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PDF
OPV_LT1359CN.pdf
CHARACTERISTICS TA= 25°C, VCM = 0V unless otherwise noted. SYMBOL PARAMETER CONDITIONS VSUPPLY MIN TYP MAX UNITS VOS Input Offset Voltage ±15V 0.2 0.6 mV ±5V 0.2 0.6 mV ±2.5V 0.3 0.8 mV IOS Input Offset Current ±2.5V to ±15V 40 120 nA IB Input Bias Current ±2.5V to ±15V 120 500 nA en Input Noise Voltage
in „Operationsverstärker (OPV) wird heiß als Summierer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
OPV_LT1359CN.pdf
CHARACTERISTICS TA= 25°C, VCM = 0V unless otherwise noted. SYMBOL PARAMETER CONDITIONS VSUPPLY MIN TYP MAX UNITS VOS Input Offset Voltage ±15V 0.2 0.6 mV ±5V 0.2 0.6 mV ±2.5V 0.3 0.8 mV IOS Input Offset Current ±2.5V to ±15V 40 120 nA IB Input Bias Current ±2.5V to ±15V 120 500 nA en Input Noise Voltage
in „Operationsverstärker (OPV) wird heiß als Summierer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT1358__25MHz__LT.pdf
CHARACTERISTICS TA= 25°C, VCM = 0V unless otherwise noted. SYMBOL PARAMETER CONDITIONS VSUPPLY MIN TYP MAX UNITS VOS Input Offset Voltage ±15V 0.2 0.6 mV ±5V 0.2 0.6 mV ±2.5V 0.3 0.8 mV IOS Input Offset Current ±2.5V to ±15V 40 120 nA IB Input Bias Current ±2.5V to ±15V 120 500 nA en Input Noise Voltage
in „defekte LT1358“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2_3_34S_d.pdf
* [Nm] 3,50 5,80 9,50 2 90 V Nenndrehmoment (ED100%)* [Nm] 2,50 3,10 4,00 -1 1 Nenndrehzahl [min ] 500 500 500 Spitzenstrom(proPhase) (ED60%)* [A ] 8,5 8,5 16,0 0 eff 0 500 1000 1500 2000 2500 Stillstandsstrom(proPhase) (ED100%)* [A ] 8,5 8,5 8,5 Dauerbetriebax. 90VMax. 150V n [min ] eff Nennstrom(proPhase
in „Servomotor ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RT9080-33GJ5_esp32_8622_low_quiescent_600mA.pdf
= 10Hz to 100kHz C OUT= 1μF, Frequency = 10Hz to 100kHz -500 -500 0 1 2 3 4 5 6 7 8 9 10 0 1 2 3 4 5 6 7 8 9 10 sec (m) sec (m) Copyrigh©2017 Richtek Technology Corporation. All rights reserved. is a registered trademark of Richtek Technology Corporation. www.richtek.com
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PDF
J500.pdf
J500 SERIES CURRENT REGULATING DIODES FEATURES REPLACES SILICONIX/VISHAY J500 SERIES WIDE CURRENT RANGE 0.192 to 5.6mA BIASING NOT REQUIRED VGS = 0V A A ABSOLUTE MAXIMUM RATINGS 1 @ 25 °C (unless otherwise
in „Welches elektronische Bauteil würdet ihr euch wünschen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ULN200xA_data.pdf
Specifications 6.1 Absolute Maximum Ratings at 25°C free-air temperature (unless otherwise noted) MIN MAX UNIT VCC Collector-emitter voltage 50 V Clamp diode reverse voltage) 50 V VI Input voltage) 30 V Peak collector current, See Figure 4 and Figure 5 500 mA I Output clamp current 500 mA OK Total emitter-terminal
in „[V] Darlington Transistor Arrays, npn, Relaistreiber“ · Markt ·
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Datei
arduino_led_error.txt
4.8.3-2014q1/bin/arm-none-eabi-gcc -Os -c -w -ffunction-sections -fdata-sections -nostdlib --param max-inline-insns-single=500 -Dprintf=iprintf -DARDUINO=161 -MD -mcpu=cortex-m3 -DF_CPU=84000000L -DARDUINO_SAM_DUE -DARDUINO_ARCH_SAM -D__SAM3X8E__ -mthumb -DUSB_VID=0x2341 -DUSB_PID=0x003e -DUSBCON -DUSB_MANUFACTURER
in „Arduino Due Simulink“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Amplifiers_and_Comparators_-_Motorola.pdf
