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LT1358__25MHz__LT.pdf
15 O O V V M A = 1 U U 4 A V T 10 T L U VS= ±15V O T O R = 2k 2 V = ±5V O 5 L RS = 2k T AV = 1, 1% MAX DISTORTION L AV = –1, 2% MAX DISTORTION 2% MAX DISTORTION 0.0001 0 0 10 100 1k 10k 100k 100k 1M 10M 100k 1M 10M FREQUENCY (Hz) FREQUENCY (Hz) FREQUENCY (Hz) 135859 G25 135859 G26 135859 G27 135859fb
in „defekte LT1358“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HM-TRP-433S.PDF
//www.hoperf.com HM-TRPSeries 100mW Transceiver modules V1.0 5. Maximum specifiction Parameter Min Max Unit Power supply(VCC) -0.3 +3.6 V Storage temperature -40 +150 ℃ Operate temperature -40 +85 ℃ Reflow temperature +260 ℃ 6. Parameter Parameter Condition Min Typical Max Unit Power supply ( VCC) 2.4
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PDF
HM-TRP-433S.PDF
//www.hoperf.com HM-TRPSeries 100mW Transceiver modules V1.0 5. Maximum specifiction Parameter Min Max Unit Power supply(VCC) -0.3 +3.6 V Storage temperature -40 +150 ℃ Operate temperature -40 +85 ℃ Reflow temperature +260 ℃ 6. Parameter Parameter Condition Min Typical Max Unit Power supply ( VCC) 2.4
in „HM-TRP Reading the current Config parameter“ · HF, Funk und Felder ·
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PDF
MAX186-MAX188.pdf
AGND, DGND.............SS - 0.3V) toDDV+ 0.3V) CERDIP (derate 11.11mW/°C above +70°C)................889mW A CH0–CH7 Total Input Current ..................................Operating Temperature Ranges: VREF to AGND ..................................DD.+ 0.3V)0.3V toMAX186_C/MAX188_C.....................
in „Allgemeine Frage zu ADC Spezifikationen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX146-MAX147.pdf
11.11mW/°C above +70°C).............. 889mW X Digital Inputs to DGND.......................................Operating Temperature Ranges A Digital Outputs to DGND .......................DD.. -0.3V to (V MAX146_C_P/MAX147_C_P.................
in „Atmega16 und spi bus“ · Mikrocontroller und Digitale Elektronik ·
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MAX146-MAX147.pdf
11.11mW/°C above +70°C).............. 889mW X Digital Inputs to DGND.......................................Operating Temperature Ranges A Digital Outputs to DGND .......................DD.. -0.3V to (V MAX146_C_P/MAX147_C_P.................
in „Atmega16 und spi bus“ · Mikrocontroller und Digitale Elektronik ·
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73493.pdf
D 4 D E3 D D L 3 L A A b2 Detail “A” c e b E2 0.010 AM 2 PL ° INCHES MILLIMETERS - 0° L DIM. MIN. MAX. MIN. MAX. A 0.160 0.190 4.064 4.826 L1 b 0.020 0.039 0.508 0.990 b1 0.020 0.035 0.508 0.889 DETAIL A (ROTATED 90°) b2 0.045 0.055 1.143 1.397 Thin lead 0.013 0.018 0.330 0.457 c* Thick lead 0.023 0.028
in „Messungen mit DMM Dual-Slope Verfahren am PMOS“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Bours_0603.pdf
