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3990fa.pdf
APPLICATION FRONT PAGE APPLICATION FRONT PAGE APPLICATION VIN= 12V VOUT= 3.3V VOUT= 5V VOUT= 3.3V 600 600 ) 12 R1 = 1M TYPICAL µ R2 = 576k A TYPICAL A ( (550 (550 N 9 T T R E MINIMUM E U R500 R500 MINIMUM C U U L 6 D D P A450 A450 S L L 3 400 400 0 350 350 –50 –25 0 25 50 75 100 125 150 5 15 25 35 45
in „LT3990 Layout“ · Platinen ·
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Datenblatt-METRAHIT-XTRA.pdf
+ 3 1,5 + 10 (> 200 D) 1,5 + 30 (> 200 D) R 11) PRO - R 1 A 100 A 40 mV 40 mV 0,9 + 10 1,5 + 10 (> 200 D) 1,5 + 30 (> 200 D) 10 A: 5 mi11) X P 10 A 1 mA 600 mV 600 mV 0,9 + 10 1,5 + 10 (> 200 D) 1,5 + 30 (> 200 D) 16 A: 30 s 10 mA 1 A 16 mV 16 mV 0,1 + 5 1 + 10 (> 200 D) 1,5 + 30 (> 200 D) A H 100 mA 10 A 160 mV 160 mV 0,1 + 5 1 + 10 (> 200 D) 1,5 + 30 (> 200 D) 0,2 A dauernd E 11) T ECH T 1 A 100 A 40 mV 40 mV 0,9 + 10 1 + 10 (> 200 D) 1,5 + 30 (> 200 D) 10 A: 5 mi11) 10 A 1 mA 600
in „Unsicherheit bestimmen: Multimeter mit Datenblatt“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
laufschr.asm
jumper_eep equ p3.2 ; Jumper fuer EEPROM-Betrieb jumper_baud equ p3.3 ; Jumper fuer ser. Baudrate jp_baud_600 equ p1.5 ; Jumper fuer ser. Baudrate 600 Baud ser_wait equ p3.4 ; ser. Handshake led equ p1.7 ; LED fuer ser
in „Anstuerung MAX6952 an einen 89C2051 oder einen PIC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
safety_SI844x.pdf
4.01 mm Minimum Internal Gap (Internal Clearance) 0.008 0.008 mm Tracking Resistance PTI IEC60112 600 600 V RMS (Proof Tracking Index) Erosion Depth ED 0.040 0.019 mm Resistance (Input-Output)2 R 1012 1012 : IO Capacitance (Input-Output)2 C f = 1 MHz 2.0 2.0 pF IO Input Capacitance3 C I 4.0 4.0 pF Notes
in „isolierter DCDC Konverter 600V DC Dauerfestigkeit“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
10134fd.pdf
O = 10Hz 0.07 0.07 pA/√Hz Input Resistance – Differential (Note 2) 100 400 70 300 MΩ Common Mode 5 4 GΩ AVOL Large-Signal Voltage Gain VO= ±10V, RL= 2k 1.5 8.0 1.2 7.0 V/µV VO = ±10V, L = 600Ω 0.8 2.5 0.5 2.0 V/µV Input
in „LT1013 Unterschied D und P Package“ · Analoge Elektronik und Schaltungstechnik ·
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QPD1025_Data_Sheet.pdf
ReferenceDesignator Value Qty Manufacturer Part Number L1,L2 110nH 2 Coilcraft, Inc 0805CS-111XJBC C2 0.7pF 1 AmericanTechnical Ceramics 600S0R7FT250XT C3,C4 20pF 2 AmericanTechnical Ceramics 600S200T250T C6,C7 5.6pF 2 AmericanTechnical Ceramics 600S5R6T250T C21, C22, C27 6.8pF 3 AmericanTechnical Ceramics 600S6R8FT250XT C1, C5,C8 8.2pF 3 AmericanTechnical Ceramics 600S8R2FT250XT C19,C20 12pF 2 AmericanTechnical Ceramics 800B120BC500XT C23 1.5pF 1 AmericanTechnical Ceramics 800B1R5BC500XT C30 1.8pF 1 AmericanTechnical
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BTB-16-600BW_EN.pdf
BTA16, BTB16 and T16 Series ® SNUBBERLESS™, LOGIC LEVEL & STANDARD 16A TRIAC S Table 1: Main Features A2 Symbol Value Unit T(RMS) 16 A G V DRM /VRRM 600, 700 and 800 V A1 I 10 to 50 mA A2 GT (Q1) A1 A2 G DESCRIPTION D PAK Available either in through-hole or surface-mount
