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Datei
test7.c
124, 125, 125, 126, 126, 127, 127, 128, 128, 129, 129, 130, 130, 131, 131, 132, 133, 133, 134, 134, 135, 135, 136, 136, 137, 137, 138, 138, 139, 139, 140, 140, 141, 141, 142, 142, 143, 143, 144, 144, 145, 145, 146, 146, 147, 148, 148, 149, 149, 150, 150, 151, 151, 152, 152, 153, 153, 154, 154, 155, 155
in „Frage zu Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
parts.txt
7 BC558 100 BC559 200 BC617 50 BC635 5 BCX79 21 BCY58 13 BCY59 100 BCY75 250 BCY92 C12 4 BD128 5 BD135 5 BD135 200 BD136 7 BD142 13 BD142 4 BD165 1 BD166 1 BD168 5 BD169 2 BD170 24 BD175 40 BD179 12 BD228 15 BD234 3 BD235 2 BD237 2 BD238 25 BD238 100 BD241 30 BD242 1 BD245 1 BD434 9 BD435 35 BD438 4
in „[V] Bauteilauflösung Transistoren/Audio+Video IC“ · Markt ·
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PDF
PEAKTECH_2240.pdf
prevent possible shorts and damage to the equipment. 2. Specifications output power 2,5 A AC Note: the max. output refers only to an ohmic load output voltage 230 V AC; 50 Hz line voltage 230 V AC; 50 Hz fuse 4 A/250 V Outlet export outlet with protection earth (PE) Operating temp. range + 10 ... + 40°C Storage temp. range - 10 ... + 50°C Dimensions (WxHxD) 160 x 135 x 210 mm Weight 7,5 kg Accessories power cord, operation manual -9- Additional advice to isolating transformer ® The PeakTech 2240 is developed and manufactured in protection class I (hereinafter known
in „Frage zum Oszilloskop am Trenntrafo“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MGA-62563__AV02-1237EN_.pdf
= 5OΩ,V = 3V (unldss otherwise specified) Symbol ParametersandTestConditions Freq Units Min. Typ. Max. StdDev Id [1,2] Device Current mA 47 62 77 2.09 NF test[1,2 Noise Figure in test circuit [1] f = 0.5 GHz dB 0.93 1.4 0.06 [1,2] [1] G test Associated Gain in test circuit f = 0.5 GHz dB 20.4 22 23.4
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Datei
main.c
121,121,122,122,122,123,123,124,124,124,125,125,125,126,126,127,127,127,128,128,129,129,129,130,130,131,131,131,132,132,133,133,133,134,134,135,135,135,136,136,137,137,137,138,138,139,139,139,140,140,141,141,141,142,142,143,143,143,144,144,145,145,145,146,146,147,147,148,148,148,149,149,150,150,150,151,151,152,152,152,153,153,154,154,155,155,155,156,156,157,157,158,158,158,159,159,160,160,161,161,161,162,162,163,163,164,164,164,165,165,166,166,167,167,168,168,168,169,169,170,170,171,171,172,172,172,173,173,174,174,175,175,176,176,176,177,177,178,178,179,179,180,180,181,181,182,182,182,183,183,184,184,185,185,186,186,187,187,188,188,189,189,190,190,191,191,192,192,192,193,193,194,194,195,195,196,196,197,197,198,198,199,199,200,200,201,201,202,202,203,203,204,205,205,206,206,207,207,208,208,209,209,210,210,211,211,212,212,213,213,214,215,215,216,216,217,217,218,218,219,219,220,221,221,222,222,223,223,224,224,225,226,226,227,227,228,228,229,230,230,231,231,232,232,233,234,234,235,235,236,237,237
in „HSV RGB Led Dimmer, C Code & Video & Doku“ · Projekte & Code ·
