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PDF
TDA8702_Philips_DA_CONVERTER_8Bit.pdf
all digital inputs are TTL compatible. QUICK REFERENCE DATA SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT VCCA analog supply voltage 4.5 5.0 5.5 V VCCD digital supply voltage 4.5 5.0 5.5 V CCA analog supply current note 1 − 26 32 mA I digital supply current note 1 − 23 30 mA CCD VOUT − VOUT full-scale
in „DA Wandler TDA8702“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC14490_646060.pdf
Voltages RefSSenced to V ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎVÎÎÎÎÎÎ 55_C 25_C 125_C DD CharacteristiSymbolVdc Min Max Min Typ4.Max Min Max Unit ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ Output Voltag“0” LeVel 5.0 — 0.05 — 0 0.05 — 0.05Vdc ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ VinDDor 0 10 — 0.05 — 0 0.05 — 0.05 Î ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
in „MC14490 Contact Bounce Eliminator (Fragen zu Cext)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1886898.pdf
Deviation tape – plane Maximum ∆p 1.3 1.3 1.3 1.3 1.3 1.3 Lateral deviation Maximum ∆h 2 2 2 2 2 2 MAX MAX Total thickness +/-0.2 t 0.7 0.7 0.7 0.7 0.9 0.9 (2) +2/-0 +2/-0 +2/-0 +2/-0 +/-0.5 +2/-0 Sprocket hole/cap body Nominal H0 18 18 18 18 18.5 18 Sprocket hole/top of cap body Maximum H (3) 35 35
in „Kondensator tauschen - Heissluftföhn“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Epcos_NTCs.pdf
in Ammo pack Approx. weight 0.2 g General technical data Climatic category (IEC 60068-1) 40/125/56 Max. power (at 25 °C) P25 200 mW Resistance tolerance R RR R ±5, ±10 % Rated temperature T 25 °C R Dissipation factor (in air) δth approx. 3.5 mW/K Thermal cooling time constant (in air) τc approx. 12 s
in „Kennlinie VDO Öltemperaturgeber“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Epcos_NTCs.pdf
in Ammo pack Approx. weight 0.2 g General technical data Climatic category (IEC 60068-1) 40/125/56 Max. power (at 25 °C) P25 200 mW Resistance tolerance R RR R ±5, ±10 % Rated temperature T 25 °C R Dissipation factor (in air) δth approx. 3.5 mW/K Thermal cooling time constant (in air) τc approx. 12 s
in „Temperatursensor Identifikation“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UA741CP_datasheet.pdf
) LEADLESS CERAMIC CHIP CARRIER 28 TERMINAL SHOWN 18 17 16 15 14 13 12 NO. OF A B TERMINALS ** MIN MAX MIN MAX 0.342 0.358 0.307 0.358 19 11 20 (8,69) (9,09) (7,80) (9,09) 20 10 28 0.442 0.458 0.406 0.458 (11,23) (11,63) (10,31) (11,63) 21 9 B SQ 0.640 0.660 0.495 0.560 22 8 44 (16,26) (16,76) (12,58
in „OP Spannung 1,82V bei Min.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC7800-D.pdf
V AND GATE PROTRUSIONS NOT TO EXCEED 0.025 (0.635) MAXIMUM. B H F 1 2 3 INCHES MILLIMETERS DIM MIN MAX MIN MAX M L A 0.386 0.403 9.804 10.236 B 0.356 0.368 9.042 9.347 J C 0.170 0.180 4.318 4.572 D 0.026 0.036 0.660 0.914 D N P E 0.045 0.055 1.143 1.397 0.010 (0.254) M T G F 0.051 REF 1.295 REF R G 0.100 BSC 2.540 BSC H 0.539 0.579 13.691 14.707 J 0.125 MAX 3.175 MAX K 0.050 REF 1.270 REF L 0.000 0.010 0.000 0.254 C M 0.088 0.102 2.235 2.591 N 0.018 0.026 0.457 0.660 SOLDERING FOOTPRINT* P 0.058 0.078 1.473 1.981 R 5_REF 5_REF S 0.116 REF 2.946 REF 8.38
