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hardinfo_report.html
0000-0cf7 </tt></td><td class="value">PCI Bus 0000:00</td></tr> <tr><td class="field"><tt> 0000-001f </tt></td><td class="value">dma1</td></tr> <tr><td class="field"><tt> 0020-0021 </tt></td><td class="value">pic1</td></tr> <tr><td class="field"><tt> 0040-0043 </tt></td><td class="value">timer0</td>
in „Notebook vom Typ Asus UL50VT erkennt weder Festplatte noch DVD-Laufwerk“ · PC Hard- und Software ·
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PDF
21709c_EEPROM.pdf
operation is enabled and data into and out of the device. Since it is an o(read/write the entire memoryF). drain terminal, the SDA bus requires a pull-up resistor to VC (typical 10 kΩ for 100 kHz, 2 kΩ for 400 kHz). If tied to Vwrite operations are inhibited. The entire memory will be write-protected. Read
in „EEPROM mit Infineon XC2200 ueber IIC benutzten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
21709c.pdf
operation is enabled and data into and out of the device. Since it is an o(read/write the entire memoryF). drain terminal, the SDA bus requires a pull-up resistor to VC (typical 10 kΩ for 100 kHz, 2 kΩ for 400 kHz). If tied to Vwrite operations are inhibited. The entire memory will be write-protected. Read
in „24LC02B mit (scheinbar) seltsamer Adressierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
D865GBF_D865GLC_TechProdSpec.pdf
ATA IDE connectors, and the DIMM sockets. 68 Technical Reference 2.8.1 Back Panel Connectors Figure 18 shows the location of the back panel connectors. The back panel connectors are color-coded in compliance with PC 99 recommendations. The figure legend below lists the colors used. E G I C A K B D F H
in „VS: Intel D865GBF, Pentium 4 (3GHz/1M/800) SL7PM, Matrox G45“ · Markt ·
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PDF
MachXO2FamilyDataSheet.pdf
Devices 5 Symbol Parameter Device Typ. Units LCMXO2-256HC 14.6 mA LCMXO2-640HC 16.1 mA LCMXO2-640UHC 18.8 mA LCMXO2-1200HC 18.8 mA LCMXO2-1200UHC 22.1 mA LCMXO2-2000HC 22.1 mA ICC Core Power Supply LCMXO2-2000UHC 26.8 mA LCMXO2-4000HC 26.8 mA LCMXO2-7000HC 33.2 mA LCMXO2-2000HE 18.3 mA LCMXO2-2000UHE 20.4
in „Statemachine springt in falsche "states" warum?“ · FPGA, VHDL & Co. ·
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PDF
Grenzwerte_EMF.pdf
Gliedmaßen) 2 (mA/m ) körper-SAR Rumpf) (Effektivwerte) (W/kg) (W/kg) (W/kg) bis 1 Hz 8 - - - 1 - 4 Hz 8/f - - - 4 Hz - 1 kHz 2 - - - 1 - 100 kHz f500 - - - 100 kHz f500 0,08 2 4 -10 MHz 10 MHz - 0,08 2 4 -10 GHz Frequenzbereich Leistungsflussdichte (W/m ) 2 10 - 300 GHz b) 10 a)Anmerkungen: 1. f ist die
in „2,455 Ghz Grill - Freund & Helfer gesucht“ · HF, Funk und Felder ·
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Datei
irsnd.c
* SIEMENS_OR_RUWIDO_FRAME_REPEAT_PAUSE_TIME + 0.5) // use uint16_t! #ifdef PIC_C18 // PIC C18 # define IRSND_FREQ_TYPE uint8_t # define IRSND_FREQ_30_KHZ (IRSND_FREQ_TYPE) ((F_CPU / 30000 / 2 / Pre_Scaler / PIC_Scaler) - 1) # define IRSND_FREQ_32_KHZ (IRSND_FREQ_TYPE) ((F_CPU
in „IR Fernbedienung mit IRSND“ · Mikrocontroller und Digitale Elektronik ·
