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PDF
Original_Omron.pdf
Resistive load (cos Ø=1) Rated load 10A at 120 VAC, 8A at 30 VDC & 10A at 250 VAC Rated carry current 10A Max. switching voltage 250 VAC, 125 VDC (30 VDC when UL/CSA standard is applied) Max. switching current AC: 10A; DC: 8A Max. switching capacity 1,200 VA, 240 W & 2,500 VA Min. permissible load 100 mA at 5 VDC G5LB G5LB ■ Characteristics Contact resistance 100 m1 max. Operate time 10 ms max. Release time 5 ms max. Max. switching frequency Mechanical: 18,000 operations/hr Electrical: 1,800 operations/hr (under rated load) Insulation resistance 100M1 min. (
in „Spülmaschine heizt nicht richtig auf.“ · Haus & Smart Home ·
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PDF
IPB026N06N.pdf
1.3 1.95 W |VDS|>2|ID|RDS(on)max Transconductance g fs I =100 A 80 160 - S D Rev.2.2 page 2 2012-12-20 IPB026N06N Parameter Symbol Conditions Values Unit min. typ. max. Dynamic characteristics Input capacitance C iss - 4100 5125 pF
in „Gatebeschaltung Treiber“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Z5U_Datenblatt.PDF
Capacitance Range 0.01 µF to 1.0 µF Capacitance Tolerances Preferred +80 –20% others available: ±20%, +100 –0% Operating Temperature Range +10°C to +85°C Temperature Characteristic +22% to –56% max. Voltage Ratings 25 and 50VDC (+85°C) Dissipation Factor 4% max. Insulation Resistance (+25°C, RVDC) 10,000
in „Vielschicht statt Elko + Keramik“ · Analoge Elektronik und Schaltungstechnik ·
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Vishay_VO0600T.pdf
part of the testing requirements. SWITCHING CHARACTERISTICS PARAMETER TEST CONDITION SYMBOL MIN. TYP. MAX. UNIT Propagation delay time to high output level RL= 350 Ω, C =L15 pF PLH 20 48 100 ns Propagation delay time to low output level RL= 350 Ω, C =L15 pF PHL 25 50 100 ns Pulse width distortion RL= 350
in „Optokoppler: Vishay 630T“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ne555_datasheet.pdf
CC = +5V to +15V (unless otherwise specified) SE555 NE555 - SA555 Symbol Parameter Unit Min. Typ. Max. Min. Typ. Max. ICC Supply Current (RL ) (- note 1) mA Low State V CC= +5V 3 5 3 6 V CC= +15V 10 12 10 15 High State V CC= 5V 2 2 Timing Error (monostable) (RA =2k to 100k , C = 0.1 F) Initial Accuracy
in „AVR -> PWM -> NE555 -> Infrarotdiode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM2576.pdf
Circuit Figure 2 VOUT Output Voltage VIN= 12V, ILOAD = 0.5A 5.0 V Circuit of Figure 2 4.900 V(Min) 5.100 V(Max) V Output Voltage 0.5A ≤ I ≤ 3A, 5.0 V OUT LOAD LM2576 8V ≤ VIN≤ 40V 4.800/4.750 V(Min) Circuit of Figure 2 5.200/5.250 V(Max) VOUT Output Voltage 0.5A ≤ LOAD ≤ 3A, 5.0 V LM2576HV 8V ≤ VIN≤ 60V
in „Schaltnetzteilverbrauch“ · Mikrocontroller und Digitale Elektronik ·
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Datei
webseite.html
