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Datei
ddr.vhd
--------------------------------------------------------------------- -- Operating modes. constant OP_NORMAL : std_logic_vector(5 downto 0) := "000000"; constant OP_DLL_RST : std_logic_vector(5 downto 0) := "000010"; -- CAS latency. constant CAS_2 : std_logic_vector(2 downto 0) := "010"; constant CAS
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2012_02-RIAA.pdf
1 27k 56k 3 IC1A R11 150k 11k MC_L R3 R5 39k R23 R25 k 2 M R18 C13 C18 1 2 2 2 10n 4n7 C6 1 C14 C19 MM_L 470n IC4A 10n 4n7 R6 3 C15 C20 C4 2 10n 4n7 0 1 5 C16 C21 220u 3 IC2A R19 R20 7 10n 220p 35V 3 R R IC4B 6 C17 0 0 10n
in „Empfehlung für Phono-Vorverstärker-Schaltplan?“ · Analoge Elektronik und Schaltungstechnik ·
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Datenblatt_bq27441.pdf
........................... 10 9.4 Device Functional Modes........................................ 11 7 Pin Configuration and Functions......................... 4 9.5 Programming........................................................... 11 8 Specifications............................................
in „Zustandsdaten Lithium Batterie“ · Analoge Elektronik und Schaltungstechnik ·
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USB_geclont.pdf
Device Path : \\?\usb#vid_0403&pid_6001#fte3upe2#{a5dcbf10- 6530-11d2-901f-00c04fb951ed} Device ID : USB\VID_0403&PID_6001\FTE3UPE2 Hardware IDs : USB\VID_0403&PID_6001&REV_0600 USB\VID_0403&PID_6001 Driver KeyName : {36fc9e60-c465-11cf-8056-444553540000}\0016 (GUID_DEVCLASS_USB
in „FT232R USB Eeprom clonen“ · Mikrocontroller und Digitale Elektronik ·
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USB_original.pdf
Device Path : \\?\usb#vid_0403&pid_6001#fte3upe2#{a5dcbf10- 6530-11d2-901f-00c04fb951ed} Device ID : USB\VID_0403&PID_6001\FTE3UPE2 Hardware IDs : USB\VID_0403&PID_6001&REV_0600 USB\VID_0403&PID_6001 Driver KeyName : {36fc9e60-c465-11cf-8056-444553540000}\0016 (GUID_DEVCLASS_USB
in „FT232R USB Eeprom clonen“ · Mikrocontroller und Digitale Elektronik ·
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nm93cs46m8.pdf
immediately precede a PRDS instruction. 5 Instruction Set for the NM93CS06 and NM93CS46 Instruction SB Op Code Address Data PRE PE Comments READ 1 10 A5–A0 0 X Reads data stored in memory, starting at specified address. WEN 1 00 11XXXX 0 1 Enable all programming modes. WRITE 1 01 A5–A0 D15–D0 0 1 Writes
in „Microwire Eeprom 93cs46 programmieren“ · Mikrocontroller und Digitale Elektronik ·
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OPA642U_20MHz__BB.pdf
necessary to trim the CMR, then R 2s the suggested 1k 500 1k OPA642 V adjustment point. O 1k THREE OP AMP DIFFERENCING (Instrumentation Topology) 1/2 1k The primary drawback of the single op-amp differential OPA2650 VO= 2 (1 – 2 ) amplifier is its relatively low input impedances. Where a V2 high impedance
in „Oszilloskop mit AVR“ · Mikrocontroller und Digitale Elektronik ·
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AD538_c.pdf
100 6250 200 6500 V Y C T A T MIN to MAX 450 6750 350 6500 750 61000 V Output Voltage Swing R L 2 k –11 +11 –11 +11 –11 +11 V Output Current 5 10 5 10 5 10 mA FREQUENCY RESPONSE Slew Rate 1.4 1.4 1.4 V/ s Small Signal Bandwidth100 mV 10 VY, Z , 400 400 400 kHz V 10 V X VOLTAGE REFERENCE Accuracy V REF=
in „Wurzeloperation mit Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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AD538_analog_rechnen.pdf
100 6250 200 6500 V Y C T A T MIN to MAX 450 6750 350 6500 750 61000 V Output Voltage Swing R L 2 k –11 +11 –11 +11 –11 +11 V Output Current 5 10 5 10 5 10 mA FREQUENCY RESPONSE Slew Rate 1.4 1.4 1.4 V/ s Small Signal Bandwidth100 mV 10 VY, Z , 400 400 400 kHz V 10 V X VOLTAGE REFERENCE Accuracy V REF=
in „Beschaltung eines analogen Positionssensors“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD538_analog_rechnen.pdf
