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PDF
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230 155 7.5 ✓ PTCEL17R501TxE401 500 30 700 1000 260 50 2.3 230 155 10.0 ✓ PTCEL17R102UxE404 1000 30 800 1200 500 35 2.3 230 155 10.0 Note (1)Replace the x by B for bulk or T for tape and reel OUTLINE AND DIMENSIONS D T BC 120R H1 EL H2 L d F COMPONENT DIMENSIONS in millimeters SYMBOL PTCEL13 PTCEL17 D
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PDF
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DATA SHEET SURFACE-MOUNTCERAMIC MULTILAYERCAPACITORS Class 1, NP0 50 V TO 500 V 0 V 0 2 6 l J n t c c p t d r P Phycomp Product specification Surface-mount ceramic Class 1, NP0 multilayer capacitors 50 V to 500V FEATURES QUICK REFERENCE DATA • Six standard sizes DESCRIPTION VALUE • High capacitance
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Off s MAX846A EV kit is shipped configured for charging two Power-Good Function : Li-Ion cells at 800mA from a 10V power source. Surface-Mount Components M The MAX846A EV kit is a fully assembled and tested Fully Assembled and Tested A surface-mount printed circuit board. X ____________________Component
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tPHL 5.0 — 285 570 ns ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ Oscillator Input to Debounce Outputs 10 — 120 240 Î ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ Î Î Î Î 15 — 95 190 ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ tPLH
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A ILRMS Terminal Current Limit 160 A ICM TC= 25°C, 1ms 700 A SSOA VGE 15V, T VJ125°C, R =G1Ω ICM= 320 A (RBSOA) Clamped Inductive Load @ 0.8 • V G CES C Tab P T = 25°C 1000 W E C C T -55 ... +150 °C TJ 150 °C G = Gate E = Emitter JM C = Collector Tab = Collector T -55 ... +150
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PDF
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A ILRMS Terminal Current Limit 160 A ICM TC= 25°C, 1ms 700 A SSOA VGE 15V, T VJ125°C, R =G1Ω ICM= 320 A (RBSOA) Clamped Inductive Load @ 0.8 • V G CES C Tab P T = 25°C 1000 W E C C T -55 ... +150 °C TJ 150 °C G = Gate E = Emitter JM C = Collector Tab = Collector T -55 ... +150
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NHD‐7.0‐800480WF‐CTXI#‐T TFT (Thin‐Film‐Transistor) Color Liquid Crystal Display Module NHD‐ Newhaven Display 7.0‐ 7.0” Diagonal 800480‐ 800xRGBx480 pixels WF‐ Model C‐ Built‐in Controller T‐ White LED backlight X‐ TFT I‐ 6:
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T L B m N k T s A m E w I w L N O Mid-Range-Distanzsensoren Dx60, DT60 DT60-N111B Mid-Range-Distanzsensoren Dx60, DT60 Typ > DT60-N111B Artikelnr. > 1025844 Auf einen Blick • Messbereich bis 5.300 mm •
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Sand (160mA – 16A) 216.500P .500 250 0.866 0.169 Terminal Strength: 216.630P .630 250 0.465 0.179 216.800P .800 250 0.295 0.288 MIL-STD-202F Method 211A, Test Condition A 216001.P 1 250 0.237 0.180 2161.25P 1.25 250 0.153 0.477 Solderability: Reference IEC 60127 Second Edition 2003-01 Annex A 21601.6P 1.6
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PDF
