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PDF
62256.pdf
Features Packages High-speed: 35, 70 ns – 28-pin TSOP (Standard) Ultra low DC operating current of 5mA (max.) – 28-pin 600 mil PDIP – 28-pin 330 mil SOP (450 mil pin-to-pin) Low Power Dissipation: – TTL Standby: 3 mA (Max.) – CMOS Standby: 20 A (Max.) Description Fully static operation The V62C518256
in „Erfahrungen mit Pufferakku fuer RAM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CS8126-1YDPS7G_drop_out_5V_linear_regler.pdf
26 V TEMP = −40°C 80 4.0 ) 60 ) 2.0 V 40 V 0 ( TEMP = 25°C ( o 20 o −2.0 TEMP = 25°C t TEMP = 40°C a u 0 u −4.0 g e VIN= 14 V R −20 R −6.0 e d TEMP = 125°C i −40 o −8.0 L TEMP = 125°C L −60 −10 −80 −12 −100 −14 0 100 200 300 400 500 600 700 800 0 100 200 300 400 500 600 700 800 Output Current (mA) Output
in „Suche Spannungsregler CS8126-1YDPS7G“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SHA.pdf
T (A rms) Ambient temperature a (˚C) S102S01/S102S02/S202S01/S202S02 Fig. 8 Repetitive Peak OFF-state Current vs. Ambient Temperature Typical Value ) 10- 4 ) V D 400V A (S102S01/S102S02 ) ( V D= 600V R 10- 5 (S202S01/S202S02 ) I n e S102S02 r - 6 c 10 S202S02 a - S102S01 F - 7 O 10 a S202S01 p e i 10- 8 e e R 10- 9 - 25 0 25 50 75 100 Ambient temperature T (˚C) a Please refer to the chapter “Precautions for Use”
in „S202S02 Spannung Am Kühlkörper?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
S202_S02.pdf
T (A rms) Ambient temperature a (˚C) S102S01/S102S02/S202S01/S202S02 Fig. 8 Repetitive Peak OFF-state Current vs. Ambient Temperature Typical Value ) 10- 4 ) V D 400V A (S102S01/S102S02 ) ( V D= 600V R 10- 5 (S202S01/S202S02 ) I n e S102S02 r - 6 c 10 S202S02 a - S102S01 F - 7 O 10 a S202S01 p e i 10- 8 e e R 10- 9 - 25 0 25 50 75 100 Ambient temperature T (˚C) a Please refer to the chapter “Precautions for Use”
in „Lasten bis zu 25A 250V schalten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S202_S02.pdf
T (A rms) Ambient temperature a (˚C) S102S01/S102S02/S202S01/S202S02 Fig. 8 Repetitive Peak OFF-state Current vs. Ambient Temperature Typical Value ) 10- 4 ) V D 400V A (S102S01/S102S02 ) ( V D= 600V R 10- 5 (S202S01/S202S02 ) I n e S102S02 r - 6 c 10 S202S02 a - S102S01 F - 7 O 10 a S202S01 p e i 10- 8 e e R 10- 9 - 25 0 25 50 75 100 Ambient temperature T (˚C) a Please refer to the chapter “Precautions for Use”
in „Elektronischer Schalter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S202S02_datasheet.pdf
T (A rms) Ambient temperature a (˚C) S102S01/S102S02/S202S01/S202S02 Fig. 8 Repetitive Peak OFF-state Current vs. Ambient Temperature Typical Value ) 10- 4 ) V D 400V A (S102S01/S102S02 ) ( V D= 600V R 10- 5 (S202S01/S202S02 ) I n e S102S02 r - 6 c 10 S202S02 a - S102S01 F - 7 O 10 a S202S01 p e i 10- 8 e e R 10- 9 - 25 0 25 50 75 100 Ambient temperature T (˚C) a Please refer to the chapter “Precautions for Use”
in „Solid State Relais S202S02 durchmessen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hcf4094.pdf