(A = 1) Voltage IB IO VIO IO vol v v (V) ( A) mV ) ( V/C) nA ) (V/mV ) (MHz) (V/ s) Suffix/ Device Max Max Typ Max Min Typ Typ Min Max Description Package Noncompensated Commercial Temperature Range (0⋅C to +70⋅C) LM301A 0.25 7.5 10 50 25 1.0 0.5 〉 3.0 〉 18 General Purpose N/626, D/751 LM308A 7.0 0.5
in „AVR: Wechseln des Kanals mit automatischem Trigger“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STTH16L06C.pdf
rrC) S factor 800 1.6 750 VR=400V F < 2F(AV) 700 Tj125°C 1.4 T=125°C IF=2 F(AV) j 650 600 1.2 550 500 IF=F(AV) 1.0 450 400 0.8 F =0.5F(AV) 350 300 0.6 250 200 0.4 150 100 0.2 50 dI Fdt(A/µs) dIF/dt(A/µs) 0 0.0 0 100 200 300 400 500 0 50 100 150 200 250 300 350 400 450 500 Figure 9: Relative variations
in „Philips TV 47PFL9664H/12 Hintergrundbeleuchtung defekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ME6206.pdf
ME6206 Short Circuit Current I Vin=Vout(T)+1.5V 30 mA short Vout=Vss Over Current Protection Ilimit 500 mA ME6206A30 (VIN=Vout+1V,Cin=Cout=1u,Ta=25 C Unless otherwise stated) PARAMETER SYMBOL CONDITION MIX TYP MAX UNIT V OUT(E) OUT=10mA, VOUT(T) Output Voltage X 0.98 X 1.02 V (Note 2) V INout+1V (Note
in „Spannungsregler 5 V auf 3,3 V bei < 1 mA“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Motorola_tech_info.pdf
10 50 80 10 10 100 30 1.5 20 TIL113 300 10 1.0 1 50 125 300 125 15 100 30 1.5 10 4N32 500 10 10 1 8 2 0.6/45 50 10 200 30 1.5 10 4N33 500 10 10 1 8 2 0.6/45 50 10 200 30 1.5 10 H11B1 500 1 5 1 1 1 1/2 10 10 100 25 1.5 10 MOC8080 500 10 5 1 1 1 1/2 10 100 5 55 1.5 10 Table 5. Darlington Output
in „Isolationsspannung zwischen Doppel-FETs in einem SO8-Gehäuse“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT1963.pdf
operating temperature range, otherwise specifications are T = A5°C. (Note 3) PARAMETER CONDITIONS MIN TYP MAX UNITS MinimumInput Voltage (Notes 4,12) ILOAD= 0.5A 1.9 V ILOAD= 1.5A 2.5V < IN< 20V, 1mA < ILOAD < 1.5A ● 2.1 2.5 V Regulated Output Voltage (Note 5) LT1963-1.5 VIN 2.21V, ILOAD = 1mA 1.477 1.500 1.523
in „LT1963 puffern 2,5A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT1963.pdf
operating temperature range, otherwise specifications are T = A5°C. (Note 3) PARAMETER CONDITIONS MIN TYP MAX UNITS MinimumInput Voltage (Notes 4,12) ILOAD= 0.5A 1.9 V ILOAD= 1.5A 2.5V < IN< 20V, 1mA < ILOAD < 1.5A ● 2.1 2.5 V Regulated Output Voltage (Note 5) LT1963-1.5 VIN 2.21V, ILOAD = 1mA 1.477 1.500 1.523
in „Widerstände für Spannungsregler ergeben nicht gewünschte Spannung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lt1963es8.pdf
operating temperature range, otherwise specifications are T = A5°C. (Note 3) PARAMETER CONDITIONS MIN TYP MAX UNITS MinimumInput Voltage (Notes 4,12) ILOAD= 0.5A 1.9 V ILOAD= 1.5A 2.5V < IN< 20V, 1mA < ILOAD < 1.5A ● 2.1 2.5 V Regulated Output Voltage (Note 5) LT1963-1.5 VIN 2.21V, ILOAD = 1mA 1.477 1.500 1.523
in „LT1963 SHDN (shutdown) Pin Potenzialfrei ansteuern“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Datasheet_LT3433.pdf
OnSWI= 500mA 30 50 mA/A IVOUT SW Output Supply Switch Drive Current Low Side Switch On,SW = 500mA 30 50 mA/A I Switch Current Limit 0.5 0.7 0.9 A LIM Foldback Current Limit VFB 0V 0.35 A ISS Soft-Start Output
in „Burst Mode Lt3433“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Matrix.txt