Recommendations Profile Feature Pb-Free Assembly Tp Preheat / Soak: Tc-5 °C Temperature Min. (T ) 150 °C MAX. RAMP UP RATE = 3 °C/s p smin MAX. RAMP DOWN RATE = 6 °C/s Temperature Max. (T smax) 200 °C TL Time (s ) from (sminto Tsmax) 60~120 seconds Tsmax PREHEAT AREA L ) Ramp Up Rate (T tL T )p 3 °C / second
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LT.pdf
LECTR AL CHAICCTERIST ICS T j 25°C, V = INV, unless otherwise noted. PARAMETER CONDITIONS MIN TYP MAX UNITS Switch “Off” Leakage LT1074 VIN ≤ 25V, SW = 0 5 300 A V = V V = 0 (Note 7) 10 500 A IN MAX, SW LT1076 VIN = 25V, SW = 0 150 A V = V V = 0 (Note 7) 250 A IN MAX, SW Supply Current (Note 2) V FB2.5V
in „Prinzipielle Fragen zum Schaltregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT1074.pdf
LECTR AL CHAICCTERIST ICS T j 25°C, V = INV, unless otherwise noted. PARAMETER CONDITIONS MIN TYP MAX UNITS Switch “Off” Leakage LT1074 VIN ≤ 25V, SW = 0 5 300 A V = V V = 0 (Note 7) 10 500 A IN MAX, SW LT1076 VIN = 25V, SW = 0 150 A V = V V = 0 (Note 7) 250 A IN MAX, SW Supply Current (Note 2) V FB2.5V
in „LT1074HV wozu Pin VC Datenblatt strange“ · Mikrocontroller und Digitale Elektronik ·
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PDF
3260.pdf
4.04 0.062 1.57 45° 0.058 45° 1.47 0.122 3.10 0.117 2.97 45° 45° 0.085 1 2 3 0.031 2.16 1 2 3 0.79 MAX MAX 0.640 0.0173 16.26 0.44 0.600 0.0138 15.24 0.35 SEE NOTE 0.0189 SEE NOTE 0.48 0.0142 0.36 0.050 1.27 BSC BSC Dwg. MH-014E in Dwg. MH-014E mm Surface-Mount Lead Form (Suffix '-TL') ±0.005 ±0.13 MAX02 0MAX1 0.004 0°–8° 0.10 0°–8° MAX 0MIN0 MAX MIN1 FLAT Dwg. MH-015 in FLAT Dwg. MH-015 mm NOTES: 1. Tolerances on package height and width represent allowable mold offsets. Dimensions given are measured at
in „Schaltnetzteil TNY Ersatztyp Kompatibel ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
OPA128KM.pdf
Difet Electrometer-Grade OPERATIONAL AMPLIFIER FEATURES APPLICATIONS ULTRA-LOW BIAS CURRENT: 75fA max ELECTROMETER LOW OFFSET: 500 V max MASS SPECTROMETER LOW DRIFT: 5 V/ °C max CHROMATOGRAPH HIGH OPEN-LOOP GAIN: 110dB min ION GAUGE HIGH COMMON-MODE REJECTION: PHOTODETECTOR 90dB min RADIATION-HARD EQUIPMENT
in „OPA 128 KM - veraltet?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTC1864.pdf
CC IREF Reference Current (LTC1864 SO-8 and MSOP, CONV = VCC ● 0.001 3 μA LTC1865 MSOP) SMPL = SMPL(MAX) ● 0.05 0.1 mA ICC Supply Current CONV = VCC After Conversion ● 0.001 3 μA CONV = VCC After Conversion, H-Grade ● 0.001 5 μA f = f 0.85 1.3 mA SMPL SMPL(MAX) ● P D Power Dissipation SMPL = SMPL(MAX)
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ADC_LTC1865.pdf
CC IREF Reference Current (LTC1864 SO-8 and MSOP, CONV = VCC ● 0.001 3 μA LTC1865 MSOP) SMPL = SMPL(MAX) ● 0.05 0.1 mA ICC Supply Current CONV = VCC After Conversion ● 0.001 3 μA CONV = VCC After Conversion, H-Grade ● 0.001 5 μA f = f 0.85 1.3 mA SMPL SMPL(MAX) ● P D Power Dissipation SMPL = SMPL(MAX)
in „LTC1865 Halber Messbereich“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ina105.pdf
