Full-Time

Engineer – Gisocc Business IS

Valeo

Valeo

10,001+ employees

Automotive electrification, ADAS, interior lighting tech

No salary listed

Chennai, Tamil Nadu, India

In Person

Category
IT & Security (1)
Required Skills
Operating Systems
SAP Products

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Requirements
  • A strong and proven knowledge in SAP BASIS architecture.
  • Strong experience in SAP ECC, SAP PO, SAP Solution Manager, and SAP HANA administration.
  • Experience in system database refreshes and kernel upgrades.
  • Working knowledge and hands-on experience in SAP security management.
  • Good knowledge of SAP BASIS, with 2.5–4 years of experience required.
  • Proven experience in SAP security, with 2.5–4 years of experience required.
  • Good knowledge of operating systems, databases, and networks.
  • Ability to maintain a structured approach to assessing incidents based on their impact on supply chain and operational continuity.
  • Ability to apply structured preliminary incident analysis and determine when to use an application-level fix or escalate to the infrastructure outsourcer.
  • Flexibility to work shifts and provide weekend support.
  • Strong communication skills to lead and drive topics independently.
Responsibilities
  • Monitor and maintain day-to-day SAP application stability, perform preliminary analysis of performance degradation and dumps, and provide application-level fixes.
  • Troubleshoot IDoc processing failures, manage and configure RFC destinations, and monitor message flows within SAP PI/PO, including L2 issue analysis.
  • Oversee transport movements in the Transport Management System, analyze and resolve stuck transports, and ensure smooth transport sequencing across the landscape.
  • Install, modify, and troubleshoot printers.
  • Create, modify, monitor, and troubleshoot SAP batch jobs.
  • Monitor and troubleshoot SAP PO inflow and outflow messages from a BASIS perspective.
  • Perform database object archiving for memory optimization.
  • Manage the SAP Marketplace, including S-user account creation, OSS connections, and diagnosis.
  • Conduct L1/L2 analysis of user authorization failures and security-oriented issues raised by the business.
  • Create and modify SAP users, lock and unlock users, assign user roles, and support segregation-of-duty audits using LSF.
  • Support Valeo SAP projects in addition to application maintenance.
  • Prepare monthly dashboard reports.
  • Communicate with the infrastructure outsourcing vendor and support SAP infrastructure-related activities.

Valeo develops electrification, driving assistance, interior technology, and lighting systems for automakers and mobility players to make transportation cleaner, safer, and smarter. Its products work by designing and integrating electrical systems, sensors, software, and lighting into vehicles to enable electric propulsion, ADAS features, smart interiors, and advanced illumination. It differentiates itself through global scale and a broad, cross-domain portfolio, backed by a large manufacturing footprint and many research and development centers. Its goal is to speed the transition to cleaner, safer, and smarter mobility worldwide by delivering scalable electrification, ADAS, intelligent interiors, and lighting solutions.

Company Size

10,001+

Company Stage

IPO

Headquarters

Paris, France

Founded

1923

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Simplify Jobs

Simplify's Take

What believers are saying

  • H1 2026 operating margin rose to 5.0%, proving cost discipline.
  • Free cash flow reached €242 million, and net debt fell to €3.828 billion.
  • Nissan and Harmattan AI contracts expand Valeo into EV charging and drones.

What critics are saying

  • Valeo closed Bad Neustadt and cut Ebern R&D jobs in 2026.
  • Nvidia settled Valeo’s trade-secret dispute, exposing fragile IP protection in ADAS.
  • Automotive supplier pricing pressure and Chinese OEM competition squeeze margins into 2027.

What makes Valeo unique

  • Valeo’s BRAIN, LIGHT, and POWER platforms span electrification, ADAS, and lighting.
  • Angers now anchors Europe’s HGV headlights, with 181 robots and AI validation.
  • Valeo won General Motors' central compute unit order, strengthening SDV credibility.

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Benefits

Flexible Work Hours

Company Equity

Meal Benefits

Company News

Mart Infomedia
Aug 4th, 2026
Varroc appoints Eric Hamon as Chief Technical Officer.

