ON.pdf
Transistor designed for VHF and UHF applications. http://onsemi.com Low Cost TO–92 Type Package Forward Transfer Admittance, Y = 4.5 mmhos (Min) 1 DRAIN fs Transfer Capacitance – Crss= 0.7 (Typ) Power Gain at f = 800 MHz, Typ. = 11 dB 3 GATE MAXIMUM RATINGS 2 SOURCE Rating Symbol Value Unit Drain–Source Voltage
in „BF256, Pinbelegung unterschiedlich“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MN101C77.pdf
Single-master I C × 1: Serial 3 2 I C slave × 1: Serial 4 Serial 4...................I C high-speed transfer mode. 7-bit/10-bit address setting. General call DMA controller Maximum transfer cycles: 255 Starting factor: External request. Various types of interrupt. Software Transfer mode: 1-byte transfer. Word transfer. Burst transfer I/O Pins I/O 53 : Common use. Specified pull-up resistor available. Input/output selectable (bit unit) A/D converter 10-bit × 7 channels (with S/H) D/A converter 8-bit × 2 channels
in „Blaupunkt BP7-VA3 CD-ROM Laufwerk ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
eeprom.c
Data); /* In case the EEPROM active page is full */ if (Status == PAGE_FULL) { /* Perform Page transfer */ Status = EE_PageTransfer(VirtAddress, Data); } /* Return last operation status */ return Status; } /** * @brief Erases PAGE and PAGE1 and writes VALID_PAGE header to PAGE * @param None * @retval
in „STM32 Virtueller EEPROM in Flash“ · Mikrocontroller und Digitale Elektronik ·
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Datei
eeprom.c
Data); /* In case the EEPROM active page is full */ if (Status == PAGE_FULL) { /* Perform Page transfer */ Status = EE_PageTransfer(VirtAddress, Data); } /* Return last operation status */ return Status; } /** * @brief Erases PAGE and PAGE1 and writes VALID_PAGE header to PAGE * @param None * @retval
in „STM32F3 Virtual EEPROM für große Look Up“ · Mikrocontroller und Digitale Elektronik ·
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Datei
eeprom.c
Data); /* In case the EEPROM active page is full */ if (Status == PAGE_FULL) { /* Perform Page transfer */ Status = EE_PageTransfer(VirtAddress, Data); } /* Return last operation status */ return Status; } /** * @brief Erases PAGE and PAGE1 and writes VALID_PAGE header to PAGE * @param None * @retval
in „STM32F3 Virtual EEPROM für große Look Up“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS1337-DS1337C.pdf
master to generate the STOP condition. 12 of 16 2 DS1337 I C Serial Real-Time Clock Figure 2. Data Transfer on I C Serial Bus Depending upon the state of the R/W bit, two types of data transfer are possible: 1) Data transfer from a master transmitter to a slave receiver. The first byte transmitted by the
in „[V] DALLAS RTCs : 10x DS1337S+ SO8 und 4x DS1337U+ 8 uSOP“ · Markt ·
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PDF
TPS_40210.pdf
Gain of the current sense G (s) Voltage-loop duty-cycle to CS vd_DCM signal path output-voltage transfer AV_CA Voltage gain of a compensated function in DCM error amplifier at the desired G ids) Current-loop duty-cycle to crossover frequency current transfer function G id_CCM (s) Current-loop duty-cycle
in „Problem mit dem Hochsetzsteller (TPS 40210)“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
test.c
DD_MISO)|(1<<DD_SS); SPCR = (1<<SPE)|(1<<MSTR)|(1<<SPR0)|(0<<DORD)|(0<<CPOL)|(0<<CPHA); } uint8_t spi_transfer(uint8_t val) { TXTNHEX("Out: ", val); SPDR = val; while(!(SPSR & (1<<SPIF))) ; TXTNHEX(" In: ", SPDR); CRLF(); return SPDR; } int main() { uint8_t ret; init_UART(); uart_puts("-----Begin------\r\n\r\n"); SPI_MasterInit(); while(1) { SPI_SELECT(); spi_transfer(REG_SYNCVALUE1 | 0x80); spi_transfer(0x55); SPI_DESELECT(); SPI_SELECT(); spi_transfer(REG_SYNCVALUE1 & 0x7F); ret=spi_transfer(0x00); SPI_DESELECT(); TXTNHEX("Register 0x2f=",ret);CRLF(); _delay_ms
in „Simple SPI Interaktion mit dem rfm69 Modul“ · Mikrocontroller und Digitale Elektronik ·