AMPLIFIER FEATURES APPLICATIONS CMR 86dB min OVER TEMPERATURE DIFFERENTIAL AMPLIFIER GAIN ERROR: 0.01% max INSTRUMENTATION AMPLIFIER BUILDING BLOCK NONLINEARITY: 0.001% max NO EXTERNAL ADJUSTMENTS UNITY-GAIN INVERTING AMPLIFIER REQUIRED GAIN-OF-1/2 AMPLIFIER EASY TO USE NONINVERTING GAIN-OF-2 AMPLIFIER COMPLETE
in „"Hallsonde für Oszilloskop" im Eigenbau?!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HT-12F.pdf
device reliabil- ity. Electrical Characteristics Ta=25°C Test Conditions Symbol Parameter Min. Typ. Max. Unit V DD Conditions VDD Operating Voltage ¾ ¾ 2.4 5 12 V 5V ¾ 0.1 1 mA ISTB Standby Current Oscillator stops 12V ¾ 2 4 mA I Operating Current 5V No load, f =150kHz 200 400 DD OSC ¾ mA Data Output
in „Funkübertragung HFS301“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Richtek-Tech-RT9193-33GB.pdf
power dissipation can RT9193-15xU5 be calculated by following formula : CIN C OUT= 1μF, X7R 0.001 PD(MAX) = ( J(MAX)− TA) /θJA 0 50 100 150 200 250 300 Load Current (mA) Where T J(MAX) is the maximum operation junction temperature 125°C, T iA the ambient temperature and Figure1 the θJA is the junction
in „CH340C bricht Verbindung ab / Reset“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RT9193-33GB.pdf
power dissipation can RT9193-15xU5 be calculated by following formula : CIN C OUT= 1μF, X7R 0.001 PD(MAX) = ( J(MAX)− TA) /θJA 0 50 100 150 200 250 300 Load Current (mA) Where T J(MAX) is the maximum operation junction temperature 125°C, T iA the ambient temperature and Figure1 the θJA is the junction
in „Fragen Stromversorgung / Schaltplan“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
10134fd.pdf
Precision Specs It is no longer necessary to compromise specifications, n Guaranteed Offset Voltage: 150µV Max whilesavingboardspaceandcost,ascomparedtosingle n Guaranteed Low Drift: 2µV/°C Max operational amplifiers. n Guaranteed Offset Current: 0.8nA Max TheLT1014’slowoffsetvoltageof50µV,driftof0.3µV/°C, n
in „LT1013 Unterschied D und P Package“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
INA101.pdf
® INA101 High Accuracy INSTRUMENTATION AMPLIFIER FEATURES APPLICATIONS LOW DRIFT: 0.25 V/ °C max STRAIN GAGES LOW OFFSET VOLTAGE: 25 V max THERMOCOUPLES LOW NONLINEARITY: 0.002% RTDs LOW NOISE: 13nV/ √ Hz REMOTE TRANSDUCERS HIGH CMR: 106dB AT 60Hz LOW-LEVEL SIGNALS 10 HIGH INPUT IMPEDANCE: 10 MEDICAL
in „Pulsmessung und Anzeige der Pulswelle auf einem LCD Display“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
