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PDF
TCST_2103.pdf
Electrical Characteristics (Tamb = 25°C) Input (Emitter) Parameter Test Conditions Symbol Min. Typ. Max. Unit Forward voltage F = 60 mA VF 1.25 1.6 V Junction capacitance V = 0, f = 1 MHz C 50 pF R j Output (Detector) Parameter Test Conditions Symbol Min. Typ. Max. Unit Collector emitter voltaC = 1 mA
in „Lichtschranke TCST 2103“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Gabellichtschranke.pdf
Electrical Characteristics (Tamb = 25°C) Input (Emitter) Parameter Test Conditions Symbol Min. Typ. Max. Unit Forward voltage F = 60 mA VF 1.25 1.6 V Junction capacitance V = 0, f = 1 MHz C 50 pF R j Output (Detector) Parameter Test Conditions Symbol Min. Typ. Max. Unit Collector emitter voltaC = 1 mA
in „Strom für Gabellichtschranke“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BRO_EM_GER.pdf
vermeiden. Messgrößen, die überwacht und angezeigt werden können Netzgrößen Netz 1 Phase Mittelwert Max Min Alarmausgänge RS485 Impuls Analogausgang (dmd) V ,V LL LN Phasenasymmetrie A An Hz VA var W cosϕ +kWh (*) -kWh (*) +kvarh (*) -kvarh (*) Klirrfaktor (I-U) Klirrf. gerade (I-U) Klirrf.ungerade(I-U
in „Strommessung Hall-Sensor 30A 40A“ · Mikrocontroller und Digitale Elektronik ·
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PDF
til311.pdf
– REVISED FEBRUARY 1992 operating characteristics at T = 25 A ⋅C PARAMETER TEST CONDITIONS MIN TYP MAX UNIT Average per VCC = 5 V, V LED = 5 V, I Luminous intensity (see Note 3) character LED See Note 4 35 100 cd v Each decimal IF(DP)= 5 mA 35 100 cd λ Wavelength at peak emission V = 5 V, V = 5 V, 660
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PDF
mpsa42.pdf
Sketch B (Top View) SOT-23 Reel Configuration: Figure 4.0 Component Rotation W1 Measured at Hub Dim A Max Dim A See detail AA max Dim N 7" Diameter Option B Min Dim C See detail AA Dim D W3 min 13" Diameter Option W2 max Measured at Hub DETAIL AA Dimensions are in inches and millimeters Reel Tape Size Option
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PDF
Infineon-BFP650-DS-v02_00-EN.pdf
5 GeneralACcharacteristicsat T = 25°C A Parameter Symbol Values Unit Noteortestcondition Min. Typ. Max. Transition frequency T 31 42 – GHz VCE= 3V,CI =70mA, f= 1GHz Collector base capacitance CCB – 0.26 0.4 pF VCB= 3V, BE=0, f=1MHz, emittergrounded Collector emitter capacitance CCE 0.45 – VCE= 3V, BE
in „keysight ads bjt transistor (Bipolartransistor) Parameter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Infineon-BFP650-DS-v02_00-EN.pdf
5 GeneralACcharacteristicsat T = 25°C A Parameter Symbol Values Unit Noteortestcondition Min. Typ. Max. Transition frequency T 31 42 – GHz VCE= 3V,CI =70mA, f= 1GHz Collector base capacitance CCB – 0.26 0.4 pF VCB= 3V, BE=0, f=1MHz, emittergrounded Collector emitter capacitance CCE 0.45 – VCE= 3V, BE
in „Clapp Oszillator mit oder ohne Bandpassfilter“ · HF, Funk und Felder ·
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PDF
CNY17-I_CNY17-II_CNY17-III_TEM.pdf
Electrical Characteristics Tamb = 25⋅C Input (Emitter) Parameters Test Conditions Symbol Min. Typ. Max. Unit Forward voltage IF= 50 mA V F 1.25 1.6 V Junction capacitance V R 0, f = 1 MHz Cj 50 pF Output (Detector) Parameters Test Conditions Symbol Min. Typ. Max. Unit Collector emitter voltage IC= 1
