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IRLB8748PBF.PDF
16 ( 450 n g TOP 6.73A t e 400 11.6A s E BOTTOM 32A e 14 e 350 R c O n 300 e 12 a r v 250 o e - 10 l 200 t P i TJ= 125°C l 150 r 8 g D i 100 ,) , o 6 T = 25°C S 50 S J EA D R 4 0 2 4 6 8 10 25 50 75 100 125 150 175 V Gate -to -Source Voltage (V) StartingJT Junction Temperature (°C) GS, Fig 12. On-Resistance
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paper.pdf
target-strength. Smaller objects are supposed to be measurement errors. 300 right left n250 i 0° l200 e −30° 30° o150 - o100 −60° 60° c 50 0 60 48 36 24 12 12 24 36 48 60 0 15 30 45 60 75 90 105 120 135 150 distance / cm distance / cm (a) Smoothed cross-correlation of the signals. (b) echo-intensity
in „Simulation mit Audiosignale“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
25RIA-IR.pdf
Reapplied a 300 a Rated V Reapplied s s 300 RRM n 275 n O O v e 275 a 250 a W W 250 e 225 e S i 225 l 200 l a a 200 k 25RIA Series H 25RIA Series a 175 a 175 P (1400 to 1600V) P (1400 to 1600V) 150 150 1 10 100 0.01 0.1 1 Number Of Equal Amplitude Half Cycle Current Pulses (N) Pulse Train Duration (s)
in „Unbekannter Thyristor dringend gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
flipdot.pdf
L180 L181 L182 L183 L184 L185 L186 L187 L188 L189 L190 L191 L192 L193 L194 L195 L196 L197 L198 L199 L200 L201 ROW_6A R348 R350 R352 R354 R356 R358 R360 R362 R364 R366 R368 R370 R372 R374 R376 R378 R380 R382 R384 R386 R388 R390 R392 R394 R396 R398 R400 R402 ROW_6B R349 R351 R353 R355 R357 R359 R361 R363
in „Flipdot Matrix - FP2800A“ · Mikrocontroller und Digitale Elektronik ·
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PDF
flipdot.pdf
D360 D362 D364 D366 D368 D370 D372 D374 D376 D378 D380 D382 D384 D386 D388 D390 D392 L197 L198 L199 L200 L201 L202 L203 L204 L205 L206 L207 L208 L209 L210 L211 L212 L213 L214 L215 L216 L217 L218 L219 L220 L221 L222 L223 L224 ROW_7A D393 D395 D397 D399 D401 D403 D405 D407 D409 D411 D413 D415 D417 D419 D421
in „Flipdot Matrix - FP2800A“ · Mikrocontroller und Digitale Elektronik ·
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G5177C.pdf
I w aveform IN OUT L IN OUT L VIN2V/div VIN3V,OUT=0A V IN2V/div VIN3 V,OUT=1 LX 2V/div LX 2V/div L 200mA/div IL1A/div VOUT50m V/div V OUT0mV /div ▯ Time 1µs/div Time 1µs/div f b ▯ VIN ,VOUT , L W aveform V IN OUT, L W aveform o y ▯ VIN2V/div VIN3.5V,OUT=0A V IN2V/div ▯ VIN3.5V,OUT=1A g R LX 2V/div ▯
in „Boostconverter hat eine viel zu geringe Ausgangsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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LTZ1000afe_reference.pdf
ALONE V µ G 70 ( 350 ( A S I C 60 O 300 O E 50 E 250 E IZ= 0.5mA A A ZENER CURRENT = 0.5mA A O 40 L200 L V V V E 30 R150 R E N100 N Z 20 ZENER WITH KELVIN Z ZENER CURRENT = 4mA Z 10 SENSED Q1 50 0 0 0 0.5 1.0 1.5 2.0 2.53.0 3.5 4.0 4.5 5.0 0.1 1 10 100 0 10 20 30 40 50 60 ZENER CURRENT (mA) FREQUENCY
in „Elektronikbuch“ · Offtopic ·
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PDF
BUW84.PDF
