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Datei
lcdconpar.asm
XAdresseLow, 2 lpm temp, Z+ rcall WriteByte subi ZeileL, 7 cpi XAdresseLow, 160 ;Spalten Adresse > Max ? brne normal2 clr XAdresseLow ;Spalten Adresse = 0 subi ZeileL, -8 ;Zeilen Adresse ++ cpi ZeileL, 240+ZStart ;Zeilen Adresse > Max ? brlo normal2 ldi ZeileL, ZStart ;Zeile = Beginn XRAM ldi temp, (
in „LCD Controller für 640x480 LCD mit mega8515“ · Projekte & Code ·
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PDF
2222_2222A.pdf
ZN2222, 2N2905, 2:-<2907 50 (IC = 10 mAde, VCE = 10 Vde) 2NZ2IS, 2N2221, 2N2904, 2N2906 35 2N2219, 2N222Z, 2N2905, 2N2907 75 (Ic "" 150 mAde, VCE " 10 Vdc)· 2N221S, 2N222l, 2N2904, 2N2906 40 2NZ219, 2N2222, 2N2905, 2N2907 100 300 (Ic = 500 mAde, VCE =10 Vde)* 2NZ2IS, 2N2221, 2N2904, 2N2906 20 2N2219, 2N2222
in „Alternative/Vergleichstyp zu 2N5109“ · HF, Funk und Felder ·
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PDF
CT220-Data-Sheet-Rev0.6.pdf
°C. Typical values are V = 5.0 V DD BYP A DD and T A= +25°C. Symbol Parameter Conditions Min. Typ. Max. Unit IDD(AVG) Average Supply Current t ≥ 10 s 1.2 2.5 mA f Sampling Frequency 150 200 250 kHz S IDLE Idle Mode Time S = 200 kHz 4.0 5.0 6.7 µs Analog Output (ANA) ∆VOUT ≤ 150 mV, DRV(MAX) Maximum Drive
in „Stromsensor CT220: Welche Stromstärken messen die verschiedenen Varianten?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
PWM_Pulsen_Frequenzhochlauf_Verfahren_2.c
, 232,231,229,228,227,226,224,223,222,220,219,217,216,214,213,211,209,208,206,204,202,201,199,197,195,193,191,189,187,185, 183,181,179,177,174,172,170,168,166,163,161,159,156,154,151,149,147,144,142,139,137,134,131,129,126,124,121,118,116,113
in „4QS - PWM Ansteuerung mit 2 Timer“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PowerSDR_database_export_18.09.2010_18.27.xml
> <BandText> <Low>222.05</Low> <High>222.059999</High> <Name>1.25M Propagation Beacons</Name> <TX>true</TX> </BandText> <BandText> <Low>222.06</Low> <High>222.099999</High> <Name>1.25M Weak Signal</Name> <TX>true</TX> </BandText> <BandText> <Low>222.1</Low> <High>222.1</High> <Name>1.25M SSB/CW Calling</Name> <TX>true</TX> </BandText> <BandText> <Low>222.100001</Low> <High>222.149999</High> <Name>1.25M Weak Signal CW/SSB</Name> <TX>true</TX> </
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PDF
M12021PB_SM_PANASONIC_EN.pdf
1nput Impedance 300 ohms min. 40pF max. 300 ohms min. 40pF max. 300 ohms min. 40pF max. Vertical Input Sync Signal: Active Polarity Positive Positive Positive Pulse Rate 60.0Hz 60.0Hz 60.0Hz Amplitude Low;0+ Q.4V· Low;0+0.4V Low;0+0.4V -
in „CRT Monitor gegen VGA Monitor tauschen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
M12021PB_SM_PANASONIC_EN.pdf
1nput Impedance 300 ohms min. 40pF max. 300 ohms min. 40pF max. 300 ohms min. 40pF max. Vertical Input Sync Signal: Active Polarity Positive Positive Positive Pulse Rate 60.0Hz 60.0Hz 60.0Hz Amplitude Low;0+ Q.4V· Low;0+0.4V Low;0+0.4V -
in „Heidenhain Monitor BE 212 für TNC 351“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
PWM_Pulsen_Frequenzhochlauf_Verfahren_1b.c
