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PDF
Bestandsliste.pdf
€ 571 6.3X32T8A Feinsicherung 8 A 6x32mm 250V träge 48Stk 0,09 € 4,08 € 572 5X20F800MA Feinsicherung 800mA 5x20mm 250V fink 12Stk 0,04 € 0,51 € 573 5X20T800MA Feinsicherung 800mA 5x20mm 250V träge 57 Stk 0,06 € 3,28 € 574 6.3X32T800MA Feinsicherung 800mA 6x32mm 250V träge 5Stk 0,09 € 0,44 € 575 5X20F80MA Feinsicherung 80mA 5x20mm 250V fink 8Stk 0,09 € 0,68 € 576 5X20M32MA Feinsicherung 0.032A 5x20 250V miteltr. 16Stk 0,34 € 5,40
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PDF
BPW_34.pdf
Ratings Bezeichnung Symbol Wert Einheit Parameter Symbol Value Unit Betriebs- und Lagertemperatur T ;T – 40 … + 100 °C op stg Operating and storage temperature range Sperrspannung V 32 V R Reverse voltage VerlustleistungT = 25 °C P 150 mW A tot Total power dissipation Kennwerte ( T = 25 °C, Normlicht
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PDF
dp8212.pdf
Capacitance 8 12 pF *This parameter is sampled and not 100% tested. 2 Switching Characteristics Mins T s Max, Mins V s Max A CC Symbol Parameter Conditions DP8212M DP8212 Units Min Max Min Max PW Pulse Width 40 30 ns t Data to Output Delay (Note 1) 30 30 ns PD t Write Enable to Output Delay (Note 1) 50
in „Suche Datenblatt NEC µPB8212“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1331276981-613264.pdf
maximum-rated conditions for extended periodsre Œ may affect device reliability. OB3330 X X X o l t PSR+PFC LED Driver Package t iPackage Pb free Packing C:SOPn P:Pb-free A: Tape/Reel Marking Information d e f i o n YWWZZZ C OB3330CP h t s i g Y: Year Code r ZZZ:Lot Codee (01-52) - B C: SOP8 n S: Internal
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PDF
usa_st_common_specs.pdf
0] 5 [0.2] 10 [0.39] 15 [0.59] 20 [0.79] S p 20 [0.79] PK213, PK214, PK513 12 (2.7) 15 (3.3) − − − t o 28 [1.10] PK223, PK224, PK225, 25 (5.6) 34 (7.6) 52 (11.7) − − o PK523, PK525 / & 35 [1.38] PK233, PK235 20 (4.5) 25 (5.6) 34 (7.6) 52 (11.7) − R e . D 0.72°, 1.8° K r 2 i High-Torque Type 42 [1.65
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PDF
Haier_LT26M1CA__LT26M1C_LCD_TV.pdf
L106 071G 59C800 1HIP BEAD L105 071G 59C800 1HIP BEAD L101 071G 59C800 1HIP BEAD FB607 071G 59G301 CHIP BEAD 300OHM FB608 071G 59G301 CHIP BEAD 300OHM FB101 071T2012221 2M CHIP BEAD 0805 220 OHM 2000mA FB103 071T2012221
in „Philips LCD TV kein Bild aber Ton [46PFL7655K/02]“ · Haus & Smart Home ·
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PDF
LIFEPO4_18650FPZ_DB.pdf
10C (92.5%) Recommended ğ 0.5$ ▯N" charge termination e2.6 Charging control parameters taper current t 15C (85.9%) o2.4 Conditions 0.05$▯" at 3.65V V2.2 Weight ğ"QQSPY▯▯▯H 12C (88.4%) 2.0 Internal 1.8 Resistance ğ▯▯NΩ max. at 1000Hz 1.6 Charging Voltage ğ▯▯▯▯ ▯▯▯▯7 0 200 400 600 800 1000 1200 Ambient
in „Fest integrierte Balancer Schaltung mit Tiefentladeschutz“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TSL_235.pdf
1994 TYPICAL CHARACTERISTICS OUTPUT FREQUENCY vs IRRADIANCE PHOTODIODE SPECTRAL RESPONSIVITY 1000 1 T = 25⋅C VDD = 5 V A λp= 670 nm 100 T = 25⋅C A 0.8 z t k i – 10 s c o n s 0.6 u e e 1 d F z t l 0.4 t m u 0.1 o O N – fO 0.2 0.01 0.001 0.001 0.01 0.1 1 10 100 1 k 0 300 400 500 600 700 800 900 1000 1100
