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AVX_Ta-Caps_11903.pdf
as the typical curves show to the right. For maximum limits please refer to ratings tables. 10 100mF/6V % F 5 D 1mF/35V 0 -55 -40 -20 0 20 40 60 80 100 125 Temperature °C 1.4 IMPEDANCE, (Z) AND EQUIVALENT SERIES RESISTANCE (ESR) 1.4.1 Impedance, Z 1.4.3 Frequency dependence of impedance and ESR This
in „Widerstände und Tantal-Elkos“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
irlr2905_1_.pdf
1.64 (.025) 1 2 3 1 - GATE 0.51 (.020) 2 - DRAIN - B - MIN. 3 - SOURCE 1.52 (.060) 4 - DRAIN 1.15 (.045) 0.89 (.035) 3X 0.64 (.025) 0.58 (.023) 1.14 (.045) 0.46 (.018) 2X 0.76 (.030) 0.25 (.010) M A M
in „Motortreiber“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IRLU2905.pdf
1.64 (.025) 1 2 3 1 - GATE 0.51 (.020) 2 - DRAIN - B - MIN. 3 - SOURCE 1.52 (.060) 4 - DRAIN 1.15 (.045) 0.89 (.035) 3X 0.64 (.025) 0.58 (.023) 1.14 (.045) 0.46 (.018) 2X 0.76 (.030) 0.25 (.010) M A M
in „High Power LED Driver“ · Mikrocontroller und Digitale Elektronik ·
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2723615.pdf
A 11 DB4 12 DB5 4-O1.0 40.55 4- 2.5 PTH 1.6 2.5 75.0 4- 5.0 PAD 13 DB6 LED B/L 14 DB7 3.55 15 A 2.95 0.6 16 K 0.6 0.55 The non-specified tolerance of dimension is 0.3mm. 7 5 5 5 0 0 5 5 . 0 DOT SIZE SCALE 5/1 第 9 頁,共 28
in „Winstar WH1602B Initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FM_AM-Tuner_TEA5757HL_5759HL_1.pdf
45 70 mV Vi1 RF sensitivity input voltage(S+N)/N = 26 dB 40 55 70 V THD total harmonic distortion V = 1 mV − 0.8 2.0 % i1 FM performance; note 2 V11 AF output voltage Vi5 1 mV 40 48 57 mV Vi5 RF sensitivity
in „Autoradio selber bauen.“ · Mikrocontroller und Digitale Elektronik ·
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LT3092fb.pdf
ΔILOAD = 1mA to 200mA –0.1 nA ΔV ΔI = 1mA to 200mA l –0.5 –2 mV OS LOAD Line Regulation ΔISET ΔVIN 2V to 40V, ILOAD = 1mA 0.03 0.2 nA/V ΔV OS ΔVIN = 2V to 40V,LOAD = 1mA 0.003 0.010 mV/V MinimumLoad Current (Note
in „Konstantstromquelle LT3092 - Widerstandswahl“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ICL7665.pdf
OUT1 OUT2 100k DETECTOR VU≈ 5.55V VU ≈ 4.55V -5V -15V VL≈ 5.45V VL≈ 4.45V POWER OK POWER OK Figure 6. Fault Monitor for a Single Supply Figure 7. Multiple-Supply Fault Monitor +5V, 1A R31 R32 1M 100 OUTPUT
in „Idee Solarregler ATTiny13 mit Überlade- und Entladeschutz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ICL7665.pdf
OUT1 OUT2 100k DETECTOR VU≈ 5.55V VU ≈ 4.55V -5V -15V VL≈ 5.45V VL≈ 4.45V POWER OK POWER OK Figure 6. Fault Monitor for a Single Supply Figure 7. Multiple-Supply Fault Monitor +5V, 1A R31 R32 1M 100 OUTPUT
in „7665 über 20V geht das?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
1038fa.pdf
over the full operating temperature range, otherwise specifications are at TA= 25°C. (Note 2) LT1038M LT1038C SYMBOL PARAMETER CONDITIONS MIN TYP MAX MIN TYP MAX UNITS V REF Reference Voltage OUT = 20mA, Tj= 25°C 1.24 1.25 1.26 1.23 1.25 1.275 V 3V (V INV OUT) 35V 1.22 1.25 1.285 1.22 1.25 1.285 V 20mA
