-
Datei
asic_reading.v
= SA[7:0]; nextstate = txLE_1; end txLE_1: begin rx_ll_src_rdy_out_n = 1'b0; rx_ll_eof_out_n = 1'b1; rx_ll_sof_out_n = 1'b1; rx_ll_data_out = LE[15:8]; nextstate = txLE_2; end txLE_2: begin rx_ll_src_rdy_out_n = 1'b0; rx_ll_eof_out_n
-
PDF
KS8863MLL_FLL_RLL_DEMO_BOARD_V1.pdf
FX Mode R8 R5 Button CON4A 4.7K 1N4148 Reset 4.7K 2 10K S2 R R T T R6R6 6T 6T 7 7 7 7 JP77 1 2 X X X X XX X X FXSD2 3 4 1 1 1 1 22 2 2 1 2 3 4 + C4 SW PUSHBUTTON TP9 5 6 B 7 8 B 4 R9 10UF HEADER 4X2 TX Mode 1 Do not populate 1K +3.3A EXT_V1 8 cap if pull
in „KSZ8863RLL Paketverlust“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
USB_Cable_Tester.pdf
▯▯▯86%▯3RUWV ▯▯▯86%▯&DEOH▯7HVWHU▯3LQRXWV Pinrow Pinrow B Name Description A Name Description B1 GND Ground A12 GND Ground B2 TX2+ SuperSpeed differential pair 3 TX, A11 RX2+ Super Speed differential pair 4, RX, B3 TX2- SuperSpeed differential pair 3 TX, A10
in „USB-C Kabel D+/D- nur einseitig belegt“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Profibus-Uart.pdf
used+ void putchar1(char c) { while (tx_counter1 == TX_BUFFER_SIZE1); #asm("cli") if (tx_counter1 || ((UCSR1A & DATA_REGISTER_EMPTY)==0)) { tx_buffer1[tx_wr_index1]=c; if (++tx_wr_index1 == TX_BUFFER_SIZE1) tx_wr_index1=0; ++tx_counter1; }
in „PROFIBUS->UART (ATMega128)->PC“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Lankarte.pdf
TX_FLG_DV aus Register WRITE_EN RX_FLG_DV 1 IC47A RX_DATA0 2 A1 B1 18 DATA0 TX_FLG_DV 3 RX_DATA1 3 A2 B2 17 DATA1 TX_FIFO_FULL RX_FLG_EMPTY 2 RX_DATA2 4 16 DATA2 aus Register 7408N RX_DATA3 5 A3 B3 15 DATA3
in „Space Age 2 der 32Bit MIPS Rechner in TTL“ · Projekte & Code ·
-
Datei
xaui_0_block.vhd
xgmii_rxd : out std_logic_vector(63 downto 0); xgmii_rxc : out std_logic_vector(7 downto 0); xaui_tx_l0_p : out std_logic; xaui_tx_l0_n : out std_logic; xaui_tx_l1_p : out std_logic; xaui_tx_l1_n : out std_logic; xaui_tx_l2_p : out std_logic; xaui_tx_l2_n : out std_logic; xaui_tx_l3_p : out std_logic
-
Datei
stm32f103.cpp
&= 0xFFFF9FFF; // reset CAN remap // CAN_RX mapped to PA11, CAN_TX mapped to PA12 if (remap == 0) { RCC->APB2ENR |= 0x4UL; // Enable GPIOA clock GPIOA->CRH &= ~(0xFF000UL); // Configure PA12(0b0000) and PA11(0b0000) // 0b0000 // MODE=00(Input mode) // CNF=00(Analog
in „Arduino Blue Pill CAN bibliothek“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
stm32f103.cpp
&= 0xFFFF9FFF; // reset CAN remap // CAN_RX mapped to PA11, CAN_TX mapped to PA12 if (remap == 0) { RCC->APB2ENR |= 0x4UL; // Enable GPIOA clock GPIOA->CRH &= ~(0xFF000UL); // Configure PA12(0b0000) and PA11(0b0000) // 0b0000 // MODE=00(Input mode) // CNF=00(Analog
in „Arduino Blue Pill & CAN mit SN65HVD230“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
stm32f103.cpp
&= 0xFFFF9FFF; // reset CAN remap // CAN_RX mapped to PA11, CAN_TX mapped to PA12 if (remap == 0) { RCC->APB2ENR |= 0x4UL; // Enable GPIOA clock GPIOA->CRH &= ~(0xFF000UL); // Configure PA12(0b0000) and PA11(0b0000) // 0b0000 // MODE=00(Input mode) // CNF=00(Analog
