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LCD_Controller_320x240.pdf
Curser X-Offset) • 28 -> X zählt in 4 statt 8 Pixelschritten (Bildschirm Startposition) Neue Befehle: • 04 -> LCD Backlight an • 05 -> LCD Backlight aus • 06 -> Touchpanel An/Mode/Kalibrieren • 07 -> Touchpanel Aus • 14 -> LCD-Backlight PWM-Wert • 20 -> invertiere Bereich • 23 -> Zeichensatz wählen • 24 -
in „Grafikfähiger LCD Controller für 320x240 LCD mit D-RAM“ · Projekte & Code ·
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PDF
HAMEG_HM1507-3_150MHZ_Oszilloskop_-_Service_Manual.pdf
30 P52 _ ' x 1 A03 [12 RBÜZÄ ZK21 fm F|HMEE® FC_HMxx4/7 O A w PF 33 P14 Z5 U] - AD4 R8 o *_ cs0o4 A04 1] REÜ72 ZK21 EEE I TA04 ` t 0s_R000x ax W -I- Ü M15 DBLL4 ECBEOC xur/snv A05 1 RBDBZ K 1 TAAD6 Lyšsš Datute: 20.01.1997 o S†><D I P37/xxo P17 2 AD7s AD6 RBU22 _ K 1 LE0_c = t ZseEe101P AD7 [1] RBÜZÜ
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DE2012010361.pdf
Software die Verstärkung einstellen. Um einen an die DCF-Trägerfrequenz gekoppelten Takt WirdfürIC3 ein 74HCT04 eingesetzt, erhält man Totem-Pole-Ausgänge. für den Mikrocontroller zu erzeugen, wurde als Taktquelle mit IC6 J3:PIC-ISP(5-polig) ein spannungsgesteuerter Quarzoszillator verwendet. Auch hier J3.1
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PDF
LCD_Display_1602.pdf
ADDR ROM AØ RS ;subroutine to set DDRAM addr and o/p message & A1 R/W MESG: CALL BUSY Z8Ø DATA RAM HCT138 DØ~ DØ~ LD (WRINST),A A13 A YØ ROM D7 D7 ;write message to module A14 B Y1 RAM LD B,8 ;no. of byte to be sent A15 C MREQ D Y3 E WRITE2: CALL BUSY 6ØØØH LD A,(HL) ;get character All modules except
in „AT89S8252 in C programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
700185_wiesmeier_christoph_2016.pdf
2013 (siehe S. 22, 24). [25] NEARD. (Linux NFC System). url: https://01.org/linux-nfc (besucht am 21.04.2016) (siehe S. 86). [26] QScriptEngine. (Javascript Bibliothek). url: http://doc.qt.io/qt-5/ qscriptengine.html (besucht am 19.04.2016) (siehe S. 71). [27] Qt/Toolkit. Version 5.5 (Graphic Toolkit). url: https://www.qt.io/ (besucht am 19.04.2016) (siehe S. 71). [28] Raspbian (Debian/Linux). (Betriebsystem fur RaspberryPi). url: https://www. raspberrypi.org/downloads/raspbian/ (besucht am 21.04.2016) (siehe S. 72). 94 Literatur [29] Benedikt
in „2A 1s Li-ion Lader + Protection“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BTT_SKR_V1.4-SCH.pdf
G HB_PWM R45 7 14 1 1 SDDET Motor Driver DC3.3V HE1_MOSFET 10K 9 P0.27 R46 DC3.3V VBB WSF3085 MC74HCT125ADTR2G R47 C37 TFT D D DAT2 1 C38 10K 0.1UF 5V G G CD DAT3 2 0.8-MISO1 1K R51 C39 100UF/35V D S GND MISO 3 10K 4.7UF GND R50 D8 DC3.3V U7 GND 4 0.7-SCK1 GND R52 10K ZMA SDDET Q2 GND P2 C4022UF 10V SCK 5 10K C41 ZDR GND G HBED_MOSFET GND NPWR SD-M VDD GND ZSPI Z-EN 2B WSK220N04 5 GND GND R48 R49 MOSI 6 0.9-MOSI1 R53 10K 0.1UF MOT_MOSI EN VT 2A TX 4 TXD0 4.7K 4.7K N N SSEL 7 0.6-SSEL1 R55 10K MOT_SCK 8 7 M1 G 1A 3 RXD0 I2C G G DAT1 8 Z-RX 6 5 M2 2B 1B WSF3085 2 RESET 4 SCL1
in „Induktiven Sensor (6-36V) an Microcontroller/Mainboard anschließen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BTT_SKR_V1.4SCH.pdf
G HB_PWM R45 7 14 1 1 SDDET Motor Driver DC3.3V HE1_MOSFET 10K 9 P0.27 R46 DC3.3V VBB WSF3085 MC74HCT125ADTR2G R47 C37 TFT D D DAT2 1 C38 10K 0.1UF 5V G G CD DAT3 2 0.8-MISO1 1K R51 C39 100UF/35V D S GND MISO 3 10K 4.7UF GND R50 D8 DC3.3V U7 GND 4 0.7-SCK1 GND R52 10K ZMA SDDET Q2 GND P2 C4022UF 10V SCK 5 10K C41 ZDR GND G HBED_MOSFET GND NPWR SD-M VDD GND ZSPI Z-EN 2B WSK220N04 5 GND GND R48 R49 MOSI 6 0.9-MOSI1 R53 10K 0.1UF MOT_MOSI EN VT 2A TX 4 TXD0 4.7K 4.7K N N SSEL 7 0.6-SSEL1 R55 10K MOT_SCK 8 7 M1 G 1A 3 RXD0 I2C G G DAT1 8 Z-RX 6 5 M2 2B 1B WSF3085 2 RESET 4 SCL1