in „Optokoppler CNY17“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MP3202_r0.91.pdf
CHARACTERISTICS V INV EN = 5V, TA= +25°C, unless otherwise noted. Parameters Symbol Condition Min Typ Max Units Operating Input Voltage V IN 2.5 6 V Supply Current (Shutdown) V EN= 0V 0.1 1 µA Supply Current (Quiescent) V FB= 0.15V 690 750 µA Switching Frequency f 1.0 1.3 1.5 MHz SW Maximum Duty Cycle V
in „TFT LED Backlight PWM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CNY17-I_CNY17-II_CNY17-III.pdf
Electrical Characteristics Tamb = 25⋅C Input (Emitter) Parameters Test Conditions Symbol Min. Typ. Max. Unit Forward voltage IF= 50 mA V F 1.25 1.6 V Junction capacitance V R 0, f = 1 MHz Cj 50 pF Output (Detector) Parameters Test Conditions Symbol Min. Typ. Max. Unit Collector emitter voltage IC= 1
in „Optokoppler Ansteuerung MP3-Soundmodul“ · Mikrocontroller und Digitale Elektronik ·
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PDF
aod522.pdf
Storage Temperature Range TJ, stg - 55 to 175 °C THERMAL RESISTANCE RATINGS Parameter Symbol Typ. Max. Unit b, d R Maximum Junction-to-Ambient t 10 sec thJA 32 40 °C/W Maximum Junction-to-Case Steady State R 0.5 0.6 thJC Notes: a. Based on C = 25 °C. b. Surface mounted on 1" x 1" FR4 board. c. t =
in „Suche einfache Möglichkeit 24V 6A DC zu schalten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
QEI_Cortex_M3.pdf
0x4002.D000 Offset 0x00C Type R/W, reset 0x0000.0000 31 30 29 28 27 26 25 24 23 22 21 20 19 18 17 16 MaxPos Type R/W R/W R/W R/W R/W R/W R/W R/W R/W R/W R/W R/W R/W R/W R/W R/W Reset 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 MaxPos Type R/W R/W R/W R/W R/W R/W R/W R/W R/W R/
in „Drehgeber Cortex M3“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sihfr014.pdf
c H C b1 GAUGE PLANE SEATING DETAIL "B" LC C PLANE L θ 1 (L1) A MILLIMETERS MILLIMETERS DIM. MIN. MAX. DIM. MIN. MAX. A 2.18 2.39 L 1.50 1.78 L1 2.74 ref. A1 - 0.13 b 0.65 0.89 L2 0.51 BSC L3 0.89 1.27 b1 0.64 0.79 b2 0.76 1.13 L4 - 1.02 L5 1.14 1.49 b3 4.95 5.46 c 0.46 0.61 L6 0.65 0.85 c1 0.41 0.56
in „Hilfe bei Bauteil identifikation“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
specifications are at A =25℃,V CC =5V,unless otherwise noted. UNI SYMBOL PARAMETER CONDITIONS MIN TYP MAX TS VCC Input Supply Voltage ● 4.0 5 8.0 V Input Supply Current Charge Mode, R = 1.2k ● 150 500 μA PROG StandbyMode(Charge ● 55 100 μA Terminated) ● 55 100 μA CC Shutdown Mode (R Not PROG Connected,VCC
in „Li-ION Akku laden“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
specifications are at A =25℃,V CC =5V,unless otherwise noted. UNI SYMBOL PARAMETER CONDITIONS MIN TYP MAX TS VCC Input Supply Voltage ● 4.0 5 8.0 V Input Supply Current Charge Mode, R = 1.2k ● 150 500 μA PROG StandbyMode(Charge ● 55 100 μA Terminated) ● 55 100 μA CC Shutdown Mode (R Not PROG Connected,VCC
in „Unbekanntes IC XT2058“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
specifications are at A =25℃,V CC =5V,unless otherwise noted. UNI SYMBOL PARAMETER CONDITIONS MIN TYP MAX TS VCC Input Supply Voltage ● 4.0 5 8.0 V Input Supply Current Charge Mode, R = 1.2k ● 150 500 μA PROG StandbyMode(Charge ● 55 100 μA Terminated) ● 55 100 μA CC Shutdown Mode (R Not PROG Connected,VCC
