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LHC1-22XX_Super_LEDs.pdf
2050 130 450 13.0 LHC1-5770-1204 80 82 2200K 1325 1475 92 450 13.0 LHC1-2280-1204 80 82 2700K 1550 1700 106 450 13.0 LHC1-2780-1204 LUXEON 80 82 3000K 1625 1825 115 450 13.0 LHC1-3080-1204 CoB 1204 80 82 3500K 1725 1900 119 450 13.0 LHC1-3580-1204 80 82 4000K 1725 1950 122 450 13.0 LHC1-4080-1204 80 82
in „Entladeformel einer Spule“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
uCurrentArticle.pdf
mA 0.15mV / µA Fluke 289 (50,000 count) $950 1.8mV / mA 0.1mV / µA Gossen MetraHit E-XTRA (60,000 $1700 300mV max 150mV max count) Fluke 8808A (5.5 digit) $1100 1mV / mA 1mV max Fluke 8846A (6.5 digit) $2100 500mV max 15mV max Keithley 197A Microvolt (5.5 digit) N/A 300mV max 300mV max As you can see
in „Strom im mA Bereich mit Oszi messen“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
P004-005_Technical-Info_171.pdf
. . . .>250 Temperature rise (terminals) at end of rated life . . . . . . . . . . . . . . . . . . .max 30˚K (UL 1054), max 55˚K (EN 61058-1) PROPERTIES Physical Humidity resistance at 91-95% relative humidity (to subsequently comply with requirements of the Dielectric strength test) . . . . . . . . .
in „Schaltvermögen von Schiebeschaltern (Netzspannungsumschalter)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
fx614.pdf
input pulled high and then low within the time limits set out in Figure 6c. Td = Internal FX614 delay; max 1μs Tr = RDYN low to CLK going low; max 800 Ts = data set up time; min 1μs Tchi = CLK high time; min 1 Th = data hold time; min 1μs Figure 6c FSK Operation with Tx Data Retiming To ensure synchronisation
in „FX614 ,TCM3105 Bezugsquellen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PR02.pdf
1 i PR01 Pulse on a regular basis; maximum permissible peak pulse power (P max.) as a function of pulse duration it) 1200 U max. (V) 1000 800 600 400 200 0 10-6 10 -5 10-4 10 -3 10-2 10 -1 (s) 1 ti PR01 Pulse on a regular basis; maximum permissible peak pulse voltage (U max.)
in „Warum explodiert dieser Widerstand nicht?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FSP_SHB_D.pdf
7 ________ - dBm 1700 MHz 7 ________ - dBm 2500 MHz 7 ________ - dBm 7 ________ - dBm 2990 MHz FSP 7/ 13/ 30/ 40: 3100 MHz 10 ________ - dBm 5000 MHz 10 ________ - dBm 6999 MHz 10 ________ - dBm FSP 13/ 30/ 40: 7100 MHz
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PDF
MAX1703_1_.pdf
linear regulator. PART TEMP. RANGE PIN-PACKAGE For lower-power outputs and a smaller package, refer MAX1703ESE -40°C to +85°C 16 Narrow SO to the MAX1700/MAX1701. For dual outputs (step-up plus linear regulator), refer to the MAX1705/MAX1706. For an on-board analog-to-digital converter, refer to the MAX848
in „Verständnisproblem des Max1703 Datenblatt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
B43858.pdf