100 6250 200 6500 V Y C T A T MIN to MAX 450 6750 350 6500 750 61000 V Output Voltage Swing R L 2 k –11 +11 –11 +11 –11 +11 V Output Current 5 10 5 10 5 10 mA FREQUENCY RESPONSE Slew Rate 1.4 1.4 1.4 V/ s Small Signal Bandwidth100 mV 10 VY, Z , 400 400 400 kHz V 10 V X VOLTAGE REFERENCE Accuracy V REF=
in „Zu viel Rauschen bei OPV Schaltung“ · Analoge Elektronik und Schaltungstechnik ·
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ashx_prod_file.pdf
of OP1 is connected to the input to or speakers must be accommodated. Inside of theAPA2068, two separate amplifiers drive OUT+ OP2, which results in the output signals of with both am- plifiers with identical
in „Ic Apa 2068 Vorverstärkerausgang“ · Mikrocontroller und Digitale Elektronik ·
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TLE4945-2G_InfineonTechnologiesAG.pdf
14 26 — 3 6 mT OP Turn-OFF induction B RP 5 16 — 20 — 10 — 26 — 14 — 6 3 mT Hysteresis (BOPBRP BHY 2 6 20 40 28 52 1 5 mT Junction Temperature Tj= 85 °C Turn-ON induction B 6.5 17.5 10 20 13 26 — 3 6 mT OP Turn-OFF induction
in „Untersuchung defektes VW Türsteuergerät“ · Fahrzeugelektronik ·
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slau144i.pdf
Description 15:11 Extension word op-code. Op-codes 1800h to 1FFFh are extension words. Source Bits The four MSBs of the 20-bit source. Depending on the source addressing mode, these four MSBs may belong to an 19:16 immediate
in „Anfängerprogramm TimerA MSP430“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mci.h
. Simplified version */ #define GO_IDLE_STATE 0 /* GO_IDLE_STATE(MMC) or RESET(SD) */ #define SEND_OP_COND 1 /* SEND_OP_COND(MMC) or ACMD41(SD) */ #define ALL_SEND_CID 2 /* ALL SEND_CID */ #define SET_RELATIVE_ADDR 3 /* SET_RELATE_ADDR */ #define SET_ACMD_BUS_WIDTH 6 #define SELECT_CARD 7 /* SELECT/DESELECT_CARD
in „LPC2368 SD/MMC interface (not fat, yet)“ · µC & Digital Electronics ·
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Datei
adude-log.txt
..tiny/Programming_Tiny>/home/op/WORK/uC/Arduino_main/0IDE/GM_Tiny/hardware/tools/avrdude -C/home/op/WORK/uC/Arduino_main/0IDE/GM_Tiny/hardware/tools/avrdude.conf -v -v -v -v -pattiny2313 -cavrisp -P/dev/ttyACM0 -b19200 -Uflash:r:/home/op/geiger/tiny/Programming_Tiny/work/GMread_01.hex:i avrdude: Version 5.11, compiled on Sep 7 2011 at 19:34:16 Copyright (c) 2000-2005 Brian Dean, http://www.bdmicro.com/ Copyright (c) 2007-2009 Joerg Wunsch
in „Pollin Geigerzähler Bericht“ · Mikrocontroller und Digitale Elektronik ·
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What_s_all_this_error_budget_stuff_anyhow.pdf
so unhelpful. Things are much simpler now that people are mostly (but not entirely) designing with op amps. The best thing is that the output offset and dc gain and ac gain errors are largely orthogonal. An "operational" amplifier does perform, largely, an " operation" based on what task you ask it to
in „zwei Spannungen bei etwa 50 Volt vergleichen“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
cache.txt
Description : USB-Massenspeichergerät Device Path : \\?\usb#vid_14cd&pid_125d#125d20140310#{a5dcbf10-6530-11d2-901f-00c04fb951ed} Device ID : USB\VID_14CD&PID_125D\125D20140310 Hardware IDs : USB\VID_14CD&PID_125D&REV_0100 USB\VID_14CD&PID_125D Driver KeyName : {36fc9e60-c465-11cf-8056-444553540000}\0009 (GUID_DEVCLASS_USB
in „Bin ich bescheuert oder Windows (USB device driver)“ · Mikrocontroller und Digitale Elektronik ·
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LB-Mod_de.pdf
Längswiderstände..........................................................................................11 Der Abschlusswiderstand.................................................................................................12 Nacharbeiten................................................................
