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lm3444.pdf
lmSTTT lmSTTT@acMdc@o††Œ‰Ž…@led@d’‰–…’ l‰”…’•”•’…@n••‚…’Z@snvsVXRb L M November 17, 2011 3 4 4 LM3444 4 A C AC-DC Offline LED Driver D C General Description Features The LM3444 is an adaptive constant off-time AC/D■ bApplication voltage raAC
in „High Brightness LEDs > 50W µC als regelbare KSQ“ · Mikrocontroller und Digitale Elektronik ·
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LT1932.pdf
45 45 350 RSET= 562Ω RSET= 562Ω 40 40 ) 300 m A 35 A 35 E 250 ( RSET= 750Ω ( RSET= 750Ω G T 30 T 30 L TJ= 125°C E E O200 R 25 R 25 V TJ= 25°C U U P 150 D 20 D 20 D T = –50°C L RSET= 1.50k L RSET= 1.50k L100 J 15 15 10 10 R = 4.53k R SET= 4.53k 50 5 SET 5 0 0 0 0 5 10 15 20 25 30 35 40 –50 –25 0 25 50
in „IC LED Ansteuerung LTST“ · Analoge Elektronik und Schaltungstechnik ·
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NREL_SPA.pdf
the terms L1, L2, L3, L4, and L5 by using 0 Eqs. (9) and (10) and changing the 0 to 1, 2, 3, 4, 2 JCE 3 and 5, and by using their corresponding values in 0:0019142 JCE þ : ð15Þ 189474 columns A, B, and C in Table 1 (in radians). 3.2.4 Calculate the Earth heliocentric longitude, L (in 3.4.2 Calculate the mean anomaly of the sun (Earth), X radians), 1 (in degrees), 2 3 4 5 L0 þ L1 JME þ L2 JME þ L3 JME þ L4 JME þ L5 JME L ¼ 108 : ð11Þ 3.2.5 Calculate L in degrees, Lðin radiansÞ
in „sun-tracking mit mikrocontroller“ · Mikrocontroller und Digitale Elektronik ·
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NREL_SPA.pdf
the terms L1, L2, L3, L4, and L5 by using 0 Eqs. (9) and (10) and changing the 0 to 1, 2, 3, 4, 2 JCE 3 and 5, and by using their corresponding values in 0:0019142 JCE þ : ð15Þ 189474 columns A, B, and C in Table 1 (in radians). 3.2.4 Calculate the Earth heliocentric longitude, L (in 3.4.2 Calculate the mean anomaly of the sun (Earth), X radians), 1 (in degrees), 2 3 4 5 L0 þ L1 JME þ L2 JME þ L3 JME þ L4 JME þ L5 JME L ¼ 108 : ð11Þ 3.2.5 Calculate L in degrees, Lðin radiansÞ
in „Sonnenscheindauer Sensor selber bauen Eigenbau ATmega Assembler“ · Projekte & Code ·
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MCP73871-Data-Sheet-20002090E__2_.pdf
drain terminal DD BAT of an internal P-channel MOSFET. The MCP73871 Shutdown (VDD = IN) Hi-Z Hi-Z L Shutdown (CE = L) Hi-Z Hi-Z L device provides constant current and voltage regulation to the battery pack by controlling this Preconditioning L Hi-Z L MOSFET in the linear region. The battery charge Constant Current L Hi-Z L control output should be connected to the positive Constant Voltage L Hi-Z L terminal of the battery pack. Charge Complete - Standby Hi-Z L L Temperature Fault L L L Timer Fault L L L Low Battery
in „Fehlersuche beim MCP73871“ · Mikrocontroller und Digitale Elektronik ·
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lt32a1.pdf
1 2 12,14 SC_HP_MUTE SC_HP_MUTE R626 OPCTRL4 R619 8.2K 1/16W C626 FB780 220R/2000mA 6,7 OPCTRL4 SP_AIN_L 1U 10V 1 2 AUDIO-VDD OFF_MUTE U600 12 OFF_MUTE % TDA8933BTW OPCTRL1 100R 1/16W 5% SMD/0402 1 V +C583 +C584 6 OPCTRL1 SMD/0402 C690 ROUTE SYMMETRICALLY 7 W 7 5 0 V V