in „Arduino Blue Pill & CAN mit SN65HVD230“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
HY-SmartSTM32_SCH.pdf
SDIO_D1 66 PC9/TIM8_CH4/SDIO_D1/TIM3_CH4 S1 RST B SDIO_D2 SDIO_D2 78 PC10/USART4_TX/SDIO_D2/USART3_TX NRST 14 RST SDIO_D3 SDIO_D3 79 PC11/USART4_RX/SDIO_D3/USART3_RX SDIO_CK 80 VBAT BT1 C5 SDIO_CK KEYA 7 PC12/USART5_TX/SDIO_CK/USART3_CK 6 104 USER_KEYA
in „STM32 can Message“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
rfm12_interruptHandler.inc
0xb8 ldi rTmp, 0x2d ;// fifo sync word (byte 1) rcall rf12_trans rjmp rfSendingNextPhase rfTxNotPhaseSync1: cpi rTmp, RF_TX_PHASE_SYNC2 brne rfTxNotPhaseSync2 ldi rTmpB, 0xb8 ldi rTmp, 0xd4 ;// fifo sync word (byte 2) rcall rf12_trans rjmp rfSendingNextPhase rfTxNotPhaseSync2: cpi rTmp, RF_TX_PHASE_LEN brne rfTxNotPhaseLen ldi rTmpB, 0xb8 mov rTmp, rRfDataLen rcall rf12_trans rjmp rfSendingNextPhase rfTxNotPhaseLen: cpi rTmp, RF_TX_PHASE_FLUSH1 brne rfTxNotPhaseFlush1
in „RFM12 Statusabfrage“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
RTC_PCF_8583_LCD5.asm
call WAIT call i2c_on ; Bus aktivieren movlw B'10100000' ; 1010 0000 call i2c_tx ; zum Schreiben adressieren movlw 0x03 call i2c_tx movlw B'01000011' call i2c_tx call i2c_off movlw .10 movwf loops call WAIT call i2c_on ; Bus aktivieren movlw B'10100000' ; 1010 0000 call i2c_tx ; zum Schreiben adressieren movlw 0x04 call i2c_tx movlw B'00010101' call i2c_tx call i2c_off movlw .10 movwf loops call WAIT hier call i2c_on ; Bus aktivieren movlw
-
Datei
SteuerPIC.asm
i2c_tx call i2c_tx ; GP1 alle auf ausgang der Pointer geht automatisch auf 0x07 (IODIR1) ; MCP 2 movlw H'48' ; I2C Slaveadresse und LSB '0' senden (A0 0= 0 ; A1 = 0 ; A2 = 1) call i2c_tx movlw H'06' ; IODIR0 call i2c_tx movlw H'00' ; GP0 alle ausgang call i2c_tx movlw H'FF' ; GP1 alle auf eingang der Pointer geht automatisch auf 0x07 (IODIR1) call i2c_tx call i2c_off ;MCR8 oder SC8in1 btfsc PORTC, 2 goto SC8in1
in „PIC16F876A rs232 Port Steuern“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
main.c
); TCCR2B |= (1 << CS22); TIMSK2 |= (1 << OCIE2A); OCR2A = 2; /*ICR1 = 0xC305; OCR1A = 21800/8;//Lenkung 0x5FFF OCR1B = 22800/8; TCCR1A |= (1 << COM1A1)|(1 << COM1B1)|(1<<WGM11); TCCR1B |= (1 << WGM12)|(1 <<
in „Raspberry PI und ATmega328 serielle Schnittstelle“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Web-server170106.pdf
54 TX_ER 1n 2KV 1n 2KV TxD3 60 A_GND TxD2 59 TXD3 270p 49,9 1% TxD[0..3] TxD1 58 TXD2 19 TxD[0..3] TxD0 57 TXD1 U2 TPOP 20 TXD0 TPON C18 R12 47 LXT972ALC 1n 2KV RxDV 49 RX_DV Auto-Neg RxCLK 52 RX_CLK LED_CFG1
in „Maxim Tini Board DSTINIm400 Fragen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
hmc646.pdf
HMC646LP2 / 646LP2E v02.1009 GaAs MMIC 40W FAILSAFE SWITCH, 0.1 - 2.1 GHz Typical Applications Features The HMC646LP2(E) is ideal for: High Input P0.1dB: +46 dBm Tx • LNA Protection & T/R Switching Low Insertion
