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PDF
LM229_MC3302_LM2901.pdf
Leakage Current IOL − 0.1 − − 0.1 − − 0.1 − nA VI(+) ≥ +1.0 VdcI V (−) = 0, V = +5.0 Vdc O 3. (LM239) T = −25°C, T = +85° (LM339) Tlow= 0°C, T h= +70°C low high (MC3302) Tlow= −40°C, high= +85°C (LM2901) Tlow= −40°C, high= +105° (LM2901V & NCV2901) T low= −40°C, high= +125°C NCV2901 is qualified for automotive
in „Auslegung Optokoppler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD7190.pdf
V, Input Logic 0 = 0 V, Input Logic 1 = DV , unless DD otherwise noted. Table 2. Parameter LimitatT MIN,T MAX (BVersion) Unit Conditions/Comments 1, 2 t3 100 ns min SCLK high pulse width t4 100 ns min SCLK low pulse width READ OPERATION 1 0 ns min CS falling edge to DOUT/RDY active time 60 ns max DV
in „AD7190 Clock“ · Analoge Elektronik und Schaltungstechnik ·
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en.DM00047230.pdf
circle, the calculation stops, considering the sequence is not diverging: void GenerateJulia_fpu(uint16_t size_x, uint16_t size_y, uint16_t offset_x, uint16_t offset_y, uint16_t zoom, uint8_t * buffer) { float tmp1, tmp2; float num_real, num_img; float radius; uint8_t i; uint16_t x,y; for (y=0; y<size_y;
in „Rechenzeitoptimierung STM32F4“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Kemet.pdf
500 1,500 C-7301/7303 2,000 D/E/F 500 1,000 C-7301/7303 1,500 G 500 1,000 C-7301/7303 2,000 H 500 800 C-7301/7303 2,000 J 250 800 C-7301/7303 1,600 K 250 500 C-7301/7303 800 L/M 250 500 C-7301/7303 500 ©KEMETElectronicsCorporation•P.O.Box5928•Greenville,SC29606(864)963-6300•www.kemet.com T2046_T396_T398•10/20/2020 8 Tantalum Through-Hole Capacitors – Radial Dipped T396 & T398 UltraDip III (3 Leaded) Figure 1 T ∆H 3 H a imum T396 98 H ( 39 ) L H T3 3 T3 3 6 Tape Carrier T3 D L d T3 T Nominal Tolerance
in „Welches Bauteil ist das?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TSOP2238.pdf
sources / 0.9 W (Disturbance effect):10W/m ^1.4klx W Sensitivity in dark ambient ( 4.0 (Stand.illum.A,T=2855K)^8.2klx ( 0.8 e (Daylight,T=5900K) e a 3.5 a 0.7 d 3.0 d 0.6 r r I 2.5 I 0.5 o o s 2.0 s 0.4 r 1.5 Ambient, l = 950 nm r 0.3 T T – 1.0 – 0.2 i i m 0.5 m 0.1 Ee Ee 0 0 0.01 0.10 1.00 10.00 100.00
in „Frage zum TSOP2238“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SMD_Catalog.pdf
min EU BCW65BR Sie R SOT23R npn 32V 800mA hfe 160 min EW BCW65CR Sie R SOT23R npn 32V 800mA hfe 240 min EWAA MAX6326_R23-T Max ZB SOT23 microproc -ve reset gen 2.320V EX BCW65FR Sie R SOT23R npn 45V 800mA hfe 100 min EXAA MAX6326_R24-T Max
in „Hilfe bei Bauteilsuche für Mainboard“ · PC Hard- und Software ·
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PDF
171573-da-01-en-LT_1073_5_DIP_8_STEP_UP_1V_5V.pdf
1.4 1200 VIN= 1.5V L = 82µH 1100 1.0 1.3 1000 V IN= 3V V = 1.25V V ) IN E 1.2 A 900 0.8 G ( V L N 800 T VIN= 1V O 1.1 R700 S 0.6 VIN= 5V N U V O 1.0 C 600 V = 3V C C 500 VIN= 1.5V 0.4 IN I I V = 2V S 0.9 S 400 IN 300 0.2 0.8 200 0.7 0 0 0.2 0.4 0.6 0.8 1.0 1.2 0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 1010