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MCP4821-MCP4822.pdf
= 1 REF NREF p-p (0.1-10 Hz) Output Noise Density e — 1.2 — µV/ Hz Code = 0xFFFh, G = 1 NREF √ (1 kHz) eNREF — 1.0 — µV/ Hz Code = 0xFFFh, G = 1 (10 kHz) √ 1/f Corner Frequency fCORNER — 400 — Hz Note 1: By design, not production tested. 2: Too small to quantify. DS21953A-page 2 © 2005 Microchip Technology
in „Digital-Analog-Umsetzer (10V -> 1mV Auflösung)“ · Mikrocontroller und Digitale Elektronik ·
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tFXKSKyORc24h2V2.pdf
,R28,R29,R84,R85,R86,RESISTOR(22 OHM,1/16W,F,TP 0402,50V) 412-MC7K-1887 48 87,R88,R89,R90,R91,R92,R 93,R94,R95,R96,R97,R98,R 102,R46,R123,R206, R108,R109,R110,R242,R24 48,R252,R257,R202,R204,RESISTOR(47 OHM,1/16W,F,TP 0402,50V) 412-
in „Risiko | Nicht?“ · Offtopic ·
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tms320lf2407a.pdf
MIPS Performance 64K Program, 64K Data, 64K I/O − Low-Power 3.3-V Design D Watchdog (WD) Timer Module D Based on TMS320C2xx DSP CPU Core − Code-Compatible With F243/F241/C242 D 10-Bit Analog-to-Digital Converter (ADC) −
in „TMS320LF2407 ???“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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24LC32A.pdf
C Automotive (E): TA = -40°C to +125°C Param. Symbol Characteristic Min Max Units Conditions No. 1 F CLK Clock frequency — 400 kHz 2.5V ≤ VCC≤ 5.5V — 100 1.8V ≤ VCC< 2.5V (24AA32A) 2 THIGH Clock high time 600 — ns 2.5V ≤ VCC≤ 5.5V 4000 — 1.8V ≤ VCC< 2.5V (24AA32A) 3 T LOW Clock low time 1300 — ns 2.5V
in „I2C Eeprom: Buskollisionen nach einem schnellen Reset“ · Mikrocontroller und Digitale Elektronik ·
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93LC66.pdf
Overall Length D .118 BSC 3.00 BSC Foot Length L .016 .024 .031 0.40 0.60 0.80 Footprint (Reference) F .037 REF 0.95 REF Foot Angle φ 0° - 8° 0° - 8° c Lead Thickness .003 .006 .009 0.08 - 0.23 Lead Width B .009 .012 .016 0.22 - 0.40 Mold Draft Angle Top α 5° - 15° 5° - 15° Mold Draft Angle Bottom β 5
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Datei
hwinfop14s.txt
DM_UDEV_RULES_VSN=2 E: DM_ACTIVATION=1 E: DM_NAME=ubuntu--vg-ubuntu--lv E: DM_UUID=LVM-V33qmPxvewknXbnyJO86j4k2RybtW9b7YSL3z7EVoOTidx4T1ZfkVbPd4V4dmvLe E: DM_SUSPENDED=0 E: DM_VG_NAME=ubuntu-vg E: DM_LV_NAME=ubuntu-lv E: ID_FS_UUID=ad8c66f4-7c68-44b4-b22f-e1e5ea7ad84c E: ID_FS_UUID_ENC=ad8c66f4-7c68-44b4-b22f-e1e5ea7ad84c
in „Lenovo Thinkpad P14s (Intel) freeze beim Steckerziehen“ · PC Hard- und Software ·
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PDF
MCP41010.pdf
24 i Code = 08h G-30 Code = 04h -36 Code = 02h -42 Code = 01h CS -48 -54 CL= 30pF, Refer to Figure 2-29 MCP41010, MCP42010 (10kΩ potentiometers) -60100 1k 10k 100k 1M 10M Frequency (Hz) FIGURE 2-15: One Position Settling Time. FIGURE 2-18: Gain vs. Frequency for 10 kΩ Potentiometer
in „Widerstand regeln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
11195c.pdf