webkit-margin-start:0;margin-inline-start:0;-webkit-margin-end:0;margin-inline-end:0}figure img{display:block;width:100%;height:auto;border-radius:4px;margin-top:8px}@media (min-width: 800px) and (orientation:landscape){#content{display:flex;flex-wrap:nowrap;align-items:stretch}figure img{display:block;max-width:100%;max-height:calc(100vh - 40px);width:auto;height:auto}figure{padding:0;margin:0;-webkit-margin-before:0;margin-block-start:0;-webkit-margin-after:0;margin-block-end:0;-webkit-margin-start:0;margin-inline-start
in „ESP32-CAM Entwicklungskit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AON6500.pdf
F 7000 ) ( l 6 c 6000 V n ( i 5000 G 4 a 4000 V p C 3000 C 2 2000 oss 1000 C 0 0 rss 0 20 40 60 80 100 120 0 5 10 15 20 25 30 Qg(nC) VDS(Volts) Figure 7: Gate-Charge Characteristics Figure 8: Capacitance Characteristics 1000.0 500 TJ(Max)50°C RDS(ON) TC=25°C 100.0 limited 10 s 10 s 400 s 10.0 100 s ) 300 p 1ms ( m DC e ( w I 1.0 P 200 0.1 100 T J(Max)50°C T C25°C 0.0 0 0.01 0.1 1 10 100 0.0001 0.001 0.01 0.1 1 10 VDS (Volts) Pulse Width (s) Figure 9: Maximum Forward Biased Figure 10: Single Pulse Power Rating Junction-to-Case Safe Operating
in „Unbekanntes Bauteil?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
A501_LD_LB_LT_W5AM.pdf
Kurzzeitanwendungen* T 175* °C j Junction temperature for short term application* Durchlassstrom (min.) I 100 mA F Forward current (max.) F 1000 mA (TS=25°C) Stoßstrom FM 2500 mA Surge current t ≤10 μs, D = 0.005,T =25°C S Sperrspannung VR not designed for V Reverse voltage reverse operation (TS=25°C) *Auch
in „2 x LED und Lüfterschaltung 12V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FQB34P10.pdf
F Q B 3 4 November 2013 P 1 0 FQB34P10 — P ® - P-Channel QFET MOSFET C h 100 V, -33.5 A, 60 mΩ n n e l Description Features Q This P-Channel enhancement mode power MOSFET is • -33.5 A, -100 V,DS(on) 60 mΩ (Max.) @ VGS = .10 V, F produced using Fairchild Semiconductor’s proprietary
in „DC/DC Wandler Vin 15-50V, Vout 12V 9A!“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
avr466.ino
alpha/accel) // step_delay = ( tfreq*0.676/100 )*100 * sqrt( (2*alpha*10000000000) / (accel*100) )/10000 srd.step_delay = (T1_FREQ_148 * sqrt(A_SQ/ accel_stepper))/100; // Find out after how many steps does the speed hit the max speed limit. // max_s_lim = speed^2 / (2*alpha*accel) max_s_lim = (long)speed*speed/(long)(((long)A_x20000*accel_stepper)/100); // If we hit max speed limit before 0,5 step it will round to 0. // But in practice we need
in „Appnote avr446 Atmega2560 (Arduino)“ · Mikrocontroller und Digitale Elektronik ·
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mpsa42.pdf
Electrical Characteristics TA = 25°C unless otherwise noted / M Symbol Parameter Test Conditions Min Max Units M B OFFCHARACTERISTICS T V Collector-Emitter Breakdown Voltage* I = 1.0 mA, I = 0 300 V A (BR)CEO C B 4 V (BR)CBO Collector-Base Breakdown Voltage C = 100 µ, IE= 0 300 V 2 V (BR)EBO Emitter-Base
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AD1836_prc.pdf
Deviation ±0.1 Degrees Volume Control Step Size (1023 Linear Steps) 0.098 % Volume Control Range (Max Attenuation) 60 dB Mute Attenuation –100 dB De-Emphasis Gain Error ±0.1 dB Full-Scale Output Voltage At Each Pin (Single-Ended) 1.0 (2.8) Vrms (Vp-p) Output Resistance At Each Pin 115 Ω Common-Mode
