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PDF
ATGmeo5c.pdf
-00 • 179 (1.26) 3.3 0.76 1.7 M22NXXC-LXX-XX-00 • 238 (1.68) 3.1 0.78 3.1 M22NXXC-LXX-XX-00 • 238 (1.68) 1.55 3.12 12.4 17 4.5 0.0036 2.5 (0.12) (0.025) (1.13) M22NXXC-LXX-XX-00 • 168 (1.19) 2.2 1.56 3.1 M22NXXD-LXX-XX
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PDF
LT1082.pdf
H T50 200 H I 67 E 40 I VIN= –60V Q 800mA T80 350 H T80 350 H E 64 R 30 1082 GA F 61 20 58 VIN= –70V L = 250 H 10 R = 0.08 55 0 1 2 3 4 0 6 5 4 3 2 1 0 POWER OUTPUT (W) OUTPUT VOLTAGE (V) NOTE: THIS GRAPH IS BASED ON LOW CORE LOSS 1082 G02
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PDF
lcd204.pdf
104 RESPONSE TIME ms 1 θ = 0° Ta = -20°C 2316 tf ( fall ) Ta = 25°C 174 Ta = 70°C 85 THE BRIGHTNESS 25 35 2 1, 2 OF BACK- LIGHT L IF = 240 mA 55 75 cd/m 1, 3 PEAK EMISSION WAVELENGTH λP IF = 240 mA 5 7 2
in „LCD: Nur 2 von 4 Zeilen werden angezeigt, keine 2 Enable Leitungen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX.pdf
V- 0.8 V Input Voltage High VIH 2.4 V+ V Input Current IIN VIN= V-, V+ -1.0 0.0001 1.0 µA SWITCH Analog Signal Range V COM, NO, NC V- V+ V VCOM = +10V, (NC orNO)= 1mA; M 20 35 On Circuit Resistance R ON V = -10V, I or = 1mA Ω COM (NC NO) C, E 45 TA= +25°C 2 On Resistance Match
in „Digitalpotentiometer in analogen Anwendungen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
E-cap_2011.pdf
30 x 45 1.50 30 x 45 1.42 30 x 45 1.25 30 x 50 1.40 25 x 35 1.50 35 x 35 1.50 30 x 50 1.55 35 x 45 1.55 30 x 30 1.50 35 x 40 1.55 470 22 x 50 1.55 35 x 40 1.70 30 x 45 1.45 30 x 50 1.40 35 x 40 1.47 25 x 40 1.55
in „TFT Monitor Elkos“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ENFF0018.pdf
2.There should not be the exposure 1 of the ferrite bead if a hole is on the top of ferrite bead. l 0.6 Lead Type l F1 F1 Q55 25.0 min. Q56 6.0±1.0 5.0±0.5 Q54 4.0±0.5 F1 = 2.5±0.5 1 2 3 (in mm) (3) (1) (2) Bulk (Incrimp Lead Type) : T
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PDF
NMA_0505_Wandler.pdf
NMA 5V & 12V SERIES Isolated 1W Dual Output DC-DC Converters SELECTION GUIDE Nominal Input Output Output Input Current Voltage Voltage Currentat Rated Load MTTF1 Order Code (V) (V) (mA) (mA) (%) (pF) kHrs NMA0505D 5 5 ±100 289 69
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PDF
Big_Motor2.pdf
0.81 0.65 3.5 1.74 1.9 2.0 0.000740 10 45 0.37 M3BP 71 MB 4 1380 72.4 74.5 74.6 0.83 0.88 4.0 2.5 1.6 2.1 0.000880 11 45 0.55 M3BP 80 MA 4 1415 74.5 73.8 70.0 0.73 1.45 5.0 3.7 2.0 2.8 0.00144 15 45 0.75 M3BP 80 MD
in „Drehmoment beim Drehstrommotor im Anlauf berechnen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM74.pdf
(Note 7) Limits Limits (Limit) (Note 8) (Note 8) Temperature Error (Note 6) T A = −10˚C to +65˚C ± 1.25 ±1.25 ˚C (max) T = −25˚C to +110˚C ±2.1 +2.65/−2.15 ˚C (max) A T A = −40˚C to +85˚C +2.65/−1.65 ±2.15 ˚C (max) = T A −40˚C to +110˚C +2.65/ +2.65/−2.15 ˚C (max) −2.0 T A = −55˚C to +125˚C ±3.0 ±3.5
