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PDF
DSA0089278.pdf
temperature coefficient VF Forward voltage drop IPP RM @ VRM VBR @ IR VCL @ IPP V CL@ IPP αT C Types max. min. max. max. max. typ. note2 10/1000 s 8/20 s no-43 note4 UnidirectionalMark. BidirectionalMark. A V V mA V A V A 10 /⋅C pF SMBJ5.0A-TR BUZ SMBJ5.0CA-TR BBZ 800 5.0 6.4 10 9.2 68 13.4 298 5.7 4000
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PDF
YX807.pdf
D L b E1 E e e1 C A1 A2 A SOT23-5 package mechanical data dimensions symbol millimeters inches min max min max A 1.050 1.250 0.041 0.049 A1 0.000 0.100 0.000 0.004 b 0.300 0.500 0.012 0.020 C 0.100 0.200 0.004 0.008 D 2.820 3.020 0.111 0.119 E 1.500 1.700 0.059 0.067 E1 2.650 2.950 0.104 0.116 e 0.950
in „suche eine IC-Bezichnung für ein SMD Bauteil mit Aufdruck: AA0bc“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ADS_8323_sbas224c.pdf
2010 ELECTRICAL CHARACTERISTICS At –40°C to +85°C, +DV DD = +AV DD = +5V, V REF = +2.5V, fSAMPLE = 500kSPS, and f CLK = 20 • fSAMPLE , unless otherwise specified. (1) ADS8323Y ADS8323YB PARAMETER TEST CONDITIONS MIN TYP MAX MIN TYP MAX UNIT RESOLUTION Resolution 16 16 Bits ANALOG INPUT Full-scale input
in „Logger für Strom und Spannung im Selbstbau“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ads8323.pdf
2010 ELECTRICAL CHARACTERISTICS At –40°C to +85°C, +DV DD = +AV DD = +5V, V REF = +2.5V, fSAMPLE = 500kSPS, and f CLK = 20 • fSAMPLE , unless otherwise specified. (1) ADS8323Y ADS8323YB PARAMETER TEST CONDITIONS MIN TYP MAX MIN TYP MAX UNIT RESOLUTION Resolution 16 16 Bits ANALOG INPUT Full-scale input
in „AD 8323 : Analog Digital Wandler 16-Bit, Parallel, 500kSPS“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT1006.pdf
Sinking Current operation with a full set of specifications at 5V. ■ Guaranteed Offset Voltage: 50µV Max Specifications at ±15V are also provided. ■ Guaranteed Low Drift: 1.3µV/°C Max The LT1006 has a low offset voltage of 20µV, drift of ■ Guaranteed Offset Current: 0.5nA Max 0.2µV/°C, offset current of
in „Probleme mit Peakdetector“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bc557.pdf
BC558B, C 1.0 0.7 D = 0.5 ) 0.5 A E 0.2 M L 0.3 E A H R 0.2 0.05 SINGLE PULSE T O 0.1 R▯JC= 83.3▯C/W MAX E ( 0.1 Z▯JAt) = rJA) R S C P(pk) R▯JA= 200▯C/W MAX N N 0.07 SINGLE PULSE PULSE TRAIN SHOWNR POWER R T 0.05 t READ TIME A1 t ) I 1 TJ(pk)TC= (pk)▯JCt) r E 0.03 2 R 0.02 DUTY CYCLE, D = t1 2 0.01 0.1
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PDF
datasheet__1_.pdf
Gain=24dB, R =8 , T =25 °C , unless otherwise noted. DD L A Symbol Parameter Test Conditions MIN TYP MAX UNIT MUTE Muting Current VDD5.0V V MUTE0.3V 3.5 mA ISD Shutdown Current VDD2.5V to 5.5V Vsd=0.3V <1 μA Static Drain-to-source On-state PMOS 180 Rdson Resistor DS=500mA,Vgs=5V NMOS 140 mΩ fsw Switching
in „Umschalten zw. Kopfhörer und Lautsprecher so IO?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LED_WEISS_5MM_18000_MCD_TYP15.pdf
