Decode the Competencies Behind the Titles

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Across
  1. 1. practice specialized in the design and development of features that Supports from L1 autonomous to L3 autonomous adhering to standard APSICE compliance.
  2. 4. Designs and validates automotive-grade hardware like ECUs, sensor modules, and controller boards, supporting high-speed interfaces, thermal and EMI/EMC requirements, and production readiness.
  3. 5. Supports OEMs in developing EV systems such as battery management systems (BMS), electric drivetrains, onboard chargers, and power electronics aligned with global electrification trends
  4. 6. Delivers robust automotive cyber security solutions including secure boot, secure communication, ECU hardening, and compliance with standards like ISO/SAE 21434 to protect connected vehicle ecosystems
  5. 8. involve developing standardized, scalable ECU software platforms and low-level firmware to power critical automotive functions
  6. 11. Develops and integrates telematics control units (TCUs), cloud communication modules, and data analytics platforms enabling vehicle tracking, remote diagnostics, and V2X capabilities.
  7. 12. Focuses on cloud-enabled connected car platforms, including over-the-air (OTA) updates, remote diagnostics, telematics backends, and fleet data analytics to enhance vehicle connectivity and user experience.
  8. 13. Provides ISO 26262-compliant safety solutions including safety analysis, tool qualification, and software/hardware validation for safety-critical systems like ADAS, powertrain, and steering.
Down
  1. 1. Encompasses end-to-end automotive engineering services at Tata Elxsi, including vehicle architecture, domain integration, and support across powertrain, ADAS, body, and infotainment systems
  2. 2. Specializes in the design and development of advanced test automation solutions and test execution.
  3. 3. Provides system-level engineering services including vehicle architecture definition, integration, and validation to ensure cross-domain functionality and performance in modern vehicle platforms.
  4. 7. Utilizes tools like MATLAB/Simulink for algorithm development, rapid prototyping, and auto code generation to accelerate ECU development and validation for domains such as powertrain and chassis.
  5. 9. practice specializes in the development virtual models of controller, system on chips, ECUs so that embedded software can be developed and validated much before the target hardware is available.
  6. 10. Covers development of advanced digital cockpit solutions including infotainment, digital instrument clusters, voice assistants, and connected vehicle services using Android Automotive and embedded platforms.