and capacitance ratings are available upon request. Technical data and ordering codes CR Case ESR max ESR max Zmax IAC,R IAC,max Ordering code 120 Hz dimensions 120 Hz 120 Hz 100 kHz 100 kHz 100 kHz (composition see 20 °C d × l ▯25 °C 20 °C 20 °C 105 °C 85 °C below) F mm mA mA VR= 160 V DC 22 10 × 16
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PDF
x_amd_phenom_10h_2010_Power_and_Thermal_Data_Sheet_.pdf
IDD Max 3,10 35.7 A 26.1 A 31.7 A 26.2 A CPU COF 6 1700 MHz 1800 MHz TDP 3,7 42.0 W 28.2 W 36.7 W 28.4 W S0.C0.P2 VID_VDD Min 9 1.050 V 0.850 V 1.050 V 0.850 V VID_VDD Max 9 1.100 V 1.100 V 1.100 V 1.100 V
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Datei
0001-Visual-Studio-2015-Files.patch
_MAX INT64_MAX -#define UINT_LEAST8_MAX UINT8_MAX -#define UINT_LEAST16_MAX UINT16_MAX -#define UINT_LEAST32_MAX UINT32_MAX -#define UINT_LEAST64_MAX UINT64_MAX - -// 7.18.2.3 Limits of fastest minimum-width
in „Simulavr unter Windows mit Visual Studio 2015 kompilieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INA125.pdf
2.5V, 5V or 10V INDUSTRIAL PROCESS CONTROL SLEEP MODE FACTORY AUTOMATION LOW OFFSET VOLTAGE: 250 V max MULTI-CHANNEL DATA ACQUISITION LOW OFFSET DRIFT: 2 V/°C max BATTERY OPERATED SYSTEMS LOW INPUT BIAS CURRENT: 20nA max GENERAL PURPOSE INSTRUMENTATION HIGH CMR: 100dB min V+ SLEEP LOW NOISE: 38nV/√Hz
in „Signal einer Wägezelle auswerten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INA125.pdf
2.5V, 5V or 10V INDUSTRIAL PROCESS CONTROL SLEEP MODE FACTORY AUTOMATION LOW OFFSET VOLTAGE: 250 V max MULTI-CHANNEL DATA ACQUISITION LOW OFFSET DRIFT: 2 V/°C max BATTERY OPERATED SYSTEMS LOW INPUT BIAS CURRENT: 20nA max GENERAL PURPOSE INSTRUMENTATION HIGH CMR: 100dB min V+ SLEEP LOW NOISE: 38nV/√Hz
in „Verstärker für Messbrücke“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FRAM_RAMTRON_FM24C04A.pdf
DD+ 0.5 V VOL Output Low Voltage @ IOL= 3 mA 0.4 V R Input Resistance (WP, A2,A1) IN For VIN V IL(max) 50 KΩ 5 For VIN V IH(min) 1 MΩ V Input Hysteresis 0.05 V V 4 HYS DD Notes 1. SCL toggling between VDD0.3V and V ,SSther inputs VSSr V DD.3V 2. SCL = SDA = V .DDll inputs V SS V . DDop command issued
in „Verständnisfrage: Pinning ATMEGA32 -> FRAM“ · 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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Datei
Scan_iomega.xml
1434,1443,1455,1461,1494,1500-1501,1503,1521,1524,1533,1556,1580,1583,1594,1600,1641,1658,1666,1687-1688,1700,1717-1721,1723,1755,1761,1782-1783,1801,1805,1812,1839-1840,1862-1864,1875,1900,1914,1935,1947,1971-1972,1974,1984,1998-2010,2013,2020-2022,2030,2033-2035,2038,2040-2043,2045-2049,2065,2068,2099-2100,2103,2105
in „NAS Konfigurationswebseite lässt sich nicht öffnen“ · PC Hard- und Software ·
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PDF
Flyer_Niederspr-ADE123016w.pdf
Spätestens ab einer Anlagenleistung größer13,8kVA aus einphasigen, ungekoppelten Wechselrichtern (max. 4,6 kVA pro Phase) muss weitere Leistung dreiphasig ins Netz gespeist werden Die kommunikative Kopplung von drei einphasigen Wechselrichtern bleibt zulässig Weiterhin erlaubt: die kommunikative Kopplung
