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PDF
tda7375.pdf
L = 2 12 W P O max Max. Output Power (***) VS = 14.4V, Bridge 36 40 W P O EIAJ EIAJ Output Power (***) VS= 13.7V, Bridge 32 35 W THD Distortion RL = 4 Single Ended, P = 0.1 to 4W 0.02 % O Bridge, O = 0.1 to 10W 0.03 0.3
in „SCHALTUNGS-problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tda7375.pdf
L = 2 12 W P O max Max. Output Power (***) VS = 14.4V, Bridge 36 40 W P O EIAJ EIAJ Output Power (***) VS= 13.7V, Bridge 32 35 W THD Distortion RL = 4 Single Ended, P = 0.1 to 4W 0.02 % O Bridge, O = 0.1 to 10W 0.03 0.3
in „END-VERSTÄRKER probs“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LC4103C.pdf
208 package. Absolute Maximum Ratings at V SS =0V Ratings Parameter Symbol Conditions Unit min typ max V max V –0.3 +7 V DD DD Maximum supply voltage VDDH max V DDH –0.3 +45 V V SSH max V SSH –0.3 +0.3 V VIN CP, RS/LS, DISP, M, DIO0, DIO160, DMIN –0.3 V DD+0.3 V Input voltage V0, V1 *, V0, V1 VDDH –7
in „Display von Pollin - Datenblatt - Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LUW_W5AM_Pb_free.pdf
Durchlassspannung 4)Seite 21 (min.) VF 2.7 V Forward voltage 4) page 21 (typ.) V 3.2 V F IF= 350 mA (max.) VF 3.7 V Sperrstrom not designed for Reverse current (max.) R reverse operation μA Wärmewiderstand Thermal resistance Sperrschicht/Lötpad (typ.) R 6.5 K/W th JS K/W Junction/soldering point (max.)
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PDF
GU256X64D-7000.pdf
Current ICC 760mADC Typ. COMMON FONT INTERNATIONAL FONTS Logic Hi Input (Parallel) VIH 0.8VCC min. VCC max. n=0 Logic Low Input (Parallel) VIL 0VDC min. 0.2VCC max. n=19 Logic HI output (Parallel) VOH 3.8VDC min. VCC max. Logic Low output (Parallel) VOL 0VDC min. 0.6 DC max. Logic Hi Input (RS232) VIH 3.0VDC min. +15VDC max. Logic Low Input (RS233) VIL -15VDC min. 0.5VDC max. Logic Hi output (RS233) VOH 4.0VDC min. VCC max Logic Low output (RS232) VOL 0VDC min. 0.5VDC max OPTICAL and ENVIRONMENTAL SPECIFICATIONS Parameter
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PDF
tsop752w.pdf
2 test signal see fig. 1 tpi- 5/fo< tpo < pi+ 6/fo, 2 Maximum irradiance test signal see fig. 1 Ee max. 30 W/m Angle of half transmission Directivity distance ϕ 1/2 ± 75 deg TYPICAL CHARACTERISTICS (T amb = 25 °C, unless otherwise specified) Ee Optical Test Signal 1 (IR diode TSAL6200F I = 0.4 A, 30
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PDF
mpsa42.pdf
Sketch B (Top View) SOT-23 Reel Configuration: Figure 4.0 Component Rotation W1 Measured at Hub Dim A Max Dim A See detail AA max Dim N 7" Diameter Option B Min Dim C See detail AA Dim D W3 min 13" Diameter Option W2 max Measured at Hub DETAIL AA Dimensions are in inches and millimeters Reel Tape Size Option
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PDF
TCS3414_Datasheet_EN_v1.pdf
− APRIL 2011 Electrical CharactePARAMETERT = 25 A (unless otherwise noted) TEST CONDITIONS MIN TYP MAX UNIT Power on (ADC inactive) 7.7 10 mA IDD Supply current @ DD = 3.6 V Power on (ADC active) 8.7 11 mA VOL INT, SDA output low voltage 3 mA sink current 0 700 100.4 VA ILEAK Input leakage current (SDA
in „Messgerät um LED Eigenschaften zu ermitteln“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
an3017.pdf
