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Neu_Textdokument.txt
unsigned char xdata Komando_lesen _at_ 0x8001; // Busyflak abfragen ob bereit unsigned char xdata Daten_schreiben _at_ 0x8002; // Ausgabe an das Display weitergeben unsigned char xdata Daten_lesen _at_ 0x8003; // Display einlesen enum BAUDRATE
in „LCD-Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CMX865A_datasheet.pdf
D/865A/5 May 2012 CMX865A – DTMF CODEC AND TELECOM SIGNALLING COMBO Features Applications • V.23 1200/75, 1200/1200, 75, 1200 bps FSK • Wireless Local Loops • Bell 202 1200/150, 1200/1200, 150, 1200 bps FSK • SMS Phones • V.21 or Bell 103 300/300 bps FSK • Security Systems • Low Voice Falsing DTMF Decoder
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Control_Loop_Cookbook__SLUP113a__TI.pdf
gain Figure 2, at C (where T = 1, with associated 90° block, KPWR , whose characteristic is V/d. phase lag), the closed-loop gain G(s) is 3db down Overall open-loop gain T(s) determines how (with 45° phase lag). Thus,
in „SG3524 bleibende Regelabweichung“ · Analoge Elektronik und Schaltungstechnik ·
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AVR042_Hardware_Design_Considerations_doc2521.pdf
Devices with Fuses that are not Accessible Through ISP Programming Device Fuses Not Programmable by ISP AT90LS/S1200 SPIEN and RCEN AT90LS/S2313 SPIEN and FSTRT AT908515 SPIEN and FSTRT Two standard connectors are provided by the Atmel ISP programmers: A 6-pin and a 10-pin connector. These are shown in Figure
in „Atmega 8A PU“ · Mikrocontroller und Digitale Elektronik ·
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3454fa.pdf
LTC3454 1A Synchronous Buck-Boost High Current LED Driver FEATURES DESCRIPTION ® n High Efficiency: >90%Typical in Torch Mode, The LTC 3454 is a synchronous buck-boost DC/DC >80%in Flash Mode converter optimized for driving a single high power LED n Wide V Range: 2.7V to 5.5V at currents up to 1A from
in „Gibt es Buck-Converter, die einen regelbaren Konstantstrom liefern?“ · Analoge Elektronik und Schaltungstechnik ·
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Anleitung-Eurolite-SL-1200-search-light-de_en_es_fr.pdf
sorgung anges hlssen ha ben,nimm dtr S L-1200 den B etreb auf. Währen d des Res e juste ren sich die Motoren aus und das Ger ä ist nac h ca. 20 Sekunden betriebsbere t. Stele n Se den Fo kus durch Vor- und Zurückbewe gen der Objektivlnse
in „Eurolite SL-1200: Thermische Abschaltung nach 10 min (HMI-Lampe)“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
device.c
ATtiny4313", 2048, 0x60, 256, 256, DF_NO_MUL|DF_NO_JMP|DF_NO_ELPM|DF_NO_ESPM|DF_NO_EICALL|DF_NO_EIJMP}, /* AT90 series */ { "AT90S1200", 512, 0x00, 0, 64, DF_NO_MUL|DF_NO_JMP|DF_TINY1X|DF_NO_XREG|DF_NO_YREG|DF_NO_LPM|DF_NO_ELPM|DF_NO_SPM|DF_NO_ESPM|DF_NO_MOVW|DF_NO_BREAK|DF_NO_EICALL|DF_NO_EIJMP}, // 137 - MUL(6) - JMP(2) - TINY(10) { "AT90S2313", 1024, 0x60, 128, 128, DF_NO_MUL|DF_NO_JMP|DF_NO_LPM_X|DF_NO_ELPM|DF_NO_SPM|DF_NO_ESPM|DF_NO_MOVW|DF_NO_BREAK|DF_NO_EICALL|DF_NO_EIJMP}, { "AT90S2323", 1024, 0x60, 128, 128, DF_NO_MUL|DF_NO_JMP
