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PDF
LMGL2.pdf
5 4 3 2 1 10-32VDC F2 DC Uout 28V/3A R7 0.1 5W D2 D3 UG4D UG4D D D D1 F1 T1 1 3 - + U2 250V/300mA ~ 230VAC 3 +VIN VO 6 2 5 2 -VIN VCM 50/1/12 FL401 5 C2 R3 1 REF GND 6800u 1M 8 RG 63V RG R8 GND R6 47k 7 V+ 39k 4 V- INA122 R9 C R1 10k C 18k U1 LM341/TO DC 1 3 IN OUT S1 U4A 2 C1 C3 17 RA0 RB0
in „Problem mit Strommessung Ina122“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Phycomp.pdf
ofarectangular blockoflow-dielectric design requirements. All terminations ceramicmaterial andis fabricated ina are lead-free. Packing materials can Supplied in tape on reel. water-based non-toxic process. The be recycled. antenna is capable of providing good APPLICATIONS connectivity using near 50 W Telecommunications
in „50Ohm Impedanz PCB?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Bauteilliste3.txt
Trans.NPN 4A/80V 0,10.- 25Stk. BD442 Trans.PNP 4A/80V 0,10.- 50Stk. BDX34C Trans. Darl.PNP 10A/100V 0,10.- 250Stk. BUZ74 Mosfet N TO220 500V/2A/4Ohm 0,10.- 1000Stk.BC546 Trans.NPN TO92 65V/100mA 0,02.- 8Stk. 80C535 MC Siemens 8Bit inkl.68pol.THT Fassung 1,50.- 9Stk. 80535 MC Siemens 8Bit inkl.68pol.THT Fassung
in „[V] Bauteile THT“ · Markt ·
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Datei
Bauteilliste4.txt
Trans.NPN 4A/80V 0,10.- 25Stk. BD442 Trans.PNP 4A/80V 0,10.- 50Stk. BDX34C Trans. Darl.PNP 10A/100V 0,10.- 250Stk. BUZ74 Mosfet N TO220 500V/2A/4Ohm 0,10.- 200Stk. BC546 Trans.NPN TO92 65V/100mA 0,02.- 9Stk. 80535 MC Siemens 8Bit inkl.68pol.THT Fassung 1,50.- 200Stk. MC14521 C-MOS 24Stage Div./Osz. DIP16 0.10
in „[V] Bauteile THT“ · Markt ·
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PDF
LM393.pdf
View Pin Functions PIN NO. I/O DESCRIPTION NAME PDIP/SOIC/ TO-99 DSBGA OUTA 1 A1 O Output, Channel A -INA 2 B1 I Inverting Input, Channel A +INA 3 C1 I Noninverting Input, Channel A GND 4 C2 P Ground +INB 5 C3 I Noninverting Input, Channel B -INB 6 B3 I Inverting Input, Channel B OUTB 7 A3 O Output, Channel
in „Schaltung angucka“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM393.pdf
View Pin Functions PIN NO. I/O DESCRIPTION NAME PDIP/SOIC/ TO-99 DSBGA OUTA 1 A1 O Output, Channel A -INA 2 B1 I Inverting Input, Channel A +INA 3 C1 I Noninverting Input, Channel A GND 4 C2 P Ground +INB 5 C3 I Noninverting Input, Channel B -INB 6 B3 I Inverting Input, Channel B OUTB 7 A3 O Output, Channel
in „Acc-Sensor -> Filter/OPV -> ADC(µC) -> PC -> Filter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM393-N.pdf
View Pin Functions PIN NO. I/O DESCRIPTION NAME PDIP/SOIC/ TO-99 DSBGA OUTA 1 A1 O Output, Channel A -INA 2 B1 I Inverting Input, Channel A +INA 3 C1 I Noninverting Input, Channel A GND 4 C2 P Ground +INB 5 C3 I Noninverting Input, Channel B -INB 6 B3 I Inverting Input, Channel B OUTB 7 A3 O Output, Channel
in „LM393 Komparatorschaltung gescheitert“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lm393-n.pdf