half-sinewave voltage (curve tracer). MGE239 handbook, halfpage handbooC, halfpage + 50 V (mA) 100 to 200 250 L 200 horizontal oscilloscope 100 vertical 6 V 300 1 0 V (V) min CE 30 to 60 Hz MGE252 VCEOsust Fig.2 Test circuit for collector-emitter Fig.3 Oscilloscope display for collector-emitter sustaining voltage
in „Hochspannung Regeln für eine Bildverstärker Röhre“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Infineon-IRFHS8342-DataSheet-v01_01-EN.pdf
vs. Gate Voltage Fig 13. Typical On-Resistance vs. Drain Current 600 500 ) W r 400 e o P s 300 u P l 200 i S 100 0 1E-5 1E-4 1E-3 1E-2 1E-1 1E+0 Time (sec) Fig 14. Typical Power vs. Time Driver Gate Drive P.W. D.U.T + P.W. Period D =Period V =10V CircuitLayoutConsiderations GS • Low Stray Inductance •
in „IC identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DP-Serie_d.pdf
Anzeigebereich DPA 14 DPA 20 Eingang M 31 3½-stellig –100,0...+199,9 °C 30 3 -stellig –199 ... 999 Eingang L –200...+800 °C DPA 25 31 3½ -stellig –1999 ... +1999 –148...+392 °F Eingang A 40 4 -stellig –1999 ... 9999 – 96 x 24 mm –328...+1472 °F 41 4½ -stellig* –19999 ...+19999 –4 96 x 48 mm Eingang – 144 x 48
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LT3092fb.pdf
10mA l 1.22 1.45 V LOAD ILOAD = 200mA l 1.3 1.65 V Current Limit VIN 5V, V SET = 0V, OUT = –0.1V l 200 300 mA Reference Current RMS Output Noise (Note 5) 10Hz ≤ f ≤ 100kHz 0.7 nA RMS Ripple Rejection f = 120Hz, RIPPLE = 0.5VP-P LOAD = 0.1A, 90 dB CSET = 0.1μF, OUT= 2.2μF f = 10kHz 75 dB f = 1MHz 20
in „Konstantstromquelle LT3092 - Widerstandswahl“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RFM12_Packet_asm.pdf
; (1) f-Start = 2012,500 MHz (-479,5 /0,125) ldi SwpOscH,$2F ; (1) = 12264 dez = 2FE8 hex ldi TmpL,200 ; (1) Festfrequenz-Stufen, (80 pro Umdr.) mov FrqStp,TmpL ; (1) 80*125kHz = 10 MHz ldi TmpL,200 ; (1) Sweep-Step ( 39 Stufen ) mov SwpStp,TmpL ; (1) 200*125kHz = 25 MHz rjmp SpkLp1 AmaLoop: ldi SwpOscL
in „RFM12 - Empfangsstärke“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XMEGA-A3BU_XPLAINED_Design_Documentation_rev2.PDF
current typ I1 500nA A BT200 High power mode of oscillator -> backup system current typ A VCC_MCU_P3V3 L200VCC_ANA_MCU_P3V3 CD075014 1X2 680nA L0 1 P20 2 COIN-CELL BLM15BB221SN1 This header can be used to 11 201 CR1220 Theoretical battery lifetime when main power is absent the 01C2000 the backup system or
in „LED toggeln mit ATxmega256A3BU“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SPS9540_KM_G_011017.pdf
100k fuerI 204 15 /I_REF U-Reglr R 220 C2 12 U-Reglr R214 R218 10k 2k2 10k 2k2 R215 56n R 221 1 M L200 100k 2 1 C 211 C226 n.b. 10uH R 10u 2 8 - R231 A 1 100 R216 R 235 3 C218 1k 15k + IC 2 04 4 LM 358 9 C217 C216 100p 2 . 100p kr R s 100p ker ker R 219=1kbei9540 R219=2k2 bei040 R238 100k -Ieglr R229
in „*Netzteil die ZWEITE*“ · Mikrocontroller und Digitale Elektronik ·
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PDF
but34rev.pdf
Cycle x 2%. 2 Motorola Bipolar Power Transistor Device Data BUT34 TYPICAL CHARACTERISTICS ) 400 T L 200 ( E G 4 A 100 L G O N 50 V 3 E 30 E R T U 20 M C – 2 C =40A D 10 R ,E T IC=20A hF 5 C L 1 T =25⋅C 3 TC=25⋅C O C 2 V =5.0V , CE E 1 VC 0 1 2 3 4 7 10 20 30 40 60 0.1 0.2 0.3 0.5 1 2 3 5 7 10 IC,COLLECTORCURRENT
