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nRF24LE1_Product_Specification_rev1_6-6439.pdf
PTX1 e 3 D P TX_AD 2 at RX PTX6 D T_A Dat RX_ADR: aPip ie0 8 DDR_0 0xB3B e 1 aaP 7878 8 :0B3B4B56F 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): 0xB3B4B5B6A3 Addr Data Pipe 4 (RX_ADDR_P4): 0xB3B4B5B60F Addr Data Pipe 5 (RX_ADDR_P5): 0xB3B4B5B605 Frequency Channel
in „Projekt: Kugelschreiber-Morse“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.cpp
)) /// Communicate with all devices { return; } m__oRxData.u8Function = au8Data[1]; /// Store function code for (sf_int16 i = 2; i < (u16NumRx - 2); i ++) /// Store data without crc { m__oRxData.au8DataBuf[i - 2] = au8Data[i]; } m__oRxData.u8dataLen = (u16NumRx - 2); /// Store array size m__oRxData.u16CRC = (au8Data[u16NumRx - 2] << 8) | au8Data[u16NumRx - 1]; /// Store crc if (m__oRxData.u8Function != eetWriteMultipleRegisters) { vSendError(m__oRxData.u8Function
in „C++ Array in einer Klasse -> Grösse bestimmen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rf12.c
define SCK 7 // SCK Pinnummer #define CS 5 // CS Pinnummer #define SDO 6 // MISO Pinnummer #define TST 2 // Test LED1 #define MAX_BUF 128 // Maximale Paketgröße #define LED_TX PORTC_5 // TX LED #define LED_RX PORTC_3 // RX LED #define LED_RETRANS PORTC_4 // Retransmit LED #define LED_ERR PORTC_6 // Error
in „Bausatz Add-on für AVR-NET-IO“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rf12.c
define SCK 7 // SCK Pinnummer #define CS 5 // CS Pinnummer #define SDO 6 // MISO Pinnummer #define TST 2 // Test LED1 #define MAX_BUF 128 // Maximale Paketgröße #define LED_TX PORTC_5 // TX LED #define LED_RX PORTC_3 // RX LED #define LED_RETRANS PORTC_4 // Retransmit LED #define LED_ERR PORTC_6 // Error
in „Bausatz Add-on für AVR-NET-IO“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BT-WiFi-52rf5541.pdf
_0 Please write with 0 x08B2 --2401table_A) 0xFFFFFEF7CF208104082041 0 x08B1 0 x08B0 0 x08AF 0 x08AE 0 x08AD 0 x08AC 0 x08AB 0 x08AA BK-RF_ce 0 x08B5 7:1 reserved 0 ce 8'b10000000 : Flush RX 8'b10100000 : Flush TX 8'b00010000 :
in „JDY-40 ein neuer Geniestreich aus China?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KS8863MLL_FLL_RLL_DEMO_BOARD_V1.pdf
LF8505 component side RX2P RXP_2 R27 49.9 1 RX2M T2 7 RXP_2 C12 Route RX pairs on 2 TX2P 3 R18 51 R19 51 R20 75 CMT2 TX2P 16 1 TXP_2 solder side 4 R21 51 CMT2 15 TX+ TD+ 2 RXM_2 R28 49.9 5 TX2M TX2M 14 TCM TC 3 TXM_2 7 RXM_2
in „KSZ8863RLL Paketverlust“ · Mikrocontroller und Digitale Elektronik ·
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PDF
camaro_stand_alone.pdf
VCC 6 +5V G 4 X2B GND PD2 Lüfter 2 R2 220 2 REF 7 PD3 5 3-2 D3 Luefter 4 1 Luefter1 X X PD4 6 R T 11 R10 9833 Genrator PWR_FLAG 5 PD5 TX-328P D5 4 T2 OK1 D + PD6 12 RX-328P D6 0 BC337 N 3 13 4 PC817 G GND D PD7 2 N 2,2k
in „Stn1110 am atmega2560 uart probleme“ · Mikrocontroller und Digitale Elektronik ·