700))} + (0,0) (0.1m, 0.1m) Q1 C B E detector Model: PS2561F-1 .model LED D IS=1p N=1.999644 * A = PIN 1: diode anode + RS=0 BV=6 IBV=10u * K = PIN 2: diode cathode + CJO=10p EG=1.424 TT=500n * E = PIN 3: BJT emitter .model detector NPN IS=2.857P BF=700 * C = PIN 4: BJT collector + NF=1.1786653 BR=20 TF=80.64p .SUBCKT PS2561F A K E C + TR=4.56886n D1 A D LED + CJE=16.315P CJC=21.1189P VAF=250 ISS=0 *OptoLED + CJS=44.5657p ISC=120p Vsense D K 0 .ends
in „LTspice - unterschiedliche Simulationsmodelle“ · Analoge Elektronik und Schaltungstechnik ·
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muster_kleinunternehmer.pdf
ordnungsgemäße Rechnung für KLEINUNTERNEHMER (§ 19 UStG) im Sinne der §§ 14, 14 a Umsatzsteuergesetz Max Mustermann | Musterstr. 1 | 41321 Musterstadt Frau Britta Beispiel Beispielstr. 27 54657 Beispielstadt Telefon: 01234/987654-0 Telefax: 01234/987654-1 Mobil: 01234/987654-3 E-Mail: max@mustermann.de
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PDF
150141M173100_1_.pdf
Soldering Profile: Profile Feature Value Preheat Temperature Min Ts min 150 °C Preheat Temperature Max T 200 °C s max Tp Preheat Time t from T to T t max. 60 - 120 seconds t TC–5°C s s min s max s Max. Ramp Up Rate p Ramp-up Rate (T tL T ) P 3 °C/ second max. Max. Ramp Down Rate Liquidous Temperature TL 217 °C T Time t maintained above T t max. 60 seconds L t L L L L Peak package body temperature Tp see table Ts max Preheat Area r Time within 5°C of actual peak temperaure tp max. 10 seconds t a Ramp-down Rate (T toLT ) P 6 °C/ second max.
in „[V] ca. 320St. Würth SMD RGB LEDs PLCC4 Type: 150 141 M17 310 0“ · Markt ·
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PDF
HT75xx-1.pdf
with a fixed load. HT7527-1, +2.7V Output Type Ta=25°C Test Conditions Symbol Parameter Min. Typ. Max. Unit Conditions VIN Input Voltage — — — 30 V VOUT Output Voltage V IN.7V, IOUT=10mA 2.619 2.700 2.781 V OUT Output Current V IN.7V 70 100 — mA ∆VOUT Load Regulation V IN.7V, 1mA≤I OUT≤50mA — 25 60
in „2xAA + Elektronik -> Batterielebensdauer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Infineon-AN-1035-ApplicationNotes-v29_01-EN.pdf
might need to be reduced by Device height (mm) more than 25%. The reduction can be symmetrical Min Max but biasing it unevenly may help to prevent solder balling; the stencil designs in Appendix A have DirectFET 0.590 0.700 apertures moved further from the die edge for this DirectFET plus 0.535 0.595
in „Datenblatt zu DirectFet Mosfet gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
KWH080KQ03-F01.pdf
Remark Min. Typ. Max. Voltaye for LED backliyht V L 9.3 9.9 10.5 V Note 1 Current for LED backliyht L 162 180 198 mA LED life time - 20,000 - - Hr Note 2 Note 1: The LED Supply Voltaye is defined by the number of LED at
in „NXP verschenkt ARM-Chips“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet_HIP_4081A.pdf
Unless Otherwise Specified TJS= -40°C TO T J= 25°C 125°C PARAMETER SYMBOL TEST CONDITIONS MIN TYP MAX MIN MAX UNITS SUPPLY CURRENTS AND CHARGE PUMPS VDD Quiescent Current IDD All inputs = 0V 8.5 10.5 14.5 7.5 14.5 mA VDD Operating Current IDDO Outputs switching f = 500kHz 9.5 12.5 15.5 8.5 15.5 mA VCC
in „HIP 4081 Verständnisprobleme“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRMS6400.pdf
5.0 V, Ro=5.1 Minimum V CC — 2.5 — V Reduced performance Table 3. I/O Parameters Parameter Min. Typ. Max. Unit Conditions TxD, SD Input Capacitance — 5.0 — pF V CC=2.7 V to 5.5 V TxD pull-down 350 500 700 k TxD=V CC, CC =5.0 V Minimum dV/dt of TxD Input Signal 0.7 1.4 — V/ s 5.0 V pulse TxD Minimum Hold
in „[V] Konvolut IRDA Bauteile 4x IRMS6400 und Decoder 6x HSDL7001 (10€)“ · Markt ·