in „Audio Codec mit Filter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD1836_prc.pdf
Deviation ±0.1 Degrees Volume Control Step Size (1023 Linear Steps) 0.098 % Volume Control Range (Max Attenuation) 60 dB Mute Attenuation –100 dB De-Emphasis Gain Error ±0.1 dB Full-Scale Output Voltage At Each Pin (Single-Ended) 1.0 (2.8) Vrms (Vp-p) Output Resistance At Each Pin 115 Ω Common-Mode
in „Aktives Filter simulieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
50B2117Ed01.pdf
max. Temperature Coefficient -40~+85°C ambient ±0.015%/°C max. 1200 65 Maximum Capacitive Load 100µF 1000 Operating Frequency 350mA-700mA 210 kHz min./ 260kHz typ./ 300kHz max. ) 71 1000mA - 1200mA 350
in „Luxeon-LED dimmen RCD-24“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MOC3021M.pdf
specified) 3 1 Individual Component Characteristics X Symbol Parameters Test Conditions Device Min. Typ. Max. Units M M EMITTER O V Input Forward Voltage I = 10mA All 1.15 1.5 V C F F 3 IR Reverse Leakage Current VR= 3V, A = 25°C All 0.01 100 µA 2 DETECTOR X M IDRM Peak Blocking Current, Rated V , I = 02)
in „Blitzgerät an Mikrocontroller“ · Mikrocontroller und Digitale Elektronik ·
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2716.pdf
Capacitance V OUT = 0V 12 pF Note: 1. Sampled only, not 100% tested. Table 5. Read Mode DC Characteristics (1) (TA= 0 to 70 °C or –40 to 85 °C; V CC = 5V ± 5% or 5V ± 10%; V PP = V CC) Symbol Parameter Test Condition Min Max Unit I Input Leakage Current 0 ≤
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PDF
MOS4007_STM.pdf
Voltage. Input Leakage Current. 9/14 HCC/HCF4007UB Plastic DIP14 MECHANICAL DATA mm inch DIM. MIN. TYP. MAX. MIN. TYP. MAX. a1 0.51 0.020 B 1.39 1.65 0.055 0.065 b 0.5 0.020 b1 0.25 0.010 D 20 0.787 E 8.5 0.335 e 2.54 0.100 e3 15.24 0.600 F 7.1 0.280 I 5.1 0.201 L 3.3 0.130 Z 1.27 2.54 0.050 0.100 P001A 10
in „Frage zu MOS4007 (MOSFETs + INV)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HCF4069UB.pdf
Immunity. Input Leakage Current. 7/12 HCC/HCF4069UB Plastic DIP14 MECHANICAL DATA mm inch DIM. MIN. TYP. MAX. MIN. TYP. MAX. a1 0.51 0.020 B 1.39 1.65 0.055 0.065 b 0.5 0.020 b1 0.25 0.010 D 20 0.787 E 8.5 0.335 e 2.54 0.100 e3 15.24 0.600 F 7.1 0.280 I 5.1 0.201 L 3.3 0.130 Z 1.27 2.54 0.050 0.100 P001A 8
in „CD4049 in rauscharm, gibts das?“ · Analoge Elektronik und Schaltungstechnik ·
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TI_tle2426.pdf
vs vs OUTPUT CURRENT FREQUENCY 500 100 V = 5 V or 12 V V = 5 V or 12 V I I Max TA= 25°C O = 0 TA= 25°C µ 10 250 Ω n Max − i c l Typ n 1 u d e p R 0 I g Typ t l p 0.1 o u t O p Min −o u −250 z O 0.01 Min 0.001 −500 −20 −10 0 10 20 10 100
in „[V] Virtual Ground Chips“ · Markt ·
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PDF
LSY_T67B_Pb_free.pdf