648,649,650,651,652,653,654,655,657,658,659,660,661,662,663,664,665,666,668,669,670,671,672,673,674,675,677,678,679,680,681,682,683,685,686,687,688,689,690,692,693,694,695,696,697,699,700,701,702,703,704,706,707,708,709,710,712,713,714,715,716,718,719,720,721,723,724,725,726,727,729,730,731,732,734,735,736,737,739,740,741,742,744,745,746,748,749,750,751,753,754,755,757,758,759,761,762,763,764,766,767,768,770,771,772,774,775,776,778,779,781,782,783,785,786,787,789,790,792,793,794,796,797,799,800,801,803,804,806,807,808,810,811,813,814,816,817,819,820,822,823,824,826,827,829,830,832,833,835,836,838,839,841,842,844,846,847,849,850,852,853,855,856,858,860,861,863,864,866,867,869,871,872,874,875,877,879,880,882,884,885,887,889,890,892,894,895,897,899,900,902,904,905,907,909,911,912,914,916,918,919,921,923,925,926,928,930,932,934,935,937,939,941,943,944,946,948,950,952,954,956,957,959,961,963,965,967,969,971,973,975,977,979,981,982,984,986,988,990,992,994,996,998,1000,1002
in „HSV RGB Led Dimmer, C Code & Video & Doku“ · Projekte & Code ·
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SUM55P06-19L.pdf
91000 Package Information Vishay Siliconix TO-263 (D PAK): 3-LEAD INCHES MILLIMETERS -B- A DIM. MIN. MAX. MIN. MAX. E c2 A 0.160 0.190 4.064 4.826 L 2 D E1 -A- D K 6 b 0.020 0.039 0.508 0.990 b1 0.020 0.035 0.508 0.889 E3 1 b2 0.045 0.055 1.143 1.397 D Thin lead 0.013 0.018 0.330 0.457 D c* L Thick lead
in „DC/DC Wandler Vin 15-50V, Vout 12V 9A!“ · Analoge Elektronik und Schaltungstechnik ·
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Vishay-TFPT.pdf
voltage or P70 x R whichever is less (4)Zero power or zero dissipation is considered as measuring power max. 1 % of rated powe70P (5)Please refer to APPLICATION INFORMATION (6)Power levels are depending on way of mounting and substrates used. Higher power up to 200 mW at 25 °C (P ) can be tolerated on uniform
in „SMD Temperaturfühler an Wetterstation“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
8560w.pdf
Gewicht 3.1 kg Lokalisierung Deutsch / Deutschland Prozessor Intel Core i5 2540M / 2.6 GHz Prozessor Max. TurboGeschwindigkeit 3.3 GHz MultiCoreTechnologie DualCore 64BitComputing Ja Funktionen Intel Turbo Boost Technology 2.0 Chipsatz Mobile Intel QM67 Express CacheSpeicher L3 Typ Installierte Größe 3 MB RAM Installierte Anzahl 4 GB / 16 GB (Max) Technologie DDR3 SDRAM 1333 MHz Übereinstimmung der PC310600 Speicherspezifikation Formfaktor SODIMM, 204polig MassenspeicherController Serial ATA Typ SATASchnittstelle Serial ATA300 Speicher
in „Suche Laptop mit COM-Port und Modem“ · PC Hard- und Software ·
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PDF
Allegro_Stromsensor_0755-050.pdf
ambient temperature range unless otherwise stated Characteristic Symbol Test Conditions Min. Typ. Max. Units Primary Sensed Current I 0 – 50 A P Supply Voltage V CC 4.5 5.0 5.5 V Supply Current I V = 5.0 V, output open 6.5 8 10 mA CC CC Output Resistance ROUT OUT = 1.2 mA – 1 2 Ω Output Capacitance
in „Strommessung an 230V AC“ · Mikrocontroller und Digitale Elektronik ·
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INA138.pdf
. A S IN+ OUT INA138NA INA168NA PARAMETER CONDITION MIN TYP MAX MIN TYP MAX UNITS INPUT Full-Scale Sense Voltage V SENSE= VIN– VIN 100 500 mV Common-Mode Input Range 2.7 36 60 V Common-Mode Rejection V IN+ 2.7V to 40V,SENSE= 50mV 100 120 dB V IN+ 2.7V to 60V,SENSE
