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PDF
AC_Powerswitch_CPC1976Y.pdf
V rms ESD, Human Body Model 4 kV 2 2 i t for Fusing (1/2 SineWave, 50Hz) 8 A s OperationalTemperature -40 to +85 °C StorageTemperature -40 to +125 °C 1 Derate linearly 1.33 mW / ºC 2 Derate linearly 20 mW / ºC Electrical Characteristics
in „Zusätzlicher Schalter aber keine Ader frei.“ · Haus & Smart Home ·
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PDF
AC_Powerswitch_CPC1976Y.pdf
V rms ESD, Human Body Model 4 kV 2 2 i t for Fusing (1/2 SineWave, 50Hz) 8 A s OperationalTemperature -40 to +85 °C StorageTemperature -40 to +125 °C 1 Derate linearly 1.33 mW / ºC 2 Derate linearly 20 mW / ºC Electrical Characteristics
in „Suche Halbleiterelement als Ersatz für Relai in Radar-Bewegungsmelder“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AC_Powerswitch_CPC1976Y.pdf
V rms ESD, Human Body Model 4 kV 2 2 i t for Fusing (1/2 SineWave, 50Hz) 8 A s OperationalTemperature -40 to +85 °C StorageTemperature -40 to +125 °C 1 Derate linearly 1.33 mW / ºC 2 Derate linearly 20 mW / ºC Electrical Characteristics
in „Triac vs Relais“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AC_Powerswitch_CPC1976Y.pdf
V rms ESD, Human Body Model 4 kV 2 2 i t for Fusing (1/2 SineWave, 50Hz) 8 A s OperationalTemperature -40 to +85 °C StorageTemperature -40 to +125 °C 1 Derate linearly 1.33 mW / ºC 2 Derate linearly 20 mW / ºC Electrical Characteristics
in „Relais 12v nach Tagen benutzung kaputt - Jalousien steuerung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AC_Powerswitch_CPC1976Y.pdf
V rms ESD, Human Body Model 4 kV 2 2 i t for Fusing (1/2 SineWave, 50Hz) 8 A s OperationalTemperature -40 to +85 °C StorageTemperature -40 to +125 °C 1 Derate linearly 1.33 mW / ºC 2 Derate linearly 20 mW / ºC Electrical Characteristics
in „230VAC Max 200mA mit ESP32 3,3VDC schalten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AC_Powerswitch_CPC1976Y.pdf
V rms ESD, Human Body Model 4 kV 2 2 i t for Fusing (1/2 SineWave, 50Hz) 8 A s OperationalTemperature -40 to +85 °C StorageTemperature -40 to +125 °C 1 Derate linearly 1.33 mW / ºC 2 Derate linearly 20 mW / ºC Electrical Characteristics
in „Triac oder Relais“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AC_Powerswitch_CPC1976Y.pdf
V rms ESD, Human Body Model 4 kV 2 2 i t for Fusing (1/2 SineWave, 50Hz) 8 A s OperationalTemperature -40 to +85 °C StorageTemperature -40 to +125 °C 1 Derate linearly 1.33 mW / ºC 2 Derate linearly 20 mW / ºC Electrical Characteristics
in „MOSFET 230V AC / 3V3 Arduino“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AC_Powerswitch_CPC1976Y.pdf
V rms ESD, Human Body Model 4 kV 2 2 i t for Fusing (1/2 SineWave, 50Hz) 8 A s OperationalTemperature -40 to +85 °C StorageTemperature -40 to +125 °C 1 Derate linearly 1.33 mW / ºC 2 Derate linearly 20 mW / ºC Electrical Characteristics
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PDF
