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UM10120_1.pdf
U0IER and U0IIR. The interrupt interface receives several one clock wide enables from the U0TX and U0RX blocks. Status information from the U0TX and U0RX is stored in the U0LSR. Control information for the U0TX and U0RX is stored in the U0LCR. © Koninklijke Philips Electronics N.V. 2005. All rights reserved
in „Baudrate Abtastfrequenz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INF-8074i.pdf
extraction 0 11.5 Newtons SFP transceiver retention 90 170 Newtons No damage to transceiver below 90N Cage retention (Latch strength) 180 N/A Newtons No damage to latch below 180N Cage kickout spring force 11.5 22 Newtons Insertion / removal cycles, 100 N/A cycles connector/cage Insertion / removal cycles
in „SFP - Single Fibre Port Chip Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
enc28j60.asm
ERRATA says we need to check packet pointer: ldsw X,enc28j60_next_packet_ptr sbiw XL,1 cpiw X,ENC28J60_RX_BUFFER_START brcs enc_rp_m02 ;<ENC28J60_RX_BUFFER_START cpiw X,(ENC28J60_RX_BUFFER_END+1) brcs enc_rp_m03 ;<=ENC28J60_RX_BUFFER_END ;if ((enc28j60_next_packet_ptr- 1 < ENC28J60_RX_BUFFER_START) || (enc28j60_next_packet_ptr- 1 > ENC28J60_RX_BUFFER_END)){ enc_rp_m02: ldiw X,ENC28J60_RX_BUFFER_END ;enc28j60_write_address(ENC28J60_REG_ERXRDPTL, LO8(ENC28J60_RX_BUFFER_END)); ;enc28j60_write_address(ENC28J60_REG_ERXRDPTH, HI8(ENC28J60_RX_BUFFER_END
in „ENC28J60 verliert Packete“ · Mikrocontroller und Digitale Elektronik ·
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DW-65054-dg_at_2006--10_r17a.pdf
result codes will be used during a data call setup. Not applicable for voice calls. Set command: ATX=[<n>] or ATX[<n>] Read command: ATX? Displays the current <n> setting. X:<n> Test command: ATX=? Shows if the command is supported. Test command response: X: (list of supported <n>s) Parameter: <n>: <n>
in „Wie mit GPRS über AT Commands verbinden?“ · Mikrocontroller und Digitale Elektronik ·
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ATS2503.pdf
4 SPI RX IRQ/DRQ trigger threshold Control. R/W 0 0: trigger SPI RX IRQ/DRQ when SPI RX FIFO is half full 1: trigger SPI RX IRQ/DRQ when SPI RX FIFO is not empty 3 SPI TX IRQ Pending, 0: No TX IRQ Pending, 1: TX IRQ R/Wding.0 Write 1 to this bit will clear it. 2 SPI RX IRQ Pending, 0: No RX IRQ Pending, 1: RX IRQ R/Wding.0 Write 1 to this bit will clear it. 1 SPI TX IRQ Enable, 0: disable, 1: enable R/W 0 0 SPI RX IRQ Enable, 0: disable, 1: enable R/W 0 9.2.3 SPISTA
in „Hilfe gesucht zum IC "ATS2503"“ · Mikrocontroller und Digitale Elektronik ·
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Z180.pdf
