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PDF
Schematic.pdf
C11 C12 C13 C14 C15 C16 C17 C18 C19 C20 b b b b b b b b b 1 1 1 1 1 1 1 1 1 1 2 2 2 2 2 2 2 2 2 2 3 3 3 PF4SYNC 50 100nF 100nF 100nF 100nF 100nF 100nF 100nF 100nF 100nF 100nF 100nF 100nF b b b b b b b b b b b b b b b b b b b b b b b PF5SYNC
in „Problem mit CD4050B als Level Shifter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
stepper_motor_ref_design_an155.pdf
overshoot voltage when the unipolar drive. transistor is turned off. The four diodes D1-D4 and the D5 D1 D2 D3 D4 +12V A+ A- B+ B- Q1 Q2 Q3 Q4 Figure 2. Unipolar Stepper Motor Drive with Zener Clamp 4 Rev. 1.0 AN155 +VM Q1 Q2 Q3 Q4 Q5 Q6 Q7 Q8 Figure 3. Bipolar Stepper Motor Drive The performance differences
in „Schrittmotorrampe für Konstante Beschleunigung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
p16f15224.inc
009C' ADCON0 EQU H'009D' ADCON1 EQU H'009E' ADACT EQU H'009F' ; Bank 2. ; RC0I2C EQU H'010E' RC1I2C EQU H'010F' RC1REG EQU H'0119' RCREG EQU H'0119' RCREG1 EQU H'0119' TX1REG EQU H'011A' TXREG EQU H'011A' TXREG1 EQU H'011A' SP1BRG EQU H'011B' SP1BRGL EQU H'011B' SPBRG EQU
in „PIC MPMASMX PIC-AS“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
circular buffers * for buffering received and transmitted data. * * The UART_RX_BUFFER_SIZE and UART_TX_BUFFER_SIZE constants define * the size of the circular buffers in bytes. Note that these constants must be a power of 2. * You may need to adapt this constants to your target and your application by
in „Zu viele Pointer - brauche Hilfe.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
circular buffers * for buffering received and transmitted data. * * The UART_RX_BUFFER_SIZE and UART_TX_BUFFER_SIZE constants define * the size of the circular buffers in bytes. Note that these constants must be a power of 2. * You may need to adapt this constants to your target and your application by
in „ATMega nach ADC BascomPRG stk500 WEG!“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
circular buffers * for buffering received and transmitted data. * * The UART_RX_BUFFER_SIZE and UART_TX_BUFFER_SIZE constants define * the size of the circular buffers in bytes. Note that these constants must be a power of 2. * You may need to adapt this constants to your target and your application by
in „SHT11 misst Mist“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
circular buffers * for buffering received and transmitted data. * * The UART_RX_BUFFER_SIZE and UART_TX_BUFFER_SIZE constants define * the size of the circular buffers in bytes. Note that these constants must be a power of 2. * You may need to adapt this constants to your target and your application by
in „UART funktioniert nicht!“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
circular buffers * for buffering received and transmitted data. * * The UART_RX_BUFFER_SIZE and UART_TX_BUFFER_SIZE constants define * the size of the circular buffers in bytes. Note that these constants must be a power of 2. * You may need to adapt this constants to your target and your application by
in „Heizungssteuerung mit ATMEGA 32“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
circular buffers * for buffering received and transmitted data. * * The UART_RX_BUFFER_SIZE and UART_TX_BUFFER_SIZE constants define * the size of the circular buffers in bytes. Note that these constants must be a power of 2. * You may need to adapt this constants to your target and your application by
in „Modul antwortet nur nach Neuprogrammierung des Controllers“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
