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PDF
IRLU2905.pdf
to 1.5 watts are possible in typical surface mount applications. Absolute Maximum Ratings Parameter Max. Units I @ T = 25°C Continuous Drain Current, @10V 42 D C GS ID@ T C 100°C Continuous Drain CurrentGS@10V 30 A IDM Pulsed Drain Current 160 PD@T =C25°C PowerDissipation 110 W LinearDeratingFactor 0.71
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PDF
162828-da-01-en-IRLML_2803TR.pdf
ns TJ, STG Junction and Storage Temperature Range -55 to + 150 °C Thermal Resistance Parameter Typ. Max. Units R Maximum Junction-to-Ambi nt 230 °C/W θJA 4/28/03 IRLML2803 Electrical Characteristics @ T = 25°C Junless otherwise specified) Parameter Min. Typ. Max. Units Conditions V Drain-to-Source Breakdown
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PDF
TDA1905.pdf
SCHEMATIC DIAGRAM THERMAL DATA Symbol Parameter Value Unit Rth-j-case Thermal resistance junction-pins max 15 °C/W Rth-j-amb Thermal resistance junction-ambient max 70 °C/W 2/14 TDA1905 TEST CIRCUITS: WITHOUT MUTING WITH MUTING FUNCTION 3/14 TDA1905 ELECTRICAL CHARACTERISTICS (Refer to the test circuit,
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PDF
IRF7822.pdf
GS D Drain-Source Leakage DSS 30 V DS= 24V, VGS= 0 Current Current* 150 µA V DS= 24V, VGS= 0, Tj = 100°C Gate-Source Leakage GSS ±100 nA V GS= ±12V Current Total Gate Chg Cont FET QG 44 60 V GS.0V, I D15A, V =DSV Total Gate Chg Sync FET QG 38 V GS= 5.0V, VDS 100mV Pre-Vth QGS1 13 V DS= 16V, D = 15A Gate-Source
in „Falsches Ladegerät am Notebook :-(“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STB10NK60Z.pdf
Electrical characteristics Table 8. Source drain diode Symbol Parameter Test Conditions Min. Typ. Max. Unit SD Source-drain Current 10 A SDM Note 2 Source-drain Current (pulsed) 36 A VSD Note 4 Forward on Voltage SD =10A, VGS =0 1.6 V t rr Reverse Recovery Time I =8A, di/dt = 100A/µs, 570 ns Qrr Reverse
in „Ersatz für STB10NK60Z“ · Mikrocontroller und Digitale Elektronik ·
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PDF
X9C103.pdf
The position of the wiper element is controlled by the CS, U/D, and —V CC = 5V —Active Current, 3mA Max. INC inputs. The position of the wiper can be stored in nonvolatile memory and then be recalled upon a —Standby Current, 500µA Max. • High Reliability subsequent power-up operation. —Endurance, 100,000
in „Präzisionsspannungsquelle mit mindestens 100 Abstufungen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS_LM317SG.pdf
Adjustment pin current 50 100 µA ADJ ΔI Adjustment pin current V - V = 2.5 to 40V I = 10 mA to I 0.2 5 µA ADJ I O O MAX Reference voltage V - V = 2.5 to 40V I = 10 mA to I V REF I O O MAX 1.2 1.25 1.3 V (between pin 3 and pin 1)
in „Symmetrische Spannungsversorgung für Audiovorstufe“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Meanwell_LDD-L_LED_Treiber.PDF
3.5 ~ 8VDC or open circuit DIMMING & Power OFF : DIM ~ -Vin < 0.5VDC or short ON/OFF PWM FREQUENCY 100 ~ 1KHz CONTROL QUIESCENT INPUT CURRENT 1mAat PWM dimming OFF and 24VDC input IN SHUTDOWN MODE(max.) Regulated at rated output current SHORT CIRCUIT Protection type: Can be continued, recovers automatically
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PDF
Datenblatt.pdf
250 1900 - 2100 KTY82/251 1900 - 2000 KTY82/252 2000 - 2100 TC temperature coefficient - 0.79 - %/K R 100/R25 resistance ratio Tamb = 100 °C and 25 °C 1.676 1.696 1.716 R /R resistance ratio T = −55 °C and 25 °C 0.480 0.490 0.500 −55 25 amb R25 drift of sensor resistance a10000 h continuous 25 °C operation
