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AD7680.pdf
1.5 1.5 μs max Full-scale step input 400 400 ns max Sine wave input ≤ 10 kHz Throughput Rate 100 100 kSPS See the Serial Interface section Rev. A | Page 4 of 24 AD7680 1 1 Parameter AVersion B Version Unit TestConditions
in „AD7680 (SPI) + STM32F4Discovery“ · Mikrocontroller und Digitale Elektronik ·
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MAX889.pdf
85°C, unless otherwise noted. Typical valuesAare at T = +25°C.) PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS Supply Voltage Range VIN R LOAD = 100Ω 2.7 5.5 V Output Voltage Range VOUT R LOAD = 100Ω -2.5 -VIN V IOUT(MAX)1 V = 5V, V = -3.3V 200 Maximum Output Current IN OUT mA OUT(MAX)2 V IN= 3.3V, OUT
in „Negative Betriebsspannung erzeugen“ · Analoge Elektronik und Schaltungstechnik ·
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MURATA.pdf
Miniature tuner packs (FM Radio, TV) 6. Remote keyless entry systems 7. Pagers Part Number C min. (max.) C max. TC Q Rated Withstanding (pF) (pF) Voltage Voltage TZR1Z010A001 0.55 1.0 +100/-0% NP0 300ppm/°C 200min. at 200MHz, Cmax. 25Vdc 55Vdc TZR1Z1R5A001 0.7 1.5 +100/-0% NP0 300ppm/°C 200min. at 200MHz
in „Welches Bauteil ist zu sehen?“ · Analoge Elektronik und Schaltungstechnik ·
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BUT11AX_1.pdf
IC max 40 10 us 30 II 20 (1) 100 us 10 0 1 0 20 40 60 80 100 120 140 Ths / C 1 ms Fig.7. Normalised power derating and second breakdown curves. 10 ms I (2) 0.1 500 ms DC IC / A BUT11AX III 6 5 0.01 1 100 1000
in „BUT11AX mit BUT11AF austauschen?“ · Mikrocontroller und Digitale Elektronik ·
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datasheetMax3392.pdf
a high-voltage logic signal on the CC side of the VL ≤ VCC ≤ +3.3V) 2 device, and vice-versa. The MAX3374E/MAX3375E/ Bidirectional Level Translation E MAX3376E/MAX3379E and MAX3390E–MAX3393E unidi- (MAX3372E/MAX3373E and rectional level translators level shift data in one directMAX3377E/MAX3378E) M
in „Max3392 Pegelwandler, BlueNiceCom 4“ · Mikrocontroller und Digitale Elektronik ·
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TS912_mit_Spice-Modell.pdf
) id RL = 100 kΩ 50 RL= 10 kΩ 30 70 R = 600 Ω 300 400 VOL L mV RL = 100 Ω 900 Tmin≤T amb≤T max RL= 10 kΩ 100 RL= 600 Ω 600 Output short-circuit curreid (V = ±1 V) I mA o Source (o = VCC-) 20 40 Sink (o = CC+ ) 20
in „Eingangswiderstand TS912 zwecks Berechnung Kompensationskondensator“ · Analoge Elektronik und Schaltungstechnik ·
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ts912.pdf
) id RL = 100 kΩ 50 RL= 10 kΩ 30 70 R = 600 Ω 300 400 VOL L mV RL = 100 Ω 900 Tmin≤T amb≤T max RL= 10 kΩ 100 RL= 600 Ω 600 Output short-circuit curreid (V = ±1 V) I mA o Source (o = VCC-) 20 40 Sink (o = CC+ ) 20
in „Projekt: SerialComCNC Serielles Frontend für CNC GRBL mit ATMega“ · Projekte & Code ·
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ts912.pdf
) id RL = 100 kΩ 50 RL= 10 kΩ 30 70 R = 600 Ω 300 400 VOL L mV RL = 100 Ω 900 Tmin≤T amb≤T max RL= 10 kΩ 100 RL= 600 Ω 600 Output short-circuit curreid (V = ±1 V) I mA o Source (o = VCC-) 20 40 Sink (o = CC+ ) 20