circular buffers * for buffering received and transmitted data. * * The UART_RX_BUFFER_SIZE and UART_TX_BUFFER_SIZE constants define * the size of the circular buffers in bytes. Note that these constants must be a power of 2. * You may need to adapt this constants to your target and your application by
in „Reset bei serieller Kommunikation“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
circular buffers * for buffering received and transmitted data. * * The UART_RX_BUFFER_SIZE and UART_TX_BUFFER_SIZE constants define * the size of the circular buffers in bytes. Note that these constants must be a power of 2. * You may need to adapt this constants to your target and your application by
in „[AVR-GCC] makefile SRC und #include“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
circular buffers * for buffering received and transmitted data. * * The UART_RX_BUFFER_SIZE and UART_TX_BUFFER_SIZE constants define * the size of the circular buffers in bytes. Note that these constants must be a power of 2. * You may need to adapt this constants to your target and your application by
in „ATmega168 Bootloader“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
circular buffers * for buffering received and transmitted data. * * The UART_RX_BUFFER_SIZE and UART_TX_BUFFER_SIZE constants define * the size of the circular buffers in bytes. Note that these constants must be a power of 2. * You may need to adapt this constants to your target and your application by
in „fleurys I2C + UART lib halten in Kombination die Hauptschleife an!“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
circular buffers * for buffering received and transmitted data. * * The UART_RX_BUFFER_SIZE and UART_TX_BUFFER_SIZE constants define * the size of the circular buffers in bytes. Note that these constants must be a power of 2. * You may need to adapt this constants to your target and your application by
in „Inkonsistentes Verhalten einfachem avr-gcc-codes“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
circular buffers * for buffering received and transmitted data. * * The UART_RX_BUFFER_SIZE and UART_TX_BUFFER_SIZE constants define * the size of the circular buffers in bytes. Note that these constants must be a power of 2. * You may need to adapt this constants to your target and your application by
in „RFM70 Timing Problem?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
circular buffers * for buffering received and transmitted data. * * The UART_RX_BUFFER_SIZE and UART_TX_BUFFER_SIZE constants define * the size of the circular buffers in bytes. Note that these constants must be a power of 2. * You may need to adapt this constants to your target and your application by
in „Float via UART an PC senden“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MAIN.C
1 : Set Transmission Request // DATAA = 1 : Transfer Data A register // DATAB = 1 : Transfer Data B register IF2CREQ0 = buffer; // Start transfer if( IF2MCTR0_MSGLST ) // check whether or not a message was lost { IF2MCTR0_MSGLST = 0; // Clear MSGLST Flag IF2CMSK0 = 0x90; // Prepare Interface Command
in „program CANbus interface on fujitsu MB96340 Series with id filtering“ · Projekte & Code ·
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PDF
0269394001287118911.pdf
1 2 3 4 C1 1 2 3 D1 +3V3 +3V3 BOOT0 J4 VLCD J1 S1 P1 100n PMEG4005ET B1 R1 1 R2 1 +3V3 +5V +3V3 10k PB2 2 BOOT0 2 D2 100k 3 100k 3 +3V3 D3 D PMEG4005ET BATT 3V 4 BOOT0=1 J5 D BOOT1 5 J2 J3 VDD GND +3V3 L1
in „Quarz an STM32F103 / Widerstand?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BK18_1.1.pdf
