-
PDF
PC817.pdf
incorporates non-coherent light emitting diode. 7. Notes Refer to the attached sheet- 1-1, 2. Ta=25”C l 1 Forward current Collector current Ic 50 mA *l Collector power dissipation PC 150 mW *l Total power dissipation Ptot 200 mW *3 Isolation voltage viso 5 kVrms Operating temperature Topr -30 to +lOO ‘
in „Ist dieser Optokoppler geeignet? ( PC817 )“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
neocapacitor_e.pdf
Capacitance 0G 0J 1A C 1D 1E 1V 6.8 μ F B3 100 10 μ F A2 150 15 μ F B10 150 B3 70 B10 150 22 μ F A3 200 B3 100 33 μ F A3 200, 150 A2 200 47 μ F A3 200, 70 A3 200, 150 68 μ F 100 μ F A3 200 A3 200, 100, 70, 55 220 μ F B10 25, 30 26 ˔"MM▯TQFDJGJDBUJPOT▯JO▯UIJT▯DBUBMPH▯BOE▯QSPEVDUJPO▯TUBUVT▯PG▯QSPEVDUT▯BSF
in „Kennt jemand dieses Bauteil?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
CM453232-R47ML_Bourns_unpw.pdf
25.2 220 0.24 700 CM453232-R22<1>L 0.22 ±20 % M ±10 % K 40 25.2 200 0.25 665 CM453232-R27<1>L 0.27 ±20 % M ±10 % K 40 25.2 180 0.26 635 CM453232-R33<1>L 0.33 ±20 % M ±10 % K 40 25.2 165 0.28 605 CM453232-R39<1>L 0.39 ±20 % M ±10 % K 40
in „Pollin SMD-Induktivitäten identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
readme.txt
########## GOSUB / RETURN ####################### Ein Unterprogramm aufrufen 10 out(0)= 0 20 gosub 200 30 out(0)= 1 40 gosub 200 50 goto 10 200 rem ########### 210 rem delay 220 rem ########### 230 for x= 1 to 8000 240 next x 250 return ####################### OUT ####################### Einem Ausgangsportpin
-
PDF
Peavey_Semiconductors_Cross_Ref_2009.pdf
25A 200V TRIAC SBS-14 MBS-4992 TO-92 70400014 8V SWITCH M0C-635A 70400635 OPTO-COUPLER 2IL628 70240102 LDR 21L565 70240101 LDR SBS-14 MBS-4992 70400014 TO-92 8V SWITCH CL-60 70240200 IN RUSH CURRENT LIMITER
in „Transistor Ersatztypen“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Peavey_Semiconductors_CrossRef_2010.pdf
25A 200V TRIAC SBS-14 MBS-4992 TO-92 70400014 8V SWITCH M0C-635A 70400635 OPTO-COUPLER 2IL628 70240102 LDR 21L565 70240101 LDR SBS-14 MBS-4992 70400014 TO-92 8V SWITCH CL-60 70240200 IN RUSH CURRENT LIMITER
in „Transistor Ersatztypen“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
line_line_int.py
): nx=event.x ny=event.y if self.move[0]: self.c.coords('p1',nx-4,ny-4,nx+4,ny+4) w=self.c.coords('l1') w[0]=nx;w[1]=ny self.c.coords('l1',tuple(w)) if self.move[1]: self.c.coords('p2',nx-4,ny-4,nx+4,ny+4) w=self.c.coords('l1') w[2]=nx;w[3]=ny self.c.coords('l1',tuple(w)) if self.move[2]: self.c.coords('p3',nx-4,ny-4,nx+4,ny+4) w=self.c.coords('l2') w[0]=nx;w[1]=ny self.c.coords('l2',tuple(w)) if self.move[3]: self.c.coords('p4',nx-4,ny-4,nx+4,ny+4) w=self.c.coords('l2') w[2]=nx;w[3]=ny self.c.coords('l2',tuple(w)) p12=self.c.coords('l1') p34
-
PDF
Reed_Relais.pdf
SWITCH OPTION PIN OUT ( ) VERSION WITH SERIES VOLTAGE FORM MODEL MAGNETIC SHIELD DIP12 - 1A72 - 13L DIP XX - XX XX - XX X 12 is the nominal voltage 1A is the contact form 1A 11, 13* 72 is the switch model 05, 12, 15, 13 is the pin out 1B 72, 75 19 L is the option OPTIONS 24 L (M), D (Q), E 2A 21 (R
