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PDF
XLamp7090XR-E.pdf
. Profile Feature Lead-Based Solder Lead-Free Solder Average Ramp-Up Rate (Ts maxto Tp) 3°C/second max. 3°C/second max. Preheat: Temperature Min (Tsmin 100°C 150°C Preheat: Temperature Max (Tsmax) 150°C 200°C Preheat: Time (ts to ts ) 60-120 seconds 60-180 seconds min max Time Maintained Above: Temperature
in „LiPo Zelle Impulsbelastung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX31855.pdf
4 °C sensitivity) (Note 4) TTHERMOCOUPLE = -270°C to +1372°C, T = -40°C to +125°C (Note 3) -6 +6 A MAX31855J Thermocouple TTHERMOCOUPLE = -210°C to +750°C, T = -20°C to +85°C (Note 3) -2 +2 Temperature Gain and Offset A °C Error (57.953µV/°C nominal TTHERMOCOUPLE = -210°C to +1200°C, sensitivity) (Note
in „Thermoelementcontroller MAX31855 conversion time“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IC6963.pdf
* 6 CLIPBOARD FUNCTIONS, CURSOR FUNCTIONS * INPUT ON RS-232 WITH 5V-CMOS-LEVEL * DIRECT ACCESS TO MAX232 OR EQUIVALENT * BAUDRATES 1200, 2400, 9600 UP TO 115,200 BAUD * DOES NOT SLOW DOWN PROCESSOR SPEED * ONLY MAX. 4 EXTERNAL COMPONENTS REQUIRED * 8 DIGITAL I/O-PORTS FREELY AVAILABLE FOR CUSTOM DESIGNS
in „Problem mit IC6963“ · Mikrocontroller und Digitale Elektronik ·
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PDF
162537-da-01-en-IRF_9540_N.pdf
) Parameter Min. Typ. Max. Units Conditions V (BR)DSS Drain-to-Source Breakdown Voltage -100 ––– ––– V VGS = 0V, D = -250µA V(BR)DSSTJ Breakdown Voltage Temp. Coefficient ––– -0.11 ––– V/°C Reference to 25°C,DI = -1mA R DS(on
in „iMax B6 defekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
High_Power_IGBT_IXGK-GX320N60A3.pdf
d ≤ 2%. Terminals: 1 - Gate 2 - Drain (Collector) 3 - Source (Emitter) Dim. Millimeter Inches Min. Max. Min. Max. A 4.83 5.21 .190 .205 A 2.29 2.54 .090 .100 A1 1.91 2.16 .075 .085 2 b 1.14 1.40 .045 .055 b1 1.91 2.13 .075 .084 b2 2.92 3.12 .115 .123 C 0.61 0.80 .024 .031 D 20.80 21.34 .819 .840 E 15.75
in „IGBT brennt durch - Weit unter spezifkation.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IXGK-GX320N60A3.pdf
d ≤ 2%. Terminals: 1 - Gate 2 - Drain (Collector) 3 - Source (Emitter) Dim. Millimeter Inches Min. Max. Min. Max. A 4.83 5.21 .190 .205 A 2.29 2.54 .090 .100 A1 1.91 2.16 .075 .085 2 b 1.14 1.40 .045 .055 b1 1.91 2.13 .075 .084 b2 2.92 3.12 .115 .123 C 0.61 0.80 .024 .031 D 20.80 21.34 .819 .840 E 15.75
in „Impulsbelastung von IGBTs -> Parallelschaltung -> Ausgleichswiderstände“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
JWCO_KM_Serie_Elko.pdf
rated voltage at +20 漏電流 rated voltage at +20 ℃) ℃ Working Voltage(v) 6.3 10 16 25 35 50 63 100 tan δ(max) 0.24 0.2 0.16 0.15 0.14 0.12 0.12 0.1 Dissipaiom Factor (tan δ) 損失角正切值 Working Voltage(v) 160 200 250 350 400 450 500 (120Hz,+20℃) tan δ(max) 0.2 0.2 0.2 0.25 0.25 0.25 0.25 For capacitance value >1000μF, add 0.02 per another 1000μF 標稱容量值超過1000uF,則每增加1000uF,損失角正切值增加0.02 Impedance ratio max. at 120 Hz 阻抗比最大值 Low Temperature characteristics Working Voltage(V) 6.3 10 16 25 35 50 63 100 160 200 250 350 400 450 500 Z(-40℃)/ Z(+20℃) 10 8 6 4 3 3 3 3 - - - - - - - 溫度特性 阻抗比( ) Z(-25℃)/ Z(+20℃