SPECIFICATIONS Test Condition Value Symbol Parameter T = 25°C -40 to 85°C -55 to 125°C Unit VI VO |O | V DD A (V) (V) (µA) (V) Min. Typ. Max. Min. Max. Min. Max. I Quiescent Current 0/5 5 0.04 5 150 150 L 0/10 10 0.04 10 300 300 0/15 15 0.04 20 600 600 µA 0/20 20 0.08 100 3000 3000 VOH High Level Output 0/5
in „Einfache Schaltung mit 4094“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UAGstepper-Motor.pdf
Products UAG Performance Chart UAG1 - Pull-in range 0.8 0.40 0.7 UAG1 - Pull-out range 0.70 M/ cNm P/ W M/ cNm P/ W 0.7 0.35 0.6 0.60 0.6 0.30 0.5 0.50 0.5 0.25 0.4 0.40 0.4 0.20 0.3 0.30 0.3 0.15 0.2 0.10 0.2 0.20 0.1 0.10 0.1 0.05 0 0.00 0.0 0.00 0 100 200 300 400 500 600 0 100 200 300 400 500 600 700 800 fS/ Hz fS/ Hz UAG2 - Pull-in range UAG2 - Pull-out range 0.5 0.25 0.6 0.60 M/ cNm P/ W M/ cNm P/ W 0.5 0.50 0.4 0.20 0.4 0.40 0.3 0.15 0.3 0.30 0.2 0.10 0.2 0.20 0.1 0.05 0.1 0.10 0.0 0.00 0.0 0.00 0 50 100 150 200 250 300 350 400 450 500 0 100 200 300 400 500 600 700 800 fS/ Hz fS/
in „Kleiner mobiler (Thermo-)Drucker für einfache Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
uag212.pdf
Catalogue UAG Performance Chart UAG1 - Pull-in range UAG1 - Pull-out range 0.8 0.40 0.7 0.70 M/ cNm P/ W M/ cNm P/ W 0.7 0.35 0.6 0.60 0.6 0.30 0.5 0.50 0.5 0.25 0.4 0.40 0.4 0.20 0.3 0.30 0.3 0.15 0.2 0.20 0.2 0.10 0.1 0.05 0.1 0.10 0 0.00 0.0 0.00 0 100 200 300 400 500 600 0 100 200 300 400 500 600 700 800 fS/ Hz fS/ Hz 0.5 UAG2 - Pull-in range 0.25 0.6 UAG2 - Pull-out range 0.60 M/ cNm P/ W M/ cNm P/ W 0.5 0.50 0.4 0.20 0.4 0.40 0.3 0.15 0.3 0.30 0.2 0.10 0.2 0.20 0.1 0.05 0.1 0.10 0.0 0.00 0.0 0.00 0 50 100 150 200 250 300 350 400 450 500 0 100 200 300 400 500 600 700 800 fS/ Hz fS/
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PDF
3265fa.pdf
3.6 V I V Quiescent Current Shutdown, EN = EN = 0V 3 6 µA VIN_P IN_P – + + MODE = V IN_P EN = 0V, V+UT = LDO = 0mA 85 170 µA MODE = V IN_P VOUT = LDO = LDO–= 0mA 110 220 µA MODE = 0V, IVOUT+= 0mA 3 6 mA VRT RT Regulation Voltage 1.200 V VOUT+ VOUT+ Regulation
in „einfache, kostengünstige Erzeugung einer symmetrischen Spannungsversorgung bei geringer Leistung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Sinussweep.txt
; a[123] = 694; a[124] = 656; a[125] = 600; a[126] = 555; a[127] = 512; a[128] = 470; a[129] = 430; a[130] = 391; a[131] = 354; a[132] = 318; a[133] = 285; a[134] = 253; a[135] = 223; a[136] = 195; a[137
in „Sinuserzeugung mit DAC: Probleme Interrupterzeugung für DAC durch TimerB Compareregister“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SchurterFusesResettable.pdf
Biegungstoleranz 6h 6h 0 ± 1.0 Body tape plane deviation / Seitliche Biegungstoleranz zur Bandfläche 6p 6p 0 ± 1.3 Lead seating plane deviation / Anschlussplazierung 6P1 P1 0 ± 0.7 Lead spacing / Anschlussabstand F F 5.08 ± 0.8 Reel width / Rollenbreite w w 56 max. Reel diameter / Rollendurchmesser d a
in „Sicherung fliegt oft wegen GU10 Halogen-Birnen raus“ · Offtopic ·
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PDF
irl7833.pdf