in „3D-Drucker, Mainboard-Lüfteranschluss erweitern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Petra-M10_Einblick_offen.html
svg" viewbox="0 0 24 24"><path d="M18 16.08c-.76 0-1.44.3-1.96.77L8.91 12.7c.05-.23.09-.46.09-.7s-.04-.47-.09-.7l7.05-4.11c.54.5 1.25.81 2.04.81 1.66 0 3-1.34 3-3s-1.34-3-3-3-3 1.34-3 3c0 .24.04.47.09.7L8.04 9.81C7.5 9.31 6.79 9 6 9c-1.66 0-3 1.34-3 3s1.34 3 3 3c.79 0 1.5-.31 2.04-.81l7.12 4.16c-.05.21
in „Lampentaster gesucht“ · Markt ·
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PDF
db_esprimo_e5720-Datenblatt.pdf
BIOS x x x x x x x x x Prozessor bis Q9450 bis Q9450 Intel® Core™ 2 Quad Q9xxx - - - - - - - (ca. 04/08) (ca. 04/08) L2 Cache - - - - - - - 6MB/12MB 6MB/12MB Front Side Bus (FSB) - - - - - - - 1333 MHz 1333 MHz Intel® Core™2 Duo E8xxx - - - - - bis E8500 bis E8500 bis E8500 bis E8500 L2 Cache - - -
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PDF
EL320256-F6_and_FD6.pdf
which is synchronized by the external VS, HS, and video clock input signals. The signal inputs are HCT compatible with 100 Ω series resistors. Power Input The input voltages needed are the +5 V input (Vcc1) for the logic and the +11…+30V input (Vcc2) for the DC/DC converter generating all internal high
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PDF
kicad_8450_dcm_liste_neu_v3.pdf
out 74HC595 8 bits serial in // out Shift Register 3 State Out 74HC74 Dual D FlipFlop, Set & Reset 74HCT00 Quad nand2 74HCT02 Quad Nor2 74HCT04 Hex Inverseur 74HCT240 8 bit buffer; 3-state; inverting 74HCT244 8bits Buffer/Line Driver 3 state 74HCT541_PWR 8bits Buffer/Line Driver 3 state Out 74HCT574_PWR
in „KiCAD Eeschema, Bibliotheksdokumentation *.dcm als PDF-Datei“ · Platinen ·
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PDF
oncilla_schaltplaene.pdf
D S S A2 3 1 1 IN2 V +5VD 8 VCC 2 IN4 R110 4 GND WP 7 3 IN8 1K 0.1% 0 R 4 U??A DIS_/LE2 5 BL D 1 74HCT125 LE N G DIS_D3 2 3 6 4 U??B Referenzquelle 74HCT125 5 6 DIS_D2 1 U??C 74HCT125 U103 +5VD ADR421 9 8 DIS_D1 3 U??D U304 +5VA 2 6 1 74HCT125 5082_7340 VIN VOUT +2.5V_REF 1 1 1 1 +5VD 7 N + DIS_D0 B G 12 11 K 8 IN1 C B 2 3 4 5 0 1 IN2 V 2 2 2 2 1 2 IN4 4 T T T T Versorgung 74HCT125: 3 IN8 C106 C107 Pin14+5VD 10uF 0.1uF Pin7GND 0 3 4 DIS_/LE3 R 5 BL LE N D D G Anschluß Nezteil Bedienelemente V V Trafo + + 6 12V/1A Overrange = "EEEE" 1 2 Schaltregler +5V neg. Werte => "0000"
in „Unbekannter Geräteeinschub (Impulszähler)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
WCU_Kilobot_Schematic.txt
500 10 0 1 -70 10 0 1 0 XC6221B302MR-G 32000 32000 97 10 97 10 2 1 0 5 0 0 TIMESTAMP 2016.02.26.18.04.35 "Default Font" "Default Font" -310 320 0 4 97 10 "Default Font" REF-DES -170 -350 0 6 97 10 "Default Font" PART-TYPE CLOSED 5 10 255 -400 -300 -400 300 400 300 400 -300 -400 -300 T-600 200 0 0 140
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catalog.pdf
Category]: EEPROM [Desc]: M24M02-DR Series 2 Mb (256 K x 8) 5.5 V Serial I²C bus EEPROM - SOIC-8 MPN: M24C04-WDW6TP [ID]: 000309 [Price]: 0.17 USD [QTY]: 5 [Category]: EEPROM [Desc]: M24C04 Series 4 Kb (512 x 8) 2.5 V SMT Serial I²C Bus EEPROM - TSSOP-8 MPN: 24AA04T-I/OT [ID]: 000539 [Price]: 0.33 USD [QTY]
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PDF
catalog.pdf
Category]: EEPROM [Desc]: M24M02-DR Series 2 Mb (256 K x 8) 5.5 V Serial I²C bus EEPROM - SOIC-8 MPN: M24C04-WDW6TP [ID]: 000309 [Price]: 0.17 USD [QTY]: 5 [Category]: EEPROM [Desc]: M24C04 Series 4 Kb (512 x 8) 2.5 V SMT Serial I²C Bus EEPROM - TSSOP-8 MPN: 24AA04T-I/OT [ID]: 000539 [Price]: 0.33 USD [QTY]