24 i Code = 08h G-30 Code = 04h -36 Code = 02h -42 Code = 01h CS -48 -54 CL= 30pF, Refer to Figure 2-29 MCP41010, MCP42010 (10kΩ potentiometers) -60100 1k 10k 100k 1M 10M Frequency (Hz) FIGURE 2-15: One Position Settling Time. FIGURE 2-18: Gain vs. Frequency for 10 kΩ Potentiometer
in „DC-DC Wandler mit MCP42010“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mcp41xxx.pdf
24 i Code = 08h G-30 Code = 04h -36 Code = 02h -42 Code = 01h CS -48 -54 CL= 30pF, Refer to Figure 2-29 MCP41010, MCP42010 (10kΩ potentiometers) -60100 1k 10k 100k 1M 10M Frequency (Hz) FIGURE 2-15: One Position Settling Time. FIGURE 2-18: Gain vs. Frequency for 10 kΩ Potentiometer
in „Schaltregler, Feedback und Op Amp“ · Analoge Elektronik und Schaltungstechnik ·
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s_p305_intel_mm_pro_p300.pdf
15 MY7 I 16 MY13 I 17 MY8 I 18 MY9 I 19 MY10 I 20 MY11 I 21 MY12 I 22 MY15 I 23 MX7 I 24 MX2 I 25 MX3 I 26 MX4 I 27 MX0 I 28 MX5 I 29 MX6 I 30 MX1 I 31 K_LED_P I 32 CAPSLED I 33 FN_F10 I 34 NUMLED I CN11 T/P Connector CONN SMD FFC
in „LCD-Inverter kaputt - wer kann helfen?“ · PC Hard- und Software ·
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Datei
p18f6622.inc
LIST ;========================================================================== ; MPASM PIC18F6622 processor include ; ; (c) Copyright 1999-2013 Microchip Technology, All rights reserved ;========================================================================== NOLIST ;===================
in „PIC18F6620 lesen, schreiben“ · Mikrocontroller und Digitale Elektronik ·
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Datei
datei-dmesg.txt
0xc1aa6000 ( 884 kB) [ 0.000000] .data : 0xc166f24a - 0xc19c8900 (3429 kB) [ 0.000000] .text : 0xc1000000 - 0xc166f24a (6588 kB) [ 0.000000] Checking if this processor honours the WP bit even in supervisor mode...Ok. [
in „Limux:: Netzwerk und WLAN futsch.“ · PC Hard- und Software ·
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calling_conventions_for_different_C_compilers_and_operating_systems__fog.pdf
class codes storage class Microsoft Borland Watcom Gnu2 Gnu3+ (default) A n 27 near A n const B x nx C K volatile C w ny V V const volatile D xw nyx CV VK far E f const far F fx volatile far G fy const volatile far H fyx huge I h __unaligned F __restrict I Example: const int a; Table 11. Function distance
in „C und C++ kompatibilität“ · Mikrocontroller und Digitale Elektronik ·
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24LC256_32k_I2C-EEPROM.pdf
VCC, WP = VCC D7 ILO Output leakage current — ±1 µA VOUT = SS or CC D8 C I, Pin capacitance — 10 pF VCC = 5.0V (Note) C OUT (all inputs/outputs) TA= 25°C, C= 1 MHz D9 ICCRead Operating current — 400 µA VCC = 5.5V, SCL = 400 kHz ICCWrite — 3 mA VCC = 5.5V D10 ICCS Standby current — 1 µA TA= -40°C to
in „immer noch EEprom“ · Mikrocontroller und Digitale Elektronik ·
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DCC_Laborbooster.pdf
DCC-Spannung vor der H-Brücke) 14 -ohne Untermenü 15 16 -Fahrstufe 17 -0...127 (für DCC und Analog) 18 -ENTER => zurück ins Haupmenü 19 20 -Funktion (Lokdekoder, Multifunktionsdekoder) 21 -FL/F1/F2/F3/F4 22 -AUS/EIN 23 -ENTER => zurück ins Haupmenü 24 25 26 -Weichen (auch Schaltdekoder, Turnout, Weiche