in „Philips LCD TV kein Bild aber Ton [46PFL7655K/02]“ · Haus & Smart Home ·
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uhp-ma_e.pdf
A.C LVP-S290 JYs200/A.C 79x79 PT-L797PXEL JYd150/A.C×2 NEC日电 MT-1055 JYs200/A.C PT-L797/L JYd150/A.C MT-1050 JYs200/A.C PT-L797PE JYd150/A.C×2 MT MT-1045/E JYs200/A.C PT-L797 JYd150/A.C×2 全功能 MT-10040/E JYs180/A.C PT-L795E JYd275/A.C MT-1040+ JYs180/A.C PT-L795/L795EA JYd275/A.C MT-1035TM/+ JYs150/A.C 90×90 PT-L759A/759 JYd200/A.C MT-1030TM/+ JYs150/A.C 90×90 PT-/757EA JYd200/A.C MT-1024 JYs275/A.C PT-L597E/EA JYd150/A.C 65x70 MT-1020 JYs275/A.C PT-595 JYd275
in „Beamer 'wiederverwerten'?“ · Mikrocontroller und Digitale Elektronik ·
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Zeigt her eure S.M.A.R.T.-Werte!
Model Family: Maxtor DiamondMax Plus 9 family Device Model: Maxtor 6Y080L0 Serial Number: Y245ZT3E Firmware Version: YAR41BW0 User Capacity: 81.964.302.336 bytes ---- SMART Attributes Data Structure revision number: 16 Vendor Specific SMART Attributes with
Family: SAMSUNG SpinPoint T166 series Device Model: SAMSUNG HD501LJ User Capacity: 500.106.780.160 bytes SMART Attributes Data Structure revision number: 16 Vendor Specific SMART Attributes with Thresholds: ID# ATTRIBUTE_NAME FLAG VALUE WORST THRESH TYPE UPDATED WHEN_FAILED
PC Hard- und Software ·didadu · ·89 Antworten
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sony_str-ks360_ks360s_ver-1.0_sm.pdf
I 5 S A L L C U 5 S E T 3 2 L L I K Y E _ _ _ P R 1 E D L Y L E 1 _ DGND 7 JL1016 R1170 100 D A A S S I C K U A A I D A H _ L F B F U H N SAIR MUTE 8 SAIR_MUTE T L L R R S R _ S S D S 4 I F S L 4 C (CHASSIS) JL1013
in „Sony STR KS360S Verstärker geht auf Standby, LED blinkt“ · Mikrocontroller und Digitale Elektronik ·
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MPX4100.pdf
L 0.695 0.725 17.65 18.42 0.136 (0.005) M T A M M 30˚ NOM 30˚ NOM N 0.475 0.495 12.07 12.57 R 0.430 0.450 10.92 11.43 S 0.090 0.105 2.29 2.66 STYLE 1: STYLE CASE 867-08 STYLE 3: PIN 1. VOUT PIN 1. OPEN
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SDR_SDRAM_Rev_1.10_2002-08.pdf
. Table 1. SDRAM Bus Commands Command Abbreviation RASN CASN WEN No operation NOP H H H Active ACT L H H Read RD H L H Write WR H L L Burst terminate BT H H L Precharge PCH L H L Autorefresh ARF L L H Load mode register LMR L L L SDRAM banks must be opened before a range of addresses can be written
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LP133X7-A2.pdf
δWHITE is determined by measuring LON at each test position 1 through 5, and then dividing the maximum L ON of 5 points luminance by minimum L ON of 5 points luminance. For more information see Appendix A - 2. δWHITE Maximum (L ON1, LON2, ....ON5) ÷ Minimum (L ON1, LON2, ...ON5 ) DATA DISPLAY AG JUL 2000
in „13,3" LCD Display“ · Markt ·
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LT1019.pdf
