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PDF
Panasonic_Ni-MH_Batteries_Handbook.pdf
battery. 2,200 Size: HR17/43 Schematic discharge of Ni-MH battery* 1 2,000 Charge: 1lt x 1.2hrs. BK-200A Temperature: 20°C )1,800 (HHR-200A) h Ni-MH m1,600 y1,400 Charge c + + OH OH p1,200 MH x H H H a1,000 P-120AS Ni C Ni-Cd 800 Discharge O OH 600 H H H+ H+ 400 Ni 0 1 2 3 4 5 M Discharge current (A) (Negative
in „Langlebige Sub-C Zelle gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
htfs200_800p_e_rev09.pdf
Current Transducer HTFS 200..800-P I = 200-400-600-800 A PN For the electronic measurement of currents : DC, AC, pulsed, mixed, with galvanic isolation between the primary circuit (high power) and the secondary circuit (electronic circuit). All Data are given with a R L 10 kΩ Electrical data Primary nominal Primary current Type current rms measuring range PN(A) IPM(A) Features 200 ± 300 HTFS 200-P • Hall effect measuring principle 400 ± 600 HTFS 400-P • Galvanic
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PDF
LT3475.pdf
oscillatorfrequency. Tiea24.3kresistorfromR toGND T feature is unused, leave this pin unconnected. for a 600kHz switching frequency. 3475fa 5 LT3475 BLOCK DIAGRAM D 7 T 3 D 2 O 2 L C 2 C E C 4 DL C 2 D S T 2 O 2 U D W C B S O L P V 2 Q R V 7 2 R . m D 0 g k . Ω 4 1 0 Q 1 D G Q Q R S E A O P 2 X C E J A V Σ I 5 V P C K 1 O E A C U B – + T E P E L R T S L E F F A O S A S M 2 S O 2 RT S O F M R 1 N S D O E V S E D O M A S 2 R N V M S O Y K I A U O N A I E U D – + V O Q L L R F D S F V Σ N CI VI C R S Q Q k . Ω 3
in „3W Luxeon Led energiesparend dimmen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INFINEON-IGP06N60T-DS-V02_03-EN.pdf
used IDP06E60 - 0.335 - 3 Rev. 2.3 20.09.2013 IFAG IPC TD VLS IGP06N60T TRENCHSTOP™ Series q t =1µs p 18A 10A 5µs 15A T T 10µs E TC=80°C E R R U 12A U C C R R 50µs T 9A TC=110°C T 1A C C L L O O C 6A Ic C 500µs IC I 3A 5ms Ic DC 0A 0,1A 100Hz 1kHz 10kHz 100kHz 1V 10V 100V 1000V f,SWITCHING FREQUENCY
in „Verständnisproblem mit Wärmewiederstand“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IRFB3006_IR.pdf
°C 100 T = 125°C J TJ= 25°C TJ= 25°C 0 0 100 200 300 400 500 600 700 800 100 200 300 400 500 600 700 800 dif/ dt - (A / μs) dif/ dt - (A / μs) Fig. 18 - Typical Recovery Current vs. di /dt f Fig. 19 - Typical Stored Charge vs. di f/dt 700 600 500 ) n 400 - R 300 Q 200 I = 170A F VR= 51V 100 T = 125°C J TJ= 25°C 0 100 200 300 400 500 600 700 800 df / dt - (A / μs) Fig. 20 - Typical Stored Charge vs. di f/dt 6 www.irf.com IRFB3006PbF Driver Gate Drive D.U.T Period D = P.W. +
in „Motor PWM Steuerung, Mosfet Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT084AC27500-v05R.pdf
LT084AC27500 Unit : mm DIMENSIONAL OUTLINE TENTATIVE Standard tolerance : +/-0.5 <Front side> ) ) ) e e g r A i A e v v p t t ) O c c . . P e A A - - T e C / 4 4 h B L ( 6 6 i 8 4 4 . . w 4 0 0 9 9 0 7 1 1 1 1 3 1 1 5 . 9 ( . 9 1 ) 7 / 1 ( 5 1 7 . 3 9 1 ( 5 5 5 1 3 5 9 9 5 / 2 4 . . . 4 0 A 1 1 7 3 7 1 8 3 C )CPF P/T(58.67 R ( 59.21 )AERA EVITCA P/T(8.721 3.6 )P/T(1.141 4.42 9.401 U ) 59.21 )aera evitca(8.721 Y Y ( ( a )58.67( )56.27( g a 57.01 )gninepO lezeB(7.331 D t 5.941 i c i ) C K d A a ) M B X N 0.45MAX
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littelfuse-PTC-Rline-Catalog.pdf