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Datei
usb_vcp.c
*/ EpTable[1].RxCount = EpBulkLenId; /* erstmal.. */ /* EP2 = Bulk OUT (nur OUT) */ EpTable[2].TxOffset = Ep2RxAOffset; EpTable[2].TxCount = EpBulkLenId; EpTable[2].RxOffset = Ep2RxBOffset; EpTable[2].RxCount = EpBulkLenId
in „STM32 USB Übertragungsproblem mit Code von S.F.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
readme_131206.pdf
- 0 0 0 2 00 13 A2 00 40 33 7B B7 *** 00 00 *** RaspberryPi -00dB 0 12 1 3 00 13 A2 00 40 62 8D 12 --- FF FE --- Station 3 ? 0 0 0 4 00 13 A2 00 40 32 09 3B --- DF C3 --- Station 4 -56db 35 0 0 5 00 13 A2 00 40
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Datei
interrupt.c
(1<<KEY1)) { event_on (); uart_puts("B1s"); uart_puts("\n"); event_off (); } if ( get_key_short (1<<KEY2)) { event_on (); uart_puts("B2s"); uart_puts("\n"); event_off (); } if ( get_key_short (1<<KEY3)) { event_on (); uart_puts("B3s"); uart_puts("\n"); event_off (); } if ( get_key_long (1<<KEY0)) { event_on (); uart_puts("B0l"); uart_puts("\n"); event_off (); } if ( get_key_long (1<<KEY1)) { event_on (); uart_puts("B1l"); uart_puts("\n"); event_off (); } if ( get_key_long (1<<KEY2)) { event_on (); uart_puts("B2l"); uart_puts
in „mega8 PWM nur OCR1B, OCR1A tot“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Tastatur.lst
2 // Target : 2313 3 // Crystal: 8.0000Mhz 4 // 5 // PB0..3 = Keypad column 0..3 (at init: output, low) 6 // PB4..6 = Keypad row 0..2 ( at init: input, with int. pull ups) 7 // PD0 = RxD 8 // PD1 = TxD
in „erzeugter Code von ICCAVR ineffizient“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.c
from buffer */ if ( UCSR0B & ( 1 << RXB80 ) ) { data = UDR0; rx_buff[rx_in] = ( data | 0x0100 ); } else { data = UDR0; rx_buff[rx_in] = data; } rx_in = i; } void uart_putc ( uint16_t ch ) { uint8_t i = tx_in; ROLLOVER( i, TX0_
in „Nochmal RS485 Kommunikation“ · Mikrocontroller und Digitale Elektronik ·
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Datei
RX62N_Test.lst
MOV.L #00000002H,R2 000000B2 66A1 MOV.L #0000000AH,R1 000000B4 05rrrrrr A BSR _R_IO_PORT_WriteAll 000000B8 EC75 MOV.L [R7],R5 000000BA 61A5 CMP #0AH,R5 000000BC 3Brrrr W BNE L28 000000BF L31: 000000BF F86402 MOV.B #02H,
in „Erfahrung RX62N Renesas“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
= 0; volatile uint8_t stringRxFlag = 0; volatile uint8_t rxLen=0; void appendSerial(char c); void serialWrite(char c[]); char getChar(void); char peekChar(void); int main(void) { DDRB=(1<<PB0)|(1<<PB1)|(1<<PB2)|(1<<PB5); DDRD=(1<<
in „ATmega 328p Uart“ · Mikrocontroller und Digitale Elektronik ·
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PDF
trxcomrj45avr-netiop24-29.pdf
75 8 CHS μ NOTE:Connect CHS GND to PCB ground. GROUND 8 75 8 Ω TRJ0018 TRJ0024 TRANSMIT TR1CT:2T 1CT:1.41CT TD+ 1 1 TX+ TD+ 1 1 TX+ CT 4 CT 4 TD- 2 Ω 2 TX- TD- 2 2 TX- Y RD+ 3 3 RX+ H R1CT:1CT H E P RD+ 3 3 RX+ D P D T S O CT 5 S E CT 5 T E I L D RD- 6 6 RX- B S RD- 6 6 RX- A S 1CT:1 A C C RECEIVE
