Electrical Project Engineer
40+ Electrical Project Engineer Interview Questions and Answers
Q1. What is important factors in cable calculation? Types of communication used in Automation industry & its length limitations, What is difference between Analog input 4-20mA & analog input (0-10v). Dg synch contr...
read moreImportant factors in cable calculation, types of communication used in automation industry, difference between analog input 4-20mA & analog input (0-10v), DG synch control panel & its working philosophy, various types of starter used in control panel, testing of panel as an individual at site, ingress protection.
Cable calculation factors include voltage drop, current carrying capacity, and cable length.
Types of communication used in automation industry include Ethernet, Modbu...read more
Q2. For a load less than 20 kw in a 3 phase Distribution board what size of main incomer MCCB and what size of cable should be given to the Distribution board from the panel ??
For a load less than 20 kW in a 3 phase Distribution board, a main incomer MCCB of 32A and a cable size of 6mm should be given.
Main incomer MCCB size should be 32A for a load less than 20 kW in a 3 phase Distribution board
Cable size should be 6mm for the Distribution board from the panel
Electrical Project Engineer Interview Questions and Answers for Freshers
Q3. For under water lights and swimming pool lights what is the rating of ELCB in the swimming pool distribution board.
The rating of ELCB in the swimming pool distribution board for underwater lights and swimming pool lights should be at least 30mA.
The ELCB rating should be at least 30mA to provide protection against electric shock in wet conditions.
This is important for safety in swimming pools where the risk of electric shock is higher.
ELCBs with higher ratings such as 100mA or 300mA may not provide adequate protection in wet environments.
It is recommended to consult with a qualified electr...read more
Q4. For lighting circuits what type of wire size is installed in the Distribution board ??
The wire size installed in the Distribution board for lighting circuits is typically 1.5mm² or 2.5mm².
Typically, 1.5mm² or 2.5mm² wire sizes are installed in the Distribution board for lighting circuits.
The wire size is chosen based on the current rating and load requirements of the lighting circuit.
Proper wire sizing is crucial to ensure safety and prevent overheating in the electrical system.
Q5. For cooker unit in villas and flats what should be the MCB rating ??
The MCB rating for cooker unit in villas and flats should typically be around 32A.
The MCB rating for a cooker unit is usually 32A to handle the load of the cooker.
It is important to consider the power consumption of the cooker and any other appliances connected to the same circuit.
Consulting with an electrician or following local electrical codes can help determine the appropriate MCB rating.
Using a higher MCB rating than necessary can lead to safety hazards, while using a lo...read more
Q6. For Power circuit what should be the rating of ELCB and MCCB rating in Distribution board ???
The rating of ELCB and MCCB in a distribution board for power circuits should be based on the load requirements and safety regulations.
ELCB rating should be based on the maximum fault current that can occur in the circuit to ensure proper protection against electrical shocks.
MCCB rating should be selected based on the maximum current that the circuit can handle without tripping.
Consider the type of load connected to the circuit (e.g. motors, lighting, heating) when determinin...read more
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Q7. How many power sockets can be connected in a 1no ring main circuit in a Distribution board ??
The number of power sockets that can be connected in a 1no ring main circuit in a Distribution board depends on the load capacity and design of the circuit.
The number of power sockets will depend on the load capacity of the circuit.
Consider the power rating of each socket and the total load that the circuit can handle.
Consult electrical regulations and guidelines for maximum allowable load on a ring main circuit.
Factors such as wire gauge, circuit breaker rating, and safety c...read more
Q8. Traffic barrierr system required Fire Alrm System signal and how ??
Traffic barrier system can be integrated with Fire Alarm System to provide early warning and evacuation signals in case of fire.
Traffic barrier system can be equipped with fire alarm sensors to detect smoke or fire.
Once fire is detected, the barrier system can automatically open to allow for evacuation of vehicles and people.
The barrier system can also trigger alarms and flashing lights to alert nearby individuals of the fire.
Integration with Fire Alarm System ensures quick r...read more
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Q9. What are Site management and site issues ?
Site management involves overseeing the construction site and ensuring that the project is completed on time and within budget. Site issues refer to any problems that arise during the construction process.
Site management involves coordinating with contractors, managing resources, and ensuring compliance with safety regulations.
Site issues can include delays due to weather, unexpected construction challenges, or issues with permits and approvals.
Effective site management and p...read more
Q10. For SMoke Extract Fan Panel a shunt trip is required or not ??
Yes, a shunt trip is required for Smoke Extract Fan Panel.
A shunt trip is required for Smoke Extract Fan Panel to ensure the fan can be shut off remotely in case of emergency.
It is a safety feature that allows for quick deactivation of the fan in case of fire or smoke detection.
Without a shunt trip, there may be delays in shutting off the fan during an emergency situation.