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PDF
MCP73871-Data-Sheet-20002090E__2_.pdf
MCP73871 Typical Application AC-DC Adapter or USB Port 18, 19 1, 20 System IN OUT Load 10 μF 2 4.7 μF VPCC 14, 15, 16 470 VBAT 6 4.7 μF PG NTC 470 7 STAT2 THERM 5 470 8 10 k STAT1 PROG1 R Single-Cell LBO 13 PROG1 Li-Ion Battery 3 SEL Low Hi 4 12 R PROG3
in „Fehlersuche beim MCP73871“ · Mikrocontroller und Digitale Elektronik ·
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PDF
25040.pdf
15 16 17 18 19 20 21 22 23 24 SCK Instruction Lower Address Byte Data Byte 1 SI 0 0 0 0 A8 0 1 0 A7 6 5 4 3 2 1 0 7 6 5 4 3 2 1 0 CS 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 SCK Data Byte 2 Data Byte 3 Data
in „Eeprom Philip Pines Auslesen mit CH341“ · Fahrzeugelektronik ·
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PDF
Micrel.pdf
unless noted. Parameter Symbol Min. Typ. Max. Units Conditions e , Output Noise Voltage — 400 — C = 10 µF n L (10 Hz to 100 kHz) — 260 — µVRMS C = 33 µF L = 100 mA L Ground Current in — 2 10 MIC29150/1/2/3 only µA Shutdown — — 30 VEN = 0.4V Reference - MIC29xx2/MIC29xx3 1.228 1.240 1.252 V Reference Voltage
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217369.pdf
-2 e 14 17.78 .700 15.24 .600 12.38 .487 390261-3 i 16 20.32 .800 17.78 .700 14.92 .587 390261-4 g 18 22.86 .900 20.32 .800 17.46 .687 390261-5 E n 20 25.40 1.400 22.86 .900 20.00 .787 390261-6 v 22 27.94 1.100 25.40 1.000 22.54 .887 390261-7 t 24 30.48 1.200 27.94 1.100 25.10 .988 390261-8 f o 28 35.56
in „Kühlkörper TO3 Befestigungslöcher zu groß?“ · Mechanik, Gehäuse, Werkzeug ·
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MCP79521.pdf
0x00 0x00 Time and Date 0x07 0x08 Configuration and Trimming EEPROM (128 Bytes) 0x0B 0x0C Alarm 0 0x7F 0x11 0x12 0x80 Alarm 1 0x17 0x18 Power-Fail/Power-Up Timestamps Unimplemented; mapped back to 0x00-0x7F 0x1F 0x20 SRAM (64 Bytes) 0xFF 0x5F Protected EEPROM 0x60 0x00 Protected EEPROM (8 Bytes) EUI-48
in „RTC -> MCP79521“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MIC5233-3.3YS-microchip-20221000.pdf
Batteries MIC5233YM5 • Automotive Electronics 1 5 VIN VOUT • Battery-Powered Systems 2 R1 C = 2.2 μF • 3-4 Cell Li-Ion Battery Input Range CIN 1.0 μF CERAMIC 3 4 OFF ON EN R2 GND= 18 μA Package Types MIC5233 MIC5233 5-Pin SOT23 3-Pin SOT223 (Top View) (Top View) EN GND IN 3 2 1 GND 4 L3xx 4 5 1 2 3
in „STM32F302C8T6 Schaltplanüberprüfung“ · Mikrocontroller und Digitale Elektronik ·
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an19fc.pdf
VC C3 470μF R3 R2 10μF 3.3k 1.24k L1 C2 D1 CURRENT-BOOSTED BOOST CONVERTER VIN 200μH 0.22μF –28V –15V *REQUIRED IF INPUT LEAD" ≥2 1A AN19 F31 This tapped inductor version of the boost converter can offersignificantincreasesinoutputpowerwhentheinput
in „LT1270 dimensionieren“ · Analoge Elektronik und Schaltungstechnik ·
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6291174.pdf
ZA 1/16W R63C 401 275 2902 MT-GLAZE 68K JA 1W R68F 401 105 2102 MT-GLAZE 18K JA 1/16W R63D 401 275 2902 MT-GLAZE 68K JA 1W R68G 401 105 0504 MT-GLAZE 1K JA 1/16W R63E 401 275 2902 MT-GLAZE 68K JA 1W R68H 401 105 2904 MT-GLAZE 22K JA 1/16W