in „USB Speicher-Oszilloskop (Anfängerhilfe)“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
daten.pdf
SWITCH OPTION PIN OUT ( ) VERSION WITH SERIES VOLTAGE FORM MODEL MAGNETIC SHIELD DIP12 - 1A72 - 13L DIP XX - XX XX - XX X 12 is the nominal voltage 1A is the contact form 1A 11, 13* 72 is the switch model 05, 12, 15, 13 is the pin out 1B 72, 75 19 L is the option OPTIONS 24 L (M), D (Q), E 2A 21 (R
in „strom zu Schalten von Relais“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Powerline-IC_HCPL-_810J.pdf
800 3. Refer to the following figure for depS, INPUTof S, OUTPUT case O temperature. – 600 S P 400 200 0 0 25 50 75 100 125 150 175 200 TS– CASE TEMPERATURE – °C 5 Insulation and Safety Related Specifications Parameter Symbol Value Unit Condition Minimum External Air Gap L(101) 8.3 mm Measured from input
in „Powerline-Transmitter auf reinen Wechselspannungsbetrieb umbauen“ · Haus & Smart Home ·
-
PDF
15121.pdf
16 mA, V = 5.0 V 1000 s F CC s IF= 16 mA, CC = 5.0 V n 6N135, HCPL-0500 LR = 4.1 k ) n HCNW135 (R L 4.1 k ) – HCPL-4502/3 (R = 1.9 k )502 – 800 HCNW136 (R = 1.9 k ) A 1500 HCPL-0452/3 L A HCNW4502/3 L L L D D N N 600 I I t t T 1000 T PLH PHL A G A tPLH tPHL A 400 P P O 500 R P P 200 – – tp tp 0 0 -
in „Optokoppler HCPL 4504/4503/4502“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AD815.pdf
) AMP2 R R = 200⍀ 100⍀ 1/2 1:2 H–90 L AD815 TRANSFORMER L (DIFFERENTIAL) T –15V T100 Figure 2. Subscriber Line Differential Driver –110100 1k 10k 100k 1M 10M FREQUENCY – Hz Figure 1. Total Harmonic Distortion vs. Frequency
in „Zusammenschalten möglich? OPV!“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
AD815_Rev_D.pdf
) AMP2 R R = 200⍀ 100⍀ 1/2 1:2 H–90 L AD815 TRANSFORMER L (DIFFERENTIAL) T –15V T100 Figure 2. Subscriber Line Differential Driver –110100 1k 10k 100k 1M 10M FREQUENCY – Hz Figure 1. Total Harmonic Distortion vs. Frequency
in „Ausgangsstufe Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
AN1543-D.PDF
4 1 V 8 T F 2 . 2 1 4 n 1 n V T - D N C 10 C 4 6 5 7 k D 1 1 R 1 N E D A U F V D + G E V R 1 P k A L 2 2 Figure 31. Dimmable Electronic Lamp Ballast (Demo Version) http://onsemi.com 22 AN1543/D 3 2 μs 200 V VDS= 200 V/DIV 3 4 2 μs 5 V 1 D= 200 mA/DIV 2 μs 1 10 mV VGS= 5 V/DIV 4 2 μs 1 10 mV 50 Ω 2 10
in „Reparatur EVG für T5 Röhre“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LTC4067.pdf
Power) at IN= 500mA R ON vs Temperature 102 204 240 1000 VIN= 4.45V VCLPROG HPWR RCLPROG = 0k 100 200 220 HPWR 800 V ) 200 98 196 L V A ILIM R ( 600 Ω180 ( G O ( I 96 192 m P VOUT = 4V N I V C RCLPROG = 2k R160 ) V 400 IOUT= 200mA 94 188 LPWR 140 200 RON, 1A 92 184 120 RON, 500mA RON, 200mA RON, 100mA
in „LTC4067 Vout“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
vitrohm-crf-wirewound-safety-resistor-datasheet.pdf
RMS Dielectric Withstanding Voltage [V]RMS 500 IEC115-1 clause 4.7 (1[min]) 4 1 Type Historical P/N: L max. Ø D max. * Ø d ±0,05 2 CRF251-4 / -8 n CRF110 9,0 3,0 0,65 i CRF200 CRF252-4 / -8 9,7 4,0 0,80 R CRF253-4 / -8 | CRF250 14,5 4,5 0,65 4 CRF300 CRF254-4 / -8 12,6 6,0 0,80 2 0 CRF400 CRF256-4 / -
