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ICL7660.pdf
FREQUENCY OSCILLATOR FREQUENCY vs. OSCILLATOR FREQUENCY vs. EXTERNAL CAPACITANCE vs. SUPPLY VOLTAGE 100 7 100,000 8 100,000 9 4 4 4 X X 1 90 M z MAX1044 with M z M µ F (10,000 BOOST -V+ ( 0 0 µ Y Y )80 = = = N N ( 2 2 2 U 1000 U10,000 C70 , , , E E N C C C F ICL7660 and R C R 100 MAX1044 with R I60 T
in „neg. Spannung mit Z-Diode erzeugen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ICL7660-MAX1044.pdf
FREQUENCY OSCILLATOR FREQUENCY vs. OSCILLATOR FREQUENCY vs. EXTERNAL CAPACITANCE vs. SUPPLY VOLTAGE 100 7 100,000 8 100,000 9 4 4 4 X X 1 90 M z MAX1044 with M z M µ F (10,000 BOOST -V+ ( 0 0 µ Y Y )80 = = = N N ( 2 2 2 U 1000 U10,000 C70 , , , E E N C C C F ICL7660 and R C R 100 MAX1044 with R I60 T
in „OP Spannung 1,82V bei Min.“ · Mikrocontroller und Digitale Elektronik ·
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ir2110.pdf
Figure 7B. Turn-On Time vs. V CC /V BS Supply Voltage 250 250 Max. 200 200 s ( s e Typ. ( i 150 i150 y y l e D D Max. n 100 -100 - u Typ. r T T 50 50 0 0 0 2 4 6 8 10 12 14 16 18 20 -50 -25 0 25 50 75 100 125 V DDSupply Voltage (V) Temperature (°C) Figure 7C. Turn-On
in „IR2110 Probleme“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ir2110.pdf
Figure 7B. Turn-On Time vs. V CC /V BS Supply Voltage 250 250 Max. 200 200 s ( s e Typ. ( i 150 i150 y y l e D D Max. n 100 -100 - u Typ. r T T 50 50 0 0 0 2 4 6 8 10 12 14 16 18 20 -50 -25 0 25 50 75 100 125 V DDSupply Voltage (V) Temperature (°C) Figure 7C. Turn-On
in „Wechselrichter mit MOSFET Endstufe“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ir2110.pdf
Figure 7B. Turn-On Time vs. V CC /V BS Supply Voltage 250 250 Max. 200 200 s ( s e Typ. ( i 150 i150 y y l e D D Max. n 100 -100 - u Typ. r T T 50 50 0 0 0 2 4 6 8 10 12 14 16 18 20 -50 -25 0 25 50 75 100 125 V DDSupply Voltage (V) Temperature (°C) Figure 7C. Turn-On
in „HIGH AND LOW SIDE DRIVER Io+ Ausgangsstrom“ · Mikrocontroller und Digitale Elektronik ·
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MAX5035-Datasheet.pdf
8 SO 12 Distributed Power MAX5035CUPA 0°C to +85°C 8 PDIP MAX5035DUSA 0°C to +85°C 8 SO ADJ MAX5035DUPA 0°C to +85°C 8 PDIP Typical Operating Circuit VIN Pin Configuration 7.5V TO 76V 68µF VIN BST 0.1µF MAX5035 100µH OUT TOP VIEW
in „KICAT Footprint SO8E oder SO8N“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX196-MAX198.pdf
= 100ksps) MAX196A/MAX198A 70 Signal-to-Noise + Distortion RSINAD MAX196B/MAX198B 69 dB Total Harmonic Distortion THD Up to the 5th harmonic -85 -78 dB Spurious-Free Dynamic Range SFDR 80 dB Channel-to-Channel
in „12 bit AD- und DA-Wandler (parallel) gesucht“ · Mikrocontroller und Digitale Elektronik ·
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irs2011pbf.pdf
vs. Temperature vs. SupplyVoltage www.irf.com 6 IRS2011(S)PbF 100 100 ) n 80 s 80 e ( m e T 60 i 60 e T i Max. s Max. n 40 R 40 O n n 20 - u Typ. r 20 Typ. T u 0 T 0 -50 -25 0 25 50 75 100 125 10 12 14 16 18 20 Temperature( C) V Supply Voltage(V) BIAS Fiure 4A.Turn-OnRise
in „H-Brücke - 30A - MOSFET“ · Analoge Elektronik und Schaltungstechnik ·
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MAX4508-MAX4509.pdf