in „passiv Video Übertragung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
HY-LandTiger_SCH.pdf
MISO1 USB_D+ USB_D+ RESET RESET USB_PPWR USB_PPWR SD_PWR SD_PWR USB_PWRD USB_PWRD SD_CD SD_CD CAN1_TX CAN1_TX SD_CS SD_CS CAN1_RX CAN1_RX SCK0 SCK0 485_RX 485_RX MOSI0 MOSI0 485_TX 485_TX MISO0 MISO0 485_DIR 485_DIR CAN2_TX CAN2_TX DF_CS DF_CS CAN2_RX CAN2_RX SCK SCK ADC_IN ADC_IN B MISO MISO B MOSI
-
PDF
P82B96_7.pdf
of P82B96 6. Pinning information 6.1 Pinning P82B96TD P82B96TD/S900 Sx 1 8 V CC Sx 1 8 VCC Sx 1 8 VCC Rx 2 7 Sy Rx 2 7 Sy P82B96PN Rx 2 7 Sy Tx 3 6 Ry Tx 3 6 Ry Tx 3 P82B96DP 6 Ry GND 4 5 Ty GND 4 5 Ty GND 4
in „18 x SHT11 an welchem Mikrocontroller“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
bt1.c
0x05 #define INQ_BYTE5 0x33 #define INQ_BYTE6 0x8B #define INQ_BYTE7 0x9E #define INQ_BYTE8 0x08 #define INQ_BYTE9 0x10 //unsigned char test[2]="0x01,0x02"; unsigned char hci_inquiry[9]; int i=0; unsigned char empfangssignal[8]; //Command Status Event
in „Kommunikation Mikrocontroller - Bluetooth Modul“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
STM32F107-SK-SCH-revA.pdf
USART1_CK/TIM1_CH1/MCO30 R86 1.5k USB_B PE4 TRACED2 4 PE4/TRACED1 PD4/USART2_RTS 86 USART2_TX TRACE 48 VDD_2 PA9/USART1_TX/TIM1_CH231 TDOIN 1 PE5 TRACED3 5 PE5/TRACED2 PD5/USART2_TX 87 USART2_RX TMS 2 1 VDD_3 PA10/USART1_RX/TIM1_CH332 R84
in „Cortex M3 STM32F107VC beim Reset passiert nichts“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
uart.c
***************** user definitions ********************* #define RX0_SIZE 16 // usable: RX0_SIZE + 2 (4 .. 258) #define TX0_SIZE 12 // usable: TX0_SIZE + 1 (3 .. 257) #define PORT_UART_OUT PORTD #define DDR_UART_OUT DDRD #define PIN_UART_OUT PD2 #ifdef DEBUG // 9.600 Baud mit 20MHz bei U2X0 = 0 #define
in „Nochmal RS485 Kommunikation“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
messages2.txt
: ads7846 spi0.1: start xfer 91c3e890: len 1 tx 91c3e833/11c3e833 rx 00000000/ffffffff Jul 23 00:14:44 ngw user.debug kernel: ads7846 spi0.1: next xfer 91c3e8b4: len 2 tx 00000000/ffffffff rx 91c3e83e/11c3e83e Jul 23 00:14:44 ngw user.debug kernel
in „Probleme mit ADS7846 beim NGW100“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
RFM_22.h
unsigned char Clock:3; // bit 0 unsigned char Enable_Low_Frequency_Clock:1; unsigned char Clock_Tail:2; }; } _Microcontroller_Outp_Clock; #define RX_State_output 0b10101 #define TX_State_output 0b10010 #define MC_Clock_output 0b00000 //Register 0x0B typedef union tag0x0B_GPIO_Config0 { byte _byte; struct
-
Datei
uart.c
a power of 2 #endif #if ( UART_TX_BUFFER_SIZE & UART_TX_BUFFER_MASK ) #error TX buffer size is not a power of 2 #endif #if defined(__AVR_AT90S2313__) \ || defined(__AVR_AT90S4414__) || defined(__AVR_AT90S4434__)
in „ATMega nach ADC BascomPRG stk500 WEG!“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
uart.c