in „Leistungs-Transistor Alternative“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IRF3205Z.pdf
IRF3205ZS/L 15V ) 350 J D ( TOP 27A g 300 47A L DRIVER e BOTTOM 66A VDS n e 250 h RG D.U.T + n - VDD l 200 AS A v 20GS A 150 tp 0.01Ω l u e 100 Fig 12a. Unclamped Inductive Test Circuit g V i (BR)DSS S, 50 p S EA 0 25 50 75 100 125 150 175 StartingJT , Junction Temperature (°C) AS Fig 12c. Maximum Avalanche
in „Geiger Counter Sparkfun“ · Mikrocontroller und Digitale Elektronik ·
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PDF
T2117_zero_switch.pdf
4768B–INDCO–10/05 T2117 Figure 5-1. Output Pulse Width 10.00 V = 230 V ~ Mains ) s 1.00 ( p t 0.10 I (mA) L 200 100 50 0.01 10 100 1000 10000 P (W) Figure 5-2. Synchronization Resistance 2000 VMains 230 V ~ 1600 Ω k 1200 (c y s R 800 400 0 0 200 400 600 800 1000 1200 1400 t (µs) p 5 4768B–INDCO–10/05 6. Supply
in „Suche Steuerung für 2kW Heizwendel (230V)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RK028ML02.pdf
Values Item Sym. Unit Note Min. Typ. Max. 1)Contrast Ratio C/R 300 450 - FIG.1 2)Module Luminance L 200 240 - cd/m² FIG.1 3)Response time Tr+Tf - 25 40 ms FIG.2 θ T 30 40 - θB 50 60 - 4)Viewing Angle Degree FIG.3 θ 50 60 - L θR 50 60 - Wx 0.287 0.302 0.317 Wy 0.324 0.339 0.354 Rx 0.605 0.620 0.635 Ry
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PDF
lt1305-1504096.pdf
Switch Saturation Voltage 1.250 400 300 TA= 25°C ISW = 1A 1.245 V350 V 1.240 ( (250 G300 G )1.235 L L200 (1.230 V250 V A N N L1.225 T200 T150 V R R B1.220 T150 T L1.215 S S100 C100 C 1.210 I I 50 1.205 S 50 S 1.200 0 0 –50 –25 0 25 50 75 100 0 0.2 0.40.6 0.8 1.0 1.21.4 1.6 1.8 2.0 –50 –25 0 25 50 75 100
in „[V] Konvolut (16) ältere LinearTech StepUps LT1302, 1305, SO8 (10€)“ · Markt ·
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PDF
16389fg.pdf
100 V/mV VS= 5V, O = 500mV to 4.5V,LR = 10k 400 1500 V/mV 0°C ≤ A≤ 70°C l 250 V/mV –40°C ≤ A ≤ 85°C l 200 V/mV VOL Output Voltage Swing Low VS= 3V, No Load l 3 8 mV VS= 3V, SINK 5mA l 250 450 mV V = 5V, No Load l 3 8 mV V = 5V, I = 10mA l 500 700 mV S SINK VOH Output Voltage Swing High VS= 3V, No Load
in „Alternative gesucht zu OpAmp“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
KWH080KQ03-F01.pdf
Note 2 Color chromaticity Note 5 W Y 0.28 0.33 0.38 - Note 6 NTSC Sa (60) (65) - % Note 8 Luminance L 200 250 - cd/m² Note 6 Luminance uniformity YU 70 75 - % Note 7 Test Conditions: 1. V CC.3V, I L180mA (Backliyht current), the ambient temperature is 25℃. 2. The test systems refer to Note 2. Part No:
in „NXP verschenkt ARM-Chips“ · Mikrocontroller und Digitale Elektronik ·
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PDF
A200-DS_L6920D.pdf
The synchronous switch body diode causes a para- load load_lim Trace1: V out(100mV~/div) Trace4: I L200mA/div). sitic path between power supplyand output that can't Time div.: 5 µs/div be avoided also in shutdown. 4.3 Low battery detection The L6920 includes a low battery detector compara- tor. Threshold