external amplifier. Chip temperature can be externally set for minimumpower consumption. O U TY I P CA L PP IC I L AT Ultralinear Strain Guage Output Voltage Drift 15V 357 * 0.5W 5V 1.003 ( IN OUT 2M E1.002 FULL TEMP RANGE “BOX” LT1019-5 350 L GND BRIDGE R2 M1.001 20k – O LT1019 + E1.000 CURVE A1† R4 A2
in „Referenz Chip LT1019 / Heizung“ · Analoge Elektronik und Schaltungstechnik ·
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VERORDNUNG__EU__Nr._1194_2012.pdf
Europäischen Parlaments und des Rates ( 7) 1 aufgeführten europäischen Normungsgremien erlassen (2) ABl. L 174 vom 1.7.2011, S. 88. wurden. (3) ABl. L 374 vom 27.12.2006, S. 10. (4) ABl. L 11 vom 15.1.2002, S. 4. 6 (5 ABl. L 197 vom 24.7.2012, S. 38. 7) ABl. L 76 vom 24.3.2009, S. 3. () ABl. L 258 vom 26.9.2012, S. 1. () ABl. L 204 vom 21.7.1998, S. 37. 14.12.2012 DE Amtsblatt der Europäischen Union L 342/3 (20) Nach Artikel 8 der Richtlinie 2009/125/EG sollten in Ferner werden in der Verordnung Anforderungen an die Pro dieser
in „Prüfung von LED-Leuchtmitteln“ · Analoge Elektronik und Schaltungstechnik ·
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155008-da-01-en-8X_DAC_AD7808BRZ_SO24W.pdf
AD7808 MSB as the first bit received. The 80C51/80L51 transmit rou- and the 68HC11/68L11 microcontroller. SCK of the 68HC11/ tine should take this into account. In the diagram shownLDAC 68L11 drives the CLKIN of the AD7804/AD7808, while the and CLR are
in „DAC AD7808 wie register setzen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
155008-da-01-en-8X_DAC_AD7808BRZ_SO24W.pdf
AD7808 MSB as the first bit received. The 80C51/80L51 transmit rou- and the 68HC11/68L11 microcontroller. SCK of the 68HC11/ tine should take this into account. In the diagram shownLDAC 68L11 drives the CLKIN of the AD7804/AD7808, while the and CLR are
in „DAC AD7808 Datenübertragung mit ATMega16 klappt nicht“ · Mikrocontroller und Digitale Elektronik ·
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init_ili9225.h
/ #define DarkCyan 0x03EF /* 0, 128, 128 */ #define Maroon 0x7800 /* 128, 0, 0 */ #define Purple 0x780F /* 128, 0, 128 */ #define Olive 0x7BE0 /* 128, 128, 0 */ #define LightGrey 0xC618 /* 192, 192, 192 */ #define DarkGrey 0x7BEF /* 128, 128, 128 */ #define Blue 0x001F /* 0, 0, 255 */ #define Green 0x07E0
in „2.2" 176x220 SPI TFT - Kennt jemand dieses Modell?“ · Mikrocontroller und Digitale Elektronik ·
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XC6216_XE6216.pdf
Voltage 6 Input Voltage 7 6 7 V V V 4 6 T V 4 6 ( N U ( U V 2 5 V V 2 5 O : : : : g 0 4 g a 0 4 g l Output Voltage l l Output Voltage l V V V V u -2 3 u u-2 3 u n t I t I -4 2 u -4 2 O O -6 1 -6 1 -8 0 -8 0 Time(1ms/div) Time(1ms/div) 30/45 XC6216/XE6216 Series ■ TYPICAL PERFORMANCE CHARACTERISTICS
in „Suche schaltung für Ladeerhaltung einer Pufferbatterie“ · Analoge Elektronik und Schaltungstechnik ·
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LT1513_data_en.pdf
