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PDF
riaa1.pdf
R + R = 600 3 4 R4 = −20dB = 0.1 R3+ R 4 Solving we get R 4 (0.1)600) =60 R 3 600 60 =540 At high frequency the capacitors appear as short circuits and the network simplifies to a resistor divider comprised of
in „Digital filter mit Matlab programmieren“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
riaa1.pdf
R + R = 600 3 4 R4 = −20dB = 0.1 R3+ R 4 Solving we get R 4 (0.1)600) =60 R 3 600 60 =540 At high frequency the capacitors appear as short circuits and the network simplifies to a resistor divider comprised of
in „Hilfe bei MATLAB gegen Bezahlung“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
Haier_LT26M1CA__LT26M1C_LCD_TV.pdf
A3N C303 C302 C304 A2P 236 218 1uF/16V 10uF/10V 0.1UF16V CK1N 235 A3P TP2 219 CI_POCE1# 20 CK1P 234 A4N TN2 A3N 233 A4P A3P 232 A5N A4N 231 A5P A4P 230 A6N AV33 FB302 1206 A5N 228 A6P A5P 227 A7N 1 2 AVDD33
in „Philips LCD TV kein Bild aber Ton [46PFL7655K/02]“ · Haus & Smart Home ·
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PDF
LQ121S1LG75.pdf
- i A RXIN2- O c A - a P RXIN3+ D r T RXIN3- V t T L I RXCKIN+ CLK IN CK OUT CK PLL RXCKIN- PLL ②8 bit input SELLVDS = H(3.3V) Controller THC63LVDM83R Single LVDS interface contained in a control IC R2-R7,
in „Mini2440 LVDS Display Adapter für größere TFTs“ · Projekte & Code ·
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PDF
Fluke_1740.pdf
x 17 300 V CAT IV 5 A/50 A + N ranges 5 A/50 A, 2 m cable Phase angle error < 1 ° (0.59 in x 0.67 in) mm bush bars 600 V CAT III MBX CLAMP 3-phase+N current clamps with 2 < ± 0.5 % of rdg < 15 mm (0.59 in) diameter or 15 x 17 300 V CAT IV 20 A/200 A + N ranges 2 0 A/200 A, 2 m cable Phase angle error < 1 ° (0.59 in x 0.67 in) mm bush bars 600 V CAT III Misc accessories MBX 300 POLESET Pole mounting kit for 1743 and 1744 C435 Water-tight hard
in „Analog Frontend für genaue Leistungsmessung?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SMBJ5.pdf
current (exponential waveform, maximum values) P P(A) 1000.0 Tjinitial=25 °C 100.0 10.0 8/20 µs 10/1000 µs 1.0 A A A A A A . 2 4 0 5 8 5 J J J J 1 10 ms J B B B B J B M M M M B S S S S S M S VCL(V) 0.1 1 10 100 1000 4/10 Doc ID 5616 Rev 10 SMBJ Characteristics
in „Zener Diode gesucht, die bei 4,0V nur 5-10mA zieht und 2-3 Watt "verbrennen" kann“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STTH16L06C.pdf
TURBO 2 ULTRAFAST HIGH VOLTAGE RECTIFIER Table 1: Main Product Characteristics F(AV) Up to 2 x 10 A A1 K V RRM 600 V A2 Tj 175°C V (typ) 1.05 V F trrmax) 35 ns A2 A2 FEATURES AND BENEFITS K K A1 A1 ■ Ultrafast switching TO-220AB TO-220FPAB ■ Low reverse recovery current STTH16L06CT STTH16L06CFP ■ Low
in „Philips TV 47PFL9664H/12 Hintergrundbeleuchtung defekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD8132.pdf
;C F=0.5pF(SeeFigure56) 0.2 3 +85°C +25°C VS= +3V 2 0.1 VS= +5V 1 0 ) ) 0 B–0.1 VS= ±5V B –40°C ( ( I I –1 A A G–0.2 G –2 –0.3 VS= ±5V G = +1 –3 G = +1 VO, dm= 2V p-p VO, dm= 0.2V p-p R = 499Ω –0.4 RL, dm= 499Ω
in „Schutzbeschaltung für ADC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LMC6482.pdf