tie bar is recommended. · Recommended soldering conditions Dip Soldering Soldering Pre-Heat 120°C Max. Temperature 350°C Max. Pre-Heat Time 60 seconds Max. Soldering Time 3 seconds Max. Solder Bath 260°C Max. Position No closer than 3 mm from the Temperature base of the epoxy bulb. Dipping Time 10 seconds
in „LED Helligkeit mit 8-bit steuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DE_1331_SR_DFF.pdf
012 SR 024 SR 1 Nennspannung UN 6 12 24 V 2 Anschlusswiderstand R 2,83 13,7 52,9 Ω 3 Wirkungsgrad, max. η max. 81 80 80 % 4 Leerlaufdrehzahl n0 10 600 9 900 10 400 min ¹ 5 Leerlaufstrom, typ. (bei Wellen ø 1,5 mm) I0 0,022 0,0105 0,0055 A 6 Anhaltemoment M H 11,2 9,9 9,76 mNm 7 Reibungsdrehmoment M R
in „Faulhaber Motor- finde leider keine Daten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CL1506-ChipLink.zh-CN.en.pdf
off delay 200 ns tDELAY internal time control tOFF_MIN Minimum off time 4.5 us maximum off time tOFF_MAX 240 us tON_MAX maximum on time 40 us V ROVP ROVPelectric potential 0.5 V power tube R DS_ON Power tube conduction resVGS=15V/IDS=0.5A 1.9 2.5 Ω BV DS Power tube breakdown voltVGS=0V/IDS=250uA 500 V
in „LED-Strahler mit CL1506IR“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
61WV102416ALL_ISSI_1M_x_16_SRAM_.pdf
Outputs Disabled –1 1 µA Note: 1. VI(min.)=–0.3VDI(min.)=–2.0VAC(pulsewidth-2.0ns).Not100%tested. V I(max.)=DD+0.3VDC;I(max.)=DD+2.0VAC(pulsewidth-2.0ns).Not100%tested. DC ELECTRICAL CHARACTERISTICS (Over Operating Range) V DD = 2.4V-3.6V Symbol Parameter TestConditions Min. Max. Unit V OH OutputHIGHVoltage
in „Beschreibung eines Srams Fehler in VHDL-Code?“ · FPGA, VHDL & Co. ·
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PDF
rt9198__rt9198a_richtek_DT_93R.pdf
www.richtek.com 15 RT9198/A D H e L C B b b1 A A1 e Dimensions In Millimeters Dimensions In Inches Symbol Min Max Min Max A 0.800 1.100 0.031 0.043 A1 0.000 0.100 0.000 0.004 B 1.150 1.350 0.045 0.053 b 0.150 0.400 0.006 0.016 b1 0.350 0.500 0.014 0.020 C 1.800 2.450 0.071 0.096 D 1.800 2.200 0.071 0.087 e 1.300
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PDF
rt9198__rt9198a_richtek_VR.pdf
www.richtek.com 15 RT9198/A D H e L C B b b1 A A1 e Dimensions In Millimeters Dimensions In Inches Symbol Min Max Min Max A 0.800 1.100 0.031 0.043 A1 0.000 0.100 0.000 0.004 B 1.150 1.350 0.045 0.053 b 0.150 0.400 0.006 0.016 b1 0.350 0.500 0.014 0.020 C 1.800 2.450 0.071 0.096 D 1.800 2.200 0.071 0.087 e 1.300
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PDF
NCP1397.pdf
FSW(min) Minimum switching frequency, Rt = 34 kW on ppin6= 0.8 V, 4 58.2 60 61.8 kHz DT = 300 ns FSW(max) Maximum switching frequency,f(max) 1.9 kW on pin pin6> 2 440 500 560 kHz 5.3 V, Rt = 34 kW, DT = 300 ns FBSW Feedback pin swing above which Df = 0 6 − 5.3 − V DC Operating duty−cycle symmetry 11−15
in „Wegwerf-TV: Schaltnetzteil defekt?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Kupferlackdraehte-Allgemeine-Anforderungen-nach-DIN-EN-IEC-60317-0-1.pdf