in „Linearregler 24V/7A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD7401.pdf
0.6 mV max fMCLK= 20 MHz maximum ;V + =IN250 mV to +250 mV ±50 μV typ T = 25°C A Offset Drift vs.Temperature 3.5 μV/°C max −40°C to +105°C 1 μV/°C typ Offset Drift vs.DD1 120 μV/V typ Gain Error3 ±1.6 mV max
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DS18B20.pdf
4.0 mA L I/O Standby Current IDDS (Notes 7, 8) 750 1000 nA Active Current DD V DD = 5V (Note 9) 1 1.5 mA DQ Input Current DQ (Note 10) 5 µA Drift (Note 11) ±0.2 °C Note 1: All voltages are referenced to ground
in „DS18B20 Sensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Normen_bersicht.pdf
.2b 7 V V V V V V W W W W W W W die Toleranzen der horizontalen Bauteile des 3 Baugruppenträgers. .m m 1 2 3 4 5 6 6 1) 7 8 9 10 11 12 4k k .m 1m Abb. 2c Maßtabelle und Bezeichnung der 4k Frontplatten-Lochanordnung .m 4k Größe Form Höhe e1 e2 1 V 43,65 31,75 – 2 V 88,1 76,2 – 3 V 132,55 57,15 – 4 V
in „Abmessungen von Platinen in 19-Zoll Gehäuse gesucht“ · Platinen ·
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Normenuebersicht.pdf
.2b 7 V V V V V V W W W W W W W die Toleranzen der horizontalen Bauteile des 3 Baugruppenträgers. .m m 1 2 3 4 5 6 6 1) 7 8 9 10 11 12 4k k .m 1m Abb. 2c Maßtabelle und Bezeichnung der 4k Frontplatten-Lochanordnung .m 4k Größe Form Höhe e1 e2 1 V 43,65 31,75 – 2 V 88,1 76,2 – 3 V 132,55 57,15 – 4 V
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0900766b80e31c6b.pdf
CMR VIN+= 0V to +26V, SENSE= 0mV INA210, INA211, INA212, 105 140 dB INA214 INA213 100 120 dB Offset Voltage, RTI VOS VSENSE = 0mV INA210, INA211, INA212 ±0.55 ±35 V INA213 ±5 ±100 V INA214 ±1 ±60 V vs Temperature dVOS/dT 0.1 0.5 V/
in „bidirektionale Strommessung Frage“ · Mikrocontroller und Digitale Elektronik ·
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MJE2955T-D.PDF
Collector−Emitter Sustaining Voltage (Note 2) V Vdc CEO(sus) (C = 200 mAdc, B = 0) 60 − Collector Cutoff Current CEO mAdc (VCE = 30 Vdc,BI = 0) − 700 Collector Cutoff Current CEX mAdc (VCE = 70 Vdc, EB(off)1.5 Vdc) − 1.0 (VCE = 70 Vdc, EB(off)1.5 Vdc, C = 150°C) − 5.0 Collector Cutoff Current CBO mAdc (VCB = 70 Vdc,EI = 0) − 1.0 (VCB = 70 Vdc,EI = 0,CT = 150°C) − 10 Emitter Cutoff Current EBO mAdc (V = 5.0 Vdc, I = 0) − 5.0 BE C ON CHARACTERISTICS DC Current Gain (Note 2) hFE − (C = 4.0 Adc, CE
in „Simulation zeigt das Gegenteil der Praxis“ · Analoge Elektronik und Schaltungstechnik ·
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LM78LXX.pdf
Voltage 5.95 6.2 6.45 V 8.5V ≤ VIN≤ 20V 1 mA ≤ IO≤ 40 mA 5.9 6.5 (Note 3) 1 mA ≤ IO≤ 70 mA 5.9 6.5 (Note 3) VO Line Regulation 8.5V ≤ VIN≤ 20V 65 175 mV 9V ≤ V ≤ 20V 55 125 IN VO Load Regulation 1 mA ≤ IO≤ 100 mA 13 80 1 mA ≤ IO≤ 40 mA 6 40
in „Hilfe bei Berechnung des zul. Ausgangsstroms beim Spannungsregler“ · Analoge Elektronik und Schaltungstechnik ·