Pulsed Source Current ––– ––– 600 integral reverse S (Body Diode)ch p-n junction diode. V SD Diode Forward Voltage ––– ––– 1.2 V TJ= 25°C, S = 30A, VGS = 0Vf trr Reverse Recovery Time ––– 42 63 ns TJ = 25°C,FI = 30A, DD= 15V Q di/dt
in „Beschaltung Mosfet für Brushless-Regler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ELS-450.pdf
10.06 -12.13 562.20 278.80 277.32 -10.43 -9.83 -10.68 -10.51 -9.97 -10.81 Outline Dimensions ( inch ) 600.00 247.48 247.59 -10.46 -9.88 -10.04 -10.55 -10.01 -10.14 mm A B C D E F G H 1.25 1.25 .75 .63 .38 1.00 .125 1.000 Maximum Phase Shift vs. Frequency Return Loss vs. Frequency 31.75 31.75 19.05 16.00
in „Phasenschieber“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
opa381.pdf
(Hz) PHASE MARGIN vs LOAD CAPACITANCE QUIESCENT CURRENT vs TEMPERATURE 90 1.00 RS= 100Ω 80 0.90 70 A 0.85 _ 100pF ( ( 50k t 0.80 g 60 e 5.5V a RS u 0.75 M 50 L C s RS= 50Ω n 0.70 a 40 c P e 0.65 30 u 2.7V R = 0Ω Q 0.60 S 20 0.55 10 0.50 0 100 200 300 400 500 600 700 800 900 1000 −40 −25 0 25 50 75 100
in „Transimpedanzverstärker - Widerstand & Latenz?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TMP101.pdf
DIAGRAMS t(LOW) tR tF t(HDSTA) SCL t(HDSTA) (HIGH) (SUSTA) t(SUSTO) t t (HDDAT) (SUDAT) SDA (BUF) P S S P Figure 5. I C Timing Diagram 1 9 1 9 SCL … SDA 1 0 0 1 A2 A1 A0 R/W 0 0 0 0 0 0 P1 P0 … Start By ACK By ACK By Master TMP100 or TMP101 TMP100 or TMP101 Frame1 I C Slave Address Byte Frame 2 Pointer
in „TMP101 kein ordentlicher 5volt pegel“ · Mikrocontroller und Digitale Elektronik ·
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HY6264A.pdf
27 /WE NC 1 28 Vcc F S R A7 3 26 CS2 AA7 3 26 CS2 U E E F A6 4 25 A9 A6 4 25 A8 T O S U A4 6 23 A11 A4 5 24 A11 P E MEMORY ARRAY T A3 7 22 /OE A3 7 22 /OE I N 128x512 E P A2 8 21 A10 A2 8 21 A10 D U I U A1 9 20 I/O8 A0 10 20 I
in „externer RAM“ · Mikrocontroller und Digitale Elektronik ·
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24lc16.pdf
7-2: RANDOM READ S S S BUS ACTIVITYT T T MASTER A COBYTEL ADDRESS (n) A COBYTEL DATA (n) O R R P T T S S P SDA LINE A A A N C K C O BUS ACTIVITY K K A CK FIGURE 7-3: SEQUENTIAL READ S BUS ACTIVITY CONTROL O MASTER BYTE DATA n DATA n + 1 DATA n + 2 DATA n + X P SDA LINE P A A A A N BUS ACTIVITY C C C C O K K K K C K 8.0 PIN DESCRIPTIONS 8.3 WP 8.1 SDA Serial Address/Data Input/Output This pin must be connected to eiSSeor CC. If tied to Vss normal memory operation
in „Tipsend2 Pollin“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Tabelle mit Messwerten von Dioden
Test Type Voltage Current C at 12V(pF) C at 0V(pF) Ratio 1 6A05 50 6 54.4 194.7 3.58 2 HER305 400 3 44.2 148.8 3.36 3 1N5822 40 3 105.7 484.0 4.58 4 UF4005 600 1 7.9 26.1 3.30 5 1N4007 1000 1 5.9 21.7 3.68 6 1N4937 600 1 10.2 37.0 3.62 7 BYV26A 600 1 11.6 38.5 3.32 8 BYV27-20 200 1 34.5 123.4 3.58 9 1N3595 150 0.2 1.8 5.0 2.81 10 1N4148 75 0.2 0.9 0.9 1.09 11 MV2115 30 0.2 64.6 236.6 3.66 12 LED 12.9 32.9 2.56
in „Liste gängiger Kapazitätsdioden“ · HF, Funk und Felder · · Screenshots
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PDF
503991-da-01-en-RELAIS_24V_5A_G2R_2.pdf