Mindestzunahme Größter Außen- Zu- A-Ø A-Ø spannung bei RT widerstand bei 20° C elektrischen dehn. max. Grad zug Nenn- Tole- A (GR1) durch die Isolierung durchmesser nahme max. max. mind. V Ohm/m Fehlerzahl je 30 mmin. GR2+ max. GR1 Ø ranz mm² km GR1 GR2 GR3 GR1 GR2 GR3 min. GR1B GR2B GR1 GR2 GR3 min
in „Lackdicke der Isolierung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FTDI_UM245R_Parallel_auf_USB.pdf
USB, the device must draw no more than 100mA. ii) On USB Suspend the device must draw no more than 500μA. iii) A Bus Powered High Power USB Device (one that draws more than 100mA) should use the PWREN# pin to keep the current below 100mA on plug-in and 500μA on USB suspend. iv) A device that consumes
in „FT245R sporalischer Initialisierungsfehler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BTA12_BTB12_T12.pdf
Symbol Test Conditions Quadrant T12 BTA/BTB12 Unit T1235 TW SW CW BW IGT (1) V = 12 V R = 30 I - II - MAX. 35 5 10 35 50 mA V D L GT I - II - MAX. 1.3 V V V = V R = 3.3 k I - II - MIN. 0.2 GD D DRM L V Tj = 125°C I (2) I = 100 mA MAX. 35 10 15 35 50 mA H T L IG= 1.2 GT I - III MAX. 50 10 25 50 70 mA II
in „Thyristortetrode für Wechselspannung geeignet ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BTA12_BTB12_T12.pdf
Symbol Test Conditions Quadrant T12 BTA/BTB12 Unit T1235 TW SW CW BW IGT (1) V = 12 V R = 30 I - II - MAX. 35 5 10 35 50 mA V D L GT I - II - MAX. 1.3 V V V = V R = 3.3 k I - II - MIN. 0.2 GD D DRM L V Tj = 125°C I (2) I = 100 mA MAX. 35 10 15 35 50 mA H T L IG= 1.2 GT I - III MAX. 50 10 25 50 70 mA II
in „Thyristortetrode für Wechselspannung geeignet ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Rhode_Schwarz_uri_bn1050_handbuch.pdf
000/1/500/12 C14 Kf-Kondensator 25 000 pF/500 V CKS 25 000/1/500/12 C15 Kf-Kondensator 25 000 pF/500 V CKS 25 000/1/500/1 2 C16 Kf-Kondensator 5300 pF/250 V CKS 5300/250 C17 Kf-Kondensator 5000 pF/500 V CKS 5000/500 C19 Kf-Kondensator 5000 pF/500 V CKS 5000/500 C20 Kf-Kondensator 5000 pF/500 V CKS 5000/500 C22 Kf-Kondensalor 100pF/500 V CK 100/500 C23 Kf-Kondensator 100 pF/500 V CK 100/500 C201 Rohrkondensator
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TDP-Performance_-__by_Prof._Rudi_Ratlos_.pdf
VID_VDD Max 9 1.225 V 1.475 V 1.225 V 1.475 V IDD Max 3,10 32.9 A 89.7 A 31.4 A 92.8 A CPU COF 6 N/A 2200 MHz N/A 2400 MHz TDP 3,7 N/A 101.0 W N/A 98.5 W S0.C0.P1 VID_VDD Min 9 N/A 1.100 V N/A 1.100 V VID_VDD Max
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PDF
tps2552.pdf
DRV0006A WSON - 0.8 mm max height SCALE 5.500 PLASTIC SMALL OUTLINE - NO LEAD 2.1 A B 1.9 PIN 1 INDEX AREA 2.1 1.9 0.8 0.7 C SEATING PLANE 0.08 C (0.2) TYP EXPOSED 1 0.1 0.05 THERMAL PAD 0.00 3 4 2X 7 1.3 1.6 0.1 1 6 4X 0.65
in „Problem mit FSUSB30 als USB-Schalter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ACF321825.pdf
resistance Insulation resistance Rated voltage Edc Rated current Part No. frequency frequency range (V)max. (mA)max. Ω )max. (MΩ)min. (MHz) (MHz) [Terminal No.1 to 3] [Terminal No.1 to 2/No.2 to 3] ACF321825-223 17 11 to 55 20 300 0.15 1000 ACF321825-103 27 17 to 60 20 300 0.15 1000 ACF321825-682 37 22 to
