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RFM22B.pdf
5 - b - l e u 0 r b f b g u o u n f C f C o o C C Figure 8. TX Timing 0 L T A T XTAL Settling L C L L L L RX Packet Time P P P 600us s d s 0 p 0 5 i 0 t k 1 u e n f b e e y m , a o u , c 0 u R - 0 , 0 5 u l 0 a - u 0 i l n b o r C g
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RFM22B.pdf
5 - b - l e u 0 r b f b g u o u n f C f C o o C C Figure 8. TX Timing 0 L T A T XTAL Settling L C L L L L RX Packet Time P P P 600us s d s 0 p 0 5 i 0 t k 1 u e n f b e e y m , a o u , c 0 u R - 0 , 0 5 u l 0 a - u 0 i l n b o r C g
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AVR-DD-Product-Brief-DS40002215A-1.pdf
VREFA VREF U T RSTCTRL BOD VLM I N CLKCTRL WOn TCAn G Clock Generation N SLPCTRL PLL XTALHF2 WO E TCBn T XOSCHF W O XTALHF1 WOx TCDn R WDT K OSCHF CLKOUT RxD EXTCLK TxD XCK USARTn RTC OSC32K XTAL32K2 XDIR XOSC32K MISO MOSI XTAL32K1 SCK
in „AVR-DD im Anrollen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Temperatur2.bas
Overlay Dim Dataregister(18) As Byte At &HA0 Overlay Dim B As Word At &H6A Overlay Dim C As Integer At &H65 Overlay Dim Temperatur As Integer At &H6C Overlay Dataregister(2) = 1 'Anzahl Messwerte Readeeprom Dataregister(1) , 1 'wenn keine Werte im Eeprom, dann Default Werte laden If Dataregister(1) = &HFF
in „Probleme mit Register in Bascom“ · Mikrocontroller und Digitale Elektronik ·
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murata_caps.pdf
1E)(1C)(2A)(1H)(1E)(1C)(1A)(2A)(1H)(1E)(1C)(1A)(0G)(2A)(1H)(1E)(1A)(0G)(2A)(1H)(1A) (0J) (0G) TC X7RX7RX7RX7RX7RX7RX7RX7RX7RX7RX7RX7RX7RX7RX7RX7RX7RX7RX7UX7RX7RX7RX7RX7UX7RX7RX7RX7TX7U (R7)(R7)(R7)(R7)(R7)(R7)(R7)(R7)(R7)(R7)(R7)(R7)(R7)(R7)(R7)(R7)(R7)(R7)(E7)(R7)(R7)(R7)(R7)(E7)(R7)(R7)(R7)(D7)(E7)
in „100nF SMD Entstörkondensator / Brand“ · Analoge Elektronik und Schaltungstechnik ·
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6neds.pdf
TA2OUT /W 6 5 P3 /A 15 P7 3/CTS 2/RTS 2/TA 1 /V 7 4 P4 /A 16 8 3 P72/CLK 2/TA 1OUT /V 2 5 P4 /A 17 P7 1/RxD 2/SCL/TA0 N/TB5 IN 9 2 P4 /A 18 0 1 P70/TX D2/SDA/TA0 OUT 3 3 3 3 3 3 3 3 3 4 4 4 4 4 4 4 4 4 4 5 P4 /A 19 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 P P P P P P P P P P P P P P P P P P P P 7 6 65 4 3
in „M16C- Key Input Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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MCP4151.pdf
while the k hardware pin forces both resistor networks to be “shut- o down” at the same time. t W N r s SHDN (from pin) s To Pot x Hardware R RxHW Shutdown Control B (from TCON register) FIGURE 5-2: Hardware Shutdown Resistor Network Configuration. FIGURE 5-3: RxHW bit and SHDN pin Interaction. © 2008
in „Frage zum MCP4151 SPI Digital Poti?“ · Mikrocontroller und Digitale Elektronik ·
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arm.pdf
31 P1 41 P0 R1 R1 P01 I1 61 D9D X4X4 PID901 PID9041 TX_P PIX403 POENET_MDIO PID902IO TX+ PID9040 TX_N PIX404+ POENET_MDC MDC TX- TD- 2PID9025 PID9033 RX_P PIX407 PENET_IRQRQ PID903T / PHYAD0 RX+ PID9032 RX_N PIX408+ PID904D3 / PHYAD1 RX- RD- PID905D2 / PHYAD2 PID9026 PIR4701PIR47026 PIX405 POENET_RXD1
in „ARM Board Layout“ · Platinen ·
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picaxe_manual3.pdf
