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PDF
HCPL-263.pdf
than 500 mV 2 0 Reverse Input Voltage Each Channel VR 5.0 V , Power Dissipation Single Channel PI 100 mW H C Dual Channel (Each Channel) 45 L DETECTOR 2 1 Supply Voltage VCC 7.0 V (1 minute max) D Output Current Single Channel IO 50 mA a Dual Channel (Each Channel) 50 - h Output Voltage Each Channel
in „Logic Gate Optocoupler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
A500_6N137.pdf
than 500 mV 2 0 Reverse Input Voltage Each Channel VR 5.0 V , Power Dissipation Single Channel PI 100 mW H C Dual Channel (Each Channel) 45 L DETECTOR 2 1 Supply Voltage VCC 7.0 V (1 minute max) D Output Current Single Channel IO 50 mA a Dual Channel (Each Channel) 50 - h Output Voltage Each Channel
in „Optokoppler Verstärkung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TLC-Electronic.pdf
4.0 0.90 0.010 0.040 0.055 TRA400 4.00 8.00 16 40 20.0 3.0 1.35 0.010 0.030 0.045 TRA500 5.0 10.0 16 100 25.0 5.0 2.6 0.009 0.027 0.033 TRA600 6.0 12.0 16 100 30.0 7.0 2.8 0.007 0.021 0.031 TRA700 7.0 14.0 16 100 35.0 8.0 3.0 0.006 0.015 0.020 8.0 16.0 16 100 40.0 9.0 3.0 0.004 0.013 0.018 TRA800 TRA900 9.0 18.0 16 100 45.0 12.0 3.3 0.003 0.012 0.016 TRA1000 10.0 20.0 16 100 50.0 12.5 3.7 0.002 0.011 0.015 TRA1100 11.0 22.0 16 100 55.0 13.5 3.7 0.002 0.010 0.013 TRA1200 12.0 24.0 16 100 60.0 15.0 4.2 0.002 0.009 0.012
in „Wer kennt dieses Bauteil?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ltc4010.pdf
C.CC = 12V, BAT = 4.8V, GND = PGND = 0V, unless otherwise noted. SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS PWMCurrent Source V BAT – SENSE Full-Scale Regulation 0.3V < BAT < V – 0.3V (Note 8) 95 100 105 mV FS CC Voltage (Fast Charge) BAT = 4.8V l 95 100 105 mV VPC BAT – SENSE Precharge Regulation 0.3V
in „NiMH-Ladeschaltung mit LTC4010 lädt nicht“ · Mikrocontroller und Digitale Elektronik ·
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SK9822.pdf
Light Output Wavelength Characteristics 120% 100% u BLUE/GREEN i BLUE GREEN F100% u RED s r 80% o i i80% D u RED i 60% d60% s z m a E 40% m40% v o a 20% N20% e R 0.00 0.00 0 20 40 60 80 100 120 400 450 500 550 600 650 700 750 800 Thermal Pad Temperature
in „Reverse Voltage Protection“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
auo-B101AW06-V1-pre.pdf
power specification are measured under 25℃ and frame frenquency under 60Hz Symble Parameter Min Typ Max Units Note VDD Logic/LCD Drive 3.0 3.3 3.6 [Volt] Voltage PDD VDD Power 0.8 - [Watt] Note 1 - IDD IDD Current - 240 - [mA] Note 1 IRush Inrush Current - - 2000 [mA] Note 2 VDDrp Allowable 100 [mV] Logic
in „Handydummy (Attrappe)mit richtigem Display 10Zoll - u.a.Motorola Xoom“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TLS810B1xxV33.pdf
aregiven atTj= 25°C, I = 13.5V. Parameter Symbol Values Unit NoteorTest Condition Number Min. Typ. Max. Output VoltagePrecision V Q 3.23 3.30 3.37 V 50 µA ≤IQ≤ 100 mA, P_5.1.1 4 V ≤V ≤ 28V I Output VoltagePrecision V 3.23 3.30 3.37 V 50 µA ≤I ≤ 50 mA, P_5.1.2 Q Q 4 V ≤VI≤ 42V OutputCurrent Limitation