View Pin Functions PIN NO. I/O DESCRIPTION NAME PDIP/SOIC/ TO-99 DSBGA OUTA 1 A1 O Output, Channel A -INA 2 B1 I Inverting Input, Channel A +INA 3 C1 I Noninverting Input, Channel A GND 4 C2 P Ground +INB 5 C3 I Noninverting Input, Channel B -INB 6 B3 I Inverting Input, Channel B OUTB 7 A3 O Output, Channel
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PDF
RCV420.pdf
....................... 40mA –In 1 16 V+ Input Current Momentary, 0.1s ........................... 250mA, 1% Duty Cycle Common-Mode Input Voltage, Continuous ....................................... ±40V C T 2 15 Rcv B Lead Temperature (soldering, 10s) ............................................... +
in „Frage zu 4-20mA Receiver RCV420“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Values.txt
1 IRGBC40 1 IRFU5305 1 IRFD9110 1 IRF7416 1 IRF740 1 IRF540 - Dein Transistor 1 IR2125 1 IR2109 1 INA128P 1 INA105P 1 IN 1 In 1 IDE 1 ICL7660 1 I²C 1 HTB50 1 HE751 1 HD-F101 1 Hauptschalter Robot 1 gruen 1 GOLDCAP 1 Gnd 1 GMSTBA2 1 GLEICHRICHRER 1 glb 1 G6RS 1 Funkt.-AKTIV 1 Funkt.-aktiv. 1 FT30A 1
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
mcp6004.pdf
1 5 VSS PDIP, SOIC, TSSOP VDD 2 + - V IN + V + V – VOUTA 1 14 VOUTD IN 3 4 IN A D MCP6001 V OUT V INA 2 - + + - 13 VIND MCP6001U V + 12 V + - INA 3 IND SOT-23-5 VDD 4 11 VSS V SS VIN 1 + 5 VDD V INB 5 10 VINC V SS 2 - V INB 6 B+ C - 9 VINC R1 VIN 3 4 VOUT V V R 2 OUTB 7 8 OUTC R 1 Gain = 1 + -- V R
in „Nichtinvertierender Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Current_Ref._100uA.pdf
1 1.005 Temperature Drift 25 ppm/°C Impedance (output) 2V to 40V 40 100 M Nonlinearity I = 0 A to 250 A 0.05 % Input Voltage 1.4 V Output Compliance Voltage See Curves Frequency Response (–3dB) Transfer 5 MHz TEMPERATURE RANGE Specification –25 +85 °C Operating –40 +85 °C Storage –40 +125 °C PIN CONFIGURATION
in „Stromreferenz Beschaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HDSP-2000.pdf
IComponents, MO Page MillRoad. Palo Alto.Calllornla 94304 In Europe. Hewlett-Packard GmbH. P 0. Box 250. Herrenberger Str 110. 0-7030 Boeblingen. West Germany In Japan, YHP. 32921, Takaido-1 Iigashi, Suginami-Ku, Tokyo. 168 5953-0428 (3/80 ) TENTATIVE DATA JANUARY 1980 h Features OPERATION GUARANTEED
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PDF
DS_L6205N.pdf
VBOOT VCP CHARGE PUMP OVER OCD A CURRENT DETECTION OUT1A OUT2A THERMAL 10V 10V PROTECTION ENA GATE INA LOGIC SENSEA INA VOLTAGE 10V REGULATOR 5V BRIDGE A CURRENT OCD B DETECTION VSB OUT1B GATE OUT2B ENB LOGIC IN1 SENSEB B INB BRIDGE B D99IN1091A April 2002 1/18 L6205 ABSOLUTE MAXIMUM RATINGS Symbol Parameter
in „1. Schaltung Mosfet Treiber“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ProdManualIndGradeSDv1.0.pdf
L≤ 100 pF (10 cards) Clock Fall Time THL 10 ns C L≤ 100 pF (7 cards) Clock Low Time tWL 50 ns C L≤ 250 pF (21 cards) Clock High Time tWH 50 ns C L≤ 250 pF (21 cards) Clock Rise Time TLH 50 ns C L≤ 250 pF (21 cards) Clock Fall Time THL 50 ns C L≤ 250 pF (21 cards) 3-10 SanDisk Industrial Grade SD Product