boosters to create the required voltage swing. If this setting is used it is necessary to change the N2400 (negative) in all the serial software commands to T2400 (true positive). ONLY USE ONE OF THESE TWO CIRCUIT OPTIONS! 22k RX Pin 0 TX Pin 1 To 180R computer To PIC 10k 0V 0V 5V 10uF + 1 16 + 10uF 2
in „8 leds an einen prot eines mc?“ · Mikrocontroller und Digitale Elektronik ·
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Schematic_DDS.pdf
0.1uF 0.1uF 0.1uF D D D D D D D D D D D D D D D D D D D D D D D R15 R14 10K IO_UD_CLK 20 I/OUDCLK N N N N N N N N N N N N N N N N N N N N N N N VOUT 36 1K 1K G G G G G G G G G G G G G G G G G G G G G G G E3 D D D D D D D D D D A A A A A A A A A A A A A R21 SMA 1K C15 1 2 6 7 8 2 5 6 7 8 3 4 9 0 1 5
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USB_Type-C_Spec_R2.1_-_May_2021.pdf
Recommended Differential Near-End and Far-End Crosstalk Requirement between USB D+/D− Pair and TX/RX Pair -20 -25 d X: 7500 l Y: -30 t-30 s r a X: 100 X: 5000 n Y: -35 Y: -35 r-35 i D -40 -45 1000 2000 3000 4000 5000 6000 7000 Frequency, MHz 3.7.2.2 Recommended TX/RX Passive Cable Assembly Characteristics
in „USB-C Dual-Role-Device DRD mit integriertem OTG FS PHY“ · Mikrocontroller und Digitale Elektronik ·
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AM335x_Sitara_Prozessor.pdf
the PWRONRSTn Reset Input Pin • Packages: • Dedicated 16-Bit Time-Base Counter With – 298-Pin S-PBGA-N298 Via Channel Package Time and Frequency Controls (ZCE Suffix), 0.65-mm Ball Pitch • Configurable as Six Single-Ended, Six Dual- Edge Symmetric, or Three Dual-Edge – 324-Pin S-PBGA-N324 Package Asymmetric
in „BeagleboneBlack: Sensor über I2C“ · Mikrocontroller und Digitale Elektronik ·
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Schematics.pdf
9SPI_MOSI REF_R 68 C11 C12 C13 C15 C14 IN_U_N 5 UART_RX SPI_MISO REF_H GND 25MHz 6 6 10UART_RXD REF_L 67 100nF 25MHz IN_U_P 7 7 UART_TX 11UART_TXD ENC2_N 66 100nF 1 10uF 8 8 STATUS 12STATUS ENC2_B 65 GND 10uF 10uF 10uF 9 9 +3V3 13VCCIO2 ENC2_A 64
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lprp_schematic.pdf
ADC_SPI_CLK N6 LVDSB_2P VREF0B3 USB_D5 T13 RDN2 10 ADC_SPI_CS_N LVDSB_2N RUP2 V18 V1 PLLCLKOUT4N U18 USB_RD 11 12 HSEN LVDSB_1N PLLCLKOUT4P U11 USB_WR 11 USB_D6 LVDSB_13P/DQ5B8 USB_RX 11 PLLCLKOUT1N V2 USB_D7 VREF0B4
in „ALTERA The Low Power Reference Platform (LPRP) = 19,99€!!“ · Markt ·
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EKG_usw_Informationformedicalapplications_von_TI.pdf
900mW FECRateCompatible,SLK2721is 40.00 SONETXcvrwithCDR 3/12/24/48 OptimizedforJitterTolerance SN65LVDS93/94 Four-Ch.28:4TX/RX 140-455Mbps/ch. 4LVDS 28LVTTL 250mW/chip Supportsupto1.82Gbps 3.73 Chipset Throughout SN65LVDS95/96 Three-Ch.21:3TX/RX 140-455Mbps/ch. 4LVDS 28LVTTL 250mW/chip Supportsupto1.82Gbps 3.73 Chipset Throughout SN65LV1021/1212 Single-Ch.10:1TX/RX 100-400Mbps 1LVDS 10LVTTL <400mW LowPowerSolution 5.00 Chipset Total SN65LV1023/10243 Single-Ch.10:1TX/RX 300-660Mbps 1LVDS 10LVTTL <400mW LowPowerSolution 5.20 Chipset
in „EKG Schaltung Neuling“ · Analoge Elektronik und Schaltungstechnik ·
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2C-SDK-Espressif_IoT_SDK_Programming_Guide_v0.9.5.pdf