in „Neff Steuerplatine Leiterbahnen abgerissen.“ · Platinen ·
-
PDF
Athlet_BCH6L2560_SCH.pdf
R103 13 20 GND TP36 1 2 14 (PCINT1/OC1A)_PB1 AREF 19 1K 3 D D 15 (PCINT2/SS/OC1B)_PB2 ADC6 18 1 C L L (PCINT3/OC2A/MOSI)_PB3 AVCC C13 C 16 (PCINT4/MISO)_PB4 PB5_(SCK/PCINT5) 17 7 7 7 7 2 R 2 R TP38 C12 GND GND GND GND TP41 2 0 R 1 TP39 TP26 TP34 3 4 5 TH1 2 E E E GND P L L L T 5 6 5 7 5 5 k 7 k 7 k
in „Bosch Athlet 25,2 V Akku 7 Stück Tauschen“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
MAX5035-Datasheet.pdf
= 24V E 40 IN IN V IN76V 30 30 30 V IN48V VIN 48V 20 V = 76V 20 V = 76V 20 IN IN 10 10 10 0 0 0 0 200 400 600 800 1000 0 200 400 600 800 1000 0 200 400 600 800 1000 LOAD CURRENT (mA) LOAD CURRENT (mA) LOAD CURRENT (mA) OUTPUT CURRENT LIMIT OUTPUT CURRENT LIMIT QUIESCENT SUPPLY CURRENT vs. TEMPERATURE
in „KICAT Footprint SO8E oder SO8N“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LT.pdf
5V Output VIN + C1 4.5V to 220 F 40V 50V + L1 25 H 5A R3* R1** 2.74k VIN VSW 5.1k LT1074 + C2 R2** 1000 F 10k 10V GND V V FB OPTIONAL FILTER C D1 5 H – 200 F MBR745 R4 10V C3 C4** 1.82k* + 0.1 F 0.01 F –5V,1A*** * = 1% FILM RESISTORS LOWER REVERSE
in „Prinzipielle Fragen zum Schaltregler“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LT1074.pdf
5V Output VIN + C1 4.5V to 220 F 40V 50V + L1 25 H 5A R3* R1** 2.74k VIN VSW 5.1k LT1074 + C2 R2** 1000 F 10k 10V GND V V FB OPTIONAL FILTER C D1 5 H – 200 F MBR745 R4 10V C3 C4** 1.82k* + 0.1 F 0.01 F –5V,1A*** * = 1% FILM RESISTORS LOWER REVERSE
in „LT1074HV wozu Pin VC Datenblatt strange“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
Arduino_Galaxy_vs_blackhole_fast.ino
]) * (sx_vorher[l_Force] - sx_vorher[k_Force]) + (sy_vorher[l_Force] - sy_vorher[k_Force]) * (sy_vorher[l_Force] - sy_vorher[k_Force]) + (sz_vorher[l_Force] - sz_vorher[k_Force]) * (sz_vorher[l_Force] - sz_vorher[k_Force
in „Astrosimulationen/Galaxienkollision mit Arduino“ · Projekte & Code ·
-
PDF
NP0_Datenblatt.PDF
J N J J M P 3300 J J J J M P 3900 J J J J M P 4700 J J J J M P 5600 J J M 6800 M M 8200 䉲 䉲 M M 䉲 L W 䉲 Cap 0.010 䉲 M M (µF) 0.012 䉲T 0.015 0.018 0.022 䉲 䉲 t 0.027 0.033 0.039 0.047 0.068 0.082 0.1 WVDC 25 50 16 25 50 16 25 50 100 16 25 50 100 200 16 25 50 100 200 500 SIZE 01005 0201 0402 0603 0805
in „Vielschicht statt Elko + Keramik“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
High_Power_IGBT_IXGK-GX320N60A3.pdf
Charge Fig. 8. Capacitance 16 100,000 VCE= 300V f = 1 MHz 14 IC= 80A I = 10mA s 12 G a a C F10,000 ies l10 c V P - 8 - E c V n C 6 i oes a 1,000 p 4 C 2 Cres 0 100 0 100 200 300 400 500 600 0 5 10 15 20 25 30 35 40 QG- NanoCoulombs V CE- Volts Fig. 9. Reverse-Bias Safe Operating Area Fig. 10. Maximum Transient
in „IGBT brennt durch - Weit unter spezifkation.“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
IXGK-GX320N60A3.pdf