with these same features. Y Active Filter, Peak Detector, Sample and Hold, pH d Meter, Current Source Y Improved Replacement for TLC272, TLC277 O u p 3V Single Supply Buffer Circuit u t Rail-To-Rail Input Rail-To-Rail Output O p e a t o n a A m TL/H/11713–1 TL/H/11713–2 TL/H/
in „Differenzverstärker als Gleichrichter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMC6482.pdf
with these same features. Y Active Filter, Peak Detector, Sample and Hold, pH d Meter, Current Source Y Improved Replacement for TLC272, TLC277 O u p 3V Single Supply Buffer Circuit u t Rail-To-Rail Input Rail-To-Rail Output O p e a t o n a A m TL/H/11713–1 TL/H/11713–2 TL/H/
in „messen der Netzspannung am Mega32“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMC6482.pdf
with these same features. Y Active Filter, Peak Detector, Sample and Hold, pH d Meter, Current Source Y Improved Replacement for TLC272, TLC277 O u p 3V Single Supply Buffer Circuit u t Rail-To-Rail Input Rail-To-Rail Output O p e a t o n a A m TL/H/11713–1 TL/H/11713–2 TL/H/
in „Wechselstrom messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LMC6482.pdf
with these same features. Y Active Filter, Peak Detector, Sample and Hold, pH d Meter, Current Source Y Improved Replacement for TLC272, TLC277 O u p 3V Single Supply Buffer Circuit u t Rail-To-Rail Input Rail-To-Rail Output O p e a t o n a A m TL/H/11713–1 TL/H/11713–2 TL/H/
in „Transkonduktanz Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMC6482.pdf
with these same features. Y Active Filter, Peak Detector, Sample and Hold, pH d Meter, Current Source Y Improved Replacement for TLC272, TLC277 O u p 3V Single Supply Buffer Circuit u t Rail-To-Rail Input Rail-To-Rail Output O p e a t o n a A m TL/H/11713–1 TL/H/11713–2 TL/H/
in „Audio-Signal-Erkennung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LMC6482.pdf
with these same features. Y Active Filter, Peak Detector, Sample and Hold, pH d Meter, Current Source Y Improved Replacement for TLC272, TLC277 O u p 3V Single Supply Buffer Circuit u t Rail-To-Rail Input Rail-To-Rail Output O p e a t o n a A m TL/H/11713–1 TL/H/11713–2 TL/H/
in „Suche OVP Schaltung für ideale Diode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LMC6482.pdf
with these same features. Y Active Filter, Peak Detector, Sample and Hold, pH d Meter, Current Source Y Improved Replacement for TLC272, TLC277 O u p 3V Single Supply Buffer Circuit u t Rail-To-Rail Input Rail-To-Rail Output O p e a t o n a A m TL/H/11713–1 TL/H/11713–2 TL/H/
in „Gleichrichteschaltung mittels op“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMC6482.pdf
with these same features. Y Active Filter, Peak Detector, Sample and Hold, pH d Meter, Current Source Y Improved Replacement for TLC272, TLC277 O u p 3V Single Supply Buffer Circuit u t Rail-To-Rail Input Rail-To-Rail Output O p e a t o n a A m TL/H/11713–1 TL/H/11713–2 TL/H/
in „Leistungsaufnahme 220V erkennen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LMC6482.pdf
with these same features. Y Active Filter, Peak Detector, Sample and Hold, pH d Meter, Current Source Y Improved Replacement for TLC272, TLC277 O u p 3V Single Supply Buffer Circuit u t Rail-To-Rail Input Rail-To-Rail Output O p e a t o n a A m TL/H/11713–1 TL/H/11713–2 TL/H/