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PDF
TB67S109AFTG_datasheet_en_20190228-1272643.pdf
DMODE0 1kΩ Logic DMODE1 Input DMODE2 Digital Input (VIH/VIL) CLK Pin k ENABLE VIH: 2.0V(min) to 5.5V(max) 0 RESET VIL: 0V(min) to 0.8V(max) 1 CW/CCW GND Logic Output Digital Output (VOH/VOL) LO Pin MO (Pullup resistance:10k to 100kΩ) GND VCC VCC VCC voltage range 4.75V(min) to 5.0V(typ.) to 5.25V(max)
in „Fragen zu schrittmotor Treiber“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TB67S109AFTG_datasheet_en_20190228-1.pdf
DMODE0 1kΩ Logic DMODE1 Input DMODE2 Digital Input (VIH/VIL) CLK Pin k ENABLE VIH: 2.0V(min) to 5.5V(max) 0 RESET VIL: 0V(min) to 0.8V(max) 1 CW/CCW GND Logic Output Digital Output (VOH/VOL) LO Pin MO (Pullup resistance:10k to 100kΩ) GND VCC VCC VCC voltage range 4.75V(min) to 5.0V(typ.) to 5.25V(max)
in „TB6600 - Halb- und Vollschritt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADA4817-1_4817-2.pdf
= 2V p-p, L = 1 kΩ −90/−94 dBc f = 50 MHz,OUT= 2V p-p, L = 1 kΩ −64/−66 dBc InputVoltage Noise f = 100 kHz 4 nV/√Hz Input Current Noise f = 100 kHz 2.5 fA/√Hz DC PERFORMANCE Input OffsetVoltage 0.4 2 mV Input OffsetVoltage Drift 7 μV/°C Input Bias Current 2 20 pA TMINoT MAX 100 pA Input Bias Offset Current
in „Alternative zum OPA656“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ADA4817-1_4817-2.pdf
= 2V p-p, L = 1 kΩ −90/−94 dBc f = 50 MHz,OUT= 2V p-p, L = 1 kΩ −64/−66 dBc InputVoltage Noise f = 100 kHz 4 nV/√Hz Input Current Noise f = 100 kHz 2.5 fA/√Hz DC PERFORMANCE Input OffsetVoltage 0.4 2 mV Input OffsetVoltage Drift 7 μV/°C Input Bias Current 2 20 pA TMINoT MAX 100 pA Input Bias Offset Current
in „Wittig(welec) DSO W20xxA Hardware“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD7401.pdf
Resolution 16 Bits min Filter output truncated to 16 bits 3 4 Integral Nonlinearity ±15 LSB max −40°Cto+85°C;±2LSBtypical;f MCLK=20MHzmaximum ±25 LSB max >85°C to 105°C 4 ±55 LSB max fMCLK= 20 MHz maximum ;V + =IN250 mV to +250 mV Differential Nonlinearity ±0.9 LSB max Guaranteed no missed codes
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stgp10nc60kd.pdf
voltage VCE= VGE, C = 250 µA 4.5 6.5 V Collector cut-off current = Max rating,T = 25°C CES CE C 150 µA (VGE= 0) VCE=Max rating,C = 125°C 1 mA Gate-emitter leakage GES VGE= ±20V, CE = 0 ±100 nA current CE = 0) gfs Forward transconductanceVCE = 15V, C= 5A 15 S Table 4. Dynamic
in „IGBT mit und ohne Reverse-Diode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM7001.pdf
V OUT2 max BO1 to BO3 –0.3 to +13 V V 3 max Output pins other than V 1 and V 2 –0.3 to V + 0.3 V OUT OUT OUT DD Maximum output current IOUT max BO1 to BO3 0 to 3.0 mA Ta = 85°C: LM7001J (DIP16) 300 mW Allowable
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PDF
LM334.pdf
- LM234 LM334 Unit Min. Typ. Max. Min. Typ. Max. Set Current Error (V+= +2.5V) - (note 1) % 10 A ISET 1mA 3 6 1mA I SET 5mA 5 8 2 A ISET 10 A 8 12 Ratio of Set Current to V Current 10 A ISET 1mA 14 18 23 14 18 26 1mA
in „Konstantstromquelle nicht konstant“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SAB0600.pdf
13.2 kHz to 2 5 ms (tDvaries in inverse proportiontof0) kQ Min. value 01external load resistor R1 10 Max. value 01 external load resistor R1 100 kQ Siemens Aktiengesellschaft 528 SAB 0600 SAB 0601 - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - S A B 0 6 0 2 Figure 2 Test