Charge Fig. 8. Capacitance 16 100,000 VCE= 300V f = 1 MHz 14 IC= 80A I = 10mA s 12 G a a C F10,000 ies l10 c V P - 8 - E c V n C 6 i oes a 1,000 p 4 C 2 Cres 0 100 0 100 200 300 400 500 600 0 5 10 15 20 25 30 35 40 QG- NanoCoulombs V CE- Volts Fig. 9. Reverse-Bias Safe Operating Area Fig. 10. Maximum Transient
in „Impulsbelastung von IGBTs -> Parallelschaltung -> Ausgleichswiderstände“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
DS90LV048A.pdf
V 0 4 DS90LV048A 8 A 3V LVDS Quad CMOS Differential Line Receiver 3 V General Description Features L The DS90LV048A is a quad CMOS flow-through differential400 Mbps (200 MHz) switching rates V line receiver designed for applications requiring un Flow-through pinout simplifies PCB layout D power dissipation
in „TFT Display 8bit 16bit 8080 Interface über LVDS“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
DS90LV048A.pdf
V 0 4 DS90LV048A 8 A 3V LVDS Quad CMOS Differential Line Receiver 3 V General Description Features L The DS90LV048A is a quad CMOS flow-through differential400 Mbps (200 MHz) switching rates V line receiver designed for applications requiring un Flow-through pinout simplifies PCB layout D power dissipation
in „Analogsignal über Twisted-Wire übertragen“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
MAX3030-MAX3033.pdf
SUPPLY CURRENT vs. DATA RATE SUPPLY CURRENT vs. DATA RATE 0 100 t 30 o 2.5 NO RESISTIVE LOAD, C = 200pF, t 3 DRIVERS ENABLED 3 NO RESISTIVE LOAD, CL= 200pF, 3 L 3 X ALL FOUR X ALL FOUR X 0 80 M 25 TRANSMITTERS M 2.0 TRANSMITTERS M A TA= +85°C A SWITCHING A SWITCHING E ( ( 20 ( N 60 N N 1.5 – E E E M
in „SPI mit RS485-Übertragung: Problem mit zu langen Propagation-Delays“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
DS_OPA657_2008-12.pdf
G = +10, VO= 2V Step 20 ns Typ C Harmonic Distortion G = +10, f = 5MHz, O = 2PP C 2nd-Harmonic R = 200Ω –70 dBc Typ C L R L 500Ω –74 dBc Typ C 3rd-Harmonic R L 200Ω –99 dBc Typ C R L 500Ω –106 dBc Typ C Input Voltage Noise f > 100kHz 4.8 nV/√Hz Typ C Input Current Noise f > 100kHz 1.3 fA/√Hz Typ C (4
in „Stabilität OPV OPA657“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
opto.pdf
mW P PD All H Derate Above 25°C 1.41 mW/°C g DETECTOR h V P Power Dissipation A T = 25°C All 300 mW l D Derate linearly above 25°C 4.0 mW/°C a g MOC8204M 400 V e H11D1M 300 V h VCEO Collector to Emitter Voltage o H11D3M 200 V o 4N38M 80 V r n MOC8204M 400 V s H11D1M 300 V s VCBO Collector Base Voltage
in „Optokoppler - Relais“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ICL_7106_-_07_-_FN3082.pdf
999 999/10 1000 Digital 00 Reading Rollover Error -V = +V ≅ 200mV - ±0.2 ±1 Counts IN lN Difference in Reading for Equal Positive and Negative Inputs Near Full Scale Linearity Full Scale = 200mV or Full Scale = 2V Maximum - ±0.2 ±1 Counts Deviation from Best Straight Line Fit (Note 6) Common Mode Rejection Ratio VCM = 1V, IN= 0V, Full Scale = 200mV (Note 6) - 50 - V/V Noise VIN = 0V, Full Scale = 200mV - 15 - V (Peak-To-Peak Value Not Exceeded 95% of Time) Leakage Current Input V = 0 (Note 6) - 1 10 pA lN o o o Zero Reading Drift VlN = 0, 0
in „Digitalmultimeter Modul mit 7107“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ICL7106_7.pdf
