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Sti7105_SDK_Main_Board_V1.2.pdf
_OVRI [11] 1 USB2_OVRI GND 2 SATA_TXP CSA1 10N SATATXP USB2_OVRI [11] TX+ 3 SATA_TXN CSA2 10N SATATXN I2C_SCLA TX- 4 I2C_SDAA I2C_SCLA [11] GND SATA_RXN CSA3 10N SATARXN I2C_SDAA [11] RX- 5 SATA_RXP CSA4 10N SATARXP RX+ 6 GND 7 A A 10 SH3 SH1 8 UD9
in „Motorola Vip19x0 (Big brother of Vip1710)“ · Mikrocontroller und Digitale Elektronik ·
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Sinuswechselrichter.pdf
n TCER- ENI L- U r T e s B B - - e u r u l e h g - X X X t n s n h ENI L- NO Ü S r T R T R S p e A c s v S e f N F t TXE- FFO O O N TXE- NO l t - g l t S s r - n D e i i r / es t a L n e n a n T N i A
in „Wechselrichter Spannung und Frequenz steuerbar für Teichpumpe“ · Haus & Smart Home ·
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PDF
cc1100.pdf
Sense. IDLE to TX/FSTXON, with ~21037 809µs For ASK/OOK modulation, lack of carrier calibration TX to RX switch 560 21.5µs sense is only considered valid after eight symbol periods. Thus, the RX to TX switch 250 9.6µs MCSM2.RX_TIME_RSSI function can be used RX or TX to IDLE, no calibrati2n 0.1µs in ASK/
in „Scrambler für Funkstrecke“ · Mikrocontroller und Digitale Elektronik ·
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ARM_Cortex_Modul.pdf
1 2 3 4 5 6 7 8 U1 3,3V 26 66 C1 PA0 27 PA0/U0RX PB0/PWM2 67 PB0 PA1 28 PA1/U0TX PB1/PWM3 70 PB1 PA2 PA2/SSI0CLK PB2/I2C0SCL PB2 100nF PA3 29 PA3/SSI0FSS PB3/I2C0SDA 71 PB3 PA4 30 PA4/SSI0RX PB4/C0 92 PB4 CAN_H 3,3V PA5 31 PA5/SSI0TX PB5/C0o 91 PB5
in „PoE AVR Modul“ · Markt ·
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W5500_ds_v110e.pdf
) 0x0011 (Sn_DPORT1) 0x0025 (Sn_TX_WR0) 0x0001 (Sn_TX_WR1) Socket n Socket n RX Received Socket n Interrupt Maximum Segment Size 0x0026 Size 0x0002 (Sn_IR) 0x0012 (Sn_MSSR0) 0x0027 (Sn_RX_RSR0) 0x0013 (Sn_MSSR1) (Sn_RX_RSR1) Socket n Status Socket n RX Read Pointer 0x0003 (Sn_SR) 0x0014 Reserved 0x0028 (Sn_RX_RD0) Socket n Source Port Socket n IP TOS 0x0029 (Sn_RX_RD1) 0x0004 (Sn_PORT0) 0x0015 (Sn_TOS) Socket n RX Write 0x0005 (Sn_PORT1) Socket n IP TTL 0x002A Pointer Socket n Destination 0x0016 (Sn_TTL)
in „Schaltung W5500“ · Mikrocontroller und Digitale Elektronik ·
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AN460_P82B96.pdf
5 V SU01022 Figure 4. Galvanic isolation of I 2C nodes via opto-couplers +5 V 6N137 +5 V x 2 *0.1 ▯F 2K2 560 560 USUAL I C PULL-UP USUAL I C PULL-UP 2 IC SDA I C SDA (SDA) 6 7 8 2 Rx (SDA) *0.1 ▯F 1/2 P82B96 5 3 2N2907 *NOTE: 6N137 data recommends 0.1 ▯F mounted between pins 5 and
in „I2C EEPROM Störung bei 15m mit BusBuffer P82B96“ · Mikrocontroller und Digitale Elektronik ·
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E461201_BA_Rev17_Touch-it_XELO.pdf
Description Function Description Function Description 1 DCD Data Carrier Detect DATA- Data differntial pair Rx+ Receiver differential pair + 2 RX Receive Data DATA+ Data differntial pair Rx- Receiver differential pair - 3 TX Transmit Data n.c. Tx+ Transmitter differential pair+ 4 DTR Data Terminal Ready n.c.