in „LT 1073 Spg.schwankungen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
tft.cpp
touch-events and variables - sending a new display-list to the FT8xx */ void TFT_loop(void) { static uint8_t touch_or_list = 0; static uint8_t tag = 0; static uint16_t toggle_state = 0; static uint8_t toggle_lock = 0; static uint8_t track = 0; static uint32_t tracker_val = 0; static uint16_t slider10_val = 30; static uint16_t alive_counter = 0; uint32_t calc; static uint8_t u_unit1 = 0; uint8_t counter; static uint8_t strip_offset = 0; static uint8_t strip_delay = 0; uint16_t old_offset, new_offset; if(tft_active != 0) {
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PDF
MC74AC74-D.pdf
4.5 5.0 5.5 Vin Vout DC Input Voltage, Output Voltage (Ref. to GND) 0 − V CC V V @ 3.0 V − 150 − CC t , t Input Rise and Fall Time (Note ) V @ 4.5 V − 40 − ns/V r f ′AC Devices except Schmitt Inputs CC V @ 5.5 V − 25 − CC V @ 4.5 V − 10 − t , t Input Rise and Fall Time (Note ) CC ns/V r f ′ACT Devices
in „Eagle Bibliothek“ · Platinen ·
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PDF
LM106-306.PDF
25 3 0 5 0 mA s s Average Temperature Coefficient25§C TA TH 5 0 25 15 50 nA C§ Input Offset Current T Ls TA s 25§C 15 75 24 100 nA C§ Input Bias Current T Ls TA s 25§C 45 25 40 mA 25§C s TA s TH 20 25 mA Input Voltage Range b 7V t Vb t b 12V g5 0 g 5 0 V Differential Input Voltage Range g5 0 g 5 0 V
in „Nun ich auch mal - Suche Datenblätter zu ICs“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CA3280.pdf
OFFSET VOLTAGE vs AMPLIFIER BIAS CURRENT CURRENT 16 106 VS= ±15V 15 5 ) 10 o ( ) TA= 125 C E 14 p A T104 T 13 o N O TA= 125 C o E V 0 TA= 25 C TA= 125 C R103 T -13 T = -55 C TA = 25 C U P A T = -55 C C T A U 2 U -14 P10 O I A o E -15 101 T A 25 C P -16 1 1 101 102 103 0 1 2 3 4 5 6 7 8 9 10 AMPLIFIER
in „Suche OTA für +/-2.5V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ET050000DH6.pdf
ns 02101300-01-02 E M E R G I N G D I S P L A Y MODEL NO. VERSION PAGE TECHNOLOGIES CORPORATION E T 0 5 0 0 0 0 D H 6 5 5 5.1.2 DATA INPUT FORMAT SYNC MODE 800RGB * 480 SPEC. PARAMETER SYMBOL UNIT MIN. TYP. MAX. CLK FREQUENCY FCPH 33.26 MHz CLK PERIOD TCPH 30.06 ns CLK PULSE DUTY TCWH 40 50
in „AP7000 und ICnova ADB1000: Bisschen wenig?“ · Mikrocontroller und Digitale Elektronik ·
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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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Bild
Tabellen mit absoluten Maximalwerten und empfohlenen Betriebsbedingungen
Brightness Control (Note 7) 0.3 2.5 V VADJOFF DC Voltage on ADJ Pin to Ensure Devices is off 0.25 V tOFFMIN Minimum Switch Off-Time 800 ns tONMIN Minimum Switch On-Time 800 ns fLX MAX Recommended Maximum Operating Frequency (Note 8) 625 kHz DLY Duty Cycle Range 0.01 0.99 DLY(LIMIT) Recommended Duty Cycle