999 999/10 1000 Digital 00 Reading Rollover Error -V = +V ≅ 200mV - ±0.2 ±1 Counts IN lN Difference in Reading for Equal Positive and Negative Inputs Near Full Scale Linearity Full Scale = 200mV or Full Scale = 2V Maximum - ±0.2 ±1 Counts Deviation from Best Straight Line Fit (Note 6) Common Mode Rejection Ratio VCM = 1V, IN= 0V, Full Scale = 200mV (Note 6) - 50 - V/V Noise VIN = 0V, Full Scale = 200mV - 15 - V (Peak-To-Peak Value Not Exceeded 95% of Time) Leakage Current Input V = 0 (Note 6) - 1 10 pA lN o o o Zero Reading Drift VlN = 0, 0
in „ICL7107 - Funktionsweise?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
HCF4511B.pdf
H H L L L L L L L Blank L H H H H L L L L L L L L L Blank L H H H H L H L L L L L L L Blank L H H H H H L L L L L L L L Blank L H H H H H H L L L L L L L Blank H H H X X X X * * X: Don’t Care 3/13 HCF4511B
in „BCD-7Segment Treiber für VFD Röhren“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
High_Performance_Flash_and_Arc_Lamps_-_PerkinElmer.pdf
lamp K knowo C The standard design procedure for flashlamp is found from equation (4). – single mesh L/C drive networks was originated T c by J.P. Markiewicz and J.L. Emmett (reference 1). (b) L is then calculated from equation (5) h n (c) Finally o is calculated from equation (6) c The starting point
in „Projekt: Leistungsstarkes Blitzgerät aus 12 Volt“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Perkin_Elmer_Flash___Arc_Tubes.pdf
lamp K knowo C The standard design procedure for flashlamp is found from equation (4). – single mesh L/C drive networks was originated T c by J.P. Markiewicz and J.L. Emmett (reference 1). (b) L is then calculated from equation (5) h n (c) Finally o is calculated from equation (6) c The starting point
in „Reparatur (UW) Blitzgerät möglich?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ADA4807.pdf
UNITS x = 30pA/°C 250 x = –1.18nA x = –1.58nA 70 σ = 35pA/°C σ = 22.59nA σ = 6.62nA S S E I F 60 N200 L U P N A 50 I F E150 O 40 B R M E N M 30 100 U N 20 50 10 0 3 0 2 –150 –100 –50 0 50 100 150 - –200 –140 –80 –20 40 100 160 220 280 - 6 6 INPUT OFFSET CURRENT (nA) 1 INPUT OFFSET CURRENT DRIFT (pA/
in „LTSpice 24.1.9 AD4807-Simulation schlägt fehl“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
FlowChart_Timing-Diagramm_Controller-Software.pdf
OCR0A = 10.000 (5000ms) ●Timer Interupt für OCR0A freigeben Timer/Counter 0 starten Erkennung ob H/L-Flanke (ein Impuls) oder L/H-Flanke (zwei Impulse) Pegel an PB2 = Low ? (PB2 bekommt externe Hardware-RC-Entprellung) Ja Nein d.h. H/L-Flanke hat Interrupt ausgelöst d.h. L/H-Flanke hat Interrupt ausgelöst
in „Programmierer für ATtiny4 gesucht“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
L6562N_PFC__STM.pdf
26 11 25 10.5 24 10 VCC-OFF 9.5 23 (V) 9 22 -50 0 50 100 150 -50 0 50 100 150 Tj (°C) Tj (°C) 5/16 L6562 Figure 8. Feedback reference vs. T Figure 11. Delay-to-output vs. T j j VREF 2.6 D(H-L) (V) (ns) 500 Vcc = 12 V Vcc = 12 V 400 2.55 300 2.5 200 2.45 100 2.4 0 -50 0 50 100 150 -50 0 50 100 150 Tj