Off-Leakage Current – (Note 6) INO_(OFF) V NO_= ±10V, VCOM_ = +10V C, E -5 +5 nA M -50 +50 +25°C -2 +2 MAX4508 C, E -20 +75 M -200 +200 COM_ Off-Leakage Current ICOM_(OFF)V COM_ – ±10V, nA (Note 6) V NO_= +10V +25°C -1 +1 MAX4509 C, E -100 +75 M -100 +100 +25°C -2 +2 MAX4508 C, E -100 +75 COM_ On-Leakage
in „Messsystem mit PhotoMOS“ · Analoge Elektronik und Schaltungstechnik ·
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Varo_TO-3_Flange.pdf
WAVE INPUT A .032 Typ. ,81 IHHI B 1.0 Max. 25,4 C .187 Typ. 4,75 D .25Min. 6,35 E .125 Typ. 3,18 F .110 Dia. 2,79 G .830 Max. 21,08 H .930 Max. 23,62 1 .7505-7545 19,06-19,16 100 J .875 22,23 K 1.10 Max. 27,94 L 1.20 Max. 30,48 M .120 3,05 N .34-.40 8,64-10,16 P .135 Max. 3,43 Q 1.177-1.197 29,90-30,40 C_ R 525R Max. 13,34 10 S .151-.161 Dia. 3,84-4,09 60 100 NUMBER OF CYCLES AT 60Hz FIG.3 > NOTE :aldeviceshave 1.87"(4,75mm) FlagTermnals : ; ;: To order: K A TO-3 mount
in „"TO-3"-Gehäuse mit Steckzungen - was für Bauteile?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
431000.pdf
Parameter Symbol PD431000A-A PD431000A-85 PD431000A-A10 PD431000A-A12 Unit Condition PD431000A-B MIN. MAX. MIN. MAX. MIN. MAX. MIN. MAX. Read cycle time tRC 70 85 100 120 ns Address access time tAA 70 85 100 120 ns Note CE1 access time CO1 70 85 100 120 ns CE2 access time CO2 70 85 100 120 ns OE to output
in „SRAM Ansteuern (Zeitdiagramm)“ · Mikrocontroller und Digitale Elektronik ·
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MAX1776.pdf
switching frequencies (up to 200kHz) allow the use of tiny surface-mount inductors and output capaci- 100% Maximum Duty Cycle for Low Dropout tors. The MAX1776 is available in an 8-pin µMAX pack- age, which uses half the space of an 8-pin SO. For Current-Limited Architecture increased output drive capability
in „Suche Lösung für mein Spannungsregler Problem(Strom sparen“ · Analoge Elektronik und Schaltungstechnik ·
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MAX1551.pdf
input power and is charging. With USB connected, but without DC power, the charge current is set to 100mA (max). This allows charging MAX1555 Charge Status (CHG) from both powered and unpowered USB hubs with no The MAX1555’s CHG is an active-low, open-drain port communication required. When DC power is
in „Schaltplan überprüfen gerne auch Verbesserungen“ · Mikrocontroller und Digitale Elektronik ·
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SDS_RS-5V.pdf
Signal generator) 18 A B 500 N.O. 50 16 , N.C. side contact Pick-up voltage c N.O. side contact , 14 Max. n N.C. g i 50 t 12 x s Max. Isolation loss between o t A and B is measured. V 10 Min. a 100 Max. n 8 C 50 d 6 Drop out voltage Max. Min. n–100 x Min. t 4 o Min. I –50 2 500 1,000 1,500 100 1,000 10,000
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SDS-R-Relais.pdf
Signal generator) 18 A B 500 N.O. 50 16 , N.C. side contact Pick-up voltage c N.O. side contact , 14 Max. n N.C. g i 50 t 12 x s Max. Isolation loss between o t A and B is measured. V 10 Min. a 100 Max. n 8 C 50 d 6 Drop out voltage Max. Min. n–100 x Min. t 4 o Min. I –50 2 500 1,000 1,500 100 1,000 10,000
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Datei
R_ckgewinnung_Zeigerposition.c
Darstellung -100 bis +100 for(j=0; j<=maxWdh; j++){ tmp1p = tmp1m = tmp2p = tmp2m = 0; for(i=0; i<stepZustand[maxAbt][j]; i++){ if ((stepZustand[i][j] & 0xf0) == 0x10 ) tmp1p++; //wenn Spule 1 eingeschaltet war und