in „Lipo Ladeelektronik“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056_Kopie.pdf
specifications are at A =25℃,V CC =5V,unless otherwise noted. UNI SYMBOL PARAMETER CONDITIONS MIN TYP MAX TS VCC Input Supply Voltage ● 4.0 5 8.0 V Input Supply Current Charge Mode, R = 1.2k ● 150 500 μA PROG StandbyMode(Charge ● 55 100 μA Terminated) ● 55 100 μA CC Shutdown Mode (R Not PROG Connected,VCC
in „0,4 OHM SMD Widerstand woher ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056_1_LIIOn_charger.pdf
specifications are at A =25℃,V CC =5V,unless otherwise noted. SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNI TS Input Supply Voltage ● 4.0 5 8.0 V VCC Input Supply Current Charge Mode, RPROG = 1.2k ● 150 500 μA StandbyMode(Charge ● 55 100 μA Terminated) ● 55 100 μA CC Shutdown Mode (R Not PROG Connected
in „TC4056 LiPo-Lader-Chip mehr Versorgung real möglich?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
specifications are at A =25℃,V CC =5V,unless otherwise noted. UNI SYMBOL PARAMETER CONDITIONS MIN TYP MAX TS VCC Input Supply Voltage ● 4.0 5 8.0 V Input Supply Current Charge Mode, R = 1.2k ● 150 500 μA PROG StandbyMode(Charge ● 55 100 μA Terminated) ● 55 100 μA CC Shutdown Mode (R Not PROG Connected,VCC
in „Wer hat praktische Erfahrung mit dem Laden nackter Li-Ion Akkus?“ · Offtopic ·
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PDF
TP4056.pdf
specifications are at A =25℃,V CC =5V,unless otherwise noted. UNI SYMBOL PARAMETER CONDITIONS MIN TYP MAX TS VCC Input Supply Voltage ● 4.0 5 8.0 V Input Supply Current Charge Mode, R = 1.2k ● 150 500 μA PROG StandbyMode(Charge ● 55 100 μA Terminated) ● 55 100 μA CC Shutdown Mode (R Not PROG Connected,VCC
in „Stromwandler als Stromversorgung denkbar?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
specifications are at A =25℃,V CC =5V,unless otherwise noted. UNI SYMBOL PARAMETER CONDITIONS MIN TYP MAX TS VCC Input Supply Voltage ● 4.0 5 8.0 V Input Supply Current Charge Mode, R = 1.2k ● 150 500 μA PROG StandbyMode(Charge ● 55 100 μA Terminated) ● 55 100 μA CC Shutdown Mode (R Not PROG Connected,VCC
in „einzelne LiIonen Zelle laden - Schaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
specifications are at A =25℃,V CC =5V,unless otherwise noted. UNI SYMBOL PARAMETER CONDITIONS MIN TYP MAX TS VCC Input Supply Voltage ● 4.0 5 8.0 V Input Supply Current Charge Mode, R = 1.2k ● 150 500 μA PROG StandbyMode(Charge ● 55 100 μA Terminated) ● 55 100 μA CC Shutdown Mode (R Not PROG Connected,VCC
in „Laderegler Li-Ion 3s“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
specifications are at A =25℃,V CC =5V,unless otherwise noted. UNI SYMBOL PARAMETER CONDITIONS MIN TYP MAX TS VCC Input Supply Voltage ● 4.0 5 8.0 V Input Supply Current Charge Mode, R = 1.2k ● 150 500 μA PROG StandbyMode(Charge ● 55 100 μA Terminated) ● 55 100 μA CC Shutdown Mode (R Not PROG Connected,VCC
in „Lithium-Polymer Zellen richtig Laden“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