Curves at 20°C RGEF (data at 25°C) Figure R18 A = RGEF250 1000 A B C D E FGH I J K L B = RGEF300 C = RGEF400 100 D = RGEF500 E = RGEF600 F = RGEF700 10 s G = RGEF800 p T L H = RGEF900 o 1 K e J I = RGEF1000 i H J = RGEF1100 T A G 0.1 F K = RGEF1200
in „Batteriehalter mit unbekannten Bauteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MURATA.pdf
100 Q p Q F e ( n c i a a c a p C a C 10 10 10 10 1 100 200 300 400 500 600 700 800 900 1000 1 100 200 300 400 500 600 700 800 900 1000 Frequency (MHz) Frequency (MHz) TZB4R200 TZB4R500 R200 R500 7 1000 1000
in „Welches Bauteil ist zu sehen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Roland_G-70_Service_Notes_.pdf
22 2 2 2 1 1 1 1 1 17 7 3 4 P P P P P P K01 901R 31AE 61 1 7DE P T D G H K M P T U Y Y A A A A A A A A A A A A A A A A A A A A A A Y V U T P N L K G G C D C D B D D D D D A D A D R R R R R R 3 D 3 3 3 3 3 3 1 9 9 9 9 9 9 9 3 D J
in „Roland G-70 fährt nicht hoch.“ · Analoge Elektronik und Schaltungstechnik ·
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Roland-G-70-Service-Manual.pdf
94 CA4 RST1 RST1 CA4 94 A3 R13 D +5 P21/A9 A8 A8 A5 A5 DQ3 D2 A2 CA3 XRESET CA3 A2 100 17 IRQ5/SCK1/P95 P20/A8 45 A7 A7 9 10 A4 21 A4 DQ2 33 D1 D +5 D +5 A1 95 CA2 VPOUT 54 54 VPOUT CA2 95 A1 16 IRQ4/SCK0/P94 P17/A7 43 2 1 22 A3 DQ1 31 96 CA1 CA1 96 S_IN1 15 RXD1/P93 P16/A6 42 A6 A6 3 A3 23 A2 DQ0 29 D0 A0 97 CA0 TRS5 110 TS5 TR5 110 TRS5 CA0 97 A0 RXD1 S_IN0 14 RXD0/P92 P15/A5 41 A5 A5 4 RA2 A2 24 A1 2 TRS4 111 TS4 TR4 111
in „Roland G-70 fährt nicht hoch.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BZX79.pdf
(A) r n Bxxx (see Figs 5 and 6) VR= 0 V at p= 100 s; T amb = 25 °C g u Tol. approx. u o Cxxx Tol. ±2% (B) ±5% (C) at Ztest= 1 mA at Ztest 5 mA a s o MIN. MAX. MIN. MAX. TYP. MAX. TYP. MAX. MIN. TYP. MAX
in „Z Dioden mit hoher Impulsfestigkeit“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
mc14553b-d-1192980.pdf
THL = (0.75 ns/pFL C + 12.5 ns 10 − 50 100 t , t = (0.55 ns/pF) C + 9.5 ns 15 − 40 80 TLH THL L Clock to BCD Out 2a t , 5.0 − 900 1800 ns tLH 10 − 500 1000 PHL 15 − 200 400 Clock to Overflow 2a tPHL 5.0 − 600 1200 ns
in „MC14553BCP - Alternative“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Schematic_PIN_Geiger_2022-10-23.pdf
P1.4/UCA0STE/TCK/OA0+/A4 14 VBPW34FASR SBWTDIO 4 RST#/NMI/SBWTDIO P1.5/UCA0CLK/TMS/TRI0O/A5 13 SCK +3.3V L1 5 DVCC TRI0-12 TRI1- FERRITE600OHMDCR6 DVSS P1.6/UCA0RXD/UCA0SOMI/TB0.1/TDI/TCLK/A6 11 MISO C2
in „PIN Dioden Geiger“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRM-03-SPEC.PDF
IRM-03-5 IRM-03-9 IRM-03-12 IRM-03-15 IRM-03-24 DC VOLTAGE 3.3V 5V 9V 12V 15V 24V RATED CURRENT 900mA 600mA 333mA 250mA 200mA 125mA CURRENT RANGE 0 ~ 900mA 0 ~ 600mA 0 ~ 333mA 0 ~ 250mA 0 ~ 200mA 0 ~ 125mA RATED POWER 3W 3W 3W 3W 3W 3W RIPPLE&NOISE(max.)Note.100mVp-p 100mVp-p 100mVp-p 150mVp-p 200mVp-p 240mVp-p OUTPUT VOLTAGETOLERANCE Note.±2.5% ±2.5% ±2.5% ±2.5% ±2.5% ±2.5% LINE REGULATION ±0.5% ±0.5% ±0.5% ±0.5% ±0.5% ±0.5% LOAD REGULATION ±1.0% ±0.5% ±0.5% ±0.5% ±0.5% ±0.5% SETUP, RISE TIME 600ms, 30ms/230VAC
in „230 Volt PCB-Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
M27C2001.pdf
32 pin Ceramic Frit-seal DIP, with window, Package Outline r o P e te A2 A3 A o l b s A1 L α O B1 B e eA C D2 eB D N S ∅ E1 E 1 FDIPW-a 1. Drawing is not to scale. 19/25 M27C2001 Package mechanical data Table 13. PDIP32 - 32 lead Plastic DIP, 600 mils width, Package