in „Solar-Home-System“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS154_Bridgelux_Vesta_Series_Tunable_White_Linear_Data_Sheet_20171002_Rev_A.pdf
5 Nominal Coefficient (V) Drive of Forward Part Number Current Voltage 4 (mA) ∆V /∆T VfMin. Hot V fMax. Cold Minimum Typical Maximum f c T = 85ºC T = -40ºC (mV/ºC) c c (V) (V) 500 23.6 24.8 26.0 -8.0 23.1 26.5 BXEB-TL-2750G-1000-A-13 1000 25.0 26.3 27.6 -8.0 24.5 28.1 1000 23.6 24.8 26.0 -8.0 23.1 26.5
in „Led Module in Reihe (Steuerung mit ZigBee) Berechnung Vorwiderstand“ · Mikrocontroller und Digitale Elektronik ·
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PDF
t6963.pdf
may differ. 3.2 Electrical Characteristics (VDD+5V±5%, GND=0V, T=+25°Ca Item Symbol Condition Min Max Unit Notes s Operating Volatge V DD 4.5 5.5 V Input voltage "H" V V -2.2 V V 1, 3 IH DD DD "L" V IL 0 0.8 V 1, 2, 3 Output voltage "H" V OH V DD.3 V DD V 3 "L" V 0 0.3 V 3 OL Output Resistance "H" R
in „T6963c an AVR32 / NGW100“ · Mikrocontroller und Digitale Elektronik ·
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PDF
T6963C.pdf
may differ. 3.2 Electrical Characteristics (VDD+5V±5%, GND=0V, T=+25°Ca Item Symbol Condition Min Max Unit Notes s Operating Volatge V DD 4.5 5.5 V Input voltage "H" V V -2.2 V V 1, 3 IH DD DD "L" V IL 0 0.8 V 1, 2, 3 Output voltage "H" V OH V DD.3 V DD V 3 "L" V 0 0.3 V 3 OL Output Resistance "H" R
in „Probleme bei T6963C initialisierung (C)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
t6963.pdf
may differ. 3.2 Electrical Characteristics (VDD+5V±5%, GND=0V, T=+25°Ca Item Symbol Condition Min Max Unit Notes s Operating Volatge V DD 4.5 5.5 V Input voltage "H" V V -2.2 V V 1, 3 IH DD DD "L" V IL 0 0.8 V 1, 2, 3 Output voltage "H" V OH V DD.3 V DD V 3 "L" V 0 0.3 V 3 OL Output Resistance "H" R
in „T6963 Grafik Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
t6963.pdf
may differ. 3.2 Electrical Characteristics (VDD+5V±5%, GND=0V, T=+25°Ca Item Symbol Condition Min Max Unit Notes s Operating Volatge V DD 4.5 5.5 V Input voltage "H" V V -2.2 V V 1, 3 IH DD DD "L" V IL 0 0.8 V 1, 2, 3 Output voltage "H" V OH V DD.3 V DD V 3 "L" V 0 0.3 V 3 OL Output Resistance "H" R
in „Grafik LC-Display TLX-1391 128x128“ · Mikrocontroller und Digitale Elektronik ·
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PDF
T6963_Appnotes1995.pdf
may differ. 3.2 Electrical Characteristics (VDD+5V±5%, GND=0V, T=+25°Ca Item Symbol Condition Min Max Unit Notes s Operating Volatge V DD 4.5 5.5 V Input voltage "H" V V -2.2 V V 1, 3 IH DD DD "L" V IL 0 0.8 V 1, 2, 3 Output voltage "H" V OH V DD.3 V DD V 3 "L" V 0 0.3 V 3 OL Output Resistance "H" R
in „T6963 Memory Mapping“ · Mikrocontroller und Digitale Elektronik ·
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PDF
T6963_Appnotes1995.pdf