in „Wittig(welec) DSO W20xxA Hardware (Teil 2)“ · Mikrocontroller und Digitale Elektronik ·
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LB-Mod_de.pdf
Längswiderstände..........................................................................................11 Der Abschlusswiderstand.................................................................................................12 Nacharbeiten................................................................
in „Wittig(welec) DSO W20xxA Hardware (Teil 2)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mitsumi.txt
(USB) Device Path : \\?\usb#vid_03ee&pid_6901#5&212ac8fc&0&1#{a5dcbf10-6530-11d2-901f-00c04fb951ed} Device ID : USB\VID_03EE&PID_6901\5&212AC8FC&0&1 Driver KeyName : {36fc9e60-c465-11cf-8056-444553540000}\0006 (GUID_DEVCLASS_USB) Driver : C:\Windows\System32\drivers\USBSTOR.SYS
in „Erfahrungen mit alten Disketten gesucht“ · PC Hard- und Software ·
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AD7302.pdf
configured to update the DAC REFERENCE outputs. The simultaneous update mode allows simultaneous AMPLIFIER 11.7k 30k + CURRENT updating of both DAC outputs. The automatic update mode REFIN - DAC allows each DAC to be individually updated following a write I/V VOA/B 11.7k cycle. Figure 21 shows the internal logic
in „(S) AD7302BNZ DAC DIP20“ · Markt ·
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LT1638.pdf
RELATEDPARTS PART NUMBER DESCRIPTION COMMENTS LT1078/LT1079 Dual/Quad 55µA Max, Single Supply, Precision Op Amps Input/Output Common Mode Includes Ground, 70µV V OS(MAX) LT2078/LT2079 and 2.5µV/°C Drift (Max), 200kHz GBW, 0.07V/µs Slew Rate LT1178/LT1179 Dual/Quad 17µA Max, Single Supply, Precison Op Amps
in „OPAMP Differenzverstärker - max. Einganggsspannung?“ · Analoge Elektronik und Schaltungstechnik ·
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PIRuaa4713.pdf
supply 8 V+ Positive clamp voltage 9 ZCD Zero cross detector 10 NII Non-invert input sensor amplifier 11 VREF Sensor reference voltage 12 II Invert input sensor amplifier 13 OP OUT Output sensor amplifier 14 WCI Window comparator input 3/14 UAA4713 ELECTRICALCHARACTERISTICS (I = + 2mA to +S0mA;T amb = 25
in „Bewegungsmelder Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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Powertip_PE12864LRF-042-H-Q.pdf
REVISION Date Ver. Edi. Description Page Design by (mm / dd / yyyy) 10/07/2008 01 001 New Drawing 黃杰峰 11/11/2008 01 002 First Sample 黃杰峰 03/27/2009 01 003 MASS PRODUCTING 黃杰峰 Total:26pages PE12864LRF-042-H-Q (DK) Page2 SAMPLE Ver.01 SPEC Edi.003 Contents 1. SPECIFICATIONS 1.1 Features 1.2 Mechanical Specifications
in „POWERTIP LCD PE12864-003 Anschlussbelegung gesucht“ · Mikrocontroller und Digitale Elektronik ·
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obC16x.pdf