in „SonOff S20 Leben, wirken und widerbelebung. :-)“ · Haus & Smart Home ·
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PDF
lm2731.pdf
this device can be calculated using the P (MAX) = TJ(MAX) T- A = 125 T A q 265 formula: J A . If power dissipation exceeds the maximum specified above, the internal thermal protection circuitry will protect the device by reducing the output voltage
in „[V] 13St. LM2731 0.6/1.6-MHz Boost Converters With 22-V Internal FET Switch in SOT-23 (8€)“ · Markt ·
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PDF
lm2731.pdf
this device can be calculated using the P (MAX) = TJ(MAX) T- A = 125 T A q 265 formula: J A . If power dissipation exceeds the maximum specified above, the internal thermal protection circuitry will protect the device by reducing the output voltage
in „[V] 13St. LM2731 0.6/1.6-MHz Boost Converters With 22-V Internal FET Switch in SOT-23 (15€)“ · Markt ·
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PDF
Polyswitch_Sicherung.pdf
Circuit Protection specified Marking Ø 0.81 (0.032) 20 AWG PS400. B 20 AWG MarkingB Lead size A AGR1200-1400 Side view End view End view C Ø 1.0 (0.04) C (AHS080 only) 18 AWG AGR:Radial-Leaded Dimensions (millimeters/inches) Part IH* (A) H *(A) V max. I max. R min. R 1ax. Ramax. A B C number R max. R
in „Tipps für 24V DC Absicherung gesucht ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
21237_0_samwha-green-cap.pdf
voltage and half rated voltage Cycle Life (2C) 500,000 cycles under constant current atC25° Cell Rated Max. CapacitanceSR, ESR, Max. Max.PeakEnergy Energyic Composition Dimension(mm) Weight Part Number Voltage Operating (F) 1KHz DC Continuous Current (kg) Voltage (m ) (m ) Current(A)(A) (Wh) (Wh/kg) ITEM
in „Goldcap auslutschen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
samwha-green-cap.pdf
voltage and half rated voltage Cycle Life (2C) 500,000 cycles under constant current atC25° Cell Rated Max. CapacitanceSR, ESR, Max. Max.PeakEnergy Energyic Composition Dimension(mm) Weight Part Number Voltage Operating (F) 1KHz DC Continuous Current (kg) Voltage (m ) (m ) Current(A)(A) (Wh) (Wh/kg) ITEM
in „Green-Cap/Super-Cap 2.7V 500F - fake?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
samwha-green-cap.pdf
voltage and half rated voltage Cycle Life (2C) 500,000 cycles under constant current atC25° Cell Rated Max. CapacitanceSR, ESR, Max. Max.PeakEnergy Energyic Composition Dimension(mm) Weight Part Number Voltage Operating (F) 1KHz DC Continuous Current (kg) Voltage (m ) (m ) Current(A)(A) (Wh) (Wh/kg) ITEM
in „Datenblatt von Kondensator“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SPEC-2400__LV_and_C__L_-_May_2013_.pdf
2081 (2030) 1754 1551 (1515) 1369 902 (900) 981 165 (162) 165 IEEE-488.1 Mode 0.01 / external 1239 (1200) 1254 1018 (990) 1035 830 (830) 886 163 (160) 163 Fast 0.01 / internal 2081 (2030) 1198 (1210) 1551 (1515) 1000 (900) 902 (900) 809 (840) 165 (162) 164 (162) IEEE-488.2 Mode 0.01 / external 1239 (1200