in „Eigenbau Mp3 Player“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP6562.pdf
Window Comparators SOT-23-5, SC70-5 SOIC, MSOP OUT 1 5 V 1 8 V • Multi-vibrators DD OUTA DD VSS 2 + - -INA 2 -+ 7 OUTB +IN 3 4 -IN + - Design Aids +INA 3 6 -INB V SS 4 5 +INB • Microchip Advanced Part Selector (MAPS) • Analog Demonstration and Evaluation Boards MCP6561R MCP6564 • Application Notes SOT-23-5 SOIC, TSSOP OUT 1 5 V OUTA 1 14 OUTD Related Devices SS V DD 2 + - -INA 2 - + + - 13 -IND • Open-Drain Output: MCP6566/6R/6U/7/9 +IN 3 4 -IN +INA 3 +IND 12 VDD 4 11 VSS Typical Application +INC +INB 5 10 V V DD MCP6561U -INB 6 - + + - 9 -INC IN SOT-23-5 OUTB 7 8 OUTC V
in „Schmitttrigger mit MCP6562 unklare Abweichung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Schem3.pdf
? b Vin Feedb PVCC RA5/AN4 2 D3 QC 11 R? 4 c a F 2 L? 6 D4 QD 10 R? 2 d f b G? O Out DG1 9 R? 1 g B250C3700 D? N D 33uH J? V5VCC DG2 RC3/SCK1/SCL1 RB2/INT2 BCD1.1 LT1 3 QE 15 R? 9 e + F-153 O G J? DG3 RC4/SDI1/SDA1 RB3/INT3 BCD1.2 4 LT QF 14 R? 10 f e d c A J? D? J? 1 8 DG4 RC5/SDO1 RB4/KBI0 V5VCC 5
in „2 versch. Spannungen messen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
OPA128KM.pdf
± 10pA e ) KM a 10 ( l t 1pA V e e u o C - a 100 o 5 B m m 10 C 0 1 0 5 10 15 20 0 50 100 150 200 250 300 350 Supply Voltage (CC) Additional Power Dissipation (mW) INPUT VOLTAGE NOISE SPECTRAL DENSITY FULL-POWER OUTPUT vs FREQUENCY 1k 30 z ) H - V p 20 ( ( i g s 100 l e V D t g t 10 l u V O 10 0 1 10
in „OPA 128 KM - veraltet?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
kicad_8450_dcm_liste_neu_v3.pdf
voltage regulator TPS563200 4.5 to 17V input, 3A synchronous step-down voltage regulator TPS60500DGS 250mA Step-Down Charge Pump Regulator, Adjustable TPS60501DGS 250mA Step-Down Charge Pump Regulator, 3.3V TPS60502DGS 250mA Step-Down Charge Pump Regulator, 1.8V TPS60503DGS 250mA Step-Down Charge Pump
in „KiCAD Eeschema, Bibliotheksdokumentation *.dcm als PDF-Datei“ · Platinen ·
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PDF
ZN427.pdf
output leakage - - 2 A V O 2.4V Input clamp diode voltage - - -1.5 V Read input to data output - - 250 ns See Fig.9 Enable/disable delay time tRD - 180 250 ns Start pulse width tWR 250 160 - ns See Fig.9 WR to BUSY propagation delay t - - 250 ns Clock pulse width BD 500 - - ns Maximum clock frequency
in „A/D Wandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
zn427E.pdf
output leakage - - 2 A V O 2.4V Input clamp diode voltage - - -1.5 V Read input to data output - - 250 ns See Fig.9 Enable/disable delay time tRD - 180 250 ns Start pulse width tWR 250 160 - ns See Fig.9 WR to BUSY propagation delay t - - 250 ns Clock pulse width BD 500 - - ns Maximum clock frequency
in „Austauschtyp gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tps63020.pdf