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PDF
ttester.pdf
ein externer seriell-parallel Wandler erforderlich. Die einfachste Lösung scheint mir mit einem 74HCT164 oder einem 74HCT595 Chip möglich zu sein. Einen entsprechenden Schaltungsvorschlag zeigt das Bild 2.12 . 18 GND VCC 1 GND VCC 1 2 VSS 2 VSS VCC 3 VDD VCC 3 VDD VEE 4 VO ) VEE 4 VO ) t 5 RS 0 t 5
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PDF
33120-90017.pdf
operation outside of C to 28 C range TotalHarmonicDistortion (1-year specification). DC to 20 kHz: < 0.04% (2) 100 mVpp – 20 Vpp amplitude into open-circuit load. Spurious (non-harmonic) Output (DC to 1 MHz): < -65 dBc (3) Offset 2 X peak-to-peak amplitude. Output (> 1 MHz): < -65 dBc + 6 dB/octave (4) For
in „Projekt: DDS basierter Funktionsgenerator mit AD5930“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ATARI_PBI_FPGA.vhd
std_logic; -- Reseteingang trigger: out std_logic := '0'; -- Triggerausgang mit verlängerten Signal(74HCT123) für z.B. Freezer / Bibomon IRQ: out std_logic := '0'; -- IRQ Ausgang, um den ATARI zu bremsen (über BC847 Transistor) clk50: in std_logic; -- 50Mhz Oszillator gpio: inout std_logic_vector(13 downto
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PDF
MC14489.pdf
either a data in the registers. See the last paragraph of Data In for level shifter (MC14504B, MC74HCT04A) or pullup resistor of more information. 1 k to 10 k must be used. Parameters to be considered when sizing the resistor are the worst–case IOL of the driving Data Out (Pin 18) device, maximum tolerable
in „4094 kaskafieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
igrid_ss_3kw_plus.pdf
The +15V_DRV, 12V, +5V power supplies stable voltage to all kinds of ICs and other devices such as HCT. The +12V_RLY is supplied to fans and relays. 4.2 Boost circuit Figure 4.4 Boost circuit As shown in the Figure 4.4, when Q1 is on, the current will increase to store energy in choke(L2) and capacitor
in „PV Wechselrichter startet nicht mehr und verursacht Kurzschluss bzw. hohen Strom“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Datum_LPRO-101.pdf
100 kHz Test -dBc/Hz -dBc/Hz -dBc/Hz -dBc/Hz -dBc/Hz -dBc/Hz Notes 3-2 99 130 149 158 159 161 2 (74AC04) 3-3 102 130 149 155 157 159 2 (74AC04) 3-4 101 129 134 135 135 135 2, 3 (MC10ELT21D) 3-5 98 118 118 119 119 120 2, 4 (LT1016) TYP LPRO 86 96 138 152 156 158 1 FRK LN 103 130 149 158 160 161 1 1. The
in „Ausgangsschaltung 10MHz Referenz“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
catalog-3.pdf
Category]: EEPROM [Desc]: M24M02-DR Series 2 Mb (256 K x 8) 5.5 V Serial I²C bus EEPROM - SOIC-8 MPN: M24C04-WDW6TP [ID]: 000309 [Price]: 0.2343 USD [QTY]: 5 [Category]: EEPROM [Desc]: M24C04 Series 4 Kb (512 x 8) 2.5 V SMT Serial I²C Bus EEPROM - TSSOP-8 MPN: 24AA04T-I/OT [ID]: 000539 [Price]: 0.4547 USD [
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PDF
bs1Appnotes.pdf
figure 3. The inverter/line driver shown in figure 3 can either be a CMOS type like one-sixth of a 74HCT04 or an actual RS-232 line driver, such as a MAX-232.IftheStampswillbetalkingtoeachotherinsteadofreporting to a host computer, you can eliminate the line driver entirely. The Stamp also supports an
in „Smartcard-Kode-Schloss mit PIC16F84“ · Mikrocontroller und Digitale Elektronik ·
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PDF
_Dokumentation_V1.6_Stand_04.08.2012.pdf
By Stefan S (Sungod) 2³ bis 10³ Unicolor Nachbauanleitung Projektdokumentation V1.6 – Stand 04.08.2012 Ich übernehme keine Haftung für Schänden an Mensch, Tier, oder Gegenständen! Wer Rechtschreibfehler findet, darf sie behalten ;-) Fragen/Info: ledcube@sungod-ra.de Inhalt Vorabinfo...........