5 30 VDC inductive load (L/R = 7ms) 3 3 0 1 2 2.5 3 3.5 4 5 6 0 1 1.5 2 2.5 3 4 Switching current (A) Switching current (A) Fully Sealed Relays G2R-14, G2R-1A4 G2R-24, G2R-2A4 G2R-1Z4, G2R-1AZ4 ) ) ) n,000 n1,000 n,000 t t t r 500 r 500 r 500 p 300 p 300 p 300 4o 4 4o 0 0 0 ( 250 VAC/30 VDC ( 30 VDC
in „Relais an Atmega, Kontrolle Bauteile“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schematic_Prints__1_.pdf
1 F400 CPC2P 29 CPC2P SL 19 GND TLE9562 C410 C411 SQJQ906E-T1_GE3 5 5QJQ906E-T1_GE3 GND U300E Q402A + - Q403A U300F Connect SL 35 GH3 R404 GHR3 1 T T 1 GHR4 R405 GH4 38 directly to Source GH3 O O GH4 Gates and Source
in „Fehler auf Platine finden“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TLE_4274.pdf
Output current Q 400 600 – mA – limitation Current q – 100 220 µA IQ= 1 mA consumption; Iq= I- Q Current I – 8 15 mA I = 250 mA q Q consumption; q – 20 30 mA IQ= 400 mA Iq= I- Q 1) Drop voltage Vdr – 250 500 mV IQ= 250 mA Vdr
in „Festspannungsregler trotz TVS Diode defekt?“ · Fahrzeugelektronik ·
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PDF
elv.pdf
OC0A AIN0 PD6 10 SEG11 94 7 SEG11 8 PB7 OSC2 XTAL2 PCINT7 PCINT23 AIN1 PD7 11 SEG12 93 8 SEG12 1 3 92 9 3 GND 30 P3.0/TCLO0 SEG13 91 10 SEG13 5 31 P3.1/TCLO0 SEG14 90 11 SEG14 21 GND 32 P3.2/TCL0 SEG15 89
in „Problem mit ELV Netzteil Bausatz PPS 5630“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTS15-NP241826_e.pdf
) multi- I Primary current, measuring range 0 .. ± 48 At P range current transducer using the ÎPDC Overload capability 250 At Hall effect V Analog output voltage @ I 2.5 ±(0.625 ·I /I )V • Unipolar voltage supply OUT P 1) P PN P = 0 2.5 V • Compact design for
in „Strom messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTS15-NP241826_e.pdf
) multi- I Primary current, measuring range 0 .. ± 48 At P range current transducer using the ÎPDC Overload capability 250 At Hall effect V Analog output voltage @ I 2.5 ±(0.625 ·I /I )V • Unipolar voltage supply OUT P 1) P PN P = 0 2.5 V • Compact design for
in „Stromwandler MBS ASK31.3 50/5A Nachbau?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tps65131.pdf
CURRENT MAXIMUM OUTPUT CURRENT vs vs INPUT VOLTAGE INPUT VOLTAGE 400 1100 TPS65131 1000 350 VNEG = −4 V A A 900 m m VNEG = –4 V t 300 t 800 e n r r 700 C 250 u t V NEG= −8 V t 600 t 200 p V = –10 V u u NEG O O 500 m 150 m m u 400 x V NEG= −10 V i a 100 a 300 VNEG = –15 V M M 200 50 100 0 0 2.5 2.9 3.3 3.7
in „OLED Sammelbestellung“ · Markt ·
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PDF
SiC_Led_APP31.PDF
luminosity (normal vision) V, and emission spectra of different light-emitting diodes Wavelength 700 600 500 nm 400 1.0 1 2 3 4 5 Vλ p SiC epi i n SiC p SiC substrate t i o i Section: SiC chip with i0.5 e epitaxial layers (epi) e A C R 0.1 1.6 2.0 2.5 eV 3.0 Photon energy 1 GaP:Zn,O 3 GaAs 0.35 0.65N 2
in „Alte blaue LED“ · Markt ·
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PDF
MRF89XAM8A.pdf