in „AD8628/AD8629/AD8630 Instrumentenverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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GDS-1022_sheet.pdf
32 , 64 , 128 , 256 Voltage Measurement CURSORS AND MEASUREMENT V pp, Vamp, Vavg, Vrms, Vhi Vlo V max, Vmin, Rise Preshoot/ Overshoot , Fall Preshoot/Overshoot Time Measurement Freq , Period , Rise Time , Fall Time , Positive Width , Negative Width , Duty Cycle Cursors Measurement Voltage difference
in „GwInstel GDS-1042 (GDS-1000 Serie) Erfahrungen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1LTC2641_2642.pdf
LTC2641-16 LTC2641A-16 LTC2642-12 LTC2642-14 LTC2642-16 LTC2642A-16 SYMBOL PARAMETER CONDITIONS MIN TYP MAX MIN TYP MAX MIN TYP MAX MIN TYP MAX UNITS Static Peformance N Resolution l 12 14 16 16 Bits Monotonicity l 12 14 16 16 Bits DNL Differential Nonlinearity(Note 3) l ±0.5 ±0.5 ±1 ±0.5 ±1 ±0.5 ±1 LSB INL
in „AVR ISP mkII sagt Kurzschluss zwischen SCK & MOSI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INA138.PDF
noted. A S IN+ OUT INA138NA INA168NA PARAMETER CONDITION MIN TYP MAX MIN TYP MAX UNITS INPUT Full-Scale Sense Voltage V SENSE= VIN– VIN 100 500 mV Common-Mode Input Range 2.7 36 60 V Common-Mode Rejection V IN+ 2.7V to 40V,SENSE= 50mV 100 120 dB V IN+ 2.7V to 60V,SENSE
in „Stromverbrauch am Akku messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GDS-1000_D.pdf
32 , 64 , 128 , 256 CURSORS AND MEASUREMENT Voltage Measurement V pp, Vamp , avg, Vrms, Vhi Vlo V max , min , Rise Preshoot/ Overshoot , Fall Preshoot/Overshoot Time Measurement Freq , Period , Rise Time , Fall Time , Positive Width , Negative Width , Duty Cycle Cursors Measurement Voltage difference
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SF_Sensofoil_Produktinfo_DE_02_2012_1_.pdf
KREISFÖRMIGE POTENTIOMETER Radius Aussen (ra) mm min 22 mm Radius Innen (ri) mm Schleiferradius (rm) mm min / max MW Anfang (MWa) o 0 ° - 360 ° MW Ende (MWe) o 0 ° - 360 ° LINEARE POTENTIOMETER Messlänge mm 9 mm - 800 mm Gesamtlänge mm 27 mm - 1,018 mm Gesamtbreite mm min. 9 mm Sensofoil Basis: PET FR4 Nach Anforderung
in „ADW - HB628 von H-Tronic - Folienpotentiometer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTC_201.pdf
= –15V, GND= 0V. LTC201AM/LTC202M/ LTC201AC/LTC202C/ LTC203M LTC203C PARAMETER CONDITIONS MIN TYP MAX MIN TYP MAX UNITS Analog Signal Range ● ±15 ±15 V R ON VS= ±10V TMIN 110 125 Ω I = 1mA 25°C 65 110 65 125 Ω D TMAX 160 160 Ω ∆R ONvs VS 20 20 % ∆R ONvs Temperature 0.5 0.5 %/°C R ONMatch VS= 0V, DS=
in „Meßverstärker für 1/f-Rauschen 0.1 - 10 Hz“ · Analoge Elektronik und Schaltungstechnik ·
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lt1025_datasheet.pdf
) MAX .015 – .060 (0.381 – 1.524) .008 – .018 (0.203 – 0.457) 0° – 15° .045 – .065 .125 NOTE: LEAD DIMENSIONS APPLY TO SOLDER DIP/PLATE (1.143 – 1.651) OR TIN PLATE LEADS 3.175 .014 – .026 .100 MIN (0.360