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Sand (160mA – 16A) 216.500P .500 250 0.866 0.169 Terminal Strength: 216.630P .630 250 0.465 0.179 216.800P .800 250 0.295 0.288 MIL-STD-202F Method 211A, Test Condition A 216001.P 1 250 0.237 0.180 2161.25P 1.25 250 0.153 0.477 Solderability: Reference IEC 60127 Second Edition 2003-01 Annex A 21601.6P 1.6
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life time LLMin.15000 hrs Æ 30000 hrs 3 / 27 Version 2.3 Issued Date: Apr. 20, 2010 Model No.: G070Y3-T01 Approval 1. GENERAL DESCRIPTION 1.1 OVERVIEW G070Y3-T01 is a 6.95inch TFT Liquid Crystal Display module with a LED backlight unit and a-50-pin-and-1ch-TTL interface. This module supports 800 (R.G.B
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5 0 — 0.5 1000 N V = 1V P CE T B = 3.0mA N N 0.4 E R I = 2.5mA N R B A 100 p C G t R 0.3 B = 2.0mA T a O E x C R a E B = 1.5mA U l L 0.2 C O C 10 S , B = 1.0mA , l A F c IC 0.1 h o B = 0.5mA n 1 T 0 0.4 0.8 1.2 1.6 2.0 0.1 1 10 100
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induktiver Schaltlast RL RL RL C UB R UB V UB R L i L i L i Stromverlauf i i i 1000 an der Last Glimm- ) 800 ( Schauer- 0 1 2 3 t 0 1 2 3 t 0 1 2 3 t g 600 u Lichtbogen- n 400 entladung Spannungs- U U U a verlauf an der Last U U U S 200 B B B 0 1 3 t 01 3 t 0 1 3 t 100 200 300 400 500 600 Zeit (µs) Spannungs
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induktiver Schaltlast RL RL RL C UB R UB V UB R L i L i L i Stromverlauf i i i 1000 an der Last Glimm- ) 800 ( Schauer- 0 1 2 3 t 0 1 2 3 t 0 1 2 3 t g 600 u Lichtbogen- n 400 entladung Spannungs- U U U a verlauf an der Last U U U S 200 B B B 0 1 3 t 01 3 t 0 1 3 t 100 200 300 400 500 600 Zeit (µs) Spannungs
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. ÎÎÎ4. f = |h | • fÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ T fe test ) E 1.0 I L M R O 0.8 ( N O T 0.6 P S I D R 0.4 E W O ,) X0.2 A ( D / PD 0 0 25 50 75 100 125 150 175 200 T , CASE TEMPERATURE (°C) C Figure 1. Power Derating http://onsemi.com 2 2N3442 ACTIVE
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-800MH. Figure2 CIPOS™Nano internalelectricalschematic Table 2Provide theabsolutemaximumratings oftheIRSM005-800MH. Table 2 AbsoluteMaximumRatingsofIRSM005-800MH Symbol Description Min Max Unit VDS MOSFETDrain-to-Source
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2N7002.pdf
www.supertex.com 2N7002 Thermal Characteristics D ID Power Dissipation θ θ I † I Package (continuous)† (pulsed) @T A 25 C jc ja DR DRM (mA) (mA) (W) ( C/W) ( C/W) (mA) (mA) TO-236AB 115 800 0.36 200 350 115 800 Notes: † I (continuous) is limited by max rated T. D j Electrical Characteristics (T = 25°C unless otherwise
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ONS21800604.pdf
value of significantlyrespondtoheatsurgesgenerated A 0.05 transient resistance at pime t . in the diode as a result of pulsed operation M once steady-state conditions are achieved. E 0.03 Usingthe measured value of Tthe junction T L T 0.02 temperature may be determined by: I T = T + DT S 0.01 J L JL A 0.2 0.5 1.0 2.0 5.0 10 20 50 100 200 500 1.0 k 2.0 k 5.0 k 10 k 20 k T ( t, TIME (ms) r Figure 5. Thermal Response TYPICAL CHARACTERISTICS 100 250 90 225 A ( 80 A 200 T ( E 70 T 175 R E C 60 R 150 R 50 U V G 125 O 40 I 100 A L R 30 H 75 , , O 20 IH 50 I 10 25 0 0 -60 -40
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PDF
ledtau.pdf