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HFBR-14XX_Optolink.pdf
0.10) 4 5 3 6 2 7 1 8 2.5 (0.10) PIN NO. 1 INDICATOR 6 Mechanical Dimensions SC Port HFBR-x4Ex x O N W E / R I W X R N R Y R- U O A F C H 28.65 (1.128) 12.7 6.35 (0.50) (0.25) 10.0 10.38 (0.394) 3.60 (0.409) (0.140) 5.1 15.95 (0.200) (0.628) 3.81 1.27 (0.15) 2.54 (0.050) (0.10) 2.54 (0.100) 12.7 (0.500
in „Debuggen bei EMV-Tests“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LENOVO_THINKPAD_YOGA_900-13ISK_LCFC_NM-A411_BYG40_Rev1.0.pdf
_N 33 USB3.0 PORT (RIO1) G13 PCIE1_RXP/USB3_5_RXP USB3_1_TXP D13 USB3_TX1_P 33 B17 PCIE1_TXN/USB3_5_TXN A17 J6 USB3_RX2_N 33 PCIE1_TXP/USB3_5_TXP USB3_2_RXN/SSIC_1_RXN H6 USB3_RX2_P 33 D G11 USB3_2_RXP/
in „Notebook Leistungsteil reparatur“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rpn_boris_A328_v2.8.bas
' Rx = Rx / Ee_grdrad Case K_tangens ' TAN Lstx = Rx Rx = Rx * Ee_grdrad Rx = Tan(rx) ' Case K_atan ' ArcusTangens Lstx = Rx Rx = Atn(rx) ' Rx = Rx / Ee_grdrad Case K_logn ' LN Lstx = Rx Rx = Log(rx) Case
in „Noch ein Taschenrechner auf ATMega Basis“ · Projekte & Code ·
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Datei
rpn_boris_A328_v2.7.bas
' Rx = Rx / Ee_grdrad Case K_tangens ' TAN Lstx = Rx Rx = Rx * Ee_grdrad Rx = Tan(rx) ' Case K_atan ' ArcusTangens Lstx = Rx Rx = Atn(rx) ' Rx = Rx / Ee_grdrad Case K_logn ' LN Lstx = Rx Rx = Log(rx) Case
in „Noch ein Taschenrechner auf ATMega Basis“ · Projekte & Code ·
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Datei
TCA785.txt
SUBCKT TCA785 59 60 61 62 63 64 65 66 67 68 100 +PARAMS: Cb=2000, Ca=500pF, Ri=200K, Ext 12=0, Ext13=0 Ca 51 100 {Ca} IC=0 Cb 54 100 { ( ( (Cb/2 ) +30)*1E -6) / 69 } IC=0 Cd 71 72 150nF Cx 55 100 300nF IC=1 Rr 54 55 100 Rx1 53 100 200 Rx2 53 55 200 Rx3 72 74 100 Rin 53 54 1MEG Rf 1 65 100 1K Rf2 66 100 1K Rf3 67 100 1K Rf 4 68 100 1K Da 72 53 IDEAL Dc 55 100 IDEAL Dd 100 55 IDEAL Sa 51 100 52 100 SWITCH1 Sb 54 100 55 100 SWITCH2 VA 74
in „TCA785.txt in Ltspice einfügen“ · Analoge Elektronik und Schaltungstechnik ·
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LEA-4x_Data_Sheet_GPS.G4-MS4-06143_.pdf
focus 1.3 Block Diagram GND RF_in ATR0610 SAW-Filter GND A D XTO V_ant ATR0601 23.104 MHz c C AADET_N P0 RF_ON & SLEEP_N P15 l i D VBAT Reset_N (O.D. @ 1.8 V) 32.768 kHz EXTINT0 RESET ARM7 GPS CPU Channels RTC I/Os RxD/TxD, USB GPIO Pins or I/Os Battery SPI GPSMODE Pins SRAM ROM backed (optional) 128
in „ublox CR4 - kleine Frage RX-TX“ · Mikrocontroller und Digitale Elektronik ·
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mXwqzyt.pdf
100/200 12 0.6 68 RG 2Z EL02Z 1.5 25 –40 to +150 0.98 1.5 50 0.1 100 40 100/100 30 100/200 20 0.2 65 EL 1Z 1.5 20 –40 to +150 0.98 1.5 100 0.5 100 100 100/100 50 100/200 17 0.3 66 RN 1Z 1.5 60 –40 to +150 0.92 1.5 20 3 150(Tj)100 100/100 50 100/200 15 0.4 67 Axial RX 10Z 2.0 30 –40 to +150 0.98 2.0