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PDF
LM2575TADJ.PDF
Given Parameters: V = Regulated Output Voltage (3.3 V, 5.0 V, 12 V or 15 V) V = 5.0 V out out Vin(max)= Maximum DC Input Voltage Vin(max)= 20 V Load(max) = Maximum Load Current Load(max) = 0.8 A 1. Controller IC Selection 1. Controller IC Selection According to the required input voltage, output voltage
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PDF
High_Performance_Flash_and_Arc_Lamps_-_PerkinElmer.pdf
18 0.4 7 75 145 7.14/13 13.7 1.29 x 10 247 494 600 2100 18 0.6 7 100 170 7.14/13 18.3 1.72 x 10 330 660 700 2450 18 0.8 7 150 220 7.14/13 27.4 2.58 x 10 495 990 900 3150 18 1.2 7 200 270 7.14/13 36.6 3.44 x 10 660 1320 1100 3850 18 1.6 7 250 320 7.14/13 45.7 4.30 x 10 825 1650 1300 4550 18 2.0 8 75 155
in „Projekt: Leistungsstarkes Blitzgerät aus 12 Volt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Perkin_Elmer_Flash___Arc_Tubes.pdf
18 0.4 7 75 145 7.14/13 13.7 1.29 x 10 247 494 600 2100 18 0.6 7 100 170 7.14/13 18.3 1.72 x 10 330 660 700 2450 18 0.8 7 150 220 7.14/13 27.4 2.58 x 10 495 990 900 3150 18 1.2 7 200 270 7.14/13 36.6 3.44 x 10 660 1320 1100 3850 18 1.6 7 250 320 7.14/13 45.7 4.30 x 10 825 1650 1300 4550 18 2.0 8 75 155
in „Reparatur (UW) Blitzgerät möglich?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SK.pdf
) 6.3 10 16 25 35 50~100 160~250 350~400 450 低温特性 Low temperature characteristics (lmpedance ratio max. at 120Hz) Z—25℃/Z+20℃ 5 4 3 2 2 2 3 6 15 Z—40℃/Z+20℃ 12 10 8 5 4 3 4 After applying rated for 2000 hours at 85℃ then resumed 16 hours: 高温负荷特性 Load Life Capacitance change Within ±20% of the initial
in „Sub Ersatztype Kondensator gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMC6482.pdf
Units (Note 5) (Note 6) (Note 6) (Note 6) V Input Offset Voltage 0.750 3.0 3.0 mV OS 0.11 1.35 3.7 3.8 max TCVOS Input Offset Voltage 1.0 mV/ C Average Drift § B Input Current (Note 13) pA 0.02 4.0 4.0 10.0 max I Input Offset Current(Note 13) pA OS 0.01 2.0 2.0 5.0 max CIN Common-Mode 3 pF Input Capacitance
in „Differenzverstärker als Gleichrichter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMC6482.pdf
Units (Note 5) (Note 6) (Note 6) (Note 6) V Input Offset Voltage 0.750 3.0 3.0 mV OS 0.11 1.35 3.7 3.8 max TCVOS Input Offset Voltage 1.0 mV/ C Average Drift § B Input Current (Note 13) pA 0.02 4.0 4.0 10.0 max I Input Offset Current(Note 13) pA OS 0.01 2.0 2.0 5.0 max CIN Common-Mode 3 pF Input Capacitance
in „messen der Netzspannung am Mega32“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMC6482.pdf
Units (Note 5) (Note 6) (Note 6) (Note 6) V Input Offset Voltage 0.750 3.0 3.0 mV OS 0.11 1.35 3.7 3.8 max TCVOS Input Offset Voltage 1.0 mV/ C Average Drift § B Input Current (Note 13) pA 0.02 4.0 4.0 10.0 max I Input Offset Current(Note 13) pA OS 0.01 2.0 2.0 5.0 max CIN Common-Mode 3 pF Input Capacitance