, 232,231,229,228,227,226,224,223,222,220,219,217,216,214,213,211,209,208,206,204,202,201,199,197,195,193,191,189,187,185, 183,181,179,177,174,172,170,168,166,163,161,159,156,154,151,149,147,144,142,139,137,134,131,129,126,124,121,118,116,113
in „Atmega 328P synchrone Timer, Totzeit Vollbrücke“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Arcam-FMJ-P7.pdf
1% 2K2 R123 1H222 Resistor Metal Film 0.25W 1% 2K2 R124 1H222 Resistor Metal Film 0.25W 1% 2K2 R125 1H222 Resistor Metal Film 0.25W 1% 2K2 R126 1H222 Resistor Metal Film 0.25W 1% 2K2 R127 1H222 Resistor Metal Film 0.25W 1% 2K2 R128 1H222 Resistor Metal Film 0.25W 1% 2K2 R129 1H222 Resistor Metal Film 0.25W 1% 2K2 R130 1H222 Resistor Metal Film 0.25W 1% 2K2 R131 1H247 Resistor Metal Film 0.25W 1% 4K7 R132 1H247 Resistor Metal Film 0.25W
in „Bandbreite von analogen Audioschaltungen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Arcam-FMJ-P7.pdf
1% 2K2 R123 1H222 Resistor Metal Film 0.25W 1% 2K2 R124 1H222 Resistor Metal Film 0.25W 1% 2K2 R125 1H222 Resistor Metal Film 0.25W 1% 2K2 R126 1H222 Resistor Metal Film 0.25W 1% 2K2 R127 1H222 Resistor Metal Film 0.25W 1% 2K2 R128 1H222 Resistor Metal Film 0.25W 1% 2K2 R129 1H222 Resistor Metal Film 0.25W 1% 2K2 R130 1H222 Resistor Metal Film 0.25W 1% 2K2 R131 1H247 Resistor Metal Film 0.25W 1% 4K7 R132 1H247 Resistor Metal Film 0.25W
in „Bester Audio OPV“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CEPT-Laenderliste_2014.pdf
CW); 10 MHz: max. Bandbreite 1 kHz; 28 max. Bandbreite 2,7 kHz) MHz: max. Bandbreite 20 kHz; 50, 144 MHz: max. Bandbreite 30 kHz; 220 MHz: dem Heimatrufzeichen vorangestellter Landeskenner: LY/; Rufzeichenzusätze: max
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PDF
HV9901.pdf
HV9901 Electrical Characteristics (T = 25°C, unless otherwise specified) A Symbol Parameters Min Typ Max Unit Conditions Oscillator 20 25 35 kHz R T= 1.00MΩ OSC PWM Oscillator Frequency 80 100 140 kHz R = 226KΩ T Temperature Coefficient 170 ppm/°C T = -40°C to +85°C A SYNC Oscillator Sync Frequency 150
in „Cree LED an 230V“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LQH66SN472M03L_Murata_unpw.pdf
such a way that the temperature difference between solder and product surface is limited to 150°C max. Cooling into solvent after soldering also should be in such a way that the temperature difference is limited to 100°C max. Insufficient pre-heating may cause cracks on the product, resulting in the
in „Pollin SMD-Induktivitäten identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
linearization.m
nach der Best-fitting Methode" maxAbsLinError = max(abs(bestFitErr)); % Relativer Fehler, bezogen auf den Gesamten Messbereich. maxRelLinError = maxAbsLinError/fullScale; %% Umkehrfunktion fit % y = f(x) -> ideale nichtlineare Sensor-Kennlinie
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PDF
BB130-Philips.pdf
134). DESCRIPTION SYMBOL PARAMETER MIN. MAX. UNIT The BB130 is a variable capacitance diode, fabricated in planar VR continuous reverse voltage − 30 V technology, and encapsulated in theI 50 mA F continuous forward current − SOD69(TO-92variant
