Shakir Shah – From DIYguru’s
Introduction: Shakir Shah’s Journey from Nano 9M Program to Battery Engineer at Nexzu Mobility Shakir Shah,
Read postAdvance Your Embedded Skills with curriculum designed by industry & DIYguru top notch Embedded Engineers with KITs delivered at door step, making you learn the DIY way used by more than 3500+ Embeded Engineers across mobility industry.
Main Features
From coding and simulation to real-time testing and deployment — DIYguru’s Embedded Nanodegree gives you complete, hands-on control over the tools and workflows that power next-generation electric vehicles.
Develop and test embedded systems using real-world development environments like STM32CubeIDE, Keil, and MATLAB-Simulink. Experience smooth integration between simulation and hardware for faster prototyping and debugging.
Visualize live sensor data, CAN communication, and control loop responses with intuitive dashboards and data logging interfaces. Analyze how your embedded code behaves in real hardware conditions.
Leverage automated test rigs and simulation frameworks to validate ECU firmware, battery management algorithms, and motor control strategies. Gain confidence in your designs before physical deployment.
Whether you’re new to microcontrollers or advancing toward automotive-grade ECU design, our flexible nanodegree structure lets you learn, experiment, and specialize at your own pace through guided lab modules.
Get 1:1 mentor guidance, project feedback, and round-the-clock technical assistance to troubleshoot your hardware and software issues. Our support team ensures your learning experience stays on track from start to certification.
To ensure that the firmware development learning goes alongwith the live classes, we deliver the kit at your doorstep.
Software Tools
Gain hands-on proficiency with the most widely used embedded software tools in the EV industry. The DIYguru Embedded Nanodegree equips you to design, simulate, and deploy real-time control systems using ARM Cortex-based microcontrollers — the foundation of modern Electric Vehicle ECUs. Learn end-to-end development workflows from firmware programming and circuit simulation to model-based design and data analytics, ensuring you’re job-ready for embedded engineering roles in automotive R&D and EV manufacturing.
Master low-level programming for microcontrollers using Embedded C, covering memory management, I/O operations, and real-time execution for EV control systems.
Build and simulate embedded applications using Arduino IDE, focusing on motor control, sensor data acquisition, and CAN communication for EV prototypes.
Simulate embedded circuits and test firmware using Proteus before hardware implementation. Ideal for debugging EV control boards and microcontroller-based modules.
Develop firmware for STM32 microcontrollers—the core of modern EV ECUs. Learn driver programming, communication protocols, and real-time performance tuning.
Use MATLAB for algorithm development, control logic simulation, and battery modeling. Apply analytical tools to design efficient EV powertrain and BMS systems.
Design, simulate, and validate EV control algorithms with Simulink, connecting block-level models to real-time embedded systems for testing and deployment.
Perform Quantized State System (QSS)-based simulations to analyze EV system dynamics, improve computation efficiency, and model real-time behavior under load.
Prototype EV-related electronic circuits virtually using Tinkercad before physical assembly. Ideal for rapid testing of motor driver, sensor, and control layouts.
Use Keil IDE to compile, debug, and optimize ARM Cortex firmware for EV applications. Learn register-level programming and performance profiling for embedded ECUs.
Curriculum
Our DIY curriculum is designed to help embedded companies solve today’s biggest challenges.
Gain a complete understanding of EV fundamentals — ecosystem, architecture, and component integration. Learn about vehicle electrification, charging infrastructure, battery systems, and global EV policies driving e-mobility.
Master numerical calculations, hybrid system design, and heavy-vehicle electrification. Understand EV safety, powertrain sizing, and high-voltage regulatory standards shaping advanced EV manufacturing.
Understand power electronics, semiconductor devices, and control circuits crucial to EV systems. Design and simulate circuits using Proteus and Arduino for motor control and charging converters.
Develop embedded systems using 8051 microcontrollers, Embedded-C, and Arduino. Work on communication protocols (UART, SPI, I2C, CAN) and build real-time hardware simulations for EV control.
Build advanced embedded applications using STM32 microcontrollers and ARM Cortex architectures. Practice ADC, UART, PWM, and motor control through real-time simulations and hardware testing.