12.0 Q1 TPS63020DSJRG4 VSON DSJ 14 3000 330.0 12.4 3.3 4.3 1.1 8.0 12.0 Q1 TPS63020DSJT VSON DSJ 14 250 180.0 12.5 3.3 4.3 1.1 8.0 12.0 Q1 TPS63020DSJT VSON DSJ 14 250 180.0 12.4 3.3 4.3 1.1 8.0 12.0 Q1 TPS63021DSJR VSON DSJ 14 3000 330.0 12.4 3.3 4.3 1.1 8.0 12.0 Q1 TPS63021DSJR VSON DSJ 14 3000 330.0
in „ESP32-H2 will nicht schlafen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
timer.c
@gmx.de */ #define RELAY_OFF 0 #define RELAY_ON 0x10 #define INPUTS 0xe0 #include <io.h> #include <ina90.h> #include <interrupt.h> #include <signal.h> /* abcdefg inv rot hex * 0: 1111110 0000001 1000000 0x40 * 1: 0110000 1001111 1111001 0x79 * 2: 1101101 0010010 0100100 0x24 * 3: 1111001 0000110 0110000
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Datei
timer.c
@gmx.de */ #define RELAY_OFF 0 #define RELAY_ON 0x10 #define INPUTS 0xe0 #include <io.h> #include <ina90.h> #include <interrupt.h> #include <signal.h> /* abcdefg inv rot hex * 0: 1111110 0000001 1000000 0x40 * 1: 0110000 1001111 1111001 0x79 * 2: 1101101 0010010 0100100 0x24 * 3: 1111001 0000110 0110000
in „Relais mag nicht schalten **HELP**“ · Mikrocontroller und Digitale Elektronik ·
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PDF
isow7841.pdf
ISOW7843, ISOW7844 www.ti.com SLLSEY2G – MARCH 2017 – REVISED AUGUST 2021 VCC 1 16 V ISO GND1 2 15GND2 INA 3 14 OUTA N I INB 4 T 13 OUTB L INC 5 O 12 I OUTC OUTD 6 11 IND NC 7 10 SEL GND1 8 9 GND2 Figure 6-2. ISOW7841 DWE Package 16-Pin SOIC-WB Top View VCC 1 16 V ISO GND1 2 15GND2 INA 3 14 OUTA N I INB
in „Problem mit der SPI Datenübertragung zwischen einem Arduino Portenta H7 und einem ADS8684 (ADC)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
5521f.pdf
RF Frequency vs RF Frequency 10 26 13.5 LS: R1 = R7 = 110Ω LS 13.3 HS: R1 = R7 = 121Ω 8 IIP3 24 f = 250MHz 13.1 IF 6 HS 22 B12.9 LS: R1 = R7 = 110Ω P (12.7 B 4 HS: R1 = R7 = 121Ω 20 3 R ( fIF 250MHz B G12.5 HS G m F 2 18 ) S12.3 O LS 0 GC LS 16 N12.1 HS 11.9 –2 14 11.7 –4 12 11.5 1750 1850 1950 2050 2150
in „Anpassung Differenztialeingang LT5521“ · HF, Funk und Felder ·
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PDF
R2_MMC1.pdf
100 pF (10 cards) Clock Low Time tWL 50 ns CL≤ 250 pF (30 cards) Clock High Time tWH 50 ns CL≤ 250 pF (30 cards) Clock Rise Time t 50 ns C ≤ 250 pF TLH (30 cards) Clock Fall Time tTHL 50 ns CL≤ 250 pF (30 cards) Inputs CMD, DAT (referenced to CLK) Input
in „Multi Media Card (MMC)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
R2_MMC1.pdf
100 pF (10 cards) Clock Low Time tWL 50 ns CL≤ 250 pF (30 cards) Clock High Time tWH 50 ns CL≤ 250 pF (30 cards) Clock Rise Time t 50 ns C ≤ 250 pF TLH (30 cards) Clock Fall Time tTHL 50 ns CL≤ 250 pF (30 cards) Inputs CMD, DAT (referenced to CLK) Input
in „(ANSI-)C-Code für MMC-Kommunikation?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
r2_mmc1.pdf
100 pF (10 cards) Clock Low Time tWL 50 ns CL≤ 250 pF (30 cards) Clock High Time tWH 50 ns CL≤ 250 pF (30 cards) Clock Rise Time t 50 ns C ≤ 250 pF TLH (30 cards) Clock Fall Time tTHL 50 ns CL≤ 250 pF (30 cards) Inputs CMD, DAT (referenced to CLK) Input
