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PDF
Metrawatt-MA_5D.pdf
No, de articolo - ~19 Ker-Kond 47nF 63V 3.577•3.~_lJUr-- C20 Ker-Kond 1000pF 400V 3.577.332.0..- C21 Ta-E1ko 2,2j.lF 35V 3.577.348.01 ---~- C22 Ta-E1ko· 1,5j.lF 35V 3.577.349.01" - I ' C23 AI-Elko 330llF 25V 3.577.481.01 --t - ' C24 Ta-E1ko 2,2j.lF 35V 3.577.348.01 -- ' C25 AI-E1k
in „Metrawatt MA5D Abgleichanleitung A DC Bereich“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HSDL-3612.pdf
Information Package Option Package Part Number Standard Package Increment Front View HSDL-3612-007 400 Front View HSDL-3612-037 1800 Top View HSDL-3612-008 400 Top View HSDL-3612-038 1800 2 I/O Pins Configuration Table Pin Description Symbol 1 Supply Voltage V CC 2 Analog Ground AGND 10 9 8 7 6 5 4 3
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PDF
MSM486SE-DIGITAL-LOGIC.pdf
°C 50°C 55°C 60°C n.a. no Heat Sink vert. 65°C 50°C 55°C 60°C n.a. CPU: ELAN400 Clock: 66Mhz T (case) = 110°C Powerconsumption: 3W Temp. Measured temp. T ambient T ambient T ambient ambient by Ta=20°C no Airflow Airflow Airflow -E28 0 m/sec 3 m/sec 6 m/sec no Heat Sink horiz. 55°C 70°C 73°C 75°C n.a. no Heat Sink vert. 53°C 70°C 73°C 75°C n.a. CPU: ELAN400 Clock: 33Mhz T (case) = 110°C Powerconsumption: 3W Temp. Measured temp. T ambient T ambient T ambient ambient by Ta=20°C no Airflow Airflow Airflow -E28 0 m/sec 3 m/sec 6 m/sec no Heat Sink horiz. 50
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lt1025_datasheet.pdf
high open loop gain is necessary for single-stagethermocoupleamplifierswith10mV/°Corhigher 20 SCALE T 8 outputs. A type K amplifier, for instance, with 100mV/°C 0 50 100 150 200 250 300 350 400 output,needsaclosedloopgainof 2,500.Anordinaryop TEMPERATURE (°C) LT1025 • G04 amp with a minimum open loop
in „Abgastemperatursensor mit LT1025“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STD5NM50.pdf
Drain-gate Voltage GS= 20 k ) 500 V V GS Gate- source Voltage ±30 V ID Drain Current (continuous) Ct T = 25°C 7.5 A ID Drain Current (continuous) Ct T = 100°C 4.7 A DM l) Drain Current (pulsed) 30 A P Total Dissipation at T = 25°C 100 W TOT C Derating Factor 0.8 W/°C dv/dt (1) Peak Diode Recovery voltage slope 15 V/ns T Storage Temperature stg – 55 to 150 °C Tj Max. Operating Junction Temperature (•)Pulse width limited by safe operating area (1)SD ≤ 5A, di/dt ≤ 400DD≤ V(BR)DSSj ≤JMAX. September 2002 1/10 STD5NM50/STD5NM50
in „Dynamischer Wärmewiderstand => Cth Rth“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BC368.pdf
Current A G G500 A 1 β =10 T VCE = 5V L E V R400 U 125 °C E 0.1 25°C C300 T E M 125 °C S 25 °C - U200 R - 40 °C P - 40 °C T0.01 A E I100 L P O T C E 0 -A F 0.001 0.01 0.1 1 E 0.01 0.1 1 h I - COLLECTOR CURRENT (A) VC IC- COLLECTOR
in „Transistor - Spannungsabfall“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ceramics_trans.pdf
寸法図 Piezoelectric Transformers Specifications & Dimensions 項目 カタログ品番 Model No. Item AP-313TP AS-313T AS-B523T AS-A243T AS-A163T P 0 (W) 最大定格 2.0 2.0 3.0 4.0 6.0 Maximum V 0 (Vrms) 1000 1100 1500 1800 2300 Rated Ta (℃ ) –10 ~ 85 Fr (kHz) 150 150 125 100 70 電気特性・ C (pF) 500±20% 500±10% 615±20% 460±10%