22 F U 1.2 12V 4 TAB 1 3 39 22V C 16V R5 1.0 270 C4 R3 0.8 20V C5 0.22 F 0.08 0.1 F 0.6 VOLTAGE * L1A, L1B ARE TWO 10 H WINDINGS ON A LT1513 • TA01 0.4 COMMON CORE: COILTRONICS CTX10-4 0 5 10 15 20 25 30 ** CERAMIC MARCON THCR40EIE475Z OR TOKIN 1E475ZY5U-C304 INPUT VOLTAGE (V) †MBRD340 OR MBRS340T3
in „6V Bleigel-Akku mit 12V/230mA Solarpanel laden“ · Mikrocontroller und Digitale Elektronik ·
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2630_Copy2.pdf
L O V 0.3 V 0.3 L E IO= 9.6 mA E IO= 9.6 mA O = 6.4 mA V I = 5.0 mA L 0.2 O = 6.4 mA L 0.2 E 40 F W W L L 0.1 L 0.1 W – – L L 0 L 0 – 20 VO -60-40 -20 0 20 40 60 80 100 VO -60-40 -20 0 20 40 60 80 100
in „Optokopler (input zwischen 90 und 180V dc) Output transistor an 24V verbunden“ · Mikrocontroller und Digitale Elektronik ·
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OPA548.pdf
Differential 10 || 6 || pF Common-Mode 10 || 4 || pF OPEN-LOOP GAIN Open-Loop Voltage Gain VO= ±25V, R L 1k 90 98 dB VO= ±25V, R L 8 90 dB FREQUENCY RESPONSE Gain-Bandwidth Product RL= 8 1 MHz Slew Rate G = 1, 50Vp-p, L = 8 10 V/ s Full Power Bandwidth See Typical Curve kHz Settling Time: ±0.1% G = –10,
in „Schaltplan für ordentliches Labornetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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sp3222_3232e.pdf
7 kΩ TIMING CHARACTERISTICS Maximum Data Rate 120 235 kbps R =3kΩ, C =1000pF, one driver switching L L Driver Propagation Delay 1.0 µs tPHL RL= 3KΩ, C =L1000pF 1.0 µs t , R = 3KΩ, C = 1000pF PLH L L Receiver Propagation Delay 0.3 µs tPHL RxIN to RxOUT, C =L50pF 0.3 tPLH RxIN to RxOUT, C =L50pF Receiver
in „Kein TX bei GSM Modul“ · Mikrocontroller und Digitale Elektronik ·
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M27C2001.pdf
13.36 0.600P 0.514 0.526 e 2.54 — — 0.100 — — eA 14.99 — — le 0.590 — — eB 16.18 18s03o 0.637 0.710 L 3.18 b 0.125 S 1.52- O 2.49 0.060 0.098 ∅ 7.11 ) — 0.280 — — Nα t( s 32 11° 32 11° u c Figure 10. FDIP32W - 32 pin Ceramic Frit-seal DIP, with window, Package Outline r o P e te A2 A3 A o l b s A1 L
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HCPL2631.pdf
mA U T 0.5 T O C I = 10-15 mA P IO= 16 mA P 0.5 IO= 12.8 mA T F T IO= 12.8 mA T P O 0.4 O 0.4 T 50 L L O E 0.3 E 0.3 L E I = 9.6 mA E IO= 9.6 mA O = 6.4 mA E L 0.2 O O = 6.4 mA L 0.2 E 40 F = 5.0 mA W W L O O W – 0.1 – 0.1 L L L – O 0 O 0 L 20 V -60-40 -20 0 20 40 60 80 100 V -60-40 -20 0 20 40 60 80
in „HCPL2631 Vorwiderstand“ · Mikrocontroller und Digitale Elektronik ·
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IMC0805ER1R8J01_VISHS83958_1-2566393_unpw.pdf
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 according to IEC 61249-2-21 definition
in „Pollin SMD-Induktivitäten identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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vitolig_300_vl3a.pdf
Mischer-Motor 1 O Anschlussblock Pufferladeregler K Heizkreispumpe 2 P Anschlussblock Heizkreis 2 L Mischer-Motor 2 R Anschlussblock Heizkreis 1 Temperatursensoren und Fernbedienung 1 8 5A Externe Wärmeanforderung B Endschalter Umschalteinheit 31 Heruntergeladen von manualslib.de Handbücher-Suchmachiene