“sig_rx %c\n”, (char)e->par); break; default: break; } } void task_init(void) { testQueue=(os_event_t *)os_malloc(sizeof(os_event_t)*TEST_QUEUE_LEN); system_os_task(test_task,USER_TASK_PRIO_0,testQueue,TEST_QUEUE
in „Wlan2Serial Modul für 5 euro“ · Mikrocontroller und Digitale Elektronik ·
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TJA1020.pdf
voltage on LIN externally forced; LIN slope time <500 ns; CRXD = 20 pF; R = 2.4 k ; (see RXD Fig.5) PropRxDom − PropRxRec f(slope)(dom) fall time LIN normal slope mode; − 16 27 s (100% to 0%) CL= 10 nF; R L 500 ; V = 12 V; transition BAT from recessive to dominant; note 4 (see Fig.5) r(slope)(rec) rise time
in „[S] MCP2004 LIN Tranceiver oder andere gesucht“ · Markt ·
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TC35_datasheet.pdf
following figure illustrates how the signal path can be influenced by varying the AT command parameters. 2,65V 1k 1k inCalibrate A -∞...0dB 10uF +0..42dB in D speechcoder 1k 6dB-ste 1k inBbcGain sideTone 6,8R D speechdecoder A + 6,8R (0dB; -6db, outn = 0...4[n] -12dB; -18dB) outBbcGain AT - parameter Figure
in „Schaltplan TC35-Modul?“ · Mikrocontroller und Digitale Elektronik ·
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TRITON-UCB-Datasheet.pdf
)105 D0 memory data bus 34 USB_N USB-Port neg. Pin (3,3V-Level) 106 D1 memory data bus 35 +3,3V power supply 107 GND Ground 36 +3,3V power supply 108 GND Ground 37 SDA I2C data signal 109 RDY / GPIO18 Ready Pin (Wait) 38 USB_P USB-Port
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cc3000.pdf
O N N N N N N G _ G G G G C P G G G G G G R _ E C L R2 S S 0R Internal Power FET Switch Enable. 1 GND SDA_CC3000 28 RES1005 Connect to Host GPIO. TP1 2 27 RESERVED_1 SDA_EEPROM 3 NC VBAT_SW_EN 26 VBAT_SW_EN
in „Anpassnetzwerk für eine bestimmte Antenne berechnen“ · HF, Funk und Felder ·
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assembler_beginner.pdf
) gesetzt sind, • SER Rx ; Setze alle Bits im Register Rx (entspricht LDI Rx,255), • SBI Rx,K ; Subtrahiere die Konstante K vom Inhalt des Registers Rx und speichere das Ergebnis in Re- gister Rx. Rx muss bei diesen Instruktionen
in „Assembler Tutorial als PDF ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
unsigned int baudrate) { UCR = 1<<TXEN | 1<<RXEN | 1<< RXCIE; //Transmitter Enable, Receiver Enable, RX Complete Interrupt Enable UCSRC = 1<<URSEL | 1<<UCSZ1 | 1<<UCSZ0; // Asynchron 8N1 UBRR=(F_CPU / (baudrate * 16L) - 1); //UART Baud Rate Register, Teiler für Baudrate berechnen _delay_ms(5); return;
in „1-Wire Atmega8 <-> DS2480B UART Problem“ · Haus & Smart Home ·
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OsmoSDR.pdf
D )UHH 6RIWZDUH EDVHG VPDOO IRUP IDFWRU LQH[SHQVLYH 6'5 6RIWZDUH 'HILQHG 5DGLR SURMHFW &UHGLWV ,I \RX DUH IDPLOLDU ZLWK H[LVWLQJ 6'5 UHFHLYHUV WKHQ 2VPR6'5 FDQ EH WKRXJKW RI VRPHWKLQJ LQ EHWZHHQ D )XQ&XEH 'RQJOH RQO\ N+] EDQGZLGWK DQG D 8653 PXFK PRUH H[SHQVLYH )RU D YHU\ FKHDS EXW LQDFFXUDWH 6'5 \RX
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EN_UM_N32G45x_Series_User_Manual_V3.pdf
..................................................508 19.6.3 Receive buffer address register n (USB_ADDRn_RX) .....................................................................................509 19.6.4 Receive data byte number register n (USB_CNTn_RX).......................................