in „LEDs Konstantstrom statt Vorwiderstand ?“ · Analoge Elektronik und Schaltungstechnik · · Screenshots
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PDF
CAT24C164-D.PDF
3.5 0.9 ms tDH Data Out Hold Time 100 100 ns Ti(Note 7) Noise Pulse Filtered at SCL and SDA Inputs 100 100 ns tSU:WP WP Setup Time 0 0 ms HD:WP WP Hold Time 2.5 2.5 ms tWR Write Cycle Time 5 5 ms tPU(Notes 7, 8)
in „Serielles EEprom 24C164“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RT9080-33GJ5_esp32_8622_low_quiescent_600mA.pdf
(V) Load Current (mA) Ground Current vs. Load Current Ground Current vs. Load Current 500 900 450 800 T =65°C 400 TA=65°C 700 A ) ) TA=25°C μ 350 TA=25°C μ 600 TA=−40°C t TA=−40°C t n 300 n 500 r 250 r u u 400 C 200 C D D 300 G 150 N G 200 100 100 50 VIN= 2.2V, OUT= 0.8V VIN= 4.3V, OUT= 3.3V 0 0 1 10
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PDF
tsl230.pdf
⋅C λp= 670 nm 100 TA= 25⋅C 0.8 z S2 = S3 = L y H v – 10 s y S0 = H, S1 = H o n p 0.6 u e q 1 R r e t l p a 0.4 u 0.1 S0 = L, S1 = H r O o – N fO 0.2 0.01 S0 = H, S1 = L 0.001 0 0.001 0.01 0.1 1 10 100 1 k 10 k 100 k 1 M 300 400 500 600 700 800 900 1000 1100 E e Irradiance – W/cm 2 λ – Wavelength – nm
in „beleuchtungsstärkemessung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MMA3202.pdf
) T A B A 12.67 12.96 B 7.40 7.60 C 3.30 3.55 R X 45˚ D 0.35 0.49 F 0.76 1.14 G 1.27 BSC J J 0.25 0.32 C K 0.10 0.25 M 0˚ 7˚ -T- P 10.16 10.67 SEATING K G M R 0.25 0.75 PLANE F CASE 475A-01 ISSUE A 20 LEAD
in „Lagebestimmung mit Beschleunigssensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX889.pdf
CURRENT vs. C OUT OUT -3.25 o 40 o 40 o 9 9 8 -3.26 A A COUT= 4.7 F M M M V3.27 V 30 V 30 E MAX889T ( COUT= 10 F ( COUT= 10 F A3.28 MAX889S L L L I COUT= 22 F I V3.29 T 20 T 20 U P P U-3.30 U U COUT= 22 F O O O -3.31 10 10 C = 47µF -3.32 MAX889R OUT -3.33 0 0 0 200 400 600 800 0 50 100 150 200 250
in „Negative Betriebsspannung erzeugen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Elektor_10_1980g.PDF
liegt am Ausgang"TX" nach Gleich- MainflingebeiFrankfurtdem Standort des DCF-Senders,reis von bis zu 800 km von richtung Filterung Antenne einenuten erhält man mit dieseraktiven und des DCF- Empfang. 5 T rn',I--.^., iöüF Fiäü 2 x 1N4148 Bild 5. DasSchaltbildd€sNornirelzeit-Eftptängerr. SoinerichtigeFunkriwird
in „DCF77 SChaltplansuche“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HMC5883L_3-Axis_Digital_Compass_IC.pdf
(-2048–2047 ) 0xF800–0x07FF 1 0 0 ± 4.0 Ga 440 2.27 (-2048–2047 ) 1 0 1 ± 4.7 Ga 390 2.56 0xF800–0x07FF (-2048–2047 ) 1 1 0 ± 5.6 Ga 330 3.03 0xF800–0x07FF (-2048–2047 ) 0xF800–0x07FF 1 1 1 ± 8.1 Ga 230 4.35 (-2048–2047
in „hmc5883l - Winkel berechnen?!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HMC5883L_3-Axis_Digital_Compass_IC.pdf
(-2048–2047 ) 0xF800–0x07FF 1 0 0 ± 4.0 Ga 440 2.27 (-2048–2047 ) 1 0 1 ± 4.7 Ga 390 2.56 0xF800–0x07FF (-2048–2047 ) 1 1 0 ± 5.6 Ga 330 3.03 0xF800–0x07FF (-2048–2047 ) 0xF800–0x07FF 1 1 1 ± 8.1 Ga 230 4.35 (-2048–2047