in „Beleuchtungszeit in LUx mit TSL235“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Mikrophon__Invensense_.pdf
StorageTemperature Range −40°C to +150°C OperatingTemperature Range −40°C to +85°C ESDCAUTION E CRITICAL ZONE TP tP TLTO P RAMP-UP T UTL SMAX tL E TSMIN E E T PREHEAT RAMP-DOWN L t25°C TO PEAK 9 TIME 1 Figure3.RecommendedSolderingProfileLimits Table 3. Recommended Soldering Profile Limits O Average Ramp Rate (T toT ) 1.25°C/sec maximum 1.25°C/sec maximum Preheat L P S MinimumTemperature (T SMIN 100°C 150°C MaximumTemperature (T SMAX) 150°C 200°C Time (T SMINtoTSMAX),St 60 sec to 75 sec 60 sec to 75 sec Time Maintained Above Liquidous (t )L B 45 sec to 75 sec ~50 secsec LiquidousTemperature
in „Ungewöhnliches SMD-Pad“ · Platinen ·
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Datei
TTT.M
---------- initialisierung, vektorerstellung ---------------- dt = .1; % schrittweite ende = 1000; t = dt:dt:ende; len=length(t); % erstelle gyro vektor (winkelv) gyro(1:200) = ones(1,200)*0; gyro(201:400) = ones(1,200)*0.1; gyro(401:600) = ones(1,200)*0; %gyro(601:800) = ones(1,200)*-0.1; %gyro(801:1000) = ones(1,200)*0; gyro(601:800) = ones(1,200)*0; gyro(801:1000) = ones(1,200)*0; gyro(1001:len) = ones(1,len-1000)*0; % erstelle rohen accvektor (winkel) acc(1)=0; for i=2:len acc(i)=acc(i-1)+gyro(i); end % füge acc rauschen hinzu
in „Gyroskop Drift schätzen mit Kalman“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
SK6812RGBW_szledcolor.pdf
lo r.c o m ShenzhenLE Dcoloropoe lctonicCo.ld 10. The data transmission time (TH+TL=1.25µs±600ns): T0H 0 code, high level 0.3µs ±0.15µs T0L 0 code, low level 0.9µs ±0.15µs T1H 1 code, high level 0.6µs ±0.15µs T1L 1 code, low level 0.6µs ±0.15µs Trst Reset code,low level time 11. Timing waveform: Input
in „LED RGBW SK6812“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SK6812RGBW.pdf
lo r.c o m ShenzhenLE Dcoloropoe lctonicCo.ld 10. The data transmission time (TH+TL=1.25µs±600ns): T0H 0 code, high level 0.3µs ±0.15µs T0L 0 code, low level 0.9µs ±0.15µs T1H 1 code, high level 0.6µs ±0.15µs T1L 1 code, low level 0.6µs ±0.15µs Trst Reset code,low level time 11. Timing waveform: Input
in „Planung: LED Deko-Zauberwürfel / Rubiks Cube“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AND9388-D.PDF
C C C C C 47V3RO C12 48V3RI R14 R52 1 VCC COM 24 45WAKE PWMIN R50 P6 15LIN_PWMIN IC R13 R15 3 TXD T1a T2a T3a 2 36 R1 R2 R3 RXD UH CP1 P1 U 7 CSB UOUT 35 CP2 8 SCLK VH 32 CP3 P2 V 9 SI VOUT 31 CP4 10SO WH 28 P3 W WOUT 27 EN T1b T2b R9 T3b P8 46EN UL 34 R7 R8 CP5 R51 4 PWMIN VL 30 R53 R54 R55 11 R20
in „BLDC LV8907 via SPI einstellen funkt nicht..“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1407fa.pdf
1 1 4 3 Q L t Z 3 L 9 A M i C P t i t 3 t S H t7 tA A H 3 3 S X D 2 3 t8 3 8 X t 1 1 t 5 D 3 3 t 1 0 2 0 C D H D 3 T 3 C A 1 A 3 9 I D O D 2 S 2 S E 2 E 4 8 N D N D 2 C 2 O S 3 S 5 7 I D D O D 2 E R 2 V R R 4 W R
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FFT.pdf