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Datei
IVT16.txt
Counter1 Overflow .equ OVF0addr = 0x0012 ; Timer/Counter0 Overflow .equ SPIaddr = 0x0014 ; Serial Transfer Complete .equ URXCaddr = 0x0016 ; USART, Rx Complete .equ UDREaddr = 0x0018 ; USART Data Register Empty .equ UTXCaddr = 0x001a ; USART, Tx Complete .equ ADCCaddr = 0x001c ; ADC Conversion Complete
in „Hilfe Ladereglung Atmega16 Assembler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
twimaster_c.txt
************************************************ Issues a start condition and sends address and transfer direction. If device is busy, use ack polling to wait until device is ready Input: address and transfer direction of I2C device ********************************************************************
in „Atmega328p + AS7261 I2C kein Ack vom slave“ · Mikrocontroller und Digitale Elektronik ·
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Datei
UNO_R4.txt
-> Bulk Transfer Type wMaxPacketSize: 0x0040 = 0x40 bytes bInterval: 0x00 ===>Endpoint Descriptor<=== bLength: 0x07 bDescriptorType: 0x05 bEndpointAddress: 0x82 -> Direction: IN - EndpointID: 2 bmAttributes: 0x02 -> Bulk Transfer Type wMaxPacketSize: 0x0040 = 0x40 bytes bInterval: 0x00 ---===>Full Configuration Descriptor<===--- ===>Configuration Descriptor<=== bLength: 0x09 bDescriptorType: 0x02 wTotalLength: 0x005D -> Validated
in „Arduino UNO R4 in Win10 nicht erkannt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Understanding_Buffered_and_Unbuffered_CD4xxxB_scha004.pdf
Represent the ON Impedance of a p- or n-Channel MOS Transistor) . . . . . . . . . . . 7 5 Voltage Transfer Characteristics of Buffered Two-Input NOR Gate (CD4001B) . . . . . . . . . . . . . . . . 8 6 Voltage Transfer Characteristics of Unbuffered Two-Input NOR Gate (CD4001UB) With Output Voltages of 5
in „ungepufferten Inverter und gepufferten Inverter“ · Mikrocontroller und Digitale Elektronik ·
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Datei
i2croutines.c
= I2C2*/ { /* Wait until DMA end of transfer */ while (!DMA_GetFlagStatus(DMA1_FLAG_TC5)) ; /* Disable DMA Channel */ DMA_Cmd(I2C2_DMA_CHANNEL_RX, DISABLE); /* Clear the DMA Transfer Complete flag */ DMA_ClearFlag(DMA1_FLAG_TC5); } /* Program
in „stm32 Cortex I2C : Master zieht SCL auf Masse“ · Mikrocontroller und Digitale Elektronik ·
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Datei
i2croutines.c
= I2C2*/ { /* Wait until DMA end of transfer */ while (!DMA_GetFlagStatus(DMA1_FLAG_TC5)) ; /* Disable DMA Channel */ DMA_Cmd(I2C2_DMA_CHANNEL_RX, DISABLE); /* Clear the DMA Transfer Complete flag */ DMA_ClearFlag(DMA1_FLAG_TC5); } /* Program
in „stm32 Cortex I2C : Master zieht SCL auf Masse“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TN203_Voltage_Current-Mode_Control.pdf
and the rest falls into the “Feedback” section also called the “Compensator”. Their respective transfer functions are denoted as G(s) and H(s) respectively. In the mathematical treatment of loop stability, we define a “transfer function”, which is basically the output of a given block divided by its
in „SG3524 bleibende Regelabweichung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
JBT6K71-AS_A__v1.42_2006-02-07_E.PDF
VSS or VSYS level. RGB data bus input pin The RIM3 and RIM2 command register settings vary the transfer format. RIM3 RIM2 Transfer format 0 0 1 transfer of 18 bits PD0~PD17 I 0 1 1 transfer of 16 bits 1 0 3 transfers of 6 bits 1 1 Setting prohibited When this pin is not used, it must be tied to the
in „LCD aus Benq EL71 Handy“ · Mikrocontroller und Digitale Elektronik ·
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PDF
R1610C.PDF
the decrement function. Terminal Count. Set 1: The synchronized DMA transfer is terminated when the DMA Transfer Count Register reaches 0. 9 TC R/W Set 0: The synchronized DMA transfer is not terminated when the DMA Transfer Count Register reaches 0. Unsynchronized DMA transfer