in „Diode Ersatztyp?“ · Analoge Elektronik und Schaltungstechnik ·
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KS8863MLL_FLL_RLL_DEMO_BOARD_V1.pdf
FT_SD1 RD- 3 FT_RDM1 C21 0.1UF R197 R R201 0 RXM_1 5 X RD+ 2 FT_RDP1 R N/C RX_GND 1 FIBER RX C22 0.1UF R198 R R202 0 RXP_1 5 TOP VIEW R68 R69 R70 R71 82 82 130 130 R72 R73 R74 R75 RXM1 2 U6 FIBER TRANSCEIVER 49.9 49.9 NC NC RXP1 2 HFBR-5803Z (+3.3V) C23 Layout will support
in „KSZ8863RLL Paketverlust“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RIGOL-DSA815-TG_Unpublished-Information_2014-09-12.pdf
(u16SysFmtErr = 0),(u16AddrAccessErr = 0),(u32TotalTxByte = 56),(u32CurTxByte = 56)" :DBGCMD:STAT? RX -> "(u16InteruptCnt = 0),(u16WInQCnt = 0),(u16RxDataCnt = 0),(u16ProCnt = 3),(u16IBFullCnt = 0)," :DBGCMD:STAT? Q -> "(u16NoFreeNode = 0),(u16QIsFull = 0),(u16QIsEmpty = 0),(u16RxBufOverflow = 0),(u16RxDataPtrNull
in „Rigol DSA815 Spektrum Analyser“ · PC Hard- und Software ·
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PDF
RDA5851S.pdf
1 1 0 1 rx 0 0 0 0 0 0 0 0 JRRXC 1 1 1 0 1 rx 1 0 0 0 0 0 0 0 LI 0 1 1 0 1 rx offset LB 1 0 0 0 0 rx ry offset LBU 1 0 1 0 0 rx ry offset LH 1 0 0 0 1 rx ry offset LHU 1 0 1 0 1 rx ry offset LW 1 0 0 1 1 rx ry
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CSR1010_Data_Sheet_CS-231985-DS.pdf
PIO[8] DEBUG_MISO - - S R PIO[7] DEBUG_MOSI - - 0 1 0 PIO[6] DEBUG_CS# - - Q F PIO[5] DEBUG_CLK - - N PIO[4] - SF_CS# - D a PIO[3] - SF_DIN - a PIO[2] - - - S e e PIO[1] - - UART_RX t PIO[0] - - UART_TX Table 5.2: Alternative PIO Functions Note: CSR cannot guarantee that the PIO assignments remain as
in „I²C Daten über Bluetooth übertragen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
515502_1__2_.pdf
100V 10% 10% 10% GND GND GND 2 2 Q4 2 Q5 R66 SUM110N06-3m9H Q6 SUM110N06-3m9H [3] GH_A 1 110A SUM110N06-3m9H [3] GH_C R67 1/10W1 110A 60V [3] GH_B R68 1/10W 1 110A 1 5% 60V C 1 3 1 5% 60V 3 C 3 SH_C [3] 1/10W SH_A [3] SH_B [3] 5% 2 2 2 Q8 Q7 Q9 SUM110N06
in „Allgemeine Frage bezüglich Motor Treiber/Inverter“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
ds1307.c
){ case waitAktion: switch(RX_buffer[index_rxBuf_R]){ //Comands case '?': printf("<<<<<<<<<<<<<<<<<<<<<<>>>>>>>>>>>>>>>>>>>>>>\n\n"); printf("rtc_ds1307\n\n"); //Systemname printf("?\tAnzeige Implementierter Tokens\n"); //Anzeige
in „DS1307 verhält sich komisch“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rpn_boris_A328_v2.9.bas
' Rx = Rx / Ee_grdrad Case K_tangens ' TAN Lstx = Rx Rx = Rx * Ee_grdrad Rx = Tan(rx) ' Case K_atan ' ArcusTangens Lstx = Rx Rx = Atn(rx) ' Rx = Rx / Ee_grdrad Case K_logn ' LN Lstx = Rx Rx = Log(rx) Case
in „Noch ein Taschenrechner auf ATMega Basis“ · Projekte & Code ·
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Datei
display.asm
