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Datei
FM_AS6501_SPI1-2x.c
Gewaehr ! */ #define FM_AS6501 #define CAP2_AKTIV // use delayed 2. channel #include "System-Pico-FM-AS65.h" // RP204 GPIOs #define SPI1_SCLK 10 #define SPI1_TX 11 #define SPI1_RX 12 #define SPI1_SSN 13 // Adressen vom AS6501 #define REF_A_ADR 8 // Ergebnisse ab hier #define STOP_A_ADR 11 #define REF_B_ADR
in „TDC(AS6501) als Phasenvergleicher“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.txt
Define fuer Eingabe von Binary // //*****************************************// #define LongToBin(n) \ (\ ((n >> 21) & 0x80) | \ ((n >> 18) & 0x40) | \ ((n >> 15) & 0x20) | \ ((n >> 12) & 0x10) | \ ((n >> 9) & 0x08) | \ ((n >> 6) & 0x04) | \ ((n >> 3) & 0x02) | \ ((n ) & 0x01) \ ) #define Bin(n) LongToBin
in „LPC1769 USB einschalten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
802.3-2008_section2.pdf
reserved. IEEE CSMA/CD Std 802.3-2008 tx_code_vector = tx_code_vector = tx_code_vector = IDLE DATA IDLE rx_code_vector =rx_code_vector = rx_code_vector = rx_code_vector = IDLE PREAMBLE DATA IDLE TX_D1 RX_D2 SOSA SOSA SOSB DATA 2 DATA N-1 EOP_2 EOP_5 BI_D3 BI_D4 P3 SOSA SOSA SOSB DATA 3 DATA N EOP_3 BI-D4
in „Kommunikation uC mit PHY“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
NECCS04393-1.pdf
I 0.15 J 0.65 (T.P.) K 1.8±0.2 L 0.8±0.2 M 0.1−0.05 N 0.10 P 2.7±0.1 Q 0.1±0.1 R 5°±5° S 3.0 MAX. P100GF-65-3BA1-4 62 Data Sheet U11776EJ2V1DS µPD78P0308, 78P0308Y 9. RECOMMENDED SOLDERING CONDITIONS This product
in „Anschlussbelegung uP D78P0308GF gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.asm
TARGET_UPDI_VIN = VPORTA_IN .equ TARGET_UPDI_VOUT = VPORTA_OUT .equ TARGET_UPDI_bp = 1 ; PA1. ; Target UPDI Rx LED: .equ LED_UPDI_RX_VDIR = VPORTA_DIR .equ LED_UPDI_RX_VIN = VPORTA_IN .equ LED_UPDI_RX_VOUT = VPORTA_OUT .equ LED_UPDI_RX_bp = 2 ; PA2. ; Target UPDI Tx LED: .equ LED_UPDI_TX_VDIR = VPORTA_DIR .equ
in „AVR64DD28, mEDBG, Studio 7.0 - Fehler beim Schreiben von Fuses“ · Mikrocontroller und Digitale Elektronik ·
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PDF
small_pcb.PDF
TIM3_CH4 PC7 PI37M32VFD_CST6038 RP2P 10K TxD2 PI29M32PB2/BOOT128 PC6 PI36M32VFD_DATA037 TxD2 1 8 GND RxD2 PI30M32PB10/I2C2_SCL/U3_TX PB15/SPI2_MOSI/TIM1_CH3N PI35M32F103RCT6036 gpio1 2SP82RXD1 VCC PI7SP82gpio3 PI31M32PB11/I2C2_SDA/U3_RX PB14/SPI2_MISO/TIM1_CH2N PI34M32VFD_CLK6035 gpio2 3SP82GPIO0 RST PI6SP82gpio4 1 GND PI32M32VSS3RCT6031 PB13/SPI2_SCK/TIM1_CH1N PI33M32VFD_RST6034 PI4SP82GPIO2 CH_PD PI5SP82RxD2 cube1 PII201 C VCC 3.3V PISTM32VDD3RCT6032 PB12/SPI2_NSS/I2C2_SMBAI/TIM1_BKIN PISTM32F103RCT603 PIESP82GND4 TXD PIESP826605 cube2 PII302 C STM32F103RCT
in „STC LED Cube 8x8x8 RGB“ · Mikrocontroller und Digitale Elektronik ·