angesprochen werden, was mit den extended erstmal nicht geht. Der C167 stellt hie fur den Befehl EXTR op bereit, mit dem op Befehle auf die extended SFRs umgeleitet werden. Da sonst zuviel Overhead entsteht, wird dieses auch genutzt. Hier ur muss dem ESFR{ Namen ein e vorangestellt werden, DP1L wird also
in „Ein kleiner Oberoncompiler für die C16x-Familie“ · Projekte & Code ·
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lmc6001.pdf
are incorporated to maintain stability over a wider range of operating conditions than traditional op-amps. These features make the LMC6001 both easier to design with, and provide higher speed than products typically found in this low power class. COMPENSATING FOR INPUT CAPACITANCE It is quite common
in „Selbstbau Picoamperemeter.“ · Analoge Elektronik und Schaltungstechnik ·
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AD22057.pdf
Scaling 0.49 0.50 0.51 V/V Input Resistance Pin 7 to Pin 2 2.5 3.0 k IOSC Short-Circuit Output Current 7 11 25 mA T = T to T 5 27 mA A MIN MAX BW –3 dB –3 dB Bandwidth V O +1 V dc 20 30 kHz SR Slew Rate 0.2 V/ s N SD Noise Spectral Density f = 100 Hz to 10 kHz 0.2 V/ Hz PSR Power Supply Rejection V =5 V, V
in „Grundsätzliches zur Spannungs,Srommessung“ · Analoge Elektronik und Schaltungstechnik ·
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opa547.pdf
OPA547 OP 57 OP547 OP57 SBOS056D – JANUARY 2002 – OCTOBER 2003 High-Voltage, High-Current OPERATIONAL AMPLIFIER FEATURES DESCRIPTION ● WIDE SUPPLY RANGE The OPA547 is a low-cost, high-voltage/high-current opera
in „Simples digitalgesteuertes Netzteil nur mit D/A und Op-Amp?“ · Analoge Elektronik und Schaltungstechnik ·
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Sheet1_AmpV2.pdf
PIR640PIR6401 PIR6502PIR6501 17 GND GND 2.2K 2.2K +12V R2929 10µF PI1.5R2PIR2901 C2 PIC190 GND 10µF8 100nF L11L C0 PIC1902 PICC2121 PICC22 P I L 1 1 0P I L 1 1 0 1 PIR302 PIR6601PIR6602 PIC210nF PIC200nF 7µH R3R33 10K PIC520 PICOC40 3.3R COJ11 CC7 8 VREG C2020ND GND GND GND C5252 PI1nF1 PIC402 J11 PIC78PIC7802
in „Verstärker TAS5630“ · Analoge Elektronik und Schaltungstechnik ·
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ads830.pdf
resistor (R ) Setween the for the optimum interface configuration will depend on the output of the op amp and the input of the ADS830 will be beneficial in almost all interface configurations. This will de-couple the op amp’s output from the capacitive load and Op Amp avoid gain peaking, which can result
in „ads830 ad wandler“ · Mikrocontroller und Digitale Elektronik ·
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ads831.pdf
resistor (R ) Setween the for the optimum interface configuration will depend on the output of the op amp and the input of the ADS831 will be beneficial in almost all interface configurations. This will Op Amp de-couple the op amp’s output from the capacitive load and Bias V avoid gain peaking, which