in „[V] SMD EMC Filter / T-Filter aus Ferritperle und Kerko (TDK ACF321825-103)“ · Markt ·
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PDF
BCY59.pdf
2/6 BCY58-BCY59 ELECTRICAL CHARACTERISTICS (continued) Symbol Parameter Test Conditions Min. Typ. Max. Unit h fe Small Signal Current Gain C = 2 mA V CE = 5 V f = 1 kHz 125 Gr.VII 125 250 Gr.VIII 175 350 Gr.IX 250 500 Gr.X 350 700 fT Transition Frequency C =10 mA V CE = 5 V f = 100 MHz 200 MHz C EBO
in „HiFi Alternative für BC237, BC107 gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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Bild
Handschriftliche physikalische Berechnungen
Rechnung: fzul = L / 500 = 3750 mm / 500 = 7,5 mm GBr = G' * L = 102 N * 3,75 m = 382,5 N fe max = (5 * GBr * L^3) / (384 * E * Ix) = (5 * 382,5 N * (3750 mm)^3) / (384 * 210 000 N * 318 * 10^4 mm^4) fe max = 0,39 mm fu max <= fzul = ffmax + fe max ffmax = fzul - fe max = 7,5 mm - 0,39 mm = 7,11 mm ffmax = (FR / (48 * E * Ix)) * (L - la) * [3 * L^2 - (L - la)^2] oder bei Radstand la = 0mm: ffmax = (FR / (48 * E * Ix)) * 2 * L^3 FR = (ffmax * 48
in „Frage an die Statiker“ · Mechanik, Gehäuse, Werkzeug · · Sonstiges
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PDF
al-kxj-e-150701.pdf
100 I=0.02CV+25 Where, I : Max. leakage current (µA), C : Nominal capacitance (µF), V : Rated voltage (V) (at 20 ) ℃ Dissipation Factor Rated voltage (Vdc 160 to 250V 350 to 500V (tanЎ) tanδ (Max.) 0.20 0.24 (at 2℃ , 120Hz) Low Temperature Rated voltage (Vdc 160 to 250V 350, 400V 420 to 500V Characteristics (Max.ImpedanceRatio) Z(-25 )℃Z(+20 ) ℃ 3 5 6 Z(-40 )℃Z(+20 ) ℃ 6 6 - (at 120Hz) Endurance The following specifications shall be satisfied when the capacitors are restored℃toafter subjected
in „Frage zu DB NCC Lebensdauer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datenblatt-155635-stmicroelectronics-tl431acz-pmic-spannungsreferenz-shunt-einstellbar-to-92-3.pdf
TL431AI Symbol Parameter Unit Min. Typ. Max. Min. Typ. Max. Reference Input Voltage 2.49 2.49 Vref VKA = V ref Ik = 10 mA, amb = 25°C 2.44 2.55 2.47 2.52 V T ≤T ≤ T 2.41 5 2.58 2.44 5 2.55 min amb max Reference Input Voltage Deviation Over Temperature
in „TL431 schwankt wie verrückt!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HCPL-7800_7800A_Agilent.pdf
) MAX. 1.19 (0.047) MAX. 6.35 ± 0.25 (0.250 ± 0.010) 4.70 (0.185) MAX. 0.51 (0.020) MIN. 2.92 (0.115) MIN. 0.20 (0.008) 1.080 ± 0.320 0.65 (0.025) MAX. 5° TYP. 0.33 (0.013) (0.043 ± 0.013) 2.54 ± 0.25 (0.100
in „8fach Trennverstärker 0..10V - wie realisieren?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ZXBM5210.pdf
V M Power Supply Voltage 3 VDD Power Supply Voltage 4 FWD Forward Control Input (logic level, 5.5V max) 5 REV Reverse Control Input (logic level, 5.5V max) 6 V REF Input reference voltage to set the internal PWM oscillator duty ratio 7 OUT2 Driver Output 8 GND Ground Package: SO8-EP Pin # Pin Name Function
in „Overcurrent Protecion (OCP) bei integrierten Voll-/Halbbrücken“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UA702-Fairchild.pdf