in „Wechselstrom messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LMC6482.pdf
Units (Note 5) (Note 6) (Note 6) (Note 6) V Input Offset Voltage 0.750 3.0 3.0 mV OS 0.11 1.35 3.7 3.8 max TCVOS Input Offset Voltage 1.0 mV/ C Average Drift § B Input Current (Note 13) pA 0.02 4.0 4.0 10.0 max I Input Offset Current(Note 13) pA OS 0.01 2.0 2.0 5.0 max CIN Common-Mode 3 pF Input Capacitance
in „Transkonduktanz Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMC6482.pdf
Units (Note 5) (Note 6) (Note 6) (Note 6) V Input Offset Voltage 0.750 3.0 3.0 mV OS 0.11 1.35 3.7 3.8 max TCVOS Input Offset Voltage 1.0 mV/ C Average Drift § B Input Current (Note 13) pA 0.02 4.0 4.0 10.0 max I Input Offset Current(Note 13) pA OS 0.01 2.0 2.0 5.0 max CIN Common-Mode 3 pF Input Capacitance
in „Audio-Signal-Erkennung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMC6482.pdf
Units (Note 5) (Note 6) (Note 6) (Note 6) V Input Offset Voltage 0.750 3.0 3.0 mV OS 0.11 1.35 3.7 3.8 max TCVOS Input Offset Voltage 1.0 mV/ C Average Drift § B Input Current (Note 13) pA 0.02 4.0 4.0 10.0 max I Input Offset Current(Note 13) pA OS 0.01 2.0 2.0 5.0 max CIN Common-Mode 3 pF Input Capacitance
in „Suche OVP Schaltung für ideale Diode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LMC6482.pdf
Units (Note 5) (Note 6) (Note 6) (Note 6) V Input Offset Voltage 0.750 3.0 3.0 mV OS 0.11 1.35 3.7 3.8 max TCVOS Input Offset Voltage 1.0 mV/ C Average Drift § B Input Current (Note 13) pA 0.02 4.0 4.0 10.0 max I Input Offset Current(Note 13) pA OS 0.01 2.0 2.0 5.0 max CIN Common-Mode 3 pF Input Capacitance
in „Gleichrichteschaltung mittels op“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMC6482.pdf
Units (Note 5) (Note 6) (Note 6) (Note 6) V Input Offset Voltage 0.750 3.0 3.0 mV OS 0.11 1.35 3.7 3.8 max TCVOS Input Offset Voltage 1.0 mV/ C Average Drift § B Input Current (Note 13) pA 0.02 4.0 4.0 10.0 max I Input Offset Current(Note 13) pA OS 0.01 2.0 2.0 5.0 max CIN Common-Mode 3 pF Input Capacitance
in „Leistungsaufnahme 220V erkennen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LMC6482.pdf
Units (Note 5) (Note 6) (Note 6) (Note 6) V Input Offset Voltage 0.750 3.0 3.0 mV OS 0.11 1.35 3.7 3.8 max TCVOS Input Offset Voltage 1.0 mV/ C Average Drift § B Input Current (Note 13) pA 0.02 4.0 4.0 10.0 max I Input Offset Current(Note 13) pA OS 0.01 2.0 2.0 5.0 max CIN Common-Mode 3 pF Input Capacitance
in „Strommessung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LMC6482.pdf
Units (Note 5) (Note 6) (Note 6) (Note 6) V Input Offset Voltage 0.750 3.0 3.0 mV OS 0.11 1.35 3.7 3.8 max TCVOS Input Offset Voltage 1.0 mV/ C Average Drift § B Input Current (Note 13) pA 0.02 4.0 4.0 10.0 max I Input Offset Current(Note 13) pA OS 0.01 2.0 2.0 5.0 max CIN Common-Mode 3 pF Input Capacitance
in „Synchrongleichrichter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMC6482.pdf