in „ALLPOWERS S2000 PRO Reparaturhilfe“ · Mikrocontroller und Digitale Elektronik ·
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MAX9271.pdf
PRBS ON, 1 PRBS ON, 1 fPCLKIN= 20MHz 1 COAX MODE PREEMPHASIS = 9 COAX MODE PREEMPHASIS = 9 ) -10 9 65 0x0B TO 0x0F A 65 0x0B TO 0x0F M m 0% SPREAD 0.5% SPREAD M M ) ( -20 A 60 A 60 M ( ( R -30 N N C -40 R 55 R 55 P U U S -50 C C E L 50 L 50 W -60 P P P S S 45 U -70 45 T 1% SPREAD PREEMPHASIS = PREEMPHASIS
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Hc11dat.pdf
S E A P T FORCE PIN DIRECTION (OUT) TRANSMITTER CONTROL LOGIC E E R C F 8 A T T R L R T M W R I O N F SCCR1 SCI CONTROL 1 SCSR1 SCI STATUS 1 TDRE TIE TC TCIE E I I I E W B T T R I T R R S SCCR2 SCI CONTROL 2 SCI Rx SCI INTERRUPT INTERNAL QUESTS REQUEST DATA BUS Figure 9 SCI Transmitter Block Diagram MOTOROLA MC68HC11F1/FC0 42 MC68HC11FTS/D RECEIVER BAUD RATE CLOCK DDD0 16 P R T 10 (11) - BIT T S Rx SHIFT REGISTER S PD0 PIN BUFFER DATA RxD AND CONTROL RECOVERY H 8 7 6 5 4 3 2 1 0 L ALL MSB ONES DISABLE DRIVER RE WAKEUP LOGIC R E K E R I O N F 8 8 A R C R T M W T T SCCR1 SCI CONTROL 1 SCSR1 SCI STATUS
in „68HC11 MC68HC11 Layout gesucht PLCC68“ · Mikrocontroller und Digitale Elektronik ·
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MC68HC11F1FN.pdf
S E A P T FORCE PIN DIRECTION (OUT) TRANSMITTER CONTROL LOGIC E E R C F 8 A T T R L R T M W R I O N F SCCR1 SCI CONTROL 1 SCSR1 SCI STATUS 1 TDRE TIE TC TCIE E I I I E W B T T R I T R R S SCCR2 SCI CONTROL 2 SCI Rx SCI INTERRUPT INTERNAL QUESTS REQUEST DATA BUS Figure 9 SCI Transmitter Block Diagram MOTOROLA MC68HC11F1/FC0 42 MC68HC11FTS/D RECEIVER BAUD RATE CLOCK DDD0 16 P R T 10 (11) - BIT T S Rx SHIFT REGISTER S PD0 PIN BUFFER DATA RxD AND CONTROL RECOVERY H 8 7 6 5 4 3 2 1 0 L ALL MSB ONES DISABLE DRIVER RE WAKEUP LOGIC R E K E R I O N F 8 8 A R C R T M W T T SCCR1 SCI CONTROL 1 SCSR1 SCI STATUS
in „MC68HC11F1FN (EEPROM) von Motorola zu verkaufen“ · Markt ·
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SARA-G3-U2_SysIntegrManual__UBX-13000995_.pdf
mask. T T D D D D V D D D D D T D D D D T D D D D D T D D D D T D D D D D T D D G G R G G G G G A G G N G G A G G G G G A G G N G G A G G G G G A G G N 64 63 62 61 60 59 58 57 56 55 54 64 63 62 61 60 59 58 57 56 55 54 64 63 62 61 60 59 58 57 56 55 54 GND 1 53 VCC GND 1 53 VCC GND 1 53 VCC V_BCKP 2 65 66
in „GSM-Modul (SIM908) nur analoge Ausgänge für Anruf?“ · HF, Funk und Felder ·
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DVD_Service_Manual.pdf
- a O T O s S S T S D O R s ) r s d d n e e d i c a s n p e o s t . i S c ( O O C C ( l D b . c t e t a l D u F F K F K F r a . E t F O F L F L O F t s e L S O O B O B O i n i n u c y n e n a . c o i e d t l f w t s o i a n e e ( a 4 c a r
in „DVD-Laufwerk DVS-7150V reparieren“ · PC Hard- und Software ·
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PDF
mt8888c-datasheet-sep2005-1.pdf