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PDF
tle2082.pdf
OUTPUT VOLTAGE 400 400 V = ±5 V V = ±15 V CC± CC± 300 VIC= 0 300 V IC= 0 Vµ RS= 50 Ω Vµ R S 50 Ω – A = 25°C – TA= 25°C e 200 RL= 600 Ω e 200 R L 600 Ω a a l l V 100 RL= 2 kΩ V 100 RL= 2 kΩ u u p RL= 10 kΩ p RL= 10 kΩ l 0 l 0 t R = 10 kΩ t RL= 10 kΩ n L n r – 100 r – 100 RL= 2 kΩ i R L 2 kΩ i D D – –
in „Bauteil gesucht: unbekannter TI-Baustein“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BLDC_Controller.pdf
1 2 3 4 CI1 GVDD_0B PIIC101IC1 PIIC1036 GVDD_A0 C1 PL01 PL02 A OTWW 2 GVDD_B GVDD_A 35 BST_A 50V 100n Induktivität 0.40uH A FAULT PIIC302 OTW BST_A PII34035 PVDD PC2P1 PWM_A PIIC403 FAULT PVDD_A PII33034 OUT_A0 L2 P1 NRESET0 PIIC104 PWM_A OUT_A PIIC1033 NLGND0 PL0 PL02 CO RESET_A PIIC105 RESET_A GND_A PIIC1032 GND_A 600 Ohm @ 100MHz V1 0R PWM_B PIIC106 PWM_B GND_B PIIC1031 GND_B0 CO PIV1 03 3 PICO PI1 AGND PI0CR PR NOC_APIIC107 PIIC1030 OUT_B0 PL03 PL02 P2 PIV1 02 R1 C2 P3CR
in „Tipps Platinenlayout“ · Platinen ·
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PDF
IR2117_Mosfet_Driver.pdf
SINGLE CHANNEL DRIVER Features Product Summary • Floating channel designed for bootstrap operation V 600V max. Fully operational to +600V OFFSET Tolerant to negative transient voltage IO+/- 200 mA / 420 mA dV/dt immune • Gate drive supply range from 10 to 20V V OUT 10 - 20V • Undervoltage lockout • CMOS
in „MOSFET Ansteuerung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Ferrit_SMD_0805_Z_220R_100MHz_2A_-_BLM21PG221SN1D.pdf
BLM21PG300SN1p 30ohm(Typ.) - 3000mA 0.015ohm -55 to +125°C BLM21PG600SN1p 60ohm±25% - 3000mA 0.025ohm -55 to +125°C BLM21PG121SN1p 120ohm±25% - 3000mA 0.03ohm -55 to +125°C BLM21PG221SN1p 220ohm±25% - 2000mA 0.050ohm
in „SMD Sammelbestellung, SMD Starterpack, SMD Grundausstattung, SMD Bauteile, Baugröße 0805“ · Markt ·
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PDF
MCTV75P60E1.pdf
Semiconductor MCTV75P60E1, N NS D RA W DE SIG MCTA75P60E1 R T W I H N O N EW P A L ET E - 75A, 600V O BS O April 1999 OC ES S P-Type MOS Controlled Thyristor (MCT) PR Features Package JEDEC STYLE TO-247 5-LEAD • 75A, -600V
in „Projekt: Leistungsstarkes Blitzgerät aus 12 Volt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMC662.pdf
pF to 10 pF) from inverting input to output pins, returns the must then be connected to a voltage which is at the same phase margin to a safe value without interfering with lower- voltage as the amplifier
in „Alternative zum LMC6041“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
switec_X15.xxx.02.SP.E.pdf
parameter required. A fine analogue representation of - large temperature range: -40∞C ˜ 105∞C its value and its changes is made without the need for a digital to analogue conversion. - high speed: >600 ∞ /s The miniature
in „M-S Motor X15.xxx“ · Mikrocontroller und Digitale Elektronik ·
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PDF
QM15TB-2HB.PDF
saturation voltage — — 3.5 V –VCEO Collector-emitter reverse voltageC=15A (diode forward voltage) — — 1.8 V hFE DC current gain I=15A, VCE=3.0V 250 — — — ton — — 2.0 s ts Switching time VCC=600V, C=15A, IB1=90mA, IB2=–0.3A — — 10 s tf — — 3.0 s — — 0.8 Rth (j-c) Q Thermal
in „Frequenzumrichter Ersatzteil fuer QM15TB-2H“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TLC5922.pdf