in „Projekt: SerialComCNC Serielles Frontend für CNC GRBL mit ATMega“ · Projekte & Code ·
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MAX9814.pdf
Load RLOAD_MIN 5 kΩ Maximum Capacitive Drive CLOAD_MAX 200 pF Maximum Output Current I 1% THD, R = 500Ω 1 2 mA OUT_MAX L Output Short-Circuit Current SC 3 8 mA AGC mode; V DD = 2.7V to 5.5V (Note 4) 35 50 f = 217Hz, V = 100mV (Note 5) 55 Power-Supply Rejection
in „Impedanzanpassung MAX9814 <-> PCM2912A“ · Analoge Elektronik und Schaltungstechnik ·
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Sensonor_SP30.pdf
2.1 to 3.6 2.1.1.2 Optional pressure measurement ranges Table 2 Pressure measurement specifications, 100-700kPa range PARAMETER SPECIFICATION AMBIENT CONDITIONS COMMENTS Min Typ Max Unit Temp [°C] VDD [V] Pressure range 100 700 kPa -40 to 125 2.1 to 3.6 Measurement error -11 11 kPa 0 to 50 2.1 to 3.6 -
in „Signal im 125 kHz Band mit SDRsharp aufzeichnen“ · HF, Funk und Felder ·
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BUK100-50GL_1.pdf
DSconditions: V = 0 IS t ≤ 50 sp IISL= f(V IS overload protection operated ⇒ I = 0 A D VIS(TO) / V IS / A BUK100-50GL 60 max. 2 50 40 typ. 30 min. 1 20 10 0-60 -40 -20 0 20 40 60 80 100 120 140 0 0 0.2 0.4 0.6 0.8 1 1.2 1.4 Tj / C VSD / V Fig.16. Input threshold voltage. Fig.19. Typical reverse diode current,
in „Beleuchtung mit 8515 ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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wound01_e.pdf
〔MHz〕 min. 〔Ω(〕±30% ) 〔m A〕max. 〔MHz〕 LB C2012T1R0M RoHS 1.0 100 0.19 620 LB C2012T2R2M Ro HS 2.2 ±20% 70 0.33 430 7.96 LB C2012T4R7M Ro HS 4.7 45 0.50 295 LB C2012T100□ Ro HS 10 40 1.2 200 LB C2012T220□ Ro HS 22 ±10% 16 3.7 130
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Datei
avr8_servos.c
double b5_winkel1 =0; double b5_winkel2 =0; double b5_winkel3 =90; /* feste werte*/ double schenkel2 = 100; double offsetb = 20; static double faktor_degree = (180/M_PI); /* startpositionen*/ double b0_posb = 100; double b0_posh = 100; double b0_posl = 0; double b1_posb = 100; double b1_posh = 100; double b1_posl = 0; double b2_posb = 100; double b2_posh = 100; double b2_posl = 0; double b3_posb = 100; double b3_posh = 100; double b3_posl = 0; double b4_posb = 100; double b4_posh = 100; double b4_posl = 0; double b5_posb = 100; double
in „Servocontroller mit ATmega8 für 20 Servos“ · Projekte & Code ·
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80RIA.pdf
voltage non-repetitive surge current 1990 t = 8.3ms reapplied A 1600 t = 10ms 100% V RRM 1675 t = 8.3ms reapplied Sinusoidal half wave, I t Maximum I t for fusing 18 t = 10ms No voltage Initial T = T max. J J 16 t = 8.3ms reapplied KA s 12.7 t = 10ms 100% V RRM 11.7 t = 8.3ms reapplied
in „Womit hohen Pulsstrom durch 1 Ohm Last jagen?“ · Analoge Elektronik und Schaltungstechnik ·
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artesyn2.pdf
Features 48 Vin nominal 36 - 75 Vdc • Industry standard footprint Input current: No load 100 mA max. • High power density Remote OFF 20 mA max. (36.5 W/in3) Input current (max.): 48 V models 4 A max. @ lo max. • MTBF >1.4 million hours (See note 4) and Vin = 0 to 75 V (Bellcore 332) Input reflected