Units (Note 5) (Note 6) (Note 6) (Note 6) V Input Offset Voltage 0.750 3.0 3.0 mV OS 0.11 1.35 3.7 3.8 max TCVOS Input Offset Voltage 1.0 mV/ C Average Drift § B Input Current (Note 13) pA 0.02 4.0 4.0 10.0 max I Input Offset Current(Note 13) pA OS 0.01 2.0 2.0 5.0 max CIN Common-Mode 3 pF Input Capacitance
in „Betrag bilden mit OpAmp“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMC6482.pdf
Units (Note 5) (Note 6) (Note 6) (Note 6) V Input Offset Voltage 0.750 3.0 3.0 mV OS 0.11 1.35 3.7 3.8 max TCVOS Input Offset Voltage 1.0 mV/ C Average Drift § B Input Current (Note 13) pA 0.02 4.0 4.0 10.0 max I Input Offset Current(Note 13) pA OS 0.01 2.0 2.0 5.0 max CIN Common-Mode 3 pF Input Capacitance
in „LED-VU-Meter von ELV - komme beim Nachbar nicht weiter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IR2130.pdf
Fall Time vs. Voltage 1.50 1.50 s s (1.20 ( 1.20 m m T Max. T Max. l l D0.90 D 0.90 n n d Typ. d Typ. u u t0.60 t 0.60 p p u Min. u Min. o o I I R0.30 R 0.30 I I 0.00 0.00 -50 -25 0 25 50 75 100 125 10 12 14 16 18 20 Temperature (°C) VBIASSupply Voltage (V)
in „Shunt Messung mit IR2130 (BLDC Steuerung)“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
2_FracNEON.txt
399 400 .max_iterations_1234 401 VMOV R0,S8 ;check if pixel 1 reach max iter (Q2.1 -> S8) 402 TST R0,#&80000000 ;check sign bit 403 BEQ max_iterations_234 ;not ? -> check Pixel 2,3,4 404 405 ADD R4,R4,R12 406 ADD
in „Raspberry Pi als "dicker" Mikrocontroller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DLx2416.pdf
(typ.) 60 100 120 µcd/LED (100% brightness,V CC= 5.0 V) LED to LED intensity matching (max.) 1.8:1.0 1.8:1.0 1.8:1.0 LED to LED hue matching at VCC = 5.0 V (max.) ±2.0 nm 2006-01-23 3 DLR2416, DLO2416, DLG2416 Top View 18 17 16 15 14 13 12 11 10 Digit 3Digit Digit 1Digit 0 1 2 3 4 5 6 7 8
in „(V) 4-Fach 5*7 Punktmatrix Osram DLR 2416, Bistabile Relais SDS, LED-Display 7-Seg. 4-Fach“ · Markt ·
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PDF
ltc485.pdf
) (5.080) MAX 0.015 – 0.060 (0.381 – 1.524) 0.008 – 0.018 (0.203 – 0.457) 0° – 15° 0.045 – 0.065 NOTE: LEAD DIMENSIONS APPLY TO SOLDER DIP/PLATE (1.143 – 1.651) 0.125 OR TIN PLATE LEADS 3.175 0.014 – 0.026 0.100 MIN (0.360 – 0.660) (2.54) BSC J8 1298 OBSOLETE PACKAGE LTC485ff 10 LTC485 U PACKAGE DESCRIPTIO N8 Package 8-Lead PDIP (Narrow .300 Inch) (Reference LTC DWG # 05-08-1510) 0.400* (10.160) MAX 8 7 6 5 0.255 0.015* (6.477
in „IR mit langer Leitung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mXyzrssr.pdf
5.0V 10 ,CC= 0V, A= 0 to 70 C) ± % ° PARAMETER SYM. W49F002U-70 W49F002U-90 W49F002U-120 UNIT MIN. MAX. MIN. MAX. MIN. MAX. Read Cycle Time T RC 70 - 90 - 120 - nS Chip Enable Access Time T CE - 70 - 90 - 120 nS Address Access Time T AA - 70 - 90 - 120 nS Output Enable Access Time T OE - 35 - 40 - 50
in „Eprom Auslesen mit AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
7Segment.pdf
Characteristics Tamb = 25 °C, unless otherwise specified Red Parameter Test condition Symbol Min Typ. Max Unit TDSR0750, TDSR0760 Luminous intensity per segmentFI 1 mA IV 180 2200 µcd (digit average) Dominant wavelength I = 1 mA λ 640 nm F d Peak wavelength IF= 1 mA λp 650 nm Forward voltage per segment