may differ. 3.2 Electrical Characteristics (VDD+5V±5%, GND=0V, T=+25°Ca Item Symbol Condition Min Max Unit Notes s Operating Volatge V DD 4.5 5.5 V Input voltage "H" V V -2.2 V V 1, 3 IH DD DD "L" V IL 0 0.8 V 1, 2, 3 Output voltage "H" V OH V DD.3 V DD V 3 "L" V 0 0.3 V 3 OL Output Resistance "H" R
in „Grafische LCD Anzeige - Eigenschaften ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
t6963.pdf
may differ. 3.2 Electrical Characteristics (VDD+5V±5%, GND=0V, T=+25°Ca Item Symbol Condition Min Max Unit Notes s Operating Volatge V DD 4.5 5.5 V Input voltage "H" V V -2.2 V V 1, 3 IH DD DD "L" V IL 0 0.8 V 1, 2, 3 Output voltage "H" V OH V DD.3 V DD V 3 "L" V 0 0.3 V 3 OL Output Resistance "H" R
in „T6963C initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
T6963-Application-Note.pdf
may differ. 3.2 Electrical Characteristics (VDD+5V±5%, GND=0V, T=+25°Ca Item Symbol Condition Min Max Unit Notes s Operating Volatge V DD 4.5 5.5 V Input voltage "H" V V -2.2 V V 1, 3 IH DD DD "L" V IL 0 0.8 V 1, 2, 3 Output voltage "H" V OH V DD.3 V DD V 3 "L" V 0 0.3 V 3 OL Output Resistance "H" R
in „altes Phytec MCB-51 Monitor/Basic Befehle?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ferroxcube_Data_Handbook.pdf
, Test Tb, method 1B: 350 °C, 3.5 s Solderability “IEC 60068-2-20”, Part 2, Test Ta, method 1 16.6 max. 19.1 max. handbook, full pagewidth 3.81 22.7 10 11 7.4 6.1 22.7 max. 15.24 ±0.1 ±0.1 ±0.1 ±0.1 15.24 max. 3.81 CBW264 9.25 9.2 min. min. 10 11 7.4 6.1 15.3 17.5 ±0.1 ±0.1 ±0.1 ±0.1 max. max. 3.8 5.95
in „Maximale Magnetflussdichte im Ferritkern Temperaturangabe“ · Analoge Elektronik und Schaltungstechnik ·
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CONOX.pdf
36 2000 6,9 500 1,8 24M 170VS 75 4000 14 1000 2,2 3/20 IJsrotectiVaristor C Power Dimensions in mm max. 10 surgmA± 10% attypo dissipation current pF max. max. max. w d A V V W +1 20 130 300 0,1 7 8 3 5 0,6 50 140 68 740 0,4 9 11 3 5 0,6 150 135 1900 0,6 18 21 4 7,5 0,8 135 4700 20 155 250 0,1 7 8 3 5
in „Bauteilidentifikation (siehe Bild)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IMC0805ER1R8J01_VISHS83958_1-2566393_unpw.pdf
soldering FREQ. SRF DCR RATED DC • Tape and reel packaging for automatic handling, IND. (MHz) Q MIN. MAX. CURRENT 2000/reel (nH) TOL. L Q MIN. (MHz) () (mA) 2.2 0.3 nH, 0.2 nH 250 1000 50 6000 0.06 800 • Compliant to RoHS Directive 2002/95/EC 2.7 0.3 nH, 0.2 nH 250 1000 35 6000 0.08 800 • Halogen-free
in „Pollin SMD-Induktivitäten identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MBI5030.pdf
supply voltage 5 ~ 60mA at 5.0V supply voltage z Output current accuracy: between channels: <±3% (max.), and between ICs: <±6% (max.) z Staggered output delay z Maximum data clock frequency: 25MHz z Schmitt trigger input z 3.0V-5.5V supply voltage Product Description MBI5030 is designed for LED video
in „Atmega8+MBI5030+SPI“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Report_Samsung_X20.htm