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PDF
Motor.pdf
D π 5,13 ⋅0,1 ⋅s +1) ⇒ G RA(s = PI-Regler 0,1⋅s Bode Diagram 50 B 0 ( u n a -50 M -100 -90 e ( s -135 h P -180 10 101 102 103 104 Frequency (rad/sec) 16 Root Locus 2.5 2 1.5 1 s 0.5 x y a 0 i a I -0.5 -1 -1.5 -2 -2.5 -160 -140 -120 -100 -80 -60 -40 -20 0 Real Axis Abhebepunkt bei K ≈ 5,13 R 17 in A
in „PI_Regler in Antriebstechnik“ · Mikrocontroller und Digitale Elektronik ·
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PDF
36ddedx.pdf
TYPICAL CASE SPACING WEIGHT CODE D L D L P TERMINAL M ± 0.016 (0.4) (g) ± 0.032 (0.8) ± 0.063 (1.6) (Max.) (Max.) H (Max.) AN 1.375 (35.0) 1.625 (41.0) 1.453 (36.9) 1.750 (44.5) 1.849 (47.0) 0.500 (12.7) 43.0 AY 1.375 (35.0) 1.875 (48.0) 1.453 (36.9) 2.000 (50.8) 1.099 (53.3) 0.500 (12.7) 54.0 AA 1.375
in „Unterschied Bauform "kleiner Elko" "großer Elko"“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
3d.c
Definitionsbereich uC-freundlich in Festkommazahlen (skaliert mit 100): const int minX_scaledX = 0; const int maxX_scaledX = 200; const int minY_scaledY = 0; const int maxY_scaledY = 200; const int minZ_scaledZ = 0; const int maxZ_scaledZ = 400; const double scaleX = 100; const double scaleY = 100; const double
in „3D Kennfeld mit Mikrocontroller verarbeiten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
B824xx.pdf
dia. 2220 5.6 5.0 5.0 0.7 SIMID 0402 size type B82499 Value Tolerance Q min. Test Freq. SRF min. Rdc max. Idc max. Manf. Part No. & (µH) (MHz) (MHz) (Ω) (mA) Order Code 0.001 ±0.0003µH 8 100 6000 0.05 400 B82499A3109A 0.0012 ±0.0003µH 8 100 6000 0.06 400 B82499A3129A 0.0015 ±0.0003µH 8 100 6000 0.07 400
in „Welches SMD Bauteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ts912.pdf
90 e ( Phase 90 e I T = 25 C ( I 20 Tamb= 25 C Margin ( A VCC = 10V A VCC = 10V G 10 RL= 10k Gain 135 S G 10 RL= 600 Gain 135 S CL= 100pF Bandwidth A CL= 100pF Bandwidth A AVCL= 100 Product 180 P 0 AVCL= 100 Product 180 P 0 - -10 10 10 2 103 10 4 10 5 10 6 107 10 2 103 104 105 106 107 FREQUENCY, f (
in „"Hallsonde für Oszilloskop" im Eigenbau?!“ · Analoge Elektronik und Schaltungstechnik ·
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Bild
Tabelle der statischen Kennwerte eines Datenblatts
characteristics Voltages are referenced to GND (ground = 0 V). Symbol Parameter Conditions 25 °C Min Max -40 °C to +85 °C Min Max -40 °C to +125 °C Min Max Unit VIH HIGH-level input voltage VCC = 1.65 V to 1.8 V 0.94 - 1.0 - 1.0 - V VCC = 2.0 V 0.99 - 1.03 - 1.03 - V VCC = 2.25 V to 2.5 V 1.135 - 1.18
in „NPN-Transistorschaltung "umdrehen"“ · Analoge Elektronik und Schaltungstechnik · · Screenshots
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PDF
PCB_Design_Optimization_Starts_in_the_CAD_Library.pdf
Height Assembly Outline Polarity Marker Rounded Rectangle % of Width Map Assembly to Nom or Max Body Rounded Rectangle Max Radius Assembly Outline Place Round-off Rounded Rectangle Round-off Assembly Ref Des Min/Max Heights Solder/Paste Mask Over/Under Courtyard Line Width Thermal