specifications are at A =25℃,V CC =5V,unless otherwise noted. UNI SYMBOL PARAMETER CONDITIONS MIN TYP MAX TS VCC Input Supply Voltage ● 4.0 5 8.0 V Input Supply Current Charge Mode, R = 1.2k ● 150 500 μA PROG StandbyMode(Charge ● 55 100 μA Terminated) ● 55 100 μA CC Shutdown Mode (R Not PROG Connected,VCC
in „Strommessschaltung für Akkuladung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
specifications are at A =25℃,V CC =5V,unless otherwise noted. UNI SYMBOL PARAMETER CONDITIONS MIN TYP MAX TS VCC Input Supply Voltage ● 4.0 5 8.0 V Input Supply Current Charge Mode, R = 1.2k ● 150 500 μA PROG StandbyMode(Charge ● 55 100 μA Terminated) ● 55 100 μA CC Shutdown Mode (R Not PROG Connected,VCC
in „Akkuschonen 80% Ladebegrenzung, wie ist das zu verstehen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
specifications are at A =25℃,V CC =5V,unless otherwise noted. UNI SYMBOL PARAMETER CONDITIONS MIN TYP MAX TS VCC Input Supply Voltage ● 4.0 5 8.0 V Input Supply Current Charge Mode, R = 1.2k ● 150 500 μA PROG StandbyMode(Charge ● 55 100 μA Terminated) ● 55 100 μA CC Shutdown Mode (R Not PROG Connected,VCC
in „LiPo Ladegerät was einstellbar nur bis ca. 80 Prozent lädt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
specifications are at A =25℃,V CC =5V,unless otherwise noted. UNI SYMBOL PARAMETER CONDITIONS MIN TYP MAX TS VCC Input Supply Voltage ● 4.0 5 8.0 V Input Supply Current Charge Mode, R = 1.2k ● 150 500 μA PROG StandbyMode(Charge ● 55 100 μA Terminated) ● 55 100 μA CC Shutdown Mode (R Not PROG Connected,VCC
in „Fragen zu zwei Micro-USB Ladegeräte mit TP4056 für 18650 Zellen bei 1 A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TP4056.pdf
specifications are at A =25℃,V CC =5V,unless otherwise noted. UNI SYMBOL PARAMETER CONDITIONS MIN TYP MAX TS VCC Input Supply Voltage ● 4.0 5 8.0 V Input Supply Current Charge Mode, R = 1.2k ● 150 500 μA PROG StandbyMode(Charge ● 55 100 μA Terminated) ● 55 100 μA CC Shutdown Mode (R Not PROG Connected,VCC
in „PCB Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Tsop1840.pdf
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
in „Zu blöd zum Lesen, TSOP 1740 und Toleranz?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tsop17.pdf
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
in „Tsop1738 an At90s2313“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TSOP1730_TSOP1736_TSOP1738_TSOP1756_VIS.pdf
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
in „IR Empfänger mit ATTiny“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TSOP17xx.pdf
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
in „Infrarot Fernbedienung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BSN10.pdf
D-MOS transistors FEATURES QUICK REFERENCE DATA • Direct interface to C-MOS, TTL, SYMBOL PARAMETER MAX. UNIT etc. VDS drain-source voltage 50 V • High-speed switching I DC drain current 175 mA • No secondary breakdown. D RDS(on) drain-source on-resistance 15 VGS(th) gate-source threshold voltage 1.8
in „Pegelwandler lässt TWI erfrieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
171115-da-01-en-IR_Empfaenger_Modul_TSOP_4838.pdf
Characteristics Tamb = 25 °C, unless otherwise specified Parameter Test condition Symbol Min Typ. Max Unit Supply Current (Pin 3) V = 5 V, E = 0 I 0.8 1.2 1.5 mA S v SD V = 5 V, E = 40 klx, sunlight I 1.5 mA S v SH Supply Voltage V S 4.5 5.5 V Transmission Distance E v 0, test signal see fig.1, IR d