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HCPL-7800_7800A_Agilent.pdf
Voltage VOS -3.0 3.0 mV -40°C < T A < +85°C 1,2 -4.5 V < (DD1, VDD2) < 5.5 V Magnitude of Input Offset Change vs. |∆VOS /∆TA| 3.0 10.0 µV/°C 3 2 Temperature Gain (HCPL-7800A) G 7.92 8.00 8.08 -200 mV < V < 200 mV, 3 1 V/V
in „8fach Trennverstärker 0..10V - wie realisieren?“ · Analoge Elektronik und Schaltungstechnik ·
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ADP3330.pdf
– 100 mV, L = 0.1 mA 37 55 µA DROPOUTVOLTAGE VDROP VOUT= 98% ofV OUTNOM L = 200 mA,T A −20°C to +85°C 140 230 mV L = 150 mA 110 170 mV L = 10 mA 42 60 mV 1 L = 1 mA 25 50 mV PEAK LOAD CURRENT LDPK VINV OUTNOM
in „Linearregler ADP3330 Ausgangsspannung zu niedrig“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
XR2206.pdf
2 Shaper 13 200 FSK Input 9 R1 7 Current 2 R2 8 Switches +1 FSK Output 11 F1=1/R1C 10 12 3 F2=1/R2C R 3 XR-2206 + 50K 1mF + 10mF VCC 5.1K 5.1K Figure 13. Sinusoidal FSK Generator Rev. 1.03 9 XR-2206 VCC 2 1 1mF f ▯ C▯R ▯ R ▯ 1 2 4 1 16 Duty Cycle = R 1 5 R1▯ R 2 Mult. C VCO And 15 6 Sine 14 Shaper 9 13 R 1 7 Current 2 R2 8 Switches +1 Sawtooth Output 11 Pulse Output 10 12 3 R XR-2206 + 24K 5.1K 1mF + VCC 10mF VCC 5.1K 5.1K Figure
in „Funktionsgenerator mit XR2206“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
XR2206.pdf
2 Shaper 13 200 FSK Input 9 R1 7 Current 2 R2 8 Switches +1 FSK Output 11 F1=1/R1C 10 12 3 F2=1/R2C R 3 XR-2206 + 50K 1mF + 10mF VCC 5.1K 5.1K Figure 13. Sinusoidal FSK Generator Rev. 1.03 9 XR-2206 VCC 2 1 1mF f ▯ C▯R ▯ R ▯ 1 2 4 1 16 Duty Cycle = R 1 5 R1▯ R 2 Mult. C VCO And 15 6 Sine 14 Shaper 9 13 R 1 7 Current 2 R2 8 Switches +1 Sawtooth Output 11 Pulse Output 10 12 3 R XR-2206 + 24K 5.1K 1mF + VCC 10mF VCC 5.1K 5.1K Figure
in „XR2206 Sinus Generator“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XR2206v103.pdf
2 Shaper 13 200 FSK Input 9 R1 7 Current 2 R2 8 Switches +1 FSK Output 11 F1=1/R1C 10 12 3 F2=1/R2C R 3 XR-2206 + 50K 1mF + 10mF VCC 5.1K 5.1K Figure 13. Sinusoidal FSK Generator Rev. 1.03 9 XR-2206 VCC 2 1 1mF f ▯ C▯R ▯ R ▯ 1 2 4 1 16 Duty Cycle = R 1 5 R1▯ R 2 Mult. C VCO And 15 6 Sine 14 Shaper 9 13 R 1 7 Current 2 R2 8 Switches +1 Sawtooth Output 11 Pulse Output 10 12 3 R XR-2206 + 24K 5.1K 1mF + VCC 10mF VCC 5.1K 5.1K Figure
in „Funktionsgenerator XR2206; Tastverhältins des Rechtecksignals ändern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XR2206v103.pdf
2 Shaper 13 200 FSK Input 9 R1 7 Current 2 R2 8 Switches +1 FSK Output 11 F1=1/R1C 10 12 3 F2=1/R2C R 3 XR-2206 + 50K 1mF + 10mF VCC 5.1K 5.1K Figure 13. Sinusoidal FSK Generator Rev. 1.03 9 XR-2206 VCC 2 1 1mF f ▯ C▯R ▯ R ▯ 1 2 4 1 16 Duty Cycle = R 1 5 R1▯ R 2 Mult. C VCO And 15 6 Sine 14 Shaper 9 13 R 1 7 Current 2 R2 8 Switches +1 Sawtooth Output 11 Pulse Output 10 12 3 R XR-2206 + 24K 5.1K 1mF + VCC 10mF VCC 5.1K 5.1K Figure