in „Strommessung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LMC6482.pdf
with these same features. Y Active Filter, Peak Detector, Sample and Hold, pH d Meter, Current Source Y Improved Replacement for TLC272, TLC277 O u p 3V Single Supply Buffer Circuit u t Rail-To-Rail Input Rail-To-Rail Output O p e a t o n a A m TL/H/11713–1 TL/H/11713–2 TL/H/
in „Synchrongleichrichter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMC6482.pdf
with these same features. Y Active Filter, Peak Detector, Sample and Hold, pH d Meter, Current Source Y Improved Replacement for TLC272, TLC277 O u p 3V Single Supply Buffer Circuit u t Rail-To-Rail Input Rail-To-Rail Output O p e a t o n a A m TL/H/11713–1 TL/H/11713–2 TL/H/
in „Betrag bilden mit OpAmp“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LMC6482.pdf
with these same features. Y Active Filter, Peak Detector, Sample and Hold, pH d Meter, Current Source Y Improved Replacement for TLC272, TLC277 O u p 3V Single Supply Buffer Circuit u t Rail-To-Rail Input Rail-To-Rail Output O p e a t o n a A m TL/H/11713–1 TL/H/11713–2 TL/H/
in „LED-VU-Meter von ELV - komme beim Nachbar nicht weiter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PT4115E.pdf
Current vs Supply Voltage Supply Current vs Supply Voltage 120 250 110 V n 100 200 V 90 e 80 g 70 A150 l 60 ( o i V 50 I100 p 40 p 30 S 20 50 10 0 0 0 5 10 15 20 25 30 0 5 10 15 20 25 30 Iin(uA) Supply Voltage Vin(V) LED Current vs Vdim 600 Output Current vs Dim Duty Cycle 800 20KHz 700 R=0.13ohm A500
in „PT4115 KSQ raucht ab. Gleichrichter nötig?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PT4115E_Copy.pdf
Current vs Supply Voltage Supply Current vs Supply Voltage 120 250 110 V n 100 200 V 90 e 80 g 70 A150 l 60 ( o i V 50 I100 p 40 p 30 S 20 50 10 0 0 0 5 10 15 20 25 30 0 5 10 15 20 25 30 Iin(uA) Supply Voltage Vin(V) LED Current vs Vdim 600 Output Current vs Dim Duty Cycle 800 20KHz 700 R=0.13ohm A500
in „Driver IC für High Power LED bis max 3Euro“ · Mikrocontroller und Digitale Elektronik ·
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PDF
en.CD00004215.pdf
( n t e s 5 9 L4 h a d n r p . . 10uH e f c c e BR1 1 R3 7 STPS20H100C CON2 m c a e c F2 D5 2W0 C4100pF . T a o n i BZW50-180 1KV C10 1 i ) e c 4 3 C2 2 1 4 C9 25V0uF 470uF J2 c t 2.5A 200VF 600V STTA106 2 . 25V0uF 25V o
in „Schaltnetzteil - Viper50A-E 45W“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Weidezaun_S03_4093.pdf
1987 K G A TO92_FRONT MAC97A8 0,126€/20 600V 1A Igt=5mA Ih=10mA ebay tiaochongyi onsemi/nxp Triac 6,4V 2 B2 on3,0V 150mV2-V 9 2 PCB80_60_PAD27_22 B1 US1-2_DVM G X8_S1 TIC106M TO220 600V 5A Igt=0,06-0,2mA Ih=5mA KAG bourns.com 2,01€/10 3,2V 2 1 B- LiFePo4_2,5-3,P- 7 GND M2x5x1 U-Scheibe DIN125 E PCB80x60x1,5mm PAD27x22 1 2 NO S1ext G D S IRF3205 TO220 TYN1225 200-1200V 25/16A Ig40mA@1,5V Ih50mA 1,3K/WTO220 KAG (Triac TIC225M 600V 8A Igt=5mA Ih=5mA TO220) BMS
in „Weidezaun gegen Schnecken mit Netztrafo und Rohr DN160 für Hobbygärtner“ · Projekte & Code ·
-
PDF
Pulse-Load-Wirewound-Resistors-200907.pdf
103 - e-mail:vitrohm.support@yageo.com – www.vitrohm.com Pulse Load – Table V I T R O H M Serie Type P70[W] K Umax[V] Imax[A] from Rmin[Ω] KC 200-0 1 50 2.000 20 10R 202-0 2 100 4.000 20 20R 204-0 3 150 6.000 20 33R 200-040 1 100 2.000 30 30R 202-040 2 150 4.000 30 62R 204-040 3 200 6.000 30 100R KH 206