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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PDF
TSOP1738.pdf
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
in „Daten per Infrarot übertragen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
U210b.pdf
the range 0 V to –7 V (reference point Pin 2). If Vpin9= –7 V then the phase angle is at maximum =▯ max i .e. the current flow angle is a minimum. The minimum phase angle ▯ minis when V pin9= V pin2. Voltage monitoring As the voltage is built up, uncontrolled output pulses are avoided by internal voltage
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PDF
TLPR5600.pdf
INTENSITY WAVELENGTH FORWARD VOLTAGE PART COLOR (mcd) at F (nm) at F (V) at F TECHNOLOGY MIN. TYP. MAX. (mA) MIN. TYP. MAX. (mA) MIN. TYP. MAX. (mA) TLPR5600 Red 1 3.5 - 10 - 630 - 10 - 2 3 20 GaAsP on GaP TLPR5600-AS12Z Red 1 3.5 - 10 - 630 - 10 - 2 3 20 GaAsP on GaP TLPH5600 Red 0.63 3.5 - 10 612 -
in „5 mm LED knicken - Pfusch?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Datenblatt.pdf
SATURATION CHARACTERISTICS 125 2.5 PULSE DURATION = 80µs -55 C 25 C PULSE DURATION = 80µs DUTY CYCLE = 0.5% MAX E DUTY CYCLE = 0.5% MAX ) VDD = 15V C VGS = 10VD I = 50A ( 100 U 2.0 T 175 C O N S E R T C R 75 N A1.5 U A S C R S I D E R 50 E R1.0 D I N ID L O 25 M R 0.5 O N 0 0 0 1 2 3 4 5 6 7 8 9 10 -80 -40 0
in „Motorensteuerung Raspberry PI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tsop17xx.pdf
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, Ev= 0 SD 0.4 0.6 0.8 mA VS= 5 V, Ev= 40 klx, sunlight SH 1.0 mA Transmission Distance Ev= 0, test signal see fig.7, d 35 m IR diode TSIP5201, IF= 400 mA Output Voltage
in „Farblaser (rot) zur Datenübertragung -> Empfänger?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
171085-da-01-en-IR-Empfaenger-Modul_TSOP_1740.pdf
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, Ev= 0 SD 0.4 0.6 0.8 mA VS= 5 V, Ev= 40 klx, sunlight SH 1.0 mA Transmission Distance Ev= 0, test signal see fig.7, d 35 m IR diode TSIP5201, IF= 400 mA Output Voltage
in „ir-Fernbedienung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
U_2537_B.pdf
Reference point pin 4, pin 6, unless otherwise specified Parameters Test Conditions / Pin Symbol Min Typ Max Unit Supply voltage range 8 V S –0.3 6.0 V Input voltages 1,3,5,7 –0.3 +VS V Input voltages 2 –0.3 0.6 V Input current 2 –4 1000 mA Power dissipation T amb= 105 _C Ptot 110 mW Junction temperature TJ
in „Temic-Datenblättern“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
at27c512.pdf
Characteristics for Read Operation AT27C512R -45 -55 -70 -90 -12 -15 Symbol Parameter Condition Min Max Min Max Min Max Min Max Min Max Min Max Units (3) ACC Address to Output Delay CE=OE/V PP = VIL 45 55 70 90 120 150 ns (2) CE CE to Output Delay OE/V PP= V IL 45 55 70 90 120 150 ns (2)(3) OE OE/V PPto
in „Eprom Vergleichstyp“ · Mikrocontroller und Digitale Elektronik ·
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PDF
M202SD01LA.pdf