in „Was ist das für ein Bauteil? Resonator? HallSensor?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PS-MPU-3300-00.pdf
LOW tHIGH SCL High Period 0.6 µs tSU.STA Repeated START Condition Setup 0.6 µs Time tHD.DAT SDA Data Hold Time 0 µs tSU.DAT SDA Data Setup Time 100 ns tr, SDA and SCL Rise Time Cbbus cap. from 10 to 400pF
in „SPI Kommunikation mit MPU3300“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spannungsregler_3_3V_A100_ZLDO330-ZETEX.pdf
C(ou=1 F 55 C (o=1 F 50 ) 1200 45 ( 1000 ) 40 10pF c B 35 n 800 ( 4.7pF d 10pF n 30 2.2pF p 4.7pF t 600 c 25 t 2.2pF e 20 u R t 400 l 15 u p O 200 i 10 R 5 0 0 100 1K 10K 100K 100 1K 10K 100K Frequency (Hz) Frequency (Hz) Output Impedance vs. Frequency Ripple Rejection vs. Frequency 3.33 Io=10mA 680 V(in)=5V V(in)=5V 640 3.32 A 600 ) 3.31 ( ( t g e 560 t 3.30 r o u 520 V t u 3.29 e t c 480 u i O 3.28 u 440 Q 3.27 400 -40 -20 0 20 40 60 80 100 -40 -20 0 20 40 60 80 Temperature ( °C) Temperature ( °C) Output Voltage Temperature Coefficient Quiescent
in „ZLDO500 Reverse Voltage“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datenblatt_HELLIGKEITSSENSOR_NAPICA_SMD_AMS104YJ.pdf
t2= max. 30 s • Frequenz zwischen 27 und 29 kHz Bekleidung ausgestattet und geerdet sein (1b) Lötkolben: • Leistungsdichte: max. 0,24 mW (500 kΩ bis 1 MΩ). Temperatur : 350 bis 400°C • Reinigungszeit:
in „helligkeit messen, definiertes ausgangssignal“ · Mikrocontroller und Digitale Elektronik ·
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irfh4210d_pbf.pdf
Drain Current, VGS@ 10V 100 (Source Bonding Technology Limited) IDM Pulsed Drain Current 400 P D@T =A25°C Power Dissipation 3.5 W P D@T C(Bottom)5°C Power Dissipation 125 Linear Derating Factor 0.028 W/°C TJ Operating Junction and -55 to + 150 °C TSTG Storage Temperature Range Notes through
in „Akkubohrschrauber 10,8V von Makita und Metabo“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
HD44100_Spaltentreiber.pdf
Symbol Terminals Min Typ Max Unit Note Data shift frequency f CL2 — — 1 MHz CL Clock high level width t CL1, CL2 450 — — ns CWH Clock low level width t CL2 450 — — ns CWL Data set–up time f DI 100 — — ns SU Clock set–up time (1) t CL2 200 — — ns 1 SL Clock set–up time (2) tLS CL1 200 — — ns 2 Output delay
in „HD44780 und HD44100 Schaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HAL300_Differential_Hall-Effect_Sensor_IC_2ds-1109203.pdf
DD Temperature Range VDDZ Overvoltage Protection 1 – 28.5 32.5 V DD = 25 mA, J = 25 °C, at Supply t = 20 ms VOZ OvervoltageProtectionatOutput 3 – 28 32.5 V OL = 25 mA, J = 25 °C, t = 20 ms V Output Voltage over 3 – 180 400 mV I = 20 mA OL Temperature Range O OH Output Leakage Current over 3 – 0.06
in „Hall-Effekt Sensor Aufschrift decodieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BH1415F.pdf
L-ch PLL VCC Shift register − + LPF 1 1 Pre-emphasis 50 4 and Limiter MPX MUTE 1 1 + 2 19 fI=400Hz − LPF ~ Program counter Phase detector + OSC RF V CC 2 GND VCC RF GND R-ch 1 2 3 4 5 6 7 8 9 10 11 + 0.01µ 0 10+ 1 p + 0 0 µ+ 2 1 1 100µ 0 1 +5V VIN (LIM) ) B ( l v t u 1dB t u O Input level (dBV) V IN(LIM) Fig.4 BH1415F Audio ICs LPFcutofffrequency 7.6MHz 10µ 0 0 + 1 4 e 7 7 b 2 2 µ g n 0 t t c i 0 u a l h M D C C L-ch 22 21 20 19 18 17 16 15 14 13 12 PLL VCC Shift register − LPF + 1 1 Pre-emphasis MPX 50 4 and Limiter MUTE + 1 1 LPF 2 19 ~ fI=400Hz − V I=−20dBV Phase Program counter detector