-90.000 -92.000 0 150.00 300.00 450.00 600.00 750.00 900.00 1123.8 Frequency (Hz) Spectral Lines: 800 Time Capture Points: 2048 Frequency Span: 1000 Average Type: Peak Continue Average Domain: Time Frame Number: 88 Window Type: Hanning Data saved at 11:40:42 AM, Wednesday, February 28, 2007 Report created
in „Scheitelwert des Beschleunigungspektrums ermitteln“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
FFT.pdf
-90.000 -92.000 0 150.00 300.00 450.00 600.00 750.00 900.00 1123.8 Frequency (Hz) Spectral Lines: 800 Time Capture Points: 2048 Frequency Span: 1000 Average Type: Peak Continue Average Domain: Time Frame Number: 88 Window Type: Hanning Data saved at 11:40:42 AM, Wednesday, February 28, 2007 Report created
in „Definition "Peak Hold"“ · Offtopic ·
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PDF
LQ10D421.pdf
D l ÷ " t 2 k þ s Ī g ÷ T Ī T n þ s c a Ī D h T l Ī T T 3 d c c w p H h ÷ l v d õ õ ú e ĝ ĝ Ī f Ī Ī Ī r T m 3 H s 4 ( 4 0 D ļ 3 i Ĭ 9 e Ķ m D ij D 1 Ĭ 6 o 0 e ) ÷ u D ú b H Ī o 2 Ī o H z t n a D l H v 3 l d T a
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PDF
P82B96_7.pdf
Semiconductors P82B96 Dual bidirectional bus buffer 1000 002aac069 1200 002aac070 V OL VOL (mV) (mV) 1000 800 (1) 800 (1) (2) 600 (2) (3) (3) 600 400 400 50 25 0 25 50 75 100 125 50 25 0 25 50 75 100 125 Tj(°C) T j°C) V OLat Sx typical and limits over temperature VOL at Sx typical and limits over temperature
in „18 x SHT11 an welchem Mikrocontroller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OPA548.pdf
FREQUENCY 1.25 13 1 G = +3 z GBW RL= 8 H 1 12 20W ( 10W c s 0.1 d / ) 1W r 0.75 11 ( ( 0.1W h SR+ t N d R D w 0.5 10 w H n l T 0.01 a S n a 0.25 9 G SR– 0 8 0.001 –75 –50 –25 0 25 50 75 100 125 20 100 1k 10k 20k Temperature (°C) Frequency (Hz) ® 5 OPA548 TYPICAL PERFORMANCE CURVES (CONT) At T = +25
in „Schaltplan für ordentliches Labornetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
hlmp4000.pdf
H 3 T-1 / , 24mm X 5 mm Rectangular Bicolor LED Lamps High Efficiency Red/ High Performance Green Technical Data HLMP-4000 HLMP-0800 Features: Other Bicolor • Two Color (Red, Green) Combinations Operation
in „[V] Verkaufe LEDs Bicolor RotGrün 500Stück 15Euro“ · Markt ·
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PDF
2210280930_Diodes-Incorporated-AP63300WU-7_C2158012.pdf
— 930 — mA ZC Zero Cross Current Threshold — — 60 — mA fSW Oscillator Frequency — 450 500 550 kHz t Minimum On-Time — — 80 — ns ON_MIN V FB Feedback Voltage CCM 792 800 808 mV V EN_H EN Logic High — — 1.18 1.25 V V EN_L EN Logic Low — 1.03 1.09 — V VEN= 1.5V — 5.5 — μA EN EN Input Current VEN= 1V 1
in „Step-Down-Wandler pfeift sehr laut, was tun?“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
CD00187074.pdf
15dBm 70 16 ] ] [ d y i n 65 G i i 14 f E 60 Vcc = 3.6V Icq = 30mA 12 55 Vcc = 3.6V Icq = 30mA 50 10 800 820 840 860 880 900 920 940 960 980 1000 800 820 840 860 880 900 920 940 960 980 1000 Frequency [MHz] Frequency [MHz] Figure 8. Gain and efficiency vs frequency Figure 9. Harmonics vs frequency y q
in „Leistungsanpassung bei bipolar Transistoren?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