in „PFC Controller (L6562) statt normalem SNT ControllerSNT“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
150rmi.pdf
12.5 x 20 1460 253 0.14 0.037 0.260 56102E3 66102E3 36102E3 25 1500 12.5 x 25 1950 378 0.14 0.029 0.200 56152E3 66152E3 36152E3 2200 12.5 x 35 2510 553 0.16 0.028 0.200 96225E3 96226E3 - 2200 16 x 20 1840 553 0.16 0.028 0.200 56222E3 66222E3 36222E3 3300 16 x 31 2890 828 0.16 0.019 0.130 56332E3 66332E3
in „Ersatz für Kondensator im Schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
10n120bnd.pdf
Unless Otherwise Specified ) 35 ( 60 ) V = 15V T ( GE N T 30 R 50 N R R 25 C TJ= 150 C, G = 10Ω,G = 15V, L = 400µH R R C T 40 R 20 I T M C E 30 L 15 T L R C 10 T 20 C C , L E 5 O 10 I C 0 E I 0 25 50 75 100 125 150 0 200 400 600 800 1000 1200 1400 T , CASETEMPERATURE ( C) V , COLLECTORTO EMITTERVOLTAGE (V
in „Netzteil mit IGBT“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
MAX4194-MAX4197.pdf
quiescent – current to 8µA. A traditional three operational amplifier Input Common-Mode Range Extends 200mV M configuration is used to achieve maximum DC precision. Below GND Low 50µV Input Offset Voltage (G ≥ +100V/V) A The MAX4194–MAX4197 have rail-to-rail outputs and X inputs that can swing to 200mV
in „ADC nicht sauber sinus auf oszi“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
1971_Motorola_Comparatoren.pdf
Compatible With All Saturating Logic Forms - Vout = +3.2 V to -0.5 V typical Low Output Impedance - 200 ohms M E TA L PACKAGE CASE 601 TO·99 MAXIMUM RATINGS (TA =25°C unless otherwise noted) Rating Symbol Value Unit Power Supply Voltage V+ +14 Vdc V- -7.0 Vdc Diff.erential Input Signal Vio ±5.0 Volts
in „Nun ich auch mal - Suche Datenblätter zu ICs“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
L6565.pdf
mA 2.25 2.55 V CURRENT SENSE COMPARATOR CS Input Bias Current VCS = 0 -0.05 -1 µA t Delay to Output 200 450 ns d(H-L) VCSx Current Sense Reference Clamp VCOMP =Upper clamp, VFF =0V 1.28 1.4 1.5 V VCOMP =Upper clamp, VFF =1.5V 0.62 0.7 0.78 VCOMP = Upper clamp, VFF = 3V 0 0.2 VCSdis Hiccup-mode OCP level
in „FSC Monitor 24" P24-1W schaltet sich immer AUS und AN“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
FZT949.pdf
Current IEBO Collector-Emitter Saturation ‘CE(sat) -50 -75 mV IF-0.5A, 1~-20mA* Voltage -85 -140 mV IF-lA, iB=-20mA* -190 -270 mV l@-2A, lB=-200mA’ -350 -440 mV IF-5.5A, lK-500mA+ — —. — Base-Emitter vB~(, at) -1100 -1250 mV ir-5,5A, lB=-500mA’ Saturation Voltage —.-— Base-Emitter ve~(on, -900 -1060 mV IC=-5.5A, Vcr-l V* Turn-On Voltage .- —--— —— .—.. —— Stalic Forwafd h~~ 100 200 lr-l OmA, VCE=-1 V Current Transfer Ratio 100 200 300 IF-lA, Vw =-IV* 75 140 l@-5A, VCE=-1 V* 35 l@-20A, VCE=-2V’ Transition Frequency
in „TFT Inverter“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
2n3958.pdf
Current and Transconductance vs. Gate-Source Cutoff Voltage Gate Leakage Current 3 100 nA 5 ) s I @ I = 200 mA A – G D ( o 10 nA n 4 2.6 w r DSS a TA= 125_C u d e n gfs r g 1 nA a 3 2.2 n k I @ 125_C D c e GSS 50 mA n n L 100 pA t u a 200 mA 50 mA r t G a 2 1.8 n – S e G 10 pA – m I T = 25_C IGSS@ 25_C S
