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S-a înregistrat în data de august 8, 2022
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Hussain N.

@hussainnawaz542

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$5 USD/oră
Steagul PAKISTAN
pakistan, pakistan
$5 USD/oră
Indisponibil
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Indisponibil
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Electrical Engineer

Hello, My name is Hussain Nawazl. I am an Electrical Engineer and a Professional Programmer and have experienced in C, C++, C# and Python Programming. I have active experience of more than 4 years while working with many businesses all over the world. I have completed 150+ Projects and interacting with 300+ Loyal Customers, I have always focused on the quality of the Work and my customer's satisfaction. I have developed many softwares and created new network automation for enterprises. Your Satisfaction is my Priority, Feel free to Contact. Best Regards Our expertise are: Proteus Labview Itspice Pspice Logisim Multisim EMU Keil Autocad Solid works Java C++ Python Opengl Webgl Labview: PIR (motion) sensor Ping sensor Sound and temperature sensor LDR Other popular sensors electrical and electronics projects Truth tables Network analysis Microprocessor Embedded systems K-mapping Signal and systems Electromagnetism digital logic design digital system design Why me? 4 years of experience On time deliver Quality assurance Monet back guarantee Efficient Coding Long term support Client Satisfaction Please contact me before placing an order. If you want to discuss ore about your project, message me and I am available 24/7 for you. Best Regards
Freelancer Wireless Engineers Pakistan

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Articole în portofoliu

According to research from the National Highway Traffic Safety Administration, almost one out of every 10 car accidents happen when a driver is switching lanes or merging. Many of these accidents are caused by blind spots. 
A blind spot is an area that you cannot see along the rear sides of your car. Dependingonn on how big your vehicle is, your blind spot may be small or large.
According to statistics compiled by the Insurance Institute for Highway Safety (IIHS), blind spot monitoring systems are effective.
The IIHS found that blind spot monitors lowered thincidencnt of lane-related collisions by 14 percent and reduced injuries during those types of accidents by 23 percent.

All vehicles have blind spot. There are areas or zones on either side of a vehicle that a driver cannot see when looking into the rear-view or side-view mirrors. Blind spots are why a driver should always turn their head and check for cars before changing lanes.  BSM (Blind Spot Monitoring) is an advanced driving
Blind Spot Detection System
To control the speed of DC-Motor using PID Controller in a closed loop system.
A PID controller is an instrument used in industrial control applications to regulate temperature, flow, pressure, speed and other process variables. PID (proportional integral derivative) controllers use a control loop feedback mechanism to control process variables and are the most accurate and stable controllers.
PID control is a well-established way of driving a system toward a target position or level. It's practically ubiquitous as a means of controlling temperature and finds application in myriad chemical and scientific processes as well as automation. PID control uses closed-loop control feedback to keep the actual output from a process as close to the target or setpoint output as possible.
DC-Motor Speed control using PID controller in closed-loop s
To control the speed of DC-Motor using PID Controller in a closed loop system.
A PID controller is an instrument used in industrial control applications to regulate temperature, flow, pressure, speed and other process variables. PID (proportional integral derivative) controllers use a control loop feedback mechanism to control process variables and are the most accurate and stable controllers.
PID control is a well-established way of driving a system toward a target position or level. It's practically ubiquitous as a means of controlling temperature and finds application in myriad chemical and scientific processes as well as automation. PID control uses closed-loop control feedback to keep the actual output from a process as close to the target or setpoint output as possible.
DC-Motor Speed control using PID controller in closed-loop s
To control the speed of DC-Motor using PID Controller in a closed loop system.
A PID controller is an instrument used in industrial control applications to regulate temperature, flow, pressure, speed and other process variables. PID (proportional integral derivative) controllers use a control loop feedback mechanism to control process variables and are the most accurate and stable controllers.
PID control is a well-established way of driving a system toward a target position or level. It's practically ubiquitous as a means of controlling temperature and finds application in myriad chemical and scientific processes as well as automation. PID control uses closed-loop control feedback to keep the actual output from a process as close to the target or setpoint output as possible.
DC-Motor Speed control using PID controller in closed-loop s
To control the speed of DC-Motor using PID Controller in a closed loop system.
A PID controller is an instrument used in industrial control applications to regulate temperature, flow, pressure, speed and other process variables. PID (proportional integral derivative) controllers use a control loop feedback mechanism to control process variables and are the most accurate and stable controllers.
PID control is a well-established way of driving a system toward a target position or level. It's practically ubiquitous as a means of controlling temperature and finds application in myriad chemical and scientific processes as well as automation. PID control uses closed-loop control feedback to keep the actual output from a process as close to the target or setpoint output as possible.
DC-Motor Speed control using PID controller in closed-loop s
Inverters are often needed at places where it is not possible to get AC supply from the Mains. An inverter circuit is used to convert the DC power to AC power. Inverters can be of two types True/pure sine wave inverters and quasi or modified inverters. These true /pure sine wave inverters are costly, while modified or quasi-inverters are inexpensive.
These modified inverters produce a square wave and these are not used to power delicate electronic equipment. Here, a simple voltage-driven inverter circuit using power transistors as switching devices is built, which converts a 12V DC signal to a single phase 220V AC.
The main purpose of the inverter is to convert DC voltage to AC voltage. Inverters are widely used in industrial equipment such as construction machinery, conveyors, printing presses, fans, and pumps. General-purpose inverters have achieved greater levels of performance and become smaller as their usage has become more widespread.
The apparatus doesn’t cost much and it’s com
12V DC TO 220V AC INVERTER
Inverters are often needed at places where it is not possible to get AC supply from the Mains. An inverter circuit is used to convert the DC power to AC power. Inverters can be of two types True/pure sine wave inverters and quasi or modified inverters. These true /pure sine wave inverters are costly, while modified or quasi-inverters are inexpensive.
These modified inverters produce a square wave and these are not used to power delicate electronic equipment. Here, a simple voltage-driven inverter circuit using power transistors as switching devices is built, which converts a 12V DC signal to a single phase 220V AC.
The main purpose of the inverter is to convert DC voltage to AC voltage. Inverters are widely used in industrial equipment such as construction machinery, conveyors, printing presses, fans, and pumps. General-purpose inverters have achieved greater levels of performance and become smaller as their usage has become more widespread.
The apparatus doesn’t cost much and it’s com
12V DC TO 220V AC INVERTER

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Electrical Engineering

COMSATS Institute of Information Technology, Pakistan 2017 – 2021
(4 ani)

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