in „suche I2C Themperatursensor, auf 0,1°C genau“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ferrit_SMD_0805_Z_220R_100MHz_2A_-_BLM21PG221SN1D.pdf
Part Number Impedance Impedance Rated Current DC Resistance (max.) Operating (at 100MHz/20°C) (at 1GHz/20°C) Temperature Range BLM21PG220SN1p 22ohm±25% - 6000mA 0.01ohm -55 to +125°C BLM21PG300SN1p 30ohm(Typ.) - 3000mA 0.015ohm -55 to +125°C BLM21PG600SN1p 60ohm±25% - 3000mA 0.025ohm -55 to +125°C BLM21PG121SN1p 120ohm±25% - 3000mA 0.03ohm -55 to +125°C BLM21PG221SN1p 220ohm±25% - 2000mA 0.050ohm -55 to +125°C BLM21PG331SN1p 330ohm±25% - 1500mA 0.09ohm -55 to +125°C Number of Circuits: 1 Continued on the following
in „SMD Sammelbestellung, SMD Starterpack, SMD Grundausstattung, SMD Bauteile, Baugröße 0805“ · Markt ·
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PDF
Stochino_Power_Amp_300V_us_power.pdf
a high -55V >- slew rate input stage. 55V>- IQ IQ I - L 1N4448 - A IR I R 2N5551 50R 50R V 3k3 R S V R 200R 2 1 50n + 1k 1k OR33 10R 50R 50R 9V ,I 100n 2N5401 IRF9630 R L 1N4448 L_ B _I R Fig. 2. In this preferred
in „Audio-Endestufe - bitte um Erklärung der Funktion einer Teilschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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Bild
Website Fehlermeldung für Bauteilsuche
oemsecrets Categories M55M1R2LJAE Compare BoM Tool Services No Distributor Results Found for M55M1R2LJAE Sorry, we can't find any distributors currently listing products for your search "M55M1R2LJAE". Please check you have
in „Visual Studio Code für Raspberry Pi Pico, neue Mikrocontroller uvam“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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Datei
main.c
- 48;} else {i = SR[0] - 55;} if (isdigit(SR[1])){j = SR[1] - 48;} else {j = SR[1] - 55;} if (isdigit(SR[2])){k = SR[2] - 48;} else {k = SR[2] - 55;} if (isdigit(SR[3])){l = SR[3] - 48;} else {l = SR[3] - 55;} if (isdigit(SR[4])){m = SR[4] - 48;} else {m = SR[4] - 55;} if (isdigit(SR[5])){n = SR[5] - 48;} else {n = SR[5] - 55;} wert = i*1048576+j*65536+k*4096+l*256+m*16+n; fprintf(out,"%i\r\n", wert); }; fclose(in); fclose(out)
in „Datei konvertieren, HEX 30 -> HEX 00“ · Softwareentwicklung ·
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PDF
MAX481_422.pdf
TEMPERATURE DIFFERENTIAL OUTPUT VOLTAGE vs. TEMPERATURE 4 0.9 - 90 - 2.4 - 9 A A R = 54 A 0.8 IRO= 8mA M 80 M ( 2.3 M 1 ) 0.7 70 G 2.2 / E A L M A 0.6 T 60 V 2.1 O E U A V 0.5 U 50 T 2.0 L 0.4 T 40 O 1.9 X U P I T 0.3 U 30 E 1.8 1 O O 20 E 1.7 4 0.2 D 0.1 10 1.6 8 7 0 0 1.5 -50 -25 0 25 50 75 100 125
in „Problem mit MAX481 Transmitter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX485.pdf
TEMPERATURE DIFFERENTIAL OUTPUT VOLTAGE vs. TEMPERATURE 4 0.9 - 90 - 2.4 - 9 A A R = 54 A 0.8 IRO= 8mA M 80 M ( 2.3 M 1 ) 0.7 70 G 2.2 / E A L M A 0.6 T 60 V 2.1 O E U A V 0.5 U 50 T 2.0 L 0.4 T 40 O 1.9 X U P I T 0.3 U 30 E 1.8 1 O O 20 E 1.7 4 0.2 D 0.1 10 1.6 8 7 0 0 1.5 -50 -25 0 25 50 75 100 125