0); } } void max7219_init(void) { INIT_PORT(); // Decode mode: none max7219_writec(0x09, 0); // Intensity: 3 (0-15) max7219_writec(0x0A, 1); // Scan limit: All "digits" (rows) on max7219_writec(0x0B, 7); // Shutdown
in „MAX 7219 ansteuern ATtiny13“ · Mikrocontroller und Digitale Elektronik ·
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PDF
A200_IR2117_IR2117S.pdf
. Turn-On Time Figure 4B. Turn-On Time vs. Temperature vs. Supply Voltage 500 500 s400 s 400 ( ( e e 300 i300 T f f M ax. O200 - 200 r M ax. r Typ. u u T100 T 100 Typ. 0 0 -50 -25 0 25 50 75 100 125 10 12 14 16 18 20 Temperature () VBIASSupply Voltage (V) Figure 5A. Turn-Off
in „Mosfet treiber“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BT134W-SERIES_ENG_TDS.pdf
series GENERAL DESCRIPTION QUICK REFERENCE DATA Glass passivated triacs in a plastic SYMBOL PARAMETER MAX. MAX. MAX. UNIT envelope suitable for surface mounting, intended for use in BT134W- 500 600 800 applications requiring high BT134W- 500F 600F 800F bidirectional transient and blocking BT134W- 500G 600G
in „Diac und Triac in einem Bauteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Finder_Relais.PDF
10/20 8/15 Rated voltage/Maximum switching voltage V AC 250/400 250/400 250/400 Rated load AC1 VA 2,500 2,500 2,000 Rated load AC15 (230 V AC) VA 500 500 400 Single phase motor rating (230 V AC) kW 0.37 0.37 0.3 Breaking capacity DC1: 30/110/220 V A 10/0.3/0.12 10/0.3/0.12 8/0.3/0.12 Minimum switching
in „[S] 14 Relais Finder 40.61.6.005.0000 oder kompatibel“ · Markt ·
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Datei
Sperlings_VU_UNO.ino
debounce the button [20] # define SWITCH_PIN 4 // Kippschalter zur Loopauswahl # define LONG_PRESS 500 // Number of ms to hold the button to count as long press [500] # define N_PIXELS 63 // Number of pixels in each string [18] # define MAX_MILLIAMPS 500 // Maximum current to draw [500] # define BRIGHTNESS
in „Arduino Sketch mittels Kippschalter anders "loopen" lassen“ · Projekte & Code ·
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PDF
BT-145-800R_800V_16A_300A_Pk_Thyristor___PHI.pdf
series GENERAL DESCRIPTION QUICK REFERENCE DATA Glasspassivatedthyristorsinaplastic SYMBOL PARAMETER MAX. MAX. MAX. UNIT envelope, suitable for surface mounting, intended for use in BT145B- 500R 600R 800R applications requiring high VDRM, Repetitive peak off-state 500 600 800 V bidirectional blocking voltage
in „Thyristor DC On Off Steuerung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
sht4x.pdf
voltage s and V DD, max.ster slew rates may lead to a reset - 0.08 1.0 At 25 °C Idle state - - 3.4 µA At 125 °C Power up - 50 - µA - Supply current (heater off) IDD Measurement - 320 500 µA Current while sensor is measuring
in „Trockenschrank für Elektronik wie funktioniert es?“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
sht4x.pdf
voltage s and V DD, max.ster slew rates may lead to a reset - 0.08 1.0 At 25 °C Idle state - - 3.4 µA At 125 °C Power up - 50 - µA - Supply current (heater off) IDD Measurement - 320 500 µA Current while sensor is measuring
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PDF
Murata_2.pdf
initial value Loading 1 Duration: 1,000+24/-0hrs ESR +40% of initial value Charge and discharge current: 500mA max Leakage current Satisfy initial standard value Characteristics are measured at 25ºC. Allow device to sit for 2hrs min at 25ºC prior to Appearance No abnormality and No electrolyte measurement.