storage in moist environmental conditions. 2-4. ABSOLUTE MAXIMUM RATINGS Table-4 Item Symbol Min. Max. Unit Supply Voltage Vcc -0.3 7.0 V Input signal voltage V IS -0.3 7.0 V AN-E-2230A [2/15] 2-5. RECOMMENDED OPERATING CONDITIONS Table-5 Item Symbol Condition Min. Typ. Max. Unit Supply Voltage Vcc
in „Hat schon jemand was mit dem FUJITSU VF60 Display gemacht?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bpw43.pdf
BPW43 Vishay Telefunken Basic Characteristics Tamb = 25_C Parameter Test Conditions Symbol Min Typ Max Unit Breakdown Voltage R = 100 mA, E = 0 V(BR) 32 V Reverse Dark Current VR= 10 V, E = 0 Iro 1 10 nA Diode Capacitance VR= 0 V, f = 1 MHz, E = 0 CD 4 pF VR= 5 V, f = 1 MHz, E = 0 CD 1.5 pF V = 10 V,
in „Frage zu Fotodiode BPW43“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX4194-MAX4197.pdf
amplifier is also offered in 93µA Supply Current 4 8µA Shutdown Current 1 three fixed-gain versions: the MAX4195 (G = +1V/V), the 9 MAX4196 (G = +10V/V), and the MAX4197 (G = (MAX4195/MAX4196/MAX4197) +100V/V). The fixed-gain instrumentation amplifiers fea- High Common-Mode Rejection: 115dB (G = +10V/V) 4
in „ADC nicht sauber sinus auf oszi“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NTCLE100E-SERIES_ENG_TDS.pdf
H2 I H 1 L 0 - 40 0 55 85 125 150 P d Tamb(°C) Note • Zero power is considered as measuring power max. 1 % of max. power. PHYSICAL DIMENSIONS FOR RELEVANT TYPE (all dimensions in millimeters) H1 R25VALUE BMAX. d H2 MAX. L P T MAX. MIN. MAX. 3.3 to 220 5.0 0.6 ± 0.06 1.0 4.0 6.0 24 ± 1.5 2.54 4.0
in „Gaggenau Backofen NTC-Luftfühler defekt“ · Haus & Smart Home ·
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PDF
NTCLE100E-SERIES_ENG_TDS.pdf
H2 I H 1 L 0 - 40 0 55 85 125 150 P d Tamb(°C) Note • Zero power is considered as measuring power max. 1 % of max. power. PHYSICAL DIMENSIONS FOR RELEVANT TYPE (all dimensions in millimeters) H1 R25VALUE BMAX. d H2 MAX. L P T MAX. MIN. MAX. 3.3 to 220 5.0 0.6 ± 0.06 1.0 4.0 6.0 24 ± 1.5 2.54 4.0
in „Defekt bei Sentiotec Sauna/Infrarotkabinen-Steuerung“ · Haus & Smart Home ·
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PDF
U2010B-1.PDF
determined by Cö and its charging currenö I . The charging current can be varied using Rö at Pin 14. The R 1max+ Vmains– V Smaxwhereas maximum phase angle, α max, can also be adjusted by 2 Itot usingR ö (minimumcurrentflowangleö min)see figure 4. Vmains + Mains supply voltage When the potential on Pin 3 reaches
in „Wie funktioniert die Drehzahlregelung beim Allstrommotor“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
82514_TFDU4100.pdf
ONLY, not guaranteed nor subject to production testing. Parameter Test Conditions Symbol Min Typ. Max Unit Supply voltage range 0 V ≤ V ≤ 6 V V - 0.5 + 6 V CC2 CC1 0 V ≤ VCC1 ≤ 6 V V CC2 - 0.5 + 6 V Input current for all pins, except IRED anode 10 mA pin Output sink current 25 mA Power dissipation see
in „IR-Tranceiver“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MOSFET-FCPF20N60.pdf
e-Series™ Quiet Series™ TinyBuck™ 0 CTL™ GTO™ RapidConfigure™ TinyLogic Current T®ansfer Logic™ IntelliMAX™ TINYOPTO™ 6 EcoSPARK ISOPLANAR™ ™ TinyPower™ 0 EfficentMax™ MegaBuck™ Saving our world, 1mW /W /kW at a timTinyPWM™ V EZSWITCH™ * MICROCOUPLER™ SmartMax™ TinyWire™ ™ MicroFET™ SMAR® START™ μSerDes™
in „Berechnen Irr von MOSFET“ · Analoge Elektronik und Schaltungstechnik ·