in „Optotriac und Triac richtig beschalten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BTB-16-600BW_EN.pdf
BTA16, BTB16 and T16 Series ® SNUBBERLESS™, LOGIC LEVEL & STANDARD 16A TRIAC S Table 1: Main Features A2 Symbol Value Unit T(RMS) 16 A G V DRM /VRRM 600, 700 and 800 V A1 I 10 to 50 mA A2 GT (Q1) A1 A2 G DESCRIPTION D PAK Available either in through-hole or surface-mount
in „Optotriac und Triac richtig beschalten“ · Analoge Elektronik und Schaltungstechnik ·
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Philips_BC846.pdf
= 100 mA; I = 5 mA; − 200 600 mV C B note 1 VBEsat base-emitter saturation voltage IC= 10 mA; B = 0.5 mA − 700 − mV IC= 100 mA; B = 5 mA; − 900 − mV note 1 VBE base-emitter voltage IC= 2 mA; VCE= 5 V 580 660
in „Und wieder eine kleine lustige Teilesucherei Mosfet“ · Analoge Elektronik und Schaltungstechnik ·
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BT139-800G.pdf
control ■ Industrial and domestic lighting, heating and static switching. 1.4 Quick reference data ■ V ≤ 600 V (BT139-600) ■ V ≤800 V BT139-800G ) DRM DRM ■ V DRM ≤ 600 V (BT139-600F) ■ I T(RMS)≤ 16 A ■ V DRM ≤ 800 V (BT139-800) ■ I TSM ≤ 155 A. ■ V DRM ≤ 800 V (BT139-800F) 2. Pinning information Table 1:
in „Triac direkt mit ATTiny steuern?“ · Mikrocontroller und Digitale Elektronik ·
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Diagrams_TF-118_TF-100.pdf
3 RESET_N C C L L L L L L A A A A S M T T T C C I I B B B B B B B B B B B CPU_3.3V O O P P P P P P J J J J R R B B B I I G G U U U U US U U U U U U R17 100K_%1 R18 C32 0 1 4 6 8 5 7 9 4 4 4 4 2 9 3 4 5 7 8 0 0 3 4 8 9 1 5 6 0 2
in „Photo-Rahmen als Farbdisplay“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS-FPPP15-45_6_.pdf
Connector Model PP15 PP30 PP45 Connector Model PP15 PP30 PP45 ULCurrent Rating (Amperes)* 15* 30* 45* Life a. No load (Contact/Disconnect Cycles) To 10,000 To 10,000 To 10,000 ULVoltage Ratings (Volts)** 600* 600* 600* b. Under Load (Hot Plug 250 cycles @ 120V) 15A 30A 30A Contact Barrel Wire Size (AWG) #16
in „Stecker für 400VDC/14A ?“ · Analoge Elektronik und Schaltungstechnik ·
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ax50424_ds_v1_3.pdf
voltage A 1µF low ESR capacitor to GND must be connected to this pin NC 25 N Not to be connected VDD 26 P Power supply, must be supplied with regulated voltage VREG CLK16P 27 A Crystal oscillator input/output
in „WetterDirekt Wetterstation Basteleien“ · HF, Funk und Felder ·
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A500_KB357NT_V6__1_.pdf
CTR(%) KB357NLT L 50 to 100 KB357N1T A 80 to 160 KB357N2T B 130 to 260 KB357N3T C 200 to 400 KB357N4T D 300 to 600 KB357N5T A or B 80 to 260 KB357N6T B or C 130 to 400 KB357N7T C or D 200 to 600 KB357N8T A,B or C 80 to 400 KB357N9T B,C or D 130 to 600 KB357N0T A,B,C or D 80 to 600 KB357NT L,A,B,C,D or No mark 50 to 600 SPEC NO: DSAD2841 REV NO: V.6 DATE:NOV/22/2004 PAGE: 2 OF 7 APPROVED: J. Lu CHECKED: Tracy Deng DRAWN: Y.CHENG PHOTOCOUPLER KB357NT
in „Drehzahlmesser mit Mega8“ · Mikrocontroller und Digitale Elektronik ·
