For the network shown in figure #3, use mesh-current analysis to determine the total active power dissipated. 100 Z30° V 60 ww ΔΩ 302 1292 50 792 m ww ww Figure #3 8Ω 100 260° V
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- Set up a midpoint bias for a JFET with IDSS = 14 mA and VGS(off) = -10 V. Use a 24 V dc source as the supply voltage. Show the circuit and resistor values. Indicate the value of ID. Indicate the value of VGS. Indicate the value of VDS.I need the answer as soon as possibleFAIRCHILD Discrete POWER & Signal Technologies SEMICONDUCTOR ru 1N4001 - 1N4007 Features • Low torward voltage drop. 10 a14 * High aurge eurrent cepablity. 0.160 4.06) DO 41 COLOR BAND DGNOTEs CAT-Cos 1.0 Ampere General Purpose Rectifiers Absolute Maximum Ratings T-26*Cuness atnerwioe rated Symbol Parameter Value Units Average Recttied Current 1.0 375" lead length a TA - 75°C Tsargei Peak Forward Surge Current 8.3 ms single halr-sine-wave Superimposed on rated load JEDEC method) 30 A Pa Total Device Dissipetion 2.5 20 Derste above 25°C Ra Tag Thermal Resistence, Junction to Amblent 5D Storage Temperature Range 55 to +175 -55 to +150 Operating Junetion Temperature PC "These rarings are imithg valuee above whien the serviceatity or any semiconductor device may te impaired. Electrical Characteristics T-20'Cunieas ofherwise roted Parameter Device Units 4001 4002 4003 4004 4005 4006 4007 Peak Repetitive Reverse Vellage Maximum RME votage DC Reverse Voltage Maximum Reverse Current @ rated VR…
- Q3) A. A step down de chopper is connected to an R=52 and L=10 mH. The de supply voltage is 100 V. The chopper is switching at a frequency of 1 kHz with a duty cycle of 50%. Determine the load current, lo and the peak to peak ripple current as an absolute value and as percentage of de value.In the circuit of the following figure, the input voltage Vs is 15 volts rms with a frequency of 60 Hz, R equals 150 Ohms and C equals 100,000 Pico Farads. The diodes are Germanium (Vd = 0.2 volts) and the Zener diode is 12 volts. a) The magnitude of the ripple voltage at Cb) The Magnitude of the Peak Inverse Voltage (PIV) for D1 and D2.Problem5: For the common base circurt shown in figure find I. and VCB. Assume transistor is Silicon (a-0.98) Ic Rp= 1.5 ko Rc= 1.2 kn VEE = 8 V. Vcc= 18 V
- Problem-3 The transistor in Figure below has the following maximum ratings: PD (max) = 800 mW, VcE (max) = 15 V, and Ic (тах) %3D100 тА. Determine the maximum value to which Vcc can be adjusted without RcE1.0 kN exceeding a rating. Which rating would be exceeded first? Ra PDc = 100 Vcc 22 kn VBB 5VVec +12V Re 1kS2 Re 470k2 BC107 Vc Ve Figure 3: Practical Fixed Bias Transistor Circuit 2. Measure the DC voltages Vc and VB using digital multi-meters. Determine the quiescent base current, collector current, and collector- emitter voltage.I need a diagram of a circuit by the transform and rectification block, using the bridge rectifier circuit (2W10). It can be a source of any value. You don't need to do any calculations, just a drawing of how this circuit will look, please.
- Question-3 a. Determine the Q point of the transistor circuit shown in Figure below. b. Also draw the d.c. load line. + Vcc Ic + 10V 1k2 RB B = 100 47 k2 VBE RE 4.7 k2 - VEE 6- 10VHow would you reduce Req of a circuit by adding a resistor – numerical piece to follow.For the Common Base circuit given in Figure 2 , draw the DC load line and locate its 1 and neglect VBE quiescent point . Take a = VEF = -30 V Vcc = 20 V Ic Rg=15 K RL 5 K Figure 2