+--+-+--+ 2 Zeilen zu je 16 Stellen ; !RESET | |_| | VCC Memoryadr.: Zeile1: 00 und Zeile2: 40h ; (RX)PD0 | | PB7(SCK) n.c. ; (TX)PD1 | | PB6(MISO) n.c. ; XTAL2 | | PB5(MOSI)----- Display pin 4 RS ; XTAL1 | | PB4 ----- Display pin 6 Enable ; (INT0)PD2 | | PB3(OC1) ----- Display pin 14 ; (INT1)PD3 | |
in „LCD Routine Funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ohne_kontrollausgabe.asm
)(_rx_buffer_tail + 1) % SERIAL_RX_BUFFER_SIZE; return c; } } 15c: 08 95 ret 0000015e <HardwareSerial::peek()>: { return ((unsigned int)(SERIAL_RX_BUFFER_SIZE + _rx_buffer_head - _rx_buffer_tail)) % SERIAL_RX_BUFFER_SIZE
in „AVR Inline Optimierung kaputt?“ · Mikrocontroller und Digitale Elektronik ·
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CD4538.pdf
Instruments Incorporated 1 CD54HC4538, CD74HC4538, CD54HCT4538, CD74HCT4538 Functional Diagram 1Cx 1Rx VCC 1 2 1Cx 1RxCx 4 6 1A 1Q MONO 1 5 7 1B 1Q 3 1R 2R 13 12 10 2A 2Q 11 MONO 2 9 2B 2Q 2Cx 2RxCx 15 14 GND = 8 VCC V = 16 CC 2Cx 2Rx TRUTH TABLE R2 INPUTS OUTPUTS CL R1 Q R A B Q Q CL L X X L H p D n
in „Unterschied CD4528 zu CD4538 ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CD4528BM.PDF
resettable. TriggeSeparate reset available 2 from either the rising or falling edge of anQuiescent curre5.0 nA/package (typ.) at 5.0 V ing in an output pulse over a wide range ofYwidths. Pulse DC B duration and accuracy are determined by extYrnal timingction on all inputs C components Rx and Cx. Triggerable
in „HiLo All-07 IcTest erstellen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ml50x_schematics.pdf
A8 NC FERRITE-220 AVTT_RX_112 AVTTRX_112 RXN0_112 N1 SGMII_RX_P SGMII_RX-C_P AVTTRX_124 BANK 124 RXN0_124 A9 NC FB76 M3 FF1136 RXP0_112 N2 SGMII_TX_N F SGMII_TX-C_N C10 RXP0_124 B9 NC AVTTTX1_112 TXN0_112 8 U 6 7 AVTTTX1_124
in „DDR2 RAM Ansteuerung mit Virtex-5 ML507“ · FPGA, VHDL & Co. ·
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PDF
schema_stm32_primer2_1_2.PDF
56 C10 C11 C12 C13 C14 68 PA8/USART_CK/MCO PD9/FSMC_D14 57 IRDA TX PA9USART1_TX PD10/FSMC_D15 2 100nF 2 100nF 2 100nF 2 100nF 2 100nF IRDA RX 69 PA10/USART1_RX PD11/FSMC_A16 58 LCD_RS USB-DM 70 PA11/USART1_CTS PD12/FSMC_A17 59 USB-DP 71 60 PA12/USART1_RTS PD13/FSMC_A18 61 VCC5_USB CX_ADC_TIM 35 PD14
in „STM32 USB Virtual COM Port“ · Mikrocontroller und Digitale Elektronik ·
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PDF
camaro_stand_alone.pdf
RX-328P 1N4148 + 48 PD5 PK7 82 TX-328P 49 PD6 GND 50 PD7 PL0 35 3,3V-OBD 36 k 0 PL1 FNC 0 4 2 CH340_TX 2 PE0 PL2 37 1 R CH340_RX 3 PE1 PL3 38 U3B C 4 39 LM339 V 9 PE2 PL4 R30 MISO 1 MISO PSWITCH-N 5 PE3
in „Stn1110 am atmega2560 uart probleme“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rpn_boris_A328_v2.12.bas
Rx = Acos(rx) ' Rx = Rx / Ee_grdrad Case K_tangens ' TAN Lstx = Rx Rx = Rx * Ee_grdrad Rx = Tan(rx) ' Case K_atan ' ArcusTangens Lstx = Rx Rx = Atn(rx) ' Rx = Rx / Ee_grdrad Case K_logn ' LN Lstx = Rx Rx