)= 600 70 80 90 mA I Leakage output current All output OFF, O = 15 V, R(IREF) 600 , 0.1 µA LO0 OUT0 to OUT15 IOLC0 Constant current error All output ON, O = 1 V, (IREF)= 600 , ± 1 ± 4 % OUT0 to OUT15 IOLC1
in „daisy-chaining Verzögerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HM8631_HM8632_HM8634__1_.pdf
voltage gain R = 10kΩ, V = 0.05 to 3.5 V 90 103 A L O dB VOL R L 600Ω, VO= 0.15 to 3.5 V 78 86 R IN Input resistance 100 GΩ Differential 2.0 C IN Input capacitance pF Common mode 3.5 OUTPUT CHARACTERISTICS R = 600Ω V –126 V High output voltage swingL
in „Identifizierung 8 pin SMD Bauteil aus BLDC Controller“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HiLink_3W_Power_Supply.pdf
mA 额定输出电流 1000 mA 电压调整率 ±0.2 % 负载调整率 ±0.5 % 输入低电压效率 Vin=115Vac,输出满载≥72 % 输入高电压效率 Vin=230Vac,输出满载≥72 % ≤100 输出纹波及噪音 额定输入电压,输出满载。用 20MHz 带宽示波器, mV (mVp-p) 负载端并 10uF 和 0.1uF 电容进行测试。 开关机过冲幅度 (额定输入电压,输出加 10%载) ≤5 %VO 输出过流保护 输出最大负载的 110-150% A 输出短路保护 正常输出时直接短路,短路去除后自动恢复正常工作 不损坏整机 5.3.输出特性 (5V/600mA) 项目名称 技术要求 单位 备注 空载额定输出电压 5.0±0.1 Vdc 满载额定输出电压 5.0±0.2 Vdc 短时间最大输出电流 ≥700 mA 额定输出电流 600 mA 电压调整率 ±0.2 % 负载调整率 ±0.5 % 输入低电压效率 Vin=115Vac,输出满载≥73
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
P1K0.520.6W.B.010.pdf
.xP.x 3 ,8 0, 1000 P1k0.538.xP.x Temperature sensors Product series Pxxx.232.xT.x.010 on a Thin Substrate: Dimensions Nominal resistance Part number at 0°C (Ohm) 100 P0k1.232.xT.x.010 2, 500 P0k5.232.xT.x
in „PT1000: wie mechanisch anschliessen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Nokia_2-mm_DC_Charging_Interface_Specification_v1_2_en.pdf
1.14. Crest factor = PEAK/ RMS. Nokia 2-mm DC Charging Interface Specification 12 Forum.Nokia.com 140 A 120 [ n e 100 g u e n k n r e 80 r o p f t m t o m 60 u A x R I M I 40 Allowed peak 20 current 90 200 400 600 800 1000 CHA[mA] Figure 8: Maximum allowed charging current peaks (creICHAR½ Hz) f . 300 ] s A 250 m e e a 200 g g r a n l f r s 150 o o u u t m o o x 100 C A M I Allowed current I 50 slew rate 800 90 200 400 600 1000 ICHA[mA] Figure 9: Maximum allowed charging current slICHAR½ Hz Nokia 2-mm DC
in „Nokia über USB laden“ · Offtopic ·
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PDF
Nokia_2-mm_DC_Charging_Interface_Specification_v1_2_en.pdf
1.14. Crest factor = PEAK/ RMS. Nokia 2-mm DC Charging Interface Specification 12 Forum.Nokia.com 140 A 120 [ n e 100 g u e n k n r e 80 r o p f t m t o m 60 u A x R I M I 40 Allowed peak 20 current 90 200 400 600 800 1000 CHA[mA] Figure 8: Maximum allowed charging current peaks (creICHAR½ Hz) f . 300 ] s A 250 m e e a 200 g g r a n l f r s 150 o o u u t m o o x 100 C A M I Allowed current I 50 slew rate 800 90 200 400 600 1000 ICHA[mA] Figure 9: Maximum allowed charging current slICHAR½ Hz Nokia 2-mm DC
in „Handy mit "Falscher" Spannungshohe laden.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
NFAQ1560R43T-D.PDF
Intelligent Power Module (IPM) 600 V, 15 A NFAQ1560R43T The NFAQ1560R43T is a fully−integrated inverter power stage consisting of a high−voltage driver, six IGBTs (FS4 RC IGBT technology) and a thermistor, suitable for driving permanent
in „Ersatz für ON-Semi STK5Q4U362J-E / STK5Q4U363J-E bzw. passt da NFAQ1060L33T / NFAQ1060L36T“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AC_Powerswitch_CPC1976Y.pdf