in „STM32 UART Kommunikation -> Langsamer uC Tod“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74hc595.PDF
DELAYS M1R C1R PLH = PHL (MicroPackage) (Chip Carrier) . WIDE OPERATING VOLTAGE RANGE ORDER CODES : VCC (OPR) = 2 V TO6 V M54HC595F1R M74HC595M1R . PIN ANDFUNCTION COMPATIBLE M74HC595B1R M74HC595C1R WITH LSTTL
in „7 Segment Anzeige - SAA1064 + 4stellige Anzeige“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ACA4000CE240.pdf
(max) 4.20V, 55mA cut-off at 25°C Discharge: CC 1C, 2.50V cut-off at 25°C . v e e s g R A y a p o Discharge Characteristics (by temperature) Discharge Characteristics (by rate of discharge) y r E Charge:CC-CV 0.7C (max) 4.20V, 55mA cut-off at 25°C Charge: CC-CV 0.7C (max) 4.20V, 55mA cut-off at 25°C 2 Discharge: CC 1C, 2.50V cut-off at each temperature Discharge: CC, 2.50V cut-off at 25°C 0 2 h r p C | R 1 3 1 I R V The data
in „Akkuspannung unter Last“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
18650.pdf
(max) 4.20V, 55mA cut-off at 25°C Discharge: CC 1C, 2.50V cut-off at 25°C . v e e s g R A y a p o Discharge Characteristics (by temperature) Discharge Characteristics (by rate of discharge) y r E Charge:CC-CV 0.7C (max) 4.20V, 55mA cut-off at 25°C Charge: CC-CV 0.7C (max) 4.20V, 55mA cut-off at 25°C 2 Discharge: CC 1C, 2.50V cut-off at each temperature Discharge: CC, 2.50V cut-off at 25°C 0 2 h r p C | R 1 3 1 I R V The data
in „LED Strahler mit Li-Ionen Akku“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
VIK_CSR_REV_C6--190520.pdf
Operating Max. Max. Resistance Range TCR Rating Operating Overload at 70 C Temp. Range Voltage Voltage ±0.1% ±0.25% ±0.5% ±1% ±5% (PPM/ C) Type 10Ω-20KΩ ±10 10Ω-300KΩ ±15 1/4W 10Ω-1MΩ 1Ω-4.7MΩ ±25 0204 -55 ~ +155C 200V 400V 10Ω-1MΩ 1Ω-1MΩ 0.2Ω-10MΩ ±50 - 0.1Ω-10MΩ ±100 Jumper:2A - 0Ω(<15mΩ) - 10Ω-20KΩ ±10 10Ω-300KΩ ±15 1/2W 10Ω-1MΩ 1Ω-4.7MΩ ±25 0207 -55 ~ +155C 300V 600V 10Ω-1MΩ 1Ω-1MΩ 0.2Ω-10MΩ ±50 - 0.1Ω-10MΩ ±100 Jumper:4A - 0Ω(<15mΩ) - High Power Rating Electrical Specifications Power Max. Max. Resistance Range
in „SMD Dioden Typ ermitteln“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SSD1307.pdf
Rev 1.2 P 7/55 Oct 2008 Solomon Systech 4 BLOCK DIAGRAM Figure 4-1 : SSD1307 Block Diagram RES# SEG 63 CS# t SEG 62 D/C# e e E (RD#) m r : R/W#(WR#) a ) e D SEG1 BS2 D M e S SEG0 BS1 e a R o BS0 Ua p D t Ce
in „STM32 F103 - I2C Probleme“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2233_1_.pdf
temperature T 125 °C j Collector emitter voltage V 55 V CEO Emitter collector valtage V 7 V ECO r Collector current C 50 mA t e Collector power dissipation e (1 circuit) P C 150 100 mW D Collector power dissipation derating (1 circuit Ta ≥ 25°C) ∆P C°C 1.5 1.0 mW /°C Junction temperature T 125 °C j Storage temperature range Tstg 55~125 °C Operating temperature range Topr 55~100 °C Lead soldering temperature Tsol 260 (10 s) °C Total package power dissipation