in „Hilfe JTAG für IP Webcam ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
transfer flag (stream5) löschen // DMA1->HISR |= DMA_HISR_HTIF5; if(cnt<256)break; //wenn das ende des files erreicht while verlassen it_st = RESET; while(it_st == RESET) { ////auf Flag für kompletten Transfer
in „ARM Cortex M4 mit LL Treiber DAC DMA Wave SD Card Playback“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TM1637_V2.4_EN.pdf
CLK is a high level and DIO changes from low level to high level, data input ends. TM1637 data transfer carries with answering signal ACK. Fotha right data transfer, an answering signal ACK is generated inside the chip to lower the DIO pin at the failing edge of the 8 clock. DIO interface wire is released at the end of the 9 clock. 1、 Command data transfer is as follows (Reading Key Data Timing) 1 2 3 4 5 6 7 8 9 1 2 3 4 5 6 7 8 9 CLK DIO STAR command S0 S1 S2 K1 K2 END The chip is The chip is automatically automatically lowered at ACK lowered at ACK
in „TM1637, 4-stellige LED 7-Segmentanzeige mit AVR-GCC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datasheet_TM1637.pdf
CLK is a high level and DIO changes from low level to high level, data input ends. TM1637 data transfer carries with answering signal ACK. Fotha right data transfer, an answering signal ACK is generated inside the chip to lower the DIO pin at the failing edge of the 8 clock. DIO interface wire is released at the end of the 9 clock. 1、 Command data transfer is as follows (Reading Key Data Timing) 1 2 3 4 5 6 7 8 9 1 2 3 4 5 6 7 8 9 CLK DIO STAR command S0 S1 S2 K1 K2 END The chip is The chip is automatically automatically lowered at ACK lowered at ACK
in „TM1637 wie funktioniert die Strombegrenzung?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
usbdrv.h
transfer, you should provide the * requested data to the driver. There are two ways to transfer this data: * (1) Set the global pointer 'usbMsgPtr' to the base of the static RAM data * block and return the
in „Problem mit libUSB - wie Gerät ansprechen?“ · Softwareentwicklung ·
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Datei
I2CRoutines.c
= I2C2*/ { /* Wait until DMA end of transfer */ while (!DMA_GetFlagStatus(DMA1_FLAG_TC5)); /* Disable DMA Channel */ DMA_Cmd(I2C2_DMA_CHANNEL_RX, DISABLE); /* Clear the DMA Transfer Complete flag */ DMA_ClearFlag(DMA1_FLAG_TC5); } /* Program
in „stm32 Cortex I2C : Master zieht SCL auf Masse“ · Mikrocontroller und Digitale Elektronik ·
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Datei
I2CRoutines.c
= I2C2*/ { /* Wait until DMA end of transfer */ while (!DMA_GetFlagStatus(DMA1_FLAG_TC5)); /* Disable DMA Channel */ DMA_Cmd(I2C2_DMA_CHANNEL_RX, DISABLE); /* Clear the DMA Transfer Complete flag */ DMA_ClearFlag(DMA1_FLAG_TC5); } /* Program
in „Cortex I2C zu kurze Impulsdauer“ · Mikrocontroller und Digitale Elektronik ·
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Datei
usart_stm32f4xx.c
zeichenkette, strlen(zeichenkette)); } void DMA1_Stream6_IRQHandler(void) { /* Clear DMA Stream Transfer Complete interrupt pending bit */ DMA_ClearITPendingBit(DMA1_Stream6, DMA_IT_TCIF6); static uint_fast16_t readLen = 0; if( DMA1_Stream6->NDTR == 0 ) // Bisheriger Transfer abgeschlossen { DMA_Cmd(
in „STM32F446: USART DMA-Transfer“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
uint8_t messageBuf[MESSAGEBUF_SIZE]; uint8_t TWI_targetSlaveAddress; unsigned char USI_TWI_Master_Transfer( unsigned char ); unsigned char USI_TWI_Master_Stop( void ); union USI_TWI_state { unsigned char errorState; // Can reuse the TWI_state for error states due to that it will not be need if there exists
in „Hilfe! Mein AVR USI Master (I2C) mag nicht mehr :(“ · Mikrocontroller und Digitale Elektronik ·
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PDF
P_100_LTV-354T.pdf