in „Sanyo LCD Beamer PLC- XU30 defekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
UCC25600_AppNote.pdf
0.33 µF CAPACITOR, FILM, 630 V, 10% MF630V.33K Xicon 1 C304 0.001 µF CAPACITOR, PP FILM, 1 KV, 10% MKP10 1000/1600/10 WIMA 2 C305, C321 0.022 µF CAPACITOR, PP FILM, 1 KV, 10% MKP10-.022/1KV/10 WIMA 6 C306-C311
in „Resonanzkoverter: Tank dimensionieren“ · Analoge Elektronik und Schaltungstechnik ·
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1_AMD_BKDG_Family__15h_Mod_00h-0Fh_BKDG.pdf
F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F 0 F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F F /32 0 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 26
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Datei
keylcd.asm
0x7D ; für Read / Write Operation auf EEProm des PIC eprom_adr equ 0x7E ; Adresse des Byte im EEProm des PIC welches als nächstes gelesen oder geschrieben werden soll eprom_val equ 0x7F ; Wert der ins / aus dem EEProm kommt ; -------------------------
in „Noritake VFD GU140x32F7806 4-Bit Mode, Initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KSZ8851SNL.pdf
C O S D L S V D S S C V 32 31 30 29 28 27 26 LED0 1 24 DGND PME 2 23 VDD_D1.8 INTRN 3 22 DGND DGND 4 Paddle Ground on 21 X2 VDD_CO1.8 5 Bottom of Chip 20 X1 EDD_IO 6 19 RSTN EESK 7 18 AGND AGND 8 17 ISET 9 10 11 12 13 14 15 . S P M D P M . A E R X N T X A _ E R A T _ D D V V TABLE 2-1: SIGNALS
in „KSZ8851 Ethernet komplizierte Frage.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MIC5239_Data.pdf
SHDN) — 0.1 1 µA VEN≤ 0.6V, IN= 30V Short-Circuit Current ISC — 850 1200 mA VOUT = 0V 10 Hz to 100 kHz, V = 3.0V, Output Noise en — 160 — µVRMS OUT CL= 3.3 µF 2021 Microchip Technology Inc. DS20006544A-page 3 MIC5239 ELECTRICAL CHARACTERISTICS (CONTINUED) Electrical CharacteristicsIN= VOUT + 1V; EN
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slau213a.pdf
grayed dashed blocks in Figure 5 identify those elements which are internal to the MSP430FG4618. C21 15pF MSP430 Internal R30 150K 1stOrder Active HPF C18 470nF OA0I0 - R29 OA0 12-bit 12-bit 1K + OA0 OA0OADC12 DAC12 MIC OA0I1 C17 - - 3.3nF OA1I1 OA1O OA2I1 OA1 OA2 + + OA2O R24 R25 C16 OA1I0 OA2I0 1.4K 15.4K
in „MSP430FG4618 und der UART?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MSP430FG4618_-_F2013_Experimenter___s_Board_-_slau213a.pdf
grayed dashed blocks in Figure 5 identify those elements which are internal to the MSP430FG4618. C21 15pF MSP430 Internal R30 150K 1stOrder Active HPF C18 470nF OA0I0 - R29 OA0 12-bit 12-bit 1K + OA0 OA0OADC12 DAC12 MIC OA0I1 C17 - - 3.3nF OA1I1 OA1O OA2I1 OA1 OA2 + + OA2O R24 R25 C16 OA1I0 OA2I0 1.4K 15.4K
in „msp430xG46x_usart1_19200.c "tested"?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
enc28j60.pdf
FIGURE 2-4: EXTERNAL CONNECTIONS 3.3V RJ-45 TPOUT + 50Ω Ferr(1) 1 I/O CS 1% Bead SCK SCK 2 50Ω 0.01 µF SDO SI 1% SDI SO TPOUT - 1:1 CT 3 TPIN+ 4 MCU 5.0V← 3.3V ENC28J60 50Ω Level 1% Shift 0.01 µF 5 Logic2) 50Ω 1:1 TPIN- 1% 6 INT0 INT INT1 WOL 7 VCAP LEDA LEDB RBIAS 8 2K 1% .001 µF 10 µF 2kV Note 1: Ferrite