in „3.3V uC LDO mit UVLO, Batterie/Solarbetrieb“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
manual_20digilab_201kx208.pdf
Chapter ▯ ’LJLODE▯†▯%ORFN▯’LDJUDP▯ ’,*,/$%▯▯.[▯▯▯▯*HQHUDO▯’HVFULSWLRQ▯ • Altera’s development system MAX+plus II Baseline on CD ROM included • 100k Gate ACEX 1K device (EP1K100QC208-1) • Convenient access to all ACEX 1K pins • Supports Excalibur™/Nios™ embedded processors • On-board, fast SRAM 256k x 16
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PDF
CYStech_MTB06N03H8.pdf
mounted on minimum copper pad Characteristics (T C=25°C, unless otherwise specified) Symbol Min. Typ. Max. Unit Test Conditions Static BV DSS 30 - - V VGS0, I D250μA VGS(th) 1.0 1.5 3.0 V VDS = VGS ID=250μA G FS *1 - 25 - S VDS =5V, ID=24A GSS - - ±100 nA VGS 20 DSS - - 1 μA VDS =24V, V GS=0 - - 25 VDS
in „[S] CYStech MOSFETs“ · Markt ·
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PDF
CYStech_MTB09N03H8.pdf
mounted on minimum copper pad Characteristics (T C =25°C, unless otherwise specified) Symbol Min. Typ. Max. Unit Test Conditions Static BV DSS 30 - - V V GS, I D250μA VGS(th) 1.0 1.7 3.0 V V DS= V GSI D250μA G FS *1 - 20 - S V DS=5V, ID=20A GSS - - ± 100 nA V GS20 DSS - - 1 μA V DS=24V, V GS =0 - - 25 V
in „[S] CYStech MOSFETs“ · Markt ·
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PDF
TL494.pdf
High State OC = Vref OCH – 0.2 3.5 mA Output Voltage Rise Time r ns Common–Emitter (See Figure 12) – 100 200 Emitter–Follower (See Figure 13) – 100 200 Output Voltage Fall Time f ns Common–Emitter (See Figure 12) – 25 100 Emitter–Follower (See Figure 13) – 40 100 NOTE: 2. Low duty cycle pulse techniques
in „PWM-IC gesucht: Betrieb für Mosfet (etwa 8A)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
5050.pdf
Solderability IEC512-12A + Durchgangswiderstand < 30m W Contact Resistance < 30m © Isolationswiderstand > 100M @ 100V Insulation Resistance > 100M @ 100V Spannungsfestigkeit 100V AC Test Voltage 100V AC Nennstrom 0,5A Current Rating 0,5A Temperaturbereich -20°C ... +105°C Temperature Range -20°C ... +105°C
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PDF
TDA7313.pdf
(2) 80 100 dB RL Output Load resistance pin 7, 17 2 K G INmin Min. Input Gain -1 0 1 dB G INmax Max. Input Gain 11.25 dB G Step Resolution 3.75 dB STEP eIN Input Noise G = 11.25dB 2 V V DC DC Steps adjacent gain
in „TDA 7313 input AM / FM“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SeikoChar.pdf
Life Characteristics 1 1 Input : 5V DC 2 Common:GND Item Conditions Specifications Unit Brightness 100V, 400Hz 40 min. cd/m² i 3 Output m Sinew ave 2 Current 100V, 400Hz 1.5 max. mA Sinew ave 1 Life 100V, 400Hz, Sinew ave 3,000 3-∅0.6 3 5 1 25ºC,50%RH hrs 3 2 Using 5S Inverter 6,000 1 25ºC,50%RH 8.5
in „Display Seiko L2432 und Kontrastproblem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datenblatt-515940-neutrik-nte1-audio-uebertrager-impedanz-200-primaerspannung-12-v-inhalt-1-st.pdf