in „Tangens sprengt die Codemenge“ · Mikrocontroller und Digitale Elektronik ·
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MAX710-MAX711.pdf
2V TO 4V, OUT = 100mA B:OUT = 10mA TO 100mA OUTPUT RIPPLE (HIGH-EFFICIENCY MODE) MAX710/711 TOC12 OUTPUT RIPPLE (LOW-NOISE MODE) MAX710/711 TOC13 200 s/div 200 s/div V IN2.5V, IOUT = 20mA, N/E = GND V IN2.5V, IOUT = 20mA
in „Hilfe bei SpulenDimensionierung“ · Mikrocontroller und Digitale Elektronik ·
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LM4041.pdf
Reverse Breakdown R e 10 mA g 20 ppm/ § e Voltage Temperature R 1 mA g 15 g 100 g 100 ppm/ § (max) Coefficient R e 100 mA g 15 ppm/ § DV RDI R Reverse Breakdown Voltage RMIN s IRs 1 mA 0.7 mV Change with Operating 1.5 1.5 mV (max) Current Change 2.0 2.0 mV (max) 1 mA s I s 12 mA
in „Schutzbeschaltung mittels Shottky Dioden“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
murata-kmp-78253j.pdf
78253J Series MAX253 Compatible Converter SMTransformers SELECTION GUIDE Output Max. Output Isolation Input Voltage Turns Order Code Voltage Current Voltage Ratio V V mA VDC 78253/35JC 3.3 5.0 100 1500 1:2.27 78253/55JC
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PDF
MAX7705.pdf
V SINK = 100µA, CC 1.2V, MAX7705E 0.4 SOURCE = 800µA, CC reset threshold max VCC - 1.5 2 _______________________________________________________________________________________ µP Power-Supply Monitor with Reset
in „^Brownout-Detektor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NAIS_TN2.pdf
time]* 4 Max. 3 ms (Approx. 1 ms) Single side stable 200 mW (24 V DC) (at 20°C) [Max. 3 ms (Approx. 2 ms)] Nominal 300 mW (48 V DC) operating 100 mW (3 to 12 V DC) Functional*5 Min. 490 m/s {50G} 1 coil latching
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datasheet.pdf
KT6110Ä SS9013H 144-202 Îáîçíà- Àíàëîã Ïîëÿð- Ðê Uêá Uêý Uýá Iê h21å Uêý Iêáî fãð Êø Òèï ÷åíèå íîñòü max max max max max íàñ ìêÀ ÌÃö äÁ êîðïóñà Âò    ìÀ  KT6111A SS9014A NPN 0,45 50 45 5 100 60-150 0,3 0,05 150 10 ÊÒ-26 KT6111Á SS9014B 100-300 KT6111B SS9014C 200-600 KT6111à SS9014D 400-1000 KT6112A
in „verstärkerschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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25RIA-IR.pdf
VDRM /V RRM , max. repetitive VRSM , maximum non- IDRM RRM max. Type number Code peak and off-state voltage (1) repetitive peak voltage (2) @ T J T Jax. V V mA 10 100 150 20 20 200 300 40 400 500 60 600 700 25RIA 80
in „Unbekannter Thyristor dringend gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st110s.pdf
TSM non-repetitive surge current 2830 t = 8.3ms reapplied 2270 A t = 10ms 100% V RRM 2380 t = 8.3ms reapplied Sinusoidal half wave, I t Maximum I t for fusing 36.4 t = 10ms No voltage Initial T = T max. J J 33.2 t = 8.3ms reapplied KA s 25.8 t = 10ms 100% V RRM 23.5 t = 8.3ms
in „Defektes Schweissgerät“ · Platinen ·
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PDF
katalog_signaltechnik_web.pdf
Signalgeber - optisch/akustisch ASL 2-60-NN-C1-C2 Optisch- akustischer Signalgeber C1 Maße: Durchmesser 100 / 60 mm, Höhe 150 mm C2 Spannung: 12 VDC oder 24 VDC Stromaufnahme: 12 VDC: Signalleuchte 80 mA, Sirene 300 mA max. 24 VDC: Signalleuchte 40 mA, Sirene 300 mA max. Lautstärke: 0 - 100 dB, stufenlos