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bh1415f.pdf
L-ch PLL VCC Shift register − + LPF 1 1 Pre-emphasis 50 4 and Limiter MPX MUTE 1 1 + 2 19 fI=400Hz − LPF ~ Program counter Phase detector + OSC RF V CC 2 GND VCC RF GND R-ch 1 2 3 4 5 6 7 8 9 10 11 + 0.01µ 0 10+ 1 p + 0 0 µ+ 2 1 1 100µ 0 1 +5V VIN (LIM) ) B ( l v t u 1dB t u O Input level (dBV) V IN(LIM) Fig.4 BH1415F Audio ICs LPFcutofffrequency 7.6MHz 10µ 0 0 + 1 4 e 7 7 b 2 2 µ g n 0 t t c i 0 u a l h M D C C L-ch 22 21 20 19 18 17 16 15 14 13 12 PLL VCC Shift register − LPF + 1 1 Pre-emphasis MPX 50 4 and Limiter MUTE + 1 1 LPF 2 19 ~ fI=400Hz − V I=−20dBV Phase Program counter detector
in „Stereo-HF-Transmitter fürs Autoradio“ · HF, Funk und Felder ·
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PDF
BUT11AF.pdf
C/W θjC ©2001 Fairchild Semiconductor Corporation Rev. A2, August 2001 B U Typical Characteristics T 1 1 F 1000 / 10 1 VCE= 5V IC= 5 B 1 E A A T F O I V A 100 N 1 T I N A E R R U U A C , C 10 V 0.1 D t V (sat) ,F s CE h E V 0.01 1 0.01 0.1 1 10 0.01 0.1 1 10 I [A], COLLECTOR CURRENT C [A], COLLECTOR
in „BUT11AX mit BUT11AF austauschen?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
0; volatile int sek=0; //Interrupt Service Routine ISR(TIMER1_COMPA_vect) { counter++; if(counter==400)// 400 Interrupts entsprechen einer Sekunde { sek++; counter=0; } } //--------------------------------------------------------------------------------------------------- ISR(INT1_vect) { int_zahl++;
in „Problem mit Frequenzzähler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Panasonic_Ni-MH_Batteries_Handbook.pdf
16 1.5 Discharge: 20°C Charge 1.8 700mA (1lt) Rapid*4(mA x hrs.) 700 x 1.2 )1.7 Charge: 700mA -dV 1,400mA (2lt) (1.5 Discharge: 20°C Standard 0 to 45 e1.6 Charge (°C) t1.2 700mA (1lt) Rapid 0 to 40 V1.5 1,400mA (2lt) r e1.1 700mA (1lt) a Discharge (°C) -10 to 65 a1.4 1,400mA (2lt) e o1.3 p <1 year -20
in „Langlebige Sub-C Zelle gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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DOC0942.pdf
Counter0 and the Analog Comparator interrupts. This frees the MCU resources during conversion. 2 AVR400 0942B–AVR–05/02 AVR400 Subroutine This subroutine is called to initialize the ADC. This must be done before the ADC is “convert_init” – ADC used. By calling this subroutine, the Comparator and Timer
in „ADC: Messung einer analogen Spannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AVR400.pdf
Counter0 and the Analog Comparator interrupts. This frees the MCU resources during conversion. 2 AVR400 0942B–AVR–05/02 AVR400 Subroutine This subroutine is called to initialize the ADC. This must be done before the ADC is used. By calling this subroutine, the Comparator and Timer interrupts are enabled
in „AT90S2313 und die Beleuchtung messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC34063A-D.pdf