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Datei
PWM_STGL.html
-.05l-4.25-6.4-1.5 11.25m-21.15-3.95q-.3-.3-.55-.6l-.05-.05v-.05l-4.25-6.4-1.5 11.25h3.45q.75-.1 1.5-.35.85-.25 1.6-.75.75-.5 1.4-1.1.45-.35.75-.85.35-.5.65-1.05l-.45.55q-.5.15-1.1.1-.9 0-1.45-.7m59.15.3q-.75-.5-1.4-1-3.15-2.55-3.5-6.4l-1.5 11.25h21q-3.1-.25-5.7-.75-5.6-1.05-8.9-3.1m94.2 3.85h3.45q.6-.1 1.2-.3.4-.1.75-.2.35-.15.65-.3.7-.35 1.35-.8.75-.55 1.3-1.25.1-.15.25-.3-2.55-.25-3.25-1.8l-4.2-6.3-1.5 11.25m-45.3
in „Reparatur Schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Weidezaun_S03_4093.pdf
, DC5521 EVA lamination 12,79€3=100R+C2=4700uF 0,55-0,9_0,677J@10,8-13,8V 60Ah 720Wh (12V*0,12A=1,44W/2=0,72W=P-Rv1000h=42Tage) 100uA/1,6mA 90% 28V 4A 80mR 1,2MHz x R3=33R+C2=3x4700uF 1,6-2,7_2,0J@12V (12*0,363A=4,36W/4=1,09W-Rv) ZMM11 10,4-11,6V@5mA
in „Weidezaun gegen Schnecken mit Netztrafo und Rohr DN160 für Hobbygärtner“ · Projekte & Code ·
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PDF
atmel-flash-speicher.pdf
55 5555 80 5555 AA 2AAA 55 5555 10 Byte Program 4 5555 AA 2AAA 55 5555 A0 Addr DIN Boot Block 6 5555 AA 2AAA 55 5555 80 5555 AA 2AAA 55 5555 40 Lockout(1) Product ID 3 5555 AA 2AAA 55 5555 90 Entry Product
in „Speicher für Messwerte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XTR115_-_4-20mA_Stromquelle.pdf
TA = –40°C to +85°C ±20 ±35 ±75 ppm/°C vs Supply Voltage, V+ V+ = 7.5V to 36V ±1 ±10 ppm/V vs Load REF = 0mA to 2.5mA ±100 ppm/mA Noise: 0.1Hz to 10Hz 10 Vp-p Short-Circuit Current 16 mA V (2) REG Voltage 5 V Voltage Accuracy REG = 0 ±0.05 ±0.1 V vs Temperature TA = –40°C to +85°
in „Fehlersuche XTR116“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM317.pdf
, IN− VOUT = 5V, and OUT = 10 mA. 3 Parameter Conditions LM317A LM317 Units 1 A Min Typ Max Min Typ Max / M Reference Voltage 1.238 1.250 1.262 V 3V ≤ (VIN− V OUT) ≤ 40V, 1.225 1.250 1.270 1.20 1.25 1.30 V 1 7 10 mA ≤ IOUT ≤ IMAX,
in „LM317T nicht gleich LM317T?!?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ILD6150.pdf
VB 4.5 – V V recommended to S connect toV S Under Voltage Lock Out V 4.05 4.25 4.45 V IC deactivated1) S, UV, off VS, UV, on 4.15 4.35 4.50 V IC operative Supply current consumption open load IS, OL, 4.5V.55 2.1 2.65 mA VS = 4.5 V VS = VsenseILED = 0 mA IS, OL, 12V1.60 2.2 2.70 mA VS = 12 V I 1.60 2.24
in „Kondensatorgröße für 5V LED-Treiber“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX232.pdf
CURRENT MAX222/MAX242 A OUTPUT VOLTAGE vs. LOAD CURRENT vs. DATA RATE ON-TIME EXITING SHUTDOWN 10 1 F 0 11 0 +10V 0 M 8 A OUTPUT LOAD CURRENT A 1 F CAPS V+ A – EITHER V+ OR V- LOADED M 10 FLOWS FROM V+ TO V- M V+ M 6 ) +5V 0.1 F CAPS 0 ( 4 VCC = ±5V 0.1 F m 9 1 F CAPS ) +5V G NO LOAD ON T E SHDN 2
in „MAX232 Reichelt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
4N35-1.pdf
1 sec Duration) Total Device Power DissipationA@ T = 25⋅C P D 250 mW Derate above 25⋅C 2.94 mW/⋅C (2) Ambient Operating Temperature Range TA –55 to +100 ⋅C Storage Temperature Range) T –55 to +150 ⋅C stg