in „[V] RS232 Signalleuchte mehrfarbige LED 60mm Edelstahl mit optionalen 35cm Sockel Edelstahl (55€)“ · Markt ·
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PDF
katalog_signaltechnik_web.pdf
Signalgeber - optisch/akustisch ASL 2-60-NN-C1-C2 Optisch- akustischer Signalgeber C1 Maße: Durchmesser 100 / 60 mm, Höhe 150 mm C2 Spannung: 12 VDC oder 24 VDC Stromaufnahme: 12 VDC: Signalleuchte 80 mA, Sirene 300 mA max. 24 VDC: Signalleuchte 40 mA, Sirene 300 mA max. Lautstärke: 0 - 100 dB, stufenlos
in „[V] RS232 Signalleuchte mehrfarbige LED 60mm Edelstahl mit optionalen 35cm Sockel Edelstahl“ · Markt ·
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MAX187_MAX.pdf
Serial ADCs M TIMING CHARACTERISTICS (V = +5.0V ±5%, T = T to T , unless otherwise noted.) A DD A MIN MAX X PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS 1 Track/Hold Acquisition Time t CS = high (Note 7) 1.5 µs 8 ACQ 7 SCLK Fall to Output Data Valid t C = 100pF MAX18_ _C/E 20 150 ns / DO LOAD MAX18_ _M
in „AD-Wandler mittels Optokoppler anbinden“ · Mikrocontroller und Digitale Elektronik ·
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UPD43256.pdf
Parameter Symbol PD43256B-A85 PD43256B-APD43256B-A12 PD43256B-B10 PD43256B-B12 PD4325Unit15 dition MIN. MAX. MIN. MAX. MIN. MAX. MIN. MAX. MIN. MAX. MIN. MAX. Read cycle time tRC 85 100 120 100 120 150 ns Address access time AA 85 100 120 100 120 150 ns Note CSaccess time tACS 85 100 120 100 120 150 ns OEaccess
in „IC P51256Sl-10 SRAM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX312-MAX314.pdf
V COM = ±10V, (Note 6) NC(OFF) V NO_ or NC_ = ±10V TA= TMIN C, E -2.5 2.5 nA to MAX M -40 40 T = +25°C -1 -0.04 1 COM On Leakage Current V COM = ±10V, A (Note 6) ICOM(ON) V NO_ or NC_ = ±10V TA= TMIN C, E -5 5 nA to MAX M -100 100 2 _________________________________________________
in „Frage zum Datenblatt max313 analogschalter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX603-MAX604.pdf
60 100 Load Regulation ∆VLDR IOUT = 1mA to 500mA MAX603M 150 mV IOUT = 1mA to 300mA MAX604 30 100 Line Regulation ∆VLNR (VOUT + 0.5V) ≤IN≤ 11.5V,OUT = 25mA 7 40 mV IOUT = 200mA MAX603 130 220 IOUT = 500mA
in „Logikanalzyer mit FT232BL“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX_Reset_Circuit.pdf
, MAX8_ _R/S/T/Z 17 50 S Supply Current (SOT23) CC / TA= +85°C VCC < 5.5V, MAX8_ _L/M 100 / to +105°C VCC < 3.6V, MAX8_ _R/S/T/Z 100 TA= -40°C VCC < 5.5V, MAX8_ _L/M 24 35 µA M to +85°C V < 3.6V, MAX8_ _R
in „AVR, Batteriebetrieb und Brownout“ · Mikrocontroller und Digitale Elektronik ·
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MAX396.pdf
Analog Multiplexers M _______________General Description ____________________________Features The MAX396/MAX397 low-voltage, CMOS analog multi- Pin Compatible with MAX306/MAX307, A plexers (muxes) offer low on-resistance (100Ω max), which DG406/DG407, DG506A/DG507A X is matched to within 6Ω between
in „Welche Spannung kann der Multiplexer MAX307 schalten?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
traco_Netzteil_datasheet.pdf
Enclosed Power Supplies TXL Series 25–600 Watt Models with Single Output Order Code Case Output Power max. Output Voltage nom. Output Current max. TXL 100-3.3S 3.3 VDC 25.0 A TXL 100-05S 5 VDC 20.0 A TXL 100-12S J 100 Watt 12 VDC 8.5 A TXL 100-15 S 15 VDC 6.8 A TXL 100-24S 24 VDC 4.5 A TXL 100-48S 48 VDC