a power of 2 #endif #if ( UART_TX_BUFFER_SIZE & UART_TX_BUFFER_MASK ) #error TX buffer size is not a power of 2 #endif #if defined(__AVR_AT90S2313__) \ || defined(__AVR_AT90S4414__) || defined(__AVR_AT90S4434__)
in „[AVR-GCC] makefile SRC und #include“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
uart.c
a power of 2 #endif #if ( UART_TX_BUFFER_SIZE & UART_TX_BUFFER_MASK ) #error TX buffer size is not a power of 2 #endif #if defined(__AVR_AT90S2313__) \ || defined(__AVR_AT90S4414__) || defined(__AVR_AT90S4434__)
in „ATmega1284p, UART Probleme“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
uart.c
a power of 2 #endif #if ( UART_TX_BUFFER_SIZE & UART_TX_BUFFER_MASK ) #error TX buffer size is not a power of 2 #endif #if defined(__AVR_AT90S2313__) \ || defined(__AVR_AT90S4414__) || defined(__AVR_AT90S4434__)
in „ATmega168 Bootloader“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
uart.c
a power of 2 #endif #if ( UART_TX_BUFFER_SIZE & UART_TX_BUFFER_MASK ) #error TX buffer size is not a power of 2 #endif #if defined(__AVR_AT90S2313__) \ || defined(__AVR_AT90S4414__) || defined(__AVR_AT90S4434__)
in „fleurys I2C + UART lib halten in Kombination die Hauptschleife an!“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
uart.c
a power of 2 #endif #if ( UART_TX_BUFFER_SIZE & UART_TX_BUFFER_MASK ) #error TX buffer size is not a power of 2 #endif #if defined(__AVR_AT90S2313__) \ || defined(__AVR_AT90S4414__) || defined(__AVR_AT90S4434__)
in „Inkonsistentes Verhalten einfachem avr-gcc-codes“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
uart.c
a power of 2 #endif #if ( UART_TX_BUFFER_SIZE & UART_TX_BUFFER_MASK ) #error TX buffer size is not a power of 2 #endif #if defined(__AVR_AT90S2313__) \ || defined(__AVR_AT90S4414__) || defined(__AVR_AT90S4434__)
in „RFM70 Timing Problem?“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
uart.c
a power of 2 #endif #if ( UART_TX_BUFFER_SIZE & UART_TX_BUFFER_MASK ) #error TX buffer size is not a power of 2 #endif #if defined(__AVR_AT90S2313__) \ || defined(__AVR_AT90S4414__) || defined(__AVR_AT90S4434__)
in „Float via UART an PC senden“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
uart.c
a power of 2 #endif #if ( UART_TX_BUFFER_SIZE & UART_TX_BUFFER_MASK ) #error TX buffer size is not a power of 2 #endif #if defined(__AVR_AT90S2313__) \ || defined(__AVR_AT90S4414__) || defined(__AVR_AT90S4434__)
in „UART bei externer Stromquelle“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
RTL8111B_8168B_Registers_DataSheet_1.0.pdf
configuration space offset B4h 29h PCIE configuration space offset B5h 2Ah PCIE configuration space offset B6h 2Bh PCIE configuration space offset B7h 2Ch Active PM Timer PCIE configuration space offset B8h 2Dh PCIE configuration
-
Datei
nRF24L01_.h
0x0B // ... #define nRF_REG_RX_ADDR_P2 0x0C // ... #define nRF_REG_RX_ADDR_P3 0x0D // ... #define nRF_REG_RX_ADDR_P4 0x0E // ... #define nRF_REG_RX_ADDR_P5 0x0F // ... #define nRF_REG_TX_ADDR 0x10 // ADDRess