in „SMD-Kapazitätsdioden“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SDF_JUNE_2016.pdf
DIRECTIVE 2011/65/EU (RoHS II) Part No. UL/cUL VDE CCC PSE T (ºC) T (ºC) Rated Voltage F H & Current Max. DF66S EK 250V/15A O O O O 66 42 125V/15A DF72S O O O O 72 50 UL/cUL 250V/10A DF77S O O O O 77 55 DF84S O O O O 84 60 250V/16A VDE 250V/15A DF91S O O O O 91 67 125V/15A DF98S O O O O 98 76 PSE DF100S
in „Sicherungselement defekt?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
152822-da-01-en-DC_DC_Wandler_RI_1205.pdf
Accuracy ±5% Line Voltage Regulation 1,2%/1% V Input Load Voltage Regulation 3.3V output type 20% max. (10% to 100% full load) 5V output type 15% max. 7V, 9V, 12V, 15V, 24V output types 10% max. 100 ) Efficiency at Full Load 70% min. r o Safe Operating Area Isolation Voltage 1.000VDC min. t Isolation Resistance (Viso = 500VDC) 10 GΩ min. t 20 O 0 Isolation Capacitance 30pF min./85pF max. -40 0 50 100 125 85 Short Circuit Protection 1 Second Operating Temperature ˚C Switching Frequency at Full Load 35kHz min. / 85kHz max. Operating Temperature –40°C to +85°C (see Graph) Storage Temperature
in „DC/DC Wandler 12V auf 5V wird heiß“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c
171,171,172,172,173,173,174,175,175,176,176,177,178,178,179,179,180,181,181,182,182,183,183,184,185,185,186,186,187,188,188,189,189,190,191,191,192,192,193,194,194,195,195,196,196,197,198,198,199,199,200,201,201,202,202,203,204,204,205,205,206,207,207,208,208,209,210,210,211,211,212,213,213,214,214,215,216,216,217,217,218,219,219,220,220,221,222,222,223,223,224,225,225,226,227,227,228,228,229,230,230,231,231,232,233,233,234,234,235,236,236,237,237,238,239,239,240,241,241,242,242,243,244,244,245,246,246,247,247,248,249,249,250,250,251,252,252,253,254,254,255,255,256,257,257,258,259,259,260,260,261,262,262,263,264,264,265,266,266,267,267,268,269,269,270,271,271,272,273,273,274,274,275,276,276,277,278,278,279,280,280,281,282,282,283,283,284,285,285,286,287,287,288,289,289,290,291,291,292,293,293,294,295,295,296,297,297,298,299,299,300,301,301,302,303,303,304,305,305,306,307,307,308,309,309,310,311,311,312,313,313,314,315,315,316,317,318,318,319,320,320,321,322,322,323,324,324,325
in „HSV RGB Led Dimmer, C Code & Video & Doku“ · Projekte & Code ·
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PDF
CAF2.pdf
parentheses. applied load by supporting them at the capacitor body. PACKAGING Soldering conditions: max. 265 °C, max. 10 s. Fordetailsrefertothishandbook,Chapter ÒMiniatureceramicplatecapacitors,Ó Section ÒGeneral data.Ó The capacitors are suitable for mounting on printed-circuit boards (hand-mounting
in „puff Peng und Magic smoke, Labornetzteil.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
4600x.pdf
..............10 ohms to 10 megohms A (.200) Maximum Operating Voltage..........100 V 3.50 MAXIMUM MAX. Temperature Coefficient of Resistance 50 Ω to 2.2 megohms......±100 ppm/°C 3.00 PIN #1 below 50 Ω.....................±250 ppm/°C REF. above 2.2 megohms.......±250 ppm/°C S.50 MAX. 1.24 TCR Tracking
