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Datei
mca25.c
state = 100; //now sample data break; case 100: //now sample data: if (j<CAM_BUFFER_LEN) buffer[j] = rx; else MCA25_ERROR_LED_ON(); //printf_P(PSTR("ARGHHHHHHHHHHHHHHH\n"); //printf_P(PSTR("OUT[%03d] 0x%02x\n",j,rx); j++; togo--; if (togo == 0) state = 101; break; case 101: //data is there now we read checksum: //ignore CS... //printf_P(PSTR("CSUM=%02x\n",rx); state = 102; break; case 102: //we have frame end: if (rx != 0xF9){ //MCA25_ERROR_LED_ON(); //printf_P(PSTR("FRAME ERROR! @packet:%d: (0x%02x) len=%d\n"),j,rx,togo); } //printf_P(PSTR("EOF=%d\n
in „Handykamera MCA-25 ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hmc646.pdf
- 2.1 GHz Insertion Loss vs. Temperature, Insertion Loss vs. Temperature, Tx with 1600 MHz Tuning Rx with 1600 MHz Tuning 0 0 B -0.5 B-0.5 ( ( S S L L N -1 N -1 T T R R S +25C S +25C I -1.5 +85C I-1.5 +85C -40C -40C -2 -2 1.5 1.55 1.6 1.65 1.7 1.5 1.55 1.6 1.65 1.7 FREQUENCY (GHz) FREQUENCY (GHz) Isolation with 1600 MHz Tuning Return Los s with 1600 MHz Tuning 1 1 0 0 Tx, Input -10 RFC to Tx Rx, Inputt T RFC to RX B-10 Rx, Output B ( M (-20 S S I L A N-20 - O-30 U I E T R-30 D -40 P S -50 -40 1.5 1.55 1.6 1.65 1.7 1.5 1.55 1.6 1.65 1.7 - FREQUENCY (GHz) FREQUENCY (GHz) S E H C Input IP3 vs.
in „passiv Video Übertragung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TRC103_Transceiver_RFM_121129.pdf
73: IRQCFG0D bits Cfg State IRQ Source 7..6 00 RX 0 None (set to 0) 7..6 01 RX 0 Write_byte (high pulse when received byte written to FIFO) 7..6 10 RX 0 nFIFOEMPY (low when FIFO is empty) 7..6 11 RX 0 Start Pattern Detect 3 X TX 0 nFIFOEMPY (low when
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Datei
mca25.c
read_at_command(mca25_buf); if (memcmp_P(mca25_buf+2,PSTR("AT&F"),4)) return 1; USART_pstr_P(PSTR("\r\r\nOK\r\n")); mca25_read_at_command(mca25_buf); if (memcmp_P(mca25_buf,PSTR("AT+IPR=?"),8)) return 2; USART_pstr_P(PSTR("+IPR: (),(1200,2400,4800,9600,19200,38400,57600,460800)\r\n\r\nOK\r\n")); mca25_read_at_command
in „AVR für wenig Geld im LAN“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_WCDMA-GSM-EDGE-Transceiver_MMM7210.pdf
4 n e e G _ G _ _ _ _ E I t Q u t Q I i l r t u l r t t t t B t r t b l l E B T _ R I f o o t G t G e e e e r a a O a a a W p i D D p i S S S S p S F D B x s l E U T W _ GI DDSE 531 e M M a a a a x x Rx
in „GSM-Modul (SIM908) nur analoge Ausgänge für Anruf?“ · HF, Funk und Felder ·
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Datei
debug_okay.asm
(); // start active operation 540: 0e 94 65 02 call 0x4ca ; 0x4ca <lib_nRF24L01_set_CE_high> // The nRF24L01+ needs 130us to sync its PLL and start operation after CE goes high. // In RX mode we do not have to bother about that, since polling/