1 2 3 4 5 6 A7 74HC00D 5 74HC00D 6 2 SDREQ 74HCT32D 4 3 A N 22p IC2B 1 1 R1 A G IC2A 3 WE XTAL1 2 C17 1k 1 18.432 MHz GND GND GND IC1A D Q VCC VCC U$1G$1 4 IC1B R2 G 22p U2 6 7 XTAL2 VCC_2 5 100n 13 ST /MREQ 63 5 OE VCC_3 17 60 /HALT /IORQ 62 1k C16 9 38 C15 4 3 t 61 66 VCC RX_AVR/2.5A 10 PD0 VCC 27 10K e 65 /RFSH /WR 67 74HCT32D TX_AVR/2.4A 11 PD1 AVCC 100n 100n R /M1 /RD C14 32 U1 13 SDREQ PD2 R12 2 1 1 VCC DQ0 BUSACK 12 PD3 AREF 29 C2 C9 S A18/TOUT 33 DQ1 14 LATCH 13 PD4
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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PDF
cp2108-datasheet-1509353.pdf
.3 CTS2 13 36 NC RTS2 14 VSS 35 NC RX2 15 34 GPIO.4 TX2 16 33 GPIO.5 1 1 1 2 2 2 2 2 2 2 2 2 2 3 3 3 2 2 D D 5 4 3 S 2 0 9 8 7 6 R R N N . . . I S . . . O O O O D D E E I I I V V I I I P P P P S S P P P P P P G G G G U U G G G G G G S S
in „[V] 4St. Silabs 4-fach UART Bridge CP2108-GM (QFN64) (12€)“ · Markt ·
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cp2108-datasheet-1509353.pdf
.3 CTS2 13 36 NC RTS2 14 VSS 35 NC RX2 15 34 GPIO.4 TX2 16 33 GPIO.5 1 1 1 2 2 2 2 2 2 2 2 2 2 3 3 3 2 2 D D 5 4 3 S 2 0 9 8 7 6 R R N N . . . I S . . . O O O O D D E E I I I V V I I I P P P P S S P P P P P P G G G G U U G G G G G G S S
in „[V] 3St. Silabs 4-fach UART Bridge CP2108-GM (QFN64)“ · Markt ·
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Datei
ATmega328P.xml
index="17" name="SPI_STC" caption="SPI Serial Transfer Complete"/> <interrupt index="18" name="USART_RX" caption="USART Rx Complete"/> <interrupt index="19" name="USART_UDRE" caption="USART, Data Register Empty"/> <interrupt index="20" name="USART_TX" caption="USART Tx Complete"/> <interrupt index="21"
in „Welche AVR besitzen die PIN Toggle Fähigkeit?“ · Mikrocontroller und Digitale Elektronik ·
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SAM7-EX256.pdf
E CC C 3 G / / / G G G D D S K I O S S P C B S D 2 D 2 3 4 N N N N N D O NN N 2 M 0 1 2 3 / I / M M P P O I P P 3 P 9 3 % 1 % XDTXD/TXD0 A R DRXD/RXD0 A A A M E 1 1 1 M M I0 0 M G S C C C O S C G G N S M _ _ N K _K2 5 2 8 2 / 2 / T P P P P G G P P P G G PP P G
in „SPI-Initialisierung von zwei Geräte über den gleichen Bus“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Vollfarbsteuerung_C.c
für 100% "lsl %16;" // an die richtige Stelle schieben "lsl %16;" "out portc,%16;" ); */ } //UART-RX ISR... ISR(USART_RX_vect){ uart_rx(); uart_putc('1'); mode = DIRECT; if(farbe_H == 120) { farbe_H = 240; }else if(farbe_H == 0) { farbe_H = 120; }else{ farbe_H = 0; } farbe_S = 100; farbe_V = 100; showHSV
in „UART-Interrupt wird nicht ausgelöst“ · Mikrocontroller und Digitale Elektronik ·
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Diplomarbeit_24_Kanal_EEG_Recorder.pdf
USART1 Interrupts durch ein empfangenes Byte 2. Ausführung der Interruptroutine 2a) Test ob ein TX oder RX Interrupt aufgetreten ist 2b) falls der RX Buffer nicht voll ist, Byte mit RX-Schreibepointer in Buffer schreiben 2c) RX-Schreibepointer und aktuelle Bufferlänge inkrementieren 3. Beendigung der Interruptroutine