in „Vorwiderstand für eine Led eines Optokopplers“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TL061CP.pdf
See Figure 2 e ÁÁÁÁFigure 2 l a V = ±12 V o l CC± ÁÁÁÁ t V p ±10 t ±10 u p O u k O e ±7.5 a ±7.5 P e m P u m i ±5 m ±5 V CC± = ±5 V a x M a – M ÁÁ M ±2.5 ÁÁ – ±2.5 V M ÁÁ ÁÁ V 0 ÁÁ 0 100 200 400 700 1 k 2 k 4 k 7 k 10 k 1 k 10 k 100 k 1 M 10 M f – Frequency – Hz RL– Load Resistance – Ω Figure 6 Figure
in „Messspannung von Shunt verstärken, kfz“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PCF1252_X_FAM_3.pdf
generator PCF1252-X family PACKAGE OUTLINES DIP8: plastic dual in-line package; 8 leads (300 mil) SOT97-1 D M E n l p i a A s 2 A A 1 L c Z w M b 1 e (1 ) MH b b 8 5 2 pin 1 index E 1 4 0 5 10 mm scale DIMENSIONS (inch dimensions are derived from the original mm dimensions) UNIT A A1 A2 b b b c D (1) E(1) e e L M M w Z (1) max. min. max. 1 2 1 E H max. mm 4.2 0.51 3.2 1.73 0.53 1.07 0.36 9.8 6.48 2.54 7.62 3.60 8.25 10.0 0.254 1.15 1.14 0.38 0.89 0.23 9.2 6.20 3.05 7.80 8.3 inches 0.17 0.020 0.13 0.068 0.021
in „Tipsend2 Pollin“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SensorMeasurements.txt
45° 145mV 50° 100mV 55° 73mV 60° 55mV 65° 49mV 70° 45mV 75° 47mV 80° 47mV 85° 42mV 90° 43mV ------------------------------------------------------- Attenuation over distance Frequency: 40.4kHz Input Amplitude
in „Ultraschallsensoren des HC-SR04 Moduls“ · Projekte & Code ·
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PDF
CY7C408A.pdf
Short Circuit Current V CC = Max., OUT = GND −90 mA I Quiescent Power Supply Current V = Max., I = 0 mA Commercial 100 mA CCQ V CC< V , V > V IN IL IN IH Military 125 CC Power Supply Current ICC = CCQ + 1 mA/MHz × (fSI + SO)/2 Capacitance [5] Parameter
in „Suche RAM Baustein mit gemeinsamer Daten/Adressleitung und autom. internem Adresshochzähler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
finder-relais-serie-86.pdf
Fassungskombination zu entnehmen. Anzahl der Kontakte Relais-Typ Fassung Zeitmodul Kombinationsmöglichkeit 1 40.31 95.03 86.30 1 40.61 95.05 86.30 1 46.61 97.01/97.51 86.30 2 40.52/44.52/44.62 95.05/95.55 86.30 2 46.52 97.02/97.52 86.30 2 55.32 94.02 86.30 2 56.32 96.02 86.30 2 60.12 90.02 86.00/86.30 2 62.32
in „Ein- und Ausschaltwischer funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX312-MAX314.pdf
CURRENT 3 TEMPERATURE vs. TEMPERATURE vs. TEMPERATURE 24 4 5 100 0 1 V+ = 12V, 3 100 V+ = 15V, T V+ = 15V, T 4 22 V- = 0V M V- = -15V, X V- = -15V, X 10 M 10 V = ±10V M 20 VNC OR VNO = ±10V COM 18 A VCOM = ±10V A 1 A 1 ) 16 B ( ( ( 14 G G N C K 0.1 K 0.1 R 12 D L L E
in „Frage zum Datenblatt max313 analogschalter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
frequenzabhaengigkeit.pdf
1.75 2.57 25 x 25 1200 SLPX122M180E5P3 0.166 0.125 3.55 5.22 30 x 35 470 SLPX471M220A5P3 0.423 0.317 2.06 3.03 22 x 35 1200 SLPX122M180H3P3 0.166 0.125 3.49 5.13 35 x 30 470 SLPX471M220C3P3 0.423 0.317