a proprietary demodulation system insensitive to the data’s mean value. J1 GND 1 CV1 + T Q13 +Vcc 2 1 ∅ 1 ∅ ∅ 1 1 Vcc 6.8K TXD ∅V P.A. TX SAW Q12 3 LPF T/R OSC. TXE J2 Q11 4 MOD. 6.8K BPF 6.8K 5 RXE 0.7V + R RX SAW 3 R MON ∅V OSC. LDO S1 S2 +R +Vcc 6 AMP. RV1 RXD 22K 7 GND BPF MIX Q8 8 Vcc CER.FILT
in „Sammelbestellung One-RF 868 Tiny Transciever (ehem. addLink)“ · Markt ·
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PDF
lnix-s-a0001298418-1.pdf
In/Out, 3 Flow Control/Handshake/PIO pins, reset input, +3.3V power, and signal ground. The Table 2 - Ethernet Interface Signals serial pins and CP pins are 5V tolerant. RESET and Signal Name DIR Contact Primary Function Power are 3.3V tolerant. TX+ Out 1 Transmit Data + TX- Out 2 Transmit Data – RX
in „[V] 1Stück gebrauchtes XPORT-EDGE_Seriell- LAN Modul (12€)“ · Markt ·
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PDF
lnix-s-a0001298418-1.pdf
In/Out, 3 Flow Control/Handshake/PIO pins, reset input, +3.3V power, and signal ground. The Table 2 - Ethernet Interface Signals serial pins and CP pins are 5V tolerant. RESET and Signal Name DIR Contact Primary Function Power are 3.3V tolerant. TX+ Out 1 Transmit Data + TX- Out 2 Transmit Data – RX
in „[V] 1Stück neues Lantronix_XPORT_Seriell- LAN Modul (18€)“ · Markt ·
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PDF
ADAFRUIT_746_ENG_TDS.pdf
microcontroller that can receive TTL serial at 9600 baud. Connect VIN to +5V, GND to Ground, RX to digital 2 and TX to digital 3. Next up, download the Adafruit GPS library. This library does a lot of the 'heavy lifting' required for receiving data from GPS modules, such as reading the streaming data in a background
in „PPS Pin aktivieren - GPS MTK3339“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LENOVO_THINKPAD_YOGA_900-13ISK_LCFC_NM-A411_BYG40_Rev1.0.pdf
[1] C45 EDP_TX1_DN 24 EDP_COMP R1 1 2 24.9_0402_1% 33 DDI1_DP1 F53 DDI1_TXP[1] EDP_TXP[1] A45 EDP_TX1_DP 24 33 DDI1_DN2 G53 DDI1_TXN[2] EDP_TXN[2] B45 EDP_TX2_DN 24 D 33 DDI1_DP2 DDI1_TXP[2] EDP_TXP[2] EDP_TX2_DP 24
in „Notebook Leistungsteil reparatur“ · Mikrocontroller und Digitale Elektronik ·
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PDF
elabel20-a.pdf
Applikationsbeispiel APPLIKATIONSBEISPIEL:RS-485INTERFACE Mit einem externen Umsetzer (z.B. SN65HVD72) kann das +3,3V 2 + VDD eLABEL an einen 2-Draht RS- 10K 8 10µF 2Vcc 10 485 Bus angeschlossen werden. S A 7 1 RxD B 6 D R EA eLABEL Somit können grosse 8 1,5K H D 4 11 TxD S 7 5 3 Entfernungen
in „ePaper von EA - Auswahl Font“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2240_2241db.pdf
Interface xD EP0 TX EP0 RX BUS INTFC RAM 4K total EP1 RX g R EP1 TX V EP2 RX 1 EP2 TX L XDATA BRIDGE P + BUS ARBITER PWR_FET1 GPIO10/CARD_PWR GPIOs 8 pins RAM 10KB ADDR Program Memory ROM MAP I/O Bus 64KB Clock Generation
in „Schaltplan USB2241“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MORSE.ASM
end of string sjmp main signal_on: setb tx_on ret signal_off: clr tx_on ret morsestring: pop dph ;get return address, pop dpl ;point to string sjmp _mst2 _mst1: acall morsechar ;send byte inc dptr ;point to next byte _mst2: clr a movc a, @a+dptr
in „"Hilfe beim Programmieren" !“ · Mikrocontroller und Digitale Elektronik ·
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Datei
can_param_S12XEP100.h
{ byte tx0 :1; /* transmitter buffer 0 select */ byte tx1 :1; /* transmitter buffer 1 select */ byte tx2 :1; /* transmitter buffer 2 select */ byte :5; /* not used */ } Bits; } tCANTBSEL; #define TX0 (0x01) #define