in „Tutorial 10x10x10 LED-Cube“ · Mikrocontroller und Digitale Elektronik ·
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PDF
i2c.pdf
capacitance and the value of the pull-up resistor. 16.2 Switched pull-up circuit for fast-mode 2 1/4 HCT4066 VDD I C-bus devices 5V 〉 10% The supply voltage (V DD ) and the maximum output LOW level nE V CC determine the minimum value of pull-up resistor R (pee Section 10.1). For example, with a supply
in „Suche I²C Bus Grundlagen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HAMEG_HM1507-3_Oscilloscope_Service.pdf
iiuF \¥ 1 Z86C08 |200R| BC850C U . Ti i 12MHZ Xi IPS2286NA luFM L |200R| If: ra | | I200I S STEC16B04 |200R| Jl STEC16B04 i CsJ " JPS2286NAsz 2 STEC16B04 a_ igÿa B V lm i 1 a m rranlr 5 S ai o m CJ TEC16B03 o iF n jj _ s I OS i |47K5| I: 71 JPS2286NA 3 JPS2286NA 03 O |n (ÿ3 |MT340S I s JPS2286NA100nF
in „HM 1507-3 bootet nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR-Tutorial.pdf
Zeichen.Am Beispiel des Glockensymboles: Die 8 Bytes, welches das Symbol repräsentiern, lauten: 0x00, 0x04, 0x0A, 0x0A, 0x0A, 0x1F, 0x04, 0x00, Dem LCD wird die neue Definition übertragen, indem man dem LCD die 'Schreibposition' mittels des Kommandos Character RAM Address Set in den Zeichensatzgenerator verschiebt
in „AVR-Tutorial als PDF“ · Offtopic ·
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PDF
DE200610__1_.pdf
Autor Anweisungen angegeben angegebenen Typenbezeich- werden, nungen: - eine Funk-Tastatur mit IC1 = 74HCT14 Scan-Code 2 wird erkannt, Achtkanal-Oszilloskop- IC2 = 74HC393 Laufschrift, ELEKTOR - alle Kommentare wurden vorsatz, ELEKTOR IC3 = 74HCT151 November 2003, S. 18 in das Englische übersetzt. Juli/August
in „ekg schaltung aus heft 10/2006“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HS_Systems_Part_2_for_Print_A.pdf
|| 120nH 560Ω || 240nH 620Ω || 120nH Input Impedance (50Ω) 47 23 32 48 VSWR (1-2) 1.06 2.17 1.56 1.04 Passband Flatness (0-3dB) 4.04 1.5 2.8 0.17 IF –3dB Bandwidth (100-200MHz) 174 174 214 150 SNR (65-74dB) 69 69 69 69 SFDR (70-90dB) 73.5 77 78 80 Input Drive Level (5-12dBm) 9.06 7.6 5.8 5.9 7dB Improvement
in „ADCs: Digitale Masse und Oszillator an Analogmasse?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
enc28j60.pdf
MACON2 01h MAADR0 02h EWRPTL 02h EHT2 02h MACON3 02h MAADR3 03h EWRPTH 03h EHT3 03h MACON4 03h MAADR2 04h ETXSTL 04h EHT4 04h MABBIPG 04h MAADR5 05h ETXSTH 05h EHT5 05h — 05h MAADR4 06h ETXNDL 06h EHT6 06h MAIPGL 06h EBSTSD 07h ETXNDH 07h EHT7 07h MAIPGH 07h EBSTCON 08h ERXSTL 08h EPMM0 08h MACLCON1 08h
in „ENC28J60 Resetpin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
an-937_gateDrive.pdf
1K INPUT 2 IN HO 7 G 3 0.47 4 3 FAULTCS 6 C2 4 5 C1 COM VS R4 C5 0.1 1 IR2127/8 220 10n 5 6 D4 11DQ04 12VRTN 100K E T1: CORE: 331X185 3E2A, A1=2600 (OD=0.625", Ae=0.153 CM^2) PRIMARY: 17T, AWG 28 SEC: 27T, AWG 28 Figure 26a. Transformer-coupled MGD with UV lockout and short-circuit protection AN-937
in „Gatekapazität (FET)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Spezifikation.pdf
the bus. compatible devices are not allowed to respond on reception of this address. • 00000100 (H‘04’). Write programmable part of slave address by hardware. All devices which define the 3. The address reserved for a different bus format is programmable part of their address by hardware (and includedto
in „SPI, ISP, USI, TWI, I2C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spezifikation.pdf