in „Noch ein Taschenrechner auf ATMega Basis“ · Projekte & Code ·
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Datei
rpn_boris_A328_v2.13.bas
Rx = Acos(rx) ' Rx = Rx / Ee_grdrad Case K_tangens ' TAN Lstx = Rx Rx = Rx * Ee_grdrad Rx = Tan(rx) ' Case K_atan ' ArcusTangens Lstx = Rx Rx = Atn(rx) ' Rx = Rx / Ee_grdrad Case K_logn ' LN Lstx = Rx Rx
in „Noch ein Taschenrechner auf ATMega Basis“ · Projekte & Code ·
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Datei
rpn_boris_A328_v2.13.bas
Rx = Acos(rx) ' Rx = Rx / Ee_grdrad Case K_tangens ' TAN Lstx = Rx Rx = Rx * Ee_grdrad Rx = Tan(rx) ' Case K_atan ' ArcusTangens Lstx = Rx Rx = Atn(rx) ' Rx = Rx / Ee_grdrad Case K_logn ' LN Lstx = Rx Rx
in „Noch ein Taschenrechner auf ATMega Basis“ · Projekte & Code ·
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Datei
rpn_boris_A328_v2.10.bas
' Rx = Rx / Ee_grdrad Case K_tangens ' TAN Lstx = Rx Rx = Rx * Ee_grdrad Rx = Tan(rx) ' Case K_atan ' ArcusTangens Lstx = Rx Rx = Atn(rx) ' Rx = Rx / Ee_grdrad Case K_logn ' LN Lstx = Rx Rx = Log(rx) Case
in „Noch ein Taschenrechner auf ATMega Basis“ · Projekte & Code ·
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Datei
rpn_boris_A328_v2.11.bas
' Rx = Rx / Ee_grdrad Case K_tangens ' TAN Lstx = Rx Rx = Rx * Ee_grdrad Rx = Tan(rx) ' Case K_atan ' ArcusTangens Lstx = Rx Rx = Atn(rx) ' Rx = Rx / Ee_grdrad Case K_logn ' LN Lstx = Rx Rx = Log(rx) Case
in „Noch ein Taschenrechner auf ATMega Basis“ · Projekte & Code ·
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PDF
ISP1301.pdf
for the interface logic signals (1.65 V to 3.6 V) DGND exposed P - digital ground die pad [1] A detailed description of these pins can be found in Section 8.10. [2] Symbol names ending with underscore N (for example, NAME_N) indicate active
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
B150XG01.pdf
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- 18 RxCLKIN+ 19 GND 20 GND 21 NC 22 NC 23 NC 24 NC 25 NC 26 NC 27 NC 28 NC 29 NC 30 NC (C) Copyright AU Optronics,
in „15" XGA Display an Computer anschließen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
toshiba_satellite_l755.pdf
N12 Close to chip +3V_S5 USB30_RX1-_R R3006 U3@0_4 USB30_RX1- 5 5 SSRX- C14 GND Use 1% RES U3001 USB30_RX1+_R R3007 U3@0_4 USB30_RX1+ 6 6 SSRX+ U2PVSS N11 USB_CS# 1 CE VDD 8 7 7 GND USB_SPI_CLK R3021 U3
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PDF
TFDS6F.pdf
CONNECTED TO GROUND 0.95 0.4 0.80 1.27 (x7) 0.4 0.20 0.2 1.45 2.65 11.75 2.05 2.54 3.55 3.15 8 7 6 5 3 Vcc DRIVER AMPLIFIER COMPARATOR 2 Rx 1 2 3 4 6 CONTROL 8 SD/MODE LOGIC 2.54 7 DRIVER Tx 1 4 GND PIN ASSIGNMENT PIN# PIN NAME DESCRIPTION I/O ACTIVE TEMIC Semiconductors 1 IRED cathode Internally connected to driver transistor Europe/Germany Fax: 49 7131 6724231 2 Rx (output) Received data O Low 3 V cc Supply voltage Tel.: 001 408 567 8276 Fax: 001 408 567 8959 4 GND Ground Asia Pacific/Singapore 5 NC No connection Tel.: 65 788 6668 Fax: 65 788 0988 6 SD/M Shutdown