Q11. Galvanised Cable tray and Cable trunking required earthing ??
Yes, galvanised cable tray and cable trunking should be earthed for safety reasons.
Galvanised cable tray and cable trunking should be earthed to prevent electric shock hazards.
Earthing helps in dissipating any fault currents that may occur in the system.
It also helps in protecting the equipment and personnel from potential electrical faults.
Proper earthing ensures the system meets safety standards and regulations.
Examples of earthing methods include connecting the tray or tru...read more
Q12. 1.33kv&11kv BOQ 2.Power transformer description 3.what CT/PT will do
The interview question is about 1.33kv&11kv BOQ, power transformer description, and the role of CT/PT.
BOQ for 1.33kv and 11kv involves preparing a bill of quantities for electrical equipment and materials required for the project.
Power transformer description includes its specifications, such as voltage rating, power rating, winding configuration, cooling system, etc.
CT/PT (Current Transformer/Potential Transformer) are used for measuring current and voltage respectively in h...read more
Q13. How you puts your efforts to develop and manage your electricity costing and savings.
I develop and manage electricity costing and savings by analyzing usage data, implementing energy-efficient solutions, and negotiating with suppliers.
Analyze usage data to identify areas of high consumption
Implement energy-efficient solutions such as LED lighting and smart thermostats
Negotiate with suppliers for better rates and contracts
Monitor and track energy usage to ensure savings are being achieved
Regularly review and update energy management strategies
Collaborate with ...read more
Q14. 4.how to find transformer is star connected or delta connected 5.APL/BPL/AGL material 6.what is ROW..
Answering questions related to electrical engineering
To find if a transformer is star or delta connected, check the connection of the primary and secondary windings
APL/BPL/AGL materials refer to Above Poverty Line/Below Poverty Line/Anti-Graffiti materials used in construction
ROW stands for Right of Way, which is the legal right to pass through a property or land
Q15. How much rating of Main incomer ACB previous plant?
The rating of the Main incomer ACB in the previous plant is typically determined based on the total load requirements of the plant.
Main incomer ACB rating is usually determined based on the total load of the plant
It is important to consider factors like peak load, future expansions, and safety margins when selecting the rating
For example, if the total load of the previous plant was 5000kW, the Main incomer ACB rating might be 6300A
Q16. Please tell me about distribution transformer and power transformer installation precaution..?
Precautions for installation of distribution and power transformers.
Ensure proper grounding and earthing
Ensure proper ventilation and cooling
Ensure proper alignment and leveling
Ensure proper cable and wire connections
Ensure proper labeling and identification
Ensure proper safety measures are taken during installation
Ensure proper testing and commissioning before energizing
Ensure proper maintenance and inspection after installation
Q17. What is the weigh feeder singal control diagram?
A weigh feeder signal control diagram is a schematic representation of the control system for a weigh feeder.
The diagram typically includes components such as sensors, transmitters, controllers, and actuators.
It shows how the signals from the sensors are processed by the controller to adjust the flow of material in the weigh feeder.
The control diagram may also include feedback loops to ensure accurate and consistent feeding.
Example: Sensors measure the weight of material on t...read more
Q18. types of Transformers , switch gear, cable
Transformers, switchgear, and cables are essential components of electrical systems.
Transformers are used to step up or step down voltage levels in electrical systems.
Switchgear is used to control and protect electrical equipment.
Cables are used to transmit electrical power and signals.
Types of transformers include power transformers, distribution transformers, and instrument transformers.
Types of switchgear include circuit breakers, fuses, and disconnect switches.
Types of ca...read more
Q19. Describe about Electrical flow ? from MV to LC
Electrical flow from MV to LC involves transmission of high voltage electricity to low voltage loads.
MV (medium voltage) refers to the distribution of electricity at a voltage level between 1 kV and 36 kV
LV (low voltage) refers to the distribution of electricity at a voltage level below 1 kV
Electrical flow involves the use of transformers to step down the voltage from MV to LV
The flow of electricity is controlled and monitored through switchgear and protection devices
Examples...read more
Q20. What is Electrical panels and tpye ?
Electrical panels are enclosures that contain electrical components and are used to distribute power to various circuits.
Electrical panels are also known as switchboards, distribution boards, or breaker panels.
They are typically made of metal and have doors that can be opened to access the components inside.
There are several types of electrical panels, including main breaker panels, subpanels, and load centers.
Main breaker panels are the primary distribution point for electri...read more
Q21. difference between electrical drive and mechanical drive
Electrical drive uses electricity to power a machine while mechanical drive uses physical components like gears and belts.
Electrical drive uses an electric motor to power a machine while mechanical drive uses physical components like gears and belts.
Electrical drive is more efficient and requires less maintenance than mechanical drive.