in „Fehler bei einfacher Integer-Division?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
radio.c
return wh; } void Radio_Flush() { send_instruction(FLUSH_TX, NULL, NULL, 0); send_instruction(FLUSH_RX, NULL, NULL, 0); } // Interrupt handler ISR(INT0_vect) { uint8_t status; uint8_t pipe_number; uart_puts("Interrupt\r\n"); CE_LOW(); status = get_status(); if (status & _BV(RX_DR)) { uart_puts("Empfang
in „NRF24L01 scheint nicht zu senden (MAX_RT)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Impulsbelastbarkeiten-von-Drahtwiderstaenden-200907.pdf
Siehe 1.000 Siehe BWF 236-0 1.5 Sonderdatenblat600 Sonderdatenblatt 237-0 0.75 400 RZC RZC6720 1.6 65 550 10 9R1 RZI RZI6720 1.6 90 550 10 9R1 RZF RZF6720 1.6 35 550 10 9R1 RWC RWC5020 1.6 25 500 10 3R3 RWI RWI5020 1.6 35 500 10 3R3 RWS RWS5020 1.6 12 500 10 10R RWF RWF5020 1.6 15 400 10 10R RX RX0207W5
in „Kapazitive Last: linear laden oder takten?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CD4528.pdf
PLH PHL L DD tPHL A or B to Q or Q PLH, PHL = (0.66 ns/pF)LC + 8 nsDDV= 10.0V 100 250 ns Cx = 15 pF, Rx = 5.0 kΩ PLH, PHL = (0.5 ns/pF)LC + 65 nsDDV= 15.0V 65 150 ns Turn-Off, Turn-On Delay PLH, PHL = (1.7 ns/pF)LC + 620 nsDDV= 5.0V 230 500 ns A or B to Q or Q PLH, PHL = (0.66 ns/pF)LC + 257 nsDDV= 10.0V 100 250 ns Cx = 100 pF, Rx = 10 kΩ PLH, PHL = (0.5 ns/pF)LC + 185 nsDDV= 15.0V 65 150 ns tWL Minimum Input Pulse Width VDD = 5.0V 60 150 ns t A or B V = 10.0V 20 50 ns WH DD Cx = 15 pF, Rx = 5.0 kΩ VDD = 15V 20 50 ns Cx = 1000
in „Einschaltverzögerung mit geringer Stromaufnahme“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STM32F107-SK-SCH-revA.pdf
_CK PA12/USART1_RTS/CANTX/TIM1_ETR/USBDP U PE8 TIM1_CH1N 39 PE8/TIM1_CH1N PD8/USART3_TX/ETH_MII_RX_DV55 USART3_TX TDO 6 5 100nF 100nF 100nF 47 VSS_3 PA13/JTMS/SWDIO 34 3.3V 4 PE9 TIM1_CH1 40 PE9/TIM1_CH1 PD9/USART3_RX/ETH_MII_RX_D056 USART3_RX TDI 8 7 35 VSS_2 PA14/JTCK/SWCLK 37 R75 NA SHIELD 7 TIM1_CH2N 41 PE10/TIM1_CH2N PD10/USART3_CK/ETH_MII_RX_D17 ENABLE_B RST 10 9 23 VSS_1 PA15/JTDI38 R73 NA 7 PE10 TIM1_CH2 42 PE11/TIM1_CH2 PD11/USART3_CTS/ETH_MII_RX_D28 USART3_CTS PD11 TRACECK 12 11 C65 C66 PE11
in „Cortex M3 STM32F107VC beim Reset passiert nichts“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Pulse-Load-Wirewound-Resistors-200907.pdf
special 1.000 special BWF 236-0 1.5 available 600 datasheet available 237-0 0.75 400 RZC RZC6720 1.6 65 550 10 9R1 RZI RZI6720 1.6 90 550 10 9R1 RZF RZF6720 1.6 35 550 10 9R1 RWC RWC5020 1.6 25 500 10 3R3 RWI RWI5020 1.6 35 500 10 3R3 RWS RWS5020 1.6 12 500 10 10R RWF RWF5020 1.6 15 400 10 10R RX RX0207W5
in „Spannungsfestigkeit Widerstand bei kurzzeitig hohen Pulsen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Pulse-Load-Wirewound-Resistors-200907.pdf