in „Messunsicherheiten Keithly 2400 Sourcemeter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IR21844.pdf
Figure 5. Delay Matching Waveform Definitions 6 www.irf.com IR2184 4 ( )(S)&(PbF) 1400 1400 s s ( ( a1200 a 1200 e e n1000 D 1000 Max. t t g Max. g p 800 p 800 Typ. r Typ. r n P - 600 - 600 u r T 400 T 400 -50 -25 0 25 50 75 100 125 10 12 14 16 18 20 o Temperature(C) Supply Voltage(V) Figure 4A. Turn-on
in „Simulation IR2183 Halbbrückentreiber“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
704013.pdf
Reproduzierbarkeit (siehe Tabelle) mit einem Sicherheitsfaktor 1,5. Beispiel: Meßrate 50 Hz, Entfernung zum Objekt 1200 mm, Grauwert (18% Remission): Reproduzierbarkeit lt. Tabelle 20mm x Faktor 1,5 = 30mm → Rückschaltpunkt 1200mm + (30mm / 2) = 1215mm → Einschaltpunkt 1200mm - (30mm / 2) = 1185mm Der Rückschaltpunkt
in „Efector Pmd, Datenblatt??“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Blockschaltbild einer Photovoltaik-Inselanlage mit Batterie und Wechselrichtern
1kWp 80V Solarzelle Süd-Ausrichtung 6kWp 120V Solarzelle West/Ost-Ausrichtung 7kWp 120V MPPT Regler I-Max 60A MPPT Regler I-Max 100A MPPT Regler I-Max 100A als Laderegler der Netzteile Standard Netzteile Meanwell 24V / 20A in Reihe = 150V 3000Watt EVU Elektro Heizung Boiler 6x 1200W / 48V LiFePo4 280Ah 52V (4x) 52V Wechselrichter 10kW / 52V Umschalter Automatisch Haus 230V MPPT Regler I-Max 70A 52V >> 24V Blei-Gel 6x 200Ah 24V Wechselrichter 5kW / 24V Haus: 24V Licht, 24V KFZ Steckdosen Router, Netzwerk usw.
in „280Ah LiFePO4 Zellen aus China - welche kaufen?“ · Offtopic · · Diagramme
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PDF
DBLS201G_DBLS209G_TSC.pdf
205G 206G 207G 208G 209G Maximum repetitive peak reverse voltage VRRM 50 100 200 400 600 800 1000 1200 1400 V Maximum RMS voltage VRMS 35 70 140 280 420 560 700 840 980 V Maximum DC blocking voltage VDC 50 100 200 400 600 800 1000 1200 1400 V Maximum average forward rectified current I 2 A F(AV) Peak
in „Datenblatt Brückengleichrichter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
EC_60.pdf
Wicklung 33.7 s gebungstemperatur von 25°C wird bei dauernder 20 Therm. Zeitkonstante des Motors 1200 s Belastung die maximal zulässige Rotortemperatur 21 Umgeb ungstemperatur -20 ...100°C 22 Max.Wicklungstemperatur +125°C erreicht = thermische Grenze. Mechanische Daten (vorgespannte Kugellager) -1
in „Netzeil für Servoverstärker und Motor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RAC03-SCR_277.pdf
MeetEN55022andFCCClassB ● Ultra-lowStand-ByPowerConsumption Selection Guide Part Input Output Output Typical Constant Max. 3Watt Number Range Voltage Current Efficiency Current Range* Capacitive (VAC) (VDC) (mA) (%) (mA) Load Single RAC03-3.3SCR/277* 85-305 3.3 900 69 950-1200 22000 RAC03-05SCR/277* 85-305 5 600 71 650
in „Suche Trafo - So klein wie möglich“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TechNotes_V3.1_Mini-ITX_D3003-S.pdf