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Optokoppler.pdf
CTR(%) KB357NLT L 50 to 100 KB357N1T A 80 to 160 KB357N2T B 130 to 260 KB357N3T C 200 to 400 KB357N4T D 300 to 600 KB357N5T A or B 80 to 260 KB357N6T B or C 130 to 400 KB357N7T C or D 200 to 600 KB357N8T A,B or C 80 to 400 KB357N9T B,C or D 130 to 600 KB357N0T A,B,C or D 80 to 600 KB357NT L,A,B,C,D or No mark 50 to 600 SPEC NO: DSAD2841 REV NO: V.6 DATE:NOV/22/2004 PAGE: 2 OF 7 APPROVED: J. Lu CHECKED: Tracy Deng DRAWN: Y.CHENG PHOTOCOUPLER KB357NT
in „S0 Ausgang wird von Gerät nicht erkannt, falscher OK?“ · Mikrocontroller und Digitale Elektronik ·
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A600_v2.1_Amplifier_Kit_full_assembly_instructions-2.pdf
A600 v2.1 1.8-72MHz 600W amplifier kit I designed, built and tested this in my spare time with little expectations, a lot of curiosity and a hope to make my small contribution to the Amateur Radio world
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Datei
harware_config_default.txt
.c and ENCX24J600.h ported to a non-Microchip device * used in conjunction with a Microchip ethernet controller for * the sole purpose of interfacing with the ethernet controller. * * You should refer to the license
in „I/O Pins konfigurieren“ · Mikrocontroller und Digitale Elektronik ·
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bourns-PTC-MF-R.pdf
Represents total content. Layout may vary. s n 10 IDENTIFICATION DATE CODE: c 025 WEEK 1 OF 2000 = 0A S MANUFACTURER'S 0A WEEK 27 OF 2000 = A0 p TRADEMARK (WEEK & YEAR) t 1 t e Typical Part Marking: MF-R030 - R1100 i 0.1 Represents total content. Layout may vary. T MANUFACTURER'S 0.01 PART TRADEMARK
in „Batteriehalter mit unbekannten Bauteil“ · Analoge Elektronik und Schaltungstechnik ·
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GBS-8200_CGA_to_VGA_HD-Converter.pdf
Power DC5V 2A +/- 0.5v P7 or P9 Input 14.5-16.5K signal CGA/EG 23.5-25.5K Auto P3 or P11 or P10 A 30.5-32.5K scan RGBHV 30.5-32.5K Auto P10 or P11 scan VGA 30.5-32.5K Auto P10 or P11 scan Ypbpr 480p,576p,720p,108 Auto P2 0p scan Ycbcr 480i,576i,720i,1080i Auto P2 scan Output VGA 640*480,800*600 P4 and P12 signal 1024*768,1360*768 User control Input Switch, Image Zoom, Image Position, Menu Key Output Resolution ,R\G\
in „Videosignal identifizieren und übersetzen“ · Mikrocontroller und Digitale Elektronik ·
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TLC-Electronic.pdf
P/N IH, (A) IT (A) V max, (V) Imax (A) (A) (Sec.) Pd typ(W) R min R max R1max, TRA005 0.05 0.10 16 40 0.25 5.0 0.26 8.00 11.50 17.00 TRA010 0.10 0.20 16 40 0.50 4.0 0.35 2.00 4.50 6.70 TRA017 0.17 0.34
in „Wer kennt dieses Bauteil?“ · Analoge Elektronik und Schaltungstechnik ·
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25l2c_OPERATIONAL_AMPLIFIERStlc25m2.pdf
input to 1 1 1 µV/°C offset voltage 70°C 25°C 1 60 1 60 1 60 I Input offset currentV = 0.2 V 0°C to pA IO O 300 300 300 70°C 25°C 1 60 1 60 1 60 IB Input bias current VO = 0.2 V 0°C to pA 70°C 600 600 600 Common-mode input 0 to 0 to 0 to VICR voltage range 25°C 0.2 0.2 0.2 V Peak output voltage VOM swing