in „Altium Mechanical Layer 13 und 15“ · Mikrocontroller und Digitale Elektronik ·
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PDF
rfax.pdf
-135E PPBE51.TIF 24HR 500 mb Forecast (Most Current) PPBE11.TIF 48HR 500 mb Forecast VT00Z 20N-70N, 115W-135E PPBI50.TIF 48HR 500 mb Forecast VT12Z 20N-70N, 115W-135E PPBI51.TIF 48HR 500 mb Forecast (Most
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PDF
TEM-U2400B-.pdf
~ 94 9385 7 Figure 12. Comparator threshold dimensioning circuit R 6 Temperature V comparator T V max Comparator figure 13 + The comparator interrupts the discharge and charge out- R 5 17 – puts when V 4 ↓V T4max . 1.5 kW The following relationship is valid: V T4max R NTC R 2 R 4 V T5min V B V T4max
in „NI-CD Batterielader mit U2400B“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
vk4100c.pdf
B closing force 2 valve can also be provided with reduced opening speed, the max. dead time is then 1 s max. and the outlet pressure shall reach 5 mbar within 3 s from start of flow. Table 6: Valve classification st nd Model 1 valve 2 valve Classification Backpressure (mbar) Classification
in „Bautteil identifizieren, komme mit Ringe nicht klar“ · Platinen ·
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PDF
2312_ENG.pdf
display driving current IL2 3 5 10 mA IL3 Thermal shutdown temperature TOTP rising temperature 110 135 150 ÿ Thermal shutdown recovery temperature TOTP drop temperature 70 85 100 ÿ V1.0 http://www.injoinic.com/ 4 / 11 Copyright © 2016, Injoinic Corp. Machine Translated by Google IP2312 8Function description
in „LiIon-Akku in LED-Tischlampe vergrößern“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2312_ENG.pdf
display driving current IL2 3 5 10 mA IL3 Thermal shutdown temperature TOTP rising temperature 110 135 150 ÿ Thermal shutdown recovery temperature TOTP drop temperature 70 85 100 ÿ V1.0 http://www.injoinic.com/ 4 / 11 Copyright © 2016, Injoinic Corp. Machine Translated by Google IP2312 8Function description
in „Suche Schaltplan zu Laderegler IP2312“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DLO2416.pdf
.031 .250 .136 .260 (.79) (6.35) (3.45) (6.60) ref. (.79) .800 .600 .020 (20.32) (15.24 .51) .198 max. (5.03) .1.00 max. .012 (.30) (25.4) .002 (.05) .Pin 1Part No. 18 pl. Indicator EIA Date Code .070 (1.78) .003 (.08) .010 (.25) 8 pl. (1.27) pl. DLX2416 Z SIEMENS YYWW .260 (6.60) FEATURES .160 .020
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PDF
LC4104C.pdf
standard PGA-208 package. Absolute Maximum Ratings at V = 0 V SS Parameter Symbol Conditions min typ max Unit Maximum supply voltage VDDmax –0.3 7 V Maximum supply voltage VDDH max –0.3 40 V Maximum supply voltage V max –0.3 +0.3 V SS D0 to D7, LOAD, CP, R/L, TEST, DISP, M, EIO1, EIO2, Input voltage VIN
in „Display von Pollin - Datenblatt - Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC1488.pdf