the bus. compatible devices are not allowed to respond on reception of this address. • 00000100 (H‘04’). Write programmable part of slave address by hardware. All devices which define the 3. The address reserved for a different bus format is programmable part of their address by hardware (and includedto
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PDF
Spezifikation.pdf
the bus. compatible devices are not allowed to respond on reception of this address. • 00000100 (H‘04’). Write programmable part of slave address by hardware. All devices which define the 3. The address reserved for a different bus format is programmable part of their address by hardware (and includedto
in „I²c mit Bascom und ATmega“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spezifikation.pdf
the bus. compatible devices are not allowed to respond on reception of this address. • 00000100 (H‘04’). Write programmable part of slave address by hardware. All devices which define the 3. The address reserved for a different bus format is programmable part of their address by hardware (and includedto
in „Reset auf I2C-Bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Philips_Semiconductors_-_I2C_Bus_Specification_v2.1.pdf
the bus. compatible devices are not allowed to respond on reception of this address. • 00000100 (H‘04’). Write programmable part of slave address by hardware. All devices which define the 3. The address reserved for a different bus format is programmable part of their address by hardware (and includedto
in „GND-Fäche sinnvoll???“ · Platinen ·
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PDF
Spezifikation.pdf
the bus. compatible devices are not allowed to respond on reception of this address. • 00000100 (H‘04’). Write programmable part of slave address by hardware. All devices which define the 3. The address reserved for a different bus format is programmable part of their address by hardware (and includedto
in „i2c und Takt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spezifikation.pdf
the bus. compatible devices are not allowed to respond on reception of this address. • 00000100 (H‘04’). Write programmable part of slave address by hardware. All devices which define the 3. The address reserved for a different bus format is programmable part of their address by hardware (and includedto
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PDF
Spezifikation.pdf
the bus. compatible devices are not allowed to respond on reception of this address. • 00000100 (H‘04’). Write programmable part of slave address by hardware. All devices which define the 3. The address reserved for a different bus format is programmable part of their address by hardware (and includedto
in „I2C Speicher HotSwap?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spezifikation.pdf
the bus. compatible devices are not allowed to respond on reception of this address. • 00000100 (H‘04’). Write programmable part of slave address by hardware. All devices which define the 3. The address reserved for a different bus format is programmable part of their address by hardware (and includedto
in „I²C Bus Schnittstelle extern ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
I2C_BUS_SPECIFICATION_3.pdf
the bus. compatible devices are not allowed to respond on reception of this address. • 00000100 (H‘04’). Write programmable part of slave address by hardware. All devices which define the 3. The address reserved for a different bus format is programmable part of their address by hardware (and includedto
in „SPI oder TWI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spezifikation.pdf