in „AVR-ChipBasic2 - BASIC-Computer mit ATMega 644“ · Projekte & Code ·
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Datei
device.c
ATtiny4313", 2048, 0x60, 256, 256, DF_NO_MUL|DF_NO_JMP|DF_NO_ELPM|DF_NO_ESPM|DF_NO_EICALL|DF_NO_EIJMP}, /* AT90 series */ { "AT90S1200", 512, 0x00, 0, 64, DF_NO_MUL|DF_NO_JMP|DF_TINY1X|DF_NO_XREG|DF_NO_YREG|DF_NO_LPM|DF_NO_ELPM|DF_NO_SPM|DF_NO_ESPM|DF_NO_MOVW|DF_NO_BREAK|DF_NO_EICALL|DF_NO_EIJMP}, // 137 - MUL(6) - JMP(2) - TINY(10) { "AT90S2313", 1024, 0x60, 128, 128, DF_NO_MUL|DF_NO_JMP|DF_NO_LPM_X|DF_NO_ELPM|DF_NO_SPM|DF_NO_ESPM|DF_NO_MOVW|DF_NO_BREAK|DF_NO_EICALL|DF_NO_EIJMP}, { "AT90S2323", 1024, 0x60, 128, 128, DF_NO_MUL|DF_NO_JMP
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TPS_Datasheet.pdf
6000) B(4000) 0.68 684 A(6000) A(6000) A(3000), R(6000) A(3000) 1 105 R(9000) R(2500,4000) C(2500) S(6000), T(2000) B(2000) 1.5 155 A(3000) B(2500) C(1500,2000) B(1800) A(1800,3500) A(1500), B(750, 2.2 225 R(7000) A(1800) A(3000) B(900,1200,2500) D(1200) T(2000) 1500,2000),C(1000) A(2500) A(1000,1500
in „Was für besondere Kondensatoren sind das??“ · Mikrocontroller und Digitale Elektronik ·
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UPC1676G.pdf
AMPLIFIER UPC1676P FEATURES UPC1676G NOISE FIGURE AND GAIN • WIDE BANDWIDTH: vs. FREQUENCY AND VOLTAGE 1200 MHz at 3 dB Point for UPC1676G 30 1300 MHz at 3 dB Point for UPC1676B, UPC1676P VCC= 5.5 V • HIGH POWER GAIN: 22 dB TYP AT f = 500 MHz 5.0 V ) d • HIGH ISOLATION )20 GP 4.5 V 10 F • SINGLE POWER SUPPLY
in „ATmega8. Umbau als 2GHz Frequenz-Logger“ · Mikrocontroller und Digitale Elektronik ·
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bc847_p.pdf
frequency IC= 10 mA; V CE= 5 V; 100 - - MHz f = 100 MHz F noise figure IC= 200 A; V CE = 5 V; - 2 10 dB R S 2 k ; f = 1 kHz; B = 200 Hz [1] Pulse test: t ≤ 300 s; δ ≤ 0.02. p [2] V BEdecreases by approximately 2 mV/K with increasing temperature. 9397 750 14609 © Koninklijke Philips Electronics N.V. 2005. All
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AN1543-D.PDF
0.64 6/1800 28/T8 70 128/0.70 )0.05 5/1500 36/T12 65 113/0.64 ( 5/1500 28/T8 58 113/0.63 E0.04 N 4/1200 36/T12 40 104/0.42 T 4/1200 28/T8 36 104/0.42 S0.03 R 3/900 28/T8 30 101/0.36 0.02 2/600 36/T12 20 58/0.38 2/600 28/T8 18 58/0.38 0.01 0 Table 10.Preferred Core Suppliers 0 200 400 600 800 1000 1200
in „Reparatur EVG für T5 Röhre“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
dude5.4arduino_avr910.txt
0x2f = (unknown) Device code: 0x30 = AT90S4433 Device code: 0x31 = (unknown) Device code: 0x32 = (unknown) Device code: 0x33 = (unknown) Device code: 0x34 = AT90S2333 Device code: 0x35 = (unknown) Device code: 0x36 = (unknown) Device code:
in „avrdude - Probleme unter Mac OS X 10.7 (Lion)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dude54arduino.txt