3. DIMENSIONBDOESNOTINCLUDEMOLD 1 7 FLASH. 4. ROUNDEDCORNERSOPTIONAL. INCHES MILLIMETERS A DIM MIN MAX MIN MAX A 0.715 0.770 18.16 19.56 F L B 0.240 0.260 6.10 6.60 C 0.145 0.185 3.69 4.69 D 0.015 0.021 0.38 0.53 F 0.040 0.070 1.02 1.78 C G 0.100BSC 2.54BSC H 0.052 0.095 1.32 2.41 J J 0.008 0.015 0.20
in „Suche "echten" Pegelwandler 3.3V <-> RS232“ · Mikrocontroller und Digitale Elektronik ·
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PDF
opa354.pdf
Plane 1 4 0.010 (0,25) A 0°– 8° 0.044 (1,12) 0.016 (0,40) Seating Plane 0.010 (0,25) 0.069 (1,75) MAX 0.004 (0,10) 0.004 (0,10) PINS ** 8 14 16 DIM A MAX 0.197 0.344 0.394 (5,00) (8,75) (10,00) A MIN 0.189 0.337 0.386 (4,80) (8,55) (9,80) 4040047/E 09/01 NOTES: A. All linear dimensions are in inches
in „OP Verstärker scheint zu schwingen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BZX55__VISHAY-2013.pdf
PART NUMBER VZat IZT1 IZT1 IZT2 Tamb = T amb = f = 1 kHz TK VZ 25 °C 150 °C V mA μA V %/K MIN. NOM. MAX. MAX. MAX. MIN. MAX. BZX55C2V4 2.28 2.4 2.56 5 1 < 50 < 100 1 < 85 < 600 - 0.09 - 0.06 BZX55C2V7 2.5 2.7 2.9 5 1 < 10 < 50 1 < 85 < 600 - 0.09 - 0.06 BZX55C3V0 2.8 3.0 3.2 5 1 < 4 < 40 1 < 85 < 600
in „Z-Diode macht nicht was ich denke“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Athlet_V1_4_32_4.ino
switch-level MID #define BRUSH_PWM_HIGH 180 // for BCH6L2560: PWM brush for switch-level HIGH #define BRUSH_I_MAX 2.0 // for BCH6L2560: overcurrent limit for brush motor [amperes] #define VBAT_LOW 21.0 // for BCH6L2560: Battery Voltage level for LED LOW (discharging) discharge voltage levels are lower due high
in „Bosch Athlet 25,2 V Akku 7 Stück Tauschen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SC1117DG-PowerIntegrations.pdf
2 oz. (610 g/m ) copper clad. Conditions Parameter Symbol SOURCE = 0 V; T = J40 to 125 °C Min Typ Max Units (Unless Otherwise Specified) Control Functions Output Average 62 66 70 Frequency fOSC T J 25 °C kHz Peak-Peak Jitter 4 Maximum Duty Cycle DC MAX S2 Open 66 69 72 % FEEDBACK Pin Turnoff FB TJ=
in „[TIPP] WMF Skyline Vario Wasserkocher“ · Haus & Smart Home ·
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PDF
2N3702.pdf
Electrical Characteristics: (T A +25C unless otherwise specified) Parameter Symbol Test Conditions Min Typ Max Unit Collector−Base Breakdown Voltage V(BR)CBO C = 10mA, E = 0 40 − − V Collector−Emitter Breakdown VoltageV(BR)CEO C = 100A,B = 0 , Note 2 25 − − V Emitter−Base Breakdown Voltage V(BR)EBO E = 100
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PDF
2N3702-NTE.pdf
Electrical Characteristics: (T A +25C unless otherwise specified) Parameter Symbol Test Conditions Min Typ Max Unit Collector−Base Breakdown Voltage V(BR)CBO C = 10mA, E = 0 40 − − V Collector−Emitter Breakdown VoltageV(BR)CEO C = 100A,B = 0 , Note 2 25 − − V Emitter−Base Breakdown Voltage V(BR)EBO E = 100
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Datei
Configuration.h
= true; // set to true to invert the logic of the endstop. //#define DISABLE_MAX_ENDSTOPS //#define DISABLE_MIN_ENDSTOPS // Disable max endstops for compatibility with endstop checking routine #if defined(COREXY) && !defined(DISABLE_MAX_ENDSTOPS) #define DISABLE_MAX_ENDSTOPS #endif