in „suche infos über Multimediacard“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SanDisk_MMC_2BRS-MMC_PM_1.0.pdf
CL< 100 pF (10 cards) Clock Low Time tWL 50 --- ns CL< 250 pF (30 cards) Clock High Time tWH 50 --- ns CL< 250 pF (30 cards) Clock Rise Time TLH --- 50 ns CL< 250 pF (30 cards) Clock Fall Time THL --- 50 ns CL< 250 pF (30 cards) Inputs CMD, DAT – referenced
in „HDD und MMC Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1014.pdf
LT1014DN LT1013IN8 LT1014IN ORDER PART TOP VIEW ORDER PART TOP VIEW NUMBER OUTPUT A 16 OUTPUT D NUMBER +INA 1 – 8 –INA –IN A2 15 –IN D V– 2 + 7 OUTA LT1013DS8 +IN A3 14 +IN D LT1014DS +INB 3 + 6 V+ V+ 4 13 V– – LT1013IS8 +IN B5 12 +IN C LT1014IS –INB4 5 OUTB –IN B6 11 –IN C SO PACKAGE PART MARKING PART MARKING
in „Unterschied beim LT1014 ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Devices.txt
C-EU102-054X133 3 C-EU025-050X050 3 CAP-5 3 C7.5/3 3 C2.5/6 3 BZX90 3 BZD23 3 BSS97 3 BSS84 3 BLITZ_250WS 3 BF245 3 BD243 3 BC556 3 BC327_SMD 3 BC327-25 3 BAT19 3 BAS40-04 3 BAS15 3 ATMEGA644A 3 AT90S8515P 3 AT90S4433P 3 AT8C51SND1A-PLCC84 3 AD1857 3 AB9V 3 9450-1 3 93LC46SM 3 90G-2 3 87758-1016 3 78L05Z
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
Siemens_B4110.pdf
% v. MW + 0,9° Cl Max. Übertast: 2,4 A dauernd, 3A < 1 Minute Übertastschutz: durch Sicherung2 A I250 V flink(Sicherungseinsatz Meßbereich Anzeigebereich Auflösung Fehlergrenzen DIN 41660 - F2), Sichutzdklden u --50...+300° C ' - 273,1 ... +299,goC O,1°C hi.Die max. Meßkreisspannung dar! 250 V nicht
in „Reparaturversuch: Norma Unilap 701 X“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Siemens_B4110_TOC.pdf
% v. MW + 0,9° Cl Max. Übertast: 2,4 A dauernd, 3A < 1 Minute Übertastschutz: durch Sicherung2 A I250 V flink(Sicherungseinsatz Meßbereich Anzeigebereich Auflösung Fehlergrenzen DIN 41660 - F2), Sichutzdklden u --50...+300° C ' - 273,1 ... +299,goC O,1°C hi.Die max. Meßkreisspannung dar! 250 V nicht
in „Reparaturversuch: Norma Unilap 701 X“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX1700-MAX1701.pdf
CLK/SEL = GND 250 600 GAIN BLOCK (MAX1701) AIN Reference Voltage AO = 20µA 1.23 1.27 V Transconductance 10µA < AO < 100µA 5 16 mmho POWER-GOOD (MAX1701) Internal Trip Level Rising OUT, FB < 0.1V 2.92 3.03 V External
in „5V Spannung aus Lipo?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADS1211.pdf
19.0 analog input voltage range. For example, when the converter 100 26.2 18.0 18.0 18.0 18.0 18.0 250 65.5 15.0 15.0 15.0 15.0 15.0 is configured with a 2.5V reference and placed in a gain 500 131 12.5 12.5 12.5 12.5 12.5 setting of 2, the input voltage span is 2.5V. 1000 262 10.0 10.5 10.0 10.0 10.0
in „Hardware SPI vs. BIT BANGING AD Wandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hitachi_hb28b128mm2.pdf