0x2f = (unknown) Device code: 0x30 = AT90S4433 Device code: 0x31 = (unknown) Device code: 0x32 = (unknown) Device code: 0x33 = (unknown) Device code: 0x34 = AT90S2333 Device code: 0x35 = (unknown) Device code: 0x36 = (unknown) Device code:
in „avrdude - Probleme unter Mac OS X 10.7 (Lion)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD8253.pdf
Page 7 of 24 AD8253 Data Sheet TYPICAL PERFORMANCE CHARACTERISTICS T A 25°C, +V = +15SV, −V = −15 V, S = 10 kΩ, unlLss otherwise noted. 210 240 180 210 150 T T180 N N U U F120 F150 O O R R120 B 90 B M M U U 90 N N 60 60 30 30 0 6 0 0 –60 –40 –20 0 20 - –60 –40 –20 0 20 40 60 3 9 9 CMRR (µV/V) 0 INPUT
in „2 Fragen zur Verstärkerschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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AV02-0717EN.pdf
peak output current • Wide operatingV CC range: 15 to 30Volts • Drive IGBTs up to C = 150 A,VCE = 1200 V • -40°C to +100°C operating temperature range • Optically isolated, FAULT status feedback • 15 kV/µs min. Common Mode Rejection (CMR) at • SO-16 package VCM = 1500 V • CMOS/TTL compatible • Regulatory
in „Mosfet/IGBT und Treiber für einenMosfet/IGBT“ · Mikrocontroller und Digitale Elektronik ·
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PDF
as5installer_stable-5.0.1038-readme-1.pdf
AT90PWM316 Full Control Full Full Control AT90PWM3B Full Control Full Full Control AT90PWM81 Full Control Full Full Control AT90USB1286 Full Control Full Full Control AT90USB1287 Full Control Full Full
in „AVR-Studio 5“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dude5.6_avr910.txt
0x2f = (unknown) Device code: 0x30 = AT90S4433 Device code: 0x31 = (unknown) Device code: 0x32 = (unknown) Device code: 0x33 = (unknown) Device code: 0x34 = AT90S2333 Device code: 0x35 = (unknown) Device code: 0x36 = (unknown) Device code:
in „avrdude - Probleme unter Mac OS X 10.7 (Lion)“ · Mikrocontroller und Digitale Elektronik ·
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LUW_W5AM_Pb_free.pdf
Moisture-sensitivelabelorprint V LE L E , lsee )e I a rfdyt(lH Barcodelabel bmuidi R H. vi h /6e% N E S re afraack gdt 30 ˚Cae IO ta I ITO R 9 % to ak0 of < r T c SE ND UC d<ected ( e ign s C ,or o de). Houou urs s A s baR I OE ˚C as e s n condi ± 5 ˚ at c e 74 8 4H H our C T ISTSE M t 0 lbp<).i ctry 3 ˚C withd ortrti i e e 6 MPT O t s havth le at fna d at2 re. tical FlFl l ootrti O m oni eqe i lb e lw g ,n:r a oce du iden el4l5 a FF l d:w,o rc,gdeee be untwh e ke pr a t is r L Le vevelel6 l d pe rbfl e bn i e s re m10% o rba eald
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AD7606_7606-6_7606-4.pdf
(PSRR) is defined as the The measured ratio of signal-to-(noise + distortion) at the ratio of the power in the ADC output at full-scale frequency, f, output of the ADC. The signal is the rms amplitude of the to the power of a 100 mV p-p sine wave applied to the ADC’s fundamental.
