EIP in Lithium-ion Battery Design and Development (LIBDD)
India's first comprehensive and specialised EIP Level 2 certification on Lithium-ion Battery Pack Design and Development for Electric Vehicle applications which are comprised of various global benchmarking of batteries, software and hardware tools for design, development, packaging and integration. Best recommended for professionals and students.
Level : 3 6 Months Domain : Battery
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Key Highlights
  • EV industry most recommended certification course in Battery specialisation
  • Become unique in skills, knowledge and recognition among the competition
  • Aid your industry level professional exposure with industry graded projects
  • Weekly LIVE doubt resolution session by experts
  • Pay fee in easy EMI at zero cost
  • EV industry most recommended certification course in Battery specialisation
  • Become unique in skills, knowledge and recognition among the competition
  • Aid your industry level professional exposure with industry graded projects
  • Weekly LIVE doubt resolution session by experts
  • Pay fee in easy EMI at zero cost
  • TOP SKILLS YOU WILL LEARN You will learn to develop the domain specialised capability in the area of Cell to Module to Pack level design, development industrial parameters, manufacturing process understanding, testing and homologation technical exposure, system to vehicles level integration, packaging and testing of a battery pack. You will also learn about software tools to understand the softskills and their application for system design, thermal design consideration and its packaging and many more.
  • CAREER OPPORTUNITY The lithium-ion batteries market in India is expected to grow significantly in the next five years. Some of the important initiatives by the Government of India that will accelerate the growth of this market are National Electric Mobility Mission Plan 2020, with a projection of getting 6-7 million electric vehicles on Indian roads by 2020 and a target of 175 GW installation of renewable energy by 2022. JMK Research estimates the annual lithium-ion battery market in India to increase at a CAGR of 37.5% to reach 132 GWh in 2030. The cumulative lithium-ion battery market size is estimated to increase from 2.9 GWh in 2018 to reach about 800 GWh by 2030.
  • WHO IS THIS COURSE FOR? This course is for the candidates who are willing to make a job change or start an afresh career in the Battery domain or want to become a Battery engineer. Professionals with Design and Simulation/testing and validation/R&D/Development may also opt for this course.
  • ELIGIBILITY Any graduate engineering student Post Graduation student 0-4 Years Industry professional to enhance their battery domain knowledge Industry professional with 5+ years of experience (non-EV&ESS) who are looking to learn and develop knowledge in Battery pack design and development. Entrepreneurs are interested in gaining knowledge of batteries and BMS Faculties and Research Fellos
Tools covered
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Syllabus
LiB Design and Development for EV We will start by taking a look at the basics of the Energy storage system of Electric vehicles, various cell chemistries and compositions and various cell manufacturers. Following this, we will go through a detailed cell manufacturing process, module & pack level design process to understand the factors that have led to the coming of Lithium-ion batteries in today's time. At last, we will discuss the Industrial aspects of lithium-ion batteries affecting EV market trends for the last decade and current and upcoming scenarios. Case Study: Cell shape and size comparison in different categories of EV. Case Study: Which Cell used in Tesla Model S and Why?
Mechanical Design and Electrical Architecture of Battery Pack This module will begin with the battery's capacity requirement in EVs with calculation to finalize energy consumption, vehicle range and battery basic specification. In further discussion, it will conclude the mechanical design requirement using a variety of cell holders to form series or parallel cell connections which may provide battery structural strength to the battery pack. The electrical safety requirements will play an important role to develop a better battery pack. This method will also help us to understand lithium-ion cell limitations and battery management systems requirements. Case Study: Tesla Model X & Nissan Leaf battery pack design
Battery Management System Design and Development It is very obvious that BMS is used to monitor, manage and control the lithium-ion battery but this module will cover the key role BMS will play. Parameters used in BMS and above all the components used to develop such sophisticated systems. Since different lithium-ion batteries have different electrical and thermal behaviour a BMS should be a very specific design with the required working flow diagram and algorithms for better battery life. Case Study: LV & HV BMS architecture for different categories of battery
Battery Pack System Integration, Testing and Homologation The requirement of battery packaging is one of the most crucial and important sections of battery pack development which ensures the better life of lithium-ion battery packs. The module covers such important topics. In continuation, this module will also cover the Battery and BMS testing requirements, methods to gain better reliability confidence. Case Study: Hyundai KONA battery thermal management and immersion cooling system
  • Lithium-ion cell chemistry, size & shape, manufacturing and Testing overview
  • Technical exposure for Cell selection methodology
  • Battery management system design and development
  • Battery pack packaging and thermal management system
  • Clear understanding of Anode & Cathode Materials
  • Technical exposure for Cell manufacturing & Testing
  • Global overview of Cell suppliers & Commercials
  • To get clear understanding about electrical energy requirements & System Voltage
  • Complete overview of battery pack packaging module & pack level
  • Complete softskill experience on design and simulation software and tools
  • Technical exposure of Battery pack safety
  • Technical exposure about Requirement Engineering of BMS
  • Complete understanding about Electrical & Electronics used in BMS
  • Battery pack safety & Telematics overview
  • Technical exposure about battery pack packaging for all category of EVs
  • Complete overview of Battery pack Homologation and Testing
  • Technical overview of Battery Thermal Management System (BTMS)
  • EOL Testing & Simulation of Battery pack
  • To learn and understand the complete life cycle process of Battery Pack Design and Development for the EV application
Industry Mentors and Resources
  • Industry mentors, learning resources, personalised learning experience and graders will help you along the way to resolve any subject matters related queries
  • They grade your assignments and share one-on-one feedback
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Community Benefits
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Our Learners Work Here
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  • Arai
  • Ather
  • Bgauss
  • Cell
  • GRN
  • KPIT
  • Micelio
  • Okaya
  • Ola
  • Pure
  • Revolt
  • Simple
  • Tata
  • Tork
Learner Testimonials
SHekhar Product Design Engineer
EIP in Lithium-ion Battery Design and Development (LIBDD)
Autobot academy is a good platform especially for mechanical/automobile students like me who are aiming to bridge the gap between the academic sector and the automotive industry as well as use their skills to make India a better place to live in. I enrolled myself in the "Electric Vehicles Design and Development " program, I found the modules have been structured in the right way and the instructors have adequate knowledge on their respective modules.
Program Fees
EIP in Lithium-ion Battery Design and Development (LIBDD)
Certification Level : 3

RS. + GST
Offers : 25%
Blended | 01-05-2025
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  • Online
    120 Days
    Rs. 60000.00 + GST
  • Practical
    30 Days
    Rs. 40000.00 + GST
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