special 1.000 special BWF 236-0 1.5 available 600 datasheet available 237-0 0.75 400 RZC RZC6720 1.6 65 550 10 9R1 RZI RZI6720 1.6 90 550 10 9R1 RZF RZF6720 1.6 35 550 10 9R1 RWC RWC5020 1.6 25 500 10 3R3 RWI RWI5020 1.6 35 500 10 3R3 RWS RWS5020 1.6 12 500 10 10R RWF RWF5020 1.6 15 400 10 10R RX RX0207W5
in „Kondensator verlustfrei laden“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
C65_Diagram_Set.pdf
_RX2 8 2 2P2 D 5 PCSLNAIB GNDVCXO 32 N XG3921 N 0 N PCSDCSGND SDATA G RF_DAT 0 0 13 GSM900_TX EGSM900_RX1 9 6 3 G 6 3126Mhz TP3920 0 3 EGSM900_RX2 L C3907 7 DCSLNAI VCXOOUT 30 XG3922 RF_SIN26M 1 C 10 DCSLNAIB
in „Reengineering: Siemens S65 Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
grundig_chassis_t5_19_22vle2000t_22-2010t_22-2940t_22-2942t_19hd_br_wp_cba_16-2941tc_19-2940t.pdf
COMPin(DVD) RGB1_PB+ RGB1_PB+ HDMIB-CLKP HDMIB-CLKP 1M RGB1_PB- RGB1_PB- HDMIB-RX0N HDMIB-RX0N X400 RGB1_PR+ RGB1_PR+ HDMIB-RX0P HDMIB-RX0P 12MHz RGB1_PR- RGB1_PR- HDMIB-RX1N HDMIB-RX1N 5 6 HDMIB-RX1P HDMIB-RX1P XTALI XTALO HDMIB-RX2N HDMIB-RX2N CVBSBlock HDMIB-RX2P C464 C465 HDMIB-RX2P
in „Grundig Fernseher defekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MyPC_sch.pdf
OC0A_SDA_PE0 35 PE_OC0A 5 PF_MOSI OC0B_OC0A_XCK0_SCL_PE1 36 PE_OC0B 4 PF_MISO OC0C_/OC0B_RXD0_PE2 37 AVR_RX 3.3V 2 PF_SCK D OC0D_OC0B_TXD0_PE3 39 AVR_TX 3.3V 100n 1 N /OC0C_OC1A_/SS_PE4 40 S65_CS C12 3 G OC0C_OC1B_XCK1_MOSI_PE5 41 S65_DATA L 1 3 /OC0D_RXD1_MISO_PE6 42 S65_LED SPI OC0D_TXD1_SCK_CLKO_EVO_PE7
in „Bitte Schaltplan&Layout checken“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ug1091-carrier-card-design.pdf
HPB12_N HPIO on bank 65 A19 GND Ground, connect to carrier card ground plane A20 HPB06_P HPIO on bank 65 A21 HPB06_N HPIO on bank 65 A22 GND Ground, connect to carrier card ground plane UG1091 (v1.2) March 16
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PDF
SAM7-EX256_Rev_C-sch.pdf
VCC R46 AG AG E 2 330 E<2> D C62 I - 1.5K/1% LEDACT KG KG GREEN I Centerpush SW1 SW2 PA27/DRXD 100n R47 T L X X D D T X X D C X AY S B2 3 6 B4 R37 R83 3.3K RX3 2K R D N N D T T N R E LED100/DUP KY AY YELLOW 4 C<3> D<6> 330 PA3/RTS0 R84 3.3K RX2 MDIO 1 D G G V G D R 36 7 KY 1:1 75 75 J 3 R85 3.3K RX1 MDC 2 MDIO V V GND5 35 R77 NA 6 RD+ R 7 JOYSTICK_MT5_F PA4/CTS0 R80 R86 3.3K RX0 RX3 3 MDC GND4 34 8 NC 8 RXD3/PHYAD1 FXSD/FXEN 2.5V RD- 1nF/2kV 6 330 R87 1K RXDV RX2 4 RXD2/PHYAD2 RX+ 33 3.3V R88 1K RXER RX1 5 RXD1/PHYAD3 RX- 32 C59 RJLBC-060TC1 R89 1K COL RX0 6 RXD0/PHYAD4 VDDRX
in „SPI-Initialisierung von zwei Geräte über den gleichen Bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
to STXD low -2.44 -0.60 -2.65 -0.98 ns 12 (Tx) CK high to STXD high impedance -2.67 -0.99 -2.65 -0.98 ns 13 SRXD setup time before (Rx) CK low 23.68 – 22.09 – ns 14 SRXD hold time after (Rx) CK low 0 – 0 – ns External Clock Operation (SAP Ports) 1 15 (Tx/Rx) CK clock period 90.91 – 90.91 – ns 16 (Tx/Rx) CK clock high period 36.36 – 36.36 – ns 17 (Tx/Rx) CK clock low period 36.36 – 36.36 – ns 18 (Tx) CK high to FS (bl) high 10.24 19.50 7.16 8.65 ns 19 (Rx