otherwise specified. V+ = 12.0V, V - = -6.0V V+ = 6.0V, V - = -3.0V CHARACTER ISTICS CONDITIONS MIN TYP MAX MIN MAX UNITS TYP Input Offset Voltage RS"; 2 kn 0.5 2.0 0.7 3.0 mV Input Offset Current lBO 500 120 500 nA Input Bias Current 2.0 5.0 1.2 3.5 p.A Input Resistance 16 40 22 67 kn Input Voltage Range
in „OPV mit nicht ganz symmetrischer Versorgung?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
UA702-Fairchild.pdf
otherwise specified. V+ = 12.0V, V - = -6.0V V+ = 6.0V, V - = -3.0V CHARACTER ISTICS CONDITIONS MIN TYP MAX MIN MAX UNITS TYP Input Offset Voltage RS"; 2 kn 0.5 2.0 0.7 3.0 mV Input Offset Current lBO 500 120 500 nA Input Bias Current 2.0 5.0 1.2 3.5 p.A Input Resistance 16 40 22 67 kn Input Voltage Range
in „µA702 - Der Urahne in der Simulation“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FARBSENSOR_TCS_230.pdf
PHOTODIODE PHOTODIODE UNIT CONDITIONS S2 = H, S3 = L S2 = L, S3 = H S2 = H, S3 = H S2 = L, S3 = L MIN TYP MAX MIN TYP MAX MIN TYP MAX MIN TYP MAX Ee= 47.2 W/cm , λ = 470 nm 16 20 24 11.2 16.4 21.6 kHz p Output Ee= 40.4 W/cm , O frequency λ = 524 nm 16 20 24 8 13.6 19.2 kHz p Ee= 34.6 W/cm , λp= 640 nm 16 20
in „Farbsensor TCS 230“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
// // Steuerung und Anzeigeeinheit Netzteil 10V; max 10A Linearregler // ATMEGA 32 - DIP40 // #define F_CPU 25000000 //25MHZ Quarz mit 22pF gegen Masse #include <avr/io.h> #include <util/delay.h> #include <avr/interrupt.h> #include <lcd.c> #include <stdlib.h
in „ATMEGA 32 mit LCD - Probleme mit Interrupt INT0“ · Mikrocontroller und Digitale Elektronik ·
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PDF
62783.PDF
Voltage VCC 50 V Input Voltage V IN 15 V Clamp Diode Reverse Voltage V R 50 V Output Current OUT -500 mA/ch Clamp Diode Forward Current F 500 mA Power Dissipation 960 mW P D Derated Above 25°C 7.7 mW/°C Operating Temperature T OPR -40~+85 °C Storage Temperature TSTG -55~+150 °C Note: Absolute maximum
in „LEDs mit gemeinsamen GND schalten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
acpl-064.pdf
Min. Dimensions in Millimeters (Inches). (0.012) Note: Floating lead protrusion is 0.15 mm (6 mils) max. Lead coplanarity = 0.10 mm (0.004 inches) max. Option number 500 not marked. ACPL-M61L SO-5 Package Land Pattern Recommendation 0.33 0.64 Device Part (0.013) (0.025) Number 1.27 (0.05) For Option x6xE
in „USB-RS232-Konverter mit galvanischer Trennung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
acpl-064.pdf
Min. Dimensions in Millimeters (Inches). (0.012) Note: Floating lead protrusion is 0.15 mm (6 mils) max. Lead coplanarity = 0.10 mm (0.004 inches) max. Option number 500 not marked. ACPL-M61L SO-5 Package Land Pattern Recommendation 0.33 0.64 Device Part (0.013) (0.025) Number 1.27 (0.05) For Option x6xE
in „USB-RS232-Konverter mit galvanischer Trennung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
duv_led_datasheet_280nm_LED_performance_informationV2.pdf