Zarlink Semiconductor Inc. MT8888C Data Sheet EVENTS A B C D E F t t t REC REC ID DO TONE TONE Vin TONE #n #n + 1 #n + 1 DP tDA ESt tGTP t GTA St/GT V TSt tPStRX RX 0RX 3 DECODED TONE # (n-1) # n # (n + 1) PStb3 b3 b2 Read Status Register IRQ/CP Figure 7 - Receiver Timing Diagram LEVEL (dBm) -25 0 250 500
in „1 bit/s reicht“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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SX-560_Manual_English.pdf
11 10 9 8 7 6 5 4 3 2 1 0 N/A N/A N/A N/A N/A N/A N/A N/A TRIG8 TRIG7 TRIG6 TRIG5 TRIG4 TRIG3 TRIG2 TRIG1 0 to 1 0 to 1 0 to 1 0 to 1 0 to 1 0 to 1 0 to 1 0 to 11 A value of 1 indicates the corresponding GPIO trigger condition
in „Wlan Modul Spannung“ · Mikrocontroller und Digitale Elektronik ·
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IC-705.pdf
DC 7,4 V DC links rechts TX (max. unter 3 A (10 W) unter 2,5 A (5 W) Strom- Sendeleistung) aufnahme RX (max. Lautstärke) 0,5 A (typisch) 0,8 A (typisch) RX (Stand-by) 0,3 A (typisch) 0,5 A (typisch) ■ Optionales Zubehör Abmessungen (B × H × T; ohne vorstehende Teile) 200 mm × 83,5 mm × 82 mm • BC-202IP3L
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BTD43X_user_manual.pdf
connected z A USB cable 2 TxD Output Input Transmitted data z Pin 9 of the D SUB 9-pin connector 3 RxD Input Output Received data 3.1.4. LED Status 4 DSR Input Output Not connected The following is LED status information. 5 GND N/A N/A Signal ground 6 DTR Output Input Not connected Status Description
in „BTM-112 Bluetooth Modul“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BTD43X_user_manual.pdf
connected z A USB cable 2 TxD Output Input Transmitted data z Pin 9 of the D SUB 9-pin connector 3 RxD Input Output Received data 3.1.4. LED Status 4 DSR Input Output Not connected The following is LED status information. 5 GND N/A N/A Signal ground 6 DTR Output Input Not connected Status Description
in „BTM-112 für multi-point (piconet)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BTD43X_user_manual.pdf
connected z A USB cable 2 TxD Output Input Transmitted data z Pin 9 of the D SUB 9-pin connector 3 RxD Input Output Received data 3.1.4. LED Status 4 DSR Input Output Not connected The following is LED status information. 5 GND N/A N/A Signal ground 6 DTR Output Input Not connected Status Description
in „Bluetoothmodul BTM-222“ · Mikrocontroller und Digitale Elektronik ·
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MC9S08DZ60_Data_Sheet.pdf
NON-DISCLOSURE AGREEMENT REQUIRED Chapter 11 Inter-Integrated Circuit (S08IICV2) Clear IICIF Y Master N Mode ? TX Tx/Rx RX Y Arbitration ? Lost ? N Last Byte Clear ARBL Transmitted Y ? N Last N Y RXAK=0 N Byte to Be Read Y IAAS=1 IAAS=1 ? ? ? ? Y N Y *Note N Address Transfer Data Transfer End of 2nd Last Y Y Addr Cycle Y Byte to Be Read (Read) SRW=1 TX/RX RX (Master Rx) ? ? ? ? N N N (Write) TX Generate Y ACK from Write Next Set NACK =1 Stop Signal Set TX Receiver Byte to IICD Mode ? (MST = 0) N Write Data Tx Next Read Data Byte from IICD to IBDR and
in „Bei AD-wandlung Bitsverlust“ · Mikrocontroller und Digitale Elektronik ·
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Datei