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LST670.pdf
1) page 15 Flux2) page 15 IF = 10 mA IF= 10 mA IV (mcd) Φ V(mlm) LS T670-J1K2-1 super-red 4.50 ... 11.20 24 (typ.) Q65110A2170 LS T670-K1L2-1 7.10 ... 18.00 40 (typ.) Q65110A2171 LS T670-J1L2-1 4.50 ... 18.00 30 (typ.) Q65110A2172 LO T670-J1K2-24 orange 4.50 ... 11.20 24 (typ.) Q65110A2164 LO T670-K1L2
in „[V] LS T670 Rote SMD Leds“ · Markt ·
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INA114.pdf
0.5 ±2 ±5 nA vs Temperature ±8 pA/°C NOISE VOLTAGE, RTI G = 1000, S = 0 f = 10Hz 15 nV/√Hz f = 100Hz 11 nV/√Hz f = 1kHz 11 nV/√Hz f = 0.1Hz to 10Hz 0.4 Vp-p B Noise Current f=10Hz 0.4 pA/√Hz f=1kHz 0.2 pA/√Hz fB= 0.1Hz to 10Hz 18 pAp-p GAIN Gain Equation 1 + (50k /RG) V/V Range of Gain 1 10000 V/V Gain
in „Genaue Funktion eines Schaltungsteiles“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ina114.pdf
0.5 ±2 ±5 nA vs Temperature ±8 pA/°C NOISE VOLTAGE, RTI G = 1000, S = 0 f = 10Hz 15 nV/√Hz f = 100Hz 11 nV/√Hz f = 1kHz 11 nV/√Hz f = 0.1Hz to 10Hz 0.4 Vp-p B Noise Current f=10Hz 0.4 pA/√Hz f=1kHz 0.2 pA/√Hz fB= 0.1Hz to 10Hz 18 pAp-p GAIN Gain Equation 1 + (50k /RG) V/V Range of Gain 1 10000 V/V Gain
in „"Hallsonde für Oszilloskop" im Eigenbau?!“ · Analoge Elektronik und Schaltungstechnik ·
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W77E058Aj.pdf
Q7 19 A7 A7 3 A7 O7 19 AD7 8.2 K 9 RST GND 1 A8 25 A8 C1 P2.0 21 A8 OC A9 24 A9 C2 INT0 P2.1 22 A9 11 G A10 21 A10 12 P2.2 23 A10 A11 23 A11 13 INT1 P2.3 24 A11 74F373 A12 2 A12 14 T0 P2.4 25 A12 A13 26 A13 15 T1 P2.5 26 A13 A15 271 A14 P2.6 28 A15 A15 2 P1.0 P2.7 GND 20 CE 3 P1.1 RD 17 22 4 P1.2 WR
in „[V] 12St. 8051er- NUVOTON / WINBOND PLCC44 ( 2UARTS u. 4 clocks/machine cycle- 40MHz)“ · Markt ·
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PDF
NT56V661_2_0C0T-X8X16-891026.pdf
Truth Table (Part 1 of 3)(See note 1) Command Current A12, Action Notes State /CS /RAS /CAS /WE A13 A11-A0 Description L L L L OP Code Mode Register Set Set the Mode Register 2 L L L H X X Auto or Self RefresStart Auto or Self Refres2,3 L L H L BS X Precharge No Operation Row Activate the specified bank
in „Verständnisfrage SD-RAM“ · Mikrocontroller und Digitale Elektronik ·
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Spice_Models.pdf
disappear—a good thing, because they were confusing. 2. Select and delete the box. The proper outline for an op amp is a triangle. 3. Resize the part outline. A lot of op amps are drawn on a 0.4 by 0.4 grid. 4. Use the line tool to create the triangle outline of an op amp body. 5. Move the pins and labels to the
in „PSpice .cir-file einbinden“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM358_Messungen.pdf