in „nRF24L01+ Funkmodul - Auto Acknowledgement sendet keine Payload“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
I2C_Uhr_2313.asm
out PortB,temp1 sbi PORTD,SCL rcall Wait_I2C ldi tx,48 sbic PinB,0 ldi tx,49 rcall serout cbi PORTD,SCL ret Read_Bit: ;rcall Wait_I2C sbi PortD,SCL rcall Wait_I2C ldi tx,65 sbic PinB,SDA ldi tx,66 rcall serout
in „PCF 8583 / I2C -Problem“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
uart.c
a power of 2 #endif #if ( UART_TX_BUFFER_SIZE & UART_TX_BUFFER_MASK ) #error TX buffer size is not a power of 2 #endif #if defined(__AVR_AT90S2313__) \ || defined(__AVR_AT90S4414__) || defined(__AVR_AT90S4434__)
in „Zu viele Pointer - brauche Hilfe.“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
uart.c
a power of 2 #endif #if ( UART_TX_BUFFER_SIZE & UART_TX_BUFFER_MASK ) #error TX buffer size is not a power of 2 #endif #if defined(__AVR_AT90S2313__) \ || defined(__AVR_AT90S4414__) || defined(__AVR_AT90S4434__)
in „Heizungssteuerung mit ATMEGA 32“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
uart.c
a power of 2 #endif #if ( UART_TX_BUFFER_SIZE & UART_TX_BUFFER_MASK ) #error TX buffer size is not a power of 2 #endif #if defined(__AVR_AT90S2313__) \ || defined(__AVR_AT90S4414__) || defined(__AVR_AT90S4434__)
in „Reset bei serieller Kommunikation“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
nRF24LE1_Product_Specification_rev1_6-6439.pdf
D x8787887 45B6F1 0 788 1 ADR:P0:x TX_ADDR PRX RX_ Addr Data Pipe 0 (RX_ADDR_P0): 0x7878787878 Addr Data Pipe 1 (RX_ADDR_P1): 0xB3B4B5B6F1 Addr Data Pipe 2 (RX_ADDR_P2): 0xB3B4B5B6CD Addr Data Pipe 3 (RX_ADDR_P3):
in „Projekt: Kugelschreiber-Morse“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Funkmodul.pdf
FM T RANSMITTER & R ECEIVER FM-TX2-XXX M ODULES . (2 ND G ENERATION ) FM-RX2-XXX FEATURES • MINIATURE PACKAGE • PLUG IN COMPATIBLE WITH FM-TX1 / RX1 • EMC CONFORMANT TO ETS 300-683 • TYPE APPROVED TO ETS 300-220 • DATA RATES TO 40KBIT
in „Funkübertragung über uC“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
uart.c
a power of 2 #endif #if ( UART_TX_BUFFER_SIZE & UART_TX_BUFFER_MASK ) #error TX buffer size is not a power of 2 #endif #if defined(__AVR_AT90S2313__) \ || defined(__AVR_AT90S4414__) || defined(__AVR_AT90S4434__)
in „ATmega UART spinnt“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
uart.c
a power of 2 #endif #if ( UART_TX_BUFFER_SIZE & UART_TX_BUFFER_MASK ) #error TX buffer size is not a power of 2 #endif #if defined(__AVR_AT90S2313__) \ || defined(__AVR_AT90S4414__) || defined(__AVR_AT90S4434__)
in „UART mit Atmega8 (Peter Fleury Library)“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
uart.c
a power of 2 #endif #if ( UART_TX_BUFFER_SIZE & UART_TX_BUFFER_MASK ) #error TX buffer size is not a power of 2 #endif #if defined(__AVR_AT90S2313__) \ || defined(__AVR_AT90S4414__) || defined(__AVR_AT90S4434__)
in „AVR bootloader Probleme“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
uart.c