in „Wifi Relais sucht Supercap für Türsprechanlage“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INF.pdf
and Conditions Symbol Values Unit at Tj=-40 ... +150°C, bb=12V unless otherwise specified min typ max Diagnostic Characteristics Current sense ratio, IL=120A,T =-4j°C: kILIS 25 000 29 000 34 000 static on-condition, Tj=25°C: 26 000 28 500 32 000 kILIS=I LI IS, T j150°C: 24 000 26 500 29 000 V <1.5V
in „Mosfet Verarmungstyp?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BTS555_20030925.pdf
and Conditions Symbol Values Unit at T=-40 ... +150°C, Vbb=12V unless otherwise specified min typ max Diagnostic Characteristics Current sense ratio, L =120A,T =-j0°C: kILIS 25 000 29 000 34 000 static on-condition, Tj=25°C: 26 000 28 500 32 000 kILIS=I LI IS, T j150°C: 24 000 26 500 29 000 V <1.5V
in „Elektronische Sicherung für Akku“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_Pegelwandler_TXS0108E.pdf
noted) V CCB = 1.8 V VCCB = 2.5 V VCCB = 3.3 V VCCB = 5 V ± 0.15 V ± 0.2 V ± 0.3 V ± 0.5 V UNIT MIN MAX MIN MAX MIN MAX MIN MAX Data rate Push-pull 40 60 60 50 Mbps Open-drain 2 2 2 2 tw Pulse Push-pull 25 16.7 16.7 20 duration Data inputs Open-drain 500 500 500 500 ns Copyright © 2007–2020, Texas Instruments
in „Wozu Pull-Down Widerstand?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dmesg.txt
41ns [ 0.000464] clocksource: timer: mask: 0xffffffff max_cycles: 0xffffffff, max_idle_ns: 79635851949 ns [ 0.000807] clocksource: hstimer: mask: 0xffffffff max_cycles: 0xffffffff, max_idle_ns: 6370868154 ns [ 0.001084] Console: colour dummy device 80x30 [
in „Wie funktioniert ein HID Eingabegerät unter Linux ?“ · PC Hard- und Software ·
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PDF
an920-d.pdf
divider R1 is equal to: can be calculated. R1 + 1.25 Vin(min)* V sat* V out 100 10 −6 Lmin + ǒ Ǔ ton(max) Ipk(switch) + 12,500 W Rearranging the above equation so that R2 can be + ǒ 21.6 * 0.8 * 5.0 Ǔ 5.4 10−6 solved yields: 100 10−3 R2 + R1 ǒV out* 1 Ǔ + 853 mH 1.25 7. A value for the current limit resistor
in „MC34063 als Step Up arbeitet nicht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN920-D_MC34063_Theory_and_Applications_.pdf
divider R1 is equal to: can be calculated. R1 ▯ 1.25 Vin(min)▯ V sat▯ V out 100 ▯ 10 –6 Lmin ▯ ǒ ▯ ton(max) Ipk(switch) ▯ 12,500 ▯ Rearranging the above equation so that R2 can be ▯ ǒ 21.6 ▯ 0.8 ▯ 5.0 ▯ 5.4 ▯ 10–6 solved yields: 100 ▯ 10 –3 R2 ▯ R1 ǒV out▯ 1 ▯ ▯ 853 ▯H 1.25 7. A value for the current limit
in „Schaltregler MC34063 - Wie berechnet man CT?!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN920-D.PDF
divider R1 is equal to: can be calculated. R1 ▯ 1.25 Vin(min)▯ V sat▯ V out 100 ▯ 10 –6 Lmin ▯ ǒ ▯ ton(max) Ipk(switch) ▯ 12,500 ▯ Rearranging the above equation so that R2 can be ▯ ǒ 21.6 ▯ 0.8 ▯ 5.0 ▯ 5.4 ▯ 10–6 solved yields: 100 ▯ 10 –3 R2 ▯ R1 ǒV out▯ 1 ▯ ▯ 853 ▯H 1.25 7. A value for the current limit