NTE1 Audio Übertrager 1:1 Eingangs-/ Ausgangsimpedanz in : 200/200 Max. Eingangsspannung (1% THD @ 60 Hz): 1150 mV rms Transformers Ripple Max. input voltage (@60Hz) Min. load NTE1, 4, 10/3 20Hz-20kHz THD < 1% THD < 3% impedance NTE1 max. -1dB 1,2 V 1,4 V 200 Ω NTE4 max
in „NF Übertrager selber wickeln ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lm3478.pdf
to feedback 32/ 25 mV(min) (5) voltage) VSSOP Package 78/ 85 mV(max) SOIC Package 78/100 mV(max) VOVP(HYS) Output Over-Voltage (5) V COMP = 1.4V 60 mV Protection Hysteresis 20 mV(min) 110 mV(max) (1) The voltage on the drive pinDRis equal to the input voltage when input
in „Frage zu Datenblatt LM3478“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
p75nf75.pdf
Symbol Parameter Test conditions Min Typ. Max Unit ISD Source-drain current 80 A (1) ISDM Source-drain current (pulsed) 320 A VSD(2) Forward on voltage ISD = 80A, VGS = 0 1.5 V ISD = 80A, rr Reverse recovery time 132 ns di/dt = 100A/µs, Q rr Reverse
in „Unbekanntes Bauteil im Akkuschrauber“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LC651152.pdf
to PF3, ∑I OA (2) 2 PG0 to 3 –15 to +100 PG0 to PG3, and PA0 to PA3 (See note 2.) * PA0 to 3 Pd max (1) Ta = –40 to +85°C (DIP package) 310 Allowable power dissipation Pd max (2) Ta = –40 to +85°C (MFP package) 220 mW Pd max (3) Ta = –40 to
in „SANYO LC651152 was macht der TEST pin?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Byte_Blaster_MV.pdf
2002, Version 3.3 Data Sheet Features ■ Allows PC users to perform the following functions: – Program MAX ® 9000, MAX 7000S, MAX 7000A, MAX 7000B, and MAX 3000A devices in-system via a standard parallel port – Configure StratixTM, APEX TMII, APEX 20K (including APEX 20K, APEX 20KE, and APEX 20KC), ACEX
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PDF
GWS6967.pdf
SurfacemountedonFR4board.t <10s. 2.Pulsetest;pulsewidth<300us,dutycycle<2%. 3.SurfacemountedonFR4board. SP-6967-100-5 20 June 2007 1 GWS6967 o ElectricalCharacteristics (TJ=25 C unless otherwise noted) Parameter Symbol Test Condition Min Typ Max Unit Static1 Drain-Source Breakdown Voltage V(BR)DSS VGS 0V,I D 250uA
in „Bauteilsuche Hexfet? Hilfe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74279242.pdf
Recommended Land Pattern: [mm] Electrical Properties: Properties Test conditions Value Unit Tol. Impedance @ 100 MHz Z 100 MHz 150 Ω ±25% W Maximum Impedance Zmax 500 MHz 280 Ω typ. 3,0 Rated Current 1 R 1 ΔT = 20 K 200 mA max. , Rated Current 2 R 2 ΔT = 40 K 2000 mA max. 1 R DC Resistance DC @ 20 °C 0.5 Ω max
in „Das Ferrite-Bead Fiasko“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SS8050-117753.pdf
Characteristics n r Values are aA T = 25°C unless otherwise noted. a s Symbol Parameter Conditions Min. Typ. Max. Unit i BV Collector-Base Breakdown Voltage I = 100 μA, I = 0 40 V t CBO C E r BVCEO Collector-Emitter Breakdown VoltaIC= 2 mA, B = 0 25 V BVEBO Emitter-Base Breakdown Voltage IE= 100 μA, C = 0 6 V
in „Ersatz für MPSA06 Transistor gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SFS0405T4.pdf