in „Problemchen DCF-Wecker“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SI7611.pdf
exclusive of mold flash and cutting burrs E3 Backside View of Dual Pad MILLIMETERS INCHES DIM. MIN. NOM. MAX. MIN. NOM. MAX. A 0.97 1.04 1.12 0.038 0.041 0.044 A1 0.00 - 0.05 0.000 - 0.002 b 0.23 0.30 0.41 0.009 0.012 0.016 c 0.23 0.28 0.33 0.009 0.011 0.013 D 3.20 3.30 3.40 0.126 0.130 0.134 D1 2.95 3.05
in „gleichwertiger Ersatztyp für Mosfet gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
bc847_p.pdf
amplification 1.4 Quick reference data Table 2: Quick reference data Symbol Parameter Conditions Min Typ Max Unit V collector-emitter voltageopen base - - 45 V CEO IC collector current (DC) - - 100 mA hFE DC current gain VCE= 5 V; 110 - 800 C = 2 mA hFE group A 110 180 220 hFE group B 200 290 450 hFE group
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PDF
manual.pdf
30 SV Kompressors auf max. 30 A Zur wirtschaftlichen und komfor- Raumtemperaturregler tablen Regelung der 307 085 VWZ RF Raumtemperatur GEOTHERM comfort Elektro-Heizpatrone Elektro-Heizpatrone 3 kW zum VWZ 3 El Einbau in die
in „Hilfe - Interface - Vaillant GeoTherm VWS 6/8/11E“ · Haus & Smart Home ·
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PDF
NXP_BC846_BC546_Series.pdf
amplification 1.4 Quick reference data Table 2. Quick reference data Symbol Parameter Conditions Min Typ Max Unit V CEO collector-emitter voltageopen base - - 65 V I collector current - - 100 mA C hFE DC current gain VCE= 5 V; 110 - 450 C = 2 mA hFE group A 110 180 220 h group B 200 290 450 FE NXP Semiconductors
in „Und wieder eine kleine lustige Teilesucherei Mosfet“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TDA8362.pdf
Integrated PAL and PAL/NTSC TV TDA8360; TDA8361; TDA8362 processors SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT VERTICAL OUTPUTPIN43) O available output current note 7 1 − − mA I internal bias current of NPN emitter − 0.2 − mA int follower V maximum available output voltage 4 − − V O(max) VO(min) minimum
in „FBAS-RGB-Konverter Probleme (TDA8362)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PL560-XX.pdf
Ps) (L.T.) Jitter (Ps) (Ps) (dB), Frequency (MHz) Number Freq. Carrier @ @ @ @ @ @ (MHz) Min. Typ. Max. Min. Typ. Max. Min. Typ. Max. Min. Typ. Max. Freq. -75% -50% -25% +25% +50% +75% (Fc) (Fc) (Fc) (Fc) (Fc) (Fc) (Fc) PL560-08 622 4 6 25 30 6 0.09 622 -50 -50 -45 -47 -47 -55 PL560-09 622 4 6 25 30
in „Suche Analog Frequency Multiplier IC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Samsung__35E.pdf
1,700mA 3.6 Charging Current For cycle life : 1,020mA 3.7 Charging Time Standard charge: 4hours 3.8 Max. Charge Current 2,000mA (not for cycle life) 8,000mA (for continuous discharge) 3.9 Max. Discharge Current 13,000mA (not for continuous discharge) 3.10 Discharge Cut-off Voltage 2.65V Capacity ≥ 2,010mAh
in „INR18650-35E mit Labornetzteil laden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MPQ4420H.pdf