— — stby— — — — — — CMD12 — — — — — traprg — — — CMD13 — — — stbytrandatrcv prg dis — CMD15 — — — ina ina inaina ina ina — Class1 CMD11 — — — — data— — — — — Class2 CMD16 — — — — tran— — — — — CMD17 — — — — data— — — — — CMD18 — — — — data— — — — — CMD 23 — — — — tran— — — — — Class3 CMD20 — — — — rcv
in „0x40 und 0x95 in SD/MMC-Karte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hitachi_hb28b128mm2.pdf
— — stby— — — — — — CMD12 — — — — — traprg — — — CMD13 — — — stbytrandatrcv prg dis — CMD15 — — — ina ina inaina ina ina — Class1 CMD11 — — — — data— — — — — Class2 CMD16 — — — — tran— — — — — CMD17 — — — — data— — — — — CMD18 — — — — data— — — — — CMD 23 — — — — tran— — — — — Class3 CMD20 — — — — rcv
in „MMC oder SD card connector zum 8515“ · Projekte & Code ·
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PDF
hitachi_hb28b128mm2.pdf
— — stby— — — — — — CMD12 — — — — — traprg — — — CMD13 — — — stbytrandatrcv prg dis — CMD15 — — — ina ina inaina ina ina — Class1 CMD11 — — — — data— — — — — Class2 CMD16 — — — — tran— — — — — CMD17 — — — — data— — — — — CMD18 — — — — data— — — — — CMD 23 — — — — tran— — — — — Class3 CMD20 — — — — rcv
in „MMC/SD SPI Mode Multi Block Write“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDA8375.pdf
characteristics of the TDA8374 for 4.4 MHz standard. Table 58 Explanation to Fig.29 A B C D DESCRIPTION 50 100 250 500 de-emphasis pin 55 [mV (RMS)] 5 10 25 50 FM swing (kHz) 50 100 250 500 AVL input [mV (RMS)] 100 200 500 1000 external input [mV (RMS)] Table 59 Explanation to Fig.30 A B C D DESCRIPTION 100 200 250 1000 de-emphasis pin 55 [mV (RMS)] 10 20 25 100 FM swing (kHz) 50 100 125 500 AVL input [mV (RMS)] 100 200 250 1000 external input [mV (RMS)] 1997 Jul 01 55 Philips Semiconductors Preliminary specification
in „PAL-Röhren TV auf NTSC umbauen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SD_Physical_specs.pdf
Capacity SD Memory Card indicates R2W_FACTOR as a fixed value. Maximum length of busy is defined as 250 ms for all write operations. The host should use 250 ms timeout (minimum) for single and multiple write operations rather than using R2W_FACTOR. 4.6.2.3 Erase If the card supports parameters for erase
in „SD-MMC-Card im SPI oder MMC Mode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Simplified_Physical_Layer_Spec.pdf
Capacity SD Memory Card indicates R2W_FACTOR as a fixed value. Maximum length of busy is defined as 250 ms for all write operations. The host should use 250 ms timeout (minimum) for single and multiple write operations rather than using R2W_FACTOR. 4.6.2.3 Erase If the card supports parameters for erase
in „SD Karte im Spi Modus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SD_CARD_Simplified_Physical_Layer_Spec.pdf
Capacity SD Memory Card indicates R2W_FACTOR as a fixed value. Maximum length of busy is defined as 250 ms for all write operations. The host should use 250 ms timeout (minimum) for single and multiple write operations rather than using R2W_FACTOR. 4.6.2.3 Erase If the card supports parameters for erase
in „SD Karte und SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Simplified_Physical_Layer_Spec.pdf