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
USB3320_STM32F4.pdf
22 VREF+ XO NXT 23 VDDA DIR PA0/USART2_CTS/USART4_TX/WKUP +3V VBAT CLKOUT 24 PA1/USART2_RTS/USART4_RX VDD33 25 PA2/USART2_TX +1V8 VDD18 REFCLK VDD18 STM32F407VX +3V VDDIO NC N GND U$1G$2 G 26 PA3/USART2_RX 27 VSS2 28 VDD2 29 PA4/SPI1_NSS/SPI3_NSS/USART2_CK 30 31 PA5/SPI1_SCK 32 PA6/SPI1_MISO 33 PA7/SPI1
in „STM32F4 USB High Speed VCP mit USB3320 PHY“ · Projekte & Code ·
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PDF
INTERFACE_20.pdf
für Ihre Anwendung! Transceiver Baustein Schnittstellenprotokoll am Bus Pins/Gehäuse MAX3160 2Tx/2Rx RS-232 oder 1Tx/1Rx RS-485/RS-422, pin-programmierbar 128 20-SSOP MAX3161 2Tx/2Rx RS-232 oder 1Tx/1Rx RS-485/RS-422, pin-programmierbar 256 24-SSOP MAX3162 2Tx/2Rx RS-232 und 1Tx/1Rx RS-485/RS-422 256
in „galvanische Trennung RS232“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TRW-24G.pdf
N C12 + 1N4001 + 100UF G 470UF R11 A R 2 J1 A DC JACK D5 DIP SW"1" 0 =250K 1=1MBPS Title wenshing electro DIP SW"2" 0 =COMPUTER SET 1=AUTO LINK LED POWER Size Document Number Rev LED DIP SW"3" 0 =WORK
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Receiver_2.pdf
16 91 RX0- O_R0 69 SV2 DATA0- 17 R10 DATA0+ 18 93 RXC+ O_G7 66 B0 R11 64 63 DATA0/5S 19 94 RXC- O_G6 65 B1 R12 62 61 DATA5- 20 IC1 O_G5 64 B2 R13 60 59 DATA5+ 21 3 96 EXT_RES O_G4 63 B3 R14 58 57 CLOCKS 22 3
in „digital VGA 6bit -> VGA?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AiMS2000.pdf
TRACEDATA0 P0.29/USB_D+ 29 3 13 NC 67 P2.6/PCAP1.0/RI1/TRACECLK P0.30/USB_D- 30 VIN D3 V C 66 P2.7/CAN_RX2/RTS1 BAT60A + C V 65 D1 GND + 64 P2.8/CAN_TX2/TXD2 BAT60A IN K OUT 53 P2.9/USB_CONNECT/RXD2 GND Q1 52 P2.10/EINT0N/NMI IC3 C8 A BCX71SMD 51 P2.11/EINT1N/I2STX_CLK C31 LD1117S33 10uF B 50 P2.12/EINT2N
in „Schaltplan Prüfung/Kritik LPC1769 + IMU + Bluetooth“ · Mikrocontroller und Digitale Elektronik ·
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PDF
T302B_Brief_Release_v1.05.pdf
depends on customer design T302BV) request. - LQFP 128 pin (T302BA, T302BZ) - Voltage : 3.3V/1.8V n On-chip Video DAC for TV-out display n On-chip audio DAC for playback n On-chip SAR n USB 2.0 high speed OTG controller up to 480 Mb/s n Memory subsystem - NOR flash controller – both SPI/PPI support
in „Übersicht über preisgünstige elektronische Geräte für reverse-engineering“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AiMS2000.pdf
1 2 3 4 5 6 7 8 3 3 GND +3V3 - + - 1 1 2 3 4 5 6 7 8 C9 - J C22 C21 C1 C2 C7 C10 0 10uF 100nF10nF 100nF10nF 100nF10nF - 1 3 5 7 9 D H D N T W +3V3 G A F S I R21 A 2 4 6 8 1 V 10k IC1 LPC1768or LPC1769 4 TRST_N P1.0/5.1B 95 P1.0/ENET-TXD0 P0.0/CAN_RX1/TXD3/SDA1 46 SDA1/2.3B 2 TDI P1.1/5.1B 94