a power of 2 #endif #if ( UART_TX_BUFFER_SIZE & UART_TX_BUFFER_MASK ) #error TX buffer size is not a power of 2 #endif #if defined(__AVR_AT90S2313__) \ || defined(__AVR_AT90S4414__) || defined(__AVR_AT90S4434__)
in „UART Bibliothek funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
uart.c
a power of 2 #endif #if ( UART_TX_BUFFER_SIZE & UART_TX_BUFFER_MASK ) #error TX buffer size is not a power of 2 #endif #if defined(__AVR_AT90S2313__) \ || defined(__AVR_AT90S4414__) || defined(__AVR_AT90S4434__)
in „AVR Bootloader in C - Artikel“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
uart.c
return rx_out ^ rx_in; // rx_in modified by interrupt ! } uint8_t uart_ready( void ) { uint8_t i = tx_in; ROLLOVER( i, TX0_SIZE ); return tx_out ^ i; // 0 = busy } ISR (USART_TX_vect) { if( tx_in == tx_out ) // nothing to sent { UCSR0B &= ~( 1 << TXCIE0 ); // disable TX interrupt return; } UCSR0B &= ~( 1 << TXB80 ); if ( tx_buff[tx_out] & 0x0100 ) { UCSR0B |= ( 1 << TXB80 ); } UDR0 = tx_buff[tx_out]; ROLLOVER( tx_out, TX0_SIZE ); } ISR (USART_RX_vect) { uint8_t i = rx_in; uint8_t data, res; ROLLOVER( i, RX0_SIZE ); if(
in „UART 9 Bit Modus“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
IA4421-DS.pdf
0603CS-3N9X 0603CS-3N9X 1 L4 Coilcraft 0603CS-18NX 0603CS-3N9X 0603CS-3N9X 1 L2 Coilcraft 0603CS-47NX 0603CS-18NX 0603CS-16NX 1 L3 Coilcraft 0603CS-R39X 0603CS-R10X 0603CS-R10X 2 C9 Murata GRM1885C1H2R7CZ01B GRM1885C1H1R2CZ01B GRM1885C1H1R2CZ01B 3 C8 Murata GRM1885C1H5R0CZ01B GRM1885C1H2R7CZ01B GRM1885C1H2R7CZ01B 3 C10 Murata GRM1885C1H2R7CZ01B GRM1885C1H1R8CZ01B GRM1885C1H1R8CZ01B 3, 4 C11 Murata GRM1885C1H221JA01B GRM1885C1H470JZ01B GRM1885C1H330JZ01B 3 C3 Murata GRM1885C1H221JA01B GRM1885C1H470JZ01B
in „Software SPI zur Chip Konfig“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Si_4421__RFM12B_.pdf
0603CS-3N9X 0603CS-3N9X 1 L4 Coilcraft 0603CS-18NX 0603CS-3N9X 0603CS-3N9X 1 L2 Coilcraft 0603CS-47NX 0603CS-18NX 0603CS-16NX 1 L3 Coilcraft 0603CS-R39X 0603CS-R10X 0603CS-R10X 2 C9 Murata GRM1885C1H2R7CZ01B GRM1885C1H1R2CZ01B GRM1885C1H1R2CZ01B 3 C8 Murata GRM1885C1H5R0CZ01B GRM1885C1H2R7CZ01B GRM1885C1H2R7CZ01B 3 C10 Murata GRM1885C1H2R7CZ01B GRM1885C1H1R8CZ01B GRM1885C1H1R8CZ01B 3, 4 C11 Murata GRM1885C1H221JA01B GRM1885C1H470JZ01B GRM1885C1H330JZ01B 3 C3 Murata GRM1885C1H221JA01B GRM1885C1H470JZ01B
in „RFM12b ideale Konfiguration“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
SPI.txt
bei 1 -> Reg B elsif(spitxstate = spi_stx) and (index >= 9) then --Register B wird auf wieder auf default Wert gesetzt --Counter 1 wird "disenabled" StartTxvar <= '1'; tx_reg <= TxData(index - 8); end if; if (spiclk
-
PDF
VAR-6ULCustomBoard-Datasheet.pdf
(J12) 2.3.9.2 BT UART and GPIO Connector (J6) Pin# VAR-6ULCustomBoard Signal Type Description 1 BT_UART_CTS_B IO UART2 CTS (used by on SoM Bluetooth module) 2 BT_UART_TX IO UART2 TX (used by on SoM Bluetooth
in „[V] Variscite DART-6UL Development Kit inkl. 7" LCD NXP iMX6UL“ · Markt ·