TECHNOLOGY CORPORATION Property of LITE-ON Only FEATURES * AC input response May.2009 * Current transfer ratio ( CTR : MIN. 20% at I F =±1mA, V CE =5V ) * Isolation voltage between input and output LTV-354T ( V is=3,750Vrms ) * Employs double transfer mold technology * Subminiature type ( The volume
in „AC Optokoppler mit integrierter Schmitttrigger Schaltstufe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS3231_DATASHEET.pdf
CONDITION REPEATED IF MORE BYTES OR REPEATED ARE TRANSFERED START CONDITION Figure 2. I C Data Transfer Overview Figures 3 and 4 detail how data transfer is accom- plished on the I C bus. Depending upon the state of <SLAVE W <WORD ADDRESS> < ADDRESS (n)> <DATA (n)><DATA (n + 1)> <DATA (n + X)> the R/W bit, two types of data transfer are possible: S 1101000 0 A XXXXXXXX A XXXXXXXX A XXXXXXXX A XXXXXXXX A P Data transfer from a master transmitter to a slave receiver. The first byte transmitted by the master is S = START A = ACKNOWLEDGE
in „RTC DS3231 Pull Up Widerstände berechnen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD66740.pdf
0 1 — 1 0 Writes RAM data 1 1 Reads RAM data 36 HD66740 a) Basic Data-transfer Timing through Clock-synchronized Serial Bus Interface Transfer start Transfer end CS* (Input) 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 SCL (Input) MSB LSB SDA (Input/ "0" "1" "1" "1" "0" ID RS R/W
in „Display Siemens ME 45, HD-66740“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AT91SAM7S64.h
<< 1) // (SPI) Clock Phase #define AT91C_SPI_CSAAT (0x1 << 3) // (SPI) Chip Select Active After Transfer #define AT91C_SPI_BITS (0xF << 4) // (SPI) Bits Per Transfer #define AT91C_SPI_BITS_8 (0x0 << 4) // (SPI) 8 Bits Per transfer #define AT91C_SPI_BITS_9 (0x1 << 4) // (SPI) 9 Bits Per transfer #define AT91C_SPI_BITS_10 (0x2 << 4) // (SPI) 10 Bits Per transfer #define AT91C_SPI_BITS_11 (0x3 << 4) // (SPI) 11 Bits Per transfer #define AT91C_SPI_BITS_12 (0x4 << 4) // (SPI) 12 Bits Per transfer #define AT91C_SPI_BITS_13 (0x5 << 4) // (SPI) 13 Bits Per transfer
in „AT91SAM7S64 Compiler Fehlermeldung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
eeprom.c
Data); /* In case the EEPROM active page is full */ if (Status == PAGE_FULL) { /* Perform Page transfer */ Status = EE_PageTransfer(VirtAddress, Data); } /* Return last operation status */ return Status; } /** * @brief Erases PAGE and PAGE1 and writes VALID_PAGE header to PAGE * @param None * @retval
in „FLASH speicher Lebensdauer Beeinflussung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
409-13680-0-KS7212.pdf
Sample & Hold pulse 22 SHP O Pre - Charge Sample & Hold pulse 23 VSS3 - Ground 24 XV4 O Vertical transfer clock 4 25 XSG3 O Read out Pulse 3 26 V3 O Vertical transfer clock 3 27 XSG1 O Read out Pulse 1 28 XV1 O Vertical transfer clock 1 29 XV2 O Vertical transfer clock 2 30 XSUB O Shutter speed control
in „Türsprechanlage - wie anschließen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
i2c.c
} //=============================================================================== // I2C_ReadTransfer - initiate a read transfer on the I2C bus // // Initiates a read transfer on the I2C bus. // If a register address is specified (<addressLength> != 0) a write without a stop // condition will be initiated
in „STM32F4 Discovery mit I2C-Bus EEPROM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0jedoh4ph3rpg669tyx5u9dy7lky.pdf
50°C, V = 5.0 V) C F F I /I = f (I ) C F F 1 1 2 2 3 3 4 4 icny17_03 icny17_06 Figure 3. Current Transfer Ratio vs. Diode Current Figure 6. Current Transfer Ratio vs. Diode Current (T = 50°C, V = 5.0 V) (TA= 75°C,CE = 5.0 V) I /I = f (I ) C F F 1 2 3 1 4 2 3 4 icny17_06 icny17_07 Figure 4. Current Transfer Ratio vs. Diode Current Figure 7. Current Transfer Ratio vs. Diode Current (A = 25°C,CE = 5.0 V) (I = 10 mA, V = 5.0 V) C FI = F (I ) I /I = f (T)E C F 4 3 2 1 2 3 1 4 T icny17_05 icny17_08 A Figure 5. Current Transfer Ratio vs. Diode Current Figure
in „optokoppler frequenzmessung“ · Mikrocontroller und Digitale Elektronik ·