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PSpice_LibraryguideOrCAD.pdf
TD3070/27C DIODE.OLB Diodes and Rectifiers TD3070 TD3070/27C/RAD DIODE.OLB Diodes and Rectifiers UES302L UES302L/-55C DIODE.OLB Diodes and Rectifiers UES302L UES302L/125C DIODE.OLB Diodes and Rectifiers UES302L UES302L/27C DIODE.OLB Diodes and Rectifiers UES302L UES302L/27C/RAD DIODE.OLB Diodes and Rectifiers
in „pSpice - Bauteil hinzufügen.“ · Analoge Elektronik und Schaltungstechnik ·
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LTC6803-2_4.pdf
Current, Measure Mode Current Into the V Pin When Measuring (Note 7) Continuous Measuring (CDC = 2) 620 780 1000 µA Continuous Measuring (CDC = 2) l 600 780 1150 µA Measure Every 130ms (CDC = 5) l 190 250 360 µA Measure Every 500ms (CDC = 6) l 140 175 250 µA Measure Every 2 Seconds (CDC = 7) l 55 70 105 µA
in „uC für Schaltregler“ · Mikrocontroller und Digitale Elektronik ·
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LT1083_LT1084_LT1085_LT.pdf
100mA E 4 VOUT =10V R 2 VOUT=10V C R V =13V R VIN=13V D 2 C 2 IN C 1 PRELOAD=100mA O D PRELOAD=100mA D L 0 O 0 O 0 0 50 100 L 0 50 100 L 0 50 100 TIME ( s) TIME ( s) TIME ( s) 1083/4/5 ADJ G22 1083/4/5 ADJ G23 1083/4/5 ADJ G24 LT1083 LT1084 LT1085 Line Transient Response Line Transient Response Line Transient Response 150 60 60 E )100 CADJ= 0 E 40 CADJ = 0 E ) 40 CADJ= 0 A V A V C = 1 F A V C = 1 F L ( 50 CADJ= 1 F L N 20 ADJ L ( 20 ADJ V O V I V O T T 0 T A 0 T T 0 P I P V P V U E–50 U D–20 U E –20 O –100 O –40 O D –40 –150 VOUT = 10V –60 VOUT= 10V –60 VOUT = 10V IIN= 0.2A IN= 0.2A IIN= 0.2A V 14
in „Aus 12V 5V machen“ · Mikrocontroller und Digitale Elektronik ·
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LT1085.pdf
100mA E 4 VOUT =10V R 2 VOUT=10V C R V =13V R VIN=13V D 2 C 2 IN C 1 PRELOAD=100mA O D PRELOAD=100mA D L 0 O 0 O 0 0 50 100 L 0 50 100 L 0 50 100 TIME ( s) TIME ( s) TIME ( s) 1083/4/5 ADJ G22 1083/4/5 ADJ G23 1083/4/5 ADJ G24 LT1083 LT1084 LT1085 Line Transient Response Line Transient Response Line Transient Response 150 60 60 E )100 CADJ= 0 E 40 CADJ = 0 E ) 40 CADJ= 0 A V A V C = 1 F A V C = 1 F L ( 50 CADJ= 1 F L N 20 ADJ L ( 20 ADJ V O V I V O T T 0 T A 0 T T 0 P I P V P V U E–50 U D–20 U E –20 O –100 O –40 O D –40 –150 VOUT = 10V –60 VOUT= 10V –60 VOUT = 10V IIN= 0.2A IN= 0.2A IIN= 0.2A V 14
in „LT1085 parallel“ · Analoge Elektronik und Schaltungstechnik ·
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ag172d.pdf
AG172D A15G0029 3 MAIN FRAME A33G0030 ZT 1L 32 CABLE COVER A34G0048 ZTA4B REAR COVER AM1G1740 8 47 CR3 SCREW AM1G1740 10 47 CR3 SCREW AUPC6QA3P AUDIO BOARD CBPC780KC6HZP CONVERSION BOARD KEPC6QH2P KEY BOARD PWPC1742HDN2P POWER G1994-1-X-X-2-060829
in „Geplatzte 25V-Elkos im 12V-Netzteil gegen 16V Low ESR austauschen?“ · Analoge Elektronik und Schaltungstechnik ·