in parallel with the 0.1 μF bypass capacitor to provide a low impedance during startup sequences. © 2010 Microchip Technology Inc. Preliminary DS70651A-page 9 D M 7 FIGURE 2-2: MRF89XAM8A SCHEMATIC 6 R A p F e 8 0 9 X A M 8 A P e m n a y Note: Designators not used: C6, L5 © 0 0 c c p e h l y n . MRF89XAM8A TABLE 2-1: MRF89XAM8A BILL OF MATERIALS Designator Value Description Manufacturer Part Number C1 0.047 µF Capacitor, Ceramic, 10V, ±10%, X7R, SMT Murata GRM155R71A473KA 0402 01D
in „Was darf man von einer PCB-Antenne erwarten?“ · HF, Funk und Felder ·
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PDF
IRM-01-SPEC.PDF
IRM-01-5 IRM-01-9 IRM-01-12 IRM-01-15 IRM-01-24 DCVOLTAGE 3.3V 5V 9V 12V 15V 24V RATEDCURRENT 300mA 200mA 111mA 83mA 67mA 42mA CURRENTRANGE 0~300mA 0~200mA 0~111mA 0~83mA 0~67mA 0~42mA RATEDPOWER 1W 1W 1W 1W 1W 1W RIPPLE&NOISE(max.) Note.250mVp-p 150mVp-p 150mVp-p 150mVp-p 200mVp-p 200mVp-p OUTPUT
in „Jalousie Steuerung mit Kleinspannung+ESP32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ds.pdf
HMG15N60D/HMG15N60/HMG15N60F 600V, 15A, Trench FS II IGBT General Description: Using▯+ 0▯6(0,'s proprietary trench design and advanced FS (field stop) second generation technology, the 600V Trench FS II IGBT offers superior conduction
in „Datenblatt Cypress cca7001“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Hochspannungsnetzteil_0-400V__0-1A.pdf
2W ab (400V * 5mA Querstrom) • Da der Spannungsabfall über den Längsregler immer 12V beträgt, ist die Verlustleistung bei 600mA Ausgangsstrom 7,2W • Die Verluste über den Gleichrichter B3 bei Vollast, den Triac und sonstige
in „Bauplan Hochspannungsnetzteil 0 - 400V- / 0 - 1A“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c
TinyEncryptionAlgorythem void btea(uint32_t *v, int n, uint32_t key[4]) { uint32_t y, z, sum; unsigned p, rounds, e; if (n > 1) { /* Coding Part */ rounds = 6 + 52/n; sum = 0; z = v[n-1]; do { sum += DELTA; e = (sum >> 2) & 3; for (p=0; p<n-1; p++) { y = v[p+1]; z = v[p] += MX; } y = v[0]; z = v[n-1] +=
in „ATMEGA88V BOD 1,8V Reset HC05“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN1045-D.pdf
. P AVG 0 DRM 2T ) 2 DT C (N ) 1) + [AVG ) (P d P AVG ) ron ) tp) ) d r(on) T2 * P r(p )]q R2 d CA L Where TC(N + 1) = maximum rise above ambient VS Pd= applied average power within a pulse DRM 1T ) I PAV G = average power within a period 1 r(on+ tp) = time dependent factor foronum of t R V1 and p 1 r(t ) = time dependent factor for t T1 r(t ) = time dependent factor for t p p VSR 1 DILR1 2 V 1 R ) R ) R ) R 1 2 1 2 Let R1= R (
in „Zwei Triacs in Reihe - warum?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
180pF-.39uF_Rev_Oct_2008.pdf
withstanding voltage: 1.2 x rated voltage at 25°C (Test conducted with charging current limited to 10mA and discharge current limited to 10A) Temperature coefficient: ± 15% over -55°C to 125°C range “S” size package type available Revision: October 1, 2008 1 www.semtech.com 180pF THRU .39µF POWER DISCRETES
in „Möglichst Identischer Ersatz gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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Spannungsregler_LP2980-adj_50mA_LDO.pdf