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDA5051A_-_PowerLine.pdf
3 11 13 10 IN 1 k 150 RX IN 10 nF k DATA OUT 14 MICRO- 2 10 nF CONTROLLER TDA5051A TX BC547B CLK OUT 10 OUT 4 PD 33 15 1 k k 7 8 5 9 12 OSC1 OSC2 DGND APGND AGND 2.2 M XTAL 7.3728 MHz SA5.0A 27 pF 27 pF MGK843 cr= 115.2 kHz
in „Probleme mit PLC-Modem-Chip TDA5051“ · Haus & Smart Home ·
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PDF
TDA5051A.pdf
3 11 13 10 IN 1 k 150 RX IN 10 nF k DATA OUT 14 MICRO- 2 10 nF CONTROLLER TDA5051A TX BC547B CLK OUT 10 OUT 4 PD 33 15 1 k k 7 8 5 9 12 OSC1 OSC2 DGND APGND AGND 2.2 M XTAL 7.3728 MHz SA5.0A 27 pF 27 pF MGK843 cr= 115.2 kHz
in „µC Kommunikation (Signale) über Gleichspannung modulieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rfm12_.c
HoWL 11/2011 senden: polling empfangen: interrupt generelles Protokoll: [0] Anzahl der NUTZBytes [n] Nutzbytes [n+1] Prüfsumme HIGH [n+2] Prüfsumme LOW Daten senden: tx_daten[0] = 3; // Anzahl Nutzbytes tx_daten[1] = 'A'; tx_daten[2] = 'B'; tx_daten[3] = 'C'; tx_daten[4] = 0xnn; // prüfziffer high
in „RFM12 Statusabfrage“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LAN9214_V10_neutr_Sch.pdf
C14 C15 C16 C17 C18 +3V +3V ETN[1-7] 1 D56 SR054 1D60 SR04 1 10u 1100n 110n 100n 110n +3V +3V L21 2 3 2 3 R65 R66 Ferrit ETN7 1 D65 110R 470R 2 1 7 P51 L11 9 7 3 9 6 Link+ 1 D1 SR04+3V 1 2 3 3 4 Link ETN6 R621 220R 8 Link-low C11 Ferrit C12 15 V18a I I I I I Vdd15 C21 100n Tx+ ETN3 R54 1 22R 2 38 V V V V V 10 10n 1 Tx+ 2 3 1 1u 100n V18b Vdd2 C22 1 TCT Vdd39 C23 100n Tx- ETN4 R55 1 22R 3 Tx- +3V 62 51 C24 10n Rx+ ETN1 R58 22R 4 R1 Vdd18USBPLL Vdd4 1 1 Rx+ 1 48 Vdd18EthPLL Vdd54 C25 100n 6 RCT C2 27p 57 C26 10n
in „LAN9514 schematic“ · Mikrocontroller und Digitale Elektronik ·
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PDF
WIZFI250-H-WIZnet-datasheet-24907049.pdf
integration. WizFi250 Specification (WIZnet Co., Ltd.) 1 2. Features - Single band 2.4GHz IEEE 802.11b/g/n - Integrated RF power amplifier - Supports wireless data rates up to 65Mbit/s - 1MB Flash Memory, 128KB SRAM, 1MB Serial Flash - Supports per packet Rx Antenna diversity - Low power consumption & excellent
in „Wlan2Serial Modul für 5 euro“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TargetBoardSchematic.pdf
5 4 3 2 1 Target Board for RX65N Schematic (Product No. RTK5RX65N0C00000BR) D D PAGE DESCRIPTION 1 Index Note: 2 Target MCU C : Capacitor 3 Target MCU peri, Power D : Diode R : Fixed Resistor 4 Emulator Circuit U : Integrated Circuit
in „RX65N BootMode funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