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PDF
howto_-tasmota-sml.pdf
die Hardware Serielle Schnittstelle des ESP8266s verwenden wollt (meine Empfehlung), schließt sie an RX(GPIO3) an. Leider gibt es einige Boards bei denen es offensichtlich Probleme mit dem Pullup Widerstand des RX Eingangs gibt. (Wemos D1 Mini v3.x) Ist dies der Fall wählt einen anderen GPIO. Alternativ
in „Wärmezähler über optische M-Bus-Schnittstelle auslesen“ · Haus & Smart Home ·
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PDF
VDO-Druckgeber-Pressure_Sensors.pdf
7 2T NPUE /V AI5( AA l360-0801-029-012C/K A,A"R 7 2T NPUE /V AI5( AA D360-0801-029-042C A,v A"R D/N 2III /V AI5( AA D360-0801-029-062C A6 äA2 x A5( V 2,5( A2 4, 360-081-037-019C A6 äA4 x A5( V 2,5( A2 n 4, 360-081-037-006C A6 A"R72T NPUE s V 2,5( A2 9 4, 360-081-037-007C 2( äA, x A keg3kur) " con3short
in „Druckgeber auswerten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
te2200.pdf
0 OK DTR1 = 0 – – > CD1 = 0 OK DTR1 = 0 – – > C I 1 = 0 OK DTR1 = 0 – – > C I 1 = 0 OK T x D – – > Rx D OK T x D – – > Rx D OK END 4 1 END x n 0 4 1 x=0, d=2 x=1~3, d=2 COM2 4 2 COM2 x n 0 4 2 RTS2 = 1 – – > CTS2 = 0 OK RTS2 = 1 – – > CTS2 = 0 OK DTR2 = 1 – – > DSR2 = 0 OK DTR2 = 1 – – > DSR2 = 0 OK
in „LCD identifizieren.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2C-SDK-Espressif_IoT_SDK_Programming_Guide_v0.9.5_revised.pdf
pointer uint8 qlen——message queue depth Return: True - succeed; False - fail. Example: #define SIG_RX 0 #define TEST_QUEUE_LEN 4 os_event_t *testQueue; void test_task (os_event_t *e) { switch (e->sig) { case SIG_RX: os_printf(“sig_rx %c\n”, (char)e->par); break; default: break; } 17 / 95 Espressif Systems
in „ESP8266 hängt bei gleichzeitigem senden/empfangen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
162_24sin_mess02.c
speichern volatile unsigned char UpdateUart; // Job Flag //Variablen für UART volatile uint8_t uart_rx_flag=0; // Flag, String komplett empfangen volatile uint8_t uart_tx_flag=1; // Flag, String komplett gesendet char uart_rx_buffer[uart_buffer_size]; // Empfangspuffer char uart_tx_buffer[uart_buffer_size
in „Sinus in cHz genau mit Atmega162“ · Mikrocontroller und Digitale Elektronik ·
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Datei
162_24sin_mess02.c
speichern volatile unsigned char UpdateUart; // Job Flag //Variablen für UART volatile uint8_t uart_rx_flag=0; // Flag, String komplett empfangen volatile uint8_t uart_tx_flag=1; // Flag, String komplett gesendet char uart_rx_buffer[uart_buffer_size]; // Empfangspuffer char uart_tx_buffer[uart_buffer_size
in „Genauigkeit ICP Messung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