in „Abgastemperatursensor mit LT1025“ · Mikrocontroller und Digitale Elektronik ·
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RCV420.pdf
SUPPLY VOLTAGE 80 –80 ) ) ( TA= –55°C ( e g –70 n 70 a TA= +25°C R T = +25°C R –60 e A e o 60 o M - –50 Max Rating = –40V n o T = –55°C to +125°C o TA= +125°C m –40 A m 50 m o Max Rating = 40V C e e –30 t 40 t +VS= +11.4V to +20V s g –20 P –V = –5V to –20V e S N 30 –10 11 12 13 14 15 16 17 18 19 20 –5 –10
in „Frage zu 4-20mA Receiver RCV420“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GDS-2204.pdf
4 , 8 , 16 , 32 , 64 , 128 , 256 CURSORS AND Voltage Measurement V pp, Vamp , avg, Vrms, Vhi Vlo V max , min , Rise Preshoot/ Overshoot , Fall Preshoot/Overshoot MEASUREMENT Time Measurement Freq , Period , Rise Time , Fall Time , Positive Width , NegativeWidth , Duty Cycle Delay Measurement Eight different
in „Brauche Tips beim Oszikauf“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RequiresAcrobat6.pdf
0.25)5° 0.009 (0.23) Min. 0.155 (3.94) 0.050 (1.27) 0.013 (0.33) 0.007 (0.18) 0.069 (1.75) 0.035 (0.889) 0.050 typ. 0.053 (1.35) 0.025 (0.635) (1.27) 0.009 (0.23) 0°– 8° 0.050(1.27) 0.004 (0.10) 0.016 (0.41) Mounting Pad Layout Mechanical Data Features Case: SO-8 molded plastic body • Advanced Trench
in „Ersatz-MosFet für GF9926“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
20110326_log.txt
Performing PCI device configuration: [0/ 8/0] SATA : CacheLineSize=8 ( 0) LatencyTimer=64 ( 0) MIN_GNT= 0 MAX_LAT= 0 [0/ 9/0] ISP1561_OHCI1: CacheLineSize=8 ( 0) LatencyTimer=40 ( 0) MIN_GNT= 1 MAX_LAT=42 [0/ 9/1] ISP1561_OHCI1: CacheLineSize=8 ( 8) LatencyTimer=40 ( 0) MIN_GNT= 1 MAX_LAT=42 [0/ 9/2] ISP1561_EHCI : CacheLineSize=8 ( 8) LatencyTimer=16 ( 0) MIN_GNT= 2 MAX_LAT=16 [0/10/0] DP83815/16 : CacheLineSize=0 ( 0) LatencyTimer=52 ( 0) MIN_GNT=11 MAX_LAT=52 [0/11/0]: no device at location [0/12/0]: no device at location OAL: GIC Interrupt Handling Method: Priority
in „Pollin - Receiver-Mainboard mit Twin DVB-[T,C] Tuner, NXP PNX8950EH“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INA102.pdf
LOW OFFSET VOLTAGE DRIFT: REMOTE TRANSDUCER AMPLIFIER 2 V/ C max LOW-LEVEL SIGNAL AMPLIFIER LOW OFFSET VOLTAGE: 100 V max MEDICAL INSTRUMENTATION LOW NONLINEARITY: 0.01% max 10 MULTICHANNEL SYSTEMS HIGH INPUT IMPEDANCE: 10 BATTERY POWERED EQUIPMENT DESCRIPTION The
in „Pulsmessung und Anzeige der Pulswelle auf einem LCD Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX3816A.pdf
8 CLOCK_C TRANSIENT RESPONSE CLOCK_C TRANSIENT RESPONSE DATA_C TRANSIENT RESPONSE WITH AND WITHOUT MAX3816A, 30m CABLE LOAD WITH AND WITHOUT MAX3816A, 60m CABLE LOAD 3 WITH AND WITHOUT MAX3816A, 60m CABLE LOAD (3100pF) (4700pF) (4700pF) X 0 0 0 t t t A 8 8 8 WITH A WITH A WITH A MAX3816A M MAX3816A M MAX3816A M M i i i / / / 1 1 1 WITHOUT MAX3816A WITHOUT WITHOUT MAX3816A MAX3816A 2μs/div 2μs/div 2μs/div 3.3kΩ PULLUP RESISTOR AT EACH END OF CABLE. 3.3kΩ PULLUP RESISTOR AT EACH END OF CABLE. 3.3kΩ PULLUP