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PDF
74244.pdf
Min, IH= Min 2.7 V IL Max, OH = −1 mA V CC= Min, IH= Min V = Max, I = −3 mA 2.4 3.4 V IL OH V CC= Min, IH= Min 2 V IL 0.5V,OH = Max VOL LOW Level Output Voltage V CC= Min OL = 12 mA 0.4 V ILMax OL = Max 0.5 V V = Min IH IOZH
in „74244 - Kurzschluss durch 2x Tristate“ · Mikrocontroller und Digitale Elektronik ·
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PDF
T1_HW_.pdf
Data Part RT Ipk Droop Max Flux Kb Req Number (Amps) (%) Density (mΩ) P0581 200 34 1.00 2000 17.12 .9 P0582 100 35 1.98 2000 68.49 .8 P0583 15 36 1.19 2000 273.97 .75 4. To calculate the droop: Droop Exponent (D) = Rt * don/(
in „Stromwandler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
P516-----.pdf
Data Part RT Ipk Droop Max Flux Kb Req Number (Amps) (%) Density (mΩ) P0581 200 34 1.00 2000 17.12 .9 P0582 100 35 1.98 2000 68.49 .8 P0583 15 36 1.19 2000 273.97 .75 4. To calculate the droop: Droop Exponent (D) = Rt * don/(
in „THT Transformator“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
T1_HW_.pdf
Data Part RT Ipk Droop Max Flux Kb Req Number (Amps) (%) Density (mΩ) P0581 200 34 1.00 2000 17.12 .9 P0582 100 35 1.98 2000 68.49 .8 P0583 15 36 1.19 2000 273.97 .75 4. To calculate the droop: Droop Exponent (D) = Rt * don/(
in „Stromwandler Simulation“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
APPCHP7.pdf
the maximum pulse power dissipation is limited either by the maximum temperature difference Tj-mb max (Eq. 2), or by the maximum junction temperature T jmax and so by analogy with Eqs. 3 and 4: Tj −mb max P tot maxK , 7 Zthj −mb when T mb ≤ Tmb K and: Fig. 10 Three limit cases of rectangular pulse loads
in „2N3055 , was sind aktuelle Alternativen ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
APPCHP7.pdf
the maximum pulse power dissipation is limited either by the maximum temperature difference Tj-mb max (Eq. 2), or by the maximum junction temperature T jmax and so by analogy with Eqs. 3 and 4: Tj −mb max P tot maxK , 7 Zthj −mb when T mb ≤ Tmb K and: Fig. 10 Three limit cases of rectangular pulse loads
in „Lineares Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
898_R-Netzwerk.PDF
change without notice. 4-157 Models 898, 899 Ladder OUTLINE DIMENSIONS (Inch/mm) .880 Model 898 22.4Max. .780 Model 899 Max. 19.8 .250 .340±.020 6.35 Ref. 8.64±0.51 .125 .050 .060 Ref. 3.18 Max. 1.27 Ref. 1.52 .020 .185 0.51 Min. 4.70 Max. .100 ± .010* 2.54 ± 0.25 .135 ± .030 .080 ± .020 3.43 ± 0.76 2.03
in „Bestimmung von Bauteilen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
YESTRIP_FUSES_D_E_F.pdf
157.5917.6121* 157.5701.6121 125 A 125 mV 157.5701.6131* 130 A 125 mV 157.5701.6141* 157.5917.6141* 135 A 125 mV 157.5701.6151* 157.5917.6151* 150 A 125 mV 157.5701.6161 157.5917.6161* 160 A 125 mV 157.5701.6171* 157.5917.6171* 175 A 125 mV 157.5701.6201 157.5917.6201* 200 A 125 mV 157.5701.6231* 157.5917.6231