in „EEG-Kappen-Controller“ · Mikrocontroller und Digitale Elektronik ·
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M16C62_Hardware.pdf
4KI0 92 39 P57/RDY/CLK OUT P103/AN 3 93 38 P60/CTS0/RTS0 37 P10 /AN 2 94 P61/CLK0 P10 /AN 1 95 36 P62/RxD0 AVSS 96 35 P63/TXD0 P64/CTS1/RTS1/CTS /CLKS 1 P10 /AN 0 97 34 V REF 98 33 P65/CLK1 AVcc 99 32 P66/RxD1 P97/ADTRG/SI4 100 31 P67/TXD1 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25
in „M16C Parallel pinbelegung“ · Mikrocontroller und Digitale Elektronik ·
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doc8209.pdf
PINB5 PINB4 PINB3 PINB2 PINB1 PINB0 PINB Read/write R/W R/W R/W R/W R/W R/W R/W R/W Initial value N/A N/A N/A N/A N/A N/A N/A N/A 13.4.5 PORTC – Port C Data Register Bit 7 6 5 4 3 2 1 0 PORTC7 PORTC6 PORTC5 PORTC4 PORTC3 PORTC2 PORTC1 PORTC0 PORTC Read/write R/W R/W R/W R/W R/W R/W R/W R/W Initial
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CY8C4147AZI.pdf
lpcomp.in_p[0] tcpwm.tr_in[0] scb[2].uart_cts:0 scb[2].i2c_scl:0 scb[0].spi_select1:0 P0.1 lpcomp.in_n[0] tcpwm.tr_in[1] scb[2].uart_rts:0 scb[2].i2c_sda:0 scb[0].spi_select2:0 P0.2 lpcomp.in_p[1] scb[0].spi_select3:0 P0.3 lpcomp.in_n[1] scb[2].spi_select0:1 P0.4 wco.wco_in scb[1].uart_rx:0 scb[2].uart_rx
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Windmessger_Ultraschall1.pdf
Windgeschwindigkeit und Windrichtung ermittelt. Die Berechnung der Werte erfolgt nach folgender Formel: in in 1 2 1 Y n M Xi mit M n Xi i0 i0 Die Standardabweichung wird durch das Kommando „DE00001 eingeschaltet. Wichtig ist, dass der ULTRASONIC bei Berechnung der Standardabweichung den Messtakt
in „Windgeschwindigkeit und Richtungsmessung“ · Mikrocontroller und Digitale Elektronik ·
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da14531-module-datasheet.pdf
® LE Module Final 3 Pinout ANTENNA AREA n.c. J1 J16 P0_8 GND J2 J15 P0_9 GND J3 MARKING AREA J14 P0_5/RxTx GND J4 J13 P0_7 P0_6 J5 J12 P0_0/RST J6 J7 J8 J9 J10 J11 D T 1 I K D N B _ D C N G V P W S G 0 2 _ 0 0 P P Figure 2: Pinout Diagram Top
in „Bluetooth Modul gesucht“ · Mikrocontroller und Digitale Elektronik ·
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edison-module_HG_331189.pdf
basic Intel® Edison block diagram. Figure 1 Intel® Edison block diagram Wi-Fi dual-band (802.11a/b/g/n) Intel® Atom™ Processor GPIOs, various buses (dual-core 500 MHz) o Bluetooth LE c (with 2.1 + EDR) n o 1 GB LPDDR3 USB n 4 GB eMMC (PoP) USB 2.0 PHY p 0 n s d VBUS ® t 3.15 to4.5 V input I PMIC 3.3 V
in „Intel Edison Breakout Board“ · Mikrocontroller und Digitale Elektronik ·
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MSODPO2000_DataSheet_3GG-22048-0.pdf