MOC3020-M.pdf
t R / C d 6 E - G I A A 4 A 10 S E , M 2 D I 1 0 25 30 40 50 60 70 80 90 100 Ambient Temperature - TA( C) 0.1 -40 -20 0 20 40 60 80 100 o TA, AMBIENT TEMPERATURE ( C) © 2003 Fairchild Semiconductor Corporation Page 4 of 10 4/
in „Thyristor ein- bzw. ausschalten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MOC3022-M.pdf
t R / C d 6 E - G I A A 4 A 10 S E , M 2 D I 1 0 25 30 40 50 60 70 80 90 100 Ambient Temperature - TA( C) 0.1 -40 -20 0 20 40 60 80 100 o TA, AMBIENT TEMPERATURE ( C) © 2003 Fairchild Semiconductor Corporation Page 4 of 10 4/
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MOC3022-M.pdf
t R / C d 6 E - G I A A 4 A 10 S E , M 2 D I 1 0 25 30 40 50 60 70 80 90 100 Ambient Temperature - TA( C) 0.1 -40 -20 0 20 40 60 80 100 o TA, AMBIENT TEMPERATURE ( C) © 2003 Fairchild Semiconductor Corporation Page 4 of 10 4/
in „Problem beim dimmen von NV-Halogenspots“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MOC3022-M.pdf
t R / C d 6 E - G I A A 4 A 10 S E , M 2 D I 1 0 25 30 40 50 60 70 80 90 100 Ambient Temperature - TA( C) 0.1 -40 -20 0 20 40 60 80 100 o TA, AMBIENT TEMPERATURE ( C) © 2003 Fairchild Semiconductor Corporation Page 4 of 10 4/
in „triac und diac“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lnk302_304-306-179954-2.pdf
is a R1 13.0 kΩ 1% R3 C3 RF1 2.05 kΩ 10 µF D2 2 W Ω 1 mH FB BP C1 1% 35 V 1N4005GP 100 nF 12 V, D S L1 120 mA D3 1 mH 85-265 1N4007 C4 C5 LinkSwitch-TN 280 mA C2 VAC 4.7 µF 4.7 µF LNK304 D1 100 µF 3.3 kΩ D4 400 V 400 V UF4005 16 V 1N4007 RTN PI-3757-041509 Figure 5. Universal Input, 12 V, 120 mA Constant
in „AC/DC Wandler auf Zeitschaltuhr durchgebrannt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
182853-da-01-en-kmi_151t_drehzahlmesser.pdf
PARAMETER CONDITIONS MIN. TYP. MAX. UNIT CC (low) current output signal low see Figs 6 and 8 5.6 7.0 8.4 mA CC (high) current output signal high see Figs 6 and 8 11.2 14.0 16.8 mA r output signal rise time CL= 100 pF; see Fig.9; 10 to 90% value − 0.5 − s t output signal fall time C = 100 pF; see Fig.9;
in „Drehzahlmesser für Drehbank“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KMI_151T.pdf
PARAMETER CONDITIONS MIN. TYP. MAX. UNIT CC (low) current output signal low see Figs 6 and 8 5.6 7.0 8.4 mA CC (high) current output signal high see Figs 6 and 8 11.2 14.0 16.8 mA r output signal rise time CL= 100 pF; see Fig.9; 10 to 90% value − 0.5 − s t output signal fall time C = 100 pF; see Fig.9;
in „Fragen zur Magnetkraft?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
kmi_151t.pdf
PARAMETER CONDITIONS MIN. TYP. MAX. UNIT CC (low) current output signal low see Figs 6 and 8 5.6 7.0 8.4 mA CC (high) current output signal high see Figs 6 and 8 11.2 14.0 16.8 mA r output signal rise time CL= 100 pF; see Fig.9; 10 to 90% value − 0.5 − s t output signal fall time C = 100 pF; see Fig.9;
in „Signal am Zündkabel abgreifen ?!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KMI15.pdf