exceeds the following tests: Human Body Model 4000 V per MIL−STD−883, Method 3015. Machine Model Method 400 V. 3. NCV prefix is for automotive and other applications requiring site and change control. http://onsemi.com 2 MC34063A, MC33063A, NCV33063A ELECTRICAL CHARACTERISTICS (V = 5.0 V, T = T to T [Note
in „Schaltregler MC34063 - Wie berechnet man CT?!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MC34063A-D.pdf
exceeds the following tests: Human Body Model 4000 V per MIL−STD−883, Method 3015. Machine Model Method 400 V. 3. NCV prefix is for automotive and other applications requiring site and change control. http://onsemi.com 2 MC34063A, MC33063A, NCV33063A ELECTRICAL CHARACTERISTICS (V = 5.0 V, T = T to T [Note
in „5 Volt aus 3,6 Volt mit 34063“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MC34063A-D.pdf
exceeds the following tests: Human Body Model 4000 V per MIL−STD−883, Method 3015. Machine Model Method 400 V. 3. NCV prefix is for automotive and other applications requiring site and change control. http://onsemi.com 2 MC34063A, MC33063A, NCV33063A ELECTRICAL CHARACTERISTICS (V = 5.0 V, T = T to T [Note
in „MC34063 Strombegrenzung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAS6180C.pdf
Width Recognition Limits for Different Time Signals Parameter Symbol Min Max Unit DCF77 Output Pulses T 40 130 ms 100ms T200ms 140 250 MSF Output Pulses T 100ms 50 160 ms T 200ms 170 300 T 500ms 400 600 WWVB Output Pulses T 200ms 100 300 ms T 500ms 400 600 T 800ms 700 900 JJY60 Output Pulses T 200ms 100 300 ms T 500ms 400 600 T 800ms 700 900 JJY40 Output Pulses T 200ms 100 300 ms T 500ms 400 600 T 800ms 700 900 7 (12) DA6180C.001 17 September, 2014 PIN CONFIGURATION & TOP MARKING FOR PLASTIC TSSOP-16 PACKAGE
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T2117_zero_switch.pdf
230 V ~ 1600 Ω k 1200 (c y s R 800 400 0 0 200 400 600 800 1000 1200 1400 t (µs) p 5 4768B–INDCO–10/05 6. Supply Voltage The T2117 contains a voltage limiting funtion and can be connected with the mains supply via the diode D and the resistor
in „Suche Steuerung für 2kW Heizwendel (230V)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
171573-da-01-en-LT_1073_5_DIP_8_STEP_UP_1V_5V.pdf
1200 VIN= 1.5V L = 82µH 1100 1.0 1.3 1000 V IN= 3V V = 1.25V V ) IN E 1.2 A 900 0.8 G ( V L N 800 T VIN= 1V O 1.1 R700 S 0.6 VIN= 5V N U V O 1.0 C 600 V = 3V C C 500 VIN= 1.5V 0.4 IN I I V = 2V S 0.9 S 400 IN 300 0.2 0.8 200 0.7 0 0 0.2 0.4 0.6 0.8 1.0 1.2 0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 1010 100
in „LT 1073 Spg.schwankungen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SPLC-780-A1.pdf
Condition Min. Typ. Max. External Frequency FOSC2 125 250 350 KHz Duty Cycle 45 50 55 % Rise/Fall Time t r, t f - - 0.2 s WRITE MODE (Writing Data from MPU to SPLC780A1) Limit Characteristics Symbol Unit Test Condition Min. Typ. Max. E Cycle Time C 400 - - ns Pin E E Pulse Width tPW 150 - - ns Pin E E Rise
in „Nur Hyroglphen auf dem LCD“ · Mikrocontroller und Digitale Elektronik ·
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Bestandsliste.pdf
€ 3,23 € 548 5X20F400MA Feinsicherung 400mA 5x20mm 250V fink 42Stk 0,04 € 1,79 € 549 5X20T400MA Feinsicherung 400mA 5x20mm 250V träge 236Stk 0,06 € 12,98 € 550 5X20F40MA Feinsicherung 40mA 5x20mm 250V fink 7Stk 0,22 € 1,51
in „Auflösung Elektronik Shop“ · Markt ·