in „Merten Dimmaktor (6470 29) keine 0-10V am Ausgang“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2013-07-31_UT61A-E.pdf
4 A 0,001 A 10 A 0,01 A ±(1,5%+3Digit) UT61C/D: Bereich Auflösung Genauigkeit 600 µA 0,1 µA ±(1,0%+3Digit) 6000 µA 1 µA 60 mA 0,01 mA 600 mA 0,1 mA 6 A 0,001 A ±(1,5%+3Digit) 10 A 0,01 A 20 UT61E: Bereich
in „Messungen mit DMM Dual-Slope Verfahren am PMOS“ · Analoge Elektronik und Schaltungstechnik ·
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A100-BC327_28_BC337_38.pdf
VCB =20V, E =0 <100 nA O TJ=150 C VCB =20V , E =0 <5.0 µA Emitter cut off Current IEBO VEB =5V, C =0 <10 µA DC Current Gain hFE C =500mA,V CEV >40 I =100mA,V =1V C CE 100-600 100-400 100-600 Group-10 63-160 63-160 Group-16 100-250 100-250 Group-25 160-400 160-400 Group-40 250-600 250-600 Collector Emitter Saturation Voltage VCEsat)* IC=500mA,I B50mA <0.70 V Base Emitter On Voltage VBEon)* C =500mA,V CE=1V <1.20 V DYNAMICS CHARACTERISTICS Transition Frequency fT C =10mA, VCE5V
in „Tansistor brechnen allgemein“ · Analoge Elektronik und Schaltungstechnik ·
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LTC4054-4.2.pdf
Corporation. Bluetooth Applications ThinSOT is a trademark of Linear Technology Corporation. *U.S.Patent No. 6,522,118 U TYPICAL APPLICATIO Complete Charge Cycle (750mAh Battery) 700 4.75 CONSTANT 600mA Single Cell Li-Ion Charger 600 CURRENT 4.50 )
in „akku mit solar aufladen, kommt das IC: LT1734L dafür in Frage?“ · Analoge Elektronik und Schaltungstechnik ·
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DMOS_Analog_Switch_Introduction.pdf
the switch is off. In this state, the p-type material in the channel Protection Structure Zener Insulated forms two back-to-back diodes and prevents Gate channel conduction (Figure 3a). If a voltage is applied between the S and D regions,
in „Gerät elektronisch abschalten“ · Mikrocontroller und Digitale Elektronik ·
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2SD965.pdf
7 mA ( 800 5 T = 75°C C ) 6 mA ) a −25°C P ( ( n C1.6 4 t 600 I 5 mA IC p n n s r 4 mA r d c 1.2 c 3 e o 3 mA r w 400 c c p l 0.8 l 2 o o 2 mA o c C C l 200 C 0.4 1 mA 1 0 0 0 0 20 40 60 80 100 120 140 160
in „CCFL Displaybeleuchtung steuern“ · Mikrocontroller und Digitale Elektronik ·
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Ferrite.pdf
- 1,30 - 1,15 µH Q > 130 ( @ 455 KHz @ 420 µH ) 4774 □ 7.5 - h 12 mm 120 + 30 turns , capacity 180 pF 500 - 900 Q > 100 ( a 455 KHz @ 700 µH ) BV- 0,70 - 0,60 µH □ 10 - h 13 mm 96HT 50 + 100 turns ( 600 - 930 µH ) // 182 pF 600 - 930 + 20 turns, resonance L+C 400 - 500 KHz BV- µH coil Q > 80( @ 455
in „Gefunden und für gut befunden.Filterliste.“ · HF, Funk und Felder ·
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LT1302_2Cells_to_5V_600mA.pdf
Output Current Step-Up Adjustable and Fixed 5V DC/DC Converters U F EA U T RE S DESCRIPTIO ® 5V at 600mA or 12V at 120mA from2-Cell Supply The LT 1302/LT1302-5are micropower step-up DC/DC 200 A Quiescent Current converters that maintain high efficiency over a wide Logic Controlled Shutdown to 15 A range