50 E 50 R 40 R 40 p E i 30 P 30 R I 20 R 20 VOUT = 3.3V CFF = 10pF 10 10 IOUT= 50mA 0 0 102 103 104 105 106 1x10 2 1x103 1x104 1x105 1x106 Frequency (Hz) FREQUENCY (Hz) VIN = 4.3 V, VOUT = 3.3 V, OUT = 50 mA, C OUT = 2.2 μF VIN = 4.3 V, VOUT = 3.3 V, IOUT = 50 mA, C FF = 10 pF Figure 6-39. Ripple Rejection vs C FF for New Chip Figure 6-40. Ripple Rejection vs C OUT for New Chip 120 110 IOUT 1 mA ) 100 50 mA B 90 ( N 80 I C 70 J 60 E R 50 L 40 P I 30 R 20 VOUT
in „Geregelte negative Spannung mit LM2664 und LP2980 - geht das überhaupt?“ · 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
Power PhotoMOS (AQZ10P, 20P) High capacity PhotoMOS Relay. PowerPhotoMOS (Load current Max. 4A) DC load type is available. (AQZ10P, 20P) FEATURES TYPICAL APPLICATIONS 3.5 21 .138 1. High capacity PhotoMOS Relay in a • High-speed
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
Power PhotoMOS (AQZ10P, 20P) High capacity PhotoMOS Relay. PowerPhotoMOS (Load current Max. 4A) DC load type is available. (AQZ10P, 20P) FEATURES TYPICAL APPLICATIONS 3.5 21 .138 1. High capacity PhotoMOS Relay in a • High-speed
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
Power PhotoMOS (AQZ10P, 20P) High capacity PhotoMOS Relay. PowerPhotoMOS (Load current Max. 4A) DC load type is available. (AQZ10P, 20P) FEATURES TYPICAL APPLICATIONS 3.5 21 .138 1. High capacity PhotoMOS Relay in a • High-speed
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
Power PhotoMOS (AQZ10P, 20P) High capacity PhotoMOS Relay. PowerPhotoMOS (Load current Max. 4A) DC load type is available. (AQZ10P, 20P) FEATURES TYPICAL APPLICATIONS 3.5 21 .138 1. High capacity PhotoMOS Relay in a • High-speed
in „Relais ersetzen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
4_5902390009465407372.pdf
Power PhotoMOS (AQZ10P, 20P) High capacity PhotoMOS Relay. PowerPhotoMOS (Load current Max. 4A) DC load type is available. (AQZ10P, 20P) FEATURES TYPICAL APPLICATIONS 3.5 21 .138 1. High capacity PhotoMOS Relay in a • High-speed
in „CD4066 als Relaisersatz?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
hcf4093.pdf
Electrical characteristics Table 6. DC specification Test Condition Value Symbol Parameter V V |I | V T A= 25°C -40 to 85°C -55 to 125°C Unit I O O DD (V) (V) (μA) (V) Min Typ Max Min Max Min Max 0/5 5 0.02 1 30 30 Quiescent 0/10 10 0.02 2 60 60 L μA current 0/15 15 0.02 4 120 120 0/20 20 0.04 20 600 600
in „verschiedene 4093 Typen - Hysterese (NAND Gatter)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
hy62256a.pdf
B /OE Output Enable P E MEMORY ARRAY T I N 512x512 R P A0 ~ A14 Address Inputs D M V U A L R O I/O1 ~ I/O8 Data Input/Output C E A14 I I/O8 Vcc Power( +5.0V) R /CS W Vss Ground O C R G /OE N O C L /WE This document is a general
in „70ns SRAM an ATmega128 ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Uref_mit_Filter.pdf
is about +15V C2 600 Vp-p at a noise bandwidth of 1MHz (the output noise 2 of the PMI REF-10 is about 3,000 Vp-p at 1MHz). V+ 0.05µF R 1 You can reduce voltage reference noise by filtering its – 50 REF102 OPA27 +10VOUT