2.0 I V IV(25˚C) 1.6 1.4 1.2 1.0 0.8 0.6 0.4 0.2 0 -40 -20 0 20 40 60 ˚C 100 T j 2004-09-28 7 LSY T67B Maximal zulässiger Durchlassstrom Maximal zulässiger Durchlassstrom Max. Permissible Forward Current Max. Permissible Forward Current IF = f(T ) F = f (T) 60 OHL00012 60 OHL00020
in „Duo Led mit einem Pin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
564746-da-01-en-MOSFET_N_KA_800V_STP4N80K5_TO_220AB_STM.pdf
= 0) VGS = ± 20 V ±10 µA DS V Gate threshold voltage V = V , I = 100 µA 3 4 5 V GS(th) DS GS D Static drain-source on- RDS(on) VGS = 10 V, D = 1.5 A 2.1 2.5 Ω resistance Table 5. Dynamic Symbol Parameter Test conditions Min. Typ. Max. Unit C iss Input capacitance - 175
in „Anodenspannungsstabilisierung für Röhrenverstärker mit IRF840 als Längsregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ULN2004.pdf
Current versus Saturation Voltage Ic D96IN453 Ic D96IN454 (mA) (mA) Tj=25⋅C 500 500 Tj=25⋅C 400 400 Max Max 300 300 200 200 TYPICAL TYPICAL 100 100 0 0 100 200 300 400 500 Ib( A) 0 0.0 0.5 1.0 1.5 Vce(sat) Figure 10: PeakCollector Current versus Duty Figure 11: Peak Collector Current versus Duty Cycle
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ULN2003A.pdf
Current versus Saturation Voltage Ic D96IN453 Ic D96IN454 (mA) (mA) Tj=25⋅C 500 500 Tj=25⋅C 400 400 Max Max 300 300 200 200 TYPICAL TYPICAL 100 100 0 0 100 200 300 400 500 Ib( A) 0 0.0 0.5 1.0 1.5 Vce(sat) Figure 10: PeakCollector Current versus Duty Figure 11: Peak Collector Current versus Duty Cycle
in „Arduino friert ein nach 1-3h“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ULN2001_4.pdf
Current versus Saturation Voltage Ic D96IN453 Ic D96IN454 (mA) (mA) Tj=25⋅C 500 500 Tj=25⋅C 400 400 Max Max 300 300 200 200 TYPICAL TYPICAL 100 100 0 0 100 200 300 400 500 Ib( A) 0 0.0 0.5 1.0 1.5 Vce(sat) Figure 10: PeakCollector Current versus Duty Figure 11: Peak Collector Current versus Duty Cycle
in „ULN2003 defekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
58L128.pdf
WRITE DONÕT CARE UNDEFINED WRITE TIMING PARAMETERS -6.8 -7.5 -8.5 -10 -6.8 -7.5 -8.5 -10 SYMBOL MIN MAX MIN MAX MIN MAX MIN MAX UNITS SYMBOL MIN MAX MIN MAX MIN MAX MIN MAX UNITS tKC 8.0 8.8 10.0 15 ns DS 1.8 2.0 2.0 2.5 ns f t KF 125 113 100 66 MHz CES 1.8 2.0 2.0 2.5 ns tKH 1.8 1.9 1.9 4.0 ns AH 0.5
in „4GSPS ADC SRAM Speicher“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MOC3041-M.pdf
specified) A INDIVIDUAL COMPONENT CHARACTERISTICS Parameters Test Conditions Symbol Device Min Typ Max Units EMITTER I = 30 mA V All 1.25 1.5 V Input Forward Voltage F F V = 6 V All 0.01 100 Reverse Leakage Current R IR µA DETECTOR PeakBlockingCurrent,EitherDirRated DRM FI = 0 (note 1IDRM1 All 100 nA
in „Triac schaltet nicht ab“ · Mikrocontroller und Digitale Elektronik ·
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IRL3713.pdf
Power MOSFET Converters with Synchronous Rectification for Telecom and Industrial Use V DSS R DS(on) max (mW) ID 30V 3.0@V = 10V 260A l High Frequency Buck Converters for GS Computer Processor Power l 100%R Tested G Benefits l Ultra-Low Gate Impedance l Very Low R DS(on)at 4.5V VGS l Fully Characterized