PARAMETER CONDITIONS MIN. TYP. MAX. UNIT CC (low) current output signal low see Figs 6 and 8 5.6 7.0 8.4 mA CC (high) current output signal high see Figs 6 and 8 11.2 14.0 16.8 mA r output signal rise time CL= 100 pF; see Fig.9; 10 to 90% value − 0.5 − s t output signal fall time C = 100 pF; see Fig.9;
in „KMI15/1 Drehzahlsensor reagiert nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Tsop1840.pdf
Consumption (Tamb x 85 °C) P tot 50 mW Soldering Temperature t x 10 s, 1 mm from case Tsd 260 °C Basic Characteristics Tamb = 25_C Parameter Test Conditions Symbol Min Typ Max Unit Supply Current (Pin 2) VS= 5 V, E v 0 ISD 0.4 0.6 1.5 mA V = 5 V, E = 40 klx, sunlight I 1.0 mA S v SH Supply Voltage (Pin 2) VS 4.5 5.5 V Transmission Distance Ev= 0, test signal see fig.7, d 35 m IR diode TSAL6200, I = 400 mA F Output Voltage Low (Pin 3) IOSL = 0.5 mA,E e 0.7 mW/m , 2 V OSL 250
in „Zu blöd zum Lesen, TSOP 1740 und Toleranz?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tsop17.pdf
Consumption (Tamb x 85 °C) P tot 50 mW Soldering Temperature t x 10 s, 1 mm from case Tsd 260 °C Basic Characteristics Tamb = 25_C Parameter Test Conditions Symbol Min Typ Max Unit Supply Current (Pin 2) VS= 5 V, E v 0 ISD 0.4 0.6 1.5 mA V = 5 V, E = 40 klx, sunlight I 1.0 mA S v SH Supply Voltage (Pin 2) VS 4.5 5.5 V Transmission Distance Ev= 0, test signal see fig.7, d 35 m IR diode TSAL6200, I = 400 mA F Output Voltage Low (Pin 3) IOSL = 0.5 mA,E e 0.7 mW/m , 2 V OSL 250
in „Tsop1738 an At90s2313“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TSOP1730_TSOP1736_TSOP1738_TSOP1756_VIS.pdf
Consumption (Tamb x 85 °C) P tot 50 mW Soldering Temperature t x 10 s, 1 mm from case Tsd 260 °C Basic Characteristics Tamb = 25_C Parameter Test Conditions Symbol Min Typ Max Unit Supply Current (Pin 2) VS= 5 V, E v 0 ISD 0.4 0.6 1.5 mA V = 5 V, E = 40 klx, sunlight I 1.0 mA S v SH Supply Voltage (Pin 2) VS 4.5 5.5 V Transmission Distance Ev= 0, test signal see fig.7, d 35 m IR diode TSAL6200, I = 400 mA F Output Voltage Low (Pin 3) IOSL = 0.5 mA,E e 0.7 mW/m , 2 V OSL 250
in „IR Empfänger mit ATTiny“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TSOP17xx.pdf
Consumption (Tamb x 85 °C) P tot 50 mW Soldering Temperature t x 10 s, 1 mm from case Tsd 260 °C Basic Characteristics Tamb = 25_C Parameter Test Conditions Symbol Min Typ Max Unit Supply Current (Pin 2) VS= 5 V, E v 0 ISD 0.4 0.6 1.5 mA V = 5 V, E = 40 klx, sunlight I 1.0 mA S v SH Supply Voltage (Pin 2) VS 4.5 5.5 V Transmission Distance Ev= 0, test signal see fig.7, d 35 m IR diode TSAL6200, I = 400 mA F Output Voltage Low (Pin 3) IOSL = 0.5 mA,E e 0.7 mW/m , 2 V OSL 250
in „Infrarot Fernbedienung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TSOP1738.pdf