232/422/485/UART (optional) – Trigger auf MessungenundBildschirmdarstellungenübertragen Tx-Startbit, Rx-Startbit,Tx-Paket-Ende, Rx-Paket- undspeichern. Ende,Tx-Daten, Rx-Daten,Tx-Paritätsfehler und IVI-Treiber– Bietet eineStandardschnittstellezur Rx-Paritätsfehler. Geräteprogrammierungfür allgemeineAnwendungen
in „Unterschied LeCroy WJ314 und WJ314A“ · Mikrocontroller und Digitale Elektronik ·
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HF_Mifare_Easy_V1_0_User_Manual_03.pdf
Abbreviations ACG Identification Technologies GmbH 9 HF Mifare Easy Module V1.0 4 Supported tags e e l l t n n n t t m n n m n n o t t C y y c c e e r d f a n m r m T c i c r l - - - W b a c e o - - - R b l r i b e m S n r r t p p p p p p o o o f i i i i i i n n n u P P P P P P n n n a I I I M t 6 r h / d k
in „[V] gebrauchtes ACG/HID RFID Mifare Modul (30x30mm) zum einlöten + 2-3Karten (10€)“ · Markt ·
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HF_Mifare_Easy_V1_0_User_Manual_03.pdf
Abbreviations ACG Identification Technologies GmbH 9 HF Mifare Easy Module V1.0 4 Supported tags e e l l t n n n t t m n n m n n o t t C y y c c e e r d f a n m r m T c i c r l - - - W b a c e o - - - R b l r i b e m S n r r t p p p p p p o o o f i i i i i i n n n u P P P P P P n n n a I I I M t 6 r h / d k
in „[V] RFID ISO 14443 Modul ACG/HID Omnikey 25x30mm (17€)“ · Markt ·
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HF_Mifare_Easy_V1_0_User_Manual_03.pdf
Abbreviations ACG Identification Technologies GmbH 9 HF Mifare Easy Module V1.0 4 Supported tags e e l l t n n n t t m n n m n n o t t C y y c c e e r d f a n m r m T c i c r l - - - W b a c e o - - - R b l r i b e m S n r r t p p p p p p o o o f i i i i i i n n n u P P P P P P n n n a I I I M t 6 r h / d k
in „[V] RFID ISO 14443 Modul ACG/HID Omnikey 25x30mm (13€)“ · Markt ·
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TS80C51U2_ATMELCorporation.pdf
27 28 XTAL2 18 23 P2.2 / A10 2 1 * 8 9 0 2 XTAL1 19 22 P2.1 / A9 R R L L S I / A/ 1 1 1 6 . T T V N . . 2 A3 4/ VSS 20 21 P2.0 / A8 3 P X X P P2 2 2 2. P P P P 1 _ * D D E I 0 1 2 3 T Rx T T N / A A A A . . 2. . 0. S C . 1.2 . . P P P P P V V P P P P 0 0 44 43 42 41 40 39 38 37 36 35 34 P1.5 1 33 P0.4
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panasonic_tx-p50u20b_e_tx-pr50u20_chassis_gpf13de_sm.pdf
RXCM1 G1 IC8001 A2 G1 RXCP1 IC8001 K1 RXCP1 G1N IC8001 B2 G1N RX1M0 IC8001 L2 RX1M0 IC8001 A5 G2 TEST RX1P0 IC8001 L1 RX1P0 IC8001 B5 G2N RX1M1 IC8001 M2 RX1M1 IC8001 A8 G3 IC8001 U11 TMODE0 RX1P1 IC8001 M1 RX1P1 R1 IC8001 A4 R1 IC8001 V11 TMODE1 RX1M2 IC8001 N2 RX1M2 R1N IC8001 B4 R1N RX1P2 IC8001 N1 RX1P2 IC8001 A7 R2 IC8001 W11 TESTIOH DDCSDA2 IC8001 R3 DDCSDA2 IC8001 A10 R3 AVDDV3.3V IC8001 K4 ADCT0 DDCSCL2 IC8001 M3 DDCSCL2 V1 IC8001 A11 V1