in „Frequenzabhängigkeit Kapazität Elko“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
cd4017b-mil.pdf
-55 to 125 CD4017B Samples CD4017BPW ACTIVE TSSOP PW 16 90 RoHS & Green NIPDAU Level-1-260C-UNLIM -55 to 125 CM017B Samples CD4017BPWR ACTIVE TSSOP PW 16 2000 RoHS & Green NIPDAU Level-1-260C-UNLIM -55 to
in „SPS erweitern für 32 Temperatureingänge“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
00333_SECURY_Mehrfachverriegelungen_03-09_DT.pdf
G.U-SECURY R (Rollzapfen) Seite 16 - 17 Motorisch verriegelnde Sicherheits-Türverschlüsse G.U-SECURY MR 2 M Seite 18 Einsteckschlösser G.U-ECONOMY Seite 19 Drückerbetätigte Sicherheits-Türverschlüsse G.U-SECURY-EUROPA Seite 20 - 21 Programmübersicht Zubehör für 1- und 2-flügelige Türen aus Holz, Kunststoff
in „RFID Türöffner“ · Projekte & Code ·
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PDF
162399-da-01-en-IRF_4905.pdf
Junction and -55 to + 175 TSTG Storage Temperature Range °C Soldering Temperature, for 10 seconds 300 (1.6mm from case ) Mounting torque, 6-32 or M3 screw 10 lbf•in (1.1N•m) Thermal Resistance Parameter Typ. Max. Units
in „High Side Switch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRF4905_TO220.pdf
Junction and -55 to + 175 TSTG Storage Temperature Range °C Soldering Temperature, for 10 seconds 300 (1.6mm from case ) Mounting torque, 6-32 or M3 screw 10 lbf•in (1.1N•m) Thermal Resistance Parameter Typ. Max. Units
in „FET Frage (n oder p)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BSS138.pdf
Drain-Source Breakdown Voltage 50 - - V VGS =0V, D=250µA V GS(th) Gate-Source Threshold Voltage 0.5 - 1.5 V V DS=VGS ,D=1mA GSS Gate-Source Leakage Current - - ± 0.1 μA VDS=0V, VGS=±20V - - 0.1 μA V DS=25V, VGS=0V DSS Zero Gate Voltage Drain Current - - 0.5 μA V DS=50V, VGS=0V - 5.6 10 Ω V GS=2.75V, D<200mA, R DS(ON) Drain-Source On-Resistance TA=-40 to +85 ° C - - 3.5 Ω VGS =5.0V,D=200mA VDS =25V, D=200mA, gFS Forward Transconductance 100 - - mS f=1.0KHz Dynamic Characteristics (T Ambient25ºC unless noted
in „Versorgungsspannung uC und Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
006ANE.pdf
, CF5006ANE 45 – 55 CL = 30pF f = 100MHz, C = 15pF SM5006ANES 45 – 55 L Measurement cct 3, f = 107MHz, CF5006ANF *1 load cct 1, C = 30pF CF5006BNE 45 – 55 Output duty cycle Duty Ta = 25°C, L % V = 5.0V f = 107MHz, SM5006ANFS
in „Wie Quarz auf die 5.te Oberwelle zwingen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HD44100_Spaltentreiber.pdf
Y12 19 62 Y69 Y11 20 61 Y70 Y10 21 60 Y71 Y9 22 59 Y72 Y8 23 58 Y73 Y7 24 57 Y74 Y6 25 56 Y75 Y5 26 55 Y76 Y4 27 54 Y77 Y3 28 53 Y78 Y2 29 52 Y79 Y1 Y80 30 51 3 3 3 3 3 3 3 3 3 4 4 4 4 4 4 4 4 4 4 5 E 1 2 3 4 D 1 C L 2 I C C C C C C C VE V V V V N L N H L D D N M N VC N N N N G C S C (Top view) 2 3 3
in „HD44780 und HD44100 Schaltung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
spminterface.h