in „Frage zu Schaltregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MC34063_AN920-D.PDF
divider R1 is equal to: can be calculated. R1 ▯ 1.25 Vin(min)▯ V sat▯ V out 100 ▯ 10 –6 Lmin ▯ ǒ ▯ ton(max) Ipk(switch) ▯ 12,500 ▯ Rearranging the above equation so that R2 can be ▯ ǒ 21.6 ▯ 0.8 ▯ 5.0 ▯ 5.4 ▯ 10–6 solved yields: 100 ▯ 10 –3 R2 ▯ R1 ǒV out▯ 1 ▯ ▯ 853 ▯H 1.25 7. A value for the current limit
in „Spule für Schaltnetzteil“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN920-D.pdf
divider R1 is equal to: can be calculated. R1 + 1.25 Vin(min)* V sat* V out 100 10 −6 Lmin + ǒ Ǔ ton(max) Ipk(switch) + 12,500 W Rearranging the above equation so that R2 can be + ǒ 21.6 * 0.8 * 5.0 Ǔ 5.4 10−6 solved yields: 100 10−3 R2 + R1 ǒV out* 1 Ǔ + 853 mH 1.25 7. A value for the current limit resistor
in „Spannungsregelung mit Step-Up/Down Regler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN920-D_MC34063_Theory_and_Applications_.pdf
divider R1 is equal to: can be calculated. R1 ▯ 1.25 Vin(min)▯ V sat▯ V out 100 ▯ 10 –6 Lmin ▯ ǒ ▯ ton(max) Ipk(switch) ▯ 12,500 ▯ Rearranging the above equation so that R2 can be ▯ ǒ 21.6 ▯ 0.8 ▯ 5.0 ▯ 5.4 ▯ 10–6 solved yields: 100 ▯ 10 –3 R2 ▯ R1 ǒV out▯ 1 ▯ ▯ 853 ▯H 1.25 7. A value for the current limit
in „MC34063 Strombegrenzung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN920-D.PDF
divider R1 is equal to: can be calculated. R1 + 1.25 V * V * V 100 10 −6 Lmin + ǒ in(min) sat outǓ ton(max) Ipk(switch) + 12,500 W Rearranging the above equation so that R2 can be + ǒ 21.6 * 0.8 * 5.0 Ǔ 5.4 10−6 solved yields: 100 10−3 ǒV out Ǔ + 853 mH R2 + R1 1.25 * 1 7. A value for the current limit resistor
in „Suche Buck-Boost für LiIon-Spannung auf 3,3V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MC34063a.pdf
F OUT F IN(MIN) OUT F tOFF V IN(MIN) VCE(SAT) VOUT VIN(MIN) VCE(SAT) VIN V CE(SAT) 1 1 1 (ON+t OFF MAX F MIN FMIN FMIN -5 -5 -5 C T 4x10 t ON 4x10 t ON 4x10 t ON 2IOUT(MAX) ON + OFF 2OUT(MAX) ON + tOFF SW 2I OUT(MAX) tOFF tOFF RS 0.3/ISW 0.3/ISW 0.3/ISW VIN(MIN)VCE(SAT) VOUT V IN(MIN)VCE(SAT) V IN(MIN)VCE(SAT) L(MIN) ( )ON(MAX) ( ) ON(MAX) ( )ON(MAX) SW ISW ISW ISW (ON+tOFF) OUT ON IOUT ON C O 8V V V RIPPLE(P-P) RIPPLE(P-P) RIPPLE(P-P) V CE(SAT) - Saturation voltage of the output switch. V F - Forward voltage drop of the
in „aus +5V -> -3,3V erzeugen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC34063a.pdf
F OUT F IN(MIN) OUT F tOFF V IN(MIN) VCE(SAT) VOUT VIN(MIN) VCE(SAT) VIN V CE(SAT) 1 1 1 (ON+t OFF MAX F MIN FMIN FMIN -5 -5 -5 C T 4x10 t ON 4x10 t ON 4x10 t ON 2IOUT(MAX) ON + OFF 2OUT(MAX) ON + tOFF SW 2I OUT(MAX) tOFF tOFF RS 0.3/ISW 0.3/ISW 0.3/ISW VIN(MIN)VCE(SAT) VOUT V IN(MIN)VCE(SAT) V IN(MIN)VCE(SAT) L(MIN) ( )ON(MAX) ( ) ON(MAX) ( )ON(MAX) SW ISW ISW ISW (ON+tOFF) OUT ON IOUT ON C O 8V V V RIPPLE(P-P) RIPPLE(P-P) RIPPLE(P-P) V CE(SAT) - Saturation voltage of the output switch. V F - Forward voltage drop of the