162_24sin_mess02.c
speichern volatile unsigned char UpdateUart; // Job Flag //Variablen für UART volatile uint8_t uart_rx_flag=0; // Flag, String komplett empfangen volatile uint8_t uart_tx_flag=1; // Flag, String komplett gesendet char uart_rx_buffer[uart_buffer_size]; // Empfangspuffer char uart_tx_buffer[uart_buffer_size
in „unruhiges Sinussignal“ · Mikrocontroller und Digitale Elektronik ·
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PDF
moxa-awk-1137c-series-datasheet.pdf
Typ. -81 dBm @ 36 Mbps Typ. -77 dBm @ 48 Mbps Typ. -75 dBm @ 54 Mbps Receiver Sensitivity for 802.11n (2.4 GHz; measuredTyp. -70 dBm @ MCS7 20 MHz at 2.437 GHz) Typ. -70 dBm @ MCS15 20 MHz Typ. -64 dBm @ MCS7 40 MHz Typ. -65 dBm @ MCS15 40 MHz WLAN Operation Mode Client Client-Router Slave Sniffer Antenna
in „[V] Diverse Moxa Industrie Switche und Access Points“ · Markt ·
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Datei
firmware-v1.c
sbit dip7 = P0^6; sbit dip8 = P0^7; sbit dip9 = P2^0; sbit dip10 = P2^1; // ALL DIPS OK ! //DMX sbit RxD = P3^0; // Recieve Data Port sbit TxD = P3^1; // Transmit Data Port sbit p32 = P3^2; // an aus für senden empfangen bit dmxRx = 0; bit dmxTx = 0; //DMX SENDEN /* enum {BREAK, STARTB, DATA, IDLE}; volatile
in „Schrittmotor mit ULN2803 und 8052 uC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
VRbot_Protocol_1.6.pdf
16 = password) Expected replies: STS_RESULT, STS_SIMILAR, STS_TIMEOUT, STS_ERROR CMD_ERASE_SD 'e' (65h) Erase training of SD/SV command [1] Group index (0 = trigger, 1-15 = generic, 16 = password) [2] Command position (0-31) Expected replies: STS_SUCCESS CMD_NAME_SD 'n' (6Eh) Label SD/SV command [1]
in „VRBOT Serial Protocol 1.6_ C - Programm zur Kommunikation“ · Mikrocontroller und Digitale Elektronik ·
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PDF
VRbot_Protocol_1.6.pdf
16 = password) Expected replies: STS_RESULT, STS_SIMILAR, STS_TIMEOUT, STS_ERROR CMD_ERASE_SD 'e' (65h) Erase training of SD/SV command [1] Group index (0 = trigger, 1-15 = generic, 16 = password) [2] Command position (0-31) Expected replies: STS_SUCCESS CMD_NAME_SD 'n' (6Eh) Label SD/SV command [1]
in „VRBOT-Serial Protocol“ · Mikrocontroller und Digitale Elektronik ·
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PDF
H616_JC_6Z_V1_2_MCU.pdf
PA12/USART1_RTS/USBDP/CAN_TX(8)/TIM1_ETR 71 MC_USB_P 9 PC15-OSC32_OUT(5) PA11/USART1_CTS/USBDM/CAN_RX(8)/TIM1_CH4 70 MC_USB_N GND 3V3 10 69 LCD_EN 11 VSS_5 PA10/USART1_RX(8)/TIM1_CH3(8) 68 VDD_5 PA9/USART1_TX(8)/TIM1_CH2(8) LCD_RS OSC_IN 12 OSC_IN PA8/USART1_CK/TIM1_CH1(8)/MCO 67 BEERPER OSC_OUT 13 OSC_OUT
in „Induktiver Näherungsschalter tauschen Probleme“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