in „Panasonic TX-P50U20E“ · Analoge Elektronik und Schaltungstechnik ·
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ETEMB043013XDHAL_-_ver2.pdf
TIME TRWxTF x= y=0 0.25 0.30 0.35 omnec NOTE ( 4 ) WHITE Wy A L 0.27 0.32 0.a7i . COLOR RED Rx T I 0.55 0.60 o.65 ion CHROMATICITY Gx N NTSC : 45o%r 0.32 0.37p 0.42 atNOTE ( 5 ) (CENTER) GREEN GD E d f 0.52 C.57 0.62 riz BLUE FBx z e 0.1es 0.15 0.2h o THE BRIGHTNESS N By ri 0gi4 0.09 0ut4
in „EDT Display Interface mit STM32F7“ · Mikrocontroller und Digitale Elektronik ·
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P89C51RC_IN.pdf
XTAL2 T2 17 29 1 T2EX RST T EA/VPP R 18 28 P PSEN ALE/PROG Pin Function Pin Function Pin Function N 1 NIC* 16 P3.4/T0 31 P2.7/A15 I RxD 2 P1.0/T2 17 P3.5/T1 32 PSEN T TxD 3 P1.1/T2EX 18 P3.6/WR 33 ALE N U INT0 3 2 4 P1.2/ECI 19 P3.7/RD 34 NIC* F INT1 T R 5 P1.3/CEX0 20 XTAL2 35 EA/VPP R T0 R O ADDRESS BUS 6 P1.4/CEX1 21 XTAL1 36 P0.7/AD7 A T1 P P 37 P0.6/AD6 N 7 P1.5/CEX2 22 VSS O WR 8 P1.6/CEX3 23 NIC* 38 P0.5/AD5 C RD 9 P1.7/CEX4 24 P2.0/A8 39 P0.4/AD4 S 10 RST 25 P2.1/A9 40 P0.3/AD3 SU00830 41 P0.2/AD2 11 P3.0/RxD 26 P2.2/A10 12 NIC* 27 P2.3/A11 42 P0.1
in „[V] 8St. 8051er Philips P89C51RC+IA PLCC44 (6€)“ · Markt ·
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eGC.pdf
Drawn By: 1 2 3 4 5 6 7 8 1 2 3 4 5 6 7 8 UART 1V8 5V 51 51 C575 C585 Capacitor Capacitor A 52100 nF 52100 nF A UART_RX_1V8 ARM_RX GND GND POSYSCON_RX I6I4P2 1V8 5V IC1P1P IC8C8 5V uart3_cts_rctxC10W15 6 4 2P1P1 PIIC80VCCB VCCA PIIC803 P2P2 uart3_rts_sdIC10W13 UART JMP PIIC80B1 OE PIIC806 PIP201 uart3
in „[Suche] Interessierte(n) an Projekt (ARM/FPGA)“ · Mikrocontroller und Digitale Elektronik ·
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mc35i_hd_v0103.pdf
: outBbcGain = 0, e outCalibrate = 16384 m e MICP1 I R = 2kW differential This microphone input is n t I l g VmIx = 1.03Vpp balanced and can feed an n n MICN1 I V supply 2.65V at Rsupply 4kW active microphone. s = analog amplification range = 0...42dB in If unused keep pins open. f N 6dB steps n e,
in „Taste im Hörer an GSM-Modul“ · Mikrocontroller und Digitale Elektronik ·
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miniat91.pdf
56 C16 2 D- 2 GND 1 VBUS SAM7S64~ 27 R6 33pF USB Mini-B REC C17 10nF 1.5K R7 C18 C19 15pF 15pF +3.3V LED2 2 1 R8 220 YLED/2012CHIP +3.3V J3A J4A B 1A 1A RS232-TX0 B 2A TST H:TEST MODE 2A RS232-RX0 +3.3V 3A 3A SLIDE SW 5268_03 J1 J2 1 AD4 1 DDM 2 AD5 2 DDP 2.54 Pitch(
in „AT91SAM7 Mini Board“ · Mikrocontroller und Digitale Elektronik ·
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esp32-c3_technical_reference_manual_en.pdf
(n: 0-2) (0x009C+192*n) CH R d) XP ere A_ (rs GM 31 43 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 Reset GDMA_RX_PRI_CHn ThepriorityofRXchannel0. Thelargerthevalue, thehigherthepriority.