Temperature Junction Temperature VBR(DSS) R DS(on) 1.3 2.5 1.2 2.0 1.1 1.5 1.0 1.0 0.9 Tj (℃) 0.5 Tj (℃) 0-100 -50 0 50 100 150 200 -100 -50 0 50 100 150 200 Figure 9: Maximum Safe Operating Area Figure 10: Maximum Continuous Drain Current vs. Ambient Temperature -D(A) -D(A) 7 2 10 6 1 5 10 10μs 4 0 100μs 10
in „Bezugsquelle oder Alternative gesucht.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
M220SP01_V.0.pdf
half of the Jitter TE interval between Hsync pulses measured over (Measured between Hsync pulses) IN 100,000 intervals shall be less than 15% of the pixel N T clock, 0Hz to max. horizontal refresh rate at all image O I formats, worst-case screen patterns. ⟡ LSB: Least Significant Bit C M ⟡ Monotonic A
in „[S] TFT Steuerplatinen“ · Markt ·
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PDF
EF25.pdf
750 Fig.1 VIPer50 185 - 265 30 4,5 - 6 3 10,5 - 14 1,5 70 TOP223Y 85 - 265 18 3,3 - 7 2,5 8 - 16 1,2 100 TOP223Y 185 - 265 21 3,3 - 7 3 8 - 16 1,5 100 TOP224Y 85 - 265 22 3,3 - 7 2,5 8 - 16 1,2 100 TOP224Y 185 - 265 30 3,3 - 7 3 8 - 16 1,5 100 MC33371 85 - 265 22 4 - 7 2,5 10 - 17 1,2 100 MC33371 185 - 265 30 4 - 7 3 10 - 17 1,5 100 TDA16832 92 - 265 15 5 - 6 2,5 11 - 14 1,2 100 TDA16832 185 - 265 30 5 - 6 3 12 - 14,5 1,5 100 KA1H0265R 85 - 265 22 6 - 7 2,5 14 - 16 1,2 100 74032 TOP223P 185-265 25 24 1,1 100 1100 Fig.2 - 7 -
in „VIPer50 Flyback Schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ina105.pdf
4) Voltage Range Differential ±10 V Common-Mode ±20 V Common-Mode Rejection(5) T = T to T 80 90 86 100 72 dB A MIN MAX OFFSET VOLTAGE RTO (6), (7) Initial 50 250 500 V vs Temperature 5 20 5 10 V/°C vs Supply ±VS= 6V to 18V 1 25 15 V/V vs Time 20 V/mo OUTPUT NOISE VOLTAGE RTO (6), (8) B = 0.01Hz to 10Hz
in „"Hallsonde für Oszilloskop" im Eigenbau?!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MT6252_Design_Notice.pdf
987-49186 +886-2-8170-9076 (Direct) Bull Tang SOT23- 13502888931 4 Presemi PT236T30E2 1.2 6L(TSOP6) 100 NC. 3A bull1975@gmail.com Copyright © MediaTek Inc. All rights reserved 41 BJT Power Dissipation and Charge Current ▪ Charger BJT selection – Max. charger voltage 10V – Max. battery charge current (
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Datei
ThermometerSabine1.2.bas
= Temperatur End If Z1 = 1 If Temperatur < T_min Then Temp_werte(1) = Temperatur If Temperatur > T_max Then Temp_werte(1) = Temperatur T_min = 1000 T_max = -1000 For N = 1 To Zeitraum_min 'T-Min ermitteln If Temp_werte(n) < T_min Then T_min = Temp_werte(n) Next N For N = 1 To Zeitraum_max 'T_Max ermitteln If Temp_werte(n) > T_max Then T_max = Temp_werte(n) Next N End Sub Minmax Sub Weg_rechnen(stelle) 'Motor(Stelle) wird ausgewählt Weg = Pos - Akt_stellung(stelle) 'VerschiebePosition wird berechnet If Weg < 0 Then Richtung =
in „Atmega8 Thermometer mit Schrittmotoranzeige“ · Projekte & Code ·
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PDF
Optokoppler_4N27.PDF
Min. Typ. Max. Unit Condition Forward Voltage* VF 1.3 1.5 V F =50 mA Reverse Current* R 0.1 100 A VR=3.0 V Capacitance C0 25 pF VR=0 Detector Breakdown Voltage* Collector-EmitteBVCEO 30 V C =1 mA Emitter-CollectoBVECO