in „Spannungsfestigkeit Widerstand bei kurzzeitig hohen Pulsen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Pulse-Load-Wirewound-Resistors-200907.pdf
103 - e-mail:vitrohm.support@yageo.com – www.vitrohm.com Pulse Load – Table V I T R O H M Serie Type P70[W] K Umax[V] Imax[A] from Rmin[Ω] KC 200-0 1 50 2.000 20 10R 202-0 2 100 4.000 20 20R 204-0 3 150 6.000 20 33R 200-040 1 100 2.000 30 30R 202-040 2 150 4.000 30 62R 204-040 3 200 6.000 30 100R KH 206
in „Kondensator verlustfrei laden“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Ne5532.pdf
A Small-signal differential-voltage amplificf = 10 kHz 2.2 V/mV vd BOM Maximum output-swing bandwidth R L 600 Ω, V O ±10 V 140 kHz B1 Unity-gain bandwidth R L 600 Ω, C L 100 pF 10 MHz i Input resistance
in „Spannungs-Strom-Wandler mit CFA“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LTS6NP.pdf
Notes: Absolute value @ T = 2A °C, 2.475 < V out< 2.525 2) IS= I P N S ●● Industrial. 3)Only due to TCR I M 4)For a di/dt = 15 A/μs. N° 97.37.09.000.0 Page 1/4 25August2017/version 21 LEM reserves the right to carry out modifications
in „Strommessung für 400mA“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
M27C1001.PDF
not required, the CC PP M27C1001 is offered in PDIP32, PLCC32 and TSOP32 (8 x 20 mm) packages. 17 8 A0-A16 Q0-Q7 P M27C1001 E G V SS AI00710B June 2002 1/17 M27C1001 Figure 2A. DIP Connections Figure 2B. LCC Connections VPP 1 32 VCC A16 2 31 P 2 5 6 P C A A A V V P N C A15 3 30 NC A12 4 29 A14 1 32 A7
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PDF
TMPA910_Rev.1.0_Schematic.pdf
Electronics Europe GmbH Hansaallee 181 40549 Düsseldorf Deutschland/Germany SDIO - Standard SDIO Card Holder A A Size FCSM No. DWG No. Rev A4 1.0 CONFIDENTIAL design bywww.bplan-gmbh.de Scale Sheet 3 of 16 1 2 3 4 1 2 3 4 D D CP400A 220pF CP400B 220pF VDD3V3 CP400C 220pF CP400D 220pF C400 2 U400 C401 CP401A 220pF
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PDF
OptoTriac.pdf
Characteristics (Ta = 25°C) Characteristic Symbol Test Condition Min. Typ. Max. Unit Forward voltage V I =10mA 1.2 1.4 1.7 V F F D Reverse current I V =3V ― ― 10 μA L R R Capacitance C V=0, f=1MHz ― 30 ― pF T Peak off−state current I V =600V ― 10 1000 nA DRM DRM Peak on−state voltage V I =70mA ― 1.7 2.8 V TM
in „Opto Triac schaltet nicht aus!!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XC6216_XE6216.pdf
Dissipation Pd(mW) Thermal Resistance (℃/W) 25 1000 100.00 85 400 Pd-Ta特Pd vs. Ta ) W 1200 ()1000 dW P( 800 iP a 600 i失 i損 400 r容 200 w許 P 0 25 45 65 85 105 125 Ambien周辺温度Ta(℃)ture Ta (℃) 40/45 XC6216/XE6216 Series ● SOT-223 Power Dissipation Power dissipation data for the SOT-223 is shown in this page
in „Suche schaltung für Ladeerhaltung einer Pufferbatterie“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TSR1-2450.pdf
) 2.5 Vout models: 1'250 mA (slow blow) 3.3 Vout models: 1'250 mA (slow blow) - 12 Vin input 5 Vout models: 1'600 mA (slow blow) 6.5 Vout models: 1'250 mA (slow blow) - 24 Vin input 9 Vout models: 1'250 mA (slow blow) 12 Vout models: 1'600 mA (slow blow) 15 Vout models: 1'600 mA (slow blow) (The need of an external fuse has to be assessed in the final application.) Input Filter Internal Capacitor Output Specifications Voltage Set Accuracy