in „Welcher DC-DC-Converter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lt1302-1605370.pdf
Output Current Step-Up Adjustable and Fixed 5V DC/DC Converters U F EA U T RE S DESCRIPTIO ® 5V at 600mA or 12V at 120mA from2-Cell Supply The LT 1302/LT1302-5are micropower step-up DC/DC 200 A Quiescent Current converters that maintain high efficiency over a wide Logic Controlled Shutdown to 15 A range
in „[V] Konvolut (16) ältere LinearTech StepUps LT1302, 1305, SO8 (10€)“ · Markt ·
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PDF
lt1302.pdf
Output Current Step-Up Adjustable and Fixed 5V DC/DC Converters U F EA U T RE S DESCRIPTIO ® 5V at 600mA or 12V at 120mA from2-Cell Supply The LT 1302/LT1302-5are micropower step-up DC/DC 200 A Quiescent Current converters that maintain high efficiency over a wide Logic Controlled Shutdown to 15 A range
in „[V] kleines Konvolut ältere DIL / DIP ICs (8€)“ · Markt ·
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PDF
iso-tech.pdf
measurement z Auto power off z Shock proof from 4 feet drops z Protective holster with tilt stand z CAT.IV 600V/CAT.III 1000V Safety standard SPECIFICATION: (All at 23℃±5℃,≦80% R.H.) DC/AC Voltage Range Input Impedance Accuracy 600.0mV DC~1000V DC 10MΩ ±(0.5%+2dgt) ±(0.9%+5dgt) 600.0mV AC~750V AC 10MΩ//<100pF
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max1481-max1486.pdf
12 20 50 ns A Receiver Disable Time from High tRHZ CL= 100pF, S2 closed, Figures 6 and 12 20 50 ns M Time to Shutdown SHDN MAX1481 only (Note 4) 50 200 600 ns / Driver Enable from Shutdown to MAX1481 only, C = 15pF
in „MODBUS Protokoll MSP430“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HTC8632.pdf
over Temperature 66 Open-loop voltage gain R = 10kΩ, V = 0.05 to 3.5 V 98 114 over Temperature L O 90 A dB VOL 88 102 RL= 600Ω, VO= 0.15 to 3.5 V over Temperature 72 R IN Input resistance 100 GΩ Differential 2.0 C IN Input capacitance pF Common mode 3.5 OUTPUT CHARACTERISTICS RL= 600Ω VS+75 V OH High output
in „Identifizierung 8 pin SMD Bauteil aus BLDC Controller“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS_LTV8X6.pdf
Voltage F=0 Emitter-Collector BV ECO 6 — — V E=10 A Breakdown Voltage F=0 Collector Current IC 2.5 — 30 mA F=5mA VCE=5V *1 Current Transfer Ratio CTR 50 — 600 % Collector-Emitter F=20mA Saturation Voltage V CE(sat) — 0.1 0.2 V C=1mA 10 11 DC500V TRANSFER
in „Problem mit Optokoppler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DPA.pdf
600 20-280 10mA DPA6119 600 20-280 3.5V (ChipSwitch and HEXFET are trademarks of International Rectifier) fi Series DPA ChipSwitch DIP Relay Electrical Specifications (-30°C ≤ T ≤ +85°C unless otherwise
in „Daten(blatt) von SSR gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
stgp10nc60k.pdf
STGB10NC60K - STGD10NC60K STGP10NC60K 2 N-channel 600V - 10A - D PAK / TO-220 / DPAK Short circuit rated PowerMESH™ IGBT General features Type V VCE(sat)x C CES @25°C @100°C STGB10NC60K 600V <2.5V 10A 3 STGP10NC60K 600V <2.5V 10A 1 STGD10NC60K 600v <2.5V