in „ENC28J60 Resetpin“ · Mikrocontroller und Digitale Elektronik ·
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i2c.pdf
9 to 1 giving us 10. Then 10 is multiplied by 4 to yield 40. 4 MHz divided by 40 is 100 kHz or 100 kbps. We use this value in our code example which we will look at shortly. 50 2 I C - Code Example l Code Example l Send data from a PIC16F877 (or other PIC16F87X device) to a 24x01x I C 2 EEPROM
in „PIC16F877 über I2C mit zweitem PIC16F877 verbinden- wie Funktioniert das?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR_Roboter_Dokumentation.pdf
Interface sprecher CVBS / RGB PS2 LED mit Fototransistor SPI I²C Speicher- ISP RS232 I²C Speicher- ISF471F / LD274 erweiterung erweiterung SPI Bus RS 232 I²C Bus Motor 1 Reflexlichtschranke CNY70 k e r s AVR-Kontroller Reflexlichtschranke s r ATMega 644-20PO Motorsteuerung CNY70 e c PWM über I²C S L RS232
in „Anfängerprobleme“ · Mikrocontroller und Digitale Elektronik ·
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88E1111_DS.pdf
J5 VSS on A# e E zz1 EL TX_EN J6 VSS ic D l R 31 RV TX_ER K4 VSS em N r M u AC2 VDDO K6 VSS lS ER M 7v M K1 VDDO L5 VSS el ND e B9 VDDOH L6 VSrv U 1 F7 VDDOH H7 MSSCL, 6 K9 VDDOX J9 *XTAL2 - L2 VDDOX ge N n 1d ED z 68 FI u - O N 7 ua C f LL zz E Copyright © 2004
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Datei
NTC.html
); transition-timing-function:cubic-bezier(0.54, 1.12, 0.38, 1.11); } .bp3-dialog{ background:#ebf1f5; border-radius:6px; -webkit-box-shadow:0 0 0 1px rgba(16, 22, 26, 0.1), 0 4px 8px rgba(16, 22, 26, 0.2), 0 18px 46px 6px rgba(16, 22, 26, 0.2); box-shadow:0 0 0 1px rgba(16, 22, 26, 0.1), 0 4px 8px
in „NTC auto kalibrierung - Matheformel“ · Mikrocontroller und Digitale Elektronik ·
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srf02doku_dr.pdf
equivalent Serial Mode address will also change: 0xE0, 0xE2, 0xE4, 0xE6, 0xE8, 0xEA, 0xEC, 0xEE, 0xF0, 0xF2, 0xF4, 0xF6, 0xF8, 0xFA, 0xFC, 0xFE I2C addresses 0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07, 0x08, 0x09, 0x0A, 0x0B, 0x0C, 0x0D, 0x0E, 0x0F Equivalent Serial addresses AutoTune The SRF02
in „Berechnung der Entfernung mit SRF02“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EEPROM.pdf
CC , WP = CC D7 ILO Output leakage current — ±1 μA VOUT = VSS or CC D8 C I, Pin capacitance — 10 pF VCC = 5.0V (Note) C OUT (all inputs/outputs) TA = 25°C, CLK= 1 MHz D9 ICC Read Operating current — 400 μA VCC = 5.5V, SCL = 400 kHz ICC Write — 3 mA VCC = 5.5V D10 ICCS Standby current — 1 μA TA = -40
in „EEPROM auslesen (24xx256) mit Pic16f819, an PC über RS232“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Capacitive_Touch_Sensor_Design_Guide_AN2934.pdf
Appendix A Device Family Maximum Self-Capacitance Maximum Mutual Capacitance Sensor Capacitance [pF] Sensor Capacitance [pF] ATtiny81X/161X/321X 53 32 ATmega324PB/ATmega328PB 32 32 ATSAML10/L11 63 32 ATSAML22 32 32 ATSAMC20/C21 32 32 ATSAMD10/D11 32 32 ATSAMD20/D21/DA1/ATSAMHA1 32 32 ATSAML21 32 32
in „Wie realisiert man Sensortasten?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MCP794xx.pdf