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PDF
IRMS6400.pdf
5.0 V, Ro=5.1 Minimum V CC — 2.5 — V Reduced performance Table 3. I/O Parameters Parameter Min. Typ. Max. Unit Conditions TxD, SD Input Capacitance — 5.0 — pF V CC=2.7 V to 5.5 V TxD pull-down 350 500 700 k TxD=V CC, CC =5.0 V Minimum dV/dt of TxD Input Signal 0.7 1.4 — V/ s 5.0 V pulse TxD Minimum Hold
in „[V] Rolle mit IRDA 4 Mb/s Infrared Data Transceiver Infineon IRMS 6400“ · Markt ·
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PDF
EG50.pdf
Der EG 50 ist ein leistungsstarker PWM-Servoverstärker für bürstenbehaftete Gleichstrommotoren bis 700 Watt Abgabeleistung. Er ermöglicht folgende Betriebsarten: Stromregelung, IxR Regelung, DC-Tachoeingang, Digital-Encoderregelung, Spannungsregelung. Die gewünschte Betriebsart wird über von außen zugängliche
in „Unterschied zwischen I*R- und Spannungsregelung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
177010.pdf
Vakuumpumpe 7006 ZVDR DC Technische Daten Typbezeichung7 7006ZVDR/2,3/E/DC Artikelnummer 70060057 Max. Volumenstrom 6,6 l/min Endvakuum 50 mbar abs. Max. Vakuum im Dauerbetrieb 50 mbar abs. Max. Anlaufvakuum 50 mbar abs. Motor Typ Permanent magnet Betriebsspanunng 12/24 V DC Drehzahl bei max. Last 2800
in „PWM, wie die richtigen Einstellungen wählen ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CONTROL_IC_IR2109PBF_DIP_8__IR.pdf
Waveform Definitions www.irf.com 7 IR2109 4 ( ) ( S ) & (PbF) ) 1300 1300 s s ( ( y y e 1100 e 1100 D D Max. n n t t g 900 Max g 900 p a Typ. r o P P n 700 Typ. n 700 - - r r T T 500 500 -50 -25 0 25 50 75 100 125 10 12 14 16 18 20 Temperature ( C) VBIASSupply Voltage (V) Figure 6A. Turn-on Propagation Delay
in „1. Schaltung Mosfet Treiber“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Code.txt
gesendet werden daten_aus_manchester_aus_ws_in_vorrat_5: inc tmp2 ;Inkrementiere Auszeiger cpi tmp2,20 ;Max. Eintraege in die SchreibWS brlo daten_aus_manchester_aus_ws_in_vorrat_10 clr tmp2 ;Wenn Max erreicht fange von Null an daten_aus_manchester_aus_ws_in_vorrat_10: sts manchester_send_aus,tmp2 ;Speichere
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ETH-SP-G2_DS.pdf
1 Gbps. Two passive, surge-protected RJ45 connections provide maximum equipment compatibility. EdgeMAX® Ideal for WISP Networks ES-8-150W All Ubiquiti airMAX devices are equipped with ESD protection. However, to protect outdoor devices, and to meet certain airMAX local code requirements, installing the
in „Netzwerk-Überspannungsschutz seriös?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SK6812_LED_datasheet_.pdf
such as no special instructions, TA=- 20 ~ +70 ~ 5.5V C, VDD=4.5, VSS=0V): Parmeter Symbol Min Typic Max Unit Test al conditions The chip supply voltage VDD --- 5.2 V --- R/G/B port VDS,MA --- --- 26 V --- pressure X DOUT conect IDOH --- 49 --- mA ground, the DOUT drive maximum drive current capability
in „LED RGBW SK6812“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet-1852825.pdf
sec. max. Clean by brushing on solder surface. Do not clean switch with w Mechanical solvents. S l ACTUATION FORCE: 130 grams, 160 grams, 200 grams, 260 t grams c LIFE EXPECTANCY: 100,000 operations. Packaging
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FTP.pdf