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HCPL_7520.pdf
Recommended Pb-Free IR Profile TIMEWITHIN5˚CofACTUAL PEAKTEMPERATURE tp 20-40SEC. 260+0/-5˚C Tp C T 217˚C ( L RAMP-UP R 3˚C/SEC.MAX. RAMP-DOWN U 150-200˚C 6˚C/SEC.MAX. A Tsmax E T P smin E t T s L 60to150SEC. PREHEAT 60to180SEC. 25 t25˚CtoPEAK TIME (SECONDS) NOTES: THE TIME FROM 25 ˚C to PEAK TEMPERATURE = 8
in „Isolierte Netzspannungsmessung“ · Analoge Elektronik und Schaltungstechnik ·
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MT8870d.pdf
interruptions (dropout) # H X H 1 1 0 0 too short to be considered a valid pause. This facility, A H L H 1 1 0 1 together with the capability of selecting the steering B H L H 1 1 1 0 time constants externally, allows the designer to C H L H 1 1 1 1 tailor performance to meet a wide variety of system requirements. D H L H 0 0 0 0 A H H L Guard Time Adjustment B H H L undetected, the output code will remain the same as the C H H L previous detected code D H H L In many situations not requiring selection of tone duration
in „MT8870 (DTMF Encoder) an eine Telefonleitung anschließen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mt8870.pdf
interruptions (dropout) # H X H 1 1 0 0 too short to be considered a valid pause. This facility, A H L H 1 1 0 1 together with the capability of selecting the steering B H L H 1 1 1 0 time constants externally, allows the designer to C H L H 1 1 1 1 tailor performance to meet a wide variety of system requirements. D H L H 0 0 0 0 A H H L Guard Time Adjustment B H H L undetected, the output code will remain the same as the C H H L previous detected code D H H L In many situations not requiring selection of tone duration
in „DTMF Tonwahlfrequenzen mit dem MT8870 wie funktioniert das ?“ · Mikrocontroller und Digitale Elektronik ·
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opa547.pdf
6 Ω || pF Common-Mode 10 || 4 Ω || pF OPEN-LOOP GAIN Open-Loop Voltage Gain, f = 10Hz VO= ±25V, R L 1kΩ 100 115 dB V = ±25V, R = 50Ω 110 dB O L FREQUENCY RESPONSE Gain-Bandwidth Product R = 50Ω 1 MHz L Slew Rate G = 1, 50Vp-p, L = 50Ω 6 V/µs Full-Power Bandwidth See Typical Curve kHz Settling Time:
in „Simples digitalgesteuertes Netzteil nur mit D/A und Op-Amp?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Mech_Elekt_Daten_-_EI-Bleche_abfallos_nach_DIN_EN_60740-1.pdf
mass AFe Eisenquerschnitt / Iron cross section k Windungslänge kleinste / Winding lengths minimum lFe Eisenweglänge / Iron path length m Windungslängen mittlere / Winding lengths average m Fe Masse des Eisenkerns / Mass of iron core Füllfaktor/Filling factor / Facteur de remplissage h = 0,94, DFe =
in „EE-Transformator-Kern(-bleche) Berechnung Quelle“ · Analoge Elektronik und Schaltungstechnik ·
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Laser_frequency_offset_locking_using_a_side_of_filter_technique.pdf