nRF2401rev1_1.pdf
™ RX. 2. To activate RX, set CE high. 3. After 200 μs settling, nRF2401 is monitoring the air for incoming communication. 4. When a valid package has been received (correct address and CRC found), nRF2401
in „Externe Antenne für Funkmodul TRW24G“ · HF, Funk und Felder ·
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PDF
nightsky_arx15.pdf
t BM32 PEX_RX5 2 PEG_TX5 BM33 PEX_RX5 2 PEG_TX#5 C508 C507 C482 C516 C495 C1350 C1343 C1355 C490 a C374 0.22u_10V_X5R_04 PEX_RX6 BG32 1 1 1 1 2 PEG_RX6 PEX_RX6# PEX_TX6 N 0 N 0 N0 EN u E Nu E N . EN . N0 N 2 2 PEG_RX
in „SMD TGAJ TVS Diode USB“ · Mikrocontroller und Digitale Elektronik ·
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Datei
code.c.txt
TX- und RX-modul erst mal anschalten UCTL1 |= CHAR; // 8 data bits, 1 stop bit, no parity (8N1) UTCTL1 |= SSEL0; // ACLK als UCLK festlegen //UBR01 = 0x03; // 9600 baud aus 32.768 kHz erzeugen //UBR11 = 0x00; /
in „MSP430 UART Interrupt wird nicht ausgelöst“ · Mikrocontroller und Digitale Elektronik ·
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PDF
board_schematic2.pdf
- SATA1_TX- 7 D 18 LCDD4 LVDS_A2- PCIE_TX1- PCIE1_TX- 9 GBE0_MDI2- SATA1_TX- D LCDD9 A78 B64 PCIE1_RX+ MDI3+ A3 B19 SATA1_RX+ 18 LCDD9 LCDD8 A79 LVDS_A3+ PCIE_RX1+ B65 PCIE1_RX- PCIE1_RX+ 9 19 MDI3+ MDI3- A2 GBE0_MDI3+ SATA1_RX+ B20 SATA1_RX- SATA1_RX+ 7 18 LCDD8 LVDS_A3- PCIE_RX1- PCIE1_RX- 9 19 MDI3
in „USB 2.0 Beschaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Core429I-Schematic.pdf
PA6<>SPI1_MISO/TIM8_BKIN/TIM13_CH1/DCMI_PIXCLK/TIM3_CH1/TIM1_BKIN/ADC12_IN6 PD6<>FSMC_NWAIT/USART2_RX 150 PD6 PA7 53 PA7<>SPI1_MOSI/TIM8_CH1N/TIM14_CH1/TIM3_CH2/ETH_MII_RX_DV/TIM1_CH1N/RMII_CRS_DV/ADC12_IN7 PD7<>USART2_CK/FSMC_NE1/FSMC_NCE2 151 PD7 PWR.C1 PWR.C2 PWR.C3 PWR.C4 PA8 119 96 PD8 PA9 120 PA8
in „STM32F4x9 - FMC - SSD196x“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Pinout.pdf
52 34 26 I/O FT PB13 3 – CTS 2 – SCK 1 – Ch1N 53 35 27 I/O FT PB14 3 – RTS 2 – MISO 1 – Ch2N 54 36 28 I/O FT PB15 2 – MOSI 1 – Ch3N 55 I/O FT PD8 (3 – Tx) 56 I/O FT PD9 (3 – Rx) 57 I/O FT PD10 (3 – CK) 58 I/O FT PD11 (3 – CTS) 59 I/O FT PD12 (3
in „Ein paar Fragen zum STM32F103xC“ · Mikrocontroller und Digitale Elektronik ·
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MC14538B-D.PDF
s potential performance. http://onsemi.com 4 MC14538B VDD VDD P1 RX 2 (14) ENABLE + + V -C1 -C2 R Q 6 (10) C X ref1 ENABLE Vref2 OUTPUT 1 (15) LATCH S Q 7 (9) N1 VSS CONTROL 4 (12) A 5 (11) B 3 (13) Q R Q R NOTE: Pins 1, 8 and 15 must RESET S RESET LATCH R be externally
in „Max. Pulsverlängerung mit CD4098“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BGW211_Preliminary_Datasheet_v1.1.pdf