505.79249 ±1.13322 k 0.0028 ±0.00006 k 0.00442 ±0.00005 0.002 0.002 0.000 0.000 -0.002 -0.002 600 800 1000 1200 1400 1600 1800 400 600 800 1000 1200 1400 1600 time / nanoseconds time / nanoseconds Fit mit Zeitkonstante 223 ns Fit mit Zeitkonstante 311 ns 0.016 rot L 0.014 0.012 0.010 0.008 a Data: YEL20A2
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PDF
ledtau.pdf
505.79249 ±1.13322 k 0.0028 ±0.00006 k 0.00442 ±0.00005 0.002 0.002 0.000 0.000 -0.002 -0.002 600 800 1000 1200 1400 1600 1800 400 600 800 1000 1200 1400 1600 time / nanoseconds time / nanoseconds Fit mit Zeitkonstante 223 ns Fit mit Zeitkonstante 311 ns 0.016 rot L 0.014 0.012 0.010 0.008 a Data: YEL20A2
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PDF
TIC106N.pdf
TC20AA TC20AB 1 VAA = 6 V V AA= 6 V A RL= 100 Ω R L 100 Ω µ t ≥ 20 µs - 0·8 R = 1 kΩ t p(g) e GK e a t ≥ 20 µs r l p(g) u 100 V 0·6 r e g g i r T T e t 0·4 a a G - -T G IG V 0·2 10 0 -50 -25 0 25 50 75 100 125 -50 -25 0 25 50 75 100 125 TC- Case Temperature - °
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7212-910.pdf
PICKUP ORIENTATION OF TRANSDUCER IN EXTERNAL OUT MAGNETIC FIELD FOR MAXIMUM PICKUP OUT D D E E F F T T N N G G M M A A R R T T E E 3 Connector Grounding/Insulating In order to suit any grounding scheme, reverb tank connectors come in all combinations of input and output insulated and non-insulated phono
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HORIZONTATHSAT⎯ TIME6 ⎯ nCPH HSYNC ACTIVE TIME THA ⎯ 800 ⎯ O TCPH VSYNC PULSE WIDTH L TWV 1 225i⎯n H VSYNC ACTIVE TIMEI TVS ⎯ 480t⎯ T. N T rVA ⎯ ro ⎯ tiH E f Co iz FID zd e hor N oi gi aut CO th ol ut Au chn th Te wi ay te sl iu Di it ng td rgi no m e Do
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Integrated 1roducts For free samples and the latest literature, visit www.maxim-ic.com or phone 1-800-998-8800. For small orders, phone 1-800-835-8769. Monolithic Voltage-Controlled Oscillators ABSOLUTE MAXIMUM RATINGS 4 V to GND.................................................Operating Temperature
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Module LED CN1 Scan LCD Panel Driver Source Driver Input FPC CN2 4.2 Pixel Format 1,1 1,2 1,3 1,4 1,800 2,1 LCD Display Area 1 Pixel 480 Lines R G B R 480,1 480, R 800 800 pixel (2400 Dots) The information contained in this document is the exclusive property of HannStar Display Corporation. It shall not
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ms5561c.pdf
error vs supply voltage (typical) 1 0.8 0.6 0.4 ) a 0.2 m r 1000mbar r e 0 800mbar r 2.2 2.4 2.6 2.8 3 3.2 3.4 3.6 300mbar s r P -0.2 -0.4 -0.6 -0.8 -1 Voltage (V) Temperature error vs supply voltage (typical) 0.15 0.1 0.05 C ( r r e r 0 t r 2.2 2.4 2.6 2.8 3 3.2 3.4 3.6 e p e
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NTD4963N-D.PDF
Temperature vs. Voltage http://onsemi.com 4 NTD4963N TYPICAL PERFORMANCE CURVES 1200 V10 Ciss V = 0 V T = 25°C ( Q T GS J E 9 1000 A F L 8 ( O E 800 V 7 C C 6 A R I 600 U 5 Qgs Qgd C S P − 4 A 400 T , C E 3 ID= 30 A C oss T T = 25°C 200 G 2 J , 1 VDD = 15 V Crss G VGS = 30 A 0 V 0 0 5 10 15 20 25 30 0
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SFH_7060__Lead__Pb__Free_Product_-_RoHS_Compliant.pdf