Bose–Einsteincondensationoftheatoms.Foroperationofthe by a high pass filter (Mini-Circuits SHP200) with 3 dB point MOT,twodiodelasersatwavelengthnear λ=780nm (Rb D2 at frequency νhp 164MHz and subsequently attenuated by line)areusedasacoolingandrepumpinglaser.Thedifference 3 dB . The second part is used for normalization only and is frequency of both lasers
in „Frequenzabhängige Fehlersignalschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
ffft.S
define SQRT32_ROUTINE 3 #if SQRT32_ROUTINE == 1 .macro SQRT32 ; 32bit square root (526..542clk) clr T6L clr T6H clr T8L clr T8H ldi BL, 1 ldi BH, 0 clr CL clr CH ldi DH, 16 90: lsl T2L rol T2H rol T4L rol T4H rol T6L rol T6H rol T8L rol T8H lsl T2L rol T2H rol T4L rol T4H rol T6L rol T6H rol T8L rol T8H
in „AVR Assembler Konstanten variabel machen“ · Mikrocontroller und Digitale Elektronik ·
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151998-da-01-en-HCPL7840_Optokoppler.pdf
5 V) – 0.15 – 0.11 –0.055 Y Y Y I I TA= 25°C I TA= 25°C R R R E E E I 0.10 VDD1= 5 V I 0.10 I0.050 L VDD2= 5 V L L O VIN–= 0 V O O N T = 25 °C N N – 0.05 A – 0.09 –0.045 L L L N N N -40 -20 0 20 40 60 80 100 0.04.4 4.6 4.8 5.0 5.2 5.4 5.6 0.044.4 4.6 4.8 5.0 5.2 5.4 5.6 TA– TEMPERATURE – °C VDD – SUPPLY
in „analoges Signal galvanische Trennung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HCPL7840.pdf
5 V) – 0.15 – 0.11 –0.055 Y Y Y I I TA= 25°C I TA= 25°C R R R E E E I 0.10 VDD1= 5 V I 0.10 I0.050 L VDD2= 5 V L L O VIN–= 0 V O O N T = 25 °C N N – 0.05 A – 0.09 –0.045 L L L N N N -40 -20 0 20 40 60 80 100 0.04.4 4.6 4.8 5.0 5.2 5.4 5.6 0.044.4 4.6 4.8 5.0 5.2 5.4 5.6 TA– TEMPERATURE – °C VDD – SUPPLY
in „Galvanisch getrennte Spannungsmessung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HCPL7840.pdf
5 V) – 0.15 – 0.11 –0.055 Y Y Y I I TA= 25°C I TA= 25°C R R R E E E I 0.10 VDD1= 5 V I 0.10 I0.050 L VDD2= 5 V L L O VIN–= 0 V O O N T = 25 °C N N – 0.05 A – 0.09 –0.045 L L L N N N -40 -20 0 20 40 60 80 100 0.04.4 4.6 4.8 5.0 5.2 5.4 5.6 0.044.4 4.6 4.8 5.0 5.2 5.4 5.6 TA– TEMPERATURE – °C VDD – SUPPLY
in „Analoge Optokopplung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
diagramm.asm
Escape-Taste COM equ 3f8h COMSER equ 3fdh LOESCHATTRIBUT equ 0 offset0 = 3600h ;Offset zum Ziffern-L schen offset1 = 2ch ;High-Byte-Offset zur Ziffernausgabe frage0laenge = 43 ;L nge der Zeichenkette prompt0length = 115 ;L nge der Zeichenkette meldung0laenge = 40 ;L nge der Zeichenkette meldung1laenge = 320 ;L nge der Zeichenkette hinweis0laenge = 36 ;L nge der Zeichenkette hinweis1laenge = 160 ;L nge der Zeichenkette hinweis2laenge = 47 ;L nge der Zeichenkette hinweis3laenge = 47 ;L nge der Zeichenkette hinweis4laenge
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SP3222EBEP.pdf
Hysteresis 0.3 V Input Resistance 3 5 7 kΩ TIMINGCHARACTERISTICS MaximumData Rate 250 kbps RL=3kΩ, C L1000pF, one driver switching Receiver Propagation Delay 0.15 µs t , RxIN to RxOUT, C =150pF PHL L 0.15 tPLH RxIN to RxOUT, C L150pF Receiver Output Enable Time 200 ns Receiver Output Disable Time 200
in „Adafruit Ultimate GPS Breakout mit SP3232 an RS232“ · Mikrocontroller und Digitale Elektronik ·