in „LDO hinter StepDown Modul“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX481_422.pdf
- 600 - A A A MAX481/MAX485;DECC ,RE=X A 120 M -100 M 500 M M / m 100 m μ 1 T T -80 T 400 E 80 E E 9 U U -60 U 300 4 T 60 T Y MAX485;DE=0,RE=X, T T -40 P MAX481;DE=RE=0 X O 40 O S 200 MAX490/MAX491;DE=RE=
in „Problem mit MAX481 Transmitter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX485.pdf
- 600 - A A A MAX481/MAX485;DECC ,RE=X A 120 M -100 M 500 M M / m 100 m μ 1 T T -80 T 400 E 80 E E 9 U U -60 U 300 4 T 60 T Y MAX485;DE=0,RE=X, T T -40 P MAX481;DE=RE=0 X O 40 O S 200 MAX490/MAX491;DE=RE=
in „STM32 UART Kommunikation -> Langsamer uC Tod“ · Mikrocontroller und Digitale Elektronik ·
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PDF
704013.pdf
per output) Switching logic (applies to both p-switching (PnP) switching outputs) Electrical connection The unit must only be connected by a skilled electrician. The national and international regulations for the installation of elec- trical equipment
in „Efector Pmd, Datenblatt??“ · Mikrocontroller und Digitale Elektronik ·
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Datei
tools_LC_Meter.c
C_x)) / (L_i * C_i) = (C_i + C_x) / C_i C_x = C_i * ((f_i/f_x)^2 - 1) Measurement of C_i by using a known reference cap C_p - same as above, just with C_p instead of C_x: f_p = 1 / (2pi * sqrt(L_i * (C_i + C_p))) - C_i = C_p / ((f_i/f_p)^2 - 1) Measuring L - Parallel resonance: f_i = 1 / (2pi * sqrt
-
Datei
tools_LC_Meter.c
/ C_i 1nF): about 600kHz * ************************************************************************ */ /* * hints: * - pin assigment: * f_out COUNTER_IN T0 * C_p LC_CTRL_CP reference cap * L/C LC_CTRL_LC L/C mode selection
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PDF
Seaward-Elec-SE8733X2-HF_C969998.pdf
Min Typ Max Unit V IN Input Supply Voltage 4.5 40 V -1% 1% V VOUT Output Voltage Accuracy IOUT=10mA -2% 2% V IQ Quiescent Current 4.5 8 μA IOUT Output Current 150 200 mA Dropout Voltage IOUT=10mA ΔV = - V *2% 60 mV OUT OUT V DROP OUT=100mA 600 mV ΔV OUT= - VOUT *2% V LR Load Regulation 1mA ≤ I ≤ 100mA
in „Stromversorgung für Mikrocontroller & LCD Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irfb3077pbf.pdf
(ave) av Fig 15. Maximum Avalanche Energy vs. Temperature www.irf.com 5 IRFB3077PbF 4.0 24 ID = 1.0A V I = 1.0mA e D 20 g ID = 250μA l V 3.0 l 16 o A s - r M 12 t R t I G 2.0 ) 8 ( IF= 30A S V R 64V VG 4 TJ= 125°C T = 25°C 1.0 J 0 -75 -50 -25 0 25 50 75 100 125 150 175 100 200 300 400 500 600 700 800
in „Suche nach Treiber für Power-Mosfet“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RN5RT-RICOH.pdf
O 0.5 O 0.5 0.0 0.0 0 100 200 300 400 0 100 200 300 400 500 Output Current OUT (mA) Output Current OUT(mA) RN5RT50A Topt=25˚C 6.0 ) 5.0 V I=6.0V ( U VIN=5.3V O 4.0 V I=7.0V e V I=8.0V g l 3.0 V t 2.0 p u O 1.0 0.0 0 100 200 300 400 500 600 Output Current OUT(mA) 2) Output Voltage vs
in „Elektronik Grundfoss Alpha 2 Pumpe - Bauteilbestimmung!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LTC4067.pdf