Capacity SD Memory Card indicates R2W_FACTOR as a fixed value. Maximum length of busy is defined as 250 ms for all write operations. The host should use 250 ms timeout (minimum) for single and multiple write operations rather than using R2W_FACTOR. 4.6.2.3 Erase If the card supports parameters for erase
in „Lahme 2GB SD Karte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
L6207_AN.pdf
PROGCL A OVER OCD OCD CURRENT A A DETECTION OUT1 A OUT2 A THERMAL 10V 10V PROTECTION ENA GATE LOGIC INA SENSE A INA VOLTAGE 10V REGULATOR 5V BRIDGE A OCDB OVER OCDB CURRENT DETECTION V SB PROGCL B OUT1 B GATE OUT2 B ENB LOGIC SENSE B INB INB BRIDGE B D99IN1088A Figure 3. L6207 block diagram. VBOOT VBOOT
in „Schrittmotor mit L6207“ · Mikrocontroller und Digitale Elektronik ·
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PDF
en.CD00004482.pdf
PROGCL A OVER OCD OCD CURRENT A A DETECTION OUT1 A OUT2 A THERMAL 10V 10V PROTECTION ENA GATE LOGIC INA SENSE A INA VOLTAGE 10V REGULATOR 5V BRIDGE A OCDB OVER OCDB CURRENT DETECTION V SB PROGCL B OUT1 B GATE OUT2 B ENB LOGIC SENSE B INB INB BRIDGE B D99IN1088A Figure 3. L6207 block diagram. VBOOT VBOOT
in „Treiberstufe fuer Faulhaber Schrittmotor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
opa128lm.pdf
± 10pA e ) KM a 10 ( l t 1pA V e e u o C - a 100 o 5 B m m 10 C 0 1 0 5 10 15 20 0 50 100 150 200 250 300 350 Supply Voltage (±CC) Additional Power Dissipation (mW) INPUT VOLTAGE NOISE SPECTRAL DENSITY FULL-POWER OUTPUT vs FREQUENCY 1k 30 z ) H - V p 20 ( ( i g n 100 l e V D t g t 10 l u V O 10 0 1
in „Verkaufe 15 x OPA128LM“ · Markt ·
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Datei
Configuration.h
MKS_Base_DKU001327 * 20 : Pt100 with circuit in the Ultimainboard V2.x with mainboard ADC reference voltage = INA826 amplifier-board supply voltage. * NOTES: (1) Must use an ADC input with no pullup. (2) Some INA826 amplifiers are unreliable at 3.3V so consider using sensor 147, 110, or 21. * 21 : Pt100 with circuit
in „Ender3 Z-Achse fährt mit Marlin nur nach oben“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
CD4514BC.PDF
5V 400 800 ns D C Delay Times VDD = 10V 150 300 ns VDD = 15V 100 200 ns tSU Setup Time VDD = 5V 125 250 ns V = 10V 50 100 ns DD VDD = 15V 38 75 ns tWH Strobe Pulse Width VDD = 5V 175 350 ns VDD = 10V 50 100 ns VDD = 15V 38 75 ns C Power Dissipation Capacitance Per Package (Note 5) 150 pF PD C IN Input
in „Adressierung Porterweiterung mit IC 4514“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IST_TSic_20x30x_DE_V4.1.pdf
58 0x000 0.000 10% V+ (0.5V) e l n A f e -10 14 0x199 0.200 26% V+ (1.3V) . o e e s i 0 32 0x200 0.250 30% V+ (1.5V) e e i e u c 25 77 0x2FF 0.375 40% V+ (2.0V) n w s s laen 60 140 0x465 0.550 54% V+ (2.7V) e b h n te . 125 257 0x6FE 0.875 80% V+ (4.0V) t aD l 2 i m a 150 302 0x7FF 1.000 90% V+ (4.5V
in „TSIC 206 auswerten für Anfänger“ · Mikrocontroller und Digitale Elektronik ·