www.ts.fujitsu.com/mainboards Display Options 4.11 VGA Output Analog (VGA) Monitor via DVI/VGA interface connector max. VGA screen resolution: 2560x1600 / 30bpp for Dual Core CPU 1920x1200 / 30bpp for Single Core CPU TechNotes D3003-S V3.Page 30 of 98 www.ts.fujitsu.com/mainboards Display Options 4.12 DVI & VGA Output
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PDF
CD4053.pdf
DC Electrical Characteristics (Note 2) D −40°C +25° +85°C 0 Symbol Parameter Conditions Units 5 Min Max Min Typ Max Min Max 3 B Control A, B, C and Inhibit IIN Input Current VDD = 15V, V EE= 0V −0.1 C −0.1 −10−5 −1.0 µA VIN= 0V V = 15V, V = 0V DD EE 0.1 10−5 0.1 1.0 µA VIN= 15V I Quiescent Device Current
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PDF
Schnittstellenbeschreibung_DPS_4005PFC.pdf
approx. 295W 1.4 Output voltage: 0 to 40VDC, 10mV resolution 1.5 Output current: approx. 0 to 5.1A max. 1.6 Power output: approx. 204W max. 1.7 Voltage stability with 100% load swing: 1 </=approx. 5x10 +10mV 1.8 Current stability with 100% load swing: </=approx. 5x10 -+5mA 1.9 Voltage stabilit-4with
in „Programmierbares Netzteil (RS232c)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
512020-an-01-en-Schnittstellenbeschreibung_DPS_4005PFC.pdf
approx. 295W 1.4 Output voltage: 0 to 40VDC, 10mV resolution 1.5 Output current: approx. 0 to 5.1A max. 1.6 Power output: approx. 204W max. 1.7 Voltage stability with 100% load swing: 1 </=approx. 5x10 +10mV 1.8 Current stability with 100% load swing: </=approx. 5x10 -+5mA 1.9 Voltage stabilit-4with
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PDF
PSS15NC1FT.pdf
CI(Converter + Inverter) type IPM ⚫3-phase Inverter ⚫3-phase Converter RATING ⚫Inverter part : 15A/1200V (CSTBT) APPLICATION ⚫AC400V three phase motor inverter drive * With brake circuit type ’PSS15MC1FT’ is also avairable. INTEGRATED DRIVE, PROTECTION AND SYSTEM CONTROL FUNCTIONS ● For P-side : Drive
in „ein echter Monsterchip“ · Offtopic ·
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PDF
154015-da-01-ml-PHOTODIODE_PIN_SFH203FA__T1_3_4__O_de_en.pdf
V) v R Photocurrent IP 50 µA Fotostrom (≥ 30) 2 (VR= 5 V, λ = 870 nm, e = 1 mW/cm ) Wavelength of max. sensitivity λ 850 900 nm S max Wellenlänge der max. Fotoempfindlichkeit Spectral range of sensitivity λ 10% 400 ... 750 ... nm Spektraler Bereich der Fotoempfindlichkeit 1100 1100 2 Radiant sensitive
in „Lock In Verstärker; Vibrometer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Songle_TUV_Cert_No.pdf
30 7A 240VAC 25 Inductive Load 3A 120VAC 5A 120VAC 20 15 (cosF=0.4 L/R=7msec) 3A 28VDC 5A 28VDC 10 Max. Allowable Voltage 250VAC/110VDC 250VAC/110VDC 5 0 Max. Allowable Power Force 800VAC/240W 1200VA/300W 0.Coil Power (W)0.70.8 Contact Material AgCdO AgCdO 12Operation Time 8. PERFORMANCE (at initial value) Type 10 SRD Operation time Item 8 Contact Resistance 100m W Max. 6 Operation Time 10msec Max. 4 Release Time 5msec Max. Release time Dielectric Strength 2 Between coil & contact 1500VAC 50/60HZ (1 minute) 0.00.0.0.0.40.0.0.0.8 Between contacts 1000VAC 50/60HZ (1