Examples of electrical drive include electric cars, elevators, and conveyor belts while examples of mechanical drive include bicycles, cars wit...read more
Q22. What is your special in your carriers?
I have specialized in project management and electrical design.
I have completed multiple successful projects within budget and on time.
I have expertise in designing electrical systems for commercial and residential buildings.
I have experience in managing teams and coordinating with clients and contractors.
I continuously update my knowledge and skills to stay up-to-date with the latest technologies and trends.
I have a strong focus on safety and quality assurance in all my proj...read more
Q23. What is zero export device in solar installation?
A zero export device in a solar installation is a device that prevents excess solar energy from being exported back to the grid.
A zero export device is typically used in situations where the grid cannot handle the additional power generated by the solar installation.
It ensures that the solar energy is consumed locally or stored in batteries instead of being exported.
Zero export devices can be programmed to limit the export of energy to a specific threshold.
These devices are c...read more
Q24. What is wtg and how can it generate power
WTG stands for Wind Turbine Generator. It generates power by converting wind energy into electrical energy.
WTG consists of blades that capture wind energy and spin a rotor connected to a generator
The generator converts mechanical energy from the rotor into electrical energy
The electrical energy is then transmitted through power lines for distribution
Examples of WTG include onshore and offshore wind farms
Q25. Control circuit diagram DOL Starter with PLC ?
A control circuit diagram for a Direct-On-Line (DOL) starter with PLC involves connecting the PLC to control the operation of the DOL starter.
The PLC is used to control the start and stop functions of the DOL starter.
Input signals from sensors or switches are sent to the PLC for processing.
The PLC then sends signals to the DOL starter to start or stop the motor.
The control circuit diagram will show the connections between the PLC, sensors, switches, and DOL starter.
Q26. What is transformer and there types.
A transformer is a device that transfers electrical energy between two or more circuits through electromagnetic induction.
Transformers are used to increase or decrease voltage levels in electrical circuits.
There are two main types of transformers: step-up transformers and step-down transformers.
Step-up transformers increase voltage levels, while step-down transformers decrease voltage levels.
Examples of transformers include power transformers used in electrical substations an...read more
Q27. What is Electrical system work?
Electrical system work involves designing, installing, and maintaining electrical systems for buildings, machinery, and equipment.
Designing electrical systems for buildings, machinery, and equipment
Installing electrical systems and ensuring they meet safety standards
Maintaining and repairing electrical systems to ensure they function properly
Working with other engineers and professionals to ensure electrical systems integrate with other systems
Examples include designing and i...read more
Q28. What is SFRA test on power transformer?
SFRA test is a diagnostic test performed on power transformers to assess their mechanical and electrical integrity.
SFRA stands for Sweep Frequency Response Analysis.
It is a non-intrusive test that measures the frequency response of a transformer to a swept sinusoidal input signal.
The test helps in identifying mechanical and electrical faults in the transformer windings.
SFRA test results can be compared with baseline measurements to detect changes or abnormalities.
It is useful...read more
Q29. What are the type of conductor?
Types of conductors include copper, aluminum, and silver.
Copper: most commonly used due to its high conductivity and corrosion resistance
Aluminum: lighter and cheaper than copper, but not as conductive
Silver: best conductor but expensive and not commonly used in electrical wiring
Q30. Full details in transformer Star delta connection Electrical insulator
Transformer is a device that transfers electrical energy between two or more circuits through electromagnetic induction. Star delta connection is a method used to connect three-phase electrical motors. Electrical insulators are materials that resist the flow of electric current.
Transformer: device that transfers electrical energy through electromagnetic induction
Star delta connection: method for connecting three-phase electrical motors
Electrical insulator: material that resis...read more
Q31. How Transformer work?
Transformers work on the principle of electromagnetic induction to transfer electrical energy from one circuit to another.
Transformers have two coils of wire, a primary coil and a secondary coil, wrapped around a magnetic core.
When an alternating current flows through the primary coil, it creates a magnetic field that induces a voltage in the secondary coil.
The voltage induced in the secondary coil is proportional to the ratio of the number of turns in the secondary coil to t...read more
Q32. What is power , current,Voltage etc
Power is the rate at which energy is transferred. Current is the flow of electric charge. Voltage is the electric potential difference.
Power is measured in watts and is calculated by multiplying voltage and current.
Current is measured in amperes and is the flow of electric charge through a conductor.
Voltage is measured in volts and is the electric potential difference between two points in a circuit.
Ohm's law relates power, current, and voltage: P = VI and V = IR.
Power can be...read more
Q33. What is motor and generator?
A motor is a device that converts electrical energy into mechanical energy, while a generator does the opposite.
Motors use electrical energy to create rotational motion, while generators use rotational motion to create electrical energy.
Motors are commonly used in appliances, vehicles, and industrial machinery, while generators are used in power plants and backup generators.