in „[S] Extender für HDMI über CAT5e (1080p@60Hz)“ · Markt ·
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PDF
ina105.pdf
AMPLIFIER FEATURES APPLICATIONS CMR 86dB min OVER TEMPERATURE DIFFERENTIAL AMPLIFIER GAIN ERROR: 0.01% max INSTRUMENTATION AMPLIFIER BUILDING BLOCK NONLINEARITY: 0.001% max NO EXTERNAL ADJUSTMENTS UNITY-GAIN INVERTING AMPLIFIER REQUIRED GAIN-OF-1/2 AMPLIFIER EASY TO USE NONINVERTING GAIN-OF-2 AMPLIFIER COMPLETE
in „Spannungs / Strom Wandler mit Offset versehen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TM070RDH10_7_TIANMA.pdf
TIANMA MICRO-ELECTRONICS TM070RDH10 V1.1 4.2 Backlight Unit Driving Condition Item Symbol MIN TYP MAX Unit Remark Forward Current I - 160.0 200 mA F 24 LEDs Forward Current Voltage VF - 9.6 10.8 V (3 LED Serial, 8 Backlight Power W BL - 1536 2160 mW LED Parallel) Consumption -- 10000 (20000) -- hrs
in „LCD 800x480 ohne Display Controller was damit machen? oder hat jemand einen Controller dafür?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
opa128lm.pdf
Difet Electrometer-Grade OPERATIONAL AMPLIFIER FEATURES APPLICATIONS ULTRA-LOW BIAS CURRENT: 75fA max ELECTROMETER LOW OFFSET: 500 V max MASS SPECTROMETER LOW DRIFT: 5 V/ °C max CHROMATOGRAPH HIGH OPEN-LOOP GAIN: 110dB min ION GAUGE HIGH COMMON-MODE REJECTION: PHOTODETECTOR 90dB min RADIATION-HARD EQUIPMENT
in „Verkaufe 15 x OPA128LM“ · Markt ·
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PDF
opa129.pdf
Ultra-Low Bias Current Difet ® OPERATIONAL AMPLIFIER FEATURES APPLICATIONS ULTRA-LOW BIAS CURRENT: 100fA max PHOTODETECTOR PREAMP LOW OFFSET: 2mV max CHROMATOGRAPHY LOW DRIFT: 10 V/ °C max ELECTROMETER AMPLIFIERS HIGH OPEN-LOOP GAIN: 94dB min MASS SPECTROMETER LOW NOISE: 15nV/ √ Hz at 10kHz pH PROBE AMPLIFIER
in „Guarding in Eagle“ · Platinen ·
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PDF
ISO124.pdf
Bridges, and RATED 1500Vrms HIGH IMR: 140dB at 60Hz Flow Meters, 4mA to 20mA Loop Isolation 0.010% max NONLINEARITY GROUND LOOP ELIMINATION MOTOR AND SCR CONTROL BIPOLAR OPERATION: V O = ±10V POWER MONITORING 16-PIN PLASTIC DIP AND 28-LEAD SOIC EASE OF USE: Fixed Unity Gain PC-BASED DATA ACQUISITION
in „Optokoppler etc“ · Mikrocontroller und Digitale Elektronik ·
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PDF
3971fd.pdf
the output voltage, V is the catch diode drop (~0.5V), highest acceptable switching frequency (f SW(MAX) ) for a D given application can be calculated as follows: VSW is the internal switch drop (~0.5V at max load),SW is the switching frequency (set by R T), and OFF(MIN) is VOUT + VD the minimum switch
in „[V] LT3971IDD-5PBF-ND“ · Markt ·
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PDF
OM5610_2_1_.pdf