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PDF
Preisliste_2008-09_Stand_Aug08.pdf
Single Labelings 1375,00 EC 759 902030 Insite System, Fluorescent In-Gel Stain ✖ ✖ ✖ 1 Kit 143,00 EC0205T1 190056 TransforMax EC100-T1R elektrokompetente E. coli ❄ ❄ 5 x 100 μl 189,00 EC02T110 191052 TransforMax EPI300-T1R elektrokompetente E.coli ❄ ❄ 10 x 100 μl 349,00 EC02T15 191051 TransforMax EPI300-
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PDF
MC34064P-005.pdf
MC34064, MC33064, NCV33064 10 5.0 RL= 10 k toin RL= 10 k to in TA= 25⋅C TA= 25⋅C ) 8.0 ) 4.0 ( ( G G T 6.0 T 3.0 O O V V U U T 4.0 T 2.0 U U , , VO2.0 VO1.0 0 0 0 2.0 4.0 6.0 8.0 10 4.560 4.580 4.600 4.620 4.640 V , INPUT VOLTAGE (V) V , INPUT VOLTAGE (V) in in Figure 2. Reset Output Voltage versus Figure
in „Brownout detector beim MSP430“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RDA5807SP.pdf
0.250 0.004 0.010 A2 1.350 1.550 0.053 0.061 b 0.330 0.510 0.013 0.020 c 0.170 0.250 0.007 0.010 D 9.800 10.200 0.386 0.402 E 3.800 4.000 0.150 0.157 E1 5.800 6.200 0.228 0.244 e 1.270(BSC) 0.050(BSC) Θ 1。 7。 1。 7。 L 0.400 1.270 0.016 0.050 Figure 9-1. 16 PIN SOP The information contained herein is the
in „Hilfe benötigt bei RDA5807SP Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0704-015.pdf
Resistance RPRIMARY TA= 25°C – 1.5 – mΩ Isolation Voltage V ISO Pins 1-4 and 5-8; 60 Hz, 1 minute 800 1200 – V PERFORMANCE CHARACTERISTICS, T = –40°C Ao 85°C, V CC = 5 V unless otherwise specified Propagation Time t I =±15 A, T = 25°C – 4 – µs PROP P A Response Time tRESPONSE P =±15 A, A = 25°C – 8
in „Stromfluss detektor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0704-015.pdf
Resistance RPRIMARY TA= 25°C – 1.5 – mΩ Isolation Voltage V ISO Pins 1-4 and 5-8; 60 Hz, 1 minute 800 1200 – V PERFORMANCE CHARACTERISTICS, T = –40°C Ao 85°C, V CC = 5 V unless otherwise specified Propagation Time t I =±15 A, T = 25°C – 4 – µs PROP P A Response Time tRESPONSE P =±15 A, A = 25°C – 8
in „Gibts eigentlich auch ADCs, die Strom messen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0704-015.pdf
Resistance RPRIMARY TA= 25°C – 1.5 – mΩ Isolation Voltage V ISO Pins 1-4 and 5-8; 60 Hz, 1 minute 800 1200 – V PERFORMANCE CHARACTERISTICS, T = –40°C Ao 85°C, V CC = 5 V unless otherwise specified Propagation Time t I =±15 A, T = 25°C – 4 – µs PROP P A Response Time tRESPONSE P =±15 A, A = 25°C – 8
in „Spule als Stromwandler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
crtc.vhd
vga_hs : out std_logic; vga_vs : out std_logic ); end crtc; architecture structural of crtc is -- mode: 800x600@72 (50 MHz clk) type mode_t is ARRAY(0 to 7) of integer range 0 to 2047; constant mode : mode_t := (800, 856, 976, 1040, 600, 637, 643, 666); -- display signal signal hcount, vcount : integer range
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Datei
example.html