in „ATxMegaBoard 4“ · Markt ·
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PDF
LS4000_Routing_Report.pdf
pcs_top_0/pcs_inst_0 to pcie/u1_pcs_pipe/pipe_top_0/SLICE_4219: Name Fanout Delay (ns) Site Resource C2OUT_DEL --- 0.979 *.FF_RXI_CLK_0 to *A.FF_RX_D_0_2 pcie/u1_pcs_pipe/pcs_top_0/pcs_inst_0 (from pcie/pclk) ROUTE 1 1.994 *A.FF_RX_D_0_2 to R46C62B.M0 pcie/u1_pcs_pipe/RxData_0_in[2] (to pcie/pclk) ----
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PDF
LS4000_Routing_Report.pdf
pcs_top_0/pcs_inst_0 to pcie/u1_pcs_pipe/pipe_top_0/SLICE_4219: Name Fanout Delay (ns) Site Resource C2OUT_DEL --- 0.979 *.FF_RXI_CLK_0 to *A.FF_RX_D_0_2 pcie/u1_pcs_pipe/pcs_top_0/pcs_inst_0 (from pcie/pclk) ROUTE 1 1.994 *A.FF_RX_D_0_2 to R46C62B.M0 pcie/u1_pcs_pipe/RxData_0_in[2] (to pcie/pclk) ----
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Datei
rpn_boris_A328_v1.12.bas
Rx = Ry / Rx Call Rolldown Case K_einsdrchx ' 1/x Lstx = Rx Rx = 1.0 / Rx Case K_enter ' "Enter" If Z_inputflag = 0 Then Call Enter Call Beepme End If ' Call Enter Case K_fix2 ' Umschalten Anzeigemodus Eng -> Fix2 -> H:M ... Wrk_fix_flag = Ee_fixflag + 1 If Wrk_fix_flag > 2 Then Wrk_fix_flag = 0 Ee_fixflag = Wrk_fix_flag Call Beepme Case K_roll ' Roll Down Lstx = Rx Rx = Ry Ry = Rz Rz = Rt Rt = Lstx Case K_store
in „Noch ein Taschenrechner auf ATMega Basis“ · Projekte & Code ·
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Datei
rpn_boris_A328_v1.13.bas
Rx = Ry / Rx Call Rolldown Case K_einsdrchx ' 1/x Lstx = Rx Rx = 1.0 / Rx Case K_enter ' "Enter" If Z_inputflag = 0 Then Call Enter Call Beepme End If ' Call Enter Case K_fix2 ' Umschalten Anzeigemodus Eng -> Fix2 -> H:M ... Wrk_fix_flag = Ee_fixflag + 1 If Wrk_fix_flag > 2 Then Wrk_fix_flag = 0 Ee_fixflag = Wrk_fix_flag Call Beepme Case K_roll ' Roll Down Lstx = Rx Rx = Ry Ry = Rz Rz = Rt Rt = Lstx Case K_store
in „Noch ein Taschenrechner auf ATMega Basis“ · Projekte & Code ·
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Datei
rpn_boris_A328_v1.13.bas
Rx = Ry / Rx Call Rolldown Case K_einsdrchx ' 1/x Lstx = Rx Rx = 1.0 / Rx Case K_enter ' "Enter" If Z_inputflag = 0 Then Call Enter Call Beepme End If ' Call Enter Case K_fix2 ' Umschalten Anzeigemodus Eng -> Fix2 -> H:M ... Wrk_fix_flag = Ee_fixflag + 1 If Wrk_fix_flag > 2 Then Wrk_fix_flag = 0 Ee_fixflag = Wrk_fix_flag Call Beepme Case K_roll ' Roll Down Lstx = Rx Rx = Ry Ry = Rz Rz = Rt Rt = Lstx Case K_store
in „Noch ein Taschenrechner auf ATMega Basis“ · Projekte & Code ·
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PDF
F407-IoTBoard-Schematics.pdf
FSMC_A2 3 A1 D14 36 FSMC_D13 RO VCC R R R R A2 D13 485_RE 2 RE B 7 B 106 104 104 104 106 104 FSMC_A3 2 A3 D12 35 FSMC_D12 3 DE A 6 R R R R FSMC_A4 1 A4 D11 32 FSMC_D11 485_RX 4 DI GND 5 R25 120R . . . . U8 FSMC_A5