search readata shift MBH888 MSB is LOW Fig.2 Read data. handbook, full pagewidth WREN CLCK DATA MBH889 data shift data change Fig.3 Write data. 1997 Apr 25 6 Philips Semiconductors Preliminary specification Matchbox global FM tuner OM5610 BUS TIMING handbook, full pagewidth WREN V CLCK IH VIL DATA t t t MBH890 HIGH LOW da Fig.4 Bus timing. Table 6 Digital inputs SYMBOL PARAMETER MIN. MAX. UNIT Digital inputs VIH HIGH level input voltage 1.4 − V VIL LOW level input voltage − 0.6 V Timing clk clock frequency − 300 kHz HIGH clock HIGH time 1.67 − s LOW clock LOW time 1.67 − s da shift
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PDF
OM5610_2_1_.pdf
search readata shift MBH888 MSB is LOW Fig.2 Read data. handbook, full pagewidth WREN CLCK DATA MBH889 data shift data change Fig.3 Write data. 1997 Apr 25 6 Philips Semiconductors Preliminary specification Matchbox global FM tuner OM5610 BUS TIMING handbook, full pagewidth WREN V CLCK IH VIL DATA t t t MBH890 HIGH LOW da Fig.4 Bus timing. Table 6 Digital inputs SYMBOL PARAMETER MIN. MAX. UNIT Digital inputs VIH HIGH level input voltage 1.4 − V VIL LOW level input voltage − 0.6 V Timing clk clock frequency − 300 kHz HIGH clock HIGH time 1.67 − s LOW clock LOW time 1.67 − s da shift
in „[V] FM Tuner OM5610“ · Markt ·
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PDF
OM5610_2_1_.pdf
search readata shift MBH888 MSB is LOW Fig.2 Read data. handbook, full pagewidth WREN CLCK DATA MBH889 data shift data change Fig.3 Write data. 1997 Apr 25 6 Philips Semiconductors Preliminary specification Matchbox global FM tuner OM5610 BUS TIMING handbook, full pagewidth WREN V CLCK IH VIL DATA t t t MBH890 HIGH LOW da Fig.4 Bus timing. Table 6 Digital inputs SYMBOL PARAMETER MIN. MAX. UNIT Digital inputs VIH HIGH level input voltage 1.4 − V VIL LOW level input voltage − 0.6 V Timing clk clock frequency − 300 kHz HIGH clock HIGH time 1.67 − s LOW clock LOW time 1.67 − s da shift
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PDF
OM5610.pdf
search readata shift MBH888 MSB is LOW Fig.2 Read data. handbook, full pagewidth WREN CLCK DATA MBH889 data shift data change Fig.3 Write data. 1997 Apr 25 6 Philips Semiconductors Preliminary specification Matchbox global FM tuner OM5610 BUS TIMING handbook, full pagewidth WREN V CLCK IH VIL DATA t t t MBH890 HIGH LOW da Fig.4 Bus timing. Table 6 Digital inputs SYMBOL PARAMETER MIN. MAX. UNIT Digital inputs VIH HIGH level input voltage 1.4 − V VIL LOW level input voltage − 0.6 V Timing clk clock frequency − 300 kHz HIGH clock HIGH time 1.67 − s LOW clock LOW time 1.67 − s da shift
in „[V] FM Tuner OM5610“ · Markt ·
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PDF
IR-Protokolle_Diplomarbeit.pdf
name, f) { zeit = 50; // Startzeitwert 50ms zmode = 0x00FFF010; // 0 0 ... ... help ... zeit open max_y = 280; // 320-30 Pixel sichtbare Displayhoehe max_x = 238; // 240-2 Pixel nutzbare Displaybreite resize (max_x, max_y); timer = new QTimer(this); connect( timer, SIGNAL(timeout()), SLOT(animate())
in „Lernfunktion für IR Signale.“ · Mikrocontroller und Digitale Elektronik ·