Core R&D & Hardware
Schematic design, PCB layout & hardware integration
Firmware, HW-SW integration & board designs
Embedded firmware design, RTOS & communication stacks
CAD drafting, structural simulation & prototype
Custom application design, embedded & full-stack
Advanced Design & Systems
End-to-end product design & development lifecycles
Concept modeling, reverse engineering & 3D drafting
ECU firmware & custom AUTOSAR designs
Smarter industrial control pipelines
Unifying information & advanced analytics
Hybrid cloud architectures & industrial migrations
Predictive & prescriptive data insights
Seamless API & middleware connectivity
Testing, Quality & Mfg
Rigorous embedded product testing & pre-compliance
Root cause analysis, safety & environmental tests
Finite element modeling, stress & thermal CFD analysis
Systematic change orders & version control
SPM design, tooling, fixtures & process engineering
Functional, automation & automotive validations
Microcontrollers & Boards
Foundational MCU kits & system modules
Classic 8-bit architecture & lab kits
Robust PIC microcontroller designs
Linux-based SBC prototyping & IoT
Rapid prototyping & open-source boards
Efficient 8-bit AVR development kits
Advanced 32-bit controller designs
Wireless & Communication
Mobile-controlled embedded systems
SIM-based alert & remote telemetry
Environmental, motion & industrial sensing
Short-range wireless mesh networks
Location tracking & navigation systems
Contactless identification & RF links
Tone-based remote control via telephone
Long-range data transmission & protocols
UAVs, motor kinematics & motion automation
Electronics & Instrumentation
ECE design concepts & hardware development ideas
Renewable energy harvesting & charging
Logic gates, FPGAs & digital circuits
50+ electronics and communication project ideas
50+ electrical engineering project ideas
Quick-build kits for students & labs
Industrial sensors & process calibration
Ladder logic & SCADA instrumentation
Automation & Embedded
Master PLC programming, HMI & SCADA
Master embedded microcontroller systems & C firmware
Complete hands-on connected device skilling
Govt endorsed connected systems training
Tailored corporate and industrial training programs
Automotive & Special Tools
Core BSW, RTE, and MCAL static embedded software design
POSIX, SOME/IP, C++ dynamic autonomous vehicle computing
Safety-critical automated testing verification
Building Management Systems & Niagara automation
Master labVIEW programming & test instrumentation
Modern Software & Power
Neural networks, smart models & big analytics
Master ETAP power system design & transient analysis
Enterprise web apps & backend logic
Register for hands-on industrial internship programs
Request official training & internship certificates

A program designed to equip individuals with deep knowledge and practical skills in the field of automotive embedded systems. 100% Placement Opportunity.
Clients Hiring from Technologics Global Finishing School


























Enroll in our specialized AUTOSAR Training in Bangalore, a comprehensive program meticulously designed to equip individuals with in-depth knowledge and practical skills in the field of automotive embedded systems. Throughout this course, participants will engage in hands-on learning experiences, gaining expertise in AUTOSAR architecture, design, and integration.
Explore an immersive learning experience with our AUTOSAR Training in Bangalore, extending beyond traditional classroom settings. Our program offers a distinctive blend of theoretical knowledge and practical exposure, guided by experienced instructors who bring industry insights to the forefront. Participants gain a comprehensive understanding of AUTOSAR specifications and practical implementation.
A dedicated Industrial Trainer from the pool of 30+ R&D Engineers as accountability coach from TECHNOLOGICS Research Lab.
Our Offline Autosar Course with placements is endorsed by Govt of India. Get Skill India Level-5 Certification.
Daily Live Master Class followed by Technical Discussion, Assignments, Coding practice powered by dedicated coding Leaders.
Enjoy excellent peer-to-peer learning environment. Learn from physical interaction with fellow students.
Dedicated HR along with Industry Coach to Empower the Candidates facing Real-Time Industrial Interview, Unlimited Interview opportunities for every candidate.
Our Training content is Designed by Engineering team of TECHNOLOGICS Research Lab which is also vetted by Multiple Automotive Aerospace & Defense Clients.
Exceptional satisfaction rate reported by our course graduates.
Direct placement rate into Tier 1 automotive suppliers.
Top automotive OEMs and aerospace partners hiring from us.
A vast community of automotive embedded software developers.
Flexible starting salaries based on candidate competence.
Unlimited interview schedules with premium hiring clients.
A proven track record of successful embedded career starts.
1st time in India !!! Experience hands-on learning through real-world industrial projects.
Genuine Placement with upto 25LPA Package | Record of 5 to 10 Clients Hiring per week.
Dedicated HR & Accountability coach to track your daily and weekly Performance.
Proven placement assistance track record till date across premium domains.
Fully Equipped Updated Software and Hardware (Infineon AURIX TriCore TC2xx/TC3xx).
Learn directly from specialists with real R&D development experience.
Grooming sessions, mock interviews, and presentation skill development.
No pure theory. Every session is backed by practical hands-on tasks.
Individual career consultations, resume build-ups, and networking.
Small batches ensuring personal guidance and individual code reviews.
JP Nagar, Bengaluru
Based on 1,090+ authentic reviews from engineering students and professionals worldwide.
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Review Us on GoogleKesava Uppuluru
6 months ago
“clear and straight forward, excellent starting session . thankyou sir”
Jeferin Banu
6 months ago
“I was a part of embedded system online batch, the classes of C programming and everyday coding sessions strengthened my basics, I got h...”