in „Signalgenerator XR2206 Spanungsgesteuerte Amplitudenverstellung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XR2206CP.pdf
2 Shaper 13 200 FSK Input 9 R1 7 Current 2 R2 8 Switches +1 FSK Output 11 F1=1/R1C 10 12 3 F2=1/R2C R 3 XR-2206 + 50K 1mF + 10mF VCC 5.1K 5.1K Figure 13. Sinusoidal FSK Generator Rev. 1.03 9 XR-2206 VCC 2 1 1mF f ▯ C▯R ▯ R ▯ 1 2 4 1 16 Duty Cycle = R 1 5 R1▯ R 2 Mult. C VCO And 15 6 Sine 14 Shaper 9 13 R 1 7 Current 2 R2 8 Switches +1 Sawtooth Output 11 Pulse Output 10 12 3 R XR-2206 + 24K 5.1K 1mF + VCC 10mF VCC 5.1K 5.1K Figure
in „XR2206 - split supply“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XR2206v103.pdf
2 Shaper 13 200 FSK Input 9 R1 7 Current 2 R2 8 Switches +1 FSK Output 11 F1=1/R1C 10 12 3 F2=1/R2C R 3 XR-2206 + 50K 1mF + 10mF VCC 5.1K 5.1K Figure 13. Sinusoidal FSK Generator Rev. 1.03 9 XR-2206 VCC 2 1 1mF f ▯ C▯R ▯ R ▯ 1 2 4 1 16 Duty Cycle = R 1 5 R1▯ R 2 Mult. C VCO And 15 6 Sine 14 Shaper 9 13 R 1 7 Current 2 R2 8 Switches +1 Sawtooth Output 11 Pulse Output 10 12 3 R XR-2206 + 24K 5.1K 1mF + VCC 10mF VCC 5.1K 5.1K Figure
in „Sinusfrequenz mittels Gleichspannung einstellen XR2206“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_XR2206.pdf
2 Shaper 13 200 FSK Input 9 R1 7 Current 2 R2 8 Switches +1 FSK Output 11 F1=1/R1C 10 12 3 F2=1/R2C R 3 XR-2206 + 50K 1mF + 10mF VCC 5.1K 5.1K Figure 13. Sinusoidal FSK Generator Rev. 1.03 9 XR-2206 VCC 2 1 1mF f ▯ C▯R ▯ R ▯ 1 2 4 1 16 Duty Cycle = R 1 5 R1▯ R 2 Mult. C VCO And 15 6 Sine 14 Shaper 9 13 R 1 7 Current 2 R2 8 Switches +1 Sawtooth Output 11 Pulse Output 10 12 3 R XR-2206 + 24K 5.1K 1mF + VCC 10mF VCC 5.1K 5.1K Figure
in „Funktionsgenerator mit XR2206 - Ausgangssignale sind unsauber“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avr_adafruit_logodraw.ino
: break; } } } static const char cmd[] PROGMEM = "P0,0 c15 T159,79 M15,67 c2 K7 r12 K7 r13 K7 r13 K7 M-45,-1 c15 T55,8 c6 M52,-1 T53,-1 c8 M4,-2" "T47,-27 C27,66,10M6,0 T11,-13 C205,207,56 u13 r11 M-6,7 c6 l3 d1 c15 M15,-11 T10,6 M14,0 T8,6" "C27,66,10 M-15,7T12,1 M14,0
in „Turtlegrafik: Interpreter, Creator & Designer“ · Projekte & Code ·
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PDF
02-ETEK-Modular-Distribution-Electric-2024.pdf
EKL29-40M 6kA 52 RCBO EKL29-40 6kA 53 EKL17-40AFD 6kA RCBO AFDD 54 EKL19-40AFD 6kA RCBO AFDD 55 RCCB EKL1-80(H) 56 RCCB EKL1-125(H) 57 RCCB EKL6-100(H) 58 RCCB Type B EKL6-100B 59 RCCB Type EV EKL6-63EV 60 EKD2
in „Balkonkraftwerk an alter E-Installation“ · Haus & Smart Home ·
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PDF
Finder_Relais.PDF
load AC15 (230 V AC) VA 500 750 500 Single phase motor rating (230 V AC) kW 0.37 0.55 0.37 Breaking capacity DC1: 30/110/220 V A 10/0.3/0.12 16/0.3/0.12 10/0.3/0.12 Minimum switching load mW (V/mA) 300 (5/5) 500 (10/5) 300 (5/5) Standard contact material AgCdO AgCdO AgCdO Coil specification
in „[S] 14 Relais Finder 40.61.6.005.0000 oder kompatibel“ · Markt ·
