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- Inductive Circuits Fill in all the missing values. Refer to the following formulas: XL=2fLL=XL2ff=XL2L Inductance (H) Frequency (Hz) Inductive Reactance ( ) 1.2 60 0.085 213.628 1000 4712.389 0.65 600 3.6 678.584 25 411.459 0.5 60 0.85 6408.849 20 201.062 0.45 400 4.8 2412.743 1000 40.841CBASFEED BUCK 300L 20 桃 1: 200 € 20010 mH jok a resistor, capacitar eard inductor measure the resistoane R using Use to an ohm metere Measure the time constants for the two circuits below and find values of C and L I need help vith the building of this. circuit. 1f you could make them ánd find ans wer to the question abore, I would the C appretiate it gieatly
- Original Schematic and OrCAD Schematic: The input primary voltage is 250V, frequency 50 Hz, primary inductance setting is 2000H and secondary inductance is 10H and voltage peak to peak ripple is approximately equal to 92mv. U1 D4 IN our DINA002 C3 DIN002 90u R1 R2 10k TXI BC540A V1 VOFF =0 VAMPL 2 FREQ- 50 AC0 XFRM_LINICT-SEC D5 DIN4002 C2 0.384m 84 5 HH+Vcc V1 5 D2 .tran 10 QTLP690C R8 1k Q4 2N2222 R6 1k vout Q2 2N2222 R2 470 R4 56k C2 HH 47μ VCC C1 H 47μ Astable Multivibrator R3 56k R1 470 Q1 2N2222 R5 1k D1 QTLP690C R7 1k Q3 2N2222 What is the region of operation of the circuit when the waveform is a. OV b. 4VVcc = +12 V %3D a. Determine the following values for the fixed-bias configuration in the figure to the right. Rc IBo and ICO 2.2 k2 C2 RB 240 k2 ac output VCEQ, VB, and Vc 10 uF C ac input VCE B = 50 VBC 10 µF
- +Vcc V1 5 D2 .tran 10 QTLP690C R8 1k Q4 2N2222 R6 1k vout Q2 2N2222 R2 470 R4 56k C2 HE 47μ VCC C1 47μ Astable Multivibrator R3 56k R1 470 Q1 2N2222 R5 1k D1 QTLP690C R7 1k Q3 2N2222 What is the region of operation of the circuit when the waveform is a. OV b. 4VA series R–L–C circuit comprises a 5µF capacitor, a 4ohm resistor and a variable inductance L. The supply voltage is 10∠0◦ V at a frequency of 159.1 Hz. The inductance is adjusted until the p.d. across the 4 ohm resistanceis a maximum. Determine for this condition (a) the value of inductance, (b) the p.d. across each component and (c) the Q-factor of the circuit.Find the Cea for the circuit given below: C C C C O 20 O 2.5C O 10 O 1.5C
- Q6// Determine Ve, VB, VE, Ic, Ig and Ig for the circuit shown in figure below (B=100 & a= 0.9) Vcc = +22 V Rc 10 Kohm 39 Kohm RB C2 • Vo C1 1µF Vin • Q1 1µFConsider the circuit below. The frequency of oscillation is: www OF R₂ 1,0 ΚΩ C₁ 0.015 μF R₁ 1.0 ΚΩ 11 L Q₁ 2N5458 C₂ 0.015 μF 10.6 kHz 1.94 kHz 19.4 kHz 15.9 kHz www R₁ 10 ΚΩ R3 820 02 ww R₁ 10 ΚΩ ovour D₁ IN914 C3 1.0 μεCircuits 1 HW 7 Q6