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PDF
SAB0600.pdf
13.2 kHz to 2 5 ms (tDvaries in inverse proportiontof0) kQ Min. value 01external load resistor R1 10 Max. value 01 external load resistor R1 100 kQ Siemens Aktiengesellschaft 528 SAB 0600 SAB 0601 - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - S A B 0 6 0 2 Figure 2 Test
in „Hausklingel defekt - Funktion unbekannt“ · Haus & Smart Home ·
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PDF
Infineon-IRLML2502-DataSheet-v01_01-EN.pdf
V TJ, STG Junction and Storage Temperature Range -55 to + 150 °C Thermal Resistance Parameter Typ. Max. Units RθJA Maximum Junction-to-Ambient 75 100 °C/W 1 www.irf.com © 2014 International RectifiSubmit Datasheet Feedback April 24, 2014 IRLML2502PbF Electrical Characteristics @ T = 25°C (unless otherwise
in „Hilfe bei Bauteilidentifizierung erbeten (MOSFET, SOT23)“ · Offtopic ·
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PDF
Vishay-Intertech-VS-E5PH6006L-N3_C2984102.pdf
ELECTRICAL SPECIFICATIONS (T = 25 °C unlessJotherwise specified) PARAMETER SYMBOL TEST CONDITIONS MIN. TYP. MAX. UNITS Breakdown voltage, blocking voltage VBR, R R = 100 μA 600 - - Forward voltage V F = 60 A - 1.4 1.7 V F F = 60 A, J = 125 °C - 1.2 - Reverse leakage current I VR= V Rated - - 25 μA R TJ= 125 °
in „Netzteil schützen / Diode / Rückstrom“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IRLML2502.pdf
V TJ, STG Junction and Storage Temperature Range -55 to + 150 °C Thermal Resistance Parameter Typ. Max. Units RθJA Maximum Junction-to-Ambient 75 100 °C/W 1 www.irf.com © 2014 International RectifiSubmit Datasheet Feedback April 24, 2014 IRLML2502PbF Electrical Characteristics @ T = 25°C (unless otherwise
in „Umsetzung eines 5V Output mit ESP32 und AQY Halbleiterrelais“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irfb3077pbf.pdf
Capability D S D G TO-220AB IRFB3077PbF G D S Gate Drain Source Absolute Maximum Ratings Symbol Parameter Max. Units c D @ TC= 25°C Continuous Drain CurrenGS@ 10V (Silicon Limited) 210 A D @ TC= 100°C Continuous Drain CurrenGS@ 10V (Silicon Limited) 150c I @ T = 25°C Continuous Drain Current,@ 10V (Wire Bond
in „Suche nach Treiber für Power-Mosfet“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
do3316taecq_temp_ok_.pdf
100 µH 0.39max X X )00 9,91 06,35ax H ( 22 µH e n10 Internal coDash number t 4.7 µH u d 0.46max I 1 µH 11,68 Recommended 1 0.36min Land Pattern 9.14 0.060 1,52 0.1 0.1 1 10 100 0.15typ 0.160 Current (A) 3,81 4,06 0.400 10,16 Current Derating 03,05 0.52max 120 13,21 110 100 inches n Dimensions are mm e90 u80 c e70 a60 f o50 n40 c e30 P ° 20 Isat 2 10 Irms 0 -40 -20 0 20 40 60 80 100 120 140 160180 Ambient temperature (°C) Specifications subject to change
in „Gesucht: DC-DC oder Boost converter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tpa3244.pdf
TPA3244 TPA3244 SLASEC6A –APRIL 2016–REVISED NOVEMBER 2016 www.ti.com 140 140 Device Top P1:8 PCB Max P1:4 PCB Max P1:8 Device Top P1:2 130 Device Top P1:4 PCB Max P1:2 130 120 120 ) ) ( 110 ( 110 e e t t r 100 r 100 p p m 90 m 90 e e T T 80 80 70 70 Device Top P1:8 PCB Max P1:4 PCB Max P1:8 Device
in „Class-D Verstärker TPA3244“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LCW_CQ7P.CC.pdf