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f1ca_5.pdf
SPST-NO) C : 2 form C (c) Coil type / enclosure A : Standard type (530mW) D : High sensitivity type (400mW) (d) Coil rated voltage 005 : 5....110VDC Coil rating table at page 3 (e) Contact material / TV type V : Gold plate silver tin oxide (standard type) T : Gold plate silver tin oxide (TV-3 rating type
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moc3023.pdf
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 400 V Output on-state current, total rms value (50-60 Hz, full sine wave):T A 25⋅C . . . . . . . . . . . . . . . . . . . 100 mA T = 70⋅C . . . . . . . . . . . . . . . . . . . . 50 mA A Output driver nonrepetitive
in „Moc3023 Phasenanschnittssteuerung“ · Mikrocontroller und Digitale Elektronik ·
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74hc76_Matorola.pdf
30 6.0 17 21 26 w Minimum Pulse Width, Clock 2.0 80 100 120 ns (Figure 1) 4.5 16 20 24 6.0 14 17 20 t Minimum Pulse Width, Set or Reset 2.0 80 100 120 ns w (Figure 2) 4.5 16 20 24 6.0 14 17 20 tr ft Maximum Input Rise and Fall Times 2.0 1000 1000 1000 ns (Figure 1) 4.5 500 500 500 6.0 400 400 400 NOTE
in „toggle flip flop areitet unsauber“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet_akku.pdf
3.3V for▯ ) e 20 days at 60 deg. C e l2.5 t 2.0 V V 1.5 2 Initial 4mA 3mA 2mA 1mA 1.00 10 20 30 40 50 60 70 80 1.5 0 100 200 300 400 500 Discharge duration time (h) Discharge duration time (h) l Storage Characteristics Discharge load: 1q kTemperature: 20 deg. C 3.5 3.0 ) e 2.5 Initial t V 2.0 1.5 After stored for 60 days at 60 deg. C 1.0 0 100 200 300 400 500 Discharge duration time (h) * Nominal capacity indicates duration until the voltage drops down to 2.0V when discharged at a nominal
in „Pufferakkumulator für Real Clock PCF8583“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
SWITCHING USE INSULATED TYPE SWITCHING TIME VS. BASE REVERSE BIAS SAFE OPERATING AREA CURRENT (TYPICAL) 2 400 T=125°C ) 10 1 s A s C t 7 I 300 s 5 T t 4 N R IB=–2A E 3 R T 2 U 200 IB=–5A VCC=300V C N I=150A tf R H 10 0 B1=3A T C C I 7 L 100 W 5 L S 4 Tj=25°C C 3 Tj=125°C 2 10–1 2 3 4 5 7 100 2 3 4 5 7 101 00
in „Was ist das für eine Art Transistormodul?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTC2631.pdf
l 0 400 kHz t Hold Time (Repeated) Start Condition l 0.6 μs HD(STA) tLOW Low Period of the SCL Clock Pin l 1.3 μs tHIGH High Period of the SCL Clock Pin l 0.6 μs t Set-Up Time for a Repeated Start Condition
in „STM32 -> LTC2870 -> DA-70157“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GSMParkHeatingControl.pdf
S SM4007 IRLML6401 R406 Umin = 1.48V, Umax=3.56V K108 schwarz +12V R404 R405 R407 Vbat V K109 vio T101 1 K110 braun D101 C101 +4V 0 n 0 n 0 n 0 +F R105 5k6 1k8 500 1k8 T401 C 0 6 0 6 0 C µ T100 SH_ON/OFF +12V D403 1 C 1 C 1 1 100nF 1K IC400 +4V_SW BCW66 R106 k IRLML6401 IC600 Lüften/Heizen b P6KE6V8CA
in „Bitte um Überprüfung: GSM Steuerung mit GPS“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PreDisChargeRelay.pdf
240mW 240mW nominal voltage 12V DC (Initial) (Initial) 18.8mA 18.8mA 640Ω 640Ω 24V DC 10mA 10mA 2,400Ω 2,400Ω 48V DC 4.7mA 4.7mA 10,200Ω 10,200Ω ASCTB210E 201202-T Panasonic Corporation Automation Controls Business Unit industrial.panasonic.com/ac/e/ ST 2. Specifications Characteristics Item Specifications