Consumption (Tamb x 85 °C) P tot 50 mW Soldering Temperature t x 10 s, 1 mm from case Tsd 260 °C Basic Characteristics Tamb = 25_C Parameter Test Conditions Symbol Min Typ Max Unit Supply Current (Pin 2) VS= 5 V, E v 0 ISD 0.4 0.6 1.5 mA V = 5 V, E = 40 klx, sunlight I 1.0 mA S v SH Supply Voltage (Pin 2) VS 4.5 5.5 V Transmission Distance Ev= 0, test signal see fig.7, d 35 m IR diode TSAL6200, I = 400 mA F Output Voltage Low (Pin 3) IOSL = 0.5 mA,E e 0.7 mW/m , 2 V OSL 250
in „Daten per Infrarot übertragen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CAT41.pdf
ratio 100 mA LED current 400 V UVLO Undervoltage lockout (UVLO) Threshold 2.0 V http://onsemi.com 2 CAT4101 Table 4. RECOMMENDED EN/PWM TIMING (For 3.0 V ≤ VIN ≤ 5.5 V, over full ambient temperature range −40°C to
in „LED-Treiber Schaltung anpassen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
bts117.pdf
specified min. typ. max. Characteristics Drain source clamp voltage VDS(AZ) 60 - 73 V T j - 40 ...+ 150°C, D = 10 mA Off state drain current - - 5 µA IDSS V DS = 32 V, Tj= -40...+150 °C, VIN = 0 V Input threshold voltage VIN(th) 1.3 1.7 2.2 V ID = 0.7 mA - 30 60 µA Input current - normal operation
in „BTS117 - maximale Schaltfrequenz?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bts117.pdf
specified min. typ. max. Characteristics Drain source clamp voltage VDS(AZ) 60 - 73 V T j - 40 ...+ 150°C, D = 10 mA Off state drain current - - 5 µA IDSS V DS = 32 V, Tj= -40...+150 °C, VIN = 0 V Input threshold voltage VIN(th) 1.3 1.7 2.2 V ID = 0.7 mA - 30 60 µA Input current - normal operation
in „Schaltung mit Taster starten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BTS117.pdf
specified min. typ. max. Characteristics Drain source clamp voltage VDS(AZ) 60 - 73 V T j - 40 ...+ 150°C, D = 10 mA Off state drain current - - 5 µA IDSS V DS = 32 V, Tj= -40...+150 °C, VIN = 0 V Input threshold voltage VIN(th) 1.3 1.7 2.2 V ID = 0.7 mA - 30 60 µA Input current - normal operation
in „Leistungsschalter für MC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EEPROM.pdf
significant address bits are Don’t Care. 17/39 M95160, M95080 Figure 13. Page Write (WRITE) Sequence S 0 1 2 3 4 5 6 7 8 9 10 20 21 22 23 24 25 26 27 28 29 30 31 C Instruction 16-Bit Address Data Byte 1 D 15 14 13 3 2 1 0 7 6 5 4 3 2 1 0 S 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 C Data Byte 2
in „Probleme beim Ansteuern eines EEPROM über SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TSSP4P38-Datasheet.pdf
= 25 °C, unless otherwise specified) PARAMETER TEST CONDITION SYMBOL MIN. TYP. MAX. UNIT E v 0, V S 5 V ISD 0.55 0.7 0.9 mA Supply current E = 40 klx, sunlight I 0.8 mA v SH Supply voltage VS 2.5 5.5 V E v 0, test signal see fig. 1, Transmission distance IR diode TSAL6200, d 45 m IF= 200 mA IOSL =
in „Max. Strom für IR-LED für NEC-Code“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
bts432.pdf
see page 3) V bb 63 V Load dump protection V LoadDump= U A V ,sU A 13.5 V V s) 66.5 V R I 2 Ω, R L 1.1 Ω, td= 200 ms, IN= low or high Load current (Short-circuit current, see page 4) IL self-limited A Operating temperature range T j -40 ...+150 °C Storage temperature