158950-da-01-en-BS170.pdf
CASE 29–04, STYLE 30 Gate–Source Voltage — Continuous VGS 〉 20 Vdc TO–92 (TO–226AA) — Non–repetitive (t 50 s) V 〉 40 Vpk p GSM Drain Current) I 0.5 Adc D Total Device DissipationA@ T = 25⋅C PD 350 mW Operating and Storage Junction TJ, stg –55 to +150 ⋅C Temperature Range ELECTRICAL CHARACTERISTICS (TA
in „3V DC Motor (300mA) mit transistor schalten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SiT1533-datasheet.pdf
and 800 mV. For example; a PMIC or MCU is internally 1.8V logic compatible, and requires a 1.2 V VIH and a 0.6 V VIL. Simply select SiT1533 NanoDrive factory programming code to be “D14” and the correct output
in „einfache Zeitverzögerung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
irs.c
889,889,889,889,1778,889,889,889,889,889,889,889,889,889,889,889,889,1778,889,889,1778,889,889,24889}; //sample data -> works !!! int irdata[] = {997,775,1856,800,970,801,969,801,969,801,970,801,969,801,970,801,969,1688,994,775,1855,801,970,24659}; float irdata1[] = {997,775,1856,800,970,801,969,801,969,801,970,801,969,801,970,801,969,1688,994,775,1855,801,970,24659}; int z; void ir_send_pulses(unsigned int t) { unsigned int i; float x; x = irdata1[t] * 0.036; i = (int) x; while(i--) { PORTD.2 = 0; // 7 us delay_us(7); PORTD.2 = 1; // IR-LED ON -> 21 us delay_us(19); // WHILE 2 us (2 + 19 = 21 us) } } void
in „Infrarot senden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
c01609323.pdf
allow a maximum of 53 Kbps during download transmissions. Data Speeds (Upload only) 33,600/31,200/28,800/26,400/21,600/19,200/16,800/14,400/12,000/ 9,600/7,200/4,800/2,400/1,200/300 Data Standards ITU-T V.90, ITU-T, ITU-T V.34, V.44, V.42, V.42bis21, V.32bis, Bell 212A, and Bell 103 Fax Speeds 14,400/12,000/9,600/7,200/4,800/2,400/1,200/300 b/s Fax Mode Capabilities ITU-T T.31 class 1 FAX, V. 17, V.29, V.27ter, and V.21 Channel 2 Error Correction and V.44, 42bis, V.42 and MNP2-5 Data Compression Power Management ACPI; PPMI
in „PC bootet nicht nach cpu Tausch“ · PC Hard- und Software ·
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PDF
c01609323.pdf
allow a maximum of 53 Kbps during download transmissions. Data Speeds (Upload only) 33,600/31,200/28,800/26,400/21,600/19,200/16,800/14,400/12,000/ 9,600/7,200/4,800/2,400/1,200/300 Data Standards ITU-T V.90, ITU-T, ITU-T V.34, V.44, V.42, V.42bis21, V.32bis, Bell 212A, and Bell 103 Fax Speeds 14,400/12,000/9,600/7,200/4,800/2,400/1,200/300 b/s Fax Mode Capabilities ITU-T T.31 class 1 FAX, V. 17, V.29, V.27ter, and V.21 Channel 2 Error Correction and V.44, 42bis, V.42 and MNP2-5 Data Compression Power Management ACPI; PPMI
in „PC bootet nicht nach cpu Tausch“ · PC Hard- und Software ·
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PDF
Grundig_ST70-780_text_Service-Manual.pdf
Service Manual "Sicherheit", Sach-Num- ! as provided by the "Safety" Service Manual, part a mer 72010-800.00, sowie zusätzlich die eventuell ab- number 72010-800.00, as well as the respective t s 4 Btx *32700# ÄNDERUNGEN VORBEHALTEN weichenden, landesspezifischen Vorschriften! ( ! ) national deviations.