temperature is calculated by P DMAX) = (T J Recommended Operating Conditions (MAX)-T A/θJA Exceeding the maximum allowable power dissipation will cause excessive die temperature, and the Continuous Supply Voltage V ........IN 4V to 36V regulator will go into thermal shutdown. Internal
in „DC-DC buck converter: Bauteile Identifikation“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ga1.pdf
Characteristics (@T =A+25°C, unless otherwise specified.) Test Symbol Parameter Conditions Min Typ Max Unit Circuit 0.4% 2.490 2.500 2.510 V REF 4 Reference Voltage VKA = VREF, KA= 10mA V 0.8% 2.480 2.500 2.520 0 to +70°C — 4.5 8 V = V VREF 4 Deviation of Reference Voltage KA REF -40 to +85°C — 4.5
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PDF
Puls_Oximetrie_Doktorarbeit.pdf
Desoxyhämoglobin unterscheiden muss, wird die Lichtabsorption bei zwei verschiedenen Wellenlängen z.B. 660nm und 940 nm gemessen. Die Transmission des Lichtes zweier Leuchtdioden (LED) der beiden Wellenlängen wird mit einem Photodetektor gemessen. Im roten Bereich (z.B. 660 nm) 7 absorbiert Oxyhämoglobin
in „LED - Sensor zur Messung der Herzfrequenz“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DDS.vhd
= DIN_CNT_MAX-1) then ROMADDR <= ADDRESS; -- clocked address --> BRAM end if; end if; end process; -- 1 clock cycle latency caused by BROM process begin wait until rising_edge(CLK); if BCK = '1' then if (DIN_CNT = DIN_CNT_MAX-1) then SIGN <= ACCUM(ACCUM'left); end if; end if; end process; QUADRANT <= ACCUM(ACCUM'left-1); RESULT <= signed(sine_LUT(ROMADDR)); ADDRESS <= to_integer(ACCUM(ACCUM'high-2 downto ACCUM'high-11))
in „DDFS von Lothar Miller ich steh aufm Schlauch“ · FPGA, VHDL & Co. ·
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PDF
Sanyo_CADNICA.pdf
Ratings & Dimensions 1. Standard Charge Batteries Nominal Nominal End Standard Charge Quick Charge Max. Outside dimensions Weight Model No. voltage capacity voltage Current Time Current Time Charging Dia.(D) Height (H) Size (V) (mAH) (V) (mA) (Hr) (mA) (Hr) volt. (V) (mm) (mm) (g) N-120TA 1.2 120 1.0
in „Was für ein Bauteile ist das“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OZ965.pdf
HCLMP Low Clamp Duty cycle of NDR LCLMP OPS=0 V, V LCLMP= 0V 92 94 96 % OPS=0 V, V LCLMP= 1.8V - 14 - Max. / Min. Duty cycle Duty cycle of NDR 6 - 95 % OZ965-DS-3.2 Page 5 OZ965 OZ965 OZ965 I Parameter Test Conditions Limits Unit Limits Unit 4.75V < VDD < 5.25V Min Typ Max Min Typ Max Under-Voltage Lockout
in „Background-Beleuchtung für TFT-Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AL-KY-E-2020.pdf
CapacitanceTolerance ± 20% (M) (at 20℃, 120Hz) Leakage Current I=0.01CV or 3µA, whichever is greater. Where, I : Max. leakage current (µA), C : Nominal capacitance (µF), V : Rated voltage (V) (at 2℃ after 2 minutes) Dissipation Factor Rated voltage (Vdc 6.3V 10V 16V 25V 35V 50V 63V 80V 100V (tanЎ) tanδ (Max.) 0.22
in „TL494 Step Up Wandler Regelkreis schwingt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BC846BDNPN.PDF