in „Bauteil Kondensatornetzwerk Bezeichnung "4X"?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
4a-esp8266_at_instruction_set_en.pdf
user-defined DNS servers, but the <DNS server> parameters are not set), servers "208.67.222.222" will be used as DNS server by default. • <DNS server0> and <DNS server1> cannot be set to the same server. Espressif 57/62 2019.02 5. TCP/IP-Related AT Commands 5.2.31. AT+CIPDNS_DEF—Sets User-defined
in „Eigenartiges Verhalten von Li-Batterien“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
4a-esp8266_at_instruction_set_en.pdf
user-defined DNS servers, but the <DNS server> parameters are not set), servers "208.67.222.222" will be used as DNS server by default. • <DNS server0> and <DNS server1> cannot be set to the same server. Espressif 57/62 2019.02 5. TCP/IP-Related AT Commands 5.2.31. AT+CIPDNS_DEF—Sets User-defined
in „ESP8266 USB Adapter an zwei Pc benutzen.“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Tabelle mit thermischem Widerstand verschiedener Gehäusearten
resistance Package type Thermal resistance One square inch Modified minimum Minimum All Typ Rth(JA) Max Rth(JA) Typ Rth(JA) Max Rth(JA) Typ Rth(JA) Max Rth(JA) Typ Rth(JL) D-Pak 20.2 26.3 42.0 54.6 59.5 77.3 2.0 D2-Pak 18.0 23.3 33.6 43.7 36.7 47.7 1.6 SO-8 33.5 50.0 66.3 86.2 70.6 91.8 10.6 SO-8 (dual
in „Datenblatt Transistor SOT23, Frage zur Kühlfläche“ · Analoge Elektronik und Schaltungstechnik · · Screenshots
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PDF
Nichicon_CG.pdf
minutes' application of rated voltage at 20°C TemperatureCharacteristics Z+105°C / Z+20°C 1.25 (100kHz) (Max.ImpedanceRatio) Z –55°C / Z+20°C 1.25 The specifications listed at right shall be met when the Capacitance change Within ± 20% of the initial capacitance va3)e ( tan δ 150% or less than the initial
in „Was ist das für ein Kondensator ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datenblatt_0000012_1.pdf
Rayson Bluetooth Module Class1 BC04-ext Module BTM-222 Features Outline ■ Bluetooth Ver. 2.0+EDR certification ■ Transmit Power up to +18dBm(class1) ■ Low current consumption: Hold, Sniff, Park, Deep sleep mode ■ 3.0V to 3.6V operation ■ Full Bluetooth
in „BTM222 USB-Anschlüsse“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BTM222_DataSheet.pdf
Rayson Bluetooth Module Class1 BC04-ext Module BTM-222 Features Outline ■ Bluetooth Ver. 2.0+EDR certification ■ Transmit Power up to +18dBm(class1) ■ Low current consumption: Hold, Sniff, Park, Deep sleep mode ■ 3.0V to 3.6V operation ■ Full Bluetooth
in „AVR & Bluetooth Wie schwer Wie teuer?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
btm222_datasheet.pdf
Rayson Bluetooth Module Class1 BC04-ext Module BTM-222 Features Outline ■ Bluetooth Ver. 2.0+EDR certification ■ Transmit Power up to +18dBm(class1) ■ Low current consumption: Hold, Sniff, Park, Deep sleep mode ■ 3.0V to 3.6V operation ■ Full Bluetooth
in „Bluetoothmodul BTM-222“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BTM-222.pdf