in „High Side Switch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0201_xc62fp.pdf
CIRCUIT VOUT(E) OUT=40mA Output Voltage 4.900 5.000 5.100 V 1 (Note2) VI=6.0V MaximumOutput Current OUT max VI=6.0V, OUT(E) ʾ 4.5V 250 mA 1 w LoadStability ∆VOUT VI=6.0V 40 80 mV 1 1mA ʽ IOUT ʽ 100mA Vdif1 IOUT=100mA 120 300
in „Verk. 3,3V LDO's im TO89“ · Markt ·
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PDF
S-80825CNNB-B8K-T2.pdf
40 60 80 Ta (°C) Ta (°C) 2. Hysteresis Voltage Width (V HYS) - Temperature (Ta) S-80808CL S-80814CL 8.0 8.0 7.0 7.0 ) ) (6.0 % 6.0 Y (S H.0 H5.0 V V 4.0 4.0 3.0 3.0 -40 -20 0 20 40 60 80 -40 -20 0 20 40 60 80 Ta (°C) Ta (°C) S-80815CL S-80860CL 8.0 8.0 7.0 7.0 ) ) (6.0 %6.0 Y S H.0 H5.0 V V 4.0 4.0 3.0 3.0 -40 -20 0 20 40 60 80 -40 -20 0 20 40 60 80 Ta (°C) Ta (°C) Seiko Instruments Inc. 27 ULTRA-SMALL PACKAGE HIGH-PRECISION
in „Unbekanntes SMD Bauteil auf einer Fahrradrücklicht-Platine“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DCDC_Wandler.pdf
to 20 MHz Input Filter • Capacitor 9.0-36.0 V 15.0 V 135 mA 10 mA 100 µF 85% IM2415SA ±5.0 V ±200 mA 10 mA ±470 µF 81% IM2405S Input Surge • 24 V models: 50 VDC for 100 ms 48 V models: 100 VDC for 100 ms ±12.0 V ±85 mA 10 mA ±100 µF 83% IM2412S ±15.0 V ±65 mA
in „Verstehe die Schaltung nicht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Finder_Relais.PDF
) v contact current F 40 - Electrical life (AC) v contact current Types 40.31/51/61 Type 40.52 Resistive load - cosϕ = 1 s Inductive load - cosϕ = 0.4 s Resistive load - cosϕ = 1 l l Inductive load - cosϕ = 0.4 y y C C limit
in „[S] 14 Relais Finder 40.61.6.005.0000 oder kompatibel“ · Markt ·
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PDF
TD62083AFG_datasheet.pdf
100 mA,IN = 250 μA ⎯ 0.9 1.1 TD62083APG/AFG V IN= 3.85 V ⎯ 0.93 1.35 IIN (ON) 2 V IN= 5 V ⎯ 0.35 0.5 mA Input current TD62084APG/AFG V IN= 12 V ⎯ 1.0 1.45 IIN (OFF) 4 IOUT = 500 μA, Ta = 85°C 50 65 ⎯ μA V CE= 2 V,OUT = 200 mA ⎯ ⎯ 2.4 TD62083APG/AFG V CE= 2 V,OUT = 250 mA ⎯ ⎯ 2.7 V CE= 2 V,OUT = 300 mA
in „Lichtsteuerung über i2c - ULN2803A - S12-100“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Scheune_Neozed.pdf
Zähler HA-Kabel Zählerschrank S Abgang Scheune Einspeisung Scheune UV Scheune Abgang 1 25 mm² 10 mm² 6 mm² 6 mm² 2,5 mm² 10 m kWh 2 m 25 m 1 m 17 m 3,5 kW 1 NYY-J 5x 1 E 35 A H07V-K 1 D02 32 A NYY-J 5x 1 40 A / 30 mA H07V-K 1 C 16
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PDF
TC7S86F_datasheet_en_20140301.pdf
voltage VOUT 0 to CC V Operating temperature Topr −40 to 85 °C 0 to 1000 (VCC = 2.0 V) Input rise and fall time r ,ft 0 to 500(VCC = 4.5 V) ns 0 to 400(VCC = 6.0 V) 2 2014-03-01 TC7S86F/FU Electrical Characteristics DC Characteristics Characteristics Symbol
in „Identifizierung SMD Baustein Mainboard Technics SXKN2000“ · Platinen ·
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PDF