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PDF
IRFR2307Z.pdf
TOP g 3.4A L DRIVER e 400 4.6A VDS E BOTTOM 32A e c RG D.U.T + a 300 -VDD a IAS A A 2GS e tp 0.01Ω l 200 P l Fig 12a. Unclamped Inductive Test Circuit g V S 100 (BR)DSS , tp A E 0 25 50 75 100 125 150 175 Starting J , Junction Temperature (°C) AS Fig 12c. Maximum Avalanche Energy Fig 12b. Unclamped Inductive
in „MOSFET IRFR2307Z“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
XLamp7090XR-E.pdf
xlamp 0 25 50 75 100 125 150 Ambient Temperature (°C) Relative Flux vs. Current (T = 25˚C) J )250 ( x l200 F s u150 n Green i m100 White & Blue L v 50 t l Typical Spatial Radiation Pattern R 0 0 200 400 600 800 1000 Forward Current (mA) Typical Spatial Distribution 120 ) % ( t 100 i n t 80 n I s White o
in „LiPo Zelle Impulsbelastung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datenblatt-505399-panasonic-aqz204d-photomos-relais-1-st-1-schliesser-400-vdc-400-vac-450-ma-polzahl-4.pdf
Riso 1,000 MΩ 500 V DC VIN= 5 V Maximum operating Maximum — 0.5 cps Duty factor = 50% speed I×V L= 200 (VA) Vibration resistance Minimum — 10 to 55 Hz at double amplitude of 3 mm 2 hours for 3 axes 2 Shock resistance Minimum — 4,900 m/s {500 G}1 ms 3 times for 3 axes Recommendable Operate voltage V
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PDF
505399-panasonic-aqz204d-photomos-relais-1-st-1-schliesser-400-vdc-400-vac-450-ma-polzahl-4.pdf
Riso 1,000 MΩ 500 V DC VIN= 5 V Maximum operating Maximum — 0.5 cps Duty factor = 50% speed I×V L= 200 (VA) Vibration resistance Minimum — 10 to 55 Hz at double amplitude of 3 mm 2 hours for 3 axes 2 Shock resistance Minimum — 4,900 m/s {500 G}1 ms 3 times for 3 axes Recommendable Operate voltage V
in „Relais ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
505399_panasonic_aqz204d_photomos_relais_1_st_1_schliesser_400_vdc.pdf
Riso 1,000 MΩ 500 V DC VIN= 5 V Maximum operating Maximum — 0.5 cps Duty factor = 50% speed I×V L= 200 (VA) Vibration resistance Minimum — 10 to 55 Hz at double amplitude of 3 mm 2 hours for 3 axes 2 Shock resistance Minimum — 4,900 m/s {500 G}1 ms 3 times for 3 axes Recommendable Operate voltage V
in „230VAC Max 200mA mit ESP32 3,3VDC schalten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
505399-panasonic-aqz204d-photomos-relais-1-st-1-schliesser-400-vdc-400-vac-450-ma-polzahl-4.pdf
Riso 1,000 MΩ 500 V DC VIN= 5 V Maximum operating Maximum — 0.5 cps Duty factor = 50% speed I×V L= 200 (VA) Vibration resistance Minimum — 10 to 55 Hz at double amplitude of 3 mm 2 hours for 3 axes 2 Shock resistance Minimum — 4,900 m/s {500 G}1 ms 3 times for 3 axes Recommendable Operate voltage V
in „MOSFET 230V AC / 3V3 Arduino“ · Mikrocontroller und Digitale Elektronik ·
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PDF
photodiode_frontends.pdf
shot-noise level was published.1In the extremely slow—its 3 dB corner f = c acceptable, we’ll choose R L= 200 mV/2 intervening years, in my work with ambi- 1/(2 R L )d1600Hz,afactorof 600slow- A = 100 k , raising fcto 16 kHz. This is ent-light systems, I've identified a similar erthanourdesignpoint(applyingreverse