rfm12_abs_rx.c
avr/interrupt.h> #define SET(sfr, bit) ({ __asm__ __volatile__ ("sbi %0, %1"::"I" _SFR_IO_ADDR(sfr),"n" (bit)); }) #define CLEAR(sfr, bit) ({ __asm__ __volatile__ ("cbi %0, %1"::"I" _SFR_IO_ADDR(sfr),"n" (bit)); }) #define SCK 5 // SPI clock #define SDO 4 // SPI Data output (RFM12B side) #define SDI 3 // SPI Data input (RFM12B side) #define SS 2 #define nSEL_INIT SET(DDRD,5) #define nSEL_HI SET(PORTD,5) #define nSEL_LOW CLEAR(PORTD,5) void portInit(void) { nSEL_HI; nSEL_INIT; SET(PORTB,SS); // Slave Select immer high halten, damit SPI im Master-Mode bleibt
in „Beispielprogramm für RFM12 433MHz Funk-Module“ · Projekte & Code ·
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TDA9984.pdf
information such as InfoFrames n Color gamut metadata packet transmission (xvYCC) n Downstream availability using hot plug detection (HPD input) and receiver detection (RxSense circuit) n Master DDC-bus interface n Deals with multiple
in „Pollin - Receiver-Mainboard mit Twin DVB-[T,C] Tuner, NXP PNX8950EH“ · Mikrocontroller und Digitale Elektronik ·
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L-356E.pdf
r i v e r N - a s y n c. R S 2 3 2 C D r i v e r o n n C161CS and JC e a s y n c. C A N c galvanic /NMI isolation Transceiver t o r S2 C161CS only C A N JP9 JP2 JP11 Transceiver JP12 J1850 pin C161JC and JI Transceiver
in „Einige Frage zu einem geschenktem Board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sony_ht-ct260h.pdf
IIS_SD_IN DDCR_SDA 57 TX_SDA NC/ACM2012H-900-2P HDMI_VCC 18 105 VDDE DDCT_SDA 56 TXCM 3 8 2 ARC_IN_N ARC_IN_N 11,8 19 J2 R1473 HEAC+ DDC2_SDA 1 HDMI JACK Y2 1M 106 HEAC- VDDE 55 VDDE R370 4.7 0 1 107 VSSE DDC1_SCL 54 rxSCL1 8 2 2 18.432MHZ±30ppm MCU_XIN 108 MCU_XIN DDC1_SDA 53 rxSDA1 8 R901 C952 15PF
in „(V) 2 Platinen aus einer Sony Soundbar und Nixie Röhren“ · Markt ·
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PDF
MT6223C.pdf
channels 4~8 and 11~14, a predefined address is assigned as well. 00000 SIM 01000 UART1 TX 01001 UART1 RX 01010 UART2 TX 01011 UART2 RX 01100 UART3 TX 01101 UART3 RX 01110 DSP-DMA 10001 I2C TX 10010 I2C RX DMA+0n18h DMA Channel n Start Register DMAn_START Bit 31 30 29 28 27 26 25 24 23 22 21 20 19 18 17
in „GSM-Modul (SIM908) nur analoge Ausgänge für Anruf?“ · HF, Funk und Felder ·
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PDF
armStoneA8_Hardware_V110_eng.pdf
GND GND 47 48 LINEIN_L LINEOUT_L 49 50 GND GND 51 52 VCC5 GND 53 54 VCC5 nc 55 56 nc TX0 57 58 CTS0 RX0 59 60 RTS0 nc (COM adapter pin 1)61 62 nc CANRX/CANL 63 64 CANTX/CANH BOOTSEL 65 66 VCC3.3 !! IMPORTAND NOTE !! To make using of this connector easier this pinout will be changed in next revision. Please