of 600V . P In addition, tightly controlled zero-cross circuitry ensures low noise switching of AC loads by Features minimizing the generation of transients. The optically Load Current up to 2A rms coupled
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PDF
AC_Powerswitch_CPC1976Y.pdf
of 600V . P In addition, tightly controlled zero-cross circuitry ensures low noise switching of AC loads by Features minimizing the generation of transients. The optically Load Current up to 2A rms coupled
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PDF
AC_Powerswitch_CPC1976Y.pdf
of 600V . P In addition, tightly controlled zero-cross circuitry ensures low noise switching of AC loads by Features minimizing the generation of transients. The optically Load Current up to 2A rms coupled
in „Zusätzlicher Schalter aber keine Ader frei.“ · Haus & Smart Home ·
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PDF
AC_Powerswitch_CPC1976Y.pdf
of 600V . P In addition, tightly controlled zero-cross circuitry ensures low noise switching of AC loads by Features minimizing the generation of transients. The optically Load Current up to 2A rms coupled
in „Suche Halbleiterelement als Ersatz für Relai in Radar-Bewegungsmelder“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AC_Powerswitch_CPC1976Y.pdf
of 600V . P In addition, tightly controlled zero-cross circuitry ensures low noise switching of AC loads by Features minimizing the generation of transients. The optically Load Current up to 2A rms coupled
in „Triac vs Relais“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AC_Powerswitch_CPC1976Y.pdf
of 600V . P In addition, tightly controlled zero-cross circuitry ensures low noise switching of AC loads by Features minimizing the generation of transients. The optically Load Current up to 2A rms coupled
in „Relais 12v nach Tagen benutzung kaputt - Jalousien steuerung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AC_Powerswitch_CPC1976Y.pdf
of 600V . P In addition, tightly controlled zero-cross circuitry ensures low noise switching of AC loads by Features minimizing the generation of transients. The optically Load Current up to 2A rms coupled
in „230VAC Max 200mA mit ESP32 3,3VDC schalten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AC_Powerswitch_CPC1976Y.pdf
of 600V . P In addition, tightly controlled zero-cross circuitry ensures low noise switching of AC loads by Features minimizing the generation of transients. The optically Load Current up to 2A rms coupled
in „Triac oder Relais“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AC_Powerswitch_CPC1976Y.pdf
of 600V . P In addition, tightly controlled zero-cross circuitry ensures low noise switching of AC loads by Features minimizing the generation of transients. The optically Load Current up to 2A rms coupled
in „MOSFET 230V AC / 3V3 Arduino“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AC_Powerswitch_CPC1976Y.pdf
of 600V . P In addition, tightly controlled zero-cross circuitry ensures low noise switching of AC loads by Features minimizing the generation of transients. The optically Load Current up to 2A rms coupled
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Datei
WCU_Kilobot_Schematic.txt