in „Entwicklung von CAN-bsierten Applikationen - CAN-Software-Stacks“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LS_328_ARD.ino
lcd_nibble(char c) // 4-bit-Wert ausgeben { char temp; temp = PORTB & 0xc3; // Datenleitungen an PortB.2 -> PortB.5 temp |= ((c>>2) & 0x3c); PORTB = temp; lcd_impuls(); } void lcd_out(char z,char mode) // Ausgabe von Daten (mode==1) oder CMDs (mode==0) { if(mode) PORTC |= LCD_CMD; else PORTC &= ~LCD_CMD
in „Stoppuhr – Geschwindigkeit – Pulsweite mit Atmega88“ · Projekte & Code ·
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Datei
igep_amixer.txt
: Playback 12 [67%] [0.00dB] [on] Front Right: Playback 12 [67%] [0.00dB] [on] Simple mixer control 'DAC2 Digital Coarse',0 Capabilities: pvolume penum Playback channels: Front Left - Front Right Limits: Playback 0 - 2 Mono: Front
in „IgepV2 Sound mit Alsa (von GSM-Modem)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
arm.pdf
GND GND GND GND GND GND GND GND L3L3 CR4 3.3V analog power supply N2N2 1.25V core voltage for FPGA 100MHz/2000R/0.15A 0 150 mA max. LM1117DT-ADJ 0.8A max. 3 4 B VCC PILPIL301 PIR4PIR402 AVCC VCC PIVIN3 OUTIN204 1V25 B R2 D P2 COR A COR6 2 COC7 2 100 2.5V analog reference
in „ARM Board Layout“ · Platinen ·
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Datei
TEM_uni_5_adc_stream.vhd
FT232RL_start_snd, start_rcv => FT232RL_start_rcv, byte_snd => FT232RL_byte_snd, byte_rcv => FT232RL_byte_rcv, tx => FT232RL_TX, rx => FT232RL_RX, ready => FT232RL_ready); AD7356_12: ADUM_AD7356 port map( clk80 => clk80, data_ready => AD7356_12_data_ready, data_a => AD7356_1_data, data_b => AD7356_2_data, AD7356
in „Wie Clockdomain crossing für FT232H, wie debuggen?“ · FPGA, VHDL & Co. ·
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Datei
TEM_uni_5_adc_stream.vhd
FT232RL_start_snd, start_rcv => FT232RL_start_rcv, byte_snd => FT232RL_byte_snd, byte_rcv => FT232RL_byte_rcv, tx => FT232RL_TX, rx => FT232RL_RX, ready => FT232RL_ready); AD7356_12: ADUM_AD7356 port map( clk80 => clk80, data_ready => AD7356_12_data_ready, data_a => AD7356_1_data, data_b => AD7356_2_data, AD7356
in „Wie Clockdomain crossing für FT232H, wie debuggen?“ · FPGA, VHDL & Co. ·
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PDF
EN_UM_N32G45x_Series_User_Manual_V3.pdf
000000B3 [31:0] @0xC 0xC / 000000B3 0x0 / B1B0 1: R B1B0 [15:0] @0x0, W B0 [7:0] @0x0 0x0 / B0 0x2 / B3B2 2: R B3B2 [15:0] @0x2, W B2 [7:0] @0x1 0x1 / B2 16 8 4 0x4 / B5B4 3: R B5B4 [15:0] @0x4, W B4 [7:0] @0x2 0x2 / B4 0x6 / B7B6 4: R B7B6 [15:0] @0x6, W B6 [7:0] @0x3 0x3 / B6 0x0 / B1B0 1: R B1B0 [15:0] @0x0, W B1B0 [15:0] @0x0 0x0 / B1B0 0x2 / B3B2 2: R B3B2 [15:0] @0x2, W B3B2 [15:0] @0x2 0x2 / B3B2 16
in „ALLPOWERS S2000 PRO Reparaturhilfe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2117592.pdf
) 802.11g mode (OFDM: IEEE 802.11g) Transmission Speed 802.11b mode 11Mbps, 5.5Mbps, 2Mbps, 1Mbps 802.11g mode 54Mbps, 48Mbps, 36Mbps, 24Mbps, 18Mbps, 12Mbps, 9Mbps, 6Mbps Tx Power 802.11b mode: 16.5dBm, +/-1dB 802.11g mode: 15.0dBm, +/-1dB Using nominal production
in „CX870-31B Jukeblox SMCS Microchip Firmware Update“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SIM508EVB_UserGuide.pdf
EVB_UGD_V1.01 Page 4 of 25 SIM508 EVB User Guide SIMCOM 1. SIM508 EVB overview Figure 1: TOPview Figure 2: BOTTOM view SIM508-EVB_UGD_V1.01 Page 5 of 25 SIM508 EVB User Guide SIMCOM A: 80pin connector, SIM508 module interface B1-B5: LED indicator B1: VBAT ON/OFF B2: GSM net status B3: The GSM part of the module ON/OFF status B4: 1PPS output for GPS part B5: GPS TX/RX status C1-C9: Key control for various functions C1: GSM part power-up / power down control (button Z1) C2: VBAT ON/OFF control (shifter S2) C3: VCHG ON/OFF control