[eind] "I" (_SFR_IO_ADDR(EIND)), \ [spmcrval] "r" (spmcrval), \ [data] "r" (dataword), \ [spmret] "M" ((1<<RWWSRE) | (1<<SPMEN)), \ [magicD] "M" (((MV)>>24)&0xff), \ [magicC] "M" (((MV)>>16)&0xff), \ [magicB] "M" (((MV)>> 8)&0xff), \ [magicA] "M" (((MV)>> 0)&0xff) \ : "r0","r1","r11","r12","r13","r18
in „[ATMega] Programm aus externem EEprom laden“ · Mikrocontroller und Digitale Elektronik ·
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MWE_RSD-30-SERIE_DB-EN.pdf
RSD-30L-5 RSD-30L-12 RSD-30L-24 DCVOLTAGE 3.3V 5V 12V 24V 3.3V 5V 12V 24V RATEDCURRENT 6A 6A 2.5A 1.25A 6A 6A 2.5A 1.25A CURRENTRANGE 0~6A 0~6A 0~2.5A 0~1.25A 0~6A 0~6A 0~2.5A 0~1.25A RATEDPOWER 19.8W 30W 30W 30W 19.8W 30W 30W 30W RIPPLE&NOISE(max.) Note.270mVp-p 70mVp-p 60mVp-p 50mVp-p 70mVp-p 70mVp-p
in „Kindereisenbahn hohe Stromspitzen begrenzen“ · Fahrzeugelektronik ·
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Schematic_Prints.pdf
= 6A UGSth = -2.0 ... -4.5V 27k Urmax = 1000V T_op = -55°C < Tj < 150°C R8 L1 Urrm = 400V 0R D3 Io = 1A 20uH / 3A SBR1U400P1 Ifsm = 40A Umax = 230 VAC* 1.25 *1.35 = 388 VDC R9 trr = 85ns Pmax = 388 VDC^2 / (6 * 6 * 27kOhm) = 27k T_op = -65°C < Tj < 150°C 155mW
in „PWM HVDC Motor Ansteuerung“ · Analoge Elektronik und Schaltungstechnik ·
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Normal_Hochfest_und__UHPC.pdf
Lit 50] 29 2 5 Spannungen im Beton / hochfesten Beton 31 5.1 Temperaturspannungen 31 5.1.1 Junger Beton und Nullspannungstemperaturgradient 31 5.1.2 Nullspannungstemperaturgradient [Lit 24, Lit 55, Lit 58] 32 5.2 Eigenspannungen im Beton [Lit 11, Lit 59, Lit 60
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AV02-0923EN-DS-ATF-55143-08Jun20120.pdf
Mag. Ang. dB B 0.5 0.21 0.65 17.5 0.13 24.84 2 25 MSG 2 20 0.9 0.26 0.60 22.6 0.12 22.86 | 1.0 0.27 0.55 27.0 0.12 22.39 a 15 MAG G 10 1.9 0.42 0.55 49.4 0.11 18.77 M |21|2 2.0 0.43 0.54 51.7 0.11 18.42 S 5 2.4 0.50 0.45 61.5 0.10 17.14 M 0 3.0 0.59 0.40 78.1 0.09 15.50 -5 3.9 0.73 0.26 111.9
in „LNA Entwicklung von 10 MHZ bis 6 GHZ“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
TerminalLog.txt
$GPGGA,111819.134,,,,,0,00,,,M,0.0,M,,0000*51 $GPGSA,A,1,,,,,,,,,,,,,,,*1E $GPGSV,3,1,11,08,48,057,29,27,22,065,,07,12,064,,2,659,305,*78 $GPGSV,3,2,11,28,55,129,,10,49,201,,15,44,298,,24,13,270,*71 $GPGSV,3,3,1,211,09,312,,19,06,033,,18,01,326,*42 $GPRMC,111819.134,V,,,,,,,150708,,,N*41 $PBB50,0,0.1,0.0,0,0,1.00,0,00*4B $GPGGA,111820.134,,,,,0,00,,,M,0.0,M,,0000*5B $GPGSA,A,1,,,,,,,,,,,,,,,*1E $GPGSV,3,1,11,08,48,057,29,27,22,065,,07,12,064,,6,59,2305,*78 $GPGSV,3,2,11,28,55,129,,10,49,201,,15,44,298
in „GPS Daten empfangen und wieder senden“ · Mikrocontroller und Digitale Elektronik ·
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MGA-62563__AV02-1237EN_.pdf
2.32 0.65 -52.5 1.13 4.09 9.5 2.2 0.75 -43.5 1.41 4.55 10 2.39 0.74 -38.6 1.71 4.94 13 MGA-62563TypicalScatteringParameters,T =25°C,Z =50Ω,VC=5V,I =40mAO d ds Freq. S11 S21 S12 S22 K-factor GHz Mag. Ang. dB Mag. Ang.