value="0x0000">0x0000 (none)</option> <option value="0x8000">0x8000 (risky)</option> <option value="0xf800">0xf800 (insane)</option> </select> </p> </form> </p> </div> <div id="content"> <pre id="editor"> #include <stdlib.h> #include <stdio.h> #include <string.h> #include <avr/io.h>
in „XMega128A3 Kalibrationswerte ADC sind alle 0“ · Mikrocontroller und Digitale Elektronik ·
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PDF
fes8jt.pdf
FES8xT, FESF8xT, FESB8xT www.vishay.com Vishay General Semiconductor Ultrafast Plastic Rectifier TO-220AC ITO-220AC FEATURES • Power pack • Glass passivated pallet chip junction • Ultrafast recovery time •
in „Ersatz für Schottky SB 3200?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
0900766b80030f65.pdf
mm dia, 25 m long approx) 04-A05860TPR1 Thermal Paper Roll (60 mm dia, 45 m long approx) Power 07-AP800BP-01 Battery Pack (950 mAH NiCd) Packs 07-AP800-MHBP Battery Pack (1300 mAH NiMH) 07-AP800-PSA Universal mains PSU adaptor 07-AP800DC-DC 12V Vehicle PSU adaptor 07-AP800-OEMPSA Unterminated OEM 5-7.5V
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Datei
farbkreis-cv.cpp
#include <opencv2/opencv.hpp> static uint8_t limit(int x) { return x < 0 ? 0 : x > 255 ? 255 : x; } int main(void) { const int size = 800; cv::Mat img(size, size, CV_8UC3); for (double phi0 = 0;; phi0 = fmod(phi0 + 0.2, 2 * M_PI)) { for (int y = 0; y < size; y++) { for (int x = 0; x < 800; x++) { const double dx = 2.0 * x / size - 1; const double dy = 2.0 * y / size - 1; const double dr = hypot(dx, dy); const double phi = atan2(dx, -dy) + phi0; uint8_t b, g, r; if (dr <= 1) { b = limit
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Bild
Tabelle mit maximalen Bewertungen für Dioden-Serien
1N4004GP 1N4005GP 1N4006GP 1N4007GP UNIT Maximum repetitive peak reverse voltage VRRM 50 100 200 400 600 800 1000 V Maximum RMS voltage VRMS (1) 35 70 140 280 420 560 700 V Maximum DC blocking voltage VDC (1) 50 100 200 400 600 800 1000 V Maximum average forward rectified current 0.375" (9.5 mm) lead length
in „Tektronix 535 Restaurierung“ · Analoge Elektronik und Schaltungstechnik · · Screenshots
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PDF
OM4031.pdf
OM4031T for FSK data receivers FEATURES GENERAL DESCRIPTION • External clock frequency 30 to 80 kHz (typ. 38.4 kHz) The OM4031T is intended for performance enhancement of FSK data receivers that do not have
in „Selbstbau eines guten 30m-Empfängers“ · HF, Funk und Felder ·
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PDF
TLV5610IDW_12-Bit__seriell__SPI__TMS320.pdf
change of the DAC output from 10% to 90% full scale voltage. (7) Code transition: TLV5610 - 0x7FF to 0x800, TLV5608 - 0x7FC to 0x800, TLV5629 - 0x7F0 to 0x800 TIMING REQUIREMENTS DIGITAL INPUTS MIN NOM MAX UNIT su(FS-CK) Setup time, FS low before next negative SCLK edge 8 ns t Setup time, 16 negative edge