min. 60 s max. 120 s (150 °C to 200 °C ) Ramp-up Rate to Peak* 2 K / s 3 K / s 180 °C to TP Liquidus Temperture TL 217 °C Time tLabove T L 80 s max. 100 s Peak Temperature T 245 °C max. 260 °C P Time tPwithin 5 °C of the specified 20 s min. 10 s max. 30 s peak temperature T - 5 K P Ramp-down Rate* 3 K / s 6 K / s maximum T to 100 °C P Time 25 °C to Peak temperature max. 8 min. All temperatures refer to the center of the package, measured on the
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PDF
DSS1.pdf
heating(in aiSoldering (in air) ( Solder temp. r250 t200 Solde r Soldering r150 temperature time p100 m 250~260 °C 4~6s e 50 T 1 minutes min. Soldering time (3) Resistance to soldering iron goes in the following condition that tip temperature is 350 °C max. And soldering time is 5 s max. (4) Products
in „Was ist das?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2N3702.pdf
Electrical Characteristics: (T A +25C unless otherwise specified) Parameter Symbol Test Conditions Min Typ Max Unit Collector−Base Breakdown Voltage V(BR)CBO C = 10mA, E = 0 40 − − V Collector−Emitter Breakdown VoltageV(BR)CEO C = 100A,B = 0 , Note 2 25 − − V Emitter−Base Breakdown Voltage V(BR)EBO E = 100
in „[V] ca. 250-280St 2N3702 (PNP TO92) und 128St. BC320 (PNP TO92)“ · Markt ·
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PDF
2N3702-NTE.pdf
Electrical Characteristics: (T A +25C unless otherwise specified) Parameter Symbol Test Conditions Min Typ Max Unit Collector−Base Breakdown Voltage V(BR)CBO C = 10mA, E = 0 40 − − V Collector−Emitter Breakdown VoltageV(BR)CEO C = 100A,B = 0 , Note 2 25 − − V Emitter−Base Breakdown Voltage V(BR)EBO E = 100
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MIC2951.pdf
≤ IL≤ 150mA, T J T J(max) 4.880 5.120 V MIC2951-3.3 (±1%), 100µA ≤ IL≤ 150mA, T ≤JT J(max) 3.221 3.379 V MIC2951-4.8 (±1%), 100µA ≤ IL ≤ 150mA, T J T J(max) 4.733 4.967 V Output Voltage MIC295x-02/-05 (±0.5%), Note 9 20 100
in „Highside-Switch gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
vnh2sp30.pdf
Pulse I II III IV Delays and Impedance 1 -25V -50V -75V -100V 2ms, 10Ω 2 +25V +50V +75V +100V 0.2ms, 10Ω 3a -25V -50V -100V -150V 0.1µs, 50Ω 3b +25V +50V +75V +100V 0.1µs, 50Ω 4 -4V -5V -6V -7V 100ms, 0.01Ω 5 +26.5V +46.5V +66.5V +86.5V 400ms, 2Ω ISO T/R Test
in „25A Regler per PWM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt.pdf
, RECTANGULAR PULSE DURATION (s) 1 FIGURE 3. NORMALIZED MAXIMUMTRANSIENTTHERMAL IMPEDANCE 400 T = MAX RATED 103 J FORTEMPERATURES ABOVE 25 C o SINGLE PULSEo DERATE PEAK CURRENT TC= 25 C CAPABILITY AS FOLLOWS: ) ) ( 100 ( T T 175 – C N 100µs E V GS = 20V I = I ---------------------- R R 25 150
in „Motorensteuerung Raspberry PI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
fn2864.pdf
= ±10V 12 20 - 12 20 - 12 20 mA (Note 2) FREQUENCY CHARACTERISTICS (All Waveforms) Max. Frequency of Oscillation fMAX 100 - - 100 - - 100 - - kHz Sweep Frequency of FM Input SWEEP - 10 - - 10 - - 10 - kHz Sweep FM Range (Note 3) - 35:1 - - 35:1 - - 35:1 - FM Linearity 10:1 Ratio - 0.5
in „Rechteck -> Sinus, Dreieck, Sägezahn(!)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ICL8038.pdf
= ±10V 12 20 - 12 20 - 12 20 mA (Note 2) FREQUENCY CHARACTERISTICS (All Waveforms) Max. Frequency of Oscillation fMAX 100 - - 100 - - 100 - - kHz Sweep Frequency of FM Input SWEEP - 10 - - 10 - - 10 - kHz Sweep FM Range (Note 3) - 35:1 - - 35:1 - - 35:1 - FM Linearity 10:1 Ratio - 0.5
in „8038 IC gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT1963.pdf