in „Artesyn DCDC Wandler“ · Markt ·
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A200-DATASHEET_MAX756_757.pdf
_________________Pin Configurations INPUT TOP VIEW 2V toOUT SHDN 1 8 LX 2 7 150 F OUTPUT 3/5 MAX756 GND 5 22 H 5V at 200mA REF 3 6 OUT LBI or 4 5 1 8 1N5813.3V at 300mA LBO LBI SHDN LX 100 F DIP/SO MAX756 2 3/5 OUT 6 1 8 SHDN LX FB 2 7 GND 3 4 LOW-BATTERY 3 MAX757 REF LBO DETECTOR OUTPUT REF 6
in „MAX756-Schlechter Wirkungsgrad“ · Analoge Elektronik und Schaltungstechnik ·
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A200-DATASHEET_MAX756_757.pdf
_________________Pin Configurations INPUT TOP VIEW 2V toOUT SHDN 1 8 LX 2 7 150 F OUTPUT 3/5 MAX756 GND 5 22 H 5V at 200mA REF 3 6 OUT LBI or 4 5 1 8 1N5813.3V at 300mA LBO LBI SHDN LX 100 F DIP/SO MAX756 2 3/5 OUT 6 1 8 SHDN LX FB 2 7 GND 3 4 LOW-BATTERY 3 MAX757 REF LBO DETECTOR OUTPUT REF 6
in „Step-Up Wandler MAX756“ · Analoge Elektronik und Schaltungstechnik ·
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646978.pdf
7 IR2213( S ) 500 500 ) ) (400 µ400 n n r r C C g300 e300 k k e e l l p200 p200 S S e e f f O100 O100 Max. Max. 0 0 -50 -25 0 25 50 75 100 125 0 200 400 600 800 1000 1200 Temperature (°C) VBBoost Voltage (V) Figure 16A. Offset Supply Current vs. Temperature Figure 16B. Offset Supply Current vs. Voltage 500 500 400 400 ) ) µ µ t t r 300 r300 u u l l p Max. p S 200 S200 B B Max. V Typ. V 100 100 Typ. 0 0 -50 -25 0 25 50 75 100 125 10 12 14 16 18 20 Temperature (°C) V BSFloating Supply Voltage (V) Figure 17A. V BS Supply Current vs. Temperature Figure
in „Wer kann mir was zu diesem Bauteil sagen ?“ · Mikrocontroller und Digitale Elektronik ·
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MAX1920-MAX1921.pdf
(V) LIGHT-LOAD SWITCHING WAVEFORM MEDIUM-LOAD SWITCHING WAVEFORM SOFT-START AND SHUTDOWN RESPONSE MAX1920 toc10 MAX1920 toc11 MAX1920 toc12 V V OUT VOUT AC-COUPLED 1V/div AC-COUPLED 5mV/div 5mV/div IIN 100mA/div VLX V LX 2V/div 2V/div V SHDN 5V/div VIN 3.3V, VOUT= 1.5V, VIN 3.3V, VOUT= 1.5V, VIN 3.3V
in „Sinnvoll, von 3V Solar mit Stepdown auf 2,5V SuperCap ?“ · Mikrocontroller und Digitale Elektronik ·
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DBL_BEHA_EL250_MANUAL_DEUTSCH.PDF
*10V 1 1 Für EL250: U Stx/250W*10V "U" (#) Allgemein: 1 1 U StU max-Ux) / Umax*10V Für EL250: (U max= 100.0V) U St100V - Ux)/10 (#) Anmerkung zu den Betriebsarten R, P, U: Um Spannungsfälle auf den Lastleitungen zu kompensieren ist die Elektronische Last mit Fühlerleitungen
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BUK100-50GL_1.pdf
DSconditions: V = 0 IS t ≤ 50 sp IISL= f(V IS overload protection operated ⇒ I = 0 A D VIS(TO) / V IS / A BUK100-50GL 60 max. 2 50 40 typ. 30 min. 1 20 10 0-60 -40 -20 0 20 40 60 80 100 120 140 0 0 0.2 0.4 0.6 0.8 1 1.2 1.4 Tj / C VSD / V Fig.16. Input threshold voltage. Fig.19. Typical reverse diode current,
in „12V/2,5 A Sicher schalten“ · Mikrocontroller und Digitale Elektronik ·