in „Handydummy (Attrappe)mit richtigem Display 10Zoll - u.a.Motorola Xoom“ · Mikrocontroller und Digitale Elektronik ·
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PDF
16F648a_40044F.pdf
, please see the Microchip Packaging Specification located at http://www.microchip.com/packaging D N E E1 NOTE 1 1 2 e b A2 c A φ A1 L1 L Units MILLIMETERS Dimension Limits MIN NOM MAX Number of Pins N 20 Pitch e 0.65 BSC Overall Height A – – 2.00 Molded Package Thickness A2 1.65 1.75 1.85 Standoff
in „16f627A schaltet RA5 u RA6 nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
philips_chassis_qfu2.1e_la.pdf
_P 84 HDMIF-RX0+ A29 RX0_P 6 ERX1- 30 TX0_N 85 HDMIF-RX0- B29 RX0_N 7 ERX0+ 29 R4X TX1_P `82 HDMIF-RX1+ A28 RX1_P 1 9 ERX0- 28 TX1_N 83 HDMIF-RX1- B28 RX1_N 1 10 ERXC+ 27 80 TX2_P HDMIF-RX2+ A27 RX2_P HDMI 5 12 ERXC
in „Netzteil Philips LED TV reparieren??“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STM32H7-Disco_full.PDF
R187 U17 C140 C141 R183 Quad-SPI PE2_QSPI_D2 PU10 WP/IO2 dnu PU01 2650 V 2650 V PID Fiducial PB7_STM_RxD PI81PR7 R188 NUSB-TX PU0TXD VccPI7 2C100nFP2100nF 21k5 J5USB-Mini_Typ-B PF6_QSPI_D PU10 HOLD/IO3 dnu PU01 100 nF 4.7uF PA9_STM_TxD R189R0PI82USB-RX PU0RXD +3V3 PI70 GND PJ0 +5V PF7_QSPI_ es tPU10 RESET
in „STM32H7-Disco erster Test“ · Mikrocontroller und Digitale Elektronik ·
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Datei
cc1101_Receive.ino
@tan //#include <cc1101_debug_service.h> #include <ELECHOUSE_CC1101_SRC_DRV.h> int gdo0; const int n = 61; const byte ccregister[47] = { 0x07, // IOCFG2 GDO2 Output Pin Configuration 0x2E, // IOCFG1 GDO1 Output Pin Configuration 0x80, // IOCFG0 GDO0 Output Pin Configuration 0x07, // FIFOTHR RX FIFO
in „ESP8266 Wemos D1 & CC1101“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Star10_Part1.pdf
Equal or better than DDS frequencies) Dot Matrix with green backlighting –55 dBc • FRU phase noise RX/TX: –133 dBc/Hz •RX/TXFrontendFiltersystem:Automati- • Carrier suppression: Equal or better than close in cally switched independent half octave –65 dBc • FRU spurious rejection –90 dBc band-pass(RX)
in „Projekt Kurzwellenempfänger Doppelsuper welcher VCO?“ · HF, Funk und Felder ·
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Datei
uc3a1512.h
_FUNCTION 0 #define AVR32_MACB_RXD_3_PIN 46 #define AVR32_MACB_RXD_3_FUNCTION 0 #define AVR32_MACB_RX_CLK_0_PIN 49 #define AVR32_MACB_RX_CLK_0_FUNCTION 0 #define AVR32_MACB_RX_DV_0_PIN 47 #define AVR32_MACB_RX_DV_0_FUNCTION 0 #define AVR32_MACB_RX_ER_0_PIN 39 #define AVR32_MACB_RX_ER_0_FUNCTION 0 #define
in „Registernamen AT32UC3A1512“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MEGA_WiFi-R3-AT2560-ESP8266-32MB-CH340G-1.pdf