in „Suche IGBT MOSFET ohne Bodydiode“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
benning_cm1_1_cm1_2_manual.pdf
60 Hz protection 20 A 0.01 A ± (3.0 % of the measured value + 5 digits) 600 A eff 200 A 0.1 A ± (2.0 % of the measured value + 5 digits) 600 Aeff 400 A 1 A ± (2.0 % of the measured value + 5 digits) 600 Aeff BENNING CM 1
in „Stromzange 1mA.5A AC/DC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
isl5585-1529099.pdf
defines the load current. TIP The cadence provides a time averaging reduction in the peak TIP AMP power. The total power dissipation consists of ringing power, 600 P r and the silent interval power, Ps. tr ts RING AMP P RNG = P r -- - + Ps -- - - (EQ
in „Anschluss eines alten Analigtelefons an einen RasPi für Audio in/out“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX4508-MAX4509.pdf
1000 c 1μ c 2.5 c V+ = +12V 0 V+ = +15V 0 V+ = +15V 0 900 V- = 0 +125°C 5 V- = -15V 0 V- = -15V 0 A 100n V = 10V A A 800 M COM M 2.0 M +85°C 10n VNO = ±10V 700 +70°C ) ) 600 +25°C ( ICOM_OFF 1.5 DUAL ( E 1n C SUPPLIES O500 -40°C A ( R A ICOM_ON Q 400 L100p 1.0 300 -55°C 10p NO_OFF 200 0.5 1p SINGLE
in „Messsystem mit PhotoMOS“ · Analoge Elektronik und Schaltungstechnik ·
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Datenblatt_THS4531.pdf
Magnitude V S 2.7 V d 100 Phase g G = 1 V/V e d ) −40 R F 2 k d 90 −45 ( ( R = 2 k i 80 s r L g h r M 70 P E −50 i 60 −90 a c a G a p 50 o a −60 o 40 L t L 30 −135 n p e p u p 20 O O −70 O 10 010 100 1k 10k 100k 1M 10M 100M−180 −80 Frequency (Hz) G022 100k 1M 10M 30M Frequency (Hz) G023 Figure 24. Figure
in „Symmetrischer Filter, FilterPro, THS4531“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SA5.0CA.pdf
VOLTAGE OF V ID@ IPP -55°C TO VWM VWM VCMAX. (Figure 2) 17° C @ IPP α MIN. MAX V(BR) VOLTS VOLTS mA VOLTS µ ADC VOLTS AMP % / ° SA5.0 6.40 7.30 10 5.0 600 9.6 52 .057 SA5.0A 6.40 7.00 10 5.0 600 9.2 54.3 .057 SA6.0 6.67 8.15 10 6.0 600 11.4 43.9 .059 SA6.0A 6.67 7.37 10 6.0 600 10.3 48.5 .059 SA6.5
in „Ersatztypen für Diode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LGP42-10LF_EAY60869402_PLHF-L923A.pdf
6 1 Q601 STF13NM60 TK10A60 STF13NM60 BM LLF-103 LLF-103 LLF-104 P Q602 N.C TK10A60 STF13NM60 Q601 LJ LF102,103 30mH 30mH 23mH 42’ 2.5D-15 2.5D-15 N.C R604 D604 D 4 1 TH600 2 200 1N4148W R605 LB604 G O PFC_MULTI P 1 1 P L600
in „LG Inverter Kapazitator abgebrannt“ · Analoge Elektronik und Schaltungstechnik ·
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RJH60F5DPQ.pdf
V IC= 80 A, VGE = 15 V Input capacitance Cies 2780 pF V = 25 V CE Output capacitance Coes 122 pF V GE= 0 V f = 1 MHz Reverse transfer capacitance Cres 43 pF Switching time td(on) 53 ns IC= 30 A,
in „Inverter Elektroden-Schweißgerät abgeraucht -> IGBT defekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LA_LO_LS_LY_T676_Pb_free.pdf
-24 amber 112 ... 280 600 (typ.) Q65110A9274 LA T676-S1T1-24 180 ... 355 760 (typ.) Q65110A9275 LA T676-Q2T1-24 90 ... 355 665 (typ.) Q65110A9273 LO T676-R1S2-24 orange 112 ... 280 600 (typ.) Q65110A2148 LO T676-S1T1-24 180