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Amplifiers_and_Comparators_-_Motorola.pdf
IIB V IO TCVIO IO Avol (Av= 1) (A =v1) ( A) (mV) ( V/⋅C) (nA) (V/mV) (MHz) (V/ s) (V) Suffix/ Device Max Max Typ Max Min Typ Typ Min Max Description Package Internally Compensated Commercial Temperature Range (0⋅C to +70⋅C) LF353 200 pA 10 10 100 pA 25 4.0 13 〉 5.0 〉 18 JFET Input N/626, D/751 LF412C 200
in „AVR: Wechseln des Kanals mit automatischem Trigger“ · Mikrocontroller und Digitale Elektronik ·
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metrahit-am-series-outdoor-db_d.pdf
U0 max (... % v. MW + ... D) 10 nF 10 pF 10 M 0,7 V 1 + 6 mit Funktion ZERO aktiv F 4) 1000 V AMXTRA 100 nF 100 pF 1 M 0,7 V 1 + 64) DC 1 F 1 nF 100 k 0,7 V 1 + 6 AC max. 10 s OUTDOOR 10 F 10 nF 12 k
in „Berechnung der Eigenunsicherheit eines DMM“ · Analoge Elektronik und Schaltungstechnik ·
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DE.pdf
12 8.4 8.4 1,440 8.3 100 15.6 DET-L-24V 24 16.8 16.8 5,760 4.2 100 31.2 • 2 coil latching type 1 Form A Reset Nominal operating Nominal operating Max. Nominal Set voltage, Coil resistance, current, power, Part No. voltage,
in „Spart man Strom wenn man den ADC langsamer taktet?“ · Mikrocontroller und Digitale Elektronik ·
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Osram-Quicktronic-Dimmbar-Technische-Fiebel.pdf
10 erforderlich (s. 4.1). Maximal zulässige Belastung Tabelle 2 Tabelle 1 des Tastendimm/IR-Steuer- Max. Belastung des Dimm-Ausganges moduls DIM ICM-10 Max. Schalt-Kontakt-Belastung Stück EVG-Typ Stück EVG-Typ 10 HF 1x58/230-240 DIM 100 HF ...x.../230-240 DIM 100 QT-D/E ...x.../230-240 DIM 5 HF 2x58/230
in „EVG 5m von Leuchtstofflampe entfernt“ · Analoge Elektronik und Schaltungstechnik ·
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datenblatt_HELLIGKEITSSENSOR_NAPICA_SMD_AMS104YJ.pdf
Bemerkung Max. Empfindlichkeit (Wellenlänge) λP 580 nm Min. IL1 9,1 µA Photostrom 1 Typisch I 13 µA U = 5 V, E = 5 lx (*1) L1 R V Max. IL1 16,9 µA Min. IL2 182 µA Photostrom 2 Typisch IL2 260 µA UR= 5 V, E =V100 lx (*1) Max. IL2 338 µA Min. Photostrom 3 Typisch IL3 500 µA UR= 5 V, E =V100 lx (*2) Max. Dunkelstrom Max. ID 0,3 µA U R 5 V Anzug tr 8,5 ms Schaltzeit U R 2,5 V, U = 0,5 V, Abfall t 8,5 ms R L 5 kΩ f Hinweise
in „helligkeit messen, definiertes ausgangssignal“ · Mikrocontroller und Digitale Elektronik ·
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ips021.pdf
35°C/W 6 T=100°CStd. footprint std. footprint 60°C/W 5 Current path capability 4 10 should be above this curve 3 2 1 Load characteristic should 0 be below this curve -50 0 50 100 150 200 1 Figure 13 - Max.Cont. Ids
in „Intelligenter Schalttransistor...“ · Analoge Elektronik und Schaltungstechnik ·
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ips021.pdf
35°C/W 6 T=100°CStd. footprint std. footprint 60°C/W 5 Current path capability 4 10 should be above this curve 3 2 1 Load characteristic should 0 be below this curve -50 0 50 100 150 200 1 Figure 13 - Max.Cont. Ids
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TBU-CA.pdf