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Datei
uhr_v1_0v.bas
(6 , Zeichen) Case 55 : Anzeige7 = Lookup(7 , Zeichen) Case 56 : Anzeige7 = Lookup(8 , Zeichen) Case 57 : Anzeige7 = Lookup(9 , Zeichen) End Select 'Ausgabe If M = 0 Then Portc = Anzeige1 Portd.7 = 0 Porta.2 = 1 Porta.4 = 1 Porta.3 = 1 Porta.5 = 1 Porta.6 = 1 Porta.7 = 1 End If If M = 1 Then Portc = Anzeige2 Portd.7 = 1 Porta.2 = 0 Porta.4 = 1 Porta.3 = 1 Porta.5 = 1 Porta.6 = 1 Porta.7 = 1 End If If M = 2 Then Portc =
in „[BASCOM] A/D-Wandler und Software PWM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PM55L-048-E.pdf
MIN Dielectric Strength AC 500[V] 1[min] Class of Insulation CLASS E Operating Temp. -10[°C] ~ 50[°C] Storage Temp. -30[°C] ~ 80[°C] Operating Hum. 20[%] RH ~ 90[%] RH Torque characteristics • PM55L-048 UNI-CONST V(at 24[V],30[ ]) PM55L-048 BI-CHOPPER(at 24[V],6[ ],600[mA]) 2400 1400 MSPL P/O MSPL P/O 2100 MSPL P/I MSPL P/I MS50 P/O 1200 MS50 P/O 1800 MS50 P/I MS50 P/I ] MS70 P/O ]1000 MS70 P/O N 1500 MS70 P/I . MS70 P/I -0 4N 800 X 1200 - [ 1 600 q 900 [ o u 400 T 600
in „Welcher Schrittmotor für Drehpodest?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pc2004.pdf
PC 2004-A OUTLINE DIMENSION & BLOCK DIAGRAM 98.0 0.5 93.0 10.0 P2.54 x 15=38.1 H1 2 1.8 16- 1.0 4- 2.5 H2 1 16 2.5 4- 1.0 5 0 2 8 A 0 0 0 2 5 0. 5 5 0 4 2 2 K 1 5 0 6 . 3 5 2 2 70.4 5 16 2 76.0 49.0 3.55 DB7 COM 16 LCD LCD PANEL 2.95 DB0 0.55 CONTROLLER 0.05 E LSI R/W SEG 40 SEG
in „Frage über LCD DIsplay Powertip PC2004-A“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCD_pc2004a.pdf
PC 2004-A OUTLINE DIMENSION & BLOCK DIAGRAM 98.0 0.5 93.0 10.0 P2.54 x 15=38.1 H1 2 1.8 16- 1.0 4- 2.5 H2 1 16 2.5 4- 1.0 5 0 2 8 A 0 0 0 2 5 0. 5 5 0 4 2 2 K 1 5 0 6 . 3 5 2 2 70.4 5 16 2 76.0 49.0 3.55 DB7 COM 16 LCD LCD PANEL 2.95 DB0 0.55 CONTROLLER 0.05 E LSI R/W SEG 40 SEG
in „LCD mit Atmega16“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MITSUBISHI_CV-0MW7B51.pdf
DIAG function. (DC-offset detection) SPECIFICATIONS Distortion : 0.5% max at 0.5W Offset Voltage : 50mV max S/N : 55dB min at 0.5W Backup Current : 1mA max Channel Separation : 50dB min at 0.5W Dimensions : 265.8(W) x 220(D) x 54.8(H)mm Residual Output : 0.5mVrms max at Vol.min. Weight : 2.39kg 2 SYSTEM
in „Verstärker reparieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MT7811.pdf
5.5 V VCC (UVLO) V Start-up voltage V Pin ramp up 12 V START CC VCC-CLAMP VCCClamping voltage IDD5mA 15.5 V Supply current op Operating current 0.3 mA Current sense(CS Ppin) Peak current detection V CS-TH 390 400 410 mV threshold Leading edge blanking at CS LEB1 500 nS pin Thermal Protection OTP Over
in „LED Stromquelle IC IKEA“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MT7811.pdf
5.5 V VCC (UVLO) V Start-up voltage V Pin ramp up 12 V START CC VCC-CLAMP VCCClamping voltage IDD5mA 15.5 V Supply current op Operating current 0.3 mA Current sense(CS Ppin) Peak current detection V CS-TH 390 400 410 mV threshold Leading edge blanking at CS LEB1 500 nS pin Thermal Protection OTP Over