25 26 PL2 [OC1B/PCINT6]PB6 27 28 R10 ESP-RESET [OC1A/PCINT5]PB5 24 PB5 PL1 29 30 PL0 ESP-RESET ESP-RX R12 VDD3.3 +5V [OC2A/PCINT4]PB4 23 PB4 PB3 31 32 PB2 2 1 0 9 8 7 6 5 C11 10 VCC [MISO/PCINT3]PB3 22 PB3 PB1 33 34 PB0 DGND 3 3 3 2 2 2 2 2 3 4 6 7 31 VCC [MOSI/PCINT2]PB2 21 PB2 35 36 ANT_1 DGND C C
in „Compilation error: exit status 1“ · Mikrocontroller und Digitale Elektronik ·
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PDF
marantz-sr8200-9200-service-manual.pdf
2 2 7 7518 CX38 10/50V V2_C + N N + QX06 + N AUX_Y 9 V G CX63 G V NJM2235D V G N 3 3 FROM JP03 RX19 75 Dummy G GND VCR2 3 5 6 7 8 9 10 11 12 13 14 15 16 5 6 7 8 4 4 1 CX07 CX39 RX35 GND AUX_C (PP04) 1 47p 470/6.3V 0.01 0 NJM2296D GND
in „MARANZ RC3200 datenkabel belegung gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Si4320.pdf
output 4 Si4320 Typical Application, Microcontroller Mode Minimal Microcontroller Mode VCC C2 C1 10n 2.2u 1 16 C3 P4 SDI VDI P3 SCK 2 15ARSSI nSEL 3 14 P2 Antenna P1 SDO 4 13 250 Ohm nIRQ 5 IA4320 12 P0 nFFS 6 11 FFIT 7 10 nRESET CLKin 8 9 (optional) X1 (optional) 10MHz Microcontroller Mode with FIFO usage VCC C2 C1 10n 2.2u SDI 1 16 VDI C3 P4 15 P3 SCK 2 ARSSI nSEL 3 14 Antenna P2 SDO 4 13 P1 250 Ohm P0 nIRQ 5 IA4320 12 nFFS 6 11 7 10 FFIT nRESET CLKin 8 9 (optional) X1 10MHz (optional) Note: For detailed information
in „RF01 und RF02 433 MHz Funkmodul“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sketch_feb26a.ino
, INPUT_PULLUP); for(int i =0;i<1;i++){//initialize WIFI connection and loading bar sendData("AT\r\n", 1000, DEBUG, STARTUP); if(skipWifiSetup) {break;} sendData("AT+RST\r\n", 2000, DEBUG, STARTUP); if(skipWifiSetup) {break;} sendData("AT+CWMODE=1\r\n", 2000, DEBUG, STARTUP); if(skipWifiSetup) {break;} sendData("AT+CWJAP=\"" + ssid + "\",\"" + pwd + "\"\r\n", 10000, DEBUG, STARTUP); if(skipWifiSetup) {break;} sendData("AT+CIFSR\r\n", 2000, DEBUG, STARTUP); if(skipWifiSetup) {break;} sendData("AT+CIPMUX=1\r\n", 2000, DEBUG, STARTUP); if(skipWifiSetup) {break
in „HTML code not working on Ipad“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sketch_feb26a.ino
, INPUT_PULLUP); for(int i =0;i<1;i++){//initialize WIFI connection and loading bar sendData("AT\r\n", 1000, DEBUG, STARTUP); if(skipWifiSetup) {break;} sendData("AT+RST\r\n", 2000, DEBUG, STARTUP); if(skipWifiSetup) {break;} sendData("AT+CWMODE=1\r\n", 2000, DEBUG, STARTUP); if(skipWifiSetup) {break;} sendData("AT+CWJAP=\"" + ssid + "\",\"" + pwd + "\"\r\n", 10000, DEBUG, STARTUP); if(skipWifiSetup) {break;} sendData("AT+CIFSR\r\n", 2000, DEBUG, STARTUP); if(skipWifiSetup) {break;} sendData("AT+CIPMUX=1\r\n", 2000, DEBUG, STARTUP); if(skipWifiSetup) {break