in „[V] SIMCOM GSM/GPRS & GPS Modul incl. Eval-Board“ · Markt ·
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Datei
0217b-DS10-SD-sektor_auslesen-als_antwort_senden.c
~SWRST; // Initialize USART state machine // IE1 |= URXIE1 + UTXIE1; // URXIE1 + // Enable USART1 TX interrupt } void E32_konfiguration_festlegen(void) { txbuffer[0] = 0xC0; // sichert die Parameter nach Stromausfall txbuffer[1] = 0x44; // Adresse oberes Byte G3 LP161 txbuffer[2] = 0x44; // Adresse
in „512 Byte-Sektor einer SD-Karte mit E32-868T drahtlos übertragen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
m1306b.pdf
. However, the use of TX, RX, CTS and RTS signals is mandatory, which is not the case for DTR, DSR, DCD and RI signals which can be not used. 7.3.2 Autobauding Mode The autobauding mode allows the M1306B to detect the baud rate
in „[V] gebrauchtes GSM-Modem von Wavecom Fastrack“ · Markt ·
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Datei
wp.c
}; // Stop1 char kue1[6+1]={0b11110111,0b10101111,0b01110101,0b11111111,0b11111101,0b10111111,0}; // Kühlen1 char gem2[5+1]={0b11111111,0b11111111,0b11111111,0b11111111,0b11111111,0}; // Gemeinsam2 char hei2[6+1]={0b11101101,0b11101011,0b11111111,0b11011111,0b10111101,0b10100000,0}; // Heizen2 char sto2[6+1]={0b11011011,0b11010111,0b11110111,0b11011111,0b01111101,0b01010000,0}; // Stop2 char kue2[6+1]={0b11110110,0b11110101,0b11111111,0b11101111,0b11011101,0b11010000,0}; // Kühlen2 void sTXpre
in „Daikin Klimaanlage - IR Fernbedienung simulieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
startup_stm32f746xx.S
_TX_IRQHandler /* CAN2 TX */ .word CAN2_RX0_IRQHandler /* CAN2 RX0 */ .word CAN2_RX1_IRQHandler /* CAN2 RX1 */ .word CAN2_SCE_IRQHandler /* CAN2 SCE */ .word OTG_FS_IRQHandler /* USB OTG FS */ .word DMA2
in „STM32F7 & malloc“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
; RNG_HandleTypeDef hrng; SAI_HandleTypeDef hsai_BlockA2; SAI_HandleTypeDef hsai_BlockB2; DMA_HandleTypeDef hdma_sai2_a; DMA_HandleTypeDef hdma_sai2_b; SPI_HandleTypeDef hspi2; DMA_HandleTypeDef hdma_spi2_rx; DMA_HandleTypeDef hdma_spi2_tx; UART_HandleTypeDef
in „Probleme beim Debuggen mit SW4STM32 und und F7Disco“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Webserver1.pdf
JP2_22 D6 JP1_16 A6 D6 JP2_21 A7 JP1_15 A7 D7 D7 A8 A8 A9 JP1_14 A9 COL_LED JP2_6 COL_LED A10 JP1_11 A10 TX_LED JP2_8 TX_LED A11 JP1_12 A11_MISO RX_LED JP2_10 RX_LED A12 JP1_9 A12_MOSI LINK_LED JP2_12 LI_LED
in „WIZ810 (WIZ5100) an XMEM Interface (AVR)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
24Sender.c
uart */ USART_Init(MYURBB); /* simple greeting message */ uart_write("\r\n> TX device ready\r\n"); /* uart_write("send_complete?\r\n"); itoa(var,itoabuffer,10); uart_write(itoabuffer); uart_write("\r\n"); */ /* init hardware pins */ nrf24_init(); /* Channel #2 , payload length: 4 */ nrf24_config(2,4); /* Set the device addresses */ nrf24_tx_address(tx_address); nrf24_rx_address(rx_address); while(1) { /* Fill the data buffer */ data_array[0] = 0x00; data_array[1] = 0xAA; data_array[2] = 0x55;
in „NRF24L01 und Atmega328P“ · Mikrocontroller und Digitale Elektronik ·
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Datei
IIR_fixed.vhd