in „Ansteuerung Opto 4N27“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
index.html
scaleLinear() .domain([ 0, 30]) .range([height, 0]); var zoom = d3.zoom() .scaleExtent([1, 5]) .extent([100, 100], [width-100, height-100]) .on("zoom", zoomed); var svg = d3.select("body").append("svg") .call(zoom) .style('background',"#fcfad7") .attr("width", width + margin.left + margin.right + 100) .attr
in „HTML Javascript d3.js Chart Problem“ · Softwareentwicklung ·
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PDF
emw3165.pdf
Crystal oscillator, Baseband PLL, AFE, RF PLL, Radio Note 7: CCK power at chip port. Duty cycle is 100%. Includes PA contribution. Note 8: OFDM power at chip port. Duty cycle is 100%. Includes PA contribution. Note 9: OFDM power at chip port is 16 dBm, duty cycle is 100%, includes PA contribution. Note
in „EMW3165 - Der ESP8266 Killer ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DSAUD0065719.pdf
8 to 14 µm, 1 Hz Motion Sensing Rejection Ratio (typ) 15:1 (typ) 1.7 Automatic Door Control Noise (max) 8.51 µVrms/√Hz 1 Hz, 1 Hz BW -10 Safety Warning NEP (typ) 4.5x10 W/√Hz 8 to 14 µm, 100 (max) 3.1x10-9 1 Hz, 1 Hz BW People Detector (min) 0.5x108 8 to 14 µm, D* 8 cm/√Hz/W 100 (typ) 3.4x10 1 Hz, 1 Hz BW 1 V+ (min) 3 104 D Operating Voltage VDC V+ to Gnd G OUTPUT (max) 15 (4.1.c) 2 (min) 3 104 S Operating Current (max) 12 µA RS= 100kΩ (4.1.c) RL 1.05 x10Ω RS Offset Voltage (min) 0.3 V R = 100kΩ 106 (max) 1.2 S Section B 3 GROUND Output Impedance < R Ω S Thermal Breakpoint
in „Eltec 1592 Sensor“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Diode.pdf
3. Electrical characteristics - parameter values (T = 25 °C) amb (1) V @I R (2) V @I R (2) (3) IRM max@V RM VBR @IR 10/1000 µs 10/1000 µs 8/20 µsP 8/20 µs αT Order code 25 °C 85 °C min typ max max max (4) (4) µA V V mA V A Ω V A Ω 10-4/° C SMAJ5.0A/CA 20 50 5 6.4 6.74 10 9.2 43.5 0.049 13.4 174 0.036
in „Überspannungsschutz ADC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Thomson-Tantal.pdf
customer requirements. + 15 + 10 Typical curve capacitance vs. frequency 140% % c + 5 120% a ) c ( p c 100% a n C i 0 a 80% a C 60% -5 +85 °C 40% 100Hz 1kHz 10kHz 100kHz - 55 - 40 0 + 40 + 80 + 125 Frequency Temperature (°C) Frequency dependence of impedance and ESR 100 1k ) 100 ( 1/35 Z e 10 0.1µF n 10
in „Defekte Diode Werte?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
A200-DS_L6920D.pdf
Package Information Figure 16. TSSOP8 Mechanical Data & Package Dimensions mm inch DIM. MIN. TYP. MAX. MIN. TYP. MAX. OUTLINE AND MECHANICAL DATA A 1.20 0.047 A1 0.050 0.150 0.002 0.006 A2 0.800 1.000 1.050 0.031 0.039 0.041 b 0.190 0.300 0.007 0.012 c 0.090 0.200 0.003 0.008 D (1) 2.900 3.000 3.100
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PDF
lm2574.pdf
REVISED MAY 2020 www.ti.com 6.7 Electrical Characteristics – 5-V Version TJ= 25°C, and all MIN and MAX apply over full operating temperature range (unless otherwise noted). (1) (2) (2) PARAMETER TEST CONDITIONS MIN TYP MAX UNIT V IN= 12 V, LOAD = 100 mA 4.9 5 5.1 LM2574, 7 V ≤ V ≤ 40 V, TJ= 25°C 4.8