Prakruthi Gs
6 months ago
“Great institute! Supportive trainers and good hands-on learning experience. Helped me improve my technical skills. Highly recommended f...”
AM
6 months ago
“This course was highly practical. The hands-on projects, hardware kits, and standard industrial software tools gave me the exact skills...”
Suhas Gowda
2 months ago
“Technologics is the absolute best place for PLC SCADA and Industrial Automation training. The laboratory has high-end PLCs (Siemens, Al...”
Megha Sharma
3 months ago
“Highly professional training institute. I joined for NASSCOM IoT course and the curriculum was highly structured. The placement assista...”
Nikhil R
4 months ago
“Excellent vectorCAST and safety-critical testing course. The hands-on exposure to diagnostic protocols, static and dynamic analysis is ...”
Divya Bharathi
5 months ago
“The LabVIEW and Building Management Systems (IBMS) training was phenomenal. The practical sessions on HVAC simulation, fire alarm syste...”
Our training curriculum is engineered from our active R&D lab, featuring structured module layouts, hardware configurations, and practical deliverables.
Theoretical Concepts: Overview of AUTOSAR architecture and layers (BSW, RTE, ASW). Importance of hardware and software integration in AUTOSAR. Familiarization with MCAL (Microcontroller Abstraction Layer).
Hardware Architecture: Select Microcontroller: Use AUTOSAR-compliant boards like Infineon AURIX (TriCore TC2xx/TC3xx series). Acquire Debugging Tools: J-Link Debugger or Lauterbach Trace32. Prepare Power Supply: Ensure regulated power for the selected board.
Software Environment: Install an AUTOSAR configuration tool: Vector DaVinci Developer or Elektrobit Tresos. Install IDE and compiler: Green Hills or IAR Embedded Workbench (depending on the microcontroller). Install simulation tools (e.g., CANoe, CANalyzer).
Practical Task: Power up the microcontroller board and verify connectivity with your PC. Explore debugging tools to connect and flash basic firmware.
Theoretical Concepts: Detailed exploration of MCAL. GPIO, PWM, ADC, CAN drivers. Introduction to BSW configuration: Diagnostic stack, communication stack, and memory stack. RTE and application software components (SWCs).
Hardware Architecture: Infineon AURIX development boards and debug connections.
Software Environment: Configuring BSW layers and software component interfaces in configuration tools.
Practical Task: Step-by-step process for GPIO configuration using AUTOSAR tools. GPIO control demonstration (e.g., LEDs ON/OFF) using configured BSW & SWC. The entire process will be shown in a presentable way (PPT) to enhance clarity and learning.
Theoretical Concepts: CAN/LIN/Ethernet protocol overview. BSW modules for communication (COM, PDU Router, CAN Stack).
Hardware Architecture: Set up a CAN transceiver module with the microcontroller.
Software Environment: Configure the CAN driver and CAN stack in the tool. Generate RTE and integrate a basic CAN application.
Practical Task: Use CANalyzer or CANoe to test message transmission and verify CAN frame data routing.
Theoretical Concepts: AUTOSAR OS concepts (tasks, alarms, events). Scheduling and task configuration.
Hardware Architecture: Integrated setup of sensors and actuator tools using the AUTOSAR OS stack.
Software Environment: OS configuration and task scheduling.
Practical Task: Data flow configuration from sensors to actuators. The entire process will be shown in a presentable way (PPT) to enhance clarity and learning.
Theoretical Concepts: Fault diagnosis and DEM (Diagnostic Event Manager). NVRAM stack and data persistence.
Hardware Architecture: Setup and interface of external memory (EEPROM/Flash).
Software Environment: Configuration of DEM for fault logging and NVRAM stack data mapping.
Practical Task: Data storage and retrieval using NVRAM stack. The full procedure will be presented in a clear, step-by-step manner using PPT, with configuration tool visuals.
Theoretical Concepts: Integration of all layers in AUTOSAR. End-to-end workflow of an AUTOSAR project.
Hardware Architecture: Real hardware demonstration (e.g., smart light or motor control). Hardware connection steps and testing.
Software Environment: Integration of BSW, RTE, and SWC into a single control application.
Practical Task: Configuring MCAL and BSW. Generating and testing RTE. Writing SWCs and testing them on hardware. Practical exposure to debugging tools and communication protocols. A final integrated AUTOSAR-based project.
Receive training from industry professionals specializing in AUTOSAR development. Acquire unmatched skills, secure placements with renowned client companies, and become part of the success stories of over 1,000 individuals who kickstarted their AUTOSAR careers with us.
Our trained students are being hired by more than 1,500 premium clients from various Domains including Automotive, Aerospace, Defence, Medical Electronics, IoT, and Home Appliances. The Offered Packages range from 3.5 LPA to 25 LPA, based on the competency of our students demonstrated at their final round of client Assessment.
Join us in our exceptional program tailored exclusively for job-seeking students and freshers. What distinguishes us is not just our dedication to excellence but also the real-world expertise of our instructors—seasoned professionals actively shaping the industry landscape.
Good experience, The training was really good and great. I had excellent experience learning from R&D specialist trainers and extensive effort from them on live coding session. Staffs are really great, a good place to learn.
Anusha R
Verified Alumni · SJBIT College
I joined Technologics with a believe that i will be placed. But after attending just 2 weeks of classes, i have no fear of placement. Because, here i learnt the important thing which is required today are the skills. If you have skills, you can get placed anywhere.
Faisal Zaffari
Verified Alumni · HKBK College
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Reach out to us now for a world of possibilities! Learn AUTOSAR from R&D specialist engineering coaches.