in „HTML code not working on Ipad“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet_ds1820.pdf
? ? N N ADDRESS Y ADDRESS Y =3 =7 ? ? N N DS1820 INCREMENTS DS1820 INCREMENTS ADDRESS ADDRESS MASTER RX8–BIT N MASTER CRC OF DATA TXRESET ? Y MASTER Y T RESET X ? N MASTER R “1s” X DS1820 T X PRESENCE PULSE
in „Kennt sich irgendwer mit CVAVR aus, geht um DS1820“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS1820_DAL.pdf
? ? N N ADDRESS Y ADDRESS Y =3 =7 ? ? N N DS1820 INCREMENTS DS1820 INCREMENTS ADDRESS ADDRESS MASTER RX8–BIT N MASTER CRC OF DATA TXRESET ? Y MASTER Y T RESET X ? N MASTER R “1s” X DS1820 T X PRESENCE PULSE
in „DS1820 physikalisch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet_ds1820.pdf
? ? N N ADDRESS Y ADDRESS Y =3 =7 ? ? N N DS1820 INCREMENTS DS1820 INCREMENTS ADDRESS ADDRESS MASTER RX8–BIT N MASTER CRC OF DATA TXRESET ? Y MASTER Y T RESET X ? N MASTER R “1s” X DS1820 T X PRESENCE PULSE
in „CVAVR und DS1820 nix als Ärger!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1820.pdf
? ? N N ADDRESS Y ADDRESS Y =3 =7 ? ? N N DS1820 INCREMENTS DS1820 INCREMENTS ADDRESS ADDRESS MASTER RX8–BIT N MASTER CRC OF DATA TXRESET ? Y MASTER Y T RESET X ? N MASTER R “1s” X DS1820 T X PRESENCE PULSE
in „1-Wire und DS1820 Testprog“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDS_DS18S20.pdf
? ? N N ADDRESS Y ADDRESS Y =3 =7 ? ? N N DS1820 INCREMENTS DS1820 INCREMENTS ADDRESS ADDRESS MASTER RX8–BIT N MASTER CRC OF DATA TXRESET ? Y MASTER Y T RESET X ? N MASTER R “1s” X DS1820 T X PRESENCE PULSE
in „2x HW Uart / Sinnvoll?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ds1820.pdf
? ? N N ADDRESS Y ADDRESS Y =3 =7 ? ? N N DS1820 INCREMENTS DS1820 INCREMENTS ADDRESS ADDRESS MASTER RX8–BIT N MASTER CRC OF DATA TXRESET ? Y MASTER Y T RESET X ? N MASTER R “1s” X DS1820 T X PRESENCE PULSE
in „DS1820 Umrechnung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ds1820.pdf
? ? N N ADDRESS Y ADDRESS Y =3 =7 ? ? N N DS1820 INCREMENTS DS1820 INCREMENTS ADDRESS ADDRESS MASTER RX8–BIT N MASTER CRC OF DATA TXRESET ? Y MASTER Y T RESET X ? N MASTER R “1s” X DS1820 T X PRESENCE PULSE
in „1-Wire Protokollablauf“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ds1820_eng-ds.pdf
? ? N N ADDRESS Y ADDRESS Y =3 =7 ? ? N N DS1820 INCREMENTS DS1820 INCREMENTS ADDRESS ADDRESS MASTER RX8–BIT N MASTER CRC OF DATA TXRESET ? Y MASTER Y T RESET X ? N MASTER R “1s” X DS1820 T X PRESENCE PULSE
in „DS18S20, DS18B20, DS1820?!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS1820_DALLAS.pdf
? ? N N ADDRESS Y ADDRESS Y =3 =7 ? ? N N DS1820 INCREMENTS DS1820 INCREMENTS ADDRESS ADDRESS MASTER RX8–BIT N MASTER CRC OF DATA TXRESET ? Y MASTER Y T RESET X ? N MASTER R “1s” X DS1820 T X PRESENCE PULSE