Rayson Bluetooth Module Class1 BC04-ext Module BTM-222 Features Outline ■ Bluetooth Ver. 2.0+EDR certification ■ Transmit Power up to +18dBm(class1) ■ Low current consumption: Hold, Sniff, Park, Deep sleep mode ■ 3.0V to 3.6V operation ■ Full Bluetooth
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PDF
nkat20-21.pdf
ohne Umhüllung geringe Abmessungen 3.5 x 2.5 x 2.0 mm speziell für DC-DC Wandler Induktivität R I max. f res mA MHz Best.Nr. St. ab 10 ab 100 ab 500 1.0 µH 0.09 800 96 7626/102 -.480 -.282 -.188 -.145 2.2 µH 0.13 600 64 7626/222 -.480 -.282 -.188 -.145 4.7 µH 0.20 450 43 7626/472 -.480 -.282 -.188
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PDF
RAC01-05SC.pdf
20A max. Leakage Current 1.5mA max. Description Output Voltage Tolerance (combined Tolerance, Line Reg and Load Reg at full l±5% max. The RAC01-SC and RAC02-C series are Line Voltage Regulation low line, high line at full load ±2% max. ultra-compact universal inputAC/DC Load Voltage Regulation 10% to 100% full load ±6% max. power modules for PCB mounting.They Output Ripple (20MHz BW limited) 3.3V Output <150mVrms feature high efficiency
in „Schutzklasse 2 -> AC/DC Wandler -> Eigenentwicklung -> Zulässig?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
test7.c
211, 212, 212, 213, 213, 214, 214, 215, 215, 216, 216, 217, 217, 218, 218, 219, 219, 220, 220, 221, 222, 222, 223, 223, 224, 224, 225, 225, 226, 226, 227, 227, 228, 228, 229, 229, 230, 230, 231, 231, 232, 232, 233, 233, 234, 234, 235, 235, 236, 237, 237, 238, 238, 239, 239, 240, 240, 241, 241, 242, 242
in „Frage zu Interrupt“ · 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
BAUD.ass
bhs VEZ1 rts *************************** PROGRAMMTEIL LUEK ****************************** LUEK ldaa #222 deca+cmpa+nop+bhi = 9 zyklen * 500ns = 4.5 mikrosek VEZ2 deca 4.5 mikrosek * 222 = 999 mikrosek cmpa #0 999 mikrosek + 1 mikrosek (ldaa) = 1 millisek nop bhi VEZ2 dec LUECKE\ hilsvariable zeit zwischen
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Datei
test7.c
211, 212, 212, 213, 213, 214, 214, 215, 215, 216, 216, 217, 217, 218, 218, 219, 219, 220, 220, 221, 222, 222, 223, 223, 224, 224, 225, 225, 226, 226, 227, 227, 228, 228, 229, 229, 230, 230, 231, 231, 232, 232, 233, 233, 234, 234, 235, 235, 236, 237, 237, 238, 238, 239, 239, 240, 240, 241, 241, 242, 242
in „Frage zu Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
spingrd.pdf
Leaded MLC (.0175 .00)5 Temperature Coefficients: C0G (NP0), X7R, X5R, Z5U 10, 50, 100, 200 Volts 2.Max.")90 Case Material: Epoxy (Flame Retardant to UL Bulletin 492, Par. 280) Lead Material: Solderable 3.00 (.118 Max. 25.4 (")00 Min. HOW TO ORDER SA10 5 E 104 Z A R Conformal Voltage Dielectric Capacitance
in „Vielschichtkondensator identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
apem_08162017_16300-1158414.pdf
Storage temperature Min. -65⁰C Max. +160⁰C Soldering IEC 68-2-20 Wave – max 260⁰C for max. 10 sec., please refer to usage guidelines Soldering iron – max. 350⁰C for max. 3 sec. Flux tight. Environmental Endurance IEC 68-2-3 Temperature
in „Suche Einbautaster mit 2 Leuchtanzeigen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Display_SC1602D.pdf