GS Wavetable SW Synth <TR><TD><TD><TD>mixer.0 <TD CLASS=cc>FFFF FFFF <TD>SoundMAX Digital Audio <TR><TD><TD><TD>wave-in.0 <TD CLASS=cc>FFFF FFFF <TD>SoundMAX Digital Audio <TR><TD><TD><TD>wave-out.0 <TD CLASS=cc>FFFF FFFF <TD>SoundMAX Digital
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PDF
MSi001_R3v2.0.pdf
= 2.RF= 100 MHz,IF = 450 kHBW= 300 kHz, unless otherwise stated Note Parameter Conditions Min Typ Max Unit RF Input Frequency 64 108 MHz Input resistance Max / Min Gain 90 Input return loss 50 source 12 dB SSB Noise figure Max Gain 7.2 dB FIF 1.62 MHz 8.6 dB 1 Max Gain 106 dB Max Voltage Gain FIF
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PDF
Ferritperlen.pdf
from Hole Center to Lead P1 3.85 ± 0.7 5.0 ± 0.5 e Length from Hole Center to F P2 6.35 ± 1.3 o 1.2 max. Component Center n t BL02RN1 7.5 max. r 3.2 max. D L1 L2 Width of Body D BL02RN2 9.0 max. L1– L2 1.5 BL03RN2 8.3 max. BL02 7.5 max. 0.8 max. * * 6.0 ± 1.0 Height of Bead H BL03 6.5 max. ** A62T5 =
in „24Bit Delta-Sigma ADC-Eingang vor ESD und Überspannung schützen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LTM190E4-L02.pdf
, Hard-coating (3H) Doc . No PI006_LTM190E4-L02 Page ʴ/27 * Mechanical information Item Min. Typ. Max. Note Module Horizontal(H) - 396.0 - mm Vertical(V) - 324.0 - mm size Depth(D) - - 18.0 mm Weight - - 2,650 g 1. Absolute Maximum Ratings 1.1 Absolute ratings of environment Item Symbol Min. Max. Unit
in „Ansteuerung LC Display LTM190E4-L03“ · Mikrocontroller und Digitale Elektronik ·
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PDF
441.pdf
Bestell-Nr. Betriebs- Stoß- Energie- Dauerbe- spannung strom absorption lastbarkeit V V i W P RMS DC max max max 8/20 s (2 ms) V V A J W SIOV-S10K510 Q69X3131 510 670 2500 55,0 0,40 SIOV-S14K510 Q69X3219 510 670 4500 110,0 0,60 SIOV-S20K510 Q69X3239 510 670 6500 190,0 1,00 SIOV-S10K550 Q69X3132 550 745
in „Fehlersuche bei Elektronischer Motorbremse: Phase vertauscht. Bauteile identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AS5048_Datasheet.pdf
21 I²C Interface HS-mode HS-mode FS-mode+ C =100pF C =400pF Symbol Parameter Condition B B Unit Min Max Min Max Min Max Input I InputCurrentateach (2) i I/O Pin Voltage -10 +10 -- 10 -- 10 μA between C TotalCapacitiveLoad -- 550 -- 100 -- 400 pF B for each Bus Line I/O Capacitance CI/O -- 10 -- 10 --
in „Drehwinkelmessung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
IntLib.txt
Module.IntLib AltiumLive\Converter\ZMDI_DC-DC_Converter\ZMDI DC-DC Converter.IntLib AltiumLive\CPLD\Altera_MAX_II\Altera MAX II.IntLib AltiumLive\CPLD\Altera_MAX_V\Altera MAX V.IntLib AltiumLive\CPLD\Atmel_CPLD_Industry_Compatible\Atmel CPLD Industry Compatible.IntLib AltiumLive\CPLD\Atmel_CPLD_Proprietary\Atmel
in „Altium 5.1.x Offline Libs“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1014.pdf