in „18x20 welches Messprinzip“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
board.pdf
13 14 15 16 17 18 19 20 21 22 23 A A LOCAL OSCILLATOR Supply decoupling +3.3V C? C? C? C? C? C? 100nF 100nF 100nF 100nF 100nF 100nF B B +3.3V +3.3V +3.3V LO_CLOCK LO_LOCK_DETECT F Reference input 2 1 0 9 8 7 6 5 ? 0 XO 3 3 3 2 2 2 2 2 C 1 33 0 2 PAD D D T N D D F ? 1 3 GND +3.3V D N U _ D N R L C LO_CLOCK
in „HI-Empfänger: Könnte das so funktionieren?“ · HF, Funk und Felder ·
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PDF
ST7735_128x160_SPI_Display.pdf
2 D1 0 B1, Bit 1 B2, Bit 1 B3, Bit 1 B4, Bit 1 D0 0 B1, Bit 0 B2, Bit 0 B3, Bit 0 B4, Bit 0 Pixel n Pixel n+1 Pixel n+2 Pixel n+3 16 bits 16 bits Look-up table for 65k color data mapping (16 bits to 18 bits) 18 bits Frame memory R1 G1 B1 R2 G2 B2 R3 G3 B3 Note 1: The data order is as follows, MSB=D15
in „ST7735 an MCU“ · Mikrocontroller und Digitale Elektronik ·
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DS_AT32F421_V2.01_EN.pdf
s Basic 1 1 1 1 1 1 e i SysTick 1 1 1 1 1 1 T WDT 1 1 1 1 1 1 WWDT 1 1 1 1 1 1 ERTC 1 1 1 1 1 1 2 n I C 2 2 2 2 2 2 t (1) c SPI 1 2 2 2 2 2 n SPI/I S 1 (1) 2 2 2 2 2 u m USART+UART 1+1 (2) 2+0 2+0 2+0 2+0 2+0 o C IR 1 1 1 1 1 1 1 1 1 1 1 1 o12-bit ADC numbers/ a channels 9 10 11 11 10 15 n A Comparator
in „Firmware entschlüsseln, Updateprogramm als Hilfe?“ · Softwareentwicklung ·
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IC6963.pdf
Controller is busy 11,059 MHz 25 mA d t ICC Power Supply Current VDD, Controller is ready 11,059 MHz 6.5 mA n t RESET, I/O0..7, Baud0..2, n VIL Input Low Voltage Adr0..1, RxD, CTS -0.5 0.2*VDD-0.1 V i I/O0..7, Baud0..2, Adr0..1, VIH Input High Voltage RxD, CTS 0.2*VDD+0.9 VDD+0.5 V 0 Input High Voltage – VIHR
in „Problem mit IC6963“ · Mikrocontroller und Digitale Elektronik ·
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SCHEMATIC_Atmega.pdf
A12 PH6/OC2B 18 ExtRAM_A14 ExtRAM_A[8:14] 4k7 58 PC5/A13 PH7/T4 27 A14 10 ExtRAM_A14 59 PC6/A14 DBGU_RX A13 9 ExtRAM_A13 R105 RAM_/CE 60 PC7/A15 PJ0/RXD3/PCINT9 63 DBGU_TX A12 8 ExtRAM_A12 SI2C_SCL 64 ParBusC[0:4] 7 ExtRAM_A11 4k7 43 PJ1/TXD3/PCINT10 65 ParBusC0 A11 6 ExtRAM_A10 i2c pull-up I2CCLOCK_INT
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specification_CA10089.pdf
Symbol Condition Rating Unit Applicable terminal MIN TYP MAX 15% - 85% rise time TRLP - - 25 ns DSI_D0P/N 85% - 15% fall time TFLP - - 25 ns DSI_D0P/N Slew rate Δv / δtSR Cload = 70pF 30 - 500 mV/ns DSI_D0P/N ORTUS TECHNOLOGY CO.,LTD. (15/50) SPECIFICATIONS №. 11TLM067 Issue: May. 16, 2012 7.2.3 RX/TX Specifications
in „Suche 4.3" Display mit Controller fuer DVI to RGB TTL/MIPI DSI“ · Mikrocontroller und Digitale Elektronik ·