readme.txt
######################################### +5V 3.3V 3.3V 3.3V ST-Link ^ ^ ^ ^ o o o o 3.3V 47u | 100n | | 100n | | N | S | +----||---+ +----||---| | +----||---+ | R | W | | | | | +-+ | | | S | I | | | --- | 2,2k | | --- | | T | M | -- | | | | +--------------|-------+ | --- | | +-+ | | | +--------+ |
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DALIHardware.pdf
1 0 1 2 3 4 5 6 7 8 7 R 1 1 1 6 R 7 C + 1 D 5 V 2 R 6 2 C R D D C V C C R F R M D H C H M I A M O N N X R 3 8 7 6 5 4 3 2 1 D P F M M D C V V 6 H N N X M H O C C 9512R I 2 C R 8 7 R 2 S C L O C V V H 4 D S O M C B S O 9 1 1 1 1 1 1 1 C 0 1 2 3 4 5 6 0 R R R C 6 C 5 4 8 7 1 1 3 1 8 9 9 D 3 M M 3 2 R
in „DALI Steuerung“ · Mikrocontroller und Digitale Elektronik ·
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Dsuti.pdf
) N x − N off V x Figure 3 The resolution after the calculation required for the M = = three-signal technique versus the total measurement time. The N ref− N off Vref measurement range equals 0 - 2 pF and
in „Periodenmessung mit AVR“ · Mikrocontroller und Digitale Elektronik ·
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H8-325.pdf
below: n CKS1 CKS0 Clock 0 0 0 Ø 1 0 1 Ø/4 2 1 0 Ø/16 3 1 1 Ø/64 181 Table 9-4. Examples of BRR Settings in Synchronous Mode XTAL Frequency (MHz) Bit 2 4 8 10 16 20 rate n N n N n N n N n N n N 100 — — — — —
in „Programmer für HD6473258P10 selber bauen“ · Mikrocontroller und Digitale Elektronik ·
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LT3092fb.pdf
LT3092 200mA 2-Terminal Programmable Current Source FEATURES DESCRIPTION n Programmable 2-Terminal Current Source The LT 3092 is a programmable 2-terminal current n MaximumOutput Current: 200mA source. It requires only two resistors to set an output n Wide Input Voltage Range
in „Konstantstromquelle LT3092 - Widerstandswahl“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tl16c752b.pdf
level programmed via TCR[7:4]. This reassertion allows the sending device to resume transmission. RX Start Byte N Stop Start Byte N+1 Stop Start RTS IOR 1 2 N N+1 NOTES: 1. N = receiver FIFO trigger level 2. The two blocks in dashed lines cover the case where an additional byte is sent as described
in „tl16c752b - externe Schnittstelle“ · Mikrocontroller und Digitale Elektronik ·
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N73_RM-132_schematics_v1.pdf
AA19 0 N4 TXReset GenIO12 AA20 2.8V 4 N7 TXP GenIO13 Y19 5 P3 TXA AA18 VAUX RF part 1 N2 GenIO14 L7544 RX1 GenIO15 R21 MESSI_CMT(25:0) C6100 2 R3 RX2 GenIO16 H21 0 OMAP 6 C12 RFBusClk GenIO17 F21 1 600R/100MHz
in „[V] 30 5x7 LED-Matrixen, Nokia N73 Handy-Teile“ · Markt ·
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Datei
TempMess.asm
pop ZH ; Z wiederherstellen ret uart_tx_byte: mov uart_out, temp rcall uart_init_tx ret uart_init_rx: ldi temp, 0 out USICR, temp ; USI off / USI aus out TCCR0A, temp ; Timer off / Timer aus out TCCR0B, temp out TCNT0, temp ; set timer count to 0 / Timer auf 0 setzen cbi DDR, rx ; RX = Input cbi DDR