in „Relais Wechsler oder nicht?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Transistoren_cht.pdf
IRFD2Z1 150 5 0.32 DIP Harris IRFD2Z2 200 6.5 0.3 DIP Harris IRFD2Z3 150 6.5 0.3 DIP Harris IRFD310 400 3.6 0.42 1.3 DIP IR IRFD310 400 3.6 0.42 1.3 HEXDIP IR IRFD311(R) 350 3.6 0.4 DIP Harris IRFD312(R) 400 5 0.3 DIP Harris IRFD313(R) 350 5 0.3 DIP Harris IRFD320 400 1.8 0.6 1.3 DIP IR IRFD320 400 1.8
in „Frage Mosfet“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Power_MOSET_Cross_reference.pdf
IRFD2Z1 150 5 0.32 DIP Harris IRFD2Z2 200 6.5 0.3 DIP Harris IRFD2Z3 150 6.5 0.3 DIP Harris IRFD310 400 3.6 0.42 1.3 DIP IR IRFD310 400 3.6 0.42 1.3 HEXDIP IR IRFD311(R) 350 3.6 0.4 DIP Harris IRFD312(R) 400 5 0.3 DIP Harris IRFD313(R) 350 5 0.3 DIP Harris IRFD320 400 1.8 0.6 1.3 DIP IR IRFD320 400 1.8
in „Schaltregler Fragen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
biela_SicSwitch_P_5kV_200ns.pdf
to a small leakage current J5,σ) through the balancing diodes, the potential of the cathode of i (t) D is usually a bit above 0V resulting in a slightly positive J4,σ) rev,D4 1 iD,σt) =J5,σ) =S,σ(t) gate voltage of JFET J . T2e same is true in analog manner i (t) irev,D3 for the upper series connected
in „1500V 8A mit MOSFET schalten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD8132.pdf
dm= 1V p-p –60 HD3 (f = 20MHz) –50 HD3 (V S 3V) –60 ) –70 c B HD2 (f = 20MHz) B ( ( N N –70 I –80 I T T R R HD2 (V S 5V) T T –80 I I D –90 HD3 (f = 5MHz) D –90 HD2 (VS= 3V) –100 HD2 (f = 5MHz) –100 HD3 (V S 5V) –110 2 –110 3 200 300 400 500 600 700 800 900 1000 5 0 10 20 30 40 50 60 70 5 R (Ω) 1 0 LOAD
in „Schutzbeschaltung für ADC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AND9282-D_AC_Zero_Crossing.pdf
10k D2 R3 Q2 43k BC848 R1 470 Figure 11. Schematic of the Detector with High-Voltage Charge Storage 400 ] 300 [ 200 t 100 v 0 s i 100 M 200 300 400 10 5 0 5 10 3.5 3.0 ] 2.5 [ 2.0 u t 1.5 u 1.0 O 0.5 0.0 0.5 10 5 0 5 10 4.0 3.5 ] 3.0 m 2.5 t 2.0 e 1.5 r 1.0 C 0.5 0.0 0.5 10 5 0 5 10 Time [ms] Figure 12
in „Nulldurchgangserkennung: Optokoppler sperrt dauerhaft“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
st-link_gdbserver_log.txt
Tx: $00affee780b400affee780b400affee780b400affee780b400affee780b400affee780b400affee780b400affee780b400affee780b400affee780b400affee7#06 [5.037] read(): <676> Rx: $m8000200,40#57 [5.037] handlePacket(): Reading 0x40 bytes of memory from addr 0x8000200 [5.038] write(): <676> Tx: $80b400affee780b400affee780b400affee780b400affee780b400affee780b400affee780b400affee780b400affee780b400affee780b400affee780b400af#9d [5.158] read(): <676> Rx: $m8000240,40#5b [5.158] handlePacket(): Reading
in „STM32 Cube IDE Inline Assembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
670135-DS01-1.pdf
12. TRANSCONDUCTANCE vs DRAIN CURRENT FIGURE 13. SOURCETO DRAIN DIODEVOLTAGE 20 ID= 14A ) 16 VDS = 400V ( V = 250V E DS C VDS = 100V U 12 O S T E 8 T G S G V 4 00 25 50 75 100 125 Qg, GATE CHARGE (nC) FIGURE 14. GATETO SOURCEVOLTAGE vs GATE CHARGE ©2002 Fairchild Semiconductor Corporation IRFP450 Rev. B IRFP450 Test Circuits andWaveforms VDS BV DSS L t P V DS VARY t TO OBTAIN IAS P + V REQUIRED PEAK IAS RG DD VDD VGS - DUT tP 0V AS 0 0.01Ω tAV FIGURE 15. UNCLAMPED ENERGYTEST CIRCUIT FIGURE 16. UNCLAMPED ENERGYWAVEFORMS tON OFF td(ON) td(OFF) r tf RL