in „Bauteile china Platinen erlaubt in Deutschland“ · Haus & Smart Home ·
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PDF
SRD-05VDC-SL-C-Datasheet.pdf
10A 250VAC 30 25 Inductive Load 3A 120VAC 5A 120VAC 20 15 (cosF=0.4 L/R=7msec) 3A 28VDC 5A 28VDC 10 Max. Allowable Voltage 250VAC/110VDC 250VAC/110VDC 5 0 Max. Allowable Power Force 800VAC/240W 1200VA/300W 0.Coil Power (W)0.70.8 Contact Material AgCdO AgCdO 12Operation Time 8. PERFORMANCE (at initial value) Type 10 SRD Operation time Item 8 Contact Resistance 100m W Max. 6 Operation Time 10msec Max. 4 Release Time 5msec Max. Release time Dielectric Strength 2 Between coil & contact 1500VAC 50/60HZ (1 minute) 0.00.0.0.0.40.0.0.0.8 Between contacts 1000VAC 50/60HZ (1
in „Fragen zu Pollin Relaiskarte DAYPOWER RB-8/5V“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Relais_in_der_ELRO_Funksteckdose_SDR-24VDC-SL-A.pdf
30 7A 240VAC 25 Inductive Load 3A 120VAC 5A 120VAC 20 15 (cosF=0.4 L/R=7msec) 3A 28VDC 5A 28VDC 10 Max. Allowable Voltage 250VAC/110VDC 250VAC/110VDC 5 0 Max. Allowable Power Force 800VAC/240W 1200VA/300W 0.Coil Power (W)0.70.8 Contact Material AgCdO AgCdO 12Operation Time 8. PERFORMANCE (at initial value) Type 10 SRD Operation time Item 8 Contact Resistance 100m W Max. 6 Operation Time 10msec Max. 4 Release Time 5msec Max. Release time Dielectric Strength 2 Between coil & contact 1500VAC 50/60HZ (1 minute) 0.00.0.0.0.40.0.0.0.8 Between contacts 1000VAC 50/60HZ (1
in „[S] Relais SRD-24VDC-SL-A“ · Markt ·
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PDF
SRD-xxVDC-SL-C.pdf
125VAC 25 Inductive Load 10A 5A 120VAC 20 250VAC 15 (cosΦ=0.4 L/R=7msec) 5A 28VDC 10 3A 120VAC 3A 28VDC Max. Allowable Voltage 250VAC/110VDC 250VAC/110VDC 5 0 Max. Allowable Power Force 800VAC/240W 1200VA/300W 0.70.80.20.3 0.40.50.6 Coil Power (W) Contact Material AgCdO AgCdO Operation Time 8. PERFORMANCE (at initial value) 12 Type 10 Item SRD 8 Operation tim e Contact Resistance 100m Max. 6 Operation Time 10msec Max. 4 Release Time 5msec Max. 2 Reletime Dielectric Strength Between coil & contact 1500VAC 50/60HZ (1 minute) 0 0.70.80.20.3 0.40.50.6 Between contacts 1000VAC 50/60HZ (1
in „Frage 24 Leistungsausänge realisieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
30 7A 240VAC 25 Inductive Load 3A 120VAC 5A 120VAC 20 15 (cosF=0.4 L/R=7msec) 3A 28VDC 5A 28VDC 10 Max. Allowable Voltage 250VAC/110VDC 250VAC/110VDC 5 0 Max. Allowable Power Force 800VAC/240W 1200VA/300W 0.Coil Power (W)0.70.8 Contact Material AgCdO AgCdO 12Operation Time 8. PERFORMANCE (at initial value) Type 10 SRD Operation time Item 8 Contact Resistance 100m W Max. 6 Operation Time 10msec Max. 4 Release Time 5msec Max. Release time Dielectric Strength 2 Between coil & contact 1500VAC 50/60HZ (1 minute) 0.00.0.0.0.40.0.0.0.8 Between contacts 1000VAC 50/60HZ (1
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PDF
SRD-05VDC-SL-C-Datasheet.pdf