Learn in-depth communication protocols — CAN, I2C, SPI, EEPROM, and Bluetooth — for automotive systems. Implement real-time data exchange in embedded platforms.
To help engineering students and professionals improve their spoken English, technical communication, and presentation confidence for interviews, meetings, and workplace interactions.
To prepare students for technical and HR interviews, resume building, online assessments, and professional workplace readiness — specifically for roles in EV, Embedded Systems, and Engineering domains.
Build and test real EV systems — from motor drives to battery packs — using industry-grade kits, tools, and test benches. Gain practical experience in wiring, electronics, embedded control, and diagnostics.
Our philosophy is simple — you get to have a team of diverse, passionate people who are willing to change the future of education in mobility industry and empowers you to do your best work.
Certifications
DIYguru certifications validate hands-on competence in Electric Vehicle technology and digital engineering. Each program blends project-based learning with industry standards, ensuring graduates demonstrate real-world skills aligned with OEMs and Tier-1 suppliers.
DIYguru is recognized under ASDC, India’s sector skill council for the automotive industry, ensuring every certified learner meets national skill standards. The certification signifies employability in EV design, diagnostics, and service roles aligned with India’s automotive skilling framework.
DIYguru programs are listed on AICTE’s National Educational Alliance for Technology (NEAT 3.0), a Government of India initiative that recognizes quality ed-tech platforms driving employability in emerging technologies.
DIYguru’s flagship Postgraduate Certification in Electric Vehicle Technology is co-certified by EICT - IIT Guwahati, ensuring every module meets the academic rigor and innovation standards of one of India’s premier engineering institutions.
DIYguru’s EV programs are officially reviewed and certified by Tata Technologies, a global leader in product engineering and digital transformation for OEMs and Tier-1 suppliers.
The DIYguru Post Graduate Program in Electric Vehicle Technology is designed for learners who want to transform their technical foundation into a career in E-Mobility, EV Design, and Advanced Automotive Engineering.
Journey
emobility.careers is DIYguru’s exclusive placement engine — connecting Nanodegree Program students with top recruiters in the EV and e-mobility ecosystem, ensuring every learner moves from classroom to career with confidence.
Get a skill-readiness score based on your course performance, projects, and industry assessments. This helps you understand your strengths and bridge gaps before you face interviews.
Your DIYguru projects, certifications, and test scores are automatically integrated into a verified digital profile. Employers can see your technical depth and practical work at a glance.
Track your applications with EV companies, schedule interviews, and receive updates — all within a single dashboard. No lost emails, no missed chances.
Every student profile is pre-validated and recommended only to matched roles, ensuring companies hire confidently and you stand out from the crowd.
emobility.careers is trusted and used by over 110+ future mobility companies
"DIYguru trained our teams at Bosch in 2019, right at the start of EV adoption in India, delivering far above our expectations. Since then, they have remained a trusted partner, supporting our employees with both LMS access and in-person training across EV domains."
"DIYguru graduates come with a hands-on understanding of EV systems — not just theoretical knowledge. They’re able to contribute from day one to our battery testing and pack assembly operations."
“We’ve been consistently impressed by DIYguru-trained engineers. Their grasp on battery design, EV service, repair and diagnostics helps us accelerate product deployment and reduce production time.”
“What stands out is DIYguru’s focus on simulation and hardware validation. The engineers we’ve hired adapt quickly to startup environments — confident with MATLAB, ANSYS, and embedded toolchains.” Rajat Kapoor
“The EV industry needs engineers who can think both technically and systemically — DIYguru graduates bring that balance. Their familiarity with powertrain integration and BMS testing has been a real asset.”
“DIYguru’s placement ecosystem delivers candidates who understand the complete EV lifecycle — from design and validation to service diagnostics. That readiness is what the industry truly needs right now.”
“The engineers we’ve recruited from DIYguru demonstrate excellent command over EV design tools, motor controllers, and safety protocols. Their practical exposure sets them apart from regular graduates.”