in „Suche IRFP 450B“ · Markt ·
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PDF
LT1014CN_DN.pdf
4 TA= 25°C o 4 a a i i l l p p m TA= −55°C m TA= −55°C e e a 1 a 1 l l TA= 25°C V TA= 125°C V a a t t r0.4 r 0.4 TA= 125°C e e i i − D D −D V V A A 0.1 0.1 100 400 1 k 4 k 10 k 100 400 1 k 4 k 10 k R − Load Resistance − Ω R − Load Resistance − Ω L L Figure 7 Figure 8 †Data at high and low temperatures
in „Unterschied beim LT1014 ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD-ADXL345.pdf
IS LISTENING. 0 Figure41.I CDeviceAddressing Rev. C | Page 18 of 40 ADXL345 2 Table 12. I C Timing (T = 25°C, VA= 2.5 V, V S DD I/O = 1.8 V) 1, 2 Limit Parameter Min Max Unit Description fSCL 400 kHz SCL clock frequency t1 2.5 μs SCL cycle time t2 0.6 μs tHIGH, SCL high time t 1.3 μs t , SCL low time
in „MOSI-Pegel viel zu niedrig, aber warum?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CUD4AF1B_UV.pdf
Preliminary AAP – CUD4AF1B Characteristics Graph Fig 1. Spectrum, s =25℃,FI =500mA 1.2 1.0 . . x l 0.8 t a d 0.6 a R e l 0.4 a r N 0.2 0.0 300 325 350 375 400 Wavelength [nm] Fig 2. Forward Voltage vs. Forward Currens, T =25℃ 500 400 ] A [ n 300 r u C r 200 a r F 100 0 0 1 2 3 4 5 Forward Voltage [V] Rev0.5
in „High Power LED Kühlung“ · Platinen ·
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Datei
C-200a.c
grau UTXD1 |P3.6 P3.3|-> Serial Clock Out (SCL) SPI/I²C (31) // rosa URXD1 |P3.7 // | P4.0| M0 E32_868T grün // P4.1| M1 E32_868T // P4.2| AUX E32_868T // P4.3| // | P4.6| // | P4.7| //(44)SD-CS |P5.0 P2.7| SD Karte Einsteckkontrolle // SD-DI |P5.1 P2.6| // SD-DO |P5.2 P2.5| RST RV1805 // SD-CLK |P5.3
in „Sende/Empfangsvorgang mittels nur 1St. µC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
drv8711.pdf
850 mV OCPTH = 11 840 1000 1200 (1) TSD Thermal shutdown temperature Die temperature 150 160 180 °C t Thermal shutdown hysteresis 20 °C HYS CURRENT SENSE AMPLIFIERS ISGAIN = 00 5 A Gain ISGAIN = 01 10 V/V V ISGAIN = 10 20 ISGAIN = 11 40 ISGAIN = 00, ΔVIN = 400 mV 150 ISGAIN = 01, ΔVIN = 200 mV 300 ns
in „UV-Laserdrucker II“ · Platinen ·
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CD287.pdf
18 x 15 180 1,18 0,20 0,40 400 6,3 x 15 0,160 0,032 0,064 1 950 12,5 x 30 270 0,786 0,17 0,34 501 8 x 11,5 1 000 0,160 0,034 0,068 1 730 16 x 20 0,644 0,13 0,26 575 8 x 16 0,133 0,028 0,056 2 200 12,5 x 35 16 330 (20) 0,644 0,12
in „Empfehlung für Low-ESR LONG LIFE Elkos?“ · Mikrocontroller und Digitale Elektronik ·
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GSMParkHeatingControl.pdf
(4xx) S SM4007 IRLML6401 R406 Umin = 1.48V, Umax=3.56V schwarz +12V Vbat K108 vio T101 R404 R405 R407 6 K109 braun D101 +4V F 1 F 2 n 3 +/ K110 C101 R105 5k6 1k8 500 1k8 T401 6 n 6 n 6 0 6 µ T100 SH_ON/OFF C 1 C 1 C 1 C 0 1K +12V D403 +4V_SW 1 BCW66 100nF IC400 IRLML6401 R106 a IC600
in „Bitte um Überprüfung: GSM Steuerung mit GPS“ · Mikrocontroller und Digitale Elektronik ·