Electrical Characteristics (@ T =A25 °C Unless Otherwise Noted) Symbol Parameter Part Number Min. Typ. Max. Unit TBU-CAxxx-050-WH 50 75 100 TBU-CAxxx-100-WH 100 150 200 I Current required for the device to go from operating state to TBU-CAxxx-200-WH 200 300 400 mA trigger protected state TBU-CAxxx-300-WH
in „USB selbstrückstellende Schutzschaltung bis 24V“ · Mikrocontroller und Digitale Elektronik ·
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mc10el05-d-302720.pdf
min)nd 1.0 V.ge lies between V http://onsemi.com 3 MC10EL05, MC100EL05 Table 5. 100EL SERIES PECL DC CHARACTERISTICS VCC= 5.0 V;EE= 0.0 V (Note 8) −40°C 25°C 85°C Symbol Characteristic Min Typ Max Min Typ Max Min Typ Max Unit IEE Power Supply Current 18 22 18 22 21
in „DIY Frequency Counter mit 10 bis 12 Digits?“ · Mikrocontroller und Digitale Elektronik ·
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dspghd.pdf
EPM7064S TQFP (44-pin) PLMT7000-44 EPM7064A J-lead (68-pin) PLMJ7000-68 J-lead (84-pin) PLMJ7000-84 PQFP (100-pin) PLMQ7000-100 PLMQ7000-100NC TQFP (100-pin) PLMT7000-100NC EPM7096 J-lead (68-pin) PLMJ7000-68 – J-lead (84-pin) PLMJ7000-84 PQFP (100-pin) PLMQ7000-100 EPM7128E J-lead (84-pin) PLMJ7000-84 v(4) EPM7128S PQFP (100-pin) PLMQ7000-100 EPM7128A PLMQ7000-100NC PQFP (160-pin) PLMQ7128/7160-160 PLMQ7128/160-160NC TQFP (144-pin) Note (3) EPM7160E J-lead (84-pin) PLMJ7000-84 v(4) EPM7160S TQFP (100-pin) PLMT7000-100NC
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MAX186-MAX188.pdf
100pF MAX18_ _C/E 20 150 ns MAX18_ _M 20 200 ns CS Fall to Output Enable tDV CLOAD = 100pF 100 ns CS Rise to Output Disable tTR CLOAD = 100pF 100 ns CS to SCLK Rise Setup CSS 100 ns t CS to SCLK Rise Hold
in „Allgemeine Frage zu ADC Spezifikationen“ · Mikrocontroller und Digitale Elektronik ·
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SR0604100MSB.PDF
470M n c d I 10 1 100M 0 5 10 15 DC current (A) E ¡X 12 ¡· SR1307 Series Test Freq. (Hz) SRF RDC DWG No. Inductance Q ( MHz) ( m£[ ) Irms Isat (£gH) ref. L Q nom. max. ( A ) ( A ) SR13071R5MS ¡… 1.5 20% 20 100K 7.960M 65.0
in „Pollin SMD-Induktivitäten identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX146-MAX147.pdf
A 0.1 1 0.1 1 10 100 1k 10k 100k 1M 0.01 0.1 1 10 100 1k CONVERSION RATE (Hz) CONVERSION RATE(Hz) Figure 13. Average Supply Current vs. Conversion Rate with Figure 14a. MAX146 Supply Current vs. Conversion Rate, External
in „Atmega16 und spi bus“ · Mikrocontroller und Digitale Elektronik ·
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MAX146-MAX147.pdf
A 0.1 1 0.1 1 10 100 1k 10k 100k 1M 0.01 0.1 1 10 100 1k CONVERSION RATE (Hz) CONVERSION RATE(Hz) Figure 13. Average Supply Current vs. Conversion Rate with Figure 14a. MAX146 Supply Current vs. Conversion Rate, External
in „Atmega16 und spi bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PHOTOMOS_RELAIS_AQY_1A_400MA_60V.pdf
between terminals 3 and 4; Measured portion: between terminals 3 and 4; LED current: 5 mA; Load voltage: Max. (DC); LED current: 5 mA; Load voltage: Max. (DC); LED current: 5 mA; Load voltage: Max. (DC); Continuous load current: Max. (DC) Continuous load current: Max. (DC) Continuous load current: Max. (DC