Both motors and generators use electromagnetic principles to function.
Motors and generators are often u...read more
Q34. What is Transformer and working?
A transformer is an electrical device that transfers electrical energy from one circuit to another through electromagnetic induction.
Transformers are used to increase or decrease the voltage of an alternating current (AC) power supply.
They work on the principle of electromagnetic induction, where a changing magnetic field induces a voltage in a coil of wire.
Transformers consist of two coils of wire, called the primary and secondary coils, wrapped around a magnetic core.
When a...read more
Q35. Quality process of work execution
Quality process of work execution involves ensuring that all work is completed to a high standard and meets the required specifications.
Establishing clear quality standards and procedures
Regularly monitoring and reviewing work to ensure compliance with standards
Providing training and support to staff to ensure they understand and can meet quality requirements
Using quality control tools and techniques such as inspections, testing, and audits
Addressing any issues or non-conform...read more
Q36. Difference between digital and analog signal
Digital signals are discrete, representing data as binary numbers, while analog signals are continuous, representing data as a continuous wave.
Digital signals use discrete values (0s and 1s), while analog signals use continuous values.
Digital signals are less prone to noise interference compared to analog signals.
Examples of digital signals include computer data, while examples of analog signals include audio signals.
Digital signals are easier to store and manipulate compared...read more
Q37. Difference between single phase and three phase
Single phase has one live wire and one neutral wire, while three phase has three live wires and one neutral wire.
Single phase has a sinusoidal waveform, while three phase has three sinusoidal waveforms with a phase difference of 120 degrees.
Single phase is commonly used in residential buildings for lighting and small appliances, while three phase is used in industrial applications for heavy machinery and equipment.
Single phase systems have lower power capacity compared to thr...read more
Q38. What is working principle of transformer
Transformer works on the principle of electromagnetic induction to transfer electrical energy between two or more circuits.
Transformers have two coils of wire, known as primary and secondary coils, which are wound around a core usually made of iron.
When an alternating current flows through the primary coil, it creates a changing magnetic field around the coil.
This changing magnetic field induces a voltage in the secondary coil, which results in the transfer of electrical ener...read more
Q39. Types of protection in substation
Substation protection includes overcurrent, earth fault, differential, distance, and backup protection.
Overcurrent protection is used to detect and isolate faults caused by excessive current flow.
Earth fault protection is used to detect and isolate faults caused by current leakage to earth.
Differential protection is used to detect and isolate faults between two parts of a system.
Distance protection is used to detect and isolate faults based on the distance from the protection...read more
Q40. What is switchgear Protection?
Switchgear protection is a system designed to protect electrical equipment from faults and abnormal conditions.
Switchgear protection involves detecting faults and abnormal conditions in electrical equipment.
It includes devices such as relays, circuit breakers, and fuses to isolate faulty equipment.
The protection system ensures the safety of the electrical network and prevents damage to equipment.
Examples of switchgear protection include overcurrent protection, earth fault pro...read more
Q41. 1kva how many amps required
The number of amps required for 1kVA depends on the voltage.
The formula to calculate amps is: Amps = kVA / Voltage
For example, if the voltage is 120V, then the amps required for 1kVA would be 8.33A
If the voltage is 240V, then the amps required for 1kVA would be 4.17A
Q42. How to load calculation
Load calculation is the process of determining the electrical load requirements for a project.
Identify the electrical devices and equipment that will be used in the project
Determine the power requirements (in watts) for each device
Calculate the total power demand by summing up the power requirements of all devices
Consider factors like diversity factor and demand factor to account for variations in usage
Ensure that the electrical system can handle the calculated load without o...read more
Q43. all smart City Device configuration
Smart City Device configuration involves setting up various sensors, communication protocols, and data management systems to enable efficient city operations.
Configure sensors for monitoring traffic flow, air quality, noise levels, etc.
Implement communication protocols such as LoRaWAN, NB-IoT, or WiFi for data transmission.
Set up data management systems like cloud platforms or edge computing for processing and analyzing collected data.
Q44. selection of contactor
The selection of a contactor depends on the load type, voltage, current, and duty cycle.
Consider the type of load (inductive, resistive, capacitive)
Calculate the voltage and current ratings of the load
Determine the duty cycle of the load (continuous, intermittent)
Select a contactor with appropriate voltage, current, and duty cycle ratings
Consider additional features like overload protection and coil voltage
Q45. type 2 co ordination chart
Type 2 coordination chart is used in electrical engineering to show the coordination between protective devices.
Type 2 coordination chart shows the coordination between protective devices in an electrical system.
It helps in ensuring that the protective devices operate in the correct sequence during a fault.
The chart typically includes time-current curves for different protective devices.
It is important for preventing unnecessary tripping of protective devices and ensuring pro...read more
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