80 0 0 1 0 T-700 -300 0 0 140 20 0 1 230 0 0 8 PIN P-520 0 0 1 -80 0 0 1 0 T600 200 0 1 140 20 0 1 230 0 0 8 PIN P-520 0 0 1 -80 0 0 1 0 T600 100 0 1 140 20 0 1 230 0 0 8 PIN P-520 0 0 1 -80 0 0 1 0 T600 -100 0 1 140 20 0 1 230 0 0 8 PIN P-520 0 0 1 -80
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PDF
D_CH23103.pdf
0.0394 inch) r e h o 0 a 0 d r 0 y ) P Anzahl Effektiver Ausgangs- Primär- Primär- Empfohlene Primär- Primärnennstrom spannung widerstand Induktivität Verbindungen windungen IPN [ A ] V OUT [ V ] R P [ mΩ ] L P [ µH ] 6 5 4
in „Transducer LEM HAIS-50“ · Mikrocontroller und Digitale Elektronik ·
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PDF
D_CH23103.pdf
0.0394 inch) r e h o 0 a 0 d r 0 y ) P Anzahl Effektiver Ausgangs- Primär- Primär- Empfohlene Primär- Primärnennstrom spannung widerstand Induktivität Verbindungen windungen IPN [ A ] V OUT [ V ] R P [ mΩ ] L P [ µH ] 6 5 4
in „LTS25-NP Stromwandler am ATmega -> Spannungsverstärkung muss wohl her“ · Mikrocontroller und Digitale Elektronik ·
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PDF
D_CH23103.pdf
0.0394 inch) r e h o 0 a 0 d r 0 y ) P Anzahl Effektiver Ausgangs- Primär- Primär- Empfohlene Primär- Primärnennstrom spannung widerstand Induktivität Verbindungen windungen IPN [ A ] V OUT [ V ] R P [ mΩ ] L P [ µH ] 6 5 4
in „Messung mit Stromwandler LTSR 15-NP“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
D_CH23103.pdf
0.0394 inch) r e h o 0 a 0 d r 0 y ) P Anzahl Effektiver Ausgangs- Primär- Primär- Empfohlene Primär- Primärnennstrom spannung widerstand Induktivität Verbindungen windungen IPN [ A ] V OUT [ V ] R P [ mΩ ] L P [ µH ] 6 5 4
in „Wo Entstörkondensatoren in meiner Schaltung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
D_CH23103.pdf
0.0394 inch) r e h o 0 a 0 d r 0 y ) P Anzahl Effektiver Ausgangs- Primär- Primär- Empfohlene Primär- Primärnennstrom spannung widerstand Induktivität Verbindungen windungen IPN [ A ] V OUT [ V ] R P [ mΩ ] L P [ µH ] 6 5 4
in „Strommessung mit Hallsensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTSR.pdf
0.0394 inch) r e h o 0 a 0 d r 0 y ) P Anzahl Effektiver Ausgangs- Primär- Primär- Empfohlene Primär- Primärnennstrom spannung widerstand Induktivität Verbindungen windungen IPN [ A ] V OUT [ V ] R P [ mΩ ] L P [ µH ] 6 5 4
in „LEM-Wandler Datenblatt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
D_CH23103.pdf
0.0394 inch) r e h o 0 a 0 d r 0 y ) P Anzahl Effektiver Ausgangs- Primär- Primär- Empfohlene Primär- Primärnennstrom spannung widerstand Induktivität Verbindungen windungen IPN [ A ] V OUT [ V ] R P [ mΩ ] L P [ µH ] 6 5 4
in „Stromsensor von LEM prüfen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STEVAL-ILL004V1_AN2263_AppNote_.pdf
M R 4 P K R 5 C 1 1 1 C V 1 n 10 7 0 C 0 R 1 R 5 1 1 N e IS ) b R TI L n O T EP I S D R NA E 8 F A O NL S 1 C n R k LHSC( IN Q . 1 r S 2 1 2 o 7 n 1 T C J C 0 B S I 1 B A TR A E 2 5 P L / F V 2 M H n 5 X J 1
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CD00003829.pdf
UNIVERSAL MOTOR DRIVE 3.1 AC DRIVE WITH TRIAC Figure 4 shows an AC drive for Universal motor suitable for a large range of applications. The power switch is a "SNUBBERLESS" TRIAC BTA 12-600BW with a maximum specified gate trigger current of 50mA at 25°C. This TRIAC is pulse driven; A small signal transistor
in „Motoransteuerung Phasenanschnitt“ · Mikrocontroller und Digitale Elektronik ·