in „Hilfe zu DAC über SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LG_L1733TR_L1933TR_Monitor_Service_manual.pdf
Resolution Type : TFT Color LCD Module D-sub Analog : 1280 x 1024@75Hz Active Display Area : 17 inch - L1733T Digital : 1280 x 1024@60Hz : 19 inch - L1933T Pixel Pitch : 0.264 (H) x 0.264 (V) - L1733T 5. POWER SUPPLY : 0.294 (H) x 0.294 (V) - L1933T 5-1. Power : AC 100~240V, 50/60Hz , 0.6A Color Depth : 8bits
in „Monitor TFT und Röhre Computer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STM8S105.pdf
5.1 STM8S105 pinouts and pin description Figure 3: LQFP 48-pin pinout ] O C K C 3 ] H I ] R _ B E T 2 1 E _ I I [ D [ [ 4 1 [ 1 2 O H C 2 C C C L A _ X X 2 C 3 I 3 _ C D I 1 _ _ I 2 I W I K _ _ K T T T / I / / T/ C C C _ I R R S ) S S S )2/2 / 1 T U U (H H ( ( ( H ( T( T 7 6 5 4 3 2 1 0 0 1 2 3 D D
in „Handbuch STM8S Discovery“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AND8199-D_Thermal_Stability_of_MOSFETs__ON.pdf
applications. FET cells connected in parallel. In terms of sharing current, 24 )100 VDS ≥ 10 V ( 20 N A E T R N 16 U R E TJ= 25°C TJ= 175°C R C C 12 U I O A 8 − D TJ= 25°C T ,D − I 4 I R V DS= 50 V TJ= 100°C TJ= −55°C , 20 ms = Pulse Width 0 I 10 0 1 2 3 4 5 6 7 8 9 4.0 5.0 6.0 7.0 8.0 VGS , GATE−TO−SOURCE
in „200A regeln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
am26lv32.pdf
timer(t fr t ) See Figure 1 5 ns tPZH Output-enable time to high level See Figure 2 17 40 ns tPZL Output-enable time to low level See Figure 3 10 40 ns tPHZ Output-disable time from high level See Figure 2 20
in „Maßnahmen zum ausfallsicheren Busreceiververhalten, wie geht das?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
am26lv32.pdf
timer(t fr t ) See Figure 1 5 ns tPZH Output-enable time to high level See Figure 2 17 40 ns tPZL Output-enable time to low level See Figure 3 10 40 ns tPHZ Output-disable time from high level See Figure 2 20
in „Stromaufnahme eines RS422-Receivers anhand von Datenblatt ermitteln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DATASHEET-LI10600T070IA3098-TR.pdf
LI10600T070IA3098-TR_datasheet Professional, Creditable, Successful Product Specification LI10600T070IA3098-TR 7.0 inch, 1024×600, IPS screen with wide viewing angle, air bonding RTP Disclaimer:The product design
in „Parallel RGB Frequenz/Einzelbild?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MPX4100.PDF
MPX Series Order No. Marking Sleeve Pack 471–01 MPXS4100A6U MPXS4100A Tape and Reel 471–01 MPXS4100A6T1 MPXS4100A Sleeve Pack 471B–01 MPXS4100AC6U MPXS4100A Device ReelSize T ape Width Quantity MPXS4100A6T1 13” dia. 44 mm 250 ORDERING INFORMATION — TOP PISTON FIT PACKAGE The MPXT4100A series MAP silicon
in „Temperatur - Luftdruckmessung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ULN2803-D.pdf
F V V F DUT Open MOTOROLA ANALOG IC DEVICE DATA 3 ULN2803 ULN2804 TYPICAL CHARACTERISTIC CURVES – T = 25⋅C, unleAs otherwise noted Output Characteristics Figure 8. Output Current versus Figure 9. Output Current versus Saturation Voltage Input Current A A ( ( T 600 T 600 E E R R U AllTypes U C C AllTypes