in „STM32 Nucleo welches Board am besten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
B150XG01.pdf
Designation For Lamp Connector Manufacturer JST Type / Part Number BHSR-02VS-1 Mating Type / Part Number SM02B-BHSS-1-TB 5.2 Signal Pin Pin# Signal Name Pin# Signal Name 1 GND 2 VDD 3 VDD 4 VEDID 5 NC 6 CLKEDID 7 DATAEDID 8 RxIN0- 9 RxIN0+ 10 GND 11 RxlN1- 12 RxlN1+ 13 GND 14 RxIN2- 15 RxIN2+ 16 GND 17 RxCLKIN
in „15" XGA Display an Computer anschließen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
BLMC.c
= 200) // Mehr als 200 Flanken am AIN { OCR2A = rx_pwm; // PWM der Ausgänge wird auf rx_pwm gesetzt OCR2B = rx_pwm; OCR0B = rx_pwm; } } else { if (PIND & (1<<PD7) ){ // Jumper 1 HIGH -> Motorbremsbetrieb UH_OFF ; VH_OFF ; WH_OFF; // P Kanal aus
in „Eingang am AVR schalten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Funkmodul.pdf
) FM-RX2-XXX RX2 receiver: fig. 3: RX2 block diagram Pin description RF in (pin 1) 50Ω RF input from the antenna, it is DC isolate internally. (see antenna section of RX2 applications note for suggested antenna
in „Funkübertragung über uC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MS-SLR.asm
already full? push r16 breq us_rxc_ex ;unfortunately yes! -> exit, received data is lost ldi r31,high(rx_buffer) ;load adress for storing the received byte into Z ldi r30,low(rx_buffer) add r30,r16 brcc us_rxc_2 inc r31 us_rxc_2: st Z,r17 ;store received byte in the RX buffer pop r16 ;increase the number
in „UART verursacht Reset(?)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
manual_XT-v.005.pdf
10 Revision 0.05 Connect Tech Xtreme/104 User’s Manual Table 1: Port Address Settings Jumper Ports 2 1 0 1 2 3 4 5 6 7 8 Status on on on 150 158 160 168 170 178 180 188 190 on on off 250 258 260 268 270 278 280 288 290 on off on 1A0 1A8 1B0 1B8 1C0 1C8 1D0 1D8 1E0 on off off 2A0 2A8 2B0 2B8 2C0 2C8
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PDF
nRF2401rev1_1.pdf
mA I Supply current two channels 250kbps 23 mA VDD IVDD Supply current two channels 1000kbps 25 mA RX SENS Sensitivity at 0.1%BER (@250kbps) -90 dBm RX SENS Sensitivity at 0.1%BER (@1000kbps) -80 dBm C/ICO Cst Co-channel 8) 10/4 dB C/I1ST 1 Adjacent Channel Selectivity C/I 1MHz 8) -20/0 dB C/I2ND 2 Adjacent Channel Selectivity C/I 2MHz 8) -37/-20 dB C/I 3 Adjacent Channel Selectivity C/I 3MHz 8) -43/-30 dB 3RD RX B Blocking Data Channel 2 -45/-41 dB 1) Usable band is determined by local regulations 2) The crystal frequency may be
in „Externe Antenne für Funkmodul TRW24G“ · HF, Funk und Felder ·
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Datei
rpn_boris_A328_v1.14.bas
Rx = Ry / Rx Call Rolldown Case K_einsdrchx ' 1/x Lstx = Rx Rx = 1.0 / Rx Case K_enter ' "Enter" If Z_inputflag = 0 Then Call Enter ' Call Beepme End If Call Beepme Case K_fix2 ' Umschalten Anzeigemodus
in „Noch ein Taschenrechner auf ATMega Basis“ · Projekte & Code ·
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Datei