in „MC34063A Induktivität-Rechnung nachvollziehen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
THT_SUPER-KONDENSATOR_3_8V_20F_30X10MM.pdf
VLCRS3R8206MG φ10.0±0.5 30±2 φ0.6±0.05 5.0±0.5 Products characteristics table Nominal Capacitance 20F Max. Usable Voltage1 3.8V(at -30 to +70℃) Max. Usable Voltage2 3.5V(at -30 to +85℃) Min. Operating Voltage1 2.2V(at -30 to +70℃) Min. Operating Voltage2 2.5V(at -30 to +85℃) Initial Internal Resistance(
in „Lithium-Ionen-Kondensator Haltbarkeit?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
THT_SUPER-KONDENSATOR_3_8V_20F_30X10MM.pdf
VLCRS3R8206MG φ10.0±0.5 30±2 φ0.6±0.05 5.0±0.5 Products characteristics table Nominal Capacitance 20F Max. Usable Voltage1 3.8V(at -30 to +70℃) Max. Usable Voltage2 3.5V(at -30 to +85℃) Min. Operating Voltage1 2.2V(at -30 to +70℃) Min. Operating Voltage2 2.5V(at -30 to +85℃) Initial Internal Resistance(
in „ESP8266 verhalten bei Unterspannung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
THT_SUPER-KONDENSATOR_3_8V_20F_30X10MM.pdf
VLCRS3R8206MG φ10.0±0.5 30±2 φ0.6±0.05 5.0±0.5 Products characteristics table Nominal Capacitance 20F Max. Usable Voltage1 3.8V(at -30 to +70℃) Max. Usable Voltage2 3.5V(at -30 to +85℃) Min. Operating Voltage1 2.2V(at -30 to +70℃) Min. Operating Voltage2 2.5V(at -30 to +85℃) Initial Internal Resistance(
in „Eigenartiges Verhalten von Li-Batterien“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
THT_SUPER-KONDENSATOR_3_8V_20F_30X10MM.pdf
VLCRS3R8206MG φ10.0±0.5 30±2 φ0.6±0.05 5.0±0.5 Products characteristics table Nominal Capacitance 20F Max. Usable Voltage1 3.8V(at -30 to +70℃) Max. Usable Voltage2 3.5V(at -30 to +85℃) Min. Operating Voltage1 2.2V(at -30 to +70℃) Min. Operating Voltage2 2.5V(at -30 to +85℃) Initial Internal Resistance(
in „Vergleich Alkali mit LiClO2 AA Primärzellen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
THT_SUPER-KONDENSATOR_3_8V_20F_30X10MM.pdf
VLCRS3R8206MG φ10.0±0.5 30±2 φ0.6±0.05 5.0±0.5 Products characteristics table Nominal Capacitance 20F Max. Usable Voltage1 3.8V(at -30 to +70℃) Max. Usable Voltage2 3.5V(at -30 to +85℃) Min. Operating Voltage1 2.2V(at -30 to +70℃) Min. Operating Voltage2 2.5V(at -30 to +85℃) Initial Internal Resistance(
in „Vollständige Abschaltung ESP8266-12“ · Mikrocontroller und Digitale Elektronik ·
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PDF
THT_SUPER-KONDENSATOR_3_8V_20F_30X10MM.pdf
VLCRS3R8206MG φ10.0±0.5 30±2 φ0.6±0.05 5.0±0.5 Products characteristics table Nominal Capacitance 20F Max. Usable Voltage1 3.8V(at -30 to +70℃) Max. Usable Voltage2 3.5V(at -30 to +85℃) Min. Operating Voltage1 2.2V(at -30 to +70℃) Min. Operating Voltage2 2.5V(at -30 to +85℃) Initial Internal Resistance(