12,04 kΩ Widerstand und somit einem Verstärkungsfaktor von 4,95 x. R Strom laut MM Shunt mA/Shunt mV Op-Ausgang OP/Shunt 10 Ω 129,00 mA 139,00 mV 1,08 Ω 680,00 mV 4,89 x 18 Ω 94,00 mA 98,00 mV 1,04 Ω 497,00 mV 5,07 x 23 Ω 76,70 mA 80,70 mV 1,05 Ω 402,00 mV 4,98 x 34 Ω 58,50 mA 59,60 mV 1,02 Ω 302,00 mV
in „Anomalien beim Strommessen mit LM358 und Shunt“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
7810dasm.c
*/ {JR,"%o" }, /* c7: 11oo oooo */ {JR,"%o" }, /* c8: 11oo oooo */ {JR,"%o" }, /* c9: 11oo oooo */ {JR,"%o" }, /* ca: 11oo oooo */ {JR,"%o" }, /* cb: 11oo oooo */ {JR,"%o" }, /* cc: 11oo oooo */ {JR,"%o" }, /* cd: 11oo oooo */ {JR,"%o" }, /* ce: 11oo oooo */ {JR,"%o" }, /* cf: 11oo oooo */ {JR,"%o" }, /* d0: 11oo oooo */ {JR,"%o" }, /* d1: 11oo oooo */ {JR,"%o" }, /* d2: 11oo oooo */ {JR,"%o" }, /* d3: 11oo oooo */ {JR,"%o" }, /* d4: 11oo oooo
in „suche Disassembler für NEC µPD78C10 (87AD Series)“ · Mikrocontroller und Digitale Elektronik ·
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ElektronikBauteile.pdf
WSL 10SK 0,64 € 2,56 € 11 23 Elektrolytkondensator, 6,3x11mm, RM 2,5mm RAD 100/25 0,05 € 1,17 € 12 5 DIL-GLEICHRICHTER B500C1000DIP 0,12 € 0,60 € 13 23 Keramik-Kondensator 100N KERKO 100N 0,07 € 1,66 € 14 1 D-SUB-Buchse, 25-polig
in „[V] - Elektroniksammlung“ · Markt ·
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PDF
AD694AR.pdf
transistor is tied to the system logic supply through a 20 k pull-up resistor. The alarm is off in normal op- eration and the voltage at the alarm pin is high. In the event that Figure 11. Buffer Amplifier V OS Adjustment the wire from I OUT (Pin 11) is opened, or if a large input over- drive forces IOUT too
in „4-20mA für Durchlussregler erzeugen - AD694“ · Mikrocontroller und Digitale Elektronik ·
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xr20m1170.pdf
X Scratchpad Register (SPR) 1 0 Scratchpad Register (SPR) 1 1 Trigger Level Register (TLR) MCR[3]: OP2# OP2# is not available as an output on the M1170 but can be controlled in internal loopback mode. • Logic 0 = OP2# set HIGH(default). • Logic 1 = OP2# set LOW. MCR[4]: Internal Loopback Enable • Logic
in „UART XR20M1170: Register LCR läßt sich nicht ändern.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TI_ads809.pdf
See Table on Page 5 10 O OVR Over-Range Indicator 33 SEL1 Reference Select 1: See Table on Page 5 11 O DV Data Valid Pulse: HI = Data Valid 34 VREF Internal Reference Voltage 12 NC No Connection 35 GND Ground 13 NC No Connection 36 GND Ground 14 O D11 Data Bit 11, (MSB) 37 GND Ground 15 O D10 Data Bit
in „Projekt Signal-Auswertung mit High-Speed-ADC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
obC16x.pdf
. . . . . . . . . . 10 1.3.2 Aliasnamen fur SFRs . . . . . . . . . . . . . . . . . . . . . . . . . 11 1.4 Prozeduren . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 11 1.4.1 Kurze Proceduren . . . . . . . . . . . . . . . . . . . . . . . . . . . 12 1.4.2 Lange Prozeduren . . . . .