in „Photodioden-Frontend hohe Empfindlichkeit, mittlere Bandbreite?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AT070TN92_PV02.pdf
X 0.26 0.31 0.36 - Note 2 Color chromaticity θ=Φ=0° Note 5 Note 6 W Y 0.28 0.33 0.38 - Luminance L 200 250 - cd/m² Note 6 Luminance uniformity YU 70 75 - % Note 7 Test Conditions: 1. DV DD.3V, I L180mA (Backlight current), the ambient temperature is 25℃. 2. The test systems refer to Note 2. The copyright
in „7 Zoll LCD Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2MBI1200XXE120P-50.PDF
600V, I C 1200A, Tvj 25°C 800 20 ] ] F [600 15 ] [ Cies C V [ r100.0 V400 CE 10 G C : V V s g GE : o l200 5 g C v l e 10.0 r 0 0 o i t r : C oes m-200 -5 t c E i n - E i 1.0 t-400 -10 - a c t p C res l-600 -15 a C C G -800 -20 0.1 -6 -4 -2 0 2 4 6 0 10 20 30 Collector - Emitter voltage: V [V] Gate charge
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PDF
Schematic_Prints__1_.pdf
DAC0A 19 ADC6 5 VDDIO1 GNDIO1 6 20 ADC8 2 2 2 35 36 PA21/GPIO21/ADCIN10/AC0BN0/AC0BN0/DAC0B 21 ADC9 L200 51 VDDIO2 GNDIO2 52 PA22/GPIO22/ADCIN11/AC0AN0/PEVC-PAD_EVT[4]/MACB-SPEED/MDO[2] 22 ADC10 C202 C203 C204 C205 VDDIO3 GNDIO3 PA23/GPIO 23/ADCIN12/AC0BP0/PEVC - PAD_EVT [5]/MACB - WOL/MDO[3] 100nF 10nF
in „Fehler auf Platine finden“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
VNS1NV04DTR.pdf
rr Reverse Recovery Time SD =0.5A; dI/dt=6A/ s 205 ns Q Reverse Recovery Charge 100 C rr VDD=30V; L=200 H RRM Reverse Recovery Current (see test circuit, figure 2) 0.75 A PROTECTIONS (-40°C < T j< 150°C, unless otherwise specified) Symbol Parameter Test Conditions Min Typ Max Unit Ilim Drain Current
in „[V] Highside-Schalter“ · Markt ·
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PDF
OPA642U_20MHz__BB.pdf
HARMONIC DISTORTION –65 –65 G = +2 R = 100 G = +2 ) L ) B –70 B –70 ( ( n –75 n –75 t t t t i –80 R L 200 i –80 D D RL= 100 , 200 , or 500 n –85 n –85 o o r RL= 500 r H –90 H –90 d d 2 3 –95 –95 –100 –100 0.1 1 10 0.1 1 10 Output Voltage Swing (Vp-p) Output Voltage Swing (Vp-p) 10MHz 2ND HARMONIC DISTORTION
in „Oszilloskop mit AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm35.pdf
+ + OUT HEAT LM35 VOUT= 10 mV/°C (AMBIENT1 °C)FINS TWISTED PAIR 6.8 k 200 FROM + 2 °C TO + 40 °C L 200 5% 1% 1% L VOUT= 10 mV/°C (AMBIENT 1 °C) FROM + 2 °C TO + 40 °C + 6.8 k OUT HEAT LM35 5% 200 FINS OR 10K RHEOSTAT 1% L 200 TWISTED PAIR FOR GAIN ADJUST 1% Figure 16. Two-Wire Remote Temperature Sensor
in „Signalkonverter Ladegerät“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lm35.pdf
+ + OUT HEAT LM35 VOUT= 10 mV/°C (AMBIENT1 °C)FINS TWISTED PAIR 6.8 k 200 FROM + 2 °C TO + 40 °C L 200 5% 1% 1% L VOUT= 10 mV/°C (AMBIENT 1 °C) FROM + 2 °C TO + 40 °C + 6.8 k OUT HEAT LM35 5% 200 FINS OR 10K RHEOSTAT 1% L 200 TWISTED PAIR FOR GAIN ADJUST 1% Figure 16. Two-Wire Remote Temperature Sensor
in „Linearisierung NTC und Anpasssung“ · Analoge Elektronik und Schaltungstechnik ·
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ltc6812-1.pdf