in „PAL-Röhren TV auf NTSC umbauen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
0900766b80f4955a.pdf
72100J012 HeatinginsertforX-Tool 72100J012 ohneThermoelement withoutthermocouple Speicherventilkomplett 3T7250-00 Reservoirvalve,complete 3T7250-00 Entlötkopf 72400 Desoldering head 72400 (Abb.4/Pos.4) (fig.4/no.4) Restlotbehälterkomplett 72600 Residualsoldercontainer,comp72600 Lotsammelfilter10Stück 3T7260-04/10 Soldercollectionfilter,10pcs.3T72604/10 Partikelfilter10Stück. 3T7260-05/10 Particlefilter,10pcs. 72605/10 Dichtstopfenvorn 3T7260-02 Frontsealingplug 3T7260-02 Dichtstopfenhinten 3T7260-03 Backsealingplug 3T7260-03 EntlötspitzeID=1,2ERSADUR
in „[S] Heizeinsatz für X-Tool 0720EDJ mit Thermoelement 72100J011“ · Markt ·
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PDF
LT_G6SP.pdf
page 21 5) Seite 21 Relative spektrale Emission - V(λ) = spektrale Augenempfindlichkeit Irel = f (λ); T =S25 °C; I = 140 mF 1,0 LT G6SP Irel : λ : true green 0,8 0,6 0,4 0,2 0,0 350 400 450 500 550 600 650 700 750 800 λ [nm] Radiation Characteristics 5) page 21 5) Seite 21 Abstrahlcharakteristik Irel =
in „[KiCad] Wie kann ich einen Footprint mit mehr Pads zuweisen?“ · Platinen ·
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PDF
TL494-D.PDF
* (T = 0.001 mF, T = 30 kW) sosc − 3.0 − % Frequency Change with Voltage (VCC = 7.0 V to 40 V,AT = 25°C) Dfosc(DV) − 0.1 − % Frequency Change with Temperature (DT A T lowto high) Dfosc (DT) − − 12 % (CT=
in „Schaltnetzteil m. TL494 - Frage zu Mosfet (und Treiber)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
7219.pdf
All segments and decimal point on, 330 mA ISEG_ = -40mA Display Scan Rate OSC 8 digits scanned 500 800 1300 Hz Digit Drive Sink Current IDIGIT V+ = 5V, VOUT = 0.65V 320 mA Segment Drive Source Current ISEG TA= +25°C, V+ = 5V, V OUT = (V+ - 1V) -30 -40 -45 mA Segment Current Slew Rate ∆ISEG /∆t TA= +25
in „max. 50 LEDs ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX7219-MAX7221.pdf
All segments and decimal point on, 330 mA ISEG_ = -40mA Display Scan Rate OSC 8 digits scanned 500 800 1300 Hz Digit Drive Sink Current IDIGIT V+ = 5V, VOUT = 0.65V 320 mA Segment Drive Source Current ISEG TA= +25°C, V+ = 5V, V OUT = (V+ - 1V) -30 -40 -45 mA Segment Current Slew Rate ∆ISEG /∆t TA= +25
in „8 stellige 7 Segment anzeige“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX7219-MAX7221.pdf
All segments and decimal point on, 330 mA ISEG_ = -40mA Display Scan Rate OSC 8 digits scanned 500 800 1300 Hz Digit Drive Sink Current IDIGIT V+ = 5V, VOUT = 0.65V 320 mA Segment Drive Source Current ISEG TA= +25°C, V+ = 5V, V OUT = (V+ - 1V) -30 -40 -45 mA Segment Current Slew Rate ∆ISEG /∆t TA= +25
in „7-Segment ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ICM7219.pdf
All segments and decimal point on, 330 mA ISEG_ = -40mA Display Scan Rate OSC 8 digits scanned 500 800 1300 Hz Digit Drive Sink Current IDIGIT V+ = 5V, VOUT = 0.65V 320 mA Segment Drive Source Current ISEG TA= +25°C, V+ = 5V, V OUT = (V+ - 1V) -30 -40 -45 mA Segment Current Slew Rate ∆ISEG /∆t TA= +25