in „Schaltplan Prüfung/Kritik LPC1769 + IMU + Bluetooth“ · Mikrocontroller und Digitale Elektronik ·
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PDF
User_Guide_ETEMB043013XDHAL_Interface_Description_V1.0.pdf
Analog GPIO EVENTOUT 7 I2C2_INT PE2 Analog GPIO EVENTOUT 8 ETH_TX_D2 PC2 Analog GPIO EVENTOUT 9 ETH_RX_D1 PC5 Analog GPIO EVENTOUT 10 ETH_RX_D0 PC4 Analog GPIO EVENTOUT 11 ETH_RX_D3 PB1 Analog GPIO EVENTOUT TIM2_CH3 USART3_TX 12 ETH_RX_D2 PB0 Analog GPIO EVENTOUT TIM1_CH2N TIM3_CH3 13 ETH_RX_DV PA7 Analog GPIO EVENTOUT TIM1_CH1N TIM3_CH2 14 ETH_RX_ER PB10 Analog GPIO EVENTOUT 15 ETH_COL PA3 Analog GPIO EVENTOUT TIM2_CH4 TIM5_CH4 16 ETH_RX_CLK PA1 Analog GPIO EVENTOUT TIM2CH2 TIM5_CH2 17 ETH_MDC PC1 Analog GPIO EVENTOUT 18 ETH_CRS
in „EDT Display Interface mit STM32F7“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.cpp
::GetInstance()->n8ReadRxData(au8Data, u16NumRx);/// Store data m__oRxData.u8SlaveAddress = au8Data[0]; /// Store address if ((m__oRxData.u8SlaveAddress != eetMbSlaveAdr) /// Wrong slave address -> ignore && (m__oRxData.u8SlaveAddress
in „C++ Array in einer Klasse -> Grösse bestimmen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LPC1769_IMU_v3.pdf
TRACEDATA0 P0.29/USB_D+ 29 R 3 13 NC LED_3 67 P2.6/PCAP1.0/RI1/TRACECLK P0.30/USB_D- 30 VIN D3 V C 2 n LED_1 66 P2.7/CAN_RX2/RTS1 BAT60A + C C 10 65 D1 n R17 64 P2.8/CAN_TX2/TXD2 BAT60A IN K OUT 2 0 53 P2.9/USB_CONNECT/RXD2 - 2 1 T 6 5 4 3 2 1 O GND C 1 50R 52 P2.10/EINT0N/NMI D D A P IC3 C8 A 51 P2.11
in „Schaltplan Prüfung/Kritik LPC1769 + IMU + Bluetooth“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rpn_boris_A328_v2.14.bas
Rx = Acos(rx) ' Rx = Rx / Ee_grdrad Case K_tangens ' TAN Lstx = Rx Rx = Rx * Ee_grdrad Rx = Tan(rx) ' Case K_atan ' ArcusTangens Lstx = Rx Rx = Atn(rx) ' Rx = Rx / Ee_grdrad Case K_logn ' LN Lstx = Rx Rx
in „Noch ein Taschenrechner auf ATMega Basis“ · Projekte & Code ·
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PDF
srf02doku_dr.pdf
16000000 'Quarzfrequenz $baud = 9600 'Normale Hardware RS232 (hier hängt PC dran) Open "COMA.0:9600,8,N,2" For Output As #1 'Port PA0 wird als TX definiert Open "COMA.1:9600,8,N,2" For Input As #2 'Port PA1 wird als RX definiert Const Srf02_slaveid = 0 'Standard RS232 Slave ID von SRF02 Dim Entfernung
in „Berechnung der Entfernung mit SRF02“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rpn_boris_A328_v1.7.bas
= Pressedkey - 47 Select Case Memoryflag Case 1: ' STO Ee_mem(n_1) = Rx Call Beepme Case 2: ' RCL Call Enter Rx = Ee_mem(n_1) Bcheck = Checkfloat(rx) Errx = Bcheck And 5 If Errx > 0 Then Rx = 0.0 Call Beepme End Select Memoryflag = 0 Call Interpr_rx End If End Sub
in „Noch ein Taschenrechner auf ATMega Basis“ · Projekte & Code ·