rpn_boris_A328_v1.14.bas
Rx = Ry / Rx Call Rolldown Case K_einsdrchx ' 1/x Lstx = Rx Rx = 1.0 / Rx Case K_enter ' "Enter" If Z_inputflag = 0 Then Call Enter ' Call Beepme End If Call Beepme Case K_fix2 ' Umschalten Anzeigemodus
in „Noch ein Taschenrechner auf ATMega Basis“ · Projekte & Code ·
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Datei
rpn_boris_A328_v1.15.bas
Rx = Ry / Rx Call Rolldown Case K_einsdrchx ' 1/x Lstx = Rx Rx = 1.0 / Rx Case K_enter ' "Enter" If Z_inputflag = 0 Then Call Enter ' Call Beepme End If Call Beepme Case K_fix2 ' Umschalten Anzeigemodus
in „Noch ein Taschenrechner auf ATMega Basis“ · Projekte & Code ·
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PDF
STM32-P207-P407_rev_D.pdf
/SPI3_MOSI/DCMI_D10/I2S3_SDI2S3_SD PB5 SOFT_SDA 61 VSS_7 PB6/I2C1_SCL/TIM4_CH1/CAN2_TX/OTG_FS_INTN/DCMI_D5/USART1_TX DCMI_D5 B1_1/B1_0 51 VSS_6 PB7/I2C1_SDA/FSMC_NL/DCMI_VSYNC/USART1_RX/TIM4_CH237 DCMI_VSYNC HN1x3(B1_1:Open;B1_0:Close) 3.3V_A 16 VSS_5 139 CAN1_RX C75 FET2 G 38 VSS_4 PB8/TIM4_CH3/SDIO_D4/TIM10_CH1/DCMI_D6/OTG_FS_SCL/ETH_MII_TXD3/I2C1_SCL/C140_RX CAN1_TX PB9 1 2 3 10uF/6.3V/0805 107 PB9/SPI2_NSS/I2S2_WS/TIM4
in „Mit STM32F4 einen Laser ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Protokoll_Buffer_test.bas
Print "Programm gestartet" Print "Progamm Portc" Portb = B I = 1 Rx_index_in = 1 Rx_index_out = 1 Protokol_index = 1 Protokol_flag = 0 Buffer_overrun = 0 Byte_select = 1 Start_flag = 0 For I = 1 To 64 Rx_buffer(i) = &HFF Next Print "Autos" I = 1 'Waitms 5 'Portb = B 'Rotate B , Left Do If Rx_index_out = 200 Then Rx_index_out = 1 End If Print Rx_buffer(rx_index_out) ; " Bufferoverrun " ; Buffer_overrun Print " rx_in " ; Rx_index_in ; " "; Print " rx_out " ; Rx_index_out
in „Ringbuffer Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
/********************************************* This program was produced by the CodeWizardAVR V1.0.2.1b Standard Automatic Program Generator © Copyright 1998-2001 Pavel Haiduc, HP InfoTech S.R.L. http://infotech.ir.ro e-mail:dhptechn@ir.ro , hpinfotech@xnet.ro Project : Rollenpruefstand Version : 1.0
in „Hilfe in CodeVision! RX INTERRUPT“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.c
ISR (USART_RX_vect) { uint8_t i = rx_in; uint8_t data, res; ROLLOVER( i, RX0_SIZE ); if( i == rx_out ) // buffer overflow { UCSR0B &= ~( 1 << RXCIE0 ); // disable RX interrupt return; } /* Get 9th bit, then data from buffer */ res = UCSR0B; if ( res & ( 1 << RXB80 ) ) { data = UDR0; ATOMIC_BLOCK(ATOMIC_FORCEON) { rx_buff[rx_in] = ( data | 0x0100 ); } } else { data = UDR0; rx_buff[rx_in] = data; } rx_in = i; } void uart_putc ( uint16_t
in „UART 9 Bit Modus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
W5500_ds_v110e.pdf
(2KB) . 11011 (0x1B) Socket 6 RX Buffer Socket 4 Socket 7 RX Buffer 0x9E2C RX Buffer (2KB) 11010 (0x1A) Socket 6 TX Buffer 0x2000 . Socket 3 11001 (0x19) . Socket 6 Register 0x1800RX Buffer (2KB) 0x0FFF
