6.2 Include a synchronous clear input to the register circuit of Fig. 6.2. The modified register will have a parallel load capability and a synchronous clear capability. The register is cleared synchronously when the clock goes through a positive transition and the clear input is equal to 1. (HDL—see Problem 6.35(a), (b)) Load 12 13 Clock D D D D D D D D D D D C C C Ao A₁ A₂ C A3
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- c) When considering thyristor switching why is Isolated Gate Control needed ? d) The filtered rectifier output is now feeds the regulator circuit shown in figure Q6b. i) Name the type of regulator shown in the shaded area and briefly describe its operation. ii) If the voltage, VL, that appears across the potential divider is regulated to 5V what size zener diode is used? The entire circuit uses the op-amp comparator to iii) allow the limit on the maximum load current to be varied. Explain the operation of the circuit and identify the maximum load current, IL , allowed if the potentiometer's output is 4V and Rx is 20 ?6.18 A TDM link has 20 signal channels and each channel is sampled at 8 kHz. Each sample is represented by 7 bits and contains an additional bit for synchronization. The total bit rate for the TDM link is (a) 1128 kbps (c) 1280 kbps (b) 1180 kbps (d) 128 Mbps onShow the equation used, and the tabulated list of points in your script. On graph paper draw the maximum and minimum characteristics for the FET used in figure 6.29, Showing associated calculations in the script, draw the bias line for the source resistance R,on the 4.1 given that: Ipss (maæ) Vese = 14 mA ; Ipss (min) Voso (min) 6 mA. - - 4 V. - -9V GSo (max) Calculate Ve and clearly mark it on the graph. 4,2 4.3 graph. From the information provided by your graph, determine: ) the maximum spread of Ip ; (ii) the maximum and minimum expected values for Vog . Determine the value of the mutual conductance of the FET at the quiescent point from the 4.4 4.5 maximum characteristic curve. Draw the small-signal ac model of the circuit, assuming the capacitor reactances are all neglieible Label all component values, terminals and signals. 4.6 4.7 Conduct a complete ac analysis of the circuit so as to find: (i) input impedance; (ii) output impedance; (iii) current gain; (iv) voltage gain. +15 V…
- 6-24 For a single-tone modulating signal of 5 kHz and a carrier frequency of 600 kHz, list the frequencies appearing in the spectra of the following modulated signals: (a) DSB, (b) conventional AM, (c) SSB-LSB, and (d) SSB-USB.Complete the phrase! The error of a measurement system depends on the non-ideal characteristics of every element in the system. Using calibration techniques we can identify which element in the system have the most dominant non-ideal behavior. We can than devise compensation strategies for t6hese elements which should produce significant reductions in the overall system error. The methods are named .....Mention 4 factors out of many factors that must be considered and become necessary data in the design of the power transfer system, explain.
- a. In AC, how are the capacitors treated? b. In AC, how are DC sources treated? c. What is the amplifier configuration of Figure 4? d. What is the expected phase shift of the sinusoidal input at the output side? e. What is Zi across RG, the gate resistor? f. It is the IC in its smallest form. g. The most commonly used metal as interconnect of the chip to external peipheral. h. How is pin 1 of the chip determined? i. An IC package similar to a DIP but with the pins bent outward. j. Which sensors are packed as IC?Sketch each of the following special digital sequences: a. 58 (n) b. -28 (n-5) c. -5u(n) d. 5u(n-2)Q2 EMI is a very important aspect to be considered while designing a switching power supply. Discuss with examples what considerations at the circuit level and PCB level design to avoid failing EMC test. Shed some light also on the EMC test. а. What is EMI and EMC and how to conduct the test What considerations to be taken into account while designing a PCB for a switching power supply with examples b.
- 11-1) similar to Lathi & Ding, Prob. P.6.7-5 Data at a bit rate R, must be transmitted using either binary NRZ polar signaling or 8-ary PAM NRZ polar signaling. (a) By what factor will the symbol rate be reduced in the 8-PAM case? (b) By what factor will bandwidth required from the lowpass channel be reduced in the 8-PAM case? (c) Assuming the minimum spacing between pulse levels must be the same in both cases, by what factor will the average power be increased in the 8-PAM case? [Hint: take the pulse amplitudes to be ±A in the binary case, and ±4, +34, +54, +7A, and recall that scaling pulse amplitude by a factor k scales the pulse energy by a factor k². Assume that the data is random, so that all 8 levels are equally likely, and that the same pulse shape is used in both cases.] Warning: Solutions to the textbook problem that are posted online are mostly wrong. Work it out for yourself.Determine:(a) Zin(b) Zo(c) Io if Vs=0.5mVp-p(d) Avs=Vo/VsUsing Verilog continuous assignment statements or VHDL signal assignment statements, write a description of the circuit shown in