in „MT7771 led driver, wie strom einstellen?“ · Haus & Smart Home ·
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PDF
INFINEON-BFP620_.pdf
order Intercept Point IP3=ƒ(I C Transition frequency fT= ƒ(I C (Output, Z S=Z =L0Ω) f = 1GHz V = parameter, f =1.8GHz V = Parameter in V CE CE 30 70 2.3V GHz dBm 60 1.7V 1 to 2.3 55 20 1.4V 50 3 I f 45 15 0.8 40 35 1.1V 10 0.8V 30 25 5 20 15 0 10 0.3 5 0.5 -5 0 0 10 20 30 40 50 60 70 mA 90
in „H - Detektor mit vorspannen von Dioden?“ · HF, Funk und Felder ·
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PDF
Transistor_Dual_PushPull_ZXTC2045E6.pdf
IC= 100mA, V CE= 2V F Collector-Emitter Saturation Voltage 375 mV N VCE(sat) IC= 750mA, IB= 15mA I Base-Emitter Saturation Voltage VBE(sat) 1,200 mV IC= 750mA, IB= 15mA SMALL SIGNAL CHARACTERISTICS E
in „Push/Pull in spannungsgeregelter Stromquelle / Frage zur Auslegung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
mpsa42.pdf
N100 T 0.2 R 80 25 °C I U -0.15 125°C C 60 R C T 25°C - 40 - 40 °C E 0.1 F VCE= 5V L h 20 O0.05 - 40 °C - A 0.1 1 10 100 C 0.1 1 10 100 IC - COLLECTOR CURRENT (mA) V IC - COLLECTOR CURRENT (mA) M P NPN High Voltage Amplifier S (continued) A 4 2 Typical Characteristics (continued
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PDF
CUD4AF1B_UV.pdf
Precaution for Use • Company Information Rev0.5, May 14, 2019 2 www.seoulviosys.com Preliminary AAP – CUD4AF1B Performance Characteristics Table 1. Electro - Optical characteristic at 500mA (T =25℃, RH=30%) s Parameter Symbol Value Unit Peak wavelength [1] λp 345 nm Radiant Flux2] Φe[3] 55 mW [4] Forward Voltage
in „High Power LED Kühlung“ · Platinen ·
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PDF
aod522.pdf
td(on) 55 83 Rise Time r VDD = 15 V, L = 0.67 180 270 Turn-Off Delay Time td(off) ID 22.5 A, GEN = 4.5 V, g = 1 55 83 t Fall Time f 12 18 Drain-Source Body Diode Characteristics Continuous Source-Drain Diode
in „Suche einfache Möglichkeit 24V 6A DC zu schalten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ASSR-1611-High-Current-1-Form-A-Solid-State-Relay-MOSFET-60V25A01____-.pdf
Leakage Current IO(OFF) 0.01 0.1 μA VF=0.8V,VO=60V,T A25°C 5 5 μA V =0.8V,V =55V 4 F O Output Off-Capacitance C(OFF) 1400 pF VF=0.8V,VO=0V, f=1MHz 6 Output OffsetVoltage |V(OS) 1 μV IF=5mA, IO=0mA Input Reverse Breakdown VR 5 V IR=10μA
in „Bidirektionaler DC-Schalter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IRLIZ44N_IR.pdf
, for 10 seconds 300 (1.6mm from case ) Mounting torque, 6-32 or M3 screw 10 lbf in (1.1N m) Thermal Resistance Parameter Typ. Max. Units RθJC Junction-to-Case 3.3 °C/W RθJA Junction-to-Ambient 65 6/23/04 IRLIZ44NPbF Electrical
in „Toggle Schaltung mit NE555 schaltet ein, aber nicht aus“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
nacrt_main_board_rev10a_coulomb.pdf