4067 G09 4067 G05 Input Current Limit vs VCLPROG vs Temperature Temperature (Low 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
in „LTC4067 Vout“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX3095-MAX3096.pdf
CURRENT vs. TEMPERATURE SUPPLY CURRENT vs. TEMPERATURE vs. TEMPERATURE 5 5 3.0 - 20 - MAX3095 3 3 3 M M A A ) 4 2.8 ( M ( A N 15 G ( E T T U O 3 E 2.6 C H R L I MAX3096 C MAX3095/MAX3096 P 10 T 2 L 2.4 S MAX3095 P P N U S O MAX3096 O T 5 1 2.2 H S I = -8mA 0 OUT 2.0 0 -40 -15 10 35 60 85 -40 -15 10 35 60
in „Hilfe mit RS485-Receiver-Dattenblatt“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MAX3095-MAX3096.pdf
CURRENT vs. TEMPERATURE SUPPLY CURRENT vs. TEMPERATURE vs. TEMPERATURE 5 5 3.0 - 20 - MAX3095 3 3 3 M M A A ) 4 2.8 ( M ( A N 15 G ( E T T U O 3 E 2.6 C H R L I MAX3096 C MAX3095/MAX3096 P 10 T 2 L 2.4 S MAX3095 P P N U S O MAX3096 O T 5 1 2.2 H S I = -8mA 0 OUT 2.0 0 -40 -15 10 35 60 85 -40 -15 10 35 60
in „SPI mit RS485-Übertragung: Problem mit zu langen Propagation-Delays“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Z0103.pdf
600 V 3 mA SOT223 Z0103NN 800 V 3 mA SOT223 Z0107MN 600 V 5 mA SOT223 Z0107NN 800 V 5 mA SOT223 Z0109MN 600 V 10 mA SOT223 Z0109NN 800 V 10 mA SOT223 4. Limiting values Table 3: Limiting values In accordance
in „Triac direkt mit ATTiny steuern?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
btb04-600sldatasheet.pdf
® BTB04-600SL STANDARD 4A TRIAC MAIN FEATURES A2 Symbol Value Unit IT(RMS) 4 A G V DRM / RRM 600 V A1 A2 IGT(Q1) 10 mA DESCRIPTION The BTB04-600SL 4 quadrants TRIAC is intended for general purpose applications
in „BTB04-600A ersetzen durch BTB600SL“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Torex_XC6206.pdf
Temperature(℃) Power Dissipation Pd(mW) Thermal Resistance (℃/W) 25 500 200.00 85 200 Pd-TPd vs. Ta 600 W m) dW500 Pm id400 aP i失300 i損 r容200 e o許100 P 0 25 45 65 85 105 125 Ambient周囲温度Ta(℃)ure Ta (℃) 15/20 XC6206 Series ■PACKAGING INFORMATION (Continued) ● SOT-89 Power Dissipation Power dissipation data
-
PDF
ir2184.pdf
with a 5.2V zener diode. 2 www.irf.com IR2184 4 ( ) ( ) S Dynamic Electrical Characteristics V (V , V ) = 15V, V = COM, C = 1000 pF, T = 25°C, DT = VSS unless otherwise specified. BIAS CC BS SS L A Symbol Definition
in „IR2184 Widerstände bei MOSFETS?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Bestandsliste.pdf
5A 75Stk 0,06 € 4,13 € 433 P600J Diode Silizium GL-Universal 600V 6A 79Stk 0,15 € 11,65 € 434 P1000K Diode Silizium GL-Universal 800V 10A 10Stk 0,35 € 3,45 € 435 SD103 Diode Silizium Schotky 40V 150mA 400mW
in „Auflösung Elektronik Shop“ · Markt ·
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PDF
LTV817.pdf
Capacitance Ct 30 250 pF V=0, f=1KHz Collector Dark Current CEO 100 nA V CE=20V t Collector-Emitter p BVCEO 35 V IC=0.1mA u Breakdown Voltage O Emitter-Collector V Breakdown Voltage BVECO 6 IE=10 A *Current Transfer Ratio CTR 50 600 % IF=5mA, VC=5V R B= s Collector Current C 2.5 30 mA t r Collector-emitter VCE(sat) 0.1 0.2 V IF=20mA, IC=1mA t Saturation Voltage a Isolation Resistance 5 1010 1011 DC500V, 40~60% R.H. a RISO h Floating
in „Vorwiderstand Optokoppler“ · Analoge Elektronik und Schaltungstechnik ·