in „SNT mit mehreren Spannungen - gemeinsame Masse?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CUPP_RELAYS.pdf
. 22.86–0.18 27.94–0.18 (1.300) (0.900–0.007) (1.100–0.007) 0.64 (0.025) 4 8 3.20 6 2 (0.125) 2.54 8 6 4 2 6 – 6 + 12.00MAX. 10.00MAX. (0.100) TopView (0.472) (0.393) 7.62 TopView TopView (0.300) TopView CUP C/CUP P 1A1B/2B/3A CUP C/CUP P 3A CUP C/CUP
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Datei
irmp.diff
LEGO_0_PAUSE_LEN_MAX ((uint_fast8_t)(F_INTERRUPTS * LEGO_0_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1) +#define LEGO_0_PAUSE_LEN_MAX ((uint_fast8_t)(F_INTERRUPTS * LEGO_0_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5) + 0) #define
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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Datei
irmp.diff
LEGO_0_PAUSE_LEN_MAX ((uint_fast8_t)(F_INTERRUPTS * LEGO_0_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1) +#define LEGO_0_PAUSE_LEN_MAX ((uint_fast8_t)(F_INTERRUPTS * LEGO_0_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1) #define
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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PDF
LP2950.pdf
0.1 0.1 0.2 % max (Note 14) 0.3 0.2 0.3 % max Dropout Voltage IL= 100µA 80 80 80 mV max (Note 5) 50 150 50 150 50 150 mV max IL= 100mA 450 450 450 mV max 380 600 380 600 380 600 mV max Ground IL= 100µA 75 120 75 120
in „Suche stromsparenden Spannungsregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX4626.pdf
RON VNO or VNC = 3.5V, Ω X ICOM = 100mA TA= T MINto MAX 0.6 A On-Resistance Flatness R FLAT(ON) V+ = 4.5V; COM = 0, 1V, TA= +25°C 0.05 0.10 Ω (Note 4) 2V; COM = 100mA TA= T MINto MAX 0.10 M NO or NC Off-Leakage I , V+ = 5.5V; V = 1V, 4.5V
in „Selbsthaltener Powerschalter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BUK100-50.pdf
MAX. UNIT V IS(TO) Input threshold voltage VDS = 5 V; D = 1 mA 1.0 1.5 2.0 V IIS Input supply current normal operation; V IS5 V 100 200 350 A V = 4 V - 160 270 A 1 IS V ISR Protection reset voltage T j
in „MOSFET SCHMILZT“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
auirs2123.pdf
. Temperature vs. Supply Voltage 500 500 ) ) n 400 n 400 e ( i 300 e 300 T i f T 200 Max - 200 f Typ r Max. - T 100 r 100 T yp. T 0 0 -50 -25 0 25 50 75 100 125 10 12 14 16 18 20 VBIASupplyVoltage(V) Temperature ( C) Figure 2A. Turn-Off Time vs. Figure 2B. Turn-Off Time vs. Tem perature
in „High-Side Treiber Baustein“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CP-Clare-PRME-15002.pdf
IC - - 3 - - 3 Amps Contact Rating Max DC/PeakAC Resistive - - 50 - - 50 Watts Life Expectancy Signal Level 1.0 V 10mA - 200 - - 200 - x10 6Ops (1) Related Loads Static Contact Resistance 50mV, 10mA CR - 40 100 - 65 100 mΩ Dynamic Contact
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PDF
CP-Clare-PRME-15002.pdf
IC - - 3 - - 3 Amps Contact Rating Max DC/PeakAC Resistive - - 50 - - 50 Watts Life Expectancy Signal Level 1.0 V 10mA - 200 - - 200 - x10 6Ops (1) Related Loads Static Contact Resistance 50mV, 10mA CR - 40 100 - 65 100 mΩ Dynamic Contact
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PDF
BYW29.pdf