in „LED Dot-Matrix an AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Max7219.pdf
All segments and decimal point on, 330 mA ISEG_ = -40mA Display Scan Rate OSC 8 digits scanned 500 800 1300 Hz Digit Drive Sink Current IDIGIT V+ = 5V, VOUT = 0.65V 320 mA Segment Drive Source Current ISEG TA= +25°C, V+ = 5V, V OUT = (V+ - 1V) -30 -40 -45 mA Segment Current Slew Rate ∆ISEG /∆t TA= +25
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PDF
ICM7219.pdf
All segments and decimal point on, 330 mA ISEG_ = -40mA Display Scan Rate OSC 8 digits scanned 500 800 1300 Hz Digit Drive Sink Current IDIGIT V+ = 5V, VOUT = 0.65V 320 mA Segment Drive Source Current ISEG TA= +25°C, V+ = 5V, V OUT = (V+ - 1V) -30 -40 -45 mA Segment Current Slew Rate ∆ISEG /∆t TA= +25
in „8bit binär nach 7-Segment-Anzeige???“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX7219-MAX7221.pdf
All segments and decimal point on, 330 mA ISEG_ = -40mA Display Scan Rate OSC 8 digits scanned 500 800 1300 Hz Digit Drive Sink Current IDIGIT V+ = 5V, VOUT = 0.65V 320 mA Segment Drive Source Current ISEG TA= +25°C, V+ = 5V, V OUT = (V+ - 1V) -30 -40 -45 mA Segment Current Slew Rate ∆ISEG /∆t TA= +25
in „selbstgebasteltes Display ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX_7219-7221.pdf
All segments and decimal point on, 330 mA ISEG_ = -40mA Display Scan Rate OSC 8 digits scanned 500 800 1300 Hz Digit Drive Sink Current IDIGIT V+ = 5V, VOUT = 0.65V 320 mA Segment Drive Source Current ISEG TA= +25°C, V+ = 5V, V OUT = (V+ - 1V) -30 -40 -45 mA Segment Current Slew Rate ∆ISEG /∆t TA= +25
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PDF
ICM7219.pdf
All segments and decimal point on, 330 mA ISEG_ = -40mA Display Scan Rate OSC 8 digits scanned 500 800 1300 Hz Digit Drive Sink Current IDIGIT V+ = 5V, VOUT = 0.65V 320 mA Segment Drive Source Current ISEG TA= +25°C, V+ = 5V, V OUT = (V+ - 1V) -30 -40 -45 mA Segment Current Slew Rate ∆ISEG /∆t TA= +25
in „LED 5x7 Dot Matrix“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2331212.pdf
FEATURES 0810 TO 1012 1213 TO 1216 1616 TO 1821 Max. time from 25 °C to T Peak 300 s 300 s 300 s Max. ramp-up rate to 150 °C 3 K/s 3 K/s 3 K/s Max. time from 150 °C to 200 °C (t1) 150 s 150 s 150 s Max. time from 190 °C to 200 °C (t2) 110 s 110 s 110 s Ramp up rate from 200 °C to T 0.5 K/s to 3 K/s 0.5 K/s to 3 K/s 0.5 K/s to 3 K/s Peak Max. time above T Liquidus217 °C) (3 ) 90 s 90 s 90 s Max. time above 230 °C (t 4) 70 s 65 s 60 s Peak temperature T Peak 260 °C 250 °C 245 °C
in „[V] 80St. Aluminium-Elektrolytkondensatoren, SMD, Becher, radial - SMD, 100 µF, 50 V, Baureihe 146 C“ · Markt ·
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PDF
0900766b8144620c_1_.pdf
Dissipation Ratings Peak Pulse CurrentTestWaveform E100 100 U E A O1= Virtual Origin of U 90 V 90 A 80 K T = Time From 10% V A T1 = Virtual Front Tim E 70 P A 60 F 50 T2= Virtual Time to H R O O 50 T Example: For an 8/20 s T N 8 s = T1 = Virtual Fron E 40 C C 30 R 20 s = T 2 Virtual Time E E 10 P 20 P 10
in „Hochspannung überprüfen“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
_C_GLCD.bas