in „ATtiny85 UART mit USI [ASM]: Wo liegt der Fehler?“ · Mikrocontroller und Digitale Elektronik ·
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TMS320F2812_Datasheet.pdf
B A I I I O I AR O R _ _ _ M M6 5 4 3 21 X D X I DO S R R R L L IT D D T P P P W WM D M M M MM I I N D S DD M 3 2 1 S C C D2 D D 1 A A A 2 1W D S WW WW W C C A T V VT T C C C V X T TT V V T C C C T T PV V P P P PP S S C 96 65 97 9 99 9 9 9 8 8 8 8 88 8 8 8 8 7 7 7 7 77 7 7 7 7 6 6 66 64 TESTSEL CANTXA
in „Wieder eine Elektronik-Anfängerfrage“ · Mikrocontroller und Digitale Elektronik ·
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Class_1_Bluetooth_Module_with_EDR_Support_DS500022-2257897.pdf
▯ PCM_IN 9 16 UART_CTS ▯▯▯ ▯▯▯ PCM_OUT 10 15 UART_RTS ▯▯▯ VDD 11 14 UART_TX ▯▯▯ ▯▯▯ GND 12 13 UART_RX 35 29 34 33 32 31 28 30 ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯▯ ▯ ▯ ▯ ▯ 1 0 9 8 0 I N 1 1 I I N I 'LPHQVLRQV▯DUH▯LQ▯PLOOLPHWHUV A G I I P P G A G G G G 7ROHUDQFHV▯ 3&%▯2XWOLQH▯▯▯▯▯▯▯▯▯▯▯PP 3&%▯7KLFNQHVV
in „[V] Microchip Bluetooth Module RN41-I/RM und RN42-I/RM“ · Markt ·
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EtherBoardSch.pdf
/AN6 55 PF6/AN6/TDPB6/PWM1B 16 PB6 D7 43 SD7 TPIN- 58 4 JUMP PF/AN7 54 PF7/AN7/TDI PB7/PWM2 17 PB7 RX+ 56 3 14 3 IC1 /RD 29 /IORD RX- 55 2 15 2 MAX3222 VCC 21 VCC PG3/TOSC1 19 PG3 /WR 30 /IOWR CD+ 54 1 16 1 17 2 C3 470n 52 18 PG4 96 53 TRAFO ETH C1 VCC VCC C1+ VCC PG4/TOSC2 RESET 33 /IOCS16 CD- 49 470n 3 4 35 RSTDRV TX+ 48 VCC V+ C1- 31 IOCHRDY TX- 45 C5 C6 C7 C8 470n 7 5 470n 32 SMR TPO+ 46 10n 10n 10n 10n GND V- C2+ C4 VCC SMW TPO- 2 C2 34 AEN D D D C C C X2 51 GND 16 GND C2- 6 R5 N N N C C C X1 50 GNDGND J9 J11 27K GND G G G V V V Q2 GND 15 T1Q T1I 12 TXD TXD1
in „Elektronik über ein Ethernet Netzwerk steuern?“ · Mikrocontroller und Digitale Elektronik ·
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Last_board_mixed.pdf
PWM V V-MEASURE-1 + +3V3 -5V CURRENT_1 NOT_AUS AGND CPU1 CURRENT_2 ANLIEGENDE_SPANNUNG - D CURRENT_3 N CURRENT_4 G ANLIEGENDE_SPANNUNG A STROM-FEIN-1 UART-TX UART_RX UART-RX UART_TX STROM-GROB-1 ALARM +UB ESP_ALARM BOARD-CONNECTOR1 STROM-GROB-2 D STROM-GROB-3 V +UB SPI1_CLK_ADC SPI_CLK +A3V3 DGND SPI1
in „Schaltplankontrolle Last- + HMI-Board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Pcm4823.pdf
A-3: PCM-4823/4823L COM2 RS-232/422/485 series port Pin RS-232 port RS-422 port RS-485 port 1 DCD N/C N/C 2 DSR N/C N/C 3 RxD N/C N/C 4 RTS N/C N/C 5 TxD N/C N/C 6 CTS N/C N/C 7 DTR N/C N/C 8 RI N/C N/C 9 GND N/C N/C 10 N/C N/C N/C 11 N/C TxD+ DATA+ 12 N/C TxD- DATA- 13 N/C RxD+ N/C 14 N/C RxD- N/C
in „Hitachi SP10Q003 // SP10Q005 ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Pcm4823.pdf
A-3: PCM-4823/4823L COM2 RS-232/422/485 series port Pin RS-232 port RS-422 port RS-485 port 1 DCD N/C N/C 2 DSR N/C N/C 3 RxD N/C N/C 4 RTS N/C N/C 5 TxD N/C N/C 6 CTS N/C N/C 7 DTR N/C N/C 8 RI N/C N/C 9 GND N/C N/C 10 N/C N/C N/C 11 N/C TxD+ DATA+ 12 N/C TxD- DATA- 13 N/C RxD+ N/C 14 N/C RxD- N/C
in „Astec LPT42 Schaltnetzteil“ · Mikrocontroller und Digitale Elektronik ·