25 °C, IF= 20 mA Forward current 1) Relative radiant flux 1) IF= f(VF), single pulse, p = 100 µs, T A 25°C e/ e(20 mA) = f(IF), single pulse,pt = 25µs, TA= 25°C 2016-04-20 9 Version 1.1 SFH7060 Diagrams for infrared emitter 1) Max. permissible forward current IF,max= f(TA), RthJA= 800 K/W Permissible
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PDF
SFH_7060__Lead__Pb__Free_Product_-_RoHS_Compliant.pdf
25 °C, IF= 20 mA Forward current 1) Relative radiant flux 1) IF= f(VF), single pulse, p = 100 µs, T A 25°C e/ e(20 mA) = f(IF), single pulse,pt = 25µs, TA= 25°C 2016-04-20 9 Version 1.1 SFH7060 Diagrams for infrared emitter 1) Max. permissible forward current IF,max= f(TA), RthJA= 800 K/W Permissible
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PDF
Firmware_buglist_2.06.3.pdf
dotted line” or “off”. 12. 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) 13. AC trigger indicator and line wrong. Set ch1, signal
in „TEKWAY DST1xx2B Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BS170-D.PDF
Source Voltage VDS 60 Vdc N−Channel Gate−Source Voltage D − Continuous VGS ±20 Vdc − Non−repetitivp (t ≤ 50 ms) VGSM ±40 Vpk Drain Current (Note) D 0.5 Adc Total Device Dissipation @ T = 25°C P 350 mW G A D Operating and Storage Junction T J stg −55 to °C Temperature Range +150 S Stresses exceeding Maximum
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PDF
FDC638P-D.PDF
DRAIN-SOURCE VOLTAGE (V) t1, TIME (sec) Figure 9. Maximum Safe Operating Area. Figure 10. Single Pulse Maximum Power Dissipation. 1 E C D = 0.5 V AN T T 0.2 R θJ(t) = r(t) +θJA C I R JA= 156 C/W F E 0.1 0.1 θ F R 0.05 E L E A 0.02 P(pk) I R 0.01 L E t1 A T 0.01 2 R T O N SINGLE PULSE T J - TA = P * RθJA(t) , IE ( N Duty Cycle, D = t1/2t r A T0.001 0.0001 0.001 0.01 0.1 1 10 100 1000 t1, TIME (sec) Figure 11. Transient Thermal Response Curve. Thermal
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PDF
BAS116.pdf
Continuous Forward Current Note 1 - 215 mA IFRM Repetitive Peak Forward Current - - 500 Square Wave, T j 25°C Prior to Surge I Non-repetitive Peak Forward tp= 1µs - 4 A FSM Current tp= 1µs 1 A t = 1s 0.5 A p P Total Power Dissipation -T = 25°C, Note 1 -65 250 mW tot amb T Storage Temperature - - +150 stg °C T j Junction Temperature - - 150 Note: 1. Device mounted on a FR4 printed-circuit board. Electrical Characteristics (T = 25 C jnless otherwise specified) Symbol Parameter Conditions Minimum Maximum Unit
in „Schutzbeschaltung für ADC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BAS116.pdf
Continuous Forward Current Note 1 - 215 mA IFRM Repetitive Peak Forward Current - - 500 Square Wave, T j 25°C Prior to Surge I Non-repetitive Peak Forward tp= 1µs - 4 A FSM Current tp= 1µs 1 A t = 1s 0.5 A p P Total Power Dissipation -T = 25°C, Note 1 -65 250 mW tot amb T Storage Temperature - - +150 stg °C T j Junction Temperature - - 150 Note: 1. Device mounted on a FR4 printed-circuit board. Electrical Characteristics (T = 25 C jnless otherwise specified) Symbol Parameter Conditions Minimum Maximum Unit
in „Schutzbeschaltung für ADC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BitstreamQ1.pdf
Vom Zufall zum „quantisierten“ Bitstrom 16.09.2006 Dietrich Marquart Bitstrom „quantisierung“ t bit‘s 1111111111..1 => 1.0 t bit‘s 0000000000..0 => 0.0 Beispiel: 0.5 0 1000 0,0 1,0 Random Takt Bit-Stream Poti A 500 < 100 t1 1 700 t2 0 330 t3 1 200 t4 1 r 800 t5 0 s f 601 t6 0 e 700 t7 Z 0 ....