Introduction: Shakir Shah’s Journey from Nano 9M Program to Battery Engineer at Nexzu Mobility Shakir Shah,
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Introduction: Aman’s Journey from Quality Executive to Quality Advisor in the EV Industry Aman Das’s transition
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Background Nitin Agarwal, a Mechanical Design Engineer from Najibabad, Uttar Pradesh, has always been passionate about
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Background Arti Soni, an Electrical and Electronics Engineer from Pune, India, always had a passion for
Read post"At Infineon, my focus is on advancing power electronics for electric mobility. The training I undertook at DIYguru deepened my understanding of system-level applications and gave me frameworks I could directly connect to our innovation work."
"The EV program at DIYguru strengthened my knowledge of control systems and their application in electric powertrains. It has been directly beneficial to my role at Cummins in advancing EV solutions."
"The EV Controls modules at DIYguru gave me clarity on inverter–motor interaction, torque control, and drive cycle efficiency. The structured projects mirrored real automotive use cases, which I could directly relate to my work at General Motors."
"DIYguru’s EV program provided me with a clear understanding of emerging technologies and industry trends. It has been instrumental in shaping my research and strategy work at Suzuki in the electric mobility space."
"In my work on EV battery management systems at Mercedes-Benz, I needed both depth in cell balancing strategies and clarity on integration concepts. The training at DIYguru addressed these areas with precision, adding real value to my R&D responsibilities."
"Working on electrified platforms in construction and forestry equipment demands clarity on high-voltage safety, diagnostics, and drivetrain integration. The training at DIYguru helped me bridge the gap between conventional machinery and emerging EV systems, aligning directly with John Deere’s move into hybrid and electric solutions."
"Working on EV integration projects at Hydro One required a solid understanding of charging infrastructure, grid load balancing, and V2G systems. The training I took from DIYguru bridged these areas with practical case studies, making it easier to translate concepts into real project execution."
"The EV Powertrain Integration Program at DIYguru provided me with deep insights into system-level design and practical integration. It has been highly valuable for my work in new product development at Exide"
"The Solar Integrated EV program at DIYguru gave me a strong foundation in combining renewable energy with electric mobility. The concepts and practical insights have been directly useful in my engineering role at L&T Defence."
"DIYguru transformed my career in just six months. Their comprehensive EV & Embedded Systems Nano degree equipped me with essential skills, leading to a prestigious job at Sandip University.
I’m grateful for the life-changing education and support."
"I have been a student of DIYguru PG Program of EV Technology and DIYguru has helped me in transforming my journey, consistently exceed my expectations.
Pretty good experience at hardware-enabled workshop because as a mechanical engineer, we understood the electrical part very easily."
"The knowledge and support I received from DIYguru have been invaluable. They have a deep understanding of EV and have helped me navigate complex career path with ease.
Overall DIYguru training program is very good initiative to developed better practice understanding."
Case Study
DIYguru partnered with HL Mando to deliver a comprehensive Battery Management Systems (BMS) training program, aimed
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The training spanned a total of three months, combining online and offline sessions. Each module included
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DIYguru, in collaboration with L&T Edutech, has established E-Mobility Centers of Excellence in educational institutions across
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In a groundbreaking initiative, DIYguru and Tadpole Projects, incubated at IIT Delhi, developed three innovative training
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DIYguru, in collaboration with EVI Technologies and under the mentorship of Dr. B.K. Panigrahi from IIT
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This comprehensive program covered key modules including EV basics, battery technology, electric motors, power electronics, vehicle
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The program targeted ITI students, particularly those in urban areas and Bangalore. The initiative aimed to
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The program catered to a diverse group of students from various engineering disciplines, enrolled through Internshala's
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Objectives: To provide comprehensive knowledge of hydrogen fuel cell technology. To equip participants with practical skills
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The EV training program provided by DIYguru and TCS is a comprehensive program that covers all
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Objectives: Equip veterans with the necessary skills for a successful transition into the EV industry. Provide