in „STM32 Parallel Bus ADC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1963.pdf
0V 2 A VIN= VOUT(NOMINAL)+ 1V, ∆VOUT = –0.1V ● 1.6 A Input Reverse Leakage Current (Note 13) Q, T, S8 Packages VIN –20V, V OUT = 0V ● 1 mA ST Package V = –20V, V = 0V ● 2 mA IN OUT Reverse Output Current (Note 11) LT1963-1.5 VOUT = 1.5V, IN< 1.5V 600 1200 µA LT1963-1.8 VOUT = 1.8V, IN< 1.8V 600 1200
in „LT1963 puffern 2,5A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT1963.pdf
0V 2 A VIN= VOUT(NOMINAL)+ 1V, ∆VOUT = –0.1V ● 1.6 A Input Reverse Leakage Current (Note 13) Q, T, S8 Packages VIN –20V, V OUT = 0V ● 1 mA ST Package V = –20V, V = 0V ● 2 mA IN OUT Reverse Output Current (Note 11) LT1963-1.5 VOUT = 1.5V, IN< 1.5V 600 1200 µA LT1963-1.8 VOUT = 1.8V, IN< 1.8V 600 1200
in „Widerstände für Spannungsregler ergeben nicht gewünschte Spannung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lt1963es8.pdf
0V 2 A VIN= VOUT(NOMINAL)+ 1V, ∆VOUT = –0.1V ● 1.6 A Input Reverse Leakage Current (Note 13) Q, T, S8 Packages VIN –20V, V OUT = 0V ● 1 mA ST Package V = –20V, V = 0V ● 2 mA IN OUT Reverse Output Current (Note 11) LT1963-1.5 VOUT = 1.5V, IN< 1.5V 600 1200 µA LT1963-1.8 VOUT = 1.8V, IN< 1.8V 600 1200
in „LT1963 SHDN (shutdown) Pin Potenzialfrei ansteuern“ · Analoge Elektronik und Schaltungstechnik ·
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NXP_BC846_BC546_Series.pdf
The term ‘short data sheet’ is explained in section “Definitions”. [3] The product status of device(s) described in this document may have changed since this document was published and may differ in case of multiple devices. The latest product status information is available on the Internet at URL http
in „Und wieder eine kleine lustige Teilesucherei Mosfet“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
21237_0_samwha-green-cap.pdf
Operating temperature range -40 ~ 60C Rated Voltage 2.5 VDC Capacitance tolerance -20 ~ +20% or 0% ~ 20% at 20C Capacitance change Within ±5% of initial value atC+20° Low temperature characteristics Internal resistance Within 150% of initial value atC+20° Test time 1000 hours Endurance (60° C) Capacitance
in „Goldcap auslutschen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
samwha-green-cap.pdf
Operating temperature range -40 ~ 60C Rated Voltage 2.5 VDC Capacitance tolerance -20 ~ +20% or 0% ~ 20% at 20C Capacitance change Within ±5% of initial value atC+20° Low temperature characteristics Internal resistance Within 150% of initial value atC+20° Test time 1000 hours Endurance (60° C) Capacitance
in „Green-Cap/Super-Cap 2.7V 500F - fake?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
samwha-green-cap.pdf
Operating temperature range -40 ~ 60C Rated Voltage 2.5 VDC Capacitance tolerance -20 ~ +20% or 0% ~ 20% at 20C Capacitance change Within ±5% of initial value atC+20° Low temperature characteristics Internal resistance Within 150% of initial value atC+20° Test time 1000 hours Endurance (60° C) Capacitance
in „Datenblatt von Kondensator“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
XLamp7090XR-E.pdf