in „Sicherungsüberwachung bei 2 parallel geschalteten DC-Leitungen“ · Haus & Smart Home ·
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PDF
DSE-CN5711.pdf
Characteristics (VCC=3.7V, T A= 25℃, unless otherwise noted.) Parameters Symbol Test Conditions Min Typ Max Unit Operating Voltage VCC 2.8 6 V Range Quiescent current I R =1.8kΩ,I =0A 200 260 320 uA VCC1 ISET LED Shutdown state operating current IVCC2 V CEV 1 uA LED pin current ILED1 R ISET1.8kΩ 0.95 1 1.05
in „LED Treiber Input 5VDC Output 2V 400mA bis 800mA gesucht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
StoppUhr_1ms.bas
Const Anhalten = 0 Const Gedrueckt = 0 Const Abgelaufen = 0 ' --- Anzeigerequenz = Aufziehen * 1 msec (max 255) Const Aufziehen = 135 '*** Jetzt geht's los, initialisieren ... Anzeigetimer = Aufziehen Locate 1 , 3 Lcd " Stoppuhr " '******************************************************************** '***
in „Stoppuhr mit Bascom AVR“ · Mikrocontroller und Digitale Elektronik ·
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Bild
16-Kanal I2C elektromagnetisches Relais-Modul
MODULE VOLTAGE - 3.3 / 5.0 VDC MODULE MAX CURRENT - 1500mA RELAY MAX CURRENT - 10A <=> 240 VAC 10A <=> 120 VAC 10A <=> 30 VDC NC - NORMAL CLOSE COM - COMMON TERMINAL NO - NORMAL OPEN 16 CHANNEL I2C INTERFACE ELECTROMAGNETIC RELAY MODULE KRIDA Electronics implement your project RoHS compliant CE KRIDA Electronics PCB rev. 3.0 135mm x 150mm
in „[V] 16 Kanal I2C Relais Module“ · Markt · · Platinenfotos
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PDF
CD287.pdf
jianghai-europe.com www.jianghai-europe.com v2008.1 43 CD 287 GC Series Ratings for CD 287 GC Series U Max U Max R.DC Rated Max ESR Max Imp Max Imp Ripple Size R.DC Rated Max ESR Max Imp Max Imp Ripple Size (Surge Capa- 20°C, 20°C, -10°C, Current (Surge Capa- 20°C, 20°C, -10°C, Current Voltage) citance 120Hz
in „Empfehlung für Low-ESR LONG LIFE Elkos?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
451 VDC R DC Sense Output Voltage DC VR OVP OVP Input Input Voltage DC @ 100 VDC = 76% Voltage DC MAX @ 375 VDC = 41% D M MAX D M DC MAX@ 100 VDC = 76% DC MAX@ 375 VDC = 41% CONTROL CONTROL C C R OVP>3k7 S S - - PI-4729-120307 PI-4730-120307 Figure 31. Line Sensing for Undervoltage, Overvoltage, Line
in „Verzweifelt: Wie Widerstände und Kapazitäten eines Sperrwandler IC´s auslegen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TRW-24G.pdf
Conditions: VDD=+3V,VSS=0V,T =-40 cenAigrade to +85 centigrade Symbol Parameter(condition) Notes Min. Typ. Max. Units VDD Supply voltage 1.9 3.0 3.6 V TEMP Operating temperature -40 +27 +85 Centigrate fop Operting frequency 1) 2400 2524 MHz R GFSK Data rate direct mode 3) 250 1000 kbps FCHANNEL Channel spacing
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PDF
HWSC_S_A0014431442_1-3073393.pdf
21. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .s max. at 250°C [482°F] peak reflow temperature (SMT) 15 s max. at 250°C [482°F] 3.1 ADC Communications and Initialization . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 22. .