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The training program conducted by DIYguru enabled the engineers at Padmini VNA to gain in-depth knowledge
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The hands-on workshops were held at Honda Car India's premises, ensuring that the participants could apply
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The training program was meticulously designed to cover various aspects of Fuel Cell Technology, ensuring a
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This collaboration between DIYguru and Greaves Cotton - Ampere Electric exemplifies DIYguru's dedication to providing industry-specific
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This training initiative between DIYguru and DTICI has significantly enhanced the technical capabilities of DTICI’s team,
Read case study| Feature / USP | DIYguru | Other Platforms |
|---|---|---|
|
Industry-aligned curriculum Partner-backed Designed with real EV workforce upskilling at Hyundai, Bosch, L&T, Daimler, Sonalika, John Deere & Eaton. (See Case Studies section) |
Verified with partners | Varies; often generic |
| Hands-on labs & workshops with 3 Weeks access to 4-Wheeler Hardware & Diagnostic Labs (ev.care) Access available in Delhi • Pune • Malaysia • Saudi Arabia • Germany. |
Real hardware rigs | Limited simulators |
|
Placement engine & employer network with access to eMobility.careers dedicated job portal Portfolio, interview prep, role mapping, referrals with exclusive, EV-focused listings with role-skill mapping and recruiter access. |
EV-specific portal | Generic boards |
|
Option to choose from Government & industry certification pathways ASDC (Govt. of India) • NEAT AICTE (Ministry of Education) • IIT (Jammu/Guwahati) • TATA Technologies. |
Multiple pathways | Limited/none |
| Hybrid learning (Live + Self-paced + Hands on + Mentor hours from IITs & TATA Technologies) | Structured pathway | Video-only often |
| Certification tracks (M.Tech. > PG > Nano > Micro-credentials) | Multiple levels | Single level |
| Employer-ready portfolio, english communication classes & viva prep Templates, rubrics, code review, mock interviews day. |
Included | Occasional |
|
Embedded kit delivery to your doorstep with Capstone on real EV datasets 20+ guided experiments on batteries, chargers, sensing, and control. |
20+ experiments included | Limited kits |
| Corporate collaboration & real tools exposure through Mentor feedback loops & doubt clearing session with instant support through whatsapp groups | one to one | Community only |
| Support for working professionals (weekend cohorts, bridge modules)with outcome mapping: role-based skill tracks (BMS, Motor, EVSE, Thermal, Data) | Structured | Irregular |
| Ethics, safety & compliance embedded (ISO 26262, HV safety, AIS/BIS awareness) | Integrated | Minimal |
| Transparent skill diagnostics & KPIs with outcomes (projects → roles → salaries) | Mapped | Rare |
Note: “Other Platforms” is a generalized comparison. Actual availability may differ per provider.
The DIYguru Embedded Systems Nanodegree is a specialized 6-month industry-driven program designed to provide hands-on experience in microcontrollers, firmware development, embedded C programming, communication protocols (CAN, I2C, SPI), and real-world project integration for automotive and EV applications.
The program is open to engineering students, graduates, and professionals from Electronics, Electrical, Instrumentation, or Computer Science backgrounds who wish to upskill in embedded system design and applications in the EV sector.
Upon completion, you’ll receive a DIYguru Nanodegree Certificate co-branded with industry partners like Tata Technologies & IITs depending on the addon certification, validating your practical skills and readiness for embedded system and EV roles.
The course runs for 6 months and follows a structured learning path with live instructor-led sessions, self-paced video modules, weekly quizzes, and capstone projects focusing on STM32 microcontrollers and automotive-grade applications.
You’ll learn: Embedded C programming following MISRA standards ARM Cortex-M architecture Communication interfaces: CAN, SPI, I2C, UART RTOS basics and task scheduling STM32 development & debugging Integration with sensors and actuators Battery Management System (BMS) interface fundamentals
Yes. Every module includes hardware-based labs and simulations using STM32 boards and diagnostic tools. Learners also complete a capstone project integrating sensors and communication protocols into a real-world embedded application.
Absolutely. DIYguru provides placement assistance, career mentorship, and interview preparation. Students are also matched with hiring partners in the EV and embedded systems domains through DIYguru’s placement cell.
Graduates can pursue roles such as: Embedded Systems Engineer Firmware Developer Automotive Embedded Engineer EV Systems Integrator IoT Hardware Engineer You’ll be job-ready for positions in automotive, robotics, and IoT industries.
Yes. The Nanodegree is designed for flexibility with weekend live classes and self-paced recordings, making it ideal for working professionals looking to transition or upskill in embedded systems and automotive electronics.
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