Rising Edge l 25 ns 1 t2 SDI Hold Time after SCK Rising Edge l 25 ns t3 SCK Low tCLK = 3 + 4 ≥ 1µs l 200 ns t SCK High t = t + t ≥ 1µs l 200 ns 4 CLK 3 4 t5 CSB Rising Edge to CSB Falling Edge l 0.65 µs t6 SCK Rising Edge to CSB Rising Edge (Note 4) l 0.8 µs t7 CSB Falling Edge to SCK Rising Edge (Note
in „Differenzverstärker INA105“ · Analoge Elektronik und Schaltungstechnik ·
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irs2011pbf.pdf
vs.SupplyVoltage www.irf.com 10 IRS2011(S)PbF ) ) A500 Aµ00 ( t( n n e400 r400 u u C C e300 g300 a k a a e200 L200 y l Max. p p u100 Max. u100 S t e s f 0 f 0 O -50 -25 0 25 50 75 100 125 O 50 100 150 200 250 300 Temperature( C) V BoostVoltage(V) B Figure 12A.Offset SupplyLeakage Figure 12B.Offset SupplyLeakage
in „H-Brücke - 30A - MOSFET“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
504925-panasonic-aqz202-photomos-relais-1-st-1-schliesser-60-vdc-60-vac-3000-ma-polzahl-4.pdf
iso 1,000 MΩ 500 V DC Maximum operating IF = 10 mA Maximum — 0.5 cps Duty factor = 50% speed I×V L= 200 (VA) Vibration resistance Minimum — 10 to 55 Hz at double amplitude of 3 mm 2 hours for 3 axes Shock resistance Minimum — 4,900 m/s 2{500 G} 1 ms 3 times for 3 axes Note: Recommendable LED forward
in „Suche Halbleiterelement als Ersatz für Relai in Radar-Bewegungsmelder“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
504925-panasonic-aqz202-photomos-relais-1-st-1-schliesser-60-vdc-60-vac-3000-ma-polzahl-4.pdf
iso 1,000 MΩ 500 V DC Maximum operating IF = 10 mA Maximum — 0.5 cps Duty factor = 50% speed I×V L= 200 (VA) Vibration resistance Minimum — 10 to 55 Hz at double amplitude of 3 mm 2 hours for 3 axes Shock resistance Minimum — 4,900 m/s 2{500 G} 1 ms 3 times for 3 axes Note: Recommendable LED forward
in „Welche Eigenschaften haben Solid State Relais, SSR ?“ · Offtopic ·
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PDF
504925-panasonic-aqz202-photomos-relais-1-st-1-schliesser-60-vdc-60-vac-3000-ma-polzahl-4.pdf
iso 1,000 MΩ 500 V DC Maximum operating IF = 10 mA Maximum — 0.5 cps Duty factor = 50% speed I×V L= 200 (VA) Vibration resistance Minimum — 10 to 55 Hz at double amplitude of 3 mm 2 hours for 3 axes Shock resistance Minimum — 4,900 m/s 2{500 G} 1 ms 3 times for 3 axes Note: Recommendable LED forward
in „Kann diese Schaltung den 74HC132 killen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
504925-panasonic-aqz202-photomos-relais-1-st-1-schliesser-60-vdc-60-vac-3000-ma-polzahl-4.pdf
iso 1,000 MΩ 500 V DC Maximum operating IF = 10 mA Maximum — 0.5 cps Duty factor = 50% speed I×V L= 200 (VA) Vibration resistance Minimum — 10 to 55 Hz at double amplitude of 3 mm 2 hours for 3 axes Shock resistance Minimum — 4,900 m/s 2{500 G} 1 ms 3 times for 3 axes Note: Recommendable LED forward
in „Relais ersetzen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
4_5902390009465407372.pdf
iso 1,000 MΩ 500 V DC Maximum operating IF = 10 mA Maximum — 0.5 cps Duty factor = 50% speed I×V L= 200 (VA) Vibration resistance Minimum — 10 to 55 Hz at double amplitude of 3 mm 2 hours for 3 axes Shock resistance Minimum — 4,900 m/s 2{500 G} 1 ms 3 times for 3 axes Note: Recommendable LED forward