the bus. compatible devices are not allowed to respond on reception of this address. • 00000100 (H‘04’). Write programmable part of slave address by hardware. All devices which define the 3. The address reserved for a different bus format is programmable part of their address by hardware (and includedto
in „Unterschied Defintion I²C und SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
i2c_bus_specification_3.pdf
the bus. compatible devices are not allowed to respond on reception of this address. • 00000100 (H‘04’). Write programmable part of slave address by hardware. All devices which define the 3. The address reserved for a different bus format is programmable part of their address by hardware (and includedto
in „IIC-Bus Verständnisfrage“ · Mikrocontroller und Digitale Elektronik ·
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PDF
I2C_SPEC.pdf
the bus. compatible devices are not allowed to respond on reception of this address. • 00000100 (H‘04’). Write programmable part of slave address by hardware. All devices which define the 3. The address reserved for a different bus format is programmable part of their address by hardware (and includedto
in „I2C abstrakt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
I2C_SPEC.pdf
the bus. compatible devices are not allowed to respond on reception of this address. • 00000100 (H‘04’). Write programmable part of slave address by hardware. All devices which define the 3. The address reserved for a different bus format is programmable part of their address by hardware (and includedto
in „I2C programmieren lernen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
39340011.pdf
the bus. compatible devices are not allowed to respond on reception of this address. • 00000100 (H‘04’). Write programmable part of slave address by hardware. All devices which define the 3. The address reserved for a different bus format is programmable part of their address by hardware (and includedto
in „Problem mit I²C-Device“ · Mikrocontroller und Digitale Elektronik ·
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PDF
I2C_SPEC.pdf
the bus. compatible devices are not allowed to respond on reception of this address. • 00000100 (H‘04’). Write programmable part of slave address by hardware. All devices which define the 3. The address reserved for a different bus format is programmable part of their address by hardware (and includedto
in „was bedeutet acknowleges bei SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
philips_i2c.pdf
the bus. compatible devices are not allowed to respond on reception of this address. • 00000100 (H‘04’). Write programmable part of slave address by hardware. All devices which define the 3. The address reserved for a different bus format is programmable part of their address by hardware (and includedto
in „wie sieht ein i2c protokoll aus?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
EMS_Adapter.xml
iP3VcSI6kF30fjfzUubyMj+79ysgyq/KUhbd/nK289Jjf3q76Nv+pYPeSkB+UUOkCE/S0al3/GF9ToAkIdN7dx2d3K4rHiUEjRw37+oraqUE7SofuEt1ehK04qOZ9keG8rhdfbqeX3KqWvOSXRfuRX+WHCLu1CF/6GkkRRTSRggkfZ3KQeOOhIpk785y1O9elkR65ALfox7zOgKjeLj6uh9+qSUtzS0h6+IIhIOpCDIbKgcgQYIEWJ4UTZzS+b5JGBcc9ZLhzod+9Qm04laxOZE2myOCO4G+F3MjTR5w0EgYdn10f/q8oO+/SW9TMaZc66NseDoSlwjUXPKpYJYVNKlFD8ojBtS1xg6Ny73YYQdaAK20rpfk
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Datei
EMS_Adapter.xml
iP3VcSI6kF30fjfzUubyMj+79ysgyq/KUhbd/nK289Jjf3q76Nv+pYPeSkB+UUOkCE/S0al3/GF9ToAkIdN7dx2d3K4rHiUEjRw37+oraqUE7SofuEt1ehK04qOZ9keG8rhdfbqeX3KqWvOSXRfuRX+WHCLu1CF/6GkkRRTSRggkfZ3KQeOOhIpk785y1O9elkR65ALfox7zOgKjeLj6uh9+qSUtzS0h6+IIhIOpCDIbKgcgQYIEWJ4UTZzS+b5JGBcc9ZLhzod+9Qm04laxOZE2myOCO4G+F3MjTR5w0EgYdn10f/q8oO+/SW9TMaZc66NseDoSlwjUXPKpYJYVNKlFD8ojBtS1xg6Ny73YYQdaAK20rpfk