in „Optokoppler 4N35 Fragen“ · Mikrocontroller und Digitale Elektronik ·
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504859-da-01-en-PHOTOMOS_RELAIS_AQY_1A_130MA_350V.pdf
between terminals 3 and 4; Measured portion: between terminals 3 and 4; LED current: 5 mA; Load voltage: Max. (DC); LED current: 5 mA; Load voltage: Max. (DC); LED current: 5 mA; Load voltage: Max. (DC); Continuous load current: Max. (DC) Continuous load current: Max. (DC) Continuous load current: Max. (DC
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0900766b811675e1.pdf
between terminals 3 and 4; Measured portion: between terminals 3 and 4; LED current: 5 mA; Load voltage: Max. (DC); LED current: 5 mA; Load voltage: Max. (DC); LED current: 5 mA; Load voltage: Max. (DC); Continuous load current: Max. (DC) Continuous load current: Max. (DC) Continuous load current: Max. (DC
in „Heizung PT1000 durch pmoddpot ersetzen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
504846-da-01-en-PHOTOMOS_RELAIS_AQY_1A_400MA_60V.pdf
between terminals 3 and 4; Measured portion: between terminals 3 and 4; LED current: 5 mA; Load voltage: Max. (DC); LED current: 5 mA; Load voltage: Max. (DC); LED current: 5 mA; Load voltage: Max. (DC); Continuous load current: Max. (DC) Continuous load current: Max. (DC) Continuous load current: Max. (DC
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vishayHVTantal.pdf
Wet Tantalum Capacitors Vishay Cylindrical Body, Hermetically Sealed DIMENSIONS AND STANDARD RATINGS MAX. MAX. DCL AT MAX. MAX. % CAP. MAX. RIPPLE SIZE CAP. WORKING TYPICAL MAX. WVDC Z CHANGE FROM APPROX 120 Hz RMS D H VOLTAGE ESR IN µA - 55 °C ROOM TEMP. WEIGHT - 55 °C TO + + PART + 175 °C 0.031 0.062
in „Tantal für 400V“ · Analoge Elektronik und Schaltungstechnik ·
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MAX152.pdf
(Unipolar input rangeDDV= 3V, SS = 0V, A = +25°C, unless otherwise noted.) (Note 6) 5 1 ALL GRADES MAX152C/E MAX152M PARAMETER SYMBOL CONDITIONS TA = +25°C TA= TMIN to MAX TA = TMINto MAX UNITS X MIN TYP MAX MIN MAX MIN MAX Conversion Time t < t , A tCWR C = 100pFL 1.8 2.06 2.4 µs (WR-RD Mode) L M Conversion
in „Ansteuerung A/D-Wandler MX152 (+/-Vref) Wechselspannungsmessung“ · Analoge Elektronik und Schaltungstechnik ·
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Thomson-MLCC.pdf
0103 – – 500 Min – (1) 0100 0100 0101 0471 – – Max – (1) 0681 0152 0222 0562 – – Min 0272 0471 0102 0103 0473 0104 0104 0104 50 Max 0682 0683 0154 0334 0684 0155 0125 0155 Min 0221 0471 0102 0472 0103 0473 0104 0104 100 Max 0222 0183 0683 0154 0394
in „Kann Kondensatorrolle nicht korrekt identifizieren, hat jemant einen Tipp?“ · Mikrocontroller und Digitale Elektronik ·
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MAX4908-MAX4932.pdf
= +2.7V, switch open, TA= +25°C -50 +50 X2, Y2 Off-Leakage Current V or V = -2.5V or +2.5V, (MAX4932) X2 Y2 TA= TMIN to MAX -200 +200 VXor VY= +2.5V or -2.5V V = +2.7V, switch closed, CC TA= +25°C -100 +100 X, Y On-Leakage Current I VX0 or Y0 = -2.5V or +2.5V nA L(ON) or unconnectedX V YV =-2.5V