300 U TJ≤ 25°C T300 L P L V 250 O300 V250 T 200 TJ= 25°C D U200 L = 0.5A O D O O 150 E200 O150 D N D 100 R 100 IL= 100mA U100 50 G 50 IL= 1mA 0 0 0 0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 –50 –25 0 25 50 75 100 125 OUTPUT CURRENT (A) 1963 • G01 OUTPUT CURRENT (A) 1963 • G02
in „LT1963 puffern 2,5A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT1963.pdf
300 U TJ≤ 25°C T300 L P L V 250 O300 V250 T 200 TJ= 25°C D U200 L = 0.5A O D O O 150 E200 O150 D N D 100 R 100 IL= 100mA U100 50 G 50 IL= 1mA 0 0 0 0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 –50 –25 0 25 50 75 100 125 OUTPUT CURRENT (A) 1963 • G01 OUTPUT CURRENT (A) 1963 • G02
in „Widerstände für Spannungsregler ergeben nicht gewünschte Spannung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lt1963es8.pdf
300 U TJ≤ 25°C T300 L P L V 250 O300 V250 T 200 TJ= 25°C D U200 L = 0.5A O D O O 150 E200 O150 D N D 100 R 100 IL= 100mA U100 50 G 50 IL= 1mA 0 0 0 0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 –50 –25 0 25 50 75 100 125 OUTPUT CURRENT (A) 1963 • G01 OUTPUT CURRENT (A) 1963 • G02
in „LT1963 SHDN (shutdown) Pin Potenzialfrei ansteuern“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datenblatt-179345-stmicroelectronics-l78s05cv-spannungsregler-linear-typ78-to-220ab-positiv-fest-5-v-2-a.pdf
specified. Table 4. Electrical characteristics of L78S05 Symbol Parameter Test conditions Min. Typ. Max. Unit VO Output voltage 4.8 5 5.2 V V Output voltage I = 1 A, V = 7 V 4.75 5 5.25 V O O I V = 7 to 25 V 100 ΔV Line regulation I mV O V = 8 to 25 V 50 I ΔVO Load regulation O = 20 mA to 2 A 100 mV Q
in „TL431 schwankt wie verrückt!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BTS_100_High_Side.pdf
Thermal resistance K/W Chip-case Rth JC ≤ 3.1 Chip-ambient Rth JA ≤ 75 Semiconductor Group 1 04.96 BTS 100 Electrical Characteristics atTj= 25 °C, unless otherwise specified. Parameter Symbol Values Unit min. typ. max. Static Characteristics Drain-source breakdown voltage V (BR)DSS V VGS = 0, D = — 0.25
in „Motorsteuerung mit kollektorschaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bts100.pdf
Thermal resistance K/W Chip-case Rth JC ≤ 3.1 Chip-ambient Rth JA ≤ 75 Semiconductor Group 1 04.96 BTS 100 Electrical Characteristics atTj= 25 °C, unless otherwise specified. Parameter Symbol Values Unit min. typ. max. Static Characteristics Drain-source breakdown voltage V (BR)DSS V VGS = 0, D = — 0.25
in „BTS 100 Ersastzlösung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UPA1721.pdf
notebook computers. 1,2,3 ; Source 4 ; Gate 5,6,7,8 Drain FEATURES • Low on-resistance R DS(on)= 10.5 m MAX. (V GS = 10 V, I = 5.0 A) 6.0 ±0.3 1 4 R DS(on)= 14.0 m MAX. (V GS = 4.5 V, I = 5.0 A) 4 5.37 MAX. 4.4 0.8 . 1 R DS(on)= 17.0 m MAX. (V GS = 4.0 V, D = 5.0 A) X . . iss iss M + – • Low C : C = 2200
in „RC-Steller Kontronik Smile 30-6-12 Bestückung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IXTA-TP3N50D2_.pdf
8.00 8.89 .280 .320 E 9.65 10.41 .380 .405 E1 6.22 8.13 .270 .320 e 2.54 BSC .100 BSC Safe-Operating-Area Specification L 14.61 15.88 .575 .625 L1 2.29 2.79 .090 .110 Characteristic Values L2 1.02 1.40 .040 .055 Symbol Test Conditions Min. Typ. Max. L3 1.27 1.78 .050 .070 L4 0 0.13
in „J-FET N-Channel mit gößer 70V Drain / Source Spannung für Konstantstromsenke“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
1640586162378_1895.pdf