in „Schaltung W5500“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Qtouch.c
Ports initialization // Port A initialization // Func7=In Func6=In Func5=In Func4=In Func3=In Func2=In Func1=In Func0=In // State7=T State6=T State5=T State4=T State3=T State2=T State1=T State0=T PORTA=0x00; DDRA=0x00; // Port B initialization // Func7=In Func6=In Func5=In Func4=In Func3=In Func2=In
in „qtouch - sekt oder selters“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Qtouch.c
Ports initialization // Port A initialization // Func7=In Func6=In Func5=In Func4=In Func3=In Func2=In Func1=In Func0=In // State7=T State6=T State5=T State4=T State3=T State2=T State1=T State0=T PORTA=0x00; DDRA=0x00; // Port B initialization // Func7=In Func6=In Func5=In Func4=In Func3=In Func2=In
in „Anfänger Frage: Qtouch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RFM24W.PDF
— ±0.5 — dB 2 ±1-Ch Offset Selectivity C/1-CH Desired Ref Signal 3 dB above sensi—iv- –50 — dB ±2-Ch Offset Selectivity C/I ity, BER < 0.1%. Interferer and des—red –52 — dB 2-CH modulated with 2.4 kbps ΔF = 1.2
in „Small Antenna Design bei 433 MHz“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MS-SLR.asm
already full? breq us_rxc_ex ;unfortunately yes! -> exit, received data is lost push r16 ldi r31,high(rx_buffer) ;load adress for storing the received byte into Z ldi r30,low(rx_buffer) add r30,r16 brcc us_rxc_2 inc r31 us_rxc_2: st Z,r17 ;store received byte in the RX buffer pop r16 ;increase the number
in „UART verursacht Reset(?)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TX2A-433-64.pdf
harmonic, > -60dBc Receiver - RX2A Single conversion FM superhet SAW front end filter gives >50dB image rejection Operation from 2.7V to 16V @ 12mA Built-in regulator for improved stability and supply noise rejection -101dBm sensitivity
in „Funkverbindung Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rpn_boris_A328_v2.8.bas
Rx = Ry / Rx Call Rolldown Case K_einsdrchx ' 1/x Lstx = Rx Rx = 1.0 / Rx Case K_enter ' "Enter" If Z_inputflag = 0 Then Call Enter Call Beepme End If ' Call Enter Case K_fix2 ' Umschalten Anzeigemodus Eng -> Fix2 -> H:M ... Wrk_fix_flag = Ee_fixflag + 1 If Wrk_fix_flag > 2 Then Wrk_fix_flag = 0 Ee_fixflag = Wrk_fix_flag Call Beepme Case K_roll ' Roll Down Lstx = Rx Rx = Ry Ry = Rz Rz = Rt Rt = Lstx Case K_store
in „Noch ein Taschenrechner auf ATMega Basis“ · Projekte & Code ·
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Datei
adressierungstest.bas
Const Can_rx_id = &H14 Const Can_rx_len = &H15 Const Can_rx_buf0 = &H16 Const Can_rx_buf1 = &H17 Const Can_rx_buf2 = &H18 Const Can_rx_buf3 = &H19 Const Can_rx_buf4 = &H1A Const Can_rx_buf5 = &H1B Const Can_rx_buf6
in „Memory Mapping?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rpn_boris_A328_v2.7.bas