www.microelect.com • DIAGRAM SC1602D • ENVIRONMENTAL CONDITIONS Item Operating Non-Operating Remarks Min Max Min Max Ambient 0°C 50°C -20°C 70°C Normal Temperature Temperature Type (Ta) Extended -20°C 70°C -30°C 80°C Temperatur2 Type Vibration -- 0.5G -- 2G G=9.8 m/s Shock -- 3G -- 50G XYZ Directions Corrosion
in „hd44780 / LCD SC1602D / ATmega16 (STK500)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RECOM_RAC01_12SC_NETZTEILMODUL.pdf
2 Input Voltage Range (with derating) 80-264VAC or 115-370VDC - RAC01-C 0 Rated Power 1 or 2 Watts max. C Input Frequency Range (for AC Input) 47-63Hz A Input Current (full load) RAC01 (115/230VAC) 34mA/23mA max. RAC02-C R RAC02 (115/230VAC) 55mA/36mA max. No Load Power Consumption @115VAC 30mW typ. @230VAC 80mW typ. Inrush Current (<0.5ms) 30/60A max. Leakage Current 0.25mA max. DeratingGraph Output Voltage Tolerance (combined Tolerance, Line Reg and Load Reg at full±5% max. Line Voltage Regulation low line, high line at full load ±2% max. (AmbientTemperature
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PDF
Cosel_LEB100F-512.pdf
80max 200max 80max 200max -10-C *4 140max 160max 140max 160max 140max 160max 140max 240max 140max 240max 0to+5C*4 120max 150max 120max 150max 120max 150max 120max 300max 120max 300max OUTPUT RIPPLE NOISE[
in „Schaltnetzteil Cosel LEB100F-512 Fehlersuche“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
lcdcon_ft245.asm
zweite Hälfte der Daten behalten or temp2, temp st X+,temp2 cpi XAdresseLow, XMax ;Spalten Adresse > Max ? brlo normal clr XAdresseLow ;Spalten Adresse = 0 inc ZeileL cpi ZeileL, YMax ;Zeilen Adresse > Max ? brlo normal ldi ZeileL, YMin ;Zeile = Beginn XRAM cbr Flags, (1<<ZeileH) ;MSB Spalten Adresse =
in „LCD Controller für 640x480 LCD mit mega8515“ · Projekte & Code ·
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Datei
lcdcon_ft245.asm
zweite Hälfte der Daten behalten or temp2, temp st X+,temp2 cpi XAdresseLow, XMax ;Spalten Adresse > Max ? brlo normal clr XAdresseLow ;Spalten Adresse = 0 inc ZeileL cpi ZeileL, YMax ;Zeilen Adresse > Max ? brlo normal ldi ZeileL, YMin ;Zeile = Beginn XRAM cbr Flags, (1<<ZeileH) ;MSB Spalten Adresse =
in „LCD Controller für 640x480 LCD mit mega8515“ · Projekte & Code ·
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Datei
lcdcon_ft245_4bit.asm
Displayhälfte ? rjmp untereHalfte obereHalfte: st X+,temp cpi XAdresseLow, XMax ;Spalten Adresse > Max ? brlo normal clr XAdresseLow ;Spalten Adresse = 0 inc ZeileL ;Zeilen Adresse ++ cpi ZeileL, YMax ;Zeilen Adresse > Max ? brlo normal ldi ZeileL, YMin ;Zeile = Beginn XRAM sbr Flags, (1<<ZeileH) ;MSB
in „LCD Controller für 640x480 LCD mit mega8515“ · Projekte & Code ·
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Datei
lcdcon_ft245_4bit.asm
Displayhälfte ? rjmp untereHalfte obereHalfte: st X+,temp cpi XAdresseLow, XMax ;Spalten Adresse > Max ? brlo normal clr XAdresseLow ;Spalten Adresse = 0 inc ZeileL ;Zeilen Adresse ++ cpi ZeileL, YMax ;Zeilen Adresse > Max ? brlo normal ldi ZeileL, YMin ;Zeile = Beginn XRAM sbr Flags, (1<<ZeileH) ;MSB
in „LCD Controller für 640x480 LCD mit mega8515“ · Projekte & Code ·