CHARACTERISTICS See detailed ordering and shipping information in the package Characteristic Symbol Max Unit dimensions section on page 6 of this data sheet. Total Device Dissipation Per Device PD FR−5 Board (Note 1) 380 mW TA= 25C 250 mW/C Derate Above 25C 3.0 mW/C Thermal Resistance, RqJA C/W Junction
in „Leckströme für NPN Transistor“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
KD035HVFMD057_SPEC_V1.2.pdf
angle Red 0.296 0.336 0.376 Color Filter R Y Chromacicity 0.280 0.320 0.360 G X Green 0.580 0.620 0.660 G Y 0.112 0.152 0.192 B X Blue 0.005 0.045 0.085 B Y Θ L -- 80 -- Hor. Θ R -- 80 -- Viewing angle CR>10 NOTE5 Θ U -- 80 -- Ver. Θ D -- 80 -- Option View Direction Free Part. No KD035HVFMD057 REV V1.2
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PDF
STK5Q4U362J-E-D.PDF
Unit Supply voltage V VP to NU, NV, NW, surge < 500 V (Note 3) 450 V CC Collector-emitter voltage V max VP to U, V, W ; U to NU ; V to NV ; W to NW 600 V CE VP, U, V, W, NU, NV, NW terminal current ±10 A Output current Io VP, U, V, W, NU, NV, NW terminal current, Tc = 100C ±5 A VP, U, V, W, NU, NV, NW
in „Ersatz für ON-Semi STK5Q4U362J-E / STK5Q4U363J-E bzw. passt da NFAQ1060L33T / NFAQ1060L36T“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT1513_data_en.pdf
VREF , FB= 0V, V SW and S/S pins open, unless otherwise noted. SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS V FB Reference Voltage Measured at FB Pin 1.233 1.245 1.257 V REF V = 0.8V 1.228 1.245 1.262 V C FB Input Current VFB V REF 300 550 nA 600 nA FB Reference Voltage Line Regulation 2.7V V IN 25V
in „6V Bleigel-Akku mit 12V/230mA Solarpanel laden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
05_TLV272CS-13.pdf
SO-8 150 °C/W MSOP-8 155 Recommended Operating Conditions C grade I grade Unit Symbol Parameter Min Max Min Max Single Supply 2.7 16 2.7 16 V VDD Supply Voltage Split Supply ±1.35 ±8 ±1.35 ±8 Common Mode Input Voltage 0 0 V VIC VDD-1.35 V DD-1.35 TA Operating Free Air Temperature 0 +70 -40 +125 °C TLV271
in „TLV272 Rail to Rail Problem DIODES“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AT89C51.pdf
(0.018) .656(16.7)SQ 0.80(0.031) BSC 0.30(0.012) .650(16.5) .590(15.0) .032(.813) .021(.533) .026(.660) .695(17.7)SQ .013(.330) .685(17.4) .050(1.27) TYP .043(1.09) .500(12.7) REF SQ .020(.508) .120(3.05) .090(2.29) 10.10(0.394) .180(4.57) 9.90(0.386) SQ .165(4.19) 0 1.20(0.047) MAX 7 0.20(.008) 0.09
in „Interner speicheraufbau eines 89C51 controllers“ · Mikrocontroller und Digitale Elektronik ·
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Wide_Band_Power_Analyzer_System_NORMA_D_6000.pdf
Blatt 1 / DIN VDE 0411 Teil 1, Klimaklasse : KYG nach DIN VDE 40040, Festigkeit: Kapitel 11 Feuchte max. 85%, keine Betauung Schüttelprüfung: Prüfung in Gebrauchslage, in allen 3 Schwing- Sicherheit : IEC 61010-1, EN 61010-1 ebenen mit 0,15 mm Amplitude und 10...60 Hz, max. Spannung gegen Erde 1kV CATIII
in „suche Pinning für Einbaukarte Leistungsanalysator Norma D6000“ · PC Hard- und Software ·