280 ± 10 nm 255 ± 10 nm Spectral linewidth: <20nm FWHM <20nm FWHM CW Drive current, forward: <25 mA, max. <25 mA, max. Reverse current: <100uA max. <100uA max. Operating voltage, reverse: 6 VDC Forward voltage: 7.5V max. Max.pulsed drive current: 200 mA at 1% duty cycle(50nsec max width) Package: TO-39
in „PWM Arduino MEGA 2560“ · Mikrocontroller und Digitale Elektronik ·
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PDF
duv_led_datasheet_280nm_LED_performance_informationV2.pdf
280 ± 10 nm 255 ± 10 nm Spectral linewidth: <20nm FWHM <20nm FWHM CW Drive current, forward: <25 mA, max. <25 mA, max. Reverse current: <100uA max. <100uA max. Operating voltage, reverse: 6 VDC Forward voltage: 7.5V max. Max.pulsed drive current: 200 mA at 1% duty cycle(50nsec max width) Package: TO-39
in „PWM Arduino MEGA 2560“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NCP5104-D.PDF
, GND = Vbridge−40°C < J < 125°C, Outputs loaded with 1 nF) TJ−40°C to 125°C Rating Symbol Min Typ Max Units OUTPUT SECTION Output high short circuit pulsed cuDRV= 0 V, PW v 10 ms (Note 1) DRVsource − 250 − mA Output low short circuit pulsed cuDRVn= Vcc, PW v 10 ms (Note 1) DRVsink − 500 − mA Output
in „Suche SMD Bauteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TDE1798.pdf
TDE1798 THERMAL DATA Symbol Description Value Unit R th j-casehermal Resistance Junction-case (1) max. 30 ⋅C/W R th j-ambientrmal Resistance Junction-ambient (1) max. 90 ⋅C/W 1) Devices bounded on a 40cm glass-epoxy printed circuit 0.15cm thick with 4cm of copper ELECTRICALCHARACTERISTICS (note 2) TDE -25⋅C T j+85⋅C, 6V V CC +35V, Io 500mA(unless otherwise specified). Symbol Parameter Test Condition Min. Typ. Max. Unit V Input Offset Voltage (note 3) – 2 50 mV IO CC Power Supply Current Output High (Tamb = +25⋅C, o = 500mA) – 6.5 8
in „High Side Switch“ · Mikrocontroller und Digitale Elektronik ·
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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
ILX551B_E_.pdf
Characteristics (Ta = 25°C,VDD1= 9V,VDD2= 5V, Clock frequency = 1MHz, Light source = 3200K, IR cut filter:CM-500S (t = 1.0mm)) Item Symbol Min. Typ. Max. Unit Remarks Sensitivity R (30) 40 (50) V/(lx · s) Note 1 Sensitivity nonuniformity PRNU — 2.0 (8.0) % Note 2 Saturation output voltage VSAT (1.5) 1.8 — V —
in „AD Wandler ~ 2 Mhz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ILX551B.PDF
Characteristics (Ta = 25°C,VDD1= 9V,VDD2= 5V, Clock frequency = 1MHz, Light source = 3200K, IR cut filter:CM-500S (t = 1.0mm)) Item Symbol Min. Typ. Max. Unit Remarks Sensitivity R 30 40 50 V/(lx · s) Note 1 Sensitivity nonuniformity PRNU — 2.0 8.0 % Note 2 Saturation output voltage VSAT 1.5 1.8 — V — Dark voltage
in „Problem mit ILX551B (CCD-Sensor)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PA94U_M.pdf
VOLTAGE SWING I = 70mA ±V Ŧ 24 ±V Ŧ 20 V O S S CURRENT, continuous 100 mA SLEW RATE, A V= 100 CC=2.2pF 500 700 V/µS SETTLING TIME, to 0.1% 2V Step 1 µS RESISTANCE no load 100 Ω 2 PA94U P r o d uc t Innova tionFrom PA94 1 Parameter Test Conditions Min Typ Max Units POWER SUPPLY VOLTAGE (Note 5) ±50 ±300 ±