25V W18 C53 C52 BUS- C40 C41 470uF 470uF C17 C16 C58 Where ZD4 R162 R161 R160 R159 500V 500V BC= C25 1 3 0R 1M 1M 1M R173 R156 R174 C42 0,47uF 0,68uF 22uF 9 200k 200k 200k 0,47uF,630V L1 630V 630V C54 fitted 5V6 50V GND N 1 D13 C135 C 4 R166 R167 R164 R163 9 0R 1M 1M 1M APT30DQ60BG RY4 1 BUS- BUS- BUS
in „SUCHE Transistor KGF75N65KDF“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HD66002.pdf
70 20 61 Y 11 Y 71 21 60 Y 10 Y 72 22 59 Y 9 Y 73 23 58 Y 8 Y 74 24 57 Y 7 Y 75 25 56 Y 6 Y 76 26 55 Y 5 Y 77 27 54 Y 4 Y 78 28 53 Y 3 Y 79 29 52 Y 2 Y 80 30 51 Y 1 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 3 3 3 3 3 3 3 3 3 4 4 4 4 4 4 4 4 4 4 5 1 2 3 4 E 1 D L C S 1 2 R L 2 R E V V V V V M C N H VC
in „Grafikdisplay 480x64 UMS-7024AN-G“ · Mikrocontroller und Digitale Elektronik ·
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DM-KIT-SSK_for_BF533.pdf
130 S S A T Y3 144 VCCIO VCCINT E I T _ _ T T S 0 1 A DS E Y S 0.1uF 2 OE/ST VDD 3 R229 125 4 CPLD_TDI 4 _ _ O O F I _ _ S O I I E O _ U N P GND OUT 33 127 GCLRn TMSI 20 CPLD_TMS O T 5 5 M E E _ _ 1 1 B _B B B T T M S S S GND GND 4M 126 TCK 104CPLD_TDO
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PDF
ks0108b.pdf
*7 DD2 During Access - - 500 μA *7 Access Cycle=1MHz On Resistance R ON VDDV =EEV - - 7.5 KΩ *8 ¡¾ILOAD=0.1mA *1. CL, FRM, M, RSTB, CLK1, CLK2 2. CS1B, CS2B, CS3, E, R/W, RS, DB0~DB7 3. DB0~DB7 4. Excepted DB0~DB7 5. DB0~DB7 at High lmpedance 6. V0L
in „Grafik LCD: Problem“ · Mikrocontroller und Digitale Elektronik ·
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SERIES_76_and_78.pdf
2,000 2,000 Make-and-break Current Rating: Operations per switch position at these resistive loads 1 mA, 5 Vdc; 50 mA, 30 Vdc; or 150 mA, 30 Vdc: 2,000 2,000 — 10 mA, 30 Vdc; or 10 mA, 50 mVdc: — — 2,000 10 mA, 50 mVdc; or 25 mA, 24 Vdc; or 100 mA, 6 Vdc: — — 2,000 D Contact Resistance: Initially: ≤
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f_2320312311226304479081.pdf
* 1/55 1/8, 1/6 132 55 –0.05%/°C 625 m S1D15609D00B 1/53 1/8, 1/6 132 53 –0.05%/°C 625 m * TCP Product Name Duty Bias SEG Dr COM Dr V REGTemperature Gradient S1D15605T00 1/65 1/9, 1/7 132 65 –0.05%/°C **
in „Philips GLCD Modul“ · Mikrocontroller und Digitale Elektronik ·
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LM158.pdf
/LM258A/LM358A 5 Supply Voltage, V 32V 26V 2 M Differential Input Voltage 32V 26V / Input Voltage −0.3V to +32V −0.3V to +26V 8 1 Power Dissipation (Note 1) M Molded DIP 830 mW 830 mW L Metal Can 550 mW Small Outline Package (M) 530 mW 530 mW micro
in „Strommessung mit LM358“ · Analoge Elektronik und Schaltungstechnik ·
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pkg.pdf
.25 M C A B 3 .10 M C bbb C ddd C C 4 A1 SYMBOL MIN. NOM. MAX. NOTES: UNLESS OTHERWISE SPECIFIED A 1.25 1.40 1.55 1. DIMENSIONS AND TOLERANCES PER ANSI Y14.5M. A1 0.30 - - A2 - - 1.25 2. ALL DIMENSIONS ARE
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