in „ESP32 Wroom mit Honeywell Drucksensor verbinden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FSP_SHB_D.pdf
dBm 6999 MHz - ________ -138 dBm Rauschanzeige Seite 1.10 FSP 13/ 30/ 40:noise 3099 MHz - ________ -135 dBm 3499 MHz - ________ -135 dBm 3999 MHz - ________ -135 dBm 4499 MHz - ________ -135 dBm - ________ -135 dBm 4999 MHz 5499 MHz - ________ -135 dBm 5999 MHz - ________ -135 dBm 6499 MHz - ________ -135 dBm 6999 MHz - ________ -135 dBm 7999 MHz - ________ -132 dBm 8999 MHz - ________ -132 dBm - ________ -132 dBm 9999 MHz 10999 MHz - ________ -132 dBm 11999 MHz - ________ -132 dBm 12999 MHz - ______
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PDF
111619cat.pdf
1 kHz bis 3,2 GHz/Nullspanne Tracking-Generator 74 Rest-FM Kanaleingang 78 ÿ60 Hz pp/100 ms Extras Max. Eingangspegel Batterie 60 Wh U4000-B5 Vorverstärker aus ÿ±27 dBm Vorverstärker ein ÿ±13 dBm Ladegerät für 2 Akkus B5 U4000-C4 Ladegerät für 4 Akkus B5 U4000-C5 Sweep-Zeit 50 ms bis 1000 s Ladegerät
in „Spectrum Analyser Advantest U3641 bz“ · HF, Funk und Felder ·
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PDF
JXI5020.pdf
໊໊֞ۚ ) ns OE OUT2n - 50 70 pLH3 ns OE OUT2n + 1 - 35 55 ns CLK-SDO pLH - 20 40 ns CLK- OUT2n - 115 135 pHL1 - 100 120 ns CLK- OUT2n +1 LE-OUT2n - 115 135 ns pHL2 Ӿൈࡗ LE-OUT2n +1 - 100 120 ns (໊໊֮ۚ֞ ) OE OUT2n VDD3.3V - 105 125 ns pHL3 VDS1.0V OE OUT2n + 1 VIHV DD - 90 110 ns V =GND CLK-SDO pHL IL
in „Chinesische IC und ihre Verwandschaft“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bd138.pdf
25oC 12.5 W P tot Total Dissipation aamb≤ 25 C 1.25 W Tstg Storage Temperature -65 to 150 oC o Tj Max. Operating Junction Temperature 150 C November 2001 1/4 BD136 / BD138 / BD140 THERMAL DATA o R thj-caseThermal Resistance Junction-case Max 10 C/W ELECTRICAL CHARACTERISTICS (T case= 25 C unless otherwise
in „Kühlkörperberechnung - werde aus Datenblatt nicht schlau“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTC224210fc.pdf
58.2 60.4 dB (Note 12) 140MHz Input 60.3 dB 240MHz Input 60.2 dB IMD Intermodulation Distortion IN1= 135MHz, fIN2= 140MHz 81 dBc 224210fc 3 LTC2242-10 INTERNAL REFERENCE CHARACTERISTICS (Note 4) PARAMETER CONDITIONS MIN TYP MAX UNITS VCM Output Voltage IOUT= 0 1.225 1.25 1.275 V V Output Tempco ±35 ppm
in „Projekt Signal-Auswertung mit High-Speed-ADC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
B101EW05_V0.pdf
) (Note: ILED is LED current) 297 min. (5 points average) Luminance Uniformity 1.25 max. (5 points) Contrast Ratio 1500 typ, 1000 min. Response Time [ms] 25 typ / 35 Max [Volt] Nominal Input Voltage VDD +3.3 typ. Power Consumption [Watt] 3.4 max. (Include Logic and Blu power) Weight [Grams] 180 max. [mm] Min. Typ. Max. Panel only Physical Size Length 228.96 229.46 229.95 without bracket Width 148.7 149.2 149.7 Thickness --- --- 5.2 Electrical Interface 1 channel LVDS Glass Thickness [mm] 0.3 Surface
in „Handydummy (Attrappe)mit richtigem Display 10Zoll - u.a.Motorola Xoom“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Configuration.h
Temperature thermistor", '70':"the 100K thermistor found in the bq Hephestos 2", '71':"100k / 4.7k Honeywell 135-104LAF-J01", '147':"Pt100 / 4.7k", '1047':"Pt1000 / 4.7k", '110':"Pt100 / 1k (non-standard)", '1010':"Pt1000 / 1k (non standard)", '-4':"Thermocouple + AD8495", '-3':"Thermocouple + MAX31855 (only for
in „Marlin 2.0.72 lässt sich nicht compilieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
A123_LiFePO4.PDF
2,0 - kein Lithiumüberschuss in der Kathode - Überladen führt nicht zur Galvanisierung von Lithium Max. Ladestrom A 10 10 - niedrige Kathodenspannung – weniger elektrolyte Max. Dauerentladestrom A/ 60/150 60/150 Oxidation, längere Lebensdauer Impulsstrom A - exzellente Schnellladefähigkeit - gute verträglichkeit
in „LiFePo4 Akku laden“ · Mikrocontroller und Digitale Elektronik ·