in „JFET prüfen mit transistortester“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
2n3958.pdf
Current and Transconductance vs. Gate-Source Cutoff Voltage Gate Leakage Current 3 100 nA 5 ) s I @ I = 200 mA A – G D ( o 10 nA n 4 2.6 w r DSS a TA= 125_C u d e n gfs r g 1 nA a 3 2.2 n k I @ 125_C D c e GSS 50 mA n n L 100 pA t u a 200 mA 50 mA r t G a 2 1.8 n – S e G 10 pA – m I T = 25_C IGSS@ 25_C S
-
PDF
NSP-3630_schematic.pdf
1 2 3 4 5 6 TR2 DA1 UF4003 HDV 9V+ CA1 L6 3.3UH CA4 CA2 R1B 470K1/4W 4mHX2 222/500V 100UF 0.1 47UF 9V- 4mHX2 R4 C8 D2 UF4003 L1 C3 L2 SW1 BR1 200K 1/2W VCC V 3300PF 3 L3 3.3UH CA3 D 7 12A KBL805 C6 R2 C10A 221P C10 C11 C12 0.1 D S1 F C2 250VAC M1 220UF D1 4. V275LA20A 200K 1/2W UF4005 220UF/25V 100UF/25V 0.1UF/50V AC IN 0 C4 200V R64 R65 F1 2A R1A 3300PF ZD1 250VAC NTC 1M U1 1M 11V/0.5W 470K1/4W A 5 4 JNR15S080L5A SW1 TR1 6 2 12A 26mH 8 1 TNY264 SW2 C7 R3 R5 PC1 220UF
in „[DC-Schaltnetzteil] Reichelt Manson HCS-3302 Erfahrungen?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
NSP-3630_schematic.pdf
1 2 3 4 5 6 TR2 DA1 UF4003 HDV 9V+ CA1 L6 3.3UH CA4 CA2 R1B 470K1/4W 4mHX2 222/500V 100UF 0.1 47UF 9V- 4mHX2 R4 C8 D2 UF4003 L1 C3 L2 SW1 BR1 200K 1/2W VCC V 3300PF 3 L3 3.3UH CA3 D 7 12A KBL805 C6 R2 C10A 221P C10 C11 C12 0.1 D S1 F C2 250VAC M1 220UF D1 4. V275LA20A 200K 1/2W UF4005 220UF/25V 100UF/25V 0.1UF/50V AC IN 0 C4 200V R64 R65 F1 2A R1A 3300PF ZD1 250VAC NTC 1M U1 1M 11V/0.5W 470K1/4W A 5 4 JNR15S080L5A SW1 TR1 6 2 12A 26mH 8 1 TNY264 SW2 C7 R3 R5 PC1 220UF
in „Netzteil MANSON NTP-5531 defekt!?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
pm2521ocr.pdf
ROUTINE : PERFORM AN . = e r eae| POWER uP FUNCTION nerO |ZERO AutO IZERO ; CALIBRATION ? Am OR Aw? o v 200mA 1v 2A | I : NO L o a L o w . AUTO rs C A L h O V AUTO : iVA L : C A L CAL : CHANGED ? A m OR AW? Vv 2A o1V 200mA t | | NO L d L o e : AUTO : C A L . ca W AUTO : O V L C A L MEASUREMENTS ? otv ; >
in „Pjilips PM2519“ · Markt ·
-
PDF
t4227.pdf
) Input amplifier min. gain VU2 –40 dB (VPK = 0.8 V) Output voltage (OUT1, low) V = 100 V; V 0.3 V l Out1 L external circuitry like npn opeIOUT1 L= 30 A collector stage Output voltage (OUT2, high) V l 100 V; V Out2 H V DD –0.5 V DD–0.3 V external circuitry like pnp opeI = 30 A OUT2 H collector stage Output current (OUT 1 high) V l 100 V; IOUT1 H 1 A external circuitry like npn ope100% amplitude collector stage Output current (OUT 1 low) V l 100 V; IOUT1 L 30 500 A external circuitry like npn ope25% amplitude collector stage Output
in „DCF77 Emfangs-IC gesucht“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Quarzfilter_Rev2b.pdf
----------------- 2990 '------- Graphische Darstellung --------- 3000 CLS :SCREEN 2 3010 WINDOW (0,200)-(200,0) 3020 VIEW (400,0)-(639,189) 3030 LINE (0,0)-(200,200),,B 3040 FOR N=1 TO 9 3050 LINE (N*20,0)-(N*20,200),,,&H2222 3060 LINE (0,N*20)-(200,N*20),,,&H2222 3070 NEXT N 72 Quarzfilter, eine kleine
in „Schmalbandiges LC-Filter, praktischer Aufbau“ · HF, Funk und Felder ·