iRESET_N = '0' then oDone <= '0'; else oDone <= inewValue; end if; end if; end process SYNC_RD; X_B0 <= cB0 * X; X_B1 <= cB1 * X; X_B2 <= cB2 * X; Y_A1 <= cA1 * YFB; Y_A2 <= cA2 * YFB; SUMB1_Z1 <= X_B1(70 downto 18) + Z2; SUMB0_Z1 <= X_B0(70 downto 18) + Z1; YFB <= SUMB0_Z1(51 downto 4); STAGES: process(iCLK,iRESET_N) begin if (rising_edge(iCLK)) then if iRESET_N = '0' then Z2 <= (others=> '0'); Z1 <= (others=> '0'); oIIR_TX <= (others=> '0'); elsif iNewValue = '1' then Z2 <= X_B2(70 downto 18) - Y_A2(70 downto 18); -- Save Multiplikation in Z2 Z1 <= SUMB1_Z1 - Y_A1(70 downto
in „IIR Filter 2. Ordnung in FPGA implementieren“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
mini_edison_breakout_hvm_8_26.pdf
UART – USB B r FTDI PBA PB Client USB Micro Type-AB Client USB Micro Type-B A A EDISON BREAKOUT BOARD Title Title page Size Document Number Rev B H49905 2 Date: Tuesday, August 26, 2014 Sheet 1 of 8 5 4 3 2 1 5 4
in „Intel Edison Breakout Board“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TEM_uni_5_adc_stream_bench.vhd
std_logic; AD7356_12_SDO_A: in std_logic; AD7356_12_SDO_B: in std_logic; AD7356_34_nCS: out std_logic; AD7356_34_SCK: out std_logic; AD7356_34_SDO_A: in std_logic; AD7356_34_SDO_B: in std_logic; AD7356_56_nCS: out std_logic; AD7356_56_SCK: out std_logic; AD7356
in „Wie Clockdomain crossing für FT232H, wie debuggen?“ · FPGA, VHDL & Co. ·
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PDF
pic-PIC-Logger.pdf
- Test Versuch 1: +5V 4 Gnd Pic 12F675 ADC 0....5 Dreh-poti 0...5 Volt Versuch 2: +5V Gnd Rx Pic 12F675 Tx ADC Dreh-poti 0...5 Volt 2 4 Pic 18 F xxx PIC Projekt: PIC Sensor 1 +12V +5V Gnd Rx Gnd Pic 12F675Tx ADC 2 Dreh-poti 0...5 Volt 2 4 x Pic 18 F xxx PIC Projekt: PIC Logger SD mit Sensor 1 +12V +5V Gnd Rx Gnd Pic 12F675Tx ADC 2 Dreh-poti 0...5 Volt 2 4 x Pic 18 F xxx SD 1G
in „PIC 12F675 + ADC-Eingang +Code +Dresden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
eBusLoggerV2.pdf
3,3V PB6 (XTALPB5 SCK GND PB7 (XTALPB4 MISO VCC K1 K K K DI C3 PD5 PB3 MOSI RESET 3 3 3 CS g PD6 PB2 SS SCK MISO 22PF MQ1 PD7 PB1 MOSI R R R K2 C4 1 PB0 ATMEGA8(DIL28S) 1 VCC 2 Reset 22PF 3 SCK 4 MISO 5 MOSI 6 GND SD Karte Interface VDD 0 K KL2 LTC485CN8 R 0 GND DI 1 IC2a A DE - R14 B RE K eBusTX VCC RO vBusTx 1 3 + 10K R 1 , K VBus 100nF IC5 LM358N D D 1 , VCC P R 4 D4 Z C11 R12 R13 eBUS+ vBus RS485 - RS232 2,21K 100K 1N41486 1 0 R optional eBus Pegelwandler +5V VCC +3,3V VSS IC4 KL1 B250C1500 ~BR2 F IN DOUT
in „ebus protokoll mitschnitt bei einem Wolf Heizkessel“ · Mikrocontroller und Digitale Elektronik ·
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PDF
landtiger_v2.0_-_manual__v1.1.pdf
16 RS485 interface description CN10 Pin Description IO Pin 1 485A UART3_TX (P4.28) 2 485B UART3_RX (P4.29) IO Pin Description Comment P4.28 485_TX P4.29 485_RX P2.8 485_DIR TX/RX Direction (RX is active low, TX is active high) Note1: The 458A and 458B inputs/outputs are terminated
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Datei
tbf5030_c3a_3.c
UBRR0L); /* set baud rate */ //outp( 103, UBRR0L); /* set baud rate */ //init_eep(); /* enable RxD2/TxD2 and interrupts */ outp(0x0, UCSR1A); //outp(BV(RXCIE)|BV(TXCIE)|BV(RXEN)|BV(TXEN), UCSR1B); outp(0x98, UCSR1B); //Œ³Á€È®œÇÈ÷ ÇÒ°Í???? //outp(0x86, UCSR1C); outp(0x86, UCSR1C); outp( 0x0, UBRR1H)
in „Fehler beim Compilieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC18f6622.pdf
priority over port data. 1 I ST ECCP3 capture input. P3A 0 O DIG ECCP3 Enhanced PWM output, channel B. May be configured for tri-state during Enhanced PWM shutdown events. Takes priority over port data. RG1/TX2/CK2 RG1 0 O DIG LATG<1> data output. 1 I ST PORTG<1> data input. TX2 0 O DIG Asynchronous
in „PIC 18F6622 Zeit um EEPROM zu schreiben“ · Mikrocontroller und Digitale Elektronik ·