in „Mit dem ESP32C3 laufen lernen“ · Mikrocontroller und Digitale Elektronik ·
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esp32-c3_technical_reference_manual_en.pdf
(n: 0-2) (0x009C+192*n) CH R d) XP ere A_ (rs GM 31 43 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 Reset GDMA_RX_PRI_CHn ThepriorityofRXchannel0. Thelargerthevalue, thehigherthepriority.
in „ESP32C3 > PLL“ · Mikrocontroller und Digitale Elektronik ·
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PIC18FXX80_to_PIC18FXXK80_Migration_Guide.pdf
RXFnEIDL Receive Filter Extended Identifier High n = <0-15> RXFnEIDH RXFnEIDH Receive Filter Standard Identifier Low n = <0-15> RXFnSIDL RXFnSIDL Substitute Remote Request n = <0-15> N/A SRR (RXFnSIDL<4>) Receive Filter Standard Identifier High n = <
in „Umstieg von PIC18F4620 auf PIC18F46K20“ · Mikrocontroller und Digitale Elektronik ·
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AT89C5131A_Starter_Kit_Hardware_Guide.pdf
Rx P P S R TP +T P2 1 5 6 7 ll D+ TP P 1 1 1 1_ aa 1 D T TT P P P P1 MM P1 -- P P P P 1 de us 2 FF cc TT DD cc L1 TTt 0 t1 oo BB 02 LL F Vc DD S 1 1 O II VV c ss TAss p SSe ssses ss MM -- 00 PL nF V DD
in „Programmierung über USB“ · Mikrocontroller und Digitale Elektronik ·
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AD5415.pdf
digital code Output Noise Spectral Density 25 nV/√Hz @ 1 kHz Rev. 0 | Page 3 of 28 AD5415 Parameter Min Typ Max Unit Conditions SFDR Performance (Wideband) Clock = 10 MHz 500 kHz fOUT 55 dB 100 kHz fOUT 63 dB 50 kHz OUT 65 dB Clock = 25 MHz 500 kHz
in „D/A mit Stromausgang“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
* | DS18xx (OneWire) | GPIO PD2 | GPIO PB5 | GPIO PB5 | | * | Logger (Nucleo: USB) | USART2 TX=PA2 RX=PA3 | USART1 TX=PA9 RX=PA10 | USART1 TX=PA9 RX=PA10 | | * | WPS button | GPIO PC5 | GPIO PA7 | GPIO PA7 | | * | ESP8266 USART | USART6 TX=PA11 RX=PA12 | USART2 TX=PA2 RX=PA3 | USART2 TX=PA2 RX=PA3 |
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sv-ic5.pdf
Outputcurrent *[A] * * RPM Motorspeed *[rpm] * * DCL DCvoltage *[V] * * v0L/P0r/t0r Userdisplayselection * * * n0n Faultdisplay * * * F(Forward) drC Motordirectionset F Yes R(Reverse) FU1 FU1 FunctionGroup1selection * Yes group FU2 FunctionGroup2selection * Yes I/O I/OGroupselection * Yes F0 Jumptodesiredcode#
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bluenrg-2.pdf
of entries in the RX FIFO less than the RFTR:THRESHOLD_RX register. 1: Number of entries in the RX FIFO greater than or equal to the RFTR:THRESHOLD_RX register. RX FIFO full. RXFF is set when a full condition occurs in RX
in „DC/DC-Wandler im ST BlueNRG-2 - Wofür?“ · Mikrocontroller und Digitale Elektronik ·
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behringer_eurolive_b112d_sm.pdf