in „Logic Level Mosfet - Welcher "kann mehr"“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RN5RT-RICOH.pdf
CE Input Current “L” VCE=0V –4.0 –2.0 –0.1 µA •RN5RT50A Topt=25˚C Symbol Item Conditions Min. Typ. Max. Unit VOUT Output Voltage V IN=6.0V,OUT =10mA 4.900 5.000 5.100 V IOUT Output Current VIN=6.0V 65 100 mA ∆V OUT VIN=6.0V ∆IOUT Load Regulation 1mA≤I OUT≤100mA 40 80 mV VDIF Dropout Voltage IOUT =100mA
in „Elektronik Grundfoss Alpha 2 Pumpe - Bauteilbestimmung!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
sn75452b.pdf
0.5 0.7 OL = 300 mA I High-level output current VCC = MIN, V IH= MIN, 300 100 A OH VOH = 30 V I Input current at maximum input voltVCC = MAX, V I 5.5 V 1 1 mA IH High-level input current VCC = MAX, V I 2.4 V 40 40 A IL Low-level input current VCC = MAX, V I 0.4 V –1 –1.6 –1 –
in „Suche Datenblatt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Preisliste_deutsch_0509_2.pdf
KByte Programm, 32000 Register, math. Funktionen, Gleitkommaregister, Echtzeituhr Erweiterbar auf max.: 1 intelligentes Modul, 7 nicht intelligente Module 1 Schnittstelle (RS232/RS422): PC / Bedienkonsole oder freiprogramierbar Ethernet (10/100 MBaud), Flash-Datei-System 1 MB FTP-Server JC-241 Achsen
in „Siemens Logo“ · Haus & Smart Home ·
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PDF
wuerth-74273002.pdf
Soldering Profile: Profile Feature Pb-Free Assembly Sn-Pb Assembly tp Preheat Temperature Min Ts min 100 °C 100 °C T p Preheat Temperature Typical Ts typical20 °C 120 °C First Wave Second Wave Preheat Temperature Max T 130 °C 130 °C s max Preheat Time t from T to T t 70 seconds 70 seconds s s min s max s Ramp-up Rate Δ T 150 °C max. 150 °C max. Peak temperature Tp 250 °C - 260 °C 235 °C - 260 °C Time of actual peak temperature t max. 10 seconds max. 10 seconds r p max. 5 seconds each wave max. 5 seconds each wave u a T s max Ramp-down
in „Spezifischer Widerstand von Ferritperlen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
0900766b80718482.pdf
Leakage @ +25ºC @ +25°C tance Case KEMET Leakage @ +25ºC @ +25°C a Size Part Number μA @ 25ºC 120 Hz 100 kHz Size Part Number μA @ 25ºC 120 Hz 100 kHz f µF Max Max Max µF Max Max Max u 2.5 Volt Rating at +85ºC (1.7 Volt Rating at +125ºC) **6 Volt Rating at +85ºC (4 Volt Rating at +125ºC) S 100.0 T T491T107
in „Kemet Kondensatoren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
0900766b80718482.pdf
Leakage @ +25ºC @ +25°C tance Case KEMET Leakage @ +25ºC @ +25°C a Size Part Number μA @ 25ºC 120 Hz 100 kHz Size Part Number μA @ 25ºC 120 Hz 100 kHz f µF Max Max Max µF Max Max Max u 2.5 Volt Rating at +85ºC (1.7 Volt Rating at +125ºC) **6 Volt Rating at +85ºC (4 Volt Rating at +125ºC) S 100.0 T T491T107
in „Kemet Kondensatoren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
D1FP_DE.pdf
Einschaltdauer [%] 100 Schutzart IP65 nach EN 60529 (mit korrekt montierter Leitungsdose) Versorgungsspannung/Restwelligkeit [V] 22 ... 30, Abschaltung bei < 19, Welligkeit < 5 % eff., stoßspannungsfrei Stromaufnahme max.