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Bild
Schaltplan eines HF-Verstärkers T780 / T890 / T1040
BUX81, 0,47, BUX81, 0,47, B250, C3000, 4,7µF, 18K, 100, 18K, 100, 7,6A, Meb 60, 4µF, Heizung, Bei T780+800W, Bei T890+800W, 2x2,5mH, 20, 80, 4 Schwingelemente bei T780, 6 Schwingelemente bei T890, Abstimmwiderstand bei Bedarf, ECO Regler 50-130Ω, Brückenstecker Mes 60, Mes 60, Zusatzwanne, NF 3005,
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A100_MBR20100CT.pdf
Leg) Maximum Instantaneous Forward Voltage (Note 1) F V (F = 10 Amps,CT = 125°C) 0.75 (i= 10 Amps, T = 25°C) 0.85 F C (F = 20 Amps,CT = 125°C) 0.85 (F = 20 Amps,CT = 25°C) 0.95 Maximum Instantaneous Reverse Current (Note 1) R mA (Rated dc Voltage, T = 125°C) 6.0 C (Rated dc VoltageC T25°C) 0.1 1. Pulse
in „SBRF 20100CT Alternative?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TPS_Datasheet.pdf
1500,2000) B(1800) A(1800,3500) A(1500), B(750, 2.2 225 R(7000) A(1800) A(3000) B(900,1200,2500) D(1200) T(2000) 1500,2000),C(1000) A(2500) A(1000,1500) B(1000) 3.3 335 T(1500) A(3500) B(1300) B(750,1500,2000) C(700) D(800) A(1400) A(2000) A(1800) B(700,1500) 4.7 475 S(4000) R(3000,5000) B(800,1500) B(750,1000
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PDF
EL2099CT.pdf
equipment, specifically the LTX77 Series system. Unless otherwise noted, all tests are pulsed tests, ThereT .e T J C A Test Level Test Procedure I 100% production tested and QA sample tested per QA test plan QCX0002. II 100%productiontestedatAe 2§ CandQAsampletestedatTA e 25§C, T andT perQAtestplanQCX0002.
in „EL2099CT als Buffer für Frequenznormal?“ · HF, Funk und Felder ·
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311613_DS.pdf
Junction to ambient (DC) TO-220AB 60 °C/W IPAK 100 S = 0.5 cm DPAK 70 S= copper surface under tab /T9 TN8, TS8 and TYNx08 Series PRODUCT SELECTOR Voltage (xxx) Part Number Sensitivity Package 600 V 700 V 800 V 1000 V TN805-xxxB X X 5 mA DPAK TN805-xxxH X X 5 mA IPAK TN815-xxxB X X 15 mA DPAK TN815-xxxH
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representative, or can be downloaded from www.renishaw.com Taper mount Interference fit o c e ’ ‘ n t Not c applicable s B ‘ Recommended for all installations Alternative installation t Enables simplest adjustment. Offers highest accuracy. Will not correct eccentricity of the supporting shaft. o Enables
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Duracell_Ultra_123_Datasheet.pdf
Dimensions shown are IEC/ANSI standards y 2 e E 1 0.5 1 2 4 0.2 Power (W) D u ra c e ll U ltra 1 2 3 T y p ic a l P e rfo rm a n c e 3 5 m m P o in t & S h o o t C a m e ra 1.2A, 3 sec on 7sec off, to 1.7V @ 20°C 3 5 m m S L R P h o to 1.8A, 3 sec on 7sec off, to 2.0V @ 20°C A N S I P h o to 0.9A, 3 sec
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Bus_Ele_DS_2142_NH.pdf