30 7A 240VAC 25 Inductive Load 3A 120VAC 5A 120VAC 20 15 (cosF=0.4 L/R=7msec) 3A 28VDC 5A 28VDC 10 Max. Allowable Voltage 250VAC/110VDC 250VAC/110VDC 5 0 Max. Allowable Power Force 800VAC/240W 1200VA/300W 0.Coil Power (W)0.70.8 Contact Material AgCdO AgCdO 12Operation Time 8. PERFORMANCE (at initial value) Type 10 SRD Operation time Item 8 Contact Resistance 100m W Max. 6 Operation Time 10msec Max. 4 Release Time 5msec Max. Release time Dielectric Strength 2 Between coil & contact 1500VAC 50/60HZ (1 minute) 0.00.0.0.0.40.0.0.0.8 Between contacts 1000VAC 50/60HZ (1
in „magnetventile entstören, arduinogesteuerte relais“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SRD-05VDC-SL-C-Datasheet.pdf
30 7A 240VAC 25 Inductive Load 3A 120VAC 5A 120VAC 20 15 (cosF=0.4 L/R=7msec) 3A 28VDC 5A 28VDC 10 Max. Allowable Voltage 250VAC/110VDC 250VAC/110VDC 5 0 Max. Allowable Power Force 800VAC/240W 1200VA/300W 0.Coil Power (W)0.70.8 Contact Material AgCdO AgCdO 12Operation Time 8. PERFORMANCE (at initial value) Type 10 SRD Operation time Item 8 Contact Resistance 100m W Max. 6 Operation Time 10msec Max. 4 Release Time 5msec Max. Release time Dielectric Strength 2 Between coil & contact 1500VAC 50/60HZ (1 minute) 0.00.0.0.0.40.0.0.0.8 Between contacts 1000VAC 50/60HZ (1
in „USB Relais schaltet manchmal nicht ab“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SRD-05VDC-SL-C-Datasheet.pdf
30 7A 240VAC 25 Inductive Load 3A 120VAC 5A 120VAC 20 15 (cosF=0.4 L/R=7msec) 3A 28VDC 5A 28VDC 10 Max. Allowable Voltage 250VAC/110VDC 250VAC/110VDC 5 0 Max. Allowable Power Force 800VAC/240W 1200VA/300W 0.Coil Power (W)0.70.8 Contact Material AgCdO AgCdO 12Operation Time 8. PERFORMANCE (at initial value) Type 10 SRD Operation time Item 8 Contact Resistance 100m W Max. 6 Operation Time 10msec Max. 4 Release Time 5msec Max. Release time Dielectric Strength 2 Between coil & contact 1500VAC 50/60HZ (1 minute) 0.00.0.0.0.40.0.0.0.8 Between contacts 1000VAC 50/60HZ (1
in „Relais schaltet unter bestimmten Lasten nicht aus“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SRD.PDF
30 7A 240VAC 25 Inductive Load 3A 120VAC 5A 120VAC 20 15 (cosF=0.4 L/R=7msec) 3A 28VDC 5A 28VDC 10 Max. Allowable Voltage 250VAC/110VDC 250VAC/110VDC 5 0 Max. Allowable Power Force 800VAC/240W 1200VA/300W 0.Coil Power (W)0.70.8 Contact Material AgCdO AgCdO 12Operation Time 8. PERFORMANCE (at initial value) Type 10 SRD Operation time Item 8 Contact Resistance 100m W Max. 6 Operation Time 10msec Max. 4 Release Time 5msec Max. Release time Dielectric Strength 2 Between coil & contact 1500VAC 50/60HZ (1 minute) 0.00.0.0.0.40.0.0.0.8 Between contacts 1000VAC 50/60HZ (1
in „ESP8266 D1 Mini + Relaismodul: Relais bleibt bei D1 dauerhaft eingeschaltet“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTC4067.pdf
Voltage vs Current V PROG vs IBAT 500 500 2000 1200 VFWD AT TA= 130°C VBAT= 3.6V VIN = 5V VFWD AT TA= 50°C 1800 IOUT= 0mA VFWD AT TA= –50°C 1000 400 R AT T = 130°C 400 1600 RFWD AT T = 50°C R PROG= 4k FWD A 1400 LTC4067 800 ) RFWD AT TA= –50°C FR ) V m300 300 D A 1200 ( ( m ( 1000 G 600 W Ω U R V200 200 ) IO 800 V R PROG= 2k 400 600 100 100 400 200 VIN= 5V 1N5817 VBAT = 3.6V 200 0 SUSP 0 0 0 0 400 800 1200 1600 2000 0 50 100 150 200 250 300 350 400 450 0 50 100 150