0> RX_AGC<2> RX_AGC<5:3> PD_2G 3 2 BB filter AGC RXO_I_P RXO_I_N RXI_2G_P 90 DC Cancel RSSI U LDO_P RXI_2G_N 0 M LDO_N 2G LNA RXO_Q_P RXO_Q_N mixers VCO cal IREF BIAS 5G VCO /2 VTUNE IREF_BB S_READ C XTALI
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schematic_Scope_1014D_2023-01-06.pdf
(DQ1B),DIFFIO_B16n,IO 64 78 VCCINT IO 65 ADC2_ENCA 1V2 102 VCCINT VREFB4N0,IO 66 ADC2_D7A C VCCINT (DQ1B),RUP2,IO ADC2_D6A D2 C 116 VCCINT (DQ1B),RDN2,IO 67 ADC2_D5A 1N5819 134 VCCINT (DQS0B/CQ1B,DPCLK3),DIFFIO_B20n,IO
in „Fnirsi 1014d defekt“ · Mikrocontroller und Digitale Elektronik ·
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203493453ADF7020_0.pdf
appropriate parameters. Rev. 0 | Page 20 of 44 ADF7020 FREQUENCY CORRELATOR SLICER where: I IF E E Rx DATA DEMOD_CLK is as defined in the Register 3—Receiver Clock I N LIMITERS S F TO Register section,Note 2. P O DH K = Round(200e3/FSK Deviation) Q E N Rx CLK IF –DEV IF +DEV D S 0 6 To optimize the coefficients
in „LFCP_VQ löten/belichten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OLIMEX-stm32-p107-schematic.pdf
MF0 RXD0 46 ETH_RMII_RXD1 R40 10k 3 MF1 RXD1 44 R41 10k 2 MF2 RXD2 43 MF3 RXD3 M M M M R42 10k 1 MF4 RX_ER/RXD4 51 _ _ _ _ R43 10k 64 CFG0 RX_CLK 49 3.3V A A A A BUTTONS R44 10k 63 CFG1 48 ETH_RMII_CRS_DV V V V V RS232 RX_DV D D D D 25MHZ 12 38 LED10 R49 1.5k 3.3V 3.3V 3.3V 11 X1 LEDR10 37 LEDTR N N U3
in „Streuung der ADC-Werte beim STM32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32-P207-P407_rev_D.pdf
SOFT_SDA 1 8 1 N 3 N 2 131 VDD_10 PA9/USART1_TX/TIM1_CH2/I2C3_SMBA/DCMI_D0/OTG_FS_VBU102 DCMI_D1 PA9 C64 SOFT_SCL 2 SDA VDD 1 30 VDD_11 PA10/USART1_RX/TIM1_CH3/OTG_FS_ID/DCMI_D103 OTG_FS_DM PA10 SN65HVD230(SO8) TEMP_ALERT R122 3 SCL 7 C65 2 VDD_12 PA11/USART1_CTS/CAN1_RX/TIM1_CH4/OTG_FS_DM 2 +5V_CAN ALERT A0 +3V +3V ( 5 6 7 8 9 0 1 2 3 4 5 6 7 144 VDD_SA PA12/USART1_RTS/CAN1_TX/TIM1_ETR/OTG_FS_DP104 OTG_FS_DP 100nF CAN_T R117 560R (#OS
in „Mit STM32F4 einen Laser ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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Sp3A-DSP-1800A-Starter-Schematic-Rev1.pdf
_n 24R0 ETH_Rx_D1 2A1 2B1 GMII_RXD0 11 IO_L30n_3 N4 Place R136 close F5 2A2 2B2 F2 GMII_RXD1 11 IO_L31p_3 N1 FPGA_DDR_CLK0_p to pin N7 ETH_Rx_D2 G6 2A3 2B3 G1 GMII_RXD2 11 IO_L31n_3 N2 FPGA_DDR_CLK0_n ETH_Rx_D3
in „Schematics von Spartan 3A-DSP 1800 Board“ · FPGA, VHDL & Co. ·
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PDF
Powerline-IC_HCPL-_810J.pdf
GND1 GND2 Figure 13. Load detection test circuit. 1 16 GND1 Tx-en GND2 2 15 100 nF 100 µF V OUT Tx-in Tx-out 3 14 SCOPE Rx-PD-out VCC2 100 nF 4 Rx-Amp-in Tx-PD-out 13 5 V 1kΩ 5 12 Status Tx-LD-in GND1 6 11 Rx-out Cext 1 µF V CC1 7 VCC1 Rx-in 10 100 nF 8 9 100 nF GND1 Rref HCPL-810J
in „Powerline-Transmitter auf reinen Wechselspannungsbetrieb umbauen“ · Haus & Smart Home ·
