Required information Consider the circuit given below. -12 V V- V+ Vout Vactive 12 V Sketch the expected output voltage Vout as a function of Vactive if -3.00 Vs Vactive ≤ +3.00 V. (Please upload your response/solution using the controls below.) upload a response file (15MB max) Choose File No file chosen save
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- q10FAIRCHILD 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…Number 22
- QUESTION 1 Find out the rounded integer output (in decimal format) of a10 bit A/D converter for the following two cases? Assume that the input to ADC in both cases is 500mV. Also, assume that the ADC uses a 15V supply voltage. The converter input range is 0 to 10V. Case 1: Reference voltage: 10V. Case 2: Reference Voltage: 5V. A 26 and 51 B 52 and 103 C 104 and 206 D 26 and 206 In Question 1, If a choice is given, which reference voltage you would pick? A. 5V B. 10V C. 20V D. All choices give same results In Question 1, What is the ADC output value (in decimal format) for the input of 7V for the case of reference voltage = 5V? Answer: 1023 Answers are highlighted. Work Step-by-Step solution to get the answer.For the given Zener voltage regulator circuit, Rs 100 2 and Zener current rating is 15 mA. Over what range of input voltage will the voltage regulator circuit shown in the figure below maintain 20 V across 1000 2 load? Vinput RS w 1000 N SSURA ww iL RL 100002) approximately draw Vout for the circuits below, separately. Point out which one is a rectifier which one is a clipping circuit. Use Vp = 0.7V. Input signal 2tVin 1.5 1 0.5 -0.5 -1 -1.5 -2 Circuit (a) Circuit (b) Vin Vout Vin Vaut R 2 Vonut 1.5 1.5 1 1 0.5 0.5 1 3 4 7 1 2 3 6 7 -0.5 -0.5 -1 -1 -1.5 -1.5 -2, -2
- Design a +40 volt dc power supply for your sound system. Your sound system requires a 400 watt capability. The power supply is energized from a three-wire 110 Vrms 60 Hz power line that meets the National Electric Code (NEC). The system block diagram and design specifications are given below. Input is a 110 Vrms60 Hz. Output voltage is 40 volts, unregulated. Maximum allowable ripple is 2% Use a full-wave bridge rectifier. Use a transformer Assume diodes with VF= 0.7 volts Your design should include: Ø Well-labeled circuit diagram of what goes in the “Your Design” box. There should be enough detail such that someone could build an operational prototype. Polarities of key components are important Ø Key design equations and supporting calculations. Show your work! Ø Component specifications including: (a) Transformer-turns ratio (b) Effective value of the audio system load resistor (speaker impedance) and load current for a 400 watt, 40 volt…lp ET v aph S Normal No Spacing Heading 1 Heading 2 Styles Ti The nominal output voltage of a certain regulator is 8 V. The output changes by 2 mV when the input voltage rises from 12v to 18V. Complete the following: a. Determine the line regulation and express it as a percentage change. b. Express the line regulation in %/V.Q 1. Determine the output voltage of the Digital-to-Analog Converter (DAC) in Figure 1(a) and plot it in Figure 1(c). The sequence of the four digit binary codes represented by the waveforms in Figure 1(b) are applied to the inputs. A high level is a binary 1and a low level is a binary 0. The least significant binary digit is Do. Do o D₁ 0- 200 ΚΩ www D₂ 0 100 ΚΩ www 50 ΚΩ www 25 ΚΩ D3 0 M 0 -0.25 -0.50 -0.75 -1.00 -1.25 -1.50 -1.75 -2.00 -2.25 -2.50 -2.75 -3.00 -3.25 -3.50 -3.75 (a) Vout (V) R₁ 10 ΚΩ o Vout +5 V Do 0 +5 V D₁ 0 +5 V 0 +5 V 0 D₂ D3 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 non (c) Figure 1 I 0000 0001 0010 0011 0100 0101 0110 0111 1000 1001 1010 1011 1100 1101 1110 1111 ||||| (b) Binary input