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PDF
BU208D.pdf
Switching TestCircuit. 4/8 BU208D / BU508D / BU508DFI TO-3 MECHANICAL DATA mm inch DIM. MIN. TYP. MAX. MIN. TYP. MAX. A 11.00 13.10 0.433 0.516 B 0.97 1.15 0.038 0.045 C 1.50 1.65 0.059 0.065 D 8.32 8.92 0.327 0.351 E 19.00 20.00 0.748 0.787 G 10.70 11.10 0.421 0.437 N 16.50 17.20 0.649 0.677 P 25.00
in „Qualität heutiger Transistoren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
180pF-.39uF_Rev_Oct_2008.pdf
www.semtech.com 180pF THRU .39µF POWER DISCRETES Outline Drawing - Encapsulated Dimensions Size L(Max) S T(Max) H(Ref) (1) Code In. (mm) In.(mm) In.(mm) In.(mm) 2 .400 .300 ± .032 .275 .475 (10.2) (7.62 ± .82) (7.00) (12.1) 3 .500 .400 ± .032 .300 .575 (12.7) (10.2 ± .82) (7.62) (14.6) 4 .600 .500 ±
in „Möglichst Identischer Ersatz gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
elektronische_Bauelemente.pdf
converter LMC7660IM 63 Latch MM74HC573WM 40 C-MOS HY62256A 12 C-MOS MM74HC4060M 20 RS232-Interface MAX222EWN 38 Leitungstreiber 74HC541D 6 Charge-Transfer-Capacitance SensQT9701B2-ES 15 Leistungsverteilungsschalter L9338MD 31 Logic-IC HCT245 119 8-bit Schieberegister 74HCT594 30 Leitungstranceiver MAX232ACWE
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PDF
TPG051_Spec_1_3.pdf
TPG051 Ver 1.3 <DC Electrical Characteristics> For the digital circuit Parameter Symbol Min. Typ. Max. Unit Conditions Supply Voltage V CC 2.7 3.0 3.6 V Digital power Low Level Input Voltage Vil GND - 0.3xVCC V Digital input pins High Level Input Voltage Vih 0.7xVCC - VCC V Digital input pins Input
in „LCD von TerAsic mit Cyclone II von Altera“ · FPGA, VHDL & Co. ·
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PDF
TimerPumpe_S01_CMOS4060.pdf
220uF 63V LowESR 2,95€ 30pcs SV3.5-4 2,5-4mm2 37A iDia4,3mm 24,8x8mm 1,26 Euro Step-Up Boost 10-32Vin max.10Ain 12-35Vo 6Aout 100W max.150W+Fan 65x56,5x23mm, UC3843A SO8, 78L09 SOT89 max30V 2x 1000uF 25mA 049-01 2,87€ , Oese1-2_12V +13,8VM1 Pressure Water Pump FL-40 12V 9,2A 110W 17L/Min 1020l/h ThermalProtection
in „Laufzeitbegrenzung für 12V Pumpe mit Akku, Solarmodul, Step-Up, Zeitschaltuhrbetrieb LED-Anzeige MPP“ · Projekte & Code ·
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PDF
BFR93.pdf
Characteristics Tamb = 25 °C, unless otherwise specified Parameter Test condition Symbol Min Typ. Max Unit Collector-emitter cut-off currCEt= 20 V, BE = 0 CES 100 µA Collector-base cut-off currentCB = 10 V,EI = 0 CBO 100 nA Emitter-base cut-off current V = 2 V, I = 0 I 10 µA EB C EBO Collector-emitter
in „Suche Vergleichstyp für 2SC9018 in SMD“ · HF, Funk und Felder ·
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Datei
main.c
DataLength]; uint16_t dma2_buffer[DataLength]; uint16_t dma3_buffer[DataLength]; double array[] = {1.222, 2.222, 3.333, 4.444, 5.555, 6.666}; uint8_t buffer[BufferLength]; bool Tim1LongPulse = false; extern uint16_t zaehler; uint16_t adcValue; uint32_t count; uint16_t pulseArray[4]; /* Dies sind Werte,
in „stm32f303RE - initialisierungen verbeissen sich“ · Mikrocontroller und Digitale Elektronik ·