in „[V] kleines Konvolut ältere DIL / DIP ICs (8€)“ · Markt ·
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PDF
propdoku.pdf
● Sockel für den Propeller zur Verfügung stehen. ● Das 5 MHz Quarz ● Alle Kondensatoren ausser die 100nF, 10nF und 22uF direkt am Audio-IC / Audio- Buchse ● Den MAX232 oder MAX 3232 und den 10K Widerstand links von ihm ● Den Transistor und die darüberliegende 2x3 polige Stiftleiste ● 9 polige D-Sub Buchse
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PDF
tda7348.pdf
Parameter Test Condition Min. Typ. Max. Unit INPUT SELECTOR RI Input Resistance 70 100 130 K V CL Clipping Level d ≤ 0.3% 2.1 2.6 VRMS SI Input Separation 80 100 dB RL Output Load Resistance 2 K GI MIN Minimum Input Gain -0.75 0 0.75 dB
in „SPI Umsetzung - Verständnisfrage“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HV_257.pdf
VPP300V,VDD=6.5V,NN =5.5V,A =25 C) 600 60 0 500 500 40 0 400 A ) ( A E ( 300 R300 N U I S I 20 0 200 max max 100 100 min min 0 0 25k 150k 250k 25k 150k 250k R (KΩ) RSOURCE (KΩ) SINK Acquisition Window Temperature Diode vs Temperature (”one RC”response to one volt input step) (PP=300V,VDD6.5V,VNN=5.5V) O (VPP300V,VDD=6.5V,NN =5.5V,A =25 C) 120 700 O -10 C 100 +85 C +25 C max min 25 C O 600 ) 80 -10 C e n ) max ( V min O R 60 ( 500 85 C e V n max O 40 min 400 20 300 0 1μA 20μA 40μA 60μA 80μA 100μA 1 2 4 Diode Biasing Current (µA) VSIGLevel (V) HV Charge Injection
in „Sockel und C_Load“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt-V350-35-TR34.pdf
Minimaler Strom: 1 mA@5 VDC • Versorgungsspannung: 24 VDC (20,4 VDC bis 28,8 VDC) • Maximaler Strom: 3 A max pro Ausgang, 8 A max alle Ausgänge • Maximale Stromaufnahme: npn 265mA@24VDC • Reaktionszeit: 10ms pnp 180mA@24VDC • Lebensdauer: 100.000 Schaltzyklen mit maximaler Last • Maße: Ausschnittsmaß: 92 x
in „USB-Host / industrielle SPS / Frequency Counter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC4066_74HCT4066_SMDHC4066_PHI.pdf
CONDITIONS 74HC/HCT SYMBOL PARAMETER UNIT V I +25 −40 to +85 −40 to +125 CC S V IS VI (V) ( A) min. typ. max. min. max. min. max. RON ON-resistance (peak) − − − − 2.0 100 VCC VIH 54 95 118 142 4.5 1000 to or GND V IL 42 84 105 126 6.0 1000 32 70 88 105 9.0 1000 RON ON-resistance (rail) 80 − − − 2.0 100 GND
in „welche relais für rs232 und atmega32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDA7294.pdf
® TDA7294 100V - 100W DMOS AUDIO AMPLIFIER WITH MUTE/ST-BY VERY HIGH OPERATING VOLTAGE RANGE (±40V) MULTIPOWER BCD TECHNOLOGY DMOS POWER STAGE HIGH OUTPUT POWER (UP TO 100W MU- SIC POWER) MUTING/STAND-BY FUNCTIONS
in „TDA7294 Verstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TDA7294.pdf
® TDA7294 100V - 100W DMOS AUDIO AMPLIFIER WITH MUTE/ST-BY VERY HIGH OPERATING VOLTAGE RANGE (±40V) MULTIPOWER BCD TECHNOLOGY DMOS POWER STAGE HIGH OUTPUT POWER (UP TO 100W MU- SIC POWER) MUTING/STAND-BY FUNCTIONS
in „Problem mit TDA7294 datasheet“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDA7294_100V_100W.pdf