1.919.313.5300 5 CLD-DS05.011 www.cree.com/xlamp Relative Flux vs. Junction Temperature (I = 350 mA) F 100% 90% u 80% F s 70% u o 60% i m 50% White u L 40% Blue e Green t 30% a e 20% R 10% 0% 25 50 75 100 125 150 Junction Temperature (°C) 100% 90% 80% u F 70% t n 60% i d a 50% R v 40% t Royal l 30% e Electrical
in „LiPo Zelle Impulsbelastung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DA_Mean-Well-GSM90A24-P1M-Tischnetzteil-Festspannung-24-V-DC-3.75A-90W.pdf
HORIZONTAL) 80 90 100 110 120 140 160 180 200 220 240 264 AMBIENT TEMPERATURE (℃) INPUT VOLTAGE (VAC) 60Hz Mechanical Specification Case No. GS90A Unit:mm Ul1185 14AWG 1000±50mm for 12 ~ 15V 32 145 UL1185 16AWG 1200±50mm
in „Welcher IC ist das? SOT23-6 Marking: 368L 4? 945“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PSS15NC1FT.pdf
output current 3-phase full wave rectification 15 A I Surge forward current Peak value of half cycle at 60Hz, Non-repetitive 245 A FSM I t I t capability Value for 1 cycle of surge current 252 A s T j Junction temperature -30~+150 °C CONTROL (PROTECTION) PART Symbol Parameter Condition Ratings Unit V D
in „ein echter Monsterchip“ · Offtopic ·
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PDF
lt3580.pdf
50 0 0 0 10 20 30 40 50 60 70 80 90 0 0.5 1 1.5 2 0 200 400 600 800 1000 1200 SS VOLTAGE (mV) DUTY CYCLE (%) SWITCH CURRENT (A) 3580 G01 3580 G02 3580 G03 Switch Current Limit at Minimum Switching Waveforms for Duty Cycle Positive Feedback
in „Switcher CAD III Simulation - Schaltungsfehler ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
slac-pub-13410.pdf
using two parallel factor of 2 less than the TO247 packaged device, 1.40±0.03 ns drivers on PCB#3. At near full device power; 1000 V charge versus 3.25±0.09 ns. and 27 Ω load (33 A), the 90% to 10% voltage fall time was 2. The gate waveform of the hybrid circuit has much less 1.19±0.03ns as shown in
in „SiC MOSFET schnell (28 MHz) schalten“ · HF, Funk und Felder ·
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PDF
LT1014CN_DN.pdf
otherwise noted) † LT1014C LT1014D PARAMETER TEST CONDITIONS TA MIN TYP MAX MIN TYP MAX UNIT 25°C 90 450 250 950 VIO Input offset voltage RS= 50 Ω µV Full range 570 1200 25°C 0.2 2 0.2 2 IO Input offset current nA Full range 6 6 I Input bias current 25°C −15 −50 −15 −50 nA IB Full range −90 −90 25°C
in „Unterschied beim LT1014 ?“ · Mikrocontroller und Digitale Elektronik ·
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avr_memory_contents_after_sleep_and_reset.pdf
distributed, reproduced, and modified without restrictions. Updates and additional design notes can be found at: www.avrfreaks.net AVR Memory Contents After Sleep and Reset Introduction The AVR contains volatile memories like SRAM, IO Registers and the Register File with 32 general purpose registers. What happens
in „"Standard" Initialisierung von Registern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
semicon.pdf
TO92 998 RECT Motorola TL431LCP TO92 2050 x MUR140 SOD 2000 x Motorola MMBD2835 LTI SOT23 878 x FS8AT 8A / 50V 35nS fast rectifier TO220 45 x MC78M05 CT Motorola TO220 85 RECT HFA16PA60C 2x8A / 600V 65nS fast rectifier ( dual ) TOP3 162 RECT STTA1206D 12A / 600V 28nS fast rectifier TO220 278 RECT RHRP1560
in „4" TFT für 7,97€“ · Markt ·