= VSSor VCC D6 LO Output Leakage Current — — ±1 µA VOUT= VSS or CC D7 C I, Pin Capacitance — — 10 pF VCC = 5.0V (Note 1) COUT (SDA, SCL, MFP pins) TA= 25°C, f = 1 MHz D8 COSC Oscillator Pin Capacitance — 3 — pF Note 1 (X1, X2 pins) D9 ICEERD EEPROM Operating — — 400 µA VCC = 5.5V, SCL = 400 kHz Current
in „MCP794xx EUI-64 Node Adresse“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2243913.pdf
characteristics Param. Symbol Characteristic Min Max Units Conditions No. FSCL Standard mode 0 100 kHz C b 400 pF, 1.8V - 5.5V Fast mode 0 400 kHz C b 400 pF, 2.7V - 5.5V High-Speed 1.7 0 1.7 MHz C b 400 pF, 4.5V - 5.5V High-Speed 3.4 0 3.4 MHz C b 100 pF, 4.5V - 5.5V D102 Cb Bus capacitive 100 kHz mode — 400 pF loading 400 kHz mode — 400 pF 1.7 MHz mode — 400 pF 3.4 MHz mode — 100 pF 90 TSU:STA START condition 100 kHz mode 4700 — ns Only relevant for repeated START condition Setup time 400 kHz mode 600 — ns
in „[V] 11St. SMD Dual Digital Poti - I2C Microchip MCP4561-103 10kOhm 256Steps Nonvolatile (8€)“ · Markt ·
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PDF
22107B-1180063.pdf
characteristics Param. Symbol Characteristic Min Max Units Conditions No. FSCL Standard mode 0 100 kHz C b 400 pF, 1.8V - 5.5V Fast mode 0 400 kHz C b 400 pF, 2.7V - 5.5V High-Speed 1.7 0 1.7 MHz C b 400 pF, 4.5V - 5.5V High-Speed 3.4 0 3.4 MHz C b 100 pF, 4.5V - 5.5V D102 Cb Bus capacitive 100 kHz mode — 400 pF loading 400 kHz mode — 400 pF 1.7 MHz mode — 400 pF 3.4 MHz mode — 100 pF 90 TSU:STA START condition 100 kHz mode 4700 — ns Only relevant for repeated START condition Setup time 400 kHz mode 600 — ns
in „[V] 24St SMD Digital I2C / 256 Steps 5K Dual Poti Microchip MCP4561- 502E/MS (MSOP8) (alle 15€)“ · Markt ·
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PDF
2243913.pdf
characteristics Param. Symbol Characteristic Min Max Units Conditions No. FSCL Standard mode 0 100 kHz C b 400 pF, 1.8V - 5.5V Fast mode 0 400 kHz C b 400 pF, 2.7V - 5.5V High-Speed 1.7 0 1.7 MHz C b 400 pF, 4.5V - 5.5V High-Speed 3.4 0 3.4 MHz C b 100 pF, 4.5V - 5.5V D102 Cb Bus capacitive 100 kHz mode — 400 pF loading 400 kHz mode — 400 pF 1.7 MHz mode — 400 pF 3.4 MHz mode — 100 pF 90 TSU:STA START condition 100 kHz mode 4700 — ns Only relevant for repeated START condition Setup time 400 kHz mode 600 — ns
in „[V] 44St. SMD Digital I2C / 256 Steps 10K Poti Microchip MCP4561- 103E/MS (MSOP8 Gehäuse)“ · Markt ·
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2243913.pdf
characteristics Param. Symbol Characteristic Min Max Units Conditions No. FSCL Standard mode 0 100 kHz C b 400 pF, 1.8V - 5.5V Fast mode 0 400 kHz C b 400 pF, 2.7V - 5.5V High-Speed 1.7 0 1.7 MHz C b 400 pF, 4.5V - 5.5V High-Speed 3.4 0 3.4 MHz C b 100 pF, 4.5V - 5.5V D102 Cb Bus capacitive 100 kHz mode — 400 pF loading 400 kHz mode — 400 pF 1.7 MHz mode — 400 pF 3.4 MHz mode — 100 pF 90 TSU:STA START condition 100 kHz mode 4700 — ns Only relevant for repeated START condition Setup time 400 kHz mode 600 — ns
in „[V] 10St. Digitalpoti MCP4561-103E/MS 8MSOP orginalverpackt. (9€)“ · Markt ·