in „Passt der ULN2804???“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ULN2803-D.pdf
F V V F DUT Open MOTOROLA ANALOG IC DEVICE DATA 3 ULN2803 ULN2804 TYPICAL CHARACTERISTIC CURVES – T = 25⋅C, unleAs otherwise noted Output Characteristics Figure 8. Output Current versus Figure 9. Output Current versus Saturation Voltage Input Current A A ( ( T 600 T 600 E E R R U AllTypes U C C AllTypes
in „Treiberbaustein gesucht um LED's anzusteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ULN2803-D.pdf
F V V F DUT Open MOTOROLA ANALOG IC DEVICE DATA 3 ULN2803 ULN2804 TYPICAL CHARACTERISTIC CURVES – T = 25⋅C, unleAs otherwise noted Output Characteristics Figure 8. Output Current versus Figure 9. Output Current versus Saturation Voltage Input Current A A ( ( T 600 T 600 E E R R U AllTypes U C C AllTypes
in „Problem noch nicht gelöst“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ICN2037.pdf
OUTn 0.5 - 45 mA www.chiponeic.com V1.1 Nov 2016 - 7 - ICN2037 16 路恒流双缓存输出 LED 驱动芯片 动态特性 (V DD.5~5.5V,T =-a0℃~85℃,如不另外说明) 特性 符号 测试电路 测试条件 最小值 典型值 最大值 单位 串行数据传输频率 FCLK 6 - - - 30 MHz 时钟脉冲宽度 t 6 SCK=H 或者 L 20 - - ns wCLK 锁存脉冲宽度 twLE 6 LE=H 20 - - ns OE =H 或者 L, 使能脉冲宽度 twOE 6 60 - - ns REXT90Ω t 6 - 5 - - ns 保持时间 HOLD1 tHOLD2 6 - 5 - - ns tSETUP1 6 - 5 - - ns 建立时间 tSETUP2 6 - 5 - - ns 最大时钟上升时间 tr 6 - - 500 ns 最大时钟下降时间 tf 6 - - 500 ns 电气特性 (VDD4.5~5.5V,T =2a℃,如不另外说明) 特性 符号 测试 测试条件 最小值 典型值 最大值 单位 电路 高电平逻辑输出电压 VOH 1 IOH
in „Chinesische IC und ihre Verwandschaft“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ULN2803_ULN2804.pdf
F V V F DUT Open MOTOROLA ANALOG IC DEVICE DATA 3 ULN2803 ULN2804 TYPICAL CHARACTERISTIC CURVES – T = 25⋅C, unleAs otherwise noted Output Characteristics Figure 8. Output Current versus Figure 9. Output Current versus Saturation Voltage Input Current A A ( ( T 600 T 600 E E R R U AllTypes U C C AllTypes
in „Ansteuerung Nixie und Leuchtmelder“ · Mikrocontroller und Digitale Elektronik ·
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366828_DS.pdf
F V V F DUT Open MOTOROLA ANALOG IC DEVICE DATA 3 ULN2803 ULN2804 TYPICAL CHARACTERISTIC CURVES – T = 25⋅C, unleAs otherwise noted Output Characteristics Figure 8. Output Current versus Figure 9. Output Current versus Saturation Voltage Input Current A A ( ( T 600 T 600 E E R R U AllTypes U C C AllTypes
in „ULN2803 in einem Weichendecoder DCC“ · Analoge Elektronik und Schaltungstechnik ·
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max690a-max805l.pdf
= 4μA, V = 1.2V 0.9 RESET Output Voltage SOURCE CC V MAX805L, I SOURCE = 800μA V CC - 1.5 MAX805L, I SINK= 3.2mA 0.4 Watchdog Timeout WD 1.00 1.60 2.25 s WDI Pulse Width t V = 0.4V, V = (0.8) (V ) 50 ns WP IL IH CC Logic low 0.8 WDI Input Threshold (Note 4) V CC = 5V V Logic
in „[V] 13St MAX692A SO8 Microprocessor Supervisory Circuits/WD (6€)“ · Markt ·