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LS902UT_int.pdf
MONITOR FEATURES ® K Crisp, Clear Display for Windows or Macintosh K Supports Resolutions up to 1600×1200 K Supports Refresh Rate up to 85Hz at 1280×1024 ® H K Windows 95/98/Me/2000 Plug & Play Compliant I K Power Management (E NERGY STAR® and VESADPMS Compliant) G N K Space Saving, Compact Case Design
in „Erstinbetriebnahme CRT Monitor - Was ist zu beachten?“ · Analoge Elektronik und Schaltungstechnik ·
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HD44100_Spaltentreiber.pdf
Y60 2100 880 4 Y27 –2100 1865 38 72 Y59 2100 1040 5 Y26 –2100 1690 39 SHL –270 –2100 73 Y58 2100 1200 6 Y25 –2100 1520 40 CL2 –70 –2100 74 Y57 2100 1360 7 Y24 –2100 1360 41 DI 130 –2100 75 Y56 2100 1520 8 Y23 –2100 1200 42 DO 350 –2100 76 Y55 2100 1690 9 Y22 –2100 1040 43 77 Y54 2100 1865 10 Y21 –2100
in „HD44780 und HD44100 Schaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet-23.pdf
= ±10 V Source Imbalance G = 1 78 86 dB G = 10 94 100 dB G = 100 94 100 dB G = 1000 94 100 dB CMRR at 5 kHz VCM= ±10 V G = 1 74 80 dB G = 10 84 90 dB G = 100 84 90 dB G = 1000 84 90 dB NOISE RTI noise = ni+ (enoG) ) Voltage Noise, 1 kHz Input Voltage Noisenie VIN, IN− = 0 V 14 14 17 nV√Hz Output Voltage
in „Puls von EKG ableiten und weiterverarbeiten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PC2402LRS-AWA-H.pdf
angles θ1 and θ2 Light (when reflected) z (θ°) Sensor Cmax. θ Y’(∅=180°) Contrast LCD panel C X’ X(∅=90°) 2.0 ∅ Z’ θ1 θ2 Light (when transmitted ) Y(∅=0°) viewing angle θ (∅ fixed) (θ=90°) Note : Optimum viewing angle with the naked eye and viewing angle θ at Cmax. Above are not always the same Note 3:
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180520-da-01-en-PLCC_4LED_ASMT_QTB0_0AA02_RGB.pdf
PartNumber Bin ID (mcd) (mcd) Bin ID (mcd) (mcd) Bin ID (mcd) (mcd) ASMT-QTB0-0AA02 U1 450 620 V2 900 1200 S2 224 280 Notes: 1. The luminous intensity IV, is measured at the mechanical axis of the LED package. The actual peak of the spatial radiation pattern may not be aligned with this axis. 2. Tolerance
in „PWM RGB-Led Beleuchtung“ · Mikrocontroller und Digitale Elektronik ·
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RGB_Bildsensor_-_D100997D.pdf
t t I C 1 t T e k G G G O S a I φ T V t m M ( o e T N R Data Sheet S15330EJ4V0DS 9 µPD8872 TIMING CHART 2 (Bit clamp mode, for each color) t1 t2 90% φ1 10% φ2 90% 10% t1' t2' φ1L 90% 10% φ2L 90% 10% t5 t3 t6 t4 t5 t3 t6 t4 φ RB
in „Pollin 1,95€ RGB Bildsensor - C-Mos Pegel“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TIRIS2.ASM
; TIRIS2.ASM ; TIRIS reader with external amplifier ; AT90S1200 processor , 12.00 MHz XTAL ; RS232 out 10 bytes data+crc, 2 bytes CRC checksum result ; combined TX/RX-coil ; .device at90s1200 .nolist .include "1200def.inc" .list ; hardware connections: ; PORTD
in „??90s1200 -> Tiny2313 Proggi anpassen??“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TIRIS1.ASM
; TIRIS1.ASM ; TIRIS reader simple version ; AT90S1200 processor , 12.00 MHz XTAL ; RS232 out 10 bytes data+crc, 2 bytes CRC checksum result ; combined TX/RX-coil, no external amplifier ; .device at90s1200 .nolist .include "1200def.inc" .list ; hardware
