4.11 In Problem 4.8, the RTD is replaced by a thermistor with R(20°C) = 100 and an R versus T of -10%/°C near 20°C. Calculate the voltage resolution of the detector root needed to resolve a 1.0°C change in temperature.
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- Consider the Zener diode circuit shown in Figure. The Zener Breakdown Voltage (Vz) is 5.6 V at Iz= 0.1mA. Zener resistance is r,= 10 0. What is Vo without load (RL= ∞) ? R= 0.5 kQ Vo Vps= 10 VConsider the circuit given in Figure (Q4). Let V, = 0.8 V and R = 100 0, find: a) The value of C that results in a ripple voltage not larger than 1 V peak-to- peak. b) The DC voltage at the output c) The current through the load d) The diodes' conduction angle D, 12V (ths) 6. HZ R + Figure (Q4)Consider the Zener diode circuit shown in Figure. The Zener Breakdown Voltage (Vz) is 5.6 V at Iz= 0.1mA. Zener resistance is rz= 10 0. What is Vo without load (RL= ) ? R= 0.5 ko Vo R Vps= 10 V
- (b) Measure (using the DVM and oscilloscope) the voltage drop Vc across the capacitor and explain the operation of the circuit. the voltage drop Vc across the capacitor is 4.61V please explain question bA single phase – half wave controlled rectifier with freewheeling diode is supplying a load consistingseries connected a resistor and an inductance from a 70.7V (RMS), 50Hz sinusoidal AC source.The firing delay of the thyristor is 90° and the load values are R=10Ω, L=0.1 H. Define the loadcurrent expression and draw the load current by calculating for first two periods. And calculate theaverage values of the load voltage and current.A single phase – half wave controlled rectifier with freewheeling diode is supplying a load consistingseries connected a resistor and an inductance from a 70.7V (RMS), 50Hz sinusoidal AC source.The firing delay of the thyristor is 90° and the load values are R=10Ω, L=0.1 H. Define the loadcurrent expression and draw the load current by calculating for first two periods. And calculate theaverage values of the load voltage and current.
- 5. For following Zener diode circuit, Vz=-4.5, slope for reverse bias is 40mA/V (a). Find expression for v0 in terms of V and Av (b). Calculate the amount of DC and the amount of AC in the output voltage using the Zener diode characteristic to find model values (mA) vz 8 4 4+ La 2 ½Z (V) R₁ = 1kQ wwww Av50 mV AC V10 V DC 8Consider a silicon pn junction diode at T 300K. The reverse saturation current is Is = 10-14 A and the ideality factor n = 1. Determine the diode current for a diode voltage of VD = 0.573 V and use that to determine the DC and AC resistance of the diode. RDC = 14.13 k rac = 639 Q RDC = 234 Q2 = rac=8Q RDC = 7.00 KQ rac = 307 Q RDC = 1.43 kQ rac = 58 QAnalyse the voltage waveforms of the input, Vị and the output, V, for a clamper circuit shown in Figure Q3(b)(i) and Figure Q3(b)(ii). V. V. 10 V 3 V -10 -17 (i) (ii) Figure Q3(b) If the ideal diode is replaced with a silicon diode, explain the changes of the output voltage measurement.
- Vps = 10 V R = 0.1k02 ww -ovo R₁. Consider the Zener diode circuit shown in figure. The Zener diode voltage is Vz= 5.8V at Iz= 10mA and the Zener resistance is rz = 200. a) Find the output voltage for RL = 1k0 b) Find the change in the output voltage when the load resistance varies +ARL.The following figure shows a Zener diode regulator designed to hold 5.0 V at the output. Assume the Zener resistance is zero and the Zener current ranges from 2 mA minimum (2x) to 30 mA maximum (IZM). What are the minimum and maximum input source voltages for these currents? Vs = ? R₁ W 560 02 Vz +5.0 VSuppose we have a 10-V-peak sinusoidal voltage source. Draw the diagram of a circuit that clips off the part of the sinusoid above 5 V and below -4 V. The circuit should be composed of ideal diodes, dc voltage sources, and other components as needed. Be sure to label the terminals across which the clipped output waveform vo(t) appears.