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PDF
MyPC_sch.pdf
PE_OC0A 4 PF_MOSI OC0B_OC0A_XCK0_SCL_PE1 37 PE_OC0B 3 PF_MISO OC0C_/OC0B_RXD0_PE2 38 AVR_RX 3.3V 100n 2 PF_SCK D OC0D_OC0B_TXD0_PE3 39 S65_CS 3.3V 1 G /OC0C_OC1A_/SS_PE4 40 S65_DATA 1 u C12 . OC0C_OC1B_XCK1_MOSI_PE5 41 S65_LED L 1 SPI 3 /OC0D_RXD1_MISO_PE6 42 S65_CLK GND OC0D_TXD1_SCK_CLKO_EVO_PE7
in „Bitte Schaltplan&Layout checken“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Orion_Rev_3.0__1_.pdf
/DQ5T IO_B8_D7/DIFFIO_T15N/DQS3T/CQ3T#,DPCLK16 D8 VREFB6N2 GXB_RX2N PHY_RESET_N IO_B8_A5/DIFFIO_T16N/DM3T/BWS#3T IO_B8_D8 G21 VREFB7N0 GXB_RX2P W2 PHY_INT_N A6 IO_B8_A6/DIFFIO_T16P IO_B8_D9/DIFFIO_T6P/DQ1T D9 D C21 VREFB7N1 GXB_RX3N
in „Suche Firma die für Privat BGA FPGA reballing macht“ · Markt ·
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PDF
ln_423_425_3005XIII_schaltplan.pdf
R63 R35 C C T 3 C 2 1 + 1 1 1 VA2 16 F3 470u 104 3.9k 3.9k 100k LM358 8.2k IC6A 1 IC6B 7 IC6C 8 CN4 N N E C N S S V D C B VF2 15 C9 3 5 10 100k 150 CON4 44 T O O O 12 VA1 VG2 14 Φ0.67-18T 1A R52 R54 REF+ A1 VE2 13 1BQ20 8 75k LM324 R53 LM324 LM324 1 65k 22k 2 43 REF- F1 13 VF1 VD2 12 7.7V 3A/125℃ VB
in „Labornetzgerät LN-423/425, 3005XIII, McPower 2x30V/5A - Verbesserungen u. Änderungen“ · Analoge Elektronik und Schaltungstechnik ·
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MFRC530-NXP.pdf
reader solution 8. Pinning information OSCIN 1 32 OSCOUT IRQ 2 31 RSTPD MFIN 3 30 VMID MFOUT 4 29 RX TX1 5 28 AVSS TVDD 6 27 AUX TX2 7 26 AVDD TVSS 8 25 DVDD NCS 9 MFRC530 24 A2 NWR/R/NW/nWrite 10 23 A1 NRD/NDS/nDStrb 11 22 A0/nWait DVSS 12 21 ALE/AS/nAStrb AD0/D0 13 20 D7/AD7 AD1/D1 14 19 D6/AD6 AD2
in „[V] 3St. RFID (Mifare) Lese ICs NXP MFRC530 SO32 (4€)“ · Markt ·
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AES-S6MB-LX9-G_SCH_RevC.PDF
POFPGA_ETH_RX_DV 12 IO_L49n_1_M1DQ11 PIU40P18 FPGA_ETH_RX_D0 3 POFPGA_ETH_RX_D3 12 IO_L50p_1_M1UDQSp PIU40N15 FPGA_ETH_RX_D0 2 POFPGA_ETH_RX_D2 1 IO_L50n_1_M1UDQSn PIU40N16 FPGA_ETH_RX_D0 1 POFPGA0ETH0RX0D1 12 IO_L51p
in „Pulse Generator nicht genau genug, brauche Hilfe“ · FPGA, VHDL & Co. ·
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STM32F407ZG-board-schematic.pdf
_INETH_RMII_RXD0 C68 100nF NA 2.2nF TS4871ID(SO-8) VBAT 6 PC4/ETH_RMII_RX_D0/ETH_MII_RX_D0/ADC1245N14 ETH_RMII_RXD1 PC5 2.2uF/6.3V VBAT PC5/ETH_RMII_RX_D1/ETH_MII_RX_D1/ADC1296N15 USART6_TX U9 C69 R61 VBAT PC6/SPI2_MCK/TIM8_CH1
in „8Mbit/s Manchester Code codieren und decodieren mit STM32F407“ · Mikrocontroller und Digitale Elektronik ·
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STM32F407ZG-board-schematic.pdf
_INETH_RMII_RXD0 C68 100nF NA 2.2nF TS4871ID(SO-8) VBAT 6 PC4/ETH_RMII_RX_D0/ETH_MII_RX_D0/ADC1245N14 ETH_RMII_RXD1 PC5 2.2uF/6.3V VBAT PC5/ETH_RMII_RX_D1/ETH_MII_RX_D1/ADC1296N15 USART6_TX U9 C69 R61 VBAT PC6/SPI2_MCK/TIM8_CH1