in „RFID mit ATMega8 MC-Board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BFR93.pdf
Rev. 1.5, 25-Jul-06 BFR93A/BFR93AR/BFR93AW Vishay Semiconductors V CE = 8 V, I =C25 mA, Z = 50 Ω 0 S 11 S 21 j 90° 120° 60° j0.5 j2 150° 30° j0.2 j5 0.1 2.0 GHz 0.3 0 0.2 1.0 1 2 5 180° 2.0 GHz 20 40 0° 0.3 - j0.2 0.1 - j5 - 150° - 30° - j0.5 - j2 - 120° - 60° 13534 - j 13536 - 90° Figure 5. Input Reflection Coefficient Figure 7. Forward Transmission Coefficient S 12 S 22 90° 2.0 GHz j 120° 1.5 60° j0.5 j2 1.0 150° 30° j0.2 j5 0.5 0.1 180° 0.08 0.16 0° 0 0.2 0.5 1 0.8 5 2.0 GHz - j0.2 0.1 - j5 - 150° - 30° - j0.5 - j2 - 120° - 60° 13537 13535 - 90° - j Figure
in „Suche Vergleichstyp für 2SC9018 in SMD“ · HF, Funk und Felder ·
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PC2004_bei_robotikhardware.de.pdf
θ1 and θ2 Light (when reflected) z (θ=0°) Cmax. Sensor θ Y’(∅=180°) Contrast LCD panel C 2.0 X’ X(∅=90°) ∅ Z’ θ1 θ2 Light (when transmitted ) Y(∅=0°) viewing angle θ (∅ fixed) (θ=90°) Note : Optimum viewing angle with the naked eye and viewing angle θ at Cmax.Above are not always the same Note 3: Definition
in „Atmega2560 8 Bit Steuerung LCD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PC2004LRU-CWA-HDHQ_4x20.pdf
θ1 and θ2 Light (when reflected) z (θ=0°) Cmax. Sensor θ Y’(∅=180°) Contrast LCD panel C 2.0 X’ X(∅=90°) ∅ Z’ θ1 θ2 Light (when transmitted ) Y(∅=0°) viewing angle θ (∅ fixed) (θ=90°) Note : Optimum viewing angle with the naked eye and viewing angle θ at Cmax.Above are not always the same Note 3: Definition
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PBL3717_E.pdf
Comparator input 10 V C -0.3 VCC V Reference input 11 V R -0.3 15 V Current Motor output current 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
in „Schrittmotor Pollin und PBL3717“ · Mikrocontroller und Digitale Elektronik ·
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mc14553b-d-1192980.pdf
Data labelled “Typ” is not to be used for design purposes but is intended as an indication of the IC’s potential performance. 3. The formulas given are for the typical characteristics only at 25_C. 4. To calculate total supply current at loads other ThaL 50TpF: I pF) L (C – 50) Vfk wTere: I is in mA (
in „MC14553BCP - Alternative“ · Analoge Elektronik und Schaltungstechnik ·
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LT1498.pdf
VS= 5V, O = 75mV to 4.8VL R = 10k l 500 2500 V/mV V = 3V, V = 75mV to 2.8V, R = 10k l 400 2000 V/mV S O L CMRR Common Mode Rejection Ratio VS= 5V, CM= V + 0.1V to V l 78 89 dB V S 3V, VCM= V + 0.1V to V l 73 85 dB CMRR Match (Channel-to-Channel) (Note 5) VS= 5V, CM= V + 0.1V to V l 74 90 dB V S= 3V,
in „KSQ für LED mit OPV“ · Analoge Elektronik und Schaltungstechnik ·
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STK200SCHEMATIC.PDF
8515 SCK T OPD5ON8515 (TO)PD4 PB1(AIN1) TO PB0 ON 8515 PD5 PB0(AIN0) GND PD6 T OPD6ON8515 BAT85 D4 AT90S1200 20PI N DIGITAL VCC_BAR (TO) PB0 VCC (T1) PB1 PA0 (AD0) TO RESET ON 8515\MISC EXT RESET 1 RESET (ADC5) PC5 28 (AINO) PB2 PA1 (AD1) 2 27 (AIN1) PB3 PA2 (AD2) PD0 (RXD) (ADC4) PC4 (SS) PB4 PA3 (AD3
in „LCD Hardware Problem“ · Mikrocontroller und Digitale Elektronik ·