ultrafast GENERAL DESCRIPTION QUICK REFERENCE DATA Glass passivated high efficiency SYMBOL PARAMETER MAX. MAX. MAX. UNIT rectifier diodes in a plastic envelope, featuring low forward voltage drop, BYW29- 100 150 200 ultra-fast recovery times and soft VRRM Repetitive peak reverse 100 150 200 V recovery
in „BYW29G-200 gesucht (D²Pack) oder Vergleichstyp“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX6369-MAX6374.pdf
°A and V = +3V.) (Note 1) CC PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS Watchdog Input Pulse Width t After WDO deasserted 100 ns (Note 2) WDI MAX6369/MAX6371/MAX6373 100 300 ms Watchdog Output Pulse Width t WDO MAX6370/MAX6372/MAX6374 1 3 ms Internal Setup Time t
in „[V] 10St. Langzeit (>1min) Selectable Watchdog Timers MAX6373KA+ (15€)“ · Markt ·
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PDF
MAX6369-MAX6374.pdf
°A and V = +3V.) (Note 1) CC PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS Watchdog Input Pulse Width t After WDO deasserted 100 ns (Note 2) WDI MAX6369/MAX6371/MAX6373 100 300 ms Watchdog Output Pulse Width t WDO MAX6370/MAX6372/MAX6374 1 3 ms Internal Setup Time t
in „[V] 10St. Langzeit (>1min) Selectable Watchdog Timers MAX6373KA+ (10€)“ · Markt ·
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PDF
max6369-max6374.pdf
°A and V = +3V.) (Note 1) CC PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS Watchdog Input Pulse Width t After WDO deasserted 100 ns (Note 2) WDI MAX6369/MAX6371/MAX6373 100 300 ms Watchdog Output Pulse Width t WDO MAX6370/MAX6372/MAX6374 1 3 ms Internal Setup Time t
in „[V] 10St. Langzeit(>1min) Selectable Watchdog Timers MAX6373KA+ (8€)“ · Markt ·
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PDF
MAX6369-MAX6374.pdf
°A and V = +3V.) (Note 1) CC PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS Watchdog Input Pulse Width t After WDO deasserted 100 ns (Note 2) WDI MAX6369/MAX6371/MAX6373 100 300 ms Watchdog Output Pulse Width t WDO MAX6370/MAX6372/MAX6374 1 3 ms Internal Setup Time t
in „[V] 10St. Langzeit (>1min) Selectable Watchdog Timers MAX6373KA+ (8€)“ · Markt ·
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PDF
ds-CLQ6A-TKW-1140398.pdf
(RED I =100mA,GREENFI =100mA,BLUE I =100mA,WFITE I =100mA) F F Red Green Bin Code Min.(nm) Max.(nm) Bin Code Min.(nm) Max.(nm) G7 520 525 RB 619 624 G23 522.5 527.5 G8 525 530 G45 527.5 532.5 G9 530 535 Blue Bin
in „Wahl LED + Treiber“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS011252.PDF
mA 14 50 50 mA max e Output Noise Voltage 10 Hz–100 kHz OUT 100 mA 100 mV Long Term Stability 20 mV 1000 hr Ripple Rejection f e 120 Hz 70 60 50 dB o min Dropout Voltage I e 500 mA 0 53 0 80 1 1 V OUT max OUT e 250 mA
in „[V] 20 Stück LM2984CT“ · Markt ·
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PDF
503643-da-01-en-REEDSCHALTER_59166_1_T_00_A_10W_1S.pdf
DEACTUATE DIST BREAKDOWN RESISTANCE 59166-1-S-00-A 37213 59166 MDSR-7 10-15 LEADED 0.160 MIN 0.480 MAX 150-350 volts 0.100 ohm MAX. 59166-1-S-00-C 37214 59166 MDSR-7 10-15 GW BULK 0.150 MIN 0.380 MAX 150-350 volts 0.100 ohm MAX. 59166-1-S-00-D 37215 59166 MDSR-7 10-15 GW TAPE 0.150 MIN 0.380 MAX 150-350 volts 0.100 ohm MAX. 59166-1-T-00-A 37216 59166 MDSR-7 15-20 LEADED 0.155 MIN 0.460 MAX 150-350 volts 0.100 ohm MAX. 59166-1-T-00-C 37217 59166 MDSR-7 15-20 GW BULK 0.145 MIN 0.370 MAX 150-350 volts 0.100 ohm MAX
in „Reedkontakt Conrad“ · Mikrocontroller und Digitale Elektronik ·