Rx = Ry / Rx Call Rolldown Case K_einsdrchx ' 1/x Lstx = Rx Rx = 1.0 / Rx Case K_enter ' "Enter" If Z_inputflag = 0 Then Call Enter Call Beepme End If ' Call Enter Case K_fix2 ' Umschalten Anzeigemodus Eng -> Fix2 -> H:M ... Wrk_fix_flag = Ee_fixflag + 1 If Wrk_fix_flag > 2 Then Wrk_fix_flag = 0 Ee_fixflag = Wrk_fix_flag Call Beepme Case K_roll ' Roll Down Lstx = Rx Rx = Ry Ry = Rz Rz = Rt Rt = Lstx Case K_store
in „Noch ein Taschenrechner auf ATMega Basis“ · Projekte & Code ·
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Datei
DCF77_Mega88.c
include <stdio.h> // Declare your global variables here #define DATA_REGISTER_EMPTY (1<<UDRE0) #define RX_COMPLETE (1<<RXC0) #define FRAMING_ERROR (1<<FE0) #define PARITY_ERROR (1<<UPE0) #define DATA_OVERRUN (1<<DOR0) #define Bit0 0 #define Bit1 1 #define Sync 2 #define Error 3 #define None 4 volatile unsigned
in „DCF77 Bit0 ermitteln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
176141-da-01-en-DS_1621_1621S.pdf
D L 6 D 5 D D P D 7 P T 6 D D S D 2 K 1 7 A 1 C A 6 K 1 D 1 d S A S A 2K 2 K R D R D A 1C A 1 C 0 0 SA 0 S A A A D D D D 1 1 1 A S A S D D 2 S S E 2 E 2 A R T A E T D Y D T D B D B 3 B 3 Y 1 A 1 D D A D S A 4 A 4 M 0 0 D D D E D 5 5 0 T T 0 E P D D E R AT P T 6 6 1 P T 1 ER S D D R R S R ET 7 7 RS 1 D 1 D 2 1 A 6 K A 6K A 6C ) A 2 A 6K S A SA SA E 1 C 1C 0 D 0 D 0 D T 0 S A 0 DA C C C U C D C 1 1 1 O 1 1 C E C E C E C C E C E 2 Y 2 Y 2 Y E 2 Y 2 Y C B C B C B P C B C B P ) 3 D 3 D 3 D L 3 D ) 3 D P T T
in „Temperatursensor DS1621 über I²C ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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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
in „Arduino Blue Pill CAN bibliothek“ · Mikrocontroller und Digitale Elektronik ·
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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
in „Arduino Blue Pill & CAN mit SN65HVD230“ · Mikrocontroller und Digitale Elektronik ·
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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
in „Arduino Blue Pill & CAN mit SN65HVD230“ · Mikrocontroller und Digitale Elektronik ·
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Datei
OSZI.asm
UDRE ; Warten bis UDR für das nächste rjmp serout ; Byte bereit ist out UDR, temp ret COMMANDs: in RX, UDR cpi RX, 0 ;0 Messung starten brne com1 rcall ADC_START ret com1: cpi RX, 1 ;1 Messung stoppen brne com2 clr temp out ADCSRA, temp; ADC STOP cbr Flags, 1<<ADC_RUN ret com2: cpi RX, 2 ;2 Reset brne
in „einfaches DIGITAL- Oszilloskop (800 Datenpunkte) Assembler“ · Projekte & Code ·
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PDF
RDA5851S.pdf
16 Bit Mode Instructions The following instructions are supported: Name 15 .. 11 10 9 8 7 6 5 4 3 2 1 0 ADDIU2 0 1 0 0 1 rx imm8 ADDIU3 0 1 0 0 0 rx ry 0 imm4 ADDIUPC 0 0 0 0 1 rx imm8 ADDIU2SP 0 1 1 0 0 0 1 1 imm8 ADDIU3SP 0 0 0 0 0 rx imm8 ADDU3 1 1 1 0 0 rx ry rz 0 1 AND 1 1 1 0 1 rx ry 0 1 1 0