in „Austausch von Lithium-Thionyl-Chlorid Batterien im Betrieb“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SUPER-KONDENSATOR_3_8V_20F_30X10MM.pdf
VLCRS3R8206MG φ10.0±0.5 30±2 φ0.6±0.05 5.0±0.5 Products characteristics table Nominal Capacitance 20F Max. Usable Voltage1 3.8V(at -30 to +70℃) Max. Usable Voltage2 3.5V(at -30 to +85℃) Min. Operating Voltage1 2.2V(at -30 to +70℃) Min. Operating Voltage2 2.5V(at -30 to +85℃) Initial Internal Resistance(
in „Elko oder anderen Kondesnsator“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
THT_SUPER-KONDENSATOR_3_8V_20F_30X10MM.pdf
VLCRS3R8206MG φ10.0±0.5 30±2 φ0.6±0.05 5.0±0.5 Products characteristics table Nominal Capacitance 20F Max. Usable Voltage1 3.8V(at -30 to +70℃) Max. Usable Voltage2 3.5V(at -30 to +85℃) Min. Operating Voltage1 2.2V(at -30 to +70℃) Min. Operating Voltage2 2.5V(at -30 to +85℃) Initial Internal Resistance(
in „Bauteilsuche? Stepup um 1,5V Batterien leer zu lutschen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
THT_SUPER-KONDENSATOR_3_8V_20F_30X10MM.pdf
VLCRS3R8206MG φ10.0±0.5 30±2 φ0.6±0.05 5.0±0.5 Products characteristics table Nominal Capacitance 20F Max. Usable Voltage1 3.8V(at -30 to +70℃) Max. Usable Voltage2 3.5V(at -30 to +85℃) Min. Operating Voltage1 2.2V(at -30 to +70℃) Min. Operating Voltage2 2.5V(at -30 to +85℃) Initial Internal Resistance(
in „Eigenschaften Alkali Batterien (Innenwiderstand)“ · Analoge Elektronik und Schaltungstechnik ·
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THT_SUPER-KONDENSATOR_3_8V_20F_30X10MM.pdf
VLCRS3R8206MG φ10.0±0.5 30±2 φ0.6±0.05 5.0±0.5 Products characteristics table Nominal Capacitance 20F Max. Usable Voltage1 3.8V(at -30 to +70℃) Max. Usable Voltage2 3.5V(at -30 to +85℃) Min. Operating Voltage1 2.2V(at -30 to +70℃) Min. Operating Voltage2 2.5V(at -30 to +85℃) Initial Internal Resistance(
in „ESP8266 verhalten bei Unterspannung“ · Mikrocontroller und Digitale Elektronik ·
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CA3280.pdf
Dual, 9MHz, Operational Features Transconductance Amplifier (OTA) • Low Initial Input Offset Voltage: 500µV (Max) (CA3280A) The CA3280 and CA3280A types consist of two variable • Low Offset Voltage Change vs I : <500µV (Typ) operational amplifiers that are designed to substantially reduce ABC for All Types
in „Suche OTA für +/-2.5V“ · Analoge Elektronik und Schaltungstechnik ·
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Preisliste_2008-09_Stand_Aug08.pdf
Acrylamid ✖ ✖ ✖ 100 g 34,00 EC-201, 500 g 903041 Acrylamid ✖ ✖ ✖ 500 g 102,00 EC300105 191005 TransforMax EPI300 elektrokompetente E.coli ❄ ❄ 5 x 100 μl 148,00 EC300110 191010 TransforMax EPI300 elektrokompetente E.coli ❄ ❄ 10 x 100 μl 259,00