SOFT DRINKS BEVERAGE MIXER SYSTEM: Flavor Concentrates Dissolved sugar m3 m2 Solenoid Valve 4 3% Flavor Concentrates 12% Dissolved sugar 85% Reverse osmosis water Solenoid Valve 1 Solenoid Valve 3 Level Sensor 1 Temperature Sensor Solenoid Valve 2 ultrasonic sensor 2% Reverse osmosis water, Motor m1 will on m1 Single Tank Solenoid Valve 5 Heater Reverse osmosis water Inlet Level Sensor 2 Pump CONTROL PANEL F PR 2 START STOP HESET BUZZER
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- When the triac is in the OFF state: Output module terminal strip Triac switch LED output L1 status indicator Fuse Optical isolator, Field wiring Digital logic circuit Load L2 Internal module circuit Simplified diagram for a single output of a discrete AC output module. O the rated nominal current flows through the lamp O the rated surge current flows through the lamp O zero current always flows through the load small leakage current may flow through the load aInterpret the circuit by answering the guide questions, this is a simple power supply with full-wave bridge type rectifier. Define the following: ac source, fuse, SPST switch, transformer, full- wave rectifier, capacitor as a filter, load (resistive load). b. How does this power supply circuit work? а. FULL-WAVE BRIDE RECTIFIER TRANSFORMER ON/OFF SWITCH FUSE FILTER DC OUTPUT VOLTAGE AC LOAD SOURCESAM X e single phase half wave controlled rectifier has transformer secondary voltage of 230V, at 50 Hz. The load resistance R=102. If the delay angle of the thyristor a =n/2, calculate a)The rectification efficiency he form factor c)The voltage ripple factor d)The transformer utilization factor e)The peak reverse voltage of the thyristor :uopnlos
- Q1 A) Three phase half-wave controlled rectifier is operated from 460 V, 50 Hz supply and the load resistance is 52. The delay angle is a=20° .Calculate the following: (a) The efficiency, (b) Ripple factor. (c) Transformer utilization factor and (d) Peak inverse voltage (PIV) of each thyristor. B) Solve the part A if the firing angle a-65°.Please dont copy from other sources Discuss the importance of electrical isolation when interfacing microcontrollers to higher voltage inductive circuits (motors). Include detail of how electrical isolation can be achieved to protect the microcontroller and motor.a. Description of lamp-ballast system b. Choose the power rating of T8 fluorescent lamp to be used in the system c. The operation of lamp-ballast circuit d. The modelling of the lamp-ballast by an equivalent circuit e. The design of inductance of the choke of the lamp-ballast system f. Determine the supply current and power factor g. Decide the desire power factor to be achieved and state the reason for the chosen of that value of power factor h. The design of size of capacitor for power factor correction. i. Team members information
- Q2):- A single-phase fully controlled bridge is supplied at 120V. Determine the mean load voltage for firing delay angles of 0°, 45°, and 90°, assuming continuous load current. Allow a thyristor volt-drop of 1.5V. Determine also the required peak voltage of each thyristor.Design a ladder program to run the material mixing system according to the following information: 1- When the start push button I0.0 is pressed, the pump (PUMP1 Q0.0) works for five seconds and then stops. 2- After that, the pump (PUMP2 Q0.1) runs for three seconds and then stops. 3- After that the pump (Mixer Motor Q0.2) works for 60 sec and then stops. 4- After that, the control valve (drian valve Q0.3) is opened, the pump (PUMP3 Q0.4) works for ten seconds. 5- The stop push button I0.1 is used to stop the system.I need fast plz