: mm) L A A1 A2 θ 0.25 c Dimensions Dimensions In Millimeters In Inches Symbol MIN MAX MIN MAX A 1.800 0.071 A1 0.020 0.100 0.001 0.004 A2 1.500 1.700 0.059 0.067 b 0.660 0.840 0.026 0.033 b1 2.900 3.100 0.114 0.122 c 0.230 0.350 0.009 0.014 D 6.300 6.700 0.248 0.264 E 3.300 3.700 0.130
in „ESP32-C6 und LDO“ · Mikrocontroller und Digitale Elektronik ·
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PDF
4N25.pdf
C Unless otherwise specified.) (Continued) AC Characteristic Test Conditions Symbol Device Min Typ* Max Unit 4N25 4N26 4N27 (F= 10 mA, CC= 10 V, L = 100Ω) 4N28 (Fig.20) H11A1 2 H11A2 Turn-off Time TOFF H11A3 µs H11A4 H11A5 (C = 2 mA, CC= 10 V,LR = 100Ω) 4N35 (Fig.20) 4N36 2 10 4N37 * Typical valuesAat
in „optocoupler beschaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CS4344-45-46-48_F1.pdf
Measurement Bandwidth 10 Hz to 20 kHz, unless otherwise specified.) 5 V Nom 3.3 V Nom Parameter Min Typ Max Min Typ Max Unit Dynamic Performance for CS4344/5/6/8-CZZ (-10 to 70°C) Dynamic Range 18 to 24-Bit A-weighted 99 105 - 97 103 - dB unweighted 96 102 - 94 100 - dB 16-Bit A-weighted 90 96 - 90 96 - dB
in „STA015, CS4344 Platinencheck“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ad835.pdf
FS Common-Mode Voltage Range –2.5 +3 V Offset Voltage ±3 620 mV vs. Temperature T to T 1 ±25 mV MIN MAX CMRR f ≤ 100 kHz; ±1 V p-p 70 dB Bias Current 10 20 A vs. Temperature TMIN to TMAX1 27 A Offset Bias Current 2 A Differential Resistance 100 k Single-Sided Capacitance 2 pF Feedthrough, X X = ±1V, Y
in „Verständnisfrage: Multiplikative Mischung und PSK“ · HF, Funk und Felder ·
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PDF
ct340_manual.pdf
by an open collector transistor referenced to 0V. VIN (Power) Input supply voltage Vin 10V min. 15V max. (Abs.max. not operational 20V) Supply voltage ripple Vrip Within Vin min. to max. up to 100Hz 250mV pk-pk frequencies > 100Hz Supply rise time Trise 75ms max. Input current Iin 500mA max. VIN is the
in „Münzprüfer Eines Geldspielautomaten umgehen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Application_Note__HVAC__rev1.1.pdf
Table & Properties • 100~120Vac Input Voltage 3.3W* (4.0W**) 4.0W (4.9W) 4.5W (5.5W) Vin.Typ Vf (rms) Bin R [Ω] C [F]*** R [Ω] C [F] R [Ω] C [F] F1 150 150 150 100 F3 100 3200n 100 4400n 100 5700n F5 50 50 50 F1 150 150 150
in „Samsung Hochvolt AC LED Erfahrungen?“ · Analoge Elektronik und Schaltungstechnik ·
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Bild
Typenschild einer tragbaren Powerstation
Power Station ALLPOWERS Model: AP-SS-009-PRO(S2000 PRO) Capacity: 1451.6Wh (43.2V~33.6Ah) AC Output: 100-120V/220-240V 2400W Max (Surged 4000W) (*When the battery drops to ~60%, the rated AC output is 2000W Max.) PRODUCT INPUT: AC: (100-120V)~15A 1500W Max 50Hz/60Hz USB-A: 2: 5V~3A, 9V~2A, 12V~1.5A 18W Max (220-240V)~7A 1500W Max 50Hz/60Hz USB-C: 2: 5V/9/12/15V~3A, 20V~5A 100W Max Solar: (12-150V)~13A, 1000W Max Car charger: 12/24V DC Car port: 12V~10A, 120W Max Charge Temperature: 0°C-40°C(32°F-104°F
in „ALLPOWERS S2000 PRO Reparaturhilfe“ · Mikrocontroller und Digitale Elektronik · · Fotos
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PDF
6N137.pdf
than 500 mV 2 0 Reverse Input Voltage Each Channel VR 5.0 V , Power Dissipation Single Channel PI 100 mW H C Dual Channel (Each Channel) 45 L DETECTOR 2 1 Supply Voltage VCC 7.0 V (1 minute max) D Output Current Single Channel IO 50 mA a Dual Channel (Each Channel) 50 - h Output Voltage Each Channel
in „Optokoppler mit TTL/Schmitt-Trigger?“ · Mikrocontroller und Digitale Elektronik ·