112333_vishay_irempfaenger_tsop31236_data.pdf
25 °C, unless otherwise specified) amb PARAMETER TEST CONDITION SYMBOL MIN. TYP. MAX. UNIT Ev= 0, V S 3.3 V ISD 0.27 0.35 0.45 mA Supply current (pin 2) E = 40 klx, sunlight I 0.45 mA v SH Supply voltage VS 2.5 5.5 V Ev= 0, test signal see fig. 1, Transmission distance IR diode TSAL6200, d 45 m F = 200
in „Signalübertragung IR LED -> Photodiode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TSOP2238.pdf
Temperature Range T amb –25...+85 °C Power Consumption (amb x 85 °C) Ptot 50 mW Soldering Temperature t x 10 s, 1 mm from case Tsd 260 °C Basic Characteristics Tamb = 25_C Parameter Test Conditions Symbol Min Typ Max Unit Supply Current (Pin 2) V S 5 V, E v 0 ISD 0.8 1.1 1.5 mA V S 5 V, E v 40 klx, sunlight ISH 1.4 mA Supply Voltage (Pin 2) V 4.5 5.5 V S Transmission Distance E v 0, test signal see fig.7, d 35 m IR diode TSAL6200, I F 250 mA Output Voltage Low (Pin 1) I = 0.5 mA,E = 0.7 mW/m , f = f V 250 mV OL
in „Frage zum TSOP2238“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT89C51.pdf
Programmable Serial Channel 8-bit Low-power Idle and Power-down Modes Microcontroller Description with 4K Bytes The AT89C51 is a low-power, high-performance CMOS 8-bit microcomputer with 4K bytes of Flash programmable and erasable read only memory (PEROM). The device Flash is manufactured using Atmel’s
in „Interner speicheraufbau eines 89C51 controllers“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TPS2115A.pdf
,I(IN1) 3.3 V, VI(IN2) 5 V, TJ= 125°C, C L 10 μF, I =L500 mA Measure transition time as 10−90% rise time or from 40 60 40 60 μs t Transition time 3.4 V to 4.8 V on VO(OUT)(see Figure 1b). t IN2 to IN1 transition, V = 5 V, V = 3.3 V, I(IN1) I(IN2) TJ= 125°C, C L 10 μF, I =L500 mA 40 60 40 60 μs Measure transition time as 10−90% rise time or from 3.4 V to 4.8 V on VO(OUT)(see Figure 1b). Turn-on propagation VI(IN1) VI(IN2) 5 V, measured from enable to 10% of tPLH1 VO(OUT), J =
in „Speisung umschalten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
XPort-Pro_IG.pdf
, +/-8kV Air Discharge) EN61000-4-3 (3 V/m (Unmodulated R.M.S.), 80 MHz - 1 GHz, 80% AM (1 kHz)) EN61000-4-4 (Ethernet Port: ±0.5 kV (Peak), 5 kHz) EN61000-4-6 (Signal Port(s):3 V (Unmodulated R.M.S), 0.15 MHz - 80 MHz, 80% AM (1
in „[V] 2St. gebrauchte Lantronix XPORT PRO Module -LAN-Seriell, KLEINEN DEFKTEN , zu Fädeln (beide 8€)“ · Markt ·
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PDF
XPort-Pro_IG.pdf
, +/-8kV Air Discharge) EN61000-4-3 (3 V/m (Unmodulated R.M.S.), 80 MHz - 1 GHz, 80% AM (1 kHz)) EN61000-4-4 (Ethernet Port: ±0.5 kV (Peak), 5 kHz) EN61000-4-6 (Signal Port(s):3 V (Unmodulated R.M.S), 0.15 MHz - 80 MHz, 80% AM (1
in „[V] 3St. gebrauchte Lantronix XPORT PRO Module -LAN-Seriell MIT KLEINEN DEFKTEN (alle für 15€)“ · Markt ·
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PDF
XPort-Pro_IG.pdf