at 20C, 120Hz) Leakage Current I=0.02CV or 5mA, whichever is smaller. Dissipation Factor Where, I : Max. leakage current (MA), C : Nominal capacitance (MF), V : Rated voltage (V) (at 20C after 5 minutes) (tane) 0.25 max. (at 20C, 120Hz) Characteristics Capacitance change 350 to 450V dc: C(-25C)/C(+20C
in „Mein erster ovaler Elko“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LEDOverCurrentDriving.pdf
the or switched-mode power supply. XLamp XM-L have multi-ampere Within specification boundaries, 1 max-current specifications. none of these conditions is cause However, to explore the limits of for concern in the long-term lumen the possible, but not necessar- maintenance or reliability of the ily reasonable
in „Stroboskope mit LED“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm3421.pdf
IN-MAX O (77) The current rating should be at least 10% higher than the maximum average NFET current (I T-MAX): Buck IT-MAX = DMAX x LED (78) Boost and Buck-boost D MAX T-MAX = x ILED 1 - D MAX (79) Approximate
in „Spule Dimensonierung Schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
setup.c
penirq_recheck_delay_usecs = 800, .x_plate_ohms = 750, /* FIXME */ .y_plate_ohms = 300, /* FIXME */ .pressure_max = 4096, .debounce_max = 1, .debounce_rep = 0, .debounce_tol = (~0), .get_pendown_state = ads7846_pendown_state, }; static struct spi_board_info spi0_board_info[] __initdata = { { .modalias = "at73c213", .max_speed_hz = 200000, .chip_select = 1, .mode = SPI_MODE_1, .platform_data = &at73c213_data, }, { .modalias = "ads7846", .max_speed_hz = 31250*26, .chip_select = 0, .platform_data = &ads_info, .irq = -
in „Probleme mit ADS7846 beim NGW100“ · Mikrocontroller und Digitale Elektronik ·
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Datei
setup.c
penirq_recheck_delay_usecs = 800, .x_plate_ohms = 750, /* FIXME */ .y_plate_ohms = 300, /* FIXME */ .pressure_max = 4096, .debounce_max = 1, .debounce_rep = 0, .debounce_tol = (~0), .get_pendown_state = ads7846_pendown_state, }; static struct spi_board_info spi0_board_info[] __initdata = { { .modalias = "at73c213", .max_speed_hz = 200000, .chip_select = 1, .mode = SPI_MODE_1, .platform_data = &at73c213_data, }, /*{ .modalias = "ads7846", .max_speed_hz = 31250*26, .chip_select = 0, .platform_data = &ads_info, .irq =
in „Grasshopper und USB-Host“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BC546_547_3.pdf
Product specification NPN general purpose transistors BC546; BC547 FEATURES PINNING • Low current (max. 100 mA) PIN DESCRIPTION • Low voltage (max. 65 V). 1 emitter 2 base APPLICATIONS 3 collector • General purpose switching and amplification. DESCRIPTION handbook, 2alfpage 3 3 NPN transistor in a TO
in „Rätselhafter Transistor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
D096400_TD.pdf
Tolerance ± 20 % at 120Hz , 20℃ I=0.01CV or 3(μA) ,whichever is greateI=0.03CV+10(μA) Leakage Current (MAX)(20℃) (After rated voltage applied for 2 minutes ) WV 6.3 10 16 25 35 50 63~100 160~250 350~450 Dissipation Factor (MAX) tanδ 0.26 0.22 0.18 0.16 0.14 0.12 0.10 0.15 0.20 (tanδ) (120Hz ,20℃) When nominal
in „im Elko Datenblatt steht "Features: 105℃ 1000 hours"“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c
#include <stdio.h> #include <iom8.h> /* Include IO registers definition */ void wait(int max_val); void Enable(void); void main(void) { //Ports definieren DDRB = 0x00; //PortB als Input DDRD = 0xFF; //PortD als Output DDRC = 0xFF; //PortD als Output PORTB = 0x00; //Keine internen Pull-up Widerstände
in „LCDisplay zeigt nichts an - Ansteuerung in C“ · 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