C59 100n 8 4 C41 100n +15V 2k2 3 + 2 VCC 4580 VSS R65 R69 3 2 IC3-A 1 1k5 12k1 - C7 R94 R98 VR2-A 6k8 0 4580 IC6-E 4580 1 1k5 3 1 R49 1 2 - C70 100n 4 074 11 C20 100n 2 IC8-A 100KW VCC VSS R191 7 R51 R56 C 4
in „Behringer B112D Funktionsweise Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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esp32-s2_datasheet_en.pdf
Description Peak (mA) 802.11b, 20 MHz, 1 Mbps, @19.5 dBm 310 802.11g, 20 MHz, 54 Mbps, @15 dBm 220 TX 802.11n, 20 MHz, MCS7, @13 dBm 200 Active (RF working) 802.11n, 40 MHz, MCS7, @13 dBm 160 802.11b/g/n, 20 MHz 63 RX 802.11n, 40 MHz 68 Note: The current consumption figures for in RX mode are for cases when
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ET050000DH6.pdf
Applicable standard : MIL-STD-105E Normal inspection, single sampling Level Ⅱ (b)AQL : Major defect : AQL 0.65 Minor defect : AQL 1.0 02101300-01-02 MODEL NO . VERSION PAGE E M E R G I N G D I S P L A Y TECHNOLOGIES CORPORATION E T 0 5 0 0 0 0 D H 6 5 23 13.3 INSPECTION STANDARDS 13.3.1 VISUAL DEFECTS CLASSIFICATION
in „AP7000 und ICnova ADB1000: Bisschen wenig?“ · Mikrocontroller und Digitale Elektronik ·
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optiboot_atmega128.lst
start command for counter with /8 scaler or full speed 1fc56: 81 e0 ldi r24, 0x01 ; 1 0001fc58 <wt_rx0l>: wt_rx0l: #if INVERSE_UART > 0 ASBIS UART_RX_PIN, UART_RX_BIT ; Look if RX is still low #else ASBIC UART_RX_PIN, UART_RX_BIT ; Look if RX is still high 1fc58: 82 99 sbic 0x10, 2 ; 16 #endif rjmp wt_rx0l
in „Tester für Spezialversion des AVR Bootloaders optiboot gesucht!“ · Mikrocontroller und Digitale Elektronik ·
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xc164cm_ds_v1.4_2007_03.pdf
_TxD P1H.3/EX3IN/T7IN/SCLK1 4 45 P9.2/CC18IO/CAN1_RxD/E* P1H.4/CC24IO/EX4IN 5 44 P9.1/CC17IO/CAN2_TxD P1H.5C C25O EX 5N 6 43 P9.0/CC16IO/CAN2_RxD/E* V SS 7 42 P3.15/CLKOUT/FOUT V DDP 8 41 V SS P5.0/AN0 9 XC164CM 40 VDDP P5.1/AN1 10 39 P3.13/SCLK0/E* P5.2
in „xc164cm16ff und cc770“ · Mikrocontroller und Digitale Elektronik ·
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CAN.pdf
CANL 0 5 CAN_T 1 R 6 CANL VCC 3 V33 CANH 7 CANH VREF 5 4 CAN1_RX R 1 D CAN1_TX 8 C_CAN RS GND 2 1 S 100nF _ R GND SN65HVD230QD RS: slewrate 0Ohm: highspeed GND 10kOhm: 15 V/us 100kOhm: 2 V/us
in „Kontrollblick Minimalbeschaltung STM32F405RGT7“ · Mikrocontroller und Digitale Elektronik ·
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ZM3102N.pdf
Directive (RoHS) Table 8 Process Specifications Zensys A/S Specifications Page 9 of 14 DSH10756-6 ZM3102N Z-Wave Module Datasheet 2007-10-01 2.7 Recommended PCB Footprint Outline 5 6 8 9 1 5 5 0 5 0 5 0 0 m m m m m m m m m m m m m m m m . . . . . . . . 14.30 mm. 6 5 4 3 2 1 10.15 mm. 7 8.65 mm. 8 18 8.65 mm. 7.15 mm. 9 6.90 mm. 17 5.65 mm. 10 4.15 mm. 11 12 13 14 15 16 0 mm. 0 3 5 6 8 1 1 m 5 0 5 0 . . m m m m m 0 0 . m m m m m m . . . . . . 1.10mm. 1.40mm. m . m m . 5 1 1 Ø0.55mm. Ø0.70mm. Figure 5 Recommend ZM3102N PCB footprint