in „Audio Umschlter“ · Analoge Elektronik und Schaltungstechnik ·
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MAX1700-MAX1701.pdf
pushbutton switch can be used to turn age, and output capacitors with working voltage ratings the MAX1700/MAX1701 on and off. In Figure 10, ONA higher than the output. is pulled low and ONB is pulled high when the part is For full output, two 100µF, 100mΩ, low-ESR tantalum out- off. When the momentary
in „5V Spannung aus Lipo?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ind_ste_4400-schallgeber-alt.pdf
level SPL as a function of the frequency f U = 12 V square p-p SDP (dB) PS15-01-0 SDP (dB) PS 15-02-0 100 110 90 100 90 80 80 70 70 60 f 60 f 20Hz 100Hz 1kHz 10kHz 20kHz 20Hz 100Hz 1kHz 10kHz 20kHz Impedanz Z als Funktion von der Frequenz f Impedance Z as a function of the frequency f Z (k ) Z (k ) 100
in „Bauteil Identifizierung“ · Mikrocontroller und Digitale Elektronik ·
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085cs.pdf
electrolytic capacitors 085 CS SMD (Chip) Standard MECHANICAL DATA handbook, halfpage handbook, halfpage 2 max 2 max max9 2 max 2 max max9 2.7 2.7 2.7 2.7 max max max max 4.1 3.9 4.1 3.9 max max max max 7.5 10.8 9 max MGB099 - 1 12.2 max MGB100 - 1 a. b. Dimensions in mm. a. Case size 8.8 × 3.7 × 3.9 mm. b.
in „Tantal vs Kerko“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT3757_Boost-Sepic-Flyback-Invert.pdf
using: P OUT(MAX) 4−(3 D ) V > NSN V +V IRMS(CIN),ISCONTINUOUS≥ MAX RRM N IN(MAX) OUT VIN(MI) η 3 D MAX SP The power dissipated by the diode is: SEPIC CONVERTER APPLICATIONS P = I • V D O(MAX) D The LT3757 can be configured
in „Datenblätter von Linear Technologies“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
70343.pdf
coding peg (assembled) Order Information Voltage Current Power Description Order no. V A W 5 16 80 MAX 105 13100-102 12 8.3 100 MAX 112 13100-103 15 6.6 99 MAX 115 13100-104 24 4.2 101 MAX 124 13100-105 Front panel 6 HP, Al, front anodised, rear colourless chromated, with vertical slots for EMC contact
in „Netzteile parallel schalten“ · Mikrocontroller und Digitale Elektronik ·
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MAX1132-MAX1133.pdf
±1 ppm/ C DYNAMIC SPECIFICATIONS (5kHz sine-wave input, 200ksps, 4.8MHz clock, bipolar input mode. MAX1132: 24Vp-p. MAX1133: 8.192Vp-p) SINAD IN= 5kHz 85 dB IN= 100kHz 85 f = 5kHz 87 SNR IN dB IN= 100kHz 92 IN= 5kHz -90 THD dB IN= 100kHz -92 IN= 5kHz 92 SFDR dB IN= 100kHz 96 2 _______________________
in „50 Hz Tiefpass-Filter mit Eingangsimpedanz ADC möglich?“ · Analoge Elektronik und Schaltungstechnik ·
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OSXX0603C1C.pdf
Symbol Unit M5/W5/K4/VX/B5/B6/G5 G8/Y5/O5/R5 DC Forward Current IF 20 20 mA Pulse Forward Current* FP 100 100 mA Reverse Voltage VR 5 5 V Power Dissipation PD 68 48 mW 0 Operating Temperature Topr -40 ~ +85 ℃ Storage Temperature Tstg -40~ +85 ℃ Lead Soldering Temperature Tsol 26℃ /10sec - *Pulse width Max
in „Suche warmweiße LED 0603/0805 (2800-3500k) von LCSC“ · Analoge Elektronik und Schaltungstechnik ·