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LT.pdf
solely byCRndC .C sychronizing discussions. 1 fZERO = 2π R• C •C C 12 LT1074/LT1076 O U TY I P CA L PP IC I L AT S Tapped-Inductor Buck Converter L2 L1* 5 H VOUT † VIN VIN VSW 3 1 5V, 10A 20V - 35V D2 LT1074HV 35V D1** R1 5W 2.8k FB + C1 GND VC 4400 F (2 EA + C4 R3 D3 R2 2200 F, 390 F 1k 1N5819 2.21k
in „Prinzipielle Fragen zum Schaltregler“ · Analoge Elektronik und Schaltungstechnik ·
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S5K433CA.PDF
TSTG -40 to +125(1) °C -40 to +852) NOTES: 1. The maximum allowed storage temperature for S5K433C(L)X01. 2. The maximum allowed storage temperature for S5K433C(L)X02 and S5K433C(L)X03. 7 S5K433CA, S5K433LA 1/4” VGA CMOS IMAGE SENSOR ELECTRICAL CHARACTERISTICS DC Characteristics (TA= -20 to +60°C, CL
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LT1074.pdf
solely byCRndC .C sychronizing discussions. 1 fZERO = 2π R• C •C C 12 LT1074/LT1076 O U TY I P CA L PP IC I L AT S Tapped-Inductor Buck Converter L2 L1* 5 H VOUT † VIN VIN VSW 3 1 5V, 10A 20V - 35V D2 LT1074HV 35V D1** R1 5W 2.8k FB + C1 GND VC 4400 F (2 EA + C4 R3 D3 R2 2200 F, 390 F 1k 1N5819 2.21k
in „LT1074HV wozu Pin VC Datenblatt strange“ · Mikrocontroller und Digitale Elektronik ·
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WSM200.pdf
104 P 3 2 222 0 3 3 0 P0µ×°åX199 4 2 P0µ×°åX302 470R P0U2A02 9 P0805001 P0802V02 P0802V01 0 2 P 1 L 1 XH-03a2) 0 V K 2 0 8 3 P 2 1 P 3 P 3 P0µ×°åX403 · P0µ×°åX1010 1 5 1 1 5 0 2 P0U1A04 PC817 P CURRENT TEST8 0 P PC817-1 7 2 103 P + 1´ 0 / 0 0 / P X P0µ×°åX303 2 2 2 1 8.2V 2 8 3 32L431 P0µ×°åX501 0
in „Inverter Elektroden-Schweißgerät abgeraucht -> IGBT defekt“ · Analoge Elektronik und Schaltungstechnik ·
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LG4573A_DS_V1.1.5__1_.pdf
Supply Specifications No. Item LG4573 1 TFT source lines 1440 pins (480 x RGB) 2 GIP control signals FW_L, BW_L, GPWR1_L, GPWR2_L, GCLK4_L, GCLK3_L, GCLK2_L, GCLK1_L, GVST1_L, GVST2_L, FW_R, BW_R, GPWR1_R, GPWR2_R, GCLK4_R, GCLK3_R, GCLK2_R, GCLK1_R, GVST1_R, GVST2_R, 3 Input voltages IOVCC 1.65 to 3.30
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ERM4004-1_Series_Datasheet.pdf
Datasheet ERM4004-1 Series EastRising buydisplay.co m 3. OUTLINE DRAWING 1 . O 0 0.62 1 2 0.55 t T : L H A D . S D 0 7 i o 5 . . t C 司 O 0 0 0 0 e d C . D f y 公 O l 0 1 e c g 限 P u i . i p l i m 9 P s o 有 . x o s n I M N 0.07 l c 技 i R 0 . u e : S S . 3 15.42 i B m T 科 E - T 1 1 P i m 方 M 0 A 12.25 e
in „LCD Display Pin belegung“ · Mikrocontroller und Digitale Elektronik ·
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lt3502.pdf
C1: JMK316BJ107ML 3502 TA02b C3: HMK212BJ104MG L1: LQH43CN100K03 L1: LQH43CN3R3M03 1.8V Step-Down Converter V V BD BD 3V TO 7V 3V TO 7V 0.1μF 0.1μF BD BD VIN VIN BOOST VIN VIN BOOST 3V TO 40V C2 C3 L1 3V TO 40V C2 C3 L1 1μF 0.1μF 4.7μH VOUT 1μF 0.1μF
in „Bitte um Kontrolle des Layout - LT3502A“ · Mikrocontroller und Digitale Elektronik ·