in „Netzstrom-Verzerrungen sichtbar machen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM741_LM1458.pdf
Features Operational Amplifiers for Military, • Input Bias Current . . . . . . . . . . . . . . . . . . . . 500nA (Max) Industrial and Commercial Applications • Input Offset Current . . . . . . . . . . . . . . . . . . . 200nA (Max) The CA1458, CA1558 (dual types); CA741C, CA741 (single types); high-gain operational
in „OPV Versorgungsspannung sinkt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM2585.pdf
occur if the temperature exceeds the maximum junction JA D temperature of the device: PD× θ JA + TA(MAX)≥ TJ(MAX). For a safe thermal design, check that the maximum power dissipated by the device is less than: D ≤ [TJ(MAX)− TA(MAX))]/JA. When calculating the maximum allowable power dissipation, derate
in „LM2585 Frage“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
R3112x_SERIES_Ricoh.pdf
1 Output Current 2 Product Code −V DET[V] V HYS[V] SS 1[µA] SS 2[µA] OUT 1[mA] OUT 2[mA] Min. Typ. Max. Min. Typ. Max. Condi- Typ. Max. Condi- Typ. Max. Condi- Min. Typ. Conditions Min. Typ. tions tions tions R3112x091A/C 0.882 0.900 0.918 0.027 0.045 0.063 0.6 2.0 0.05 0.9 R3112x101A/C 0.980 1.000 1.020
in „IC von Tiefentladungsschutz identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
L6219.pdf
, V REF = 5V; unless oth- erwise specified)See fig. 3. Symbol Parameter Test Condition Min. Typ. Max. Unit OUTPUT DRIVERS (OUT or OUT )A B VS Motor Supply Range 10 46 V ICEX Output Leakage Current VOUT = Vs - <1 50 A VOUT = 0 - <-1 -50 A V Output Saturation Voltage Sink Driver, I = +500mA - 0.3 0.6
in „Schrittmotor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
L6219.pdf
, V REF = 5V; unless oth- erwise specified)See fig. 3. Symbol Parameter Test Condition Min. Typ. Max. Unit OUTPUT DRIVERS (OUT or OUT )A B VS Motor Supply Range 10 46 V ICEX Output Leakage Current VOUT = Vs - <1 50 A VOUT = 0 - <-1 -50 A V Output Saturation Voltage Sink Driver, I = +500mA - 0.3 0.6
in „NEOCENE 2T354211 mit BC337“ · Mikrocontroller und Digitale Elektronik ·
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PDF
L6219.pdf
, V REF = 5V; unless oth- erwise specified)See fig. 3. Symbol Parameter Test Condition Min. Typ. Max. Unit OUTPUT DRIVERS (OUT or OUT )A B VS Motor Supply Range 10 46 V ICEX Output Leakage Current VOUT = Vs - <1 50 A VOUT = 0 - <-1 -50 A V Output Saturation Voltage Sink Driver, I = +500mA - 0.3 0.6
in „Schrittmotor NEOCENE 2T354207“ · Mikrocontroller und Digitale Elektronik ·
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PDF
L6219.pdf
, V REF = 5V; unless oth- erwise specified)See fig. 3. Symbol Parameter Test Condition Min. Typ. Max. Unit OUTPUT DRIVERS (OUT or OUT )A B VS Motor Supply Range 10 46 V ICEX Output Leakage Current VOUT = Vs - <1 50 A VOUT = 0 - <-1 -50 A V Output Saturation Voltage Sink Driver, I = +500mA - 0.3 0.6
in „L6219 Schrittmotor Treiber - Fragen und Feedbackwunsch“ · Platinen ·