ten15-2411wi.pdf
max. 0.5 % max. – Load variation 10 – 100 % 1 % max. Ripple and noise (20 MHz Bandwidth) 80 mVpk-pk max. Temperature coefficient ±0.02 %/K Output current limitation >110 % of Iout max., foldback Short circuit
in „Raspi Shield - so in Ordnung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
256kbit_segor_70ns.pdf
13/22 M68AF031A Table 8. Write Mode AC Characteristics M68AF031A Symbol Parameter 55 70 Unit Min. Max. Min. Max. AVAV Write Cycle Time 55 70 ns AVEH Address Valid to Chip Enable High 45 60 ns AVEL Address valid to Chip Enable Low 0 0 ns tAVWH Address Valid to Write Enable High 45 60 ns tAVWL Address
in „AVR Synthesizer Konzept“ · Mikrocontroller und Digitale Elektronik ·
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PDF
153157-da-01-en-TRANSISTOR_AF_BC847_B_SOT_23__INF.pdf
250 IC= 100 mA, B = 5 mA - 200 600 1) Base emitter saturation voltage VBEsat I = 10 mA, I = 0.5 mA - 700 - C B IC= 100 mA, B = 5 mA - 900 - Base-emitter voltage) VBE(ON) IC= 2 mA, V CE = 5 V 580 660 700 IC= 10 mA, V CE = 5 V - - 770 1Pulse test: t < 300µs; D < 2% 3 2011-09-09 BC847...-BC850... Electrical
in „Check Transistorschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Ten8.pdf
and noise (20 MHz Bandwidth) 50 mVpk-pk typ. Start up time (nominal Vin and constant resistive load) 700 ms max. – Remote on/off 5 ms typ. Transient response (25% load step change) 200 µs typ. Short circuit protection indefinite (automatic recovery) Over load protection 150 % of Iout max. typ. foldback Capacitive load 3.3 Vout models: 3300 µF max. 5 Vout models / ±5 Vout models: 1600 µF max. / ±1000 µF max. 12 Vout models / ±12 Vout models: 350 µF max. / ±160 µF max. 15 Vout models / ±15 Vout models: 240 µF max. / ±100 µF max. General Specifications
in „DC/DC Converter TEN8“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ina128.pdf
2005 Precision, Low Power INSTRUMENTATION AMPLIFIERS FEATURES DESCRIPTION D LOW OFFSET VOLTAGE: 50µV max The INA128 and INA129 are low power, general D LOW DRIFT: 0.5µV/5C max purpose instrumentation amplifiers offering excellent D LOW INPUT BIAS CURRENT: 5nA max accuracy. The versatile 3-op amp design
in „Probleme Spannungsmessung mit INA 128“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1170.pdf
V = 1V 1.80 2.30 V FB Voltage Lo Clamp, VFB 1.5V 0.25 0.38 0.52 V Reference Voltage Line 3V≤ V IN MAX 0.03 %/V Regulation V = 0.8V C AV Error Amplifier Voltage Gain 0.9V ≤V C 1.4V 500 800 V/V MinimumInput Voltage (Note 3) 2.6 3.0 V IQ Supply Current 3V≤ V IN MAX, VC= 0.6V 6 9 mA Control Pin Threshold
in „Bei Schaltregler nur Minimum- und Maximum-PowerSwitchStrom angegeben“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
139cll.pdf
1 DIMENSIONS in millimeters, MASS AND PACKAGING QUANTITIES NOMINAL CASE SIZE CASE MASS PACKAGING L max. W max. H max. O max. S G max. Rmin. QUANTITIES L x W x H CODE (g) PER REEL 14.3 x 6.2 x 6.9 2 14.5 6.3 7.05 13.0 2.15 7.5 4.7 0.95 700 14.3 x 7.6 x 8.2 3 14.5 7.7 8.35 13.0 2.85 7.5 4.7 1.3 700
in „Tantal vs Kerko“ · Analoge Elektronik und Schaltungstechnik ·
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Bild
Simulation von Signalverzögerungen und Taktsignalen
3,37 148,500 MHz Input Clock Jitter uncertainty 100 ppm 0,001 Signal Delay min 0,600 ns Signal Delay max 1,900 ns Board Setup Trace Length min 30,0 mm Trace Length max 60,0 mm Trace Delay min 0,150 ns Trace Delay max 0,400 ns FPGA Setup Input Data Path Delay 1,700 ns Clock Rise Optimum 6,592 ns Input Clock