in „CD4066 als Relaisersatz?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
OK.pdf
product. REFLOW PROFILE Max. Ramp−up Rate = 3°C/S Max. Ramp−down Rate = 6°C/S TP 260 240 tP T 220 L 200 Tsmax ÉÉÉÉÉÉ tL 180 Preheat Area 160 ÉÉÉÉÉÉ ) Tsmin 5 140 ÉÉÉÉÉÉ e s u 120 a 100 e p 80 e T 60 40 20 0 120 240 360 Time 25°C to Peak Time (seconds) Profile Freature Pb−Free Assembly Profile Temperature
in „Defekte Analoge Strom-Ausgangskarte 0/4-20 mA Bauteilsuche“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2599932.pdf
.084-.114 .020 .500 Tin Plated 4.00-6.50 2.13-2.90 7000-13000 0.51 12.70 Brass 200/202 1601771-1 L200/202N20TB 14 Ridges T W AWG/ Wire Range CMA Stock Mat’l Material Toolset Part Descriptive mm 2 Solid Dia. Range Thk. (T) Width (W) Number X-ref 22-19 .024-.036 .012 .330 0.38-0.60 0.61-0.91 600-1300
in „IDC connector für Kupferlackdraht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Glyn_2_83_C0280QGMA-T_Tentative_Spec_V0_1_-_GLYN.pdf
No.: 6 Electro-Optical Characteristic: Items Symbol Min Typ. Max Unit Remark 2 Operating Luminance L 200 Cd/m (1)(5) 30% pixels Power Consumption Pon - TBD - mW on (1) Current Icc - TBD- mA Full on (1) Response Time Tres - - 50 us (2) CIEx (White) Wx - 0.31 - - (5) CIEy(White) Wy - 0.33 - - (5) Color
in „[V] AM OLED 2,8inch Display C0280QGMA-T von CMEL“ · Markt ·
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PDF
ca3080-a.pdf
800 ( -55 C Ω E 700 ( 10 G E T 600 o C O 25 C N V 500 T 1 S I I 400 E B o R E 300 125 C T I P 0.1 L 200 I P A 100 0.01 0 0.1 1 10 100 1000 0.1 1 10 100 1000 AMPLIFIER BIAS CURRENT (µA) AMPLIFIER BIAS CURRENT (µA) FIGURE 26. INPUT RESISTANCE vs AMPLIFIER BIAS CURRENT FIGURE 27. AMPLIFIER BIAS VOLTAGE
in „Dimensionierung eines OTA in CMOS-Technologie“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ltc485.pdf
Receiver Short-Circuit Current 0V V V 7 85 mA OSR O CC PLH Driver Input to Output RDIFF= 54 , CL1 C =L200pF, 10 30 50 ns PHL Driver Input to Output (Figures 3 and 5) 10 30 50 ns SKEW Driver Output to Output 5 10 ns r f t Driver Rise or Fall Time 3 15 25 ns ZH Driver Enable to Output High CL= 100pF (Figures
in „IR mit langer Leitung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX4465-MAX4469.pdf
5 - V OUT= VCC2 6 ( 4 400 4 A I-20 M M 100 M A O 200 ) I ) p E-40 V K N ( E 10 H O 0 I --60 V T L -200 1 N A-80 C -400 0.1 -100 -600 -40 -15 10 35 60 85 0.1 1 10 100 1000 -40 -15 10 35 60 85 FREQUENCY (kHz) TEMPERATURE ( C° TEMPERATURE ( °) OUTPUT VOLTAGE SWING HIGH OUTPUT VOLTAGE SWING LOW COMMON-MODE
in „Funktioniert denn kein Mikrofon-Vorverstärker?!?“ · Analoge Elektronik und Schaltungstechnik ·
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gro_es_Datenblatt_Display.pdf
time. 4 Low Endurance test applying the electric-20 ℃ temperature stress under low temperature for a l200 hrs operation time. 5 High Endurance test applying the high 50 ℃ , 90% MIL-202E-103B temperature and high humidity storage JIS-C5023 temperature Humidity for a long time. RH storage 96 hrs 6 High Endurance
in „HD44780 kompatibles Display - Initialisierung klappt nicht“ · Mikrocontroller und Digitale Elektronik ·