Precision Specs It is no longer necessary to compromise specifications, Guaranteed Offset Voltage 150 V Max. whilesavingboardspaceandcost,ascomparedtosingle Guaranteed Low Drift 2 V/°C Max. operational amplifiers. Guaranteed Offset Current 0.8nA Max. Guaranteed High Gain TheLT1014’slowoffsetvoltageof50 V,
in „Unterschied beim LT1014 ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SIOV_Housed_NT20.pdf
ThermoFuse Varistors, NT series NT20 series Electrical data Maximum ratings (85 °C): Type V RMS VDC max In2) W max Pmax (8/20 µs) (8/20 µs) (2 ms) (untaped) -SIOV 15 times V V A A J W NT20K130E2* 130 170 10000 5000 100 1.0 NT20K140E2* 140 180 10000 5000 110 1.0 NT20K150E2* 150 200 10000 5000 120 1.0 NT20K175E2
in „Wie 98-°C-Thermosicherung fachgerecht verlöten/montieren?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Dokumentation.PDF
A0A42 PCOC10 COR2001 A0P1P13X4A05 X1A0P30X4X5 COR2 X1A0A0P24X5 P41X2A034045 COC35COCOC17 1 2 3 4 17V Max. A NLVMO A X1 VMOT 3 IC7 PIX1102 PIR25PIR2501_EPIIC701 PIIC708 PIX1101 PIIC7VFB VBSTNPIIC707 PIC150L11IC1502 5V V D1 D0 PIIC7VREG5 SW PIIC706 PIL101 PIL102 INPUT 1 12 7 25VI0C16 PIIC7SS GND PIIC705
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PDF
document.pdf
Temperature: -40 to 80 °C Storage Temperature: -40 to 110 °C * Typical Performance: No Load Stall Max Power Current (A) 1.50 - - - - - 70 45 Output Power (W) - - 85 220 Speed (rpm) 16000 - 14500 8100 Stall Torque (mNm) - 500 - - Application Examples: Seatbelt Pretensioner Johnson Motor sales@johnsonelectric.com
in „Lager für 18v Motor“ · Offtopic ·
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PDF
TCS34725.pdf
Note 1) Red Channel Green Channel Blue Channel Clear Channel PARAMETER TEST UNIT CONDITIONS MIN TYP MAX MIN TYP MAX MIN TYP MAX MIN TYP MAX λD= 465 nm 0% 15% 10% 42% 65% 88% 11.0 13.8 16.6 Note 2 λ = 525 nm counts/ Re Irradiance D 4% 25% 60% 85% 10% 45% 13.2 16.6 20.0 μW/ responsivity Note 3 cm2 λD= 615
in „Frage zu TCS 34725 - RGBC Sensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
150rmi.pdf
in millimeters, MASS AND PACKAGING QUANTITIES NOMINAL PACKAGING QUANTITIES CASE SIZE CASE Ø d Ø D max. Lmax. F MASS FORM FORM FORM Ø D x L CODE (g) CA CB TFA 8 x 12 13 0.6 8.5 13.0 3.5 ± 0.5 ≈ 1.1 5000 5000 1000 8 x 15 13L 0.6 8.5 16.0 3.5 ± 0.5 ≈ 1.3 5000 5000 1000 10 x 12 14 0.6 10.5 13.5 5.0 ± 0.5
in „Ersatz für Kondensator im Schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ina125.pdf
2.5V, 5V or 10V INDUSTRIAL PROCESS CONTROL SLEEP MODE FACTORY AUTOMATION LOW OFFSET VOLTAGE: 250 V max MULTI-CHANNEL DATA ACQUISITION LOW OFFSET DRIFT: 2 V/ °C max BATTERY OPERATED SYSTEMS LOW INPUT BIAS CURRENT: 20nA max GENERAL PURPOSE INSTRUMENTATION HIGH CMR: 100dB min LOW NOISE: 38nV/√Hz at f =
in „Kraftsensor PSD-S1 in Verbindung mit INA125“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ina125.pdf