Rstric , !st , !fi , Oe , En D = Spi16(&H9850) ' 90 kHz , power - 0 dB D = Spi16(&He000) ' D = Spi16(&Hc800) ' D = Spi16(&Hc000) Freq = 868.300 Freq_rfm12 Return '***FUNK SUBS*** Sub Freq_rfm12 If Freq < 800 Then Freq = Freq * 2 Freq = Freq - 860 D = Freq / 0.0050 If D < 96 Then D = 96 If D > 3903 Then D
in „GLCD + Touchscreen machen in verbindng mit SPI probleme [Bascom]“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1677.pdf
800 mV –40°C ≤ T ≤ 85°C ● 620 850 mV A ISC Output Short-Circuit Current (Note 3) 25 35 mA 0°C ≤ T≤ 70°C ● 20 30 mA A –40°C ≤ A ≤ 85°C ● 18 28 mA SR Slew Rate RL≥ 10k (Note 9) 1.7 2.5 V/µs RL≥ 10k (Note
in „LT1677, Output Voltage Swing“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT1677fa.pdf
800 mV –40°C ≤ T ≤ 85°C ● 620 850 mV A ISC Output Short-Circuit Current (Note 3) 25 35 mA 0°C ≤ T≤ 70°C ● 20 30 mA A –40°C ≤ A ≤ 85°C ● 18 28 mA SR Slew Rate RL≥ 10k (Note 9) 1.7 2.5 V/µs RL≥ 10k (Note
in „Nachbau TC1 Seismometer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD7606_7606-6_7606-4.pdf
1 BUSY t6 CS t7 tRESET 0 RESET 9 8 0 Figure3.CONVSTTiming—ReadingDuringaConversion Rev.C | Page 9of 36 AD7606/AD7606-6/AD7606-4 Data Sheet CS t9 t8 t t11 10 t RD t 16 13 t14 t15 t17 DATA: DB[15:0] INVALID V1
in „STM32 Parallel Bus ADC“ · Mikrocontroller und Digitale Elektronik ·
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593d.pdf
(C ) Time 25 °C to peak temperature 6 min max. 8 min max. Ramp-down Ramp-down rate (T tp T ) L 6 °C/s max. 6 °C/s max. PEAK PACKAGE BODY TEMPERATURE (T ) p PEAK PACKAGE BODY TEMPERATURE (T ) p CASE CODE SnPb EUTECTIC PROCESS LEAD (Pb)-FREE PROCESS A, B, C 235 °C 260 °C D, E, W 220 °C
in „Wo bekomm ich dieses Bauteil her?“ · Analoge Elektronik und Schaltungstechnik ·
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Firmware_buglist_2.07.1.pdf
horizontal lines are missing 8. In FFT mode “Full span” is higher than Nyquist (sample rate /2 ) Example: 800ns/DIV, sample rate is 200MSs, full span 125MHz. Easy to fix by enabling from 800ns/DIV to 20ns/DIV 1GSs sampling (when 4k memory or FFT enabled) 9. Dithering/interpolation filter are too sharp. When
in „Tekway/Hantek/Voltcraft MSO“ · Mikrocontroller und Digitale Elektronik ·
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SP8716_18_19.pdf
CHARACTERISTICS Test conditions (unless otherwise stated):] Supply voltage: Vcc = +4/95 to 5.45V, Temperature: T amb= -40°C to +85°C Value Units Characteristics Symbol Min. Max. Conditions Notes Max. frequency 520 1 fmax MHz Input 100-280mV p-p Min. frequency (sinewave input) fmin 30 MHz Input 400-800mV p-p 2 Power
in „Datenblätter zu alten Telefunken-Frequenzteilern“ · Mikrocontroller und Digitale Elektronik ·
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ISC-XVM300.pdf
ISC-XVM300 V G A D i g i t a l V i d e o C a m e r a M o d u l e APPLICATIONS: Handheld instruments (PDA, cell phone) • • Security & Surveillance • Toys FEATURES: • Full resolution VGA at 30 fps • Best in class low light performance
in „Kamera für TMS320C6713“ · Digitale Signalverarbeitung / DSP / Machine Learning ·