in „Problem: SPI Remap am STM32F407ZG“ · Mikrocontroller und Digitale Elektronik ·
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STC15-English.pdf
RSERVED 28 down the button "Download/Program" on U 12MHz STC-ISP.exe when burning code to MCU. C 2 DTR_N NC 27 M VO_3.3V 3 RTS_N TEST 26 22pF 4 VDD_325 GND 25 C 5 RxD NC 24 T 6 RI_N GP1 23 S 7 GND GP0 22 VO_3.3V 8 NC NC 21 4.7K 9 DSR_N VDD_5 20 10K USB +5V 10 DCD_N RESET_N 19 0.1μF 10μF 11 CTS_N GND 18
in „Testbericht Elektronische Last“ · Analoge Elektronik und Schaltungstechnik ·
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CM-BF537E_HardwareUserManual_V1.pdf
ADP3338 60 RSCLK0/TACLK2 A1 120 5.0V 3.3V 2 RFS0/TACLK3 A2 62 1 3 D 2 59 DR0PRI /TACLK4 A3 119 2 IN N OUT 3 DR0SEC/TACI0/CAN_Rx A4 63 3 C1 G 58 TFS0/SPI_CS31 A6 118 1uF 1 1uF C2 4 DT0PRI /SPI_CS2 A7 64 X1 57 DT0SEC/SPI_CS7/CAN_Tx A8 117 5 CLK_out A9 65 GND 56 SCL A10 666 55 SDA A11 115 7 PF10/SPI_CS1
in „SDHC Karte Einbindung“ · Mikrocontroller und Digitale Elektronik ·
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flash.pdf
3$I2C_SDA 3 4 PG2 11 12 PD15 A PA8 PA9 13 14 A PA10 5 6 PA11 PD14 PD13 7 1 8 PD12 15 16 PD11 1#COM_RX 1#USB_RX 1#I2C_SCL PA12 X PA15 17 18 3 PC10 9 0 10 PC11 PD10 19 20 PD9 R 11 _ 12 PB15 PD8 COM_RX 2 O USB_RX 2 S I2C_SCL 2 P PC12 N PD0 4 C 8 U 2 M PD1 13 O 14 PD2 P P P J 15 C 16 BC5 J 3 J3 J3 #COM_CTS 17 18 #COM_RTS 1 2 PB14 $COM_RX $USB_RX $I2C_SCL #COM_RX #COM_TX 3 4 PD7 19 20 #USB_RX PB13 PB12 PB11 5 6 PB10 #COM_CTS #USB_CTS 7 1 8 1 1 1#PG0 PE15 9 2 10 PE14 PE13 0 PE12 2 M 2 B 0 PE11 11 N 12 PE10 COM_CTS O USB_CTS U PG0 2 T BC2
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h-bridge-driver_hip4081a.pdf
UPPER DISABLE TURN-OFF PROPAGATION VOLTAGE vs TEMPERATURE DELAY T DISHIGHvs TEMPERATURE 525 80 ) ) 70 n 500 n Y ( A A E L D D 60 N N I 475 I A T G G 50 P A O O P 450 R P 40 425 30 -50 -25 0 25 50 75 100 125 150 -40 -20 0 20 40 60 80 100 120 JUNCTION TEMPERATURE (°C) JUNCTION TEMPERATURE (°C) FIGURE 12.
in „Motorsteuerung AVR Atmega per ISP flashen“ · Mikrocontroller und Digitale Elektronik ·
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Timing-Diagramm für 16-Bit-Pixeldatenübertragung
ST7735 9.7.21 Write data for 16-bit/pixel (RGB 5-6-5-bit input), 65K-Colors, 3AH="05h" RESX "L" IM2 IM2=IM1=IM0="" CSX "L" D/CX D7 D6 D5 D4 D2 D1 D0 D7 D6 D5 D4 D3 D2 D1 D0 D7 D6 D5 D4 D3 D2 D1 D0 SDA Rx1 Gx1 Bx1 Rx2 Gx2 Bx2 Rx3 Gx3 Bx3 Rx4 Gx4 Bx4 Rx5 Gx5 Bx5 Pixel n Pixel n-1 SCL 16 bits 16 bits Look-up table for 65k color data mapping (16 bits to 18 bits) Frame memory R1 G1 B1 R2 G2 B2 R3 G3 B3 Note 1: Pixel data with the 16-bit color depth information Note 2:
in „Probleme mit SPI- PIC18“ · Mikrocontroller und Digitale Elektronik · · Screenshots