in „Hat jemand Erfahrung mit Z-Wave Modulen (ZM3102)?“ · Mikrocontroller und Digitale Elektronik ·
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LuminOx_Evaluation_Board.pdf
) Hex <Command> “M”, “O”, “%”, “T”, “P”, “A”, 0x4D, 0x4F, 0x25, 0x54, 0x50, 0x41, “#”, “e” 0x23, 0x65 <Argument> “0” – “9” 0x30 – 0x39 <Separator> “ ” 0x20 <Terminator> “\r\n” 0x0D 0x0A There are three modes available; Poll Mode, Stream Mode and Off Mode. UG-002 Rev 1 © 2016 SST SENSING LTD. P a g e
in „3.3V TTL level UART in 0-5V Analog“ · Analoge Elektronik und Schaltungstechnik ·
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MachXO2FamilyDataSheet.pdf
and bottom sides only) Up to two analog PLLs per device with Ultra Low Power Devices fractional-n frequency synthesis Advanced 65 nm low power process – Wide input frequency range (7 MHz to As low as 22 µW standby power 400 MHz) Programmable low swing differential I/Os Stand-by mode and other power
in „Statemachine springt in falsche "states" warum?“ · FPGA, VHDL & Co. ·
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CD00161566.pdf
STM32F103xx medium-density device features and peripheral counts Peripheral STM32F103Tx STM32F103Cx STM32F103Rx STM32F103Vx Flash - Kbytes 64 128 64 128 64 128 64 128 SRAM - Kbytes 20 20 20 20 r General-purpose 3 3 3 3 e i T Advanced-control 1 1 1 1 SPI 1 2 2 2 n t IC 1 2 2 2 c n u USART 2 3 3 3 m o USB 1 1 1
in „[F] STM32F103: Lastkondensatoren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ATmega2560.xml
"Ext. Crystal Osc. 3.0-8.0 MHz; Start-up time: 258 CK + 65 ms" constname="EXTXOSC_3MHZ_8MHZ_258CK_65MS"/> <enum val="0x2C" text="Ext. Crystal Osc. 3.0-8.0 MHz; Start-up time: 1K CK + 0 ms" constname="EXTXOSC_3MHZ_8MHZ_1KCK_0MS"/> <enum val="0x3C" text="Ext.
in „Eclipse AVR win32 komplett?“ · Mikrocontroller und Digitale Elektronik ·
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SAM9_EVAL-01.pdf
C104 R100 R102 2200R@100MHz 2200R@100MHz +C100 C101 C102 B350 47u/10V 47u/10V 30k9 560R 4u7/25V D 10n N P R8 7 4 7 0 7 L4 5 47u/20V G P C105 D3 7 1 1 2 D4 D1 1 100n V V V C150 C151 C152 C153 C155 C156 C157 6 9 D102 100n 4u7 100n 10n 1n 100n 100n DGND 10k1 N N N green G9 8 6 3 4 G4 G1 3 3 7 4 7 0 4 5
in „AT91RM9200 Bootstrap loader“ · Mikrocontroller und Digitale Elektronik ·
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Dokumentation.PDF
6 PIX706TDI 7237 PIX50VDD PIIC1GND Q8 PIIC12011ENABLE_B 3. V PIX707 8 PIX708RX1 C37 27 GND M74HC4094M1R PIX709 10 PIX7010 100n P2450GND1 JTAG PIX50GND2 3.3V GND 40 C40 PIX50SHIELD I 13 C40 SD-DUAL 3 16 PIC4002 GND4001 P2IC1CLK VCC PIIC13016 100n 5V P1IC1SI2 9 15IC1STB QS PI101309