in „Ansteuerung direktgesteuertes Proportionalventil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
UC3842B.pdf
/5B THERMAL DATA Symbol Description Minidip SO8 Unit Rth j-ambThermal Resistance Junction-ambient. max. 100 150 °C/W ELECTRICAL CHARACTERISTICS ( [note 1] Unless otherwise stated, these specifications apply for -25 < Tamb < 85°C for UC284XB; 0 < T amb < 70°C for UC384XB; V =i15V (note 5); R =T10K; C
in „Reparatur Schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
uc3842b.pdf
/5B THERMAL DATA Symbol Description Minidip SO8 Unit Rth j-ambThermal Resistance Junction-ambient. max. 100 150 °C/W ELECTRICAL CHARACTERISTICS ( [note 1] Unless otherwise stated, these specifications apply for -25 < Tamb < 85°C for UC284XB; 0 < T amb < 70°C for UC384XB; V =i15V (note 5); R =T10K; C
in „40-390V HV DC-DC-Wandler vom Chinamann“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datasheet.pdf
Electrical Characteristics, jt T = 25°C, unless otherwise specified Parameter Symbol Values Unit min. typ. max. Static Characteristics Drain- source breakdown voltage V(BR)DSS V V GS = 0 V,DI = 0.25 mA,jT = 25 °C 100 - - Gate threshold voltage V GS(th) V GS=VDS, D= 1 mA 2.1 3 4 Zero gate voltage drain current
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Datei
Attiny.txt
RETRY pulse : SCK serial program mode : yes parallel program mode : yes Timeout : 200 StabDelay : 100 CmdexeDelay : 25 SyncLoops : 32 ByteDelay : 0 PollIndex : 3 PollValue : 0x53 Memory Detail : Block Poll Page Polled Memory Type Mode Delay Size Indx Paged Size Size #Pages MinW MaxW ReadBack -------
in „Projekt fertiggestellt: MP3 Player für Kinder auf ATTiny-Basis“ · Projekte & Code ·
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Datei
LinuxCNCTest_008.ini
LINEAR HOME = 0.0 FERROR = 0.005 MIN_FERROR = 0.0005 MAX_VELOCITY = 33.3333333333 MAX_ACCELERATION = 50.0 # The values below should be 25% larger than MAX_VELOCITY and MAX_ACCELERATION # If using BACKLASH compensation STEPGEN_MAXACCEL should be 100% larger
in „LinuxCNC - Freifahren vom Endschalter“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
TC551001BPL-70L-Toshiba.pdf
70°C, Voo = 5V±10%) Read Cycle TC551001BPl/BFl/BFTL/BTRl SYMBOL PARAMETER -70l -85l -10l UNIT MIN. MAX. MIN. MAX. MIN. MAX. tRC Read Cycle Time 70 - 85 - 100 - tACC Address Access Time - 70 - 85 - 100 tC01 CE1 Access Time - 70 - 85 - 100 CE2 Access Time - 70 - 85 - 100 tC02 tOE Output Enable to Output
in „[V] 35St. SRAM SMD TC551001BFTL-70L 128K*8 5V“ · Markt ·
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PDF
SN3355_LED_Driver_SOT-89-5_SI-EN_Technology_ISSI.pdf
最大值 单位 ILX_LEAK LX开关漏电流 1 μA ON_MIN 推荐最小开关导通时间 LX开关导通 200 ns t 推荐最小开关关闭时间 LX开关关闭 200 ns OFF_MIN f = 100HzV IN= 15V, DDIM 典型的调光比 1200:1 1LED,L = 27µH fLX_MAX 推荐最大工作频率 1 MHz DLX 推荐的占空比范围 0.3 0.7 0.9 TPD 内部比较器延时 50 ns TSD 热关断温度 150 °C T SD_HYS 热关断迟滞 20 °C 注释3:芯片量产测试是在25°C下进行。设计、工艺和特征化分析可以保证芯片正常工作在其他温度。 2014
in „Welche Step*-Konstantstromquelle könnte das sein?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