in „LTC4067 Vout“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SBB5089Z_Data_Sheet-1499104.pdf
SBB5089Z Amplifier, SOT-89 pkg. Qorvo SBB5089Z C1 1 μF CAP, 1 μF, 20%, 20V, TANT, 1206 various C2 1200 pF CAP, 1200 pF, 10%, 50V, X7R, 0603 various CB 68 pF CAP, 68 pF, 5%, 50V. NPO/C0G, 0603 various LC 82 nH IND, 82 nH, 5%, W/W, 0805 Coilcraft 0805CS-330XJLB Note for < 500 MHz: C 1.0 μF, 10%, 160, X7R
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PDF
preis2024.pdf
863 Prüfungsrichtlinie: DKD-R 4-3 Bl. 4.4 max Nennmaß [mm] 50 100 150 200 250 300 400 600 800 ISO Preis [€] 3,61 4,82 7,23 9,65 10,85 12,06 16,88 21,71 28,95 ISO Artikel-Nr. 1020 1021 1022 1023 1024 1025 1026 1027 1028 max Nennmaß [mm] 1000 1200
in „PeakTech 365eff“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
GARMIN-GPS25-xxx.pdf
TECHNICAL SPECIFICATION _______________________________________________________________________ GARMIN· 1200 E. 151st St· Olathe, K)397-8200· (913)397-8282 FAX ©2000 GARMIN Corporation 1200 East 151st Street, Olathe, KS 66062 All rights reserved. No part of this manual may be reproduced or transmitted in any
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PDF
XC6206.pdf
Diameter 2. Power Dissipation vs. Ambient temperature Evaluation Board (Unit: mm) Board Mount (Tj max = 125℃) Ambient Temperature(℃) Power Dissipation Pd(mW) Thermal Resistance (℃/W) 25 1000 100.00 85 400 Pd-Ta特性グラフ Ta W1200 ( d1000 P i 800 P i 600 i r 400 w P 200 0 25 45 65 85 105 125 Ambient 周囲温度Ta
in „IoT mit ATMEGA und SIM800L, Bienen Beute,“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Torex_XC6206.pdf
Diameter 2. Power Dissipation vs. Ambient temperature Evaluation Board (Unit: mm) Board Mount (Tj max = 125℃) Ambient Temperature(℃) Power Dissipation Pd(mW) Thermal Resistance (℃/W) 25 1000 100.00 85 400 Pd-Ta特性グラフ Ta W1200 ( d1000 P i 800 P i 600 i r 400 w P 200 0 25 45 65 85 105 125 Ambient 周囲温度Ta
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PDF
PBL3717_E.pdf
1, 15 IM -1200 +1200 mA Logic inputs 7, 8, 9 I -10 mA I Analog inputs 10, 11 I -10 mA A Temperature Operating temperature T -40 +150 °C J Storage temperature T -55 +150 °C S * refers to DIP package Recommended Operating Conditions Parameter Symbol Min Typ Max Unit Logic supply voltage V 4.75 5 5.25 V CC Motor supply voltage VMM 10 40 V Motor output current I -1000 +1000 mA M Junction Temp T -20 +125 °C J Rise time logic inputs t 2 s r Fall time logic inputs
in „Schrittmotor Pollin und PBL3717“ · Mikrocontroller und Digitale Elektronik ·
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PDF
10W-S_LED_1_spec.pdf
Halogen and fluorescent lamps. ● Maximum drive current up to ● Reading lights in Car, Bus,Aircraft 1200mA. and Trains. o ● Max junction temperature :120 C ● Exterior and interior decorative lightings for shops, restaurants, ● No UV light hotels, discos, pubs, etc ● Fast lit up response (less than ● Signage
in „Re: [Sammelbestellung] 6 Pin 3W Power RGB LED“ · Markt ·