in „Ein kleiner Oberoncompiler für die C16x-Familie“ · Projekte & Code ·
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Datei
8032.txt
R2,#HIGH ROMADR-1 MOV R0,#LOW ROMADR-1;LOAD PROM ADDRESS ACALL PG1+3 INC R6 DB 0E5H ;MOV A DIRECT OP CODE DB 0CBH ;ADDRESS OF R2CAP HIGH ACALL PG1+3 DB 0E5H ;MOV A, DIRECT OP CODE DB 0CAH ;R2CAP LOW MOV R6,#3 MOV R1,#LOW MEMTOP-1 MOV R3,#HIGH MEMTOP ACALL PG1+3 ;SAVE MEMTOP SJMP PGR ; CIPROG: MOV DPTR
in „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Lab-PSU.pdf
1k 1 2 N PB7(XTAL2/TOSC2) PD0(RXD) 3 G C27 C29 PD1(TXD) 4 R2 IC7LED A Encoder 8 PD2(INT0) 5 X3-1 IC11 GND PD3(INT1) 6 X3-2 D 100n 100n PD4(XCK/T0) X3-3 Vdd CH0 N 7 VCC PD5(T1) 11 X3-4 Vref AGND G PD6(AIN0) 12 CS3 X3-5 A C28 C30 100n 100n 100n PD7(AIN1) 13 LDAC2 CLK CH1 AGND Dout C1 C3 C4 PB0(ICP) 14
in „Labornetzteil mit getakteter Vorregelung - Überschwinger“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
3971fd.pdf
3.3, LT3971-5 TOP VIEW TOP VIEW BD 1 10 SYNC BD 1 10 SYNC BOOST 2 9 PG BOOST 2 9 PG SW 3 11 8 RT SW 3 11 8 RT GND VIN 4 GND 7 SS VIN 4 7 SS EN 5 6 VOUT EN 5 6 VOUT MSE PACKAGE 10-LEAD PLASTIC MSOP DD PACKAGE θJA= 45°C,JC = 10°C/W 10-LEAD (3mm × 3mm) PLASTIC DFN EXPOSED PAD (PIN 11) IS GND,
in „[V] LT3971IDD-5PBF-ND“ · Markt ·
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schematic5.pdf
FDRE Q 10 10 D line_in_l_reg[10] R hphone_r_reg[8] C C FDRE CE CE Q 10 Q 8 hphone_l_freeze_100_reg[11] 10 D 8 D R R C CE 11 FDRE FDRE 11 Q D line_in_l_reg[11] hphone_r_reg[9] R C C FDRE CE 11 CE 11 Q Q 9 hphone_l_freeze_100_reg[12] D 9 D R R C CE 12 FDRE FDRE 12 Q D line_in_l_reg[12] hphone_r_reg[10]
in „Genesys 2 (Xilinx Kintex 7): Audio-Codec Implementierung und Filteranbindung“ · FPGA, VHDL & Co. ·
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PDF
libble-de.pdf
the in- structions nance or repair when operating. work. Assembly 10 EC Declaration of Conformity 11 Danger – objects Danger – rotating Symbols on the machine 11 may be thrown blades. Keep Symbols in the operating manual out at high speed hands and feet out Operating times 11 when motor is of openings
in „Einschalter beim Häcksler defekt?“ · Analoge Elektronik und Schaltungstechnik ·
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3003E.pdf
f b VD22 c f b VD12 c f b AD32 c f b AD22 c f b AD12 c f b d g d g d g d g d g d g VE31 e VE21 e VE11 e AE31 e AE21 e AE11 e VF39 f e d c VF29 f e d c VF19 f e d c AF39 f e d c AF29 f e d c AF19 f e d c VG130 g VG120 g VG10 g AG130 g AG120 g AG10 g VREF +IS +8V VDP53 dp VDP52 dp VDP51 dp R25 R26 ADP53 dp ADP52 dp ADP51 dp dp dp dp dp dp dp 180 180 DS1 DS2 DS3 DS4 DS5 DS6 R11 AMBERCA AMBERCA AMBERCA VDP2 ADP3 AMBERCA AMBERCA AMBERCA R37 10k 10k C33 R12 471 3.9k B VR2 B +5V C15 C17 1K +5V R13 +5V C16 104 R8 C18 4.7K 7 330 104 104 104 OP07C 2 D3 6 1 40 R33 R14 3 IC7 V+ OSC1
in „Suche Schaltplan Netzgerät QJ3003E“ · Analoge Elektronik und Schaltungstechnik ·