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- b[n] - b[n-1] = a[n] -2a[n-1] + a[n-2] The above expression describes the output,b[n] & input,a[n] of a certain discrete time system. Assumption: Input, a[n] to the system is described by a[n] =5δ[n] i. Make a sketch of the output,b[n] & input,a[n] for n= -1 : 5 ii. Determine the output,b[n] for n= -1 : 52. Find vo(t) in the circuit shown in Figure 2 by using Laplace Transformation and node currents while ideal op amp operates within its linear range and vg = 24u(t) mV. 20 nF HE 10 kΩ 20 nF 20 k12 HE + + + v.(t) Figure 2MechatronixOne is a manufacturer of an industrial and toy robots. They are in the planning stage to develop a prototype AI robot that will be supplied by a 12V DC with Izm = 20mA. This AI robot as they envision has a capability to understand little English command. Their problem is how to design an RC filtered power supply that can be used in their prototype AI robot which has a load range of 250 Ohms to 1.25k Ohms and since this is just a prototype it must be wired to the 240V 60Hz peak AC supply in their Laboratory. They ask the VoltageMaker Company to ship them 20pcs. of 12V dc power supply and it must be included in the data sheet the load current in rms and peak, the PIV, the power range absorbed by the load, the ratio of the transformer, and the secondary rms voltage of the power supply. The power supply must be bridge type. Considering that you are a member of that team. What is your design?
- Question 2 Complete the following unfinished MATLAB code. % DC motor transfer function G1 = tf([0.8 1.6],[1 4 7.2]); % Cable reel transfer function G2 = tf([25],[1 1]); % System transfer fuction G=G1*G2 %% PID - Reaction curve method % Compute the step response of G and save it in [Y2,T2] [Y2,T2] = step(Tcl); % Compute the derivative of the step response % Finds the inflection point [M,I] % Time that the inflection point was observed % Magnitude of the step reponse at the inflection point % Gradient of the step reponse at the time of the inflection point % Find the X and Y intercepts % Compute the parameters for ZN PID tuning, i.e. "R" and "tau" % Obtain the PID gains Kp, Ti, Td and N using the ZN tuning rules for the Reaction Curve method. % Fine tune the gains Kp, Ti and Td to satisfy the control requirements (Peak time, overshoot, steady-state error) % Obtain the transfer function of the PID controller. Use the command "pidstd". %…Using matlab solve the following %% PROGRAM ON RESPONSE OF LTI SYSTEMS TO ARBITRARY INPUTS x = input('ENTER YOUR INPUT SEQUENCE: ');h = input('ENTER YOUR IMPULSE RESPONSE SEQUENCE: ');n=-2:1;m=-1:2;ybegin = n(1) + m(1);yend= n(length(x)) + m(length(h));y1=ybegin:yend;y=conv(x,h);figure(1);subplot(3,1,1); stem(n,x);xlabel('N -->');ylabel('Amplitude');title('Input Sequence');subplot(3,1,2); stem(m,h);xlabel('N -->');ylabel('Amplitude');title('Impulse response Sequence');subplot(3,1,3); stem(y1,y);xlabel('N -->');ylabel('Amplitude');title('response');disp('THE RESPONSE IS: ');disp(y); The input should be =[9 11 4 20]The IMPULSE RESPONSE should be [ 1 2 3 40]MechatronixOne is a manufacturer of an industrial and toy robots. They are in the planning stage to develop a prototype AI robot for industry that will be supplied by a 12V DC with Izm = 20mA. This AI robot as they envision has a capability to understand litthe English command. Their problem is how to design an RC filtered power supply that can be used in their prototype AI robot which has a load range of 250 ohms to 1.25 kilo-ohms and since this is just a prototype it must be wired to the 240V 60Hz peak AC supply in their laboratory. They ask the VoltageMaker Company to ship them 20 pcs of 12V DC power supply and it must be included in the data sheet of load current in rms and peak, the PIV, the power range absorbed by the load, the ratio of the transformer, and the secondary rms voltage of the power supply. The power supply must be in a bridge type. Considering that you are a member of that team, what is your design? please answer or draw it clearly with labels. Thank you. this…
- MechatronixOne is a manufacturer of an industrial and toy robots. They are in the planning stage to develop a prototype AI robot for industry that will be supplied by a 12V dc. This AI robot as they envision has a capability to understand little English command and can interpret it. Their problem is how to design an RC filtered power supply that can be used in their prototype AI robot which has a load range of 250Ω to 1.25k Ω and since this is just a prototype it must be wired to the 220V peak ac supply in their laboratory. They ask the VoltageMaker Company to ship them 20 pcs of 12V dc power supply and it must be included in the data sheet the load current in rms and peak, the PIV, the power range absorbed by the load, the ratio of the transformer, and the secondary rms voltage of the power supply. The power supply must be in a bridge type. But sad to say the company is not producing this type of power supply. The management of VoltageMaker tasks their design engineer team to develop…Please answer ASAP, I'll give an upvote. Thank you. The circuit has been running for a long time prior to the switch closing at t = 0. The supply voltage is 100(√2)sin(100t) V. The complete response of the iL(t) is of the form: iL(t) = A1e(-A2t) + B1sin(100t+B2) Amp where A1, A2, B1 and B2 are unknown. Find the values of B1 and B2 in the forced response component of iL(t). Provide the unit of B2.The op amp circuit shown is ideal. The values for the circuit are as follows:+VCC = 12.0V, -VCC = -10.0V, Ra = 9.00Ω, Rb = 30.0Ω, Rc = 42.0Ω, Rd = 4.00Ω, Re = 32.0Ω. Write a KCL equation at node n. Solve for the output voltage vout as a function of the inputs va and vb. If input va=2.00V and output vout =10.0V, then solve for input vb. If inputs va=8.00V and vb=5.00V, then solve for the power absorbed by Rb. If input va=4.00V, then solve for the range of input vb such that the amplifier does not saturate.
- Digital Signals and Systems Find the unit-impulse response for each of the following linear systems. a. y(n) = 0.5x(n) – 0.5x(n - 2); for n ≥ 0, x( - 2) = 0, x( -1) = 0 b. y(n) = 0.75y(n - 1) + x(n); for n ≥ 0, y( - 1) = 0 c. y(n) = -0.8y(n - 1) + x(n - 1); for n ≥ 0, x( - 1) = 0, y( -1) = 0Q2. The step response at t > 0 of a series RLC circuit is observed to be vc(t) = 15 – 15 e -1000t cos1000t volts i,(t) = 45 e-100ot cos1000t + 45 e-1000t sin 1000t mA a) What are the values of R, L, and C? b) What is the circuit characteristic equation? c) What is the voltage across the resistor?If you onow that the following system is combination of multiple impulses the, decompe the system itno tis weigthed sum of impulses