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PDF
DM00109015.pdf
unless otherwise specified) Table 5. Electrical characteristics Symbol Parameter Conditions Min. Typ. Max. Unit DC performance T = 25 °C 200 V io Input offset voltage -40 °C < T< 85 °C 850 V -40 °C < T< 125 °C 1200 V ioT Input offset voltage drift -40 °C < T< 125 °C(1) 10 V/°C Long-term input offset
in „Frage zu OpAmp dual supply“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Normen_bersicht.pdf
markierten Löcher können für andere Zwecke verwendetwerden. 800 577,85 13 550 400 600 600 1000 800,10 18 1200 977,90 22 700 800 1400 1200,15 27 800 900 1600 1377,95 31 900 1800 1600,20 36 DieAbmessungenderBreiteundderTiefekönnenin 2000 1778,00 40 2200 2000,25 45 jeglicherKombinationeingesetztwerden. 21 2.02
in „Abmessungen von Platinen in 19-Zoll Gehäuse gesucht“ · Platinen ·
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Normenuebersicht.pdf
markierten Löcher können für andere Zwecke verwendetwerden. 800 577,85 13 550 400 600 600 1000 800,10 18 1200 977,90 22 700 800 1400 1200,15 27 800 900 1600 1377,95 31 900 1800 1600,20 36 DieAbmessungenderBreiteundderTiefekönnenin 2000 1778,00 40 2200 2000,25 45 jeglicherKombinationeingesetztwerden. 21 2.02
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L-HBCC.pdf
www.fastrongroup.com HBCC Similar to moulded CCSH SRF DCR Rated DC Part No Inductance fL Tol Q fQ min max Current A L (µH) (MHz) ± (%) min (MHz) (MHz) (Ω) (A) L (µH) (max) X Typical L vs Frequency (ƒ) HBCC-1R0X-YY 1.0 1 5,10 40 7.96 200 0.08 2.20 1.0 - 18 14.5 63 10000 HBCC-1R2X-YY 1.2 1 5,10 40 7.96 185
in „Was bedeuten fl und fQ“ · Analoge Elektronik und Schaltungstechnik ·
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drossel.pdf
▯FASTRONGROUP▯COM HBCC Similar to moulded CCSH SRF DCR Rated DC Part No Inductance fL Tol Q fQ min max Current A L (µH) (MHz) ± (%) min (MHz) (MHz) (Ω) (A) L (µH)(max) X Typical L vs Frequency (ƒ) HBCC-1R0X-YY 1.0 1 5,10 40 7.96 200 0.08 2.20 1.0 - 18.5 63 10000 HBCC-1R2X-YY 1.2 1 5,10 40 7.96 185
in „Vom Testaufbau in die Wirklichkeit“ · Mikrocontroller und Digitale Elektronik ·
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1763fh.pdf
Characteristics LT1763-1.5 LT1763-1.8 LT1763-2.5 GND Pin Current GND Pin Current GND Pin Current 1200 1200 1200 1000 1000 1000 R = 50Ω A R = 30Ω A R = 36Ω A L ( L ( IL= 50mA* ( IL= 50mA* T800 IL= 50mA* T800 L T800 E TJ= 25°C E TJ= 25°C E TJ= 25°C R VIN= VSHDN R VIN= VSHDN R VIN= VSHDN C600 *FOR VOUT
in „Review: USB→LT1763-3.3 V + SCD41-D-R2 (I²C), Funduino (ATMEGA2560)“ · Mikrocontroller und Digitale Elektronik ·
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30W-O_LED_1_spec.pdf
Halogen and fluorescent lamps. ● Maximum drive current up to ● Reading lights in Car, Bus,Aircraft 1200mA. and Trains. o ● Max junction temperature :120 C ● Exterior and interior decorative lightings for shops, restaurants, ● No UV light hotels, discos, pubs, etc ● Fast lit up response (less than ● Signage
in „Re: [Sammelbestellung] 6 Pin 3W Power RGB LED“ · Markt ·