in „Spartan 3/6 welche Constraints braucht man“ · FPGA, VHDL & Co. · · Screenshots
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PDF
LT1300.pdf
5.6 s Output Line Regulation 1.8V < V < 6V 0.06 0.15 %/V IN VCESAT Switch Saturation Voltage ISW = 700mA 130 200 mV Switch Leakage Current VSW = 5V, Switch Off 0.1 10 A Peak Switch Current ILIMFloating (See Typical Application) 0.75 1.0 1.25 A (Internal Trip Point) ILIMGrounded 0.4 A VSHDNH Shutdown
in „Regulierte 3.3v spannung bei 3.7v batterie?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
A200-DS_L6920D.pdf
470 6.3 50 to 1500 KEMET T510/T494/ 10 to 470 6 30 to 1000 T495 PANASONIC EEFCD 22 to 47 6.3 50 to 700 SANYO POSCAP TPA/B/C 22 to 230 6.3 40 to 80 SPRAGUE 595D 100 to 390 6.3 160 to 700 5.3 Inductor selection Usually, inductors ranging between 5µH to 40µH satisfy most of the applications. Small valueinductorshavesmaller
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PDF
SGMOP17C.pdf
LAND PATTERN (Unit: mm) L A A1 A2 θ 0.2 c Dimensions Dimensions Symbol In Millimeters In Inches MIN MAX MIN MAX A 1.050 1.250 0.041 0.049 A1 0.000 0.100 0.000 0.004 A2 1.050 1.150 0.041 0.045 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
in „Identifikation SOT23-5 ST3SK“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
finder-serie20.pdf
siehe nächste Seite Kontakte Anzahl der Kontakte 1 Schliesser 2 Schliesser 1 Schliesser + 1 Öffner Max. Dauerstrom/max. Einschaltstrom A 16/30 16/30 16/30 Nennspannung/max. Schaltspannung V AC 250/400 250/400 250/400 Max. Schaltleistung AC1 VA 4.000 4.000 4.000 Max. Schaltleistung AC15 (230 V AC) VA
in „Anzeige wen Briefkasten geöffnet wurde.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HCPL-4731.pdf
otherwise specified. All Typicals at T = 25°C. See note 8. A Device Parameter Symbol HCPL- Min. Typ.* Max. Units Test Conditions Fig. Note Current CTR 800 3500 25k % IF= 40 µA, VO= 0.4 V 4, 5 2 Transfer VCC = 4.5 V Ratio 600 3000 8k I = 0.5 mA, F VCC = 4.5 V 700 3200 25k IF= 40 µA 500 2700 8k IF= 0.5 mA
in „High-Side-Strom auf Low-Side spiegeln (Stromspiegel?!)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BC846BDNPN.PDF
− BC848CDW1T1G, SBC848CDW1T1G 1000 1000 150C VCE = 5 V 150C VCE = 10 V 900 900 N 800 N 800 A A G 700 G 700 T T N 600 25C N 600 25C R R R 500 R 500 C C C 400 C 400 −55C D 300 −55C D E E 300 h 200 h 200 100 100 0 0 0.0001 0.001 0.01 0.1 1 0.0001 0.001 0.01 0.1 1 C , COLLECTOR CURRENT (A) IC, COLLECTOR
in „Leckströme für NPN Transistor“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
161042-da-01-ml-GBI25B_SI_BRUECKENGLEICHR_de_en.pdf
Anerkanntes Produkt – Underwriters Laboratories Inc.® Nr. E175067 Maximum ratings Grenzwerte Type Max. alternating input voltage Repetitive peak reverse voltage Typ Max. Eingangswechselspannung Periodische Spitzensperrspannung 1 VVRMS [V] VRRM [V] ) GBI25A 35 50 GBI25B 70 100 GBI25D 140 200 GBI25G 280
in „Gleichrichter parallel schalten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
1510fc.pdf
SINKING. Consult factory for Military grade parts. ELECTRICAL CHARACTERISTICS VCC = 16V, V BAT = 8V, V MAX (maximumoperating V ) = CCV, no load on any outputs, unless otherwise noted. (Notes 7, 8) PARAMETER CONDITIONS MIN TYP MAX UNITS Overall Supply Current VPROG = 2.7V, VCC ≤20V 2.90 4.3 mA V = 2.7V, 20V
in „Problem mit LT1510“ · Mikrocontroller und Digitale Elektronik ·