, +/-8kV Air Discharge) EN61000-4-3 (3 V/m (Unmodulated R.M.S.), 80 MHz - 1 GHz, 80% AM (1 kHz)) EN61000-4-4 (Ethernet Port: ±0.5 kV (Peak), 5 kHz) EN61000-4-6 (Signal Port(s):3 V (Unmodulated R.M.S), 0.15 MHz - 80 MHz, 80% AM (1
in „[V] 1x gebrauchtes Lantronix XPORT PRO Module -LAN-Seriell Module (13€)“ · Markt ·
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PDF
74HC_HCT138.pdf
V). Symbol Parameter Conditions Tamb = 25 °C T amb = -40 °C Tamb = -40 °C Unit to +85 °C to +125 °C Min Typ Max Min Max Min Max 74HC138 VIH HIGH-level VCC = 2.0 V 1.5 1.2 - 1.5 - 1.5 - V input voltage V = 4.5 V 3.15 2.4 - 3.15 - 3.15 - V CC VCC = 6.0 V 4.2
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PDF
TL431A_432A.pdf
10 mA, R1 = 10 kΩ, R2 = ∞, I(dev) over full temperature range 3 T = −40°C to 125°C 0.8 2.5 µA (see Figure 1) A I Minimum cathode current for 2 V = V 0.4 1 mA min regulation KA ref off Off-state cathode current 4 VKA = 36 V, Vref= 0 0.1 1 µA I = 1 mA to 100 mA, V = V , |KA
in „Spannung mit Bezug +Ub messen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
podatkovna-tablica-2436030-tru-components-tc-9744120-linearni-ic-bulk.pdf
,PD@TA=25°C TO-94 0.6 W SOT23-6S,SOT23-5 0.4 Recommended working conditions describ Rang Compan e e y Working junction temperature -40 ~ 125 °C Operating ambient temperature -40 ~ 85 °C supply voltage +0.9 ~ +1.2 V Continuous input
in „Bauteilidentifizierung Aufwärtswandler?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
1510fc.pdf
VBOOST = 24V,SW ≤ 1A 20 35 mA/A Switch OFF Leakage Current VSW = 0V, CC ≤ 20V 2 100 A 20V < VCC≤28V 4 200 A MaximumV BAT with Switch ON VCC – 2 V MinimumI PROG for Switch ON 2 4 20 A MinimumI PROG for Switch OFF atPROG≤ 1V 1 2.4 mA Current Sense Amplifier Inputs (SENSE, BAT) Sense Resistance (S1) 0.08
in „Problem mit LT1510“ · Mikrocontroller und Digitale Elektronik ·
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PDF
P_100_LTV-354T.pdf
40 ~ 60% R.H. Floating Capacitance Cf — 0.6 1 pF V=0, f=1MHz Response Time (Rise) tr — 4 18 s VCE=2V, IC=2mA Response Time (Fall) tf — 3 18 s RL=100 I *1 CTR = C×100% I F Part No. : LTV-354T Series Page
in „AC Optokoppler mit integrierter Schmitttrigger Schaltstufe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TL7705_PoR.pdf
LOAD RESISTANCE 42 7 VCC = 5 V V CC = 5 V C = 0.1 F C T 0.1 F T 6 C = 10 pF 38 CL= 10 pF L TA= 25⋅C s TA= 25⋅C s 5 n – e 34 e m T T n 4 n 30 i RESET t f t RESET t r e e s 3 s a A 26 D t – 2 t RESET tr 22 RESET t f 1 18 0 0 2 4 6 8 10 0 2 4 6 8 10 R – Load Resistance – k RL– Load Resistance – k L Figure
in „Externer Baustein für BOD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TLP250.pdf
= 25°C ― 45 250 pF IF= 10 mA “H” level IOPH 3 V = 4V −0.5 −1.5 ― Output current V CC= 30V 8−6 A (*1) IF= 0 “L” level IOPL 2 V = 2.5V 0.5 2 ― 6−5 V = +15V, V = −15V “H” level V OH 4 CC1 EE1 11 12.8 ― Output voltage R L 200Ω, IF=
in „:: Beschaltung Power MOSFET...“ · Analoge Elektronik und Schaltungstechnik ·