® TDA7294 100V - 100W DMOS AUDIO AMPLIFIER WITH MUTE/ST-BY VERY HIGH OPERATING VOLTAGE RANGE (±40V) MULTIPOWER BCD TECHNOLOGY DMOS POWER STAGE HIGH OUTPUT POWER (UP TO 100W MU- SIC POWER) MUTING/STAND-BY FUNCTIONS
in „TDA7294: Passender Schaltplan?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
1n4008.pdf
5 - TYPICAL JUNCTION CAPACITANCE ) (200 , C100 N 60 T C 40 A A 20 C N 10 J = 25 I 6 T 4 N U 2 J 1 .1 .2 .4 1.0 2 4 10 20 40 100 REVERSE VOLTAGE, ( V ) RECTRON AXIAL LEADTAPINGSPECIFICATIONS FORRECTIFIERS AxialleaddevicesarepackedinaccordancewithEIAstandardRS
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PDF
GSOT03C-E3-08.pdf
specified) between pin 1 to pin 3 or pin 2 to pin 3 PARAMETER TEST CONDITIONS/REMARKS SYMBOL MIN. TYP. MAX. UNIT Protection paths Number of lines which can be protected N channel - - 2 lines Reverse stand-off voltage Max. reverse working voltage VRWM - - 3.3 V Reverse voltage at R = 100 μA V R 3.3 - - V
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PDF
HCF4511B.pdf
5V, 10V, AND 15V PARAMETRIC RATINGS PACKAGE TUBE T & R ■ INPUT LEAKAGE CURRENT DIP HCF4511BEY I = 100nA (MAX) AT VDD = 18V TA= 25°C ■ 100% TESTED FOR QUIESCENT CURRENT SOP HCF4511BM1 HCF4511M013TR ■ MEETS ALL REQUIREMENTS OF JEDEC JESD13B "STANDARD SPECIFICATIONS FOR DESCRIPTION OF B SERIES CMOS power
in „BCD-7Segment Treiber für VFD Röhren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STP16NF_--_156110-da-01-en-PWRMOS_60V_16A_STP16NF06L_STM.pdf
OFF Symbol Parameter Test Conditions Min. Typ. Max. Unit V (BR)DSS Drain-source ID= 250 µA, GS = 0 60 V Breakdown Voltage IDSS Zero Gate Voltage V DS= Max Rating 1 µA Drain Current GS = 0) V DS= Max Rating TC= 125°C 10 µA Gate-body Leakage V GS= ± 16V ±100 nA IGSS Current (V = 0) DS ON (1) Symbol Parameter Test Conditions Min. Typ. Max. Unit V GS(th) Gate Threshold Voltage V DS= VGS D = 250 µA 1 2.5 V RDS(on) Static Drain-source On V GS= 5 V D = 8 A 0.08
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PDF
TXSTM-POWERMOSFET-STX-16NF06L_EN.pdf
OFF Symbol Parameter Test Conditions Min. Typ. Max. Unit V (BR)DSS Drain-source ID= 250 µA, GS = 0 60 V Breakdown Voltage IDSS Zero Gate Voltage V DS= Max Rating 1 µA Drain Current GS = 0) V DS= Max Rating TC= 125°C 10 µA Gate-body Leakage V GS= ± 16V ±100 nA IGSS Current (V = 0) DS ON (1) Symbol Parameter Test Conditions Min. Typ. Max. Unit V GS(th) Gate Threshold Voltage V DS= VGS D = 250 µA 1 2.5 V RDS(on) Static Drain-source On V GS= 5 V D = 8 A 0.08
in „TLC5940 (Arduino Mega) flackert. Wie Kondensatoren einsetzen?“ · Mikrocontroller und Digitale Elektronik ·
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IRF3205Z.pdf
applications. TO-220AB D Pak TO-262 IRF3205Z IRF3205ZS IRF3205ZL Absolute Maximum Ratings Parameter Max. Units I @ T = 25°C Continuous Drain CurreGS, V0V (Silicon Limited) 110 D C ID@ T C 100°C Continuous Drain CurreGS, V0V 78 A ID@ T C 25°C Continuous Drain CurreGS, V0V (Package Limited) 75 IDM Pulsed
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