in „LED's ohne vorwiderstand Oo“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TLP293_4_datasheet_en_20190520.pdf
. C Ambient temperature Ta (˚C) Ambient temperature Ta (˚C) I - D I - V F P R F F Pules width ≤100 μs Ta=25˚C ) A e m l ( p IF t e A n 125˚C r ( r 110˚C c u 85˚C r P d 50˚C a I a 25˚C o r 0˚C t f -25˚C p u -55˚C I maximum limit to the inputhe p forward current (pulsed). I -3 -2 -1 0 10 10 10 10 Duty cycle ratio DR Input forward voltageV F (V) ∆ V / ∆ Ta - I I – V F F F P F P n i A f ( e c F r I t C d r / e p m u m ( ( t T n n / e r F u c V d d Δ a a r Pulse width ≤10 μs r f Repetitive frequency=100 Hz f u Ta=25°C u p n I I Input forward currentIF (mA) Input forward voltage
in „Optokoppler TLP293-4 - Datenblatt lesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
000-1-KA7305.pdf
WIN / BLK V AGC OUT 46 15 N.C N.C N.C 47 14 5VA VCC2 N.C 48 13 1 2 3 4 5 6 7 8 9 10 11 12 1 1 2 1 2 A 3 C P H P D D G A L . . . V S S S G G P D C N N N A 0 0 5V 5V 1 1 : VARIABLE VOLTAGE A : AMPERE METER : SIGNAL GENERATOR : ANALOG GND V : VOLT METER : DIGITAL GND KA7305 B/W CCD PROCESSOR APPLICATION CIRCUIT 5V 22μH POWER 5V 100Ω + SUPPLY 103 10 F 5V /16V F 50KΩ CCD p 10KΩ 2SK300 KC73125 - M 2 10KΩ 50KΩ μ K 2 . 1 22μF 3 5V KDS226 1KΩ + + /16V 1KΩ T X T ) T 100KΩ Ω p O M O U - + U 2 4 C C C N L P C C O ( ( T 2 C N G I C L G G P P P E 10KΩ V A C A A O O O D 5V 8 7 6
in „Türsprechanlage - wie anschließen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
harman_kardon_hkts200-230_hkts210-230_sub.pdf
P0L101 P0L102 P SPK+0SPK+ C P P P P P P P P P 4 P IN5A0IN5A IN B GND2B 2 C C 0 9 1uF Filter AUTO/ON +3.3V 0 0 R48 . P P D R L1 0 1 1 2 470k DCPN0DCP 31 P0IC9031 P0IC906 6 2 P PR49 6 100V 5 4 8 IN2A GND2A
in „Überspannung Herman Kardon Subwoofer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
OPV_LT1359CN.pdf
Impedance vs Frequency Capacitive Load Margin vs Supply Voltage 1k 10 38 50 V = ±15V S 8 VS= ±15V C = 1000pF 36 TA= 25°C 48 TA = 25°C TA= 25°C 100 ) 6 AV = –1 34 46 Ω AV= 100 d C = 500pF z PHASE MARGIN H ( AV= 10 E 4 H 32 44 S C D C = 100pF ( E A 10 I 2 T 30 42 A E N I R P A = 1 A 0 C = 50pF D 28 40 N I V
in „Operationsverstärker (OPV) wird heiß als Summierer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
OPV_LT1359CN.pdf
Impedance vs Frequency Capacitive Load Margin vs Supply Voltage 1k 10 38 50 V = ±15V S 8 VS= ±15V C = 1000pF 36 TA= 25°C 48 TA = 25°C TA= 25°C 100 ) 6 AV = –1 34 46 Ω AV= 100 d C = 500pF z PHASE MARGIN H ( AV= 10 E 4 H 32 44 S C D C = 100pF ( E A 10 I 2 T 30 42 A E N I R P A = 1 A 0 C = 50pF D 28 40 N I V
in „Operationsverstärker (OPV) wird heiß als Summierer“ · Analoge Elektronik und Schaltungstechnik ·
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LT1358__25MHz__LT.pdf
Impedance vs Frequency Capacitive Load Margin vs Supply Voltage 1k 10 38 50 V = ±15V S 8 VS= ±15V C = 1000pF 36 TA= 25°C 48 TA = 25°C TA= 25°C 100 ) 6 AV = –1 34 46 Ω AV= 100 d C = 500pF z PHASE MARGIN H ( AV= 10 E 4 H 32 44 S C D C = 100pF ( E A 10 I 2 T 30 42 A E N I R P A = 1 A 0 C = 50pF D 28 40 N I V
in „defekte LT1358“ · Analoge Elektronik und Schaltungstechnik ·