Output Voltage RLS 4 M7 V = 451 VDC R LS 4 M7 DC OV DC R OVP Sense Output Voltage VR OVP Input Input DC MAX @ 100 VDC = 76% Voltage DC MAX @ 100 VDC = 76% Voltage DC @ 375 VDC = 41% DC @ 375 VDC = 41% MAX D V MAX D V Reset 10 k7 CONTROL CONTROL Q C C R ROVP >3k7 S S - - PI-4756-121007 PI-4719-120307 Figure
in „Verzweifelt: Wie Widerstände und Kapazitäten eines Sperrwandler IC´s auslegen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
I2C_EEPROM_-_ST24C04.pdf
scale. TSSOP8 – 8 lead Thin Shrink Small Outline, Package Mechanical Data mm inches Symbol Typ. Min. Max. Typ. Min. Max. A 1.200 0.0472 A1 0.050 0.150 0.0020 0.0059 A2 1.000 0.800 1.050 0.0394 0.0315 0.0413 b 0.190 0.300 0.0075 0.0118 c 0.090 0.200 0.0035 0.0079 CP 0.100 0.0039 D 3.000 2.900 3.100 0.1181
in „I²C - EEPROM's (24C04 ...)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SFH_2430.pdf
Symbol Value Unit FotoempfindlichkeitV R= 5 V S 5.8 (>4) nA/Ix Spectral sensitivity Wellenlänge der max. Fotoempfindlichkeit λS max 570 nm Wavelength of max. sensitivity Spektraler Bereich der Fotoempfindlichkeit λ 400 … 900 nm S = 10% von S max Spectral range of sensitivity S = 10% of S max Bestrahlungsempfindliche
in „Suche Fotodiode bis ca 20.000 lx“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM6206N3.pdf
Line Regulation △Vout/△VinVout Io=30mA,2.8V<Vin<6V - 0.05 0.25 %/V 1 Load Regulation Vin=2.8V,1mA<Io<100mA - 25 100 mV 1 μA 2 Current Consumption Vin=2.8V - 7 15 Io=30mA - 75 350 mV 1 Dropout Voltage Io=100mA - 250 680 mV 1 LM6206-3.0 Parameter Conditions Min Typ Max Units Circuit Output Voltage Io=10mA
in „Hackbarer(?) 21 EUR Quadcopter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CMAC_Xtal.pdf
Frequency Stability Available OverESR Vibration @ 25°C ±2°C Temperature Range Operating Temperature max. Mode Minimum Maximum 4.0 to < 7.0MHz –5ppm to –100ppm 0 to 50°C –10ppm –100ppm 100 Fundamental AT cut 10 to 60°C –15ppm –100ppm 20 to 70°C –15ppm –100ppm 30 to 80°C –20ppm –100ppm 40 to 90°C –25ppm
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PDF
data.pdf
Voltage Inverting Converter 8 1 S Q Q2 R Q1 7 2 pk L 88 H Rsc CT 0.24 Osc Vin 6 4.5Vto6.0V VCC 3 + 100 1.25V + 1500 + Ref pF 1N5819 – Comp. Reg 5 4 1.0 H R1 out –12V/100mA Vout 953 1000 f 100 R2 8.2k +CO + OptionalFilter Test Conditions Results Line Regulation Vin= 4.5 V to 6.0 O,= 100 mA 3.0 mV = 〉
in „Funktionert dieser Schaltregler so?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
data.pdf
Voltage Inverting Converter 8 1 S Q Q2 R Q1 7 2 pk L 88 H Rsc CT 0.24 Osc Vin 6 4.5Vto6.0V VCC 3 + 100 1.25V + 1500 + Ref pF 1N5819 – Comp. Reg 5 4 1.0 H R1 out –12V/100mA Vout 953 1000 f 100 R2 8.2k +CO + OptionalFilter Test Conditions Results Line Regulation Vin= 4.5 V to 6.0 O,= 100 mA 3.0 mV = 〉
in „Hilfe bei Schaltregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MC_34063AP__DC-DC_Schaltregler_.pdf
Voltage Inverting Converter 8 1 S Q Q2 R Q1 7 2 pk L 88 H Rsc CT 0.24 Osc Vin 6 4.5Vto6.0V VCC 3 + 100 1.25V + 1500 + Ref pF 1N5819 – Comp. Reg 5 4 1.0 H R1 out –12V/100mA Vout 953 1000 f 100 R2 8.2k +CO + OptionalFilter Test Conditions Results Line Regulation Vin= 4.5 V to 6.0 O,= 100 mA 3.0 mV = 〉
in „Invertierender Schaltregler 34063“ · Analoge Elektronik und Schaltungstechnik ·