2.5V, 5V or 10V INDUSTRIAL PROCESS CONTROL SLEEP MODE FACTORY AUTOMATION LOW OFFSET VOLTAGE: 250 V max MULTI-CHANNEL DATA ACQUISITION LOW OFFSET DRIFT: 2 V/ °C max BATTERY OPERATED SYSTEMS LOW INPUT BIAS CURRENT: 20nA max GENERAL PURPOSE INSTRUMENTATION HIGH CMR: 100dB min LOW NOISE: 38nV/√Hz at f =
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PDF
NCP1397.pdf
NCP1397A/B, NCV1397A/B ELECTRICAL CHARACTERISTICS (continued) (For typical values T = 25°C, for min/max values T = −40°C to +125°C, Max T = 1= 12 V unless otherwise noted) J J J CC Symbol Rating Pin Min Typ Max Unit TIMERS I Timer capacitor charge current during feedback fault or when 3 150 175 190 mA
in „Wegwerf-TV: Schaltnetzteil defekt?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM230WF5-TLD1-LG.pdf
LED typical current. Min Power Consumption is calculated with PBar = Vs(Min.) x Is(Typ.) x Nstring Max Power Consumption is calculated with PBar = Vbar(Max.) x Is(Typ) x Nstring 7. LED operating DC Forward Current must not exceed LED Max Ratings at 25 r 2¶C. Ver. 0.1 Aug. 30, 2010 7 / 30 One step solution
in „Pollin LVDS Interface im Einsatz -> Falschfarben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DL4744A.pdf
Temperature Regulator TYPE Voltage Izr ZK Cofficient Current V ZI ZT IZM ZZTI ZT Z ZT ZK R @V R Min Max mA Ohms Ohms mA µA Volts % / °C mA BZX / BZV 55 C 2V4 2.28 2.56 5 85 600 1 50 1 -0.085 155 BZX / BZV 55 C 2V7 2.5 2.9 5 85 600 1 10 1 -0.080 135 BZX / BZV 55 C 3V0 2.8 3.2 5 85 600 1 4 1 -0.075 125
in „Endstufe reparieren, Bauteil identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
VDR.pdf
5.5 min. 11.0 min. 11.0 min. Peel-off force > 5 N W 1 9.0 ±0.5 9.0 +0.75/▯0.5 9.0 +0.75/▯0.5 W 3.0 max. 3.0 max. 3.0 max. 2 H 18.0 +2.0/▯0 18.0 +2.0/▯0 18.0 +2.0/▯0 2) 3) H 0 16.0 ±0.5 16.0 ±0.5 16.0 ±0.5 (18.0) (18.0) H 32.2 max. 45.0 max. 45.0 max. 1 D 0 4.0 ±0.2 4.0 ±0.2 4.0 ±0.2 t 0.9 max. 0.9 max. 0.9 max. without lead L 11.0 max. 11.0 max. 11.0 max. l 4.0 max. 1) Taping w0th P = 15.0 mm upon request 2) Applies only to uncrimped types 3) Applies only to crimp0d types (H = 18 upon request) Please read
in „Surge Schutzbeschaltung am Netz“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
14223_ADI_ADP2108.pdf
typical specifications, unless 1 otherwise noted. Table 1. Parameter TestConditions/Comments Min Typ Max Unit INPUT CHARACTERISTICS InputVoltage Range 2.3 5.5 V Undervoltage LockoutThreshold VINising 2.3 V V falling 2.05 2.15 2.25 V IN OUTPUT CHARACTERISTICS OutputVoltage Accuracy PWM mode −2 +2 % VIN
in „Reflowlöten - Bastlermethode mit Cerankochfeld und Infrarot-Thermometer (bestes Vorgehen gesucht)“ · Platinen ·
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PDF
14223_ADI_ADP2108.pdf
typical specifications, unless 1 otherwise noted. Table 1. Parameter TestConditions/Comments Min Typ Max Unit INPUT CHARACTERISTICS InputVoltage Range 2.3 5.5 V Undervoltage LockoutThreshold VINising 2.3 V V falling 2.05 2.15 2.25 V IN OUTPUT CHARACTERISTICS OutputVoltage Accuracy PWM mode −2 +2 % VIN