in „Einen LM7815 rauscharm betreiben“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
mic5205.pdf
(shutdown) 0.01 1 µA GND EN VEN≤ 0.18V (shutdown) 5 µA I Ground Pin Current, Note 7 V ≥ 2.0V, I = 100µA 80 125 µA GND EN L 150 µA L= 50mA 350 600 µA 800 µA L= 100mA 600 1000 µA 1500 µA L= 150mA 1300 1900 µA 2500 µA PSRR Ripple Rejection Frequency = 100Hz, L = 100µA 75 dB I Current Limit V = 0V 320 500 mA LIMIT OUT ∆V O∆P D Thermal Regulation Note 8 0.05 %/W eNO Output Noise L = 50mA, CL= 2.2µF, 470pF from BYP to 260 nV/ Hz GND ENABLE Input V IL Enable Input Logic-Low
in „schalten eines 3v3 Spannungsreglers mit 2 Transistoren (funktioniert nicht richtig)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
S216S02.pdf
*4 Peak one cycle surge current Isurge 160 A Repetitive S116S02 400 VDRM V peakOFF-statevoltage S216S02 600 Output Non-Repetitive S116S02 400 m VDSM V 5 peakOFF-statevoltage S216S02 600 1 CriticalrateofriseofON-statecurredI /dt 50 A/µs T Operating
in „Spülmaschine einschalten - womit?!“ · Mikrocontroller und Digitale Elektronik ·
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S216S02F_-_SSR.pdf
*4 Peak one cycle surge current Isurge 160 A Repetitive S116S02 400 VDRM V peakOFF-statevoltage S216S02 600 Output Non-Repetitive S116S02 400 m VDSM V 5 peakOFF-statevoltage S216S02 600 1 CriticalrateofriseofON-statecurredI /dt 50 A/µs T Operating
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DCDC-Konverter.pdf
CURRENT MAXIMUM OUTPUT CURRENT vs vs INPUT VOLTAGE INPUT VOLTAGE 400 1100 TPS65131 1000 350 VNEG = −4 V A A 900 m m VNEG = –4 V t 300 t 800 e n r r 700 C 250 u t V NEG= −8 V t 600 t 200 p V = –10 V u u NEG O O 500 m 150 m m u 400 x V NEG= −10 V i a 100 a 300 VNEG = –15 V M M 200 50 100 0 0 2.5 2.9 3.3 3.7
in „DC-DC-Konverter Tps65131 Funktionalität“ · Mikrocontroller und Digitale Elektronik ·
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stth20002tv.pdf
(A) 200 180 500 T 160 P = 80W 400 δ =tp/T tp 140 Tj150°C 120 300 P = 120W 100 Tj25°C P = 160W 80 200 60 40 100 20 V FM (V) δ 0 0 0.0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 1.1 1.2 0.0 0.1 0.2 0.3 0.4 0.5
in „Warum mehrere Dioden parallel“ · Analoge Elektronik und Schaltungstechnik ·
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s102s02_e.pdf
4 Peak one cycle surge current Isurge 80 A Repetitive S102S02 400 VDRM V peakOFF-statevoltage S202S02 600 Output Non-Repetitive S102S02 400 m VDSM V 5 peakOFF-statevoltage S202S02 600 1 CriticalrateofriseofON-statecurredI /dt 50 A/µs T Operating
in „Leistungschalter per µC gesucht“ · Mikrocontroller und Digitale Elektronik ·
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S102_202S02__1_.pdf
4 Peak one cycle surge current Isurge 80 A Repetitive S102S02 400 VDRM V peakOFF-statevoltage S202S02 600 Output Non-Repetitive S102S02 400 m VDSM V 5 peakOFF-statevoltage S202S02 600 1 CriticalrateofriseofON-statecurredI /dt 50 A/µs T Operating
in „Hilfe zu einem SSR und Kühlkörper“ · Mechanik, Gehäuse, Werkzeug ·