to 1250 Amps, Size 4 Size 4 Time-Current Characteristics CURRENT (Amps) Size 4 Technical Data 2 2 I t (Amps Seconds) Part Numbers with Amp Rating Minimum *1 120kA Watts Net Weight Metal Gripping Lugs Pre-arcing Loss per Fuse @ 500Vac 500NHG4G 500 800,000 3,850,000 37.0 630NHG4G 630 880,000 4,100,000 47.0 800NHG4G 800 1,500,000 6,480,000 68.0 2.2kg 1000NHG4G 1000 4,800,000 13,000,000 80.0 1250NHG4G 1250 7,000,000 18,000,000 108.0 * 1 is the maximum breaking capacity test at rated voltage according to IEC
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PDF
Firmware_buglist_2.06.3.pdf
dotted line” or “off”. 12. 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) 13. AC trigger indicator and line wrong. Set ch1, signal
in „TEKWAY DST1xx2B Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Firmware_buglist_2.06.3.pdf
dotted line” or “off”. 12. 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) 13. AC trigger indicator and line wrong. Set ch1, signal
in „TEKWAY DST1xx2B Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MURATA.pdf
1000 100 100 ) 100 100 Q p Q F e ( n c i a a c a p C a C 10 10 10 10 1 100 200 300 400 500 600 700 800 900 1000 1 100 200 300 400 500 600 700 800 900 1000 Frequency (MHz) Frequency (MHz) TZB4R200 TZB4R500 R200 R500 7 1000 1000 1000 1000 100 100 ) Q 100 100 Q F F ( ( c c t a c c p p C C 10 10 10 10 1
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TL431.pdf
over the full operating ambient temperature range that applies. V max ref DVrefVrefx −Vrefin DTA= T2− 1 Vrefn T1 Ambient Temperature2 D Vref ǒ V @ 25_C Ǔ X 106 ppm ref D Vref 106 The average temperature coefficient of the reference inprefvoltage, aVas: Vref _C + D T + D T (V @ 25_C) A A ref aVrefan
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PDF
FL5150-D.pdf
7650 7650 m e 140 7.7 700 700 7600 7600 r C 150 8.5 750 750 7550 7550 o 160 9.4 800 800 7500 7500 t o 170 10.3 850 850 7450 7450 l 180 e 11.2 900 900 7400 7400 r 190 12.1 950 950 7350 7350 200 13 1000 1000 7300 7300 210 14 1050 1050 7250 7250 220 15 1100 1100 7200 7200 230 16 1150
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LC-R123R4PG.pdf
12 14(77°F) 18 20 0 0 Number of cycles (times) a 0 0 StoStorage period (mth.) 20 0 400m400nt tempera800e800 1,201,200 a 20 0 02 24 4 6 80 10 124 146 16 180 20 NumbeNumber of cycles (times) C 0 0 StorStorage period (mth.) CONSTANT-VOLTAGECONSTANT-CURRENT DISCHARGECAPACITYBYTEMPERATURE 0 400 800 1,200 0
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MAX1674-MAX1676.pdf
Typical Operating Characteristics X (L = 22µH, C IN = 47µF, C OUT = 47µF 0.1µF, C REF = 0.1µF, T = +A5°C, unless otherwise noted.) A M EFFICIENCY vs. LOAD CURRENT EFFICIENCY vs. LOAD CURRENT EFFICIENCY vs. LOAD CURRENT / 100 1 100 2 100 3 t t t 4 90 1 90 1 90 1 7 V = 3.6V M M M 80 V = 2.4V IN 80
in „MAX1674: LED an LBO“ · Mikrocontroller und Digitale Elektronik ·