Varroc appoints Eric Hamon as Chief Technical Officer. Varroc, a leading global automotive technology company, has appointed Eric Hamon as its Chief Technical Officer (CTO), effective August 3, 2026. The appointment strengthens the company's leadership team as it continues to expand its capabilities in electrification, connected mobility and advanced automotive technologies. Eric Hamon brings more than 25 years of international experience in automotive engineering and technology leadership. His expertise spans electrification, electrical and electronic systems, software-defined vehicles, connected technologies, embedded software, functional safety and cybersecurity. Throughout his career, he has led global research and development teams, worked with leading automotive manufacturers and played a key role in developing advanced mobility solutions. In his new role, Eric will report to Arjun Jain, Whole Time Director and CEO - Business I, Varroc. He will lead the company's global technology and engineering operations and oversee its long-term technology strategy. His responsibilities include advancing innovation across electrification, electrical-electronics and connected systems, improving engineering processes, strengthening customer collaboration and developing next-generation mobility technologies. Eric will also focus on expanding Varroc's product portfolio while driving engineering excellence and supporting the company's commitment to delivering safe, smart and sustainable mobility solutions for customers worldwide. Announcing the appointment, Arjun Jain said Eric's global experience and technical expertise make him a valuable addition to Varroc's leadership team. He noted that the automotive industry is undergoing rapid transformation driven by electrification, software and connectivity, and added that Eric's leadership will help the company accelerate innovation and strengthen its position in the global market. Speaking about his new role, Eric Hamon said he was pleased to join Varroc at a time when the automotive industry is experiencing significant technological change. He said the growing adoption of electric mobility, software-driven vehicles and connected technologies presents major opportunities to shape the future of transportation. He added that Varroc has built a strong reputation for engineering excellence and customer trust, and he looks forward to working with teams across the world to develop innovative products and strengthen partnerships with global customers. Before joining Varroc, Eric served as Director - E Axle and System Platforms at Valeo E, where he led the global product strategy for electric axle platforms. During his career, he has gained extensive experience in technology planning, system engineering, embedded hardware and software development, electrified powertrains, digital transformation and global engineering operations. He has also successfully led multicultural teams and secured major customer programs through close collaboration with leading automotive manufacturers. The appointment reflects Varroc's continued investment in strengthening its global engineering capabilities and expanding its technology portfolio to meet the changing needs of the automotive industry. Founded in 1988, Varroc Engineering Limited is a global Tier-1 automotive component manufacturer supplying e-mobility solutions, body systems, lighting systems, human-machine interface solutions, internal combustion engine powertrain products and advanced electronics. The company serves two-wheelers, three-wheelers, passenger vehicles, commercial vehicles and off-highway equipment manufacturers worldwide. Varroc reported revenue of ₹89,080 million from continuing operations in FY26. The company employs more than 5,400 people, including over 750 research and development engineers. It operates 37 manufacturing facilities and seven R&D centres globally and has filed more than 130 patents. Varroc Engineering Limited is listed on both the National Stock Exchange and the Bombay Stock Exchange in India.

Motoring Trends
Aug 3rd, 2026
Varroc appoints Eric Hamon as Chief Technical Officer.

Varroc appoints Eric Hamon as Chief Technical Officer. * By MT Bureau * August 03, 2026 Pune-headquartered tier 1 supplier Varroc has appointed Eric Hamon as Chief Technical Officer, effective 3 August 2026. He joins the company with 25 years of engineering experience across the automotive sector. Hamon comes with experience in electrification, electrical and electronic architectures, software-defined vehicle platforms, embedded software, functional safety and cybersecurity operations. Before joining Varroc, Hamon was Director - E Axle & System Platforms at Valeo E, where he managed product strategy for electric axle platforms. His career includes work in system engineering, embedded hardware and software development, electric powertrains and regional engineering operations. In his new role, he will report to Arjun Jain, Whole Time Director & CEO - Business I at Varroc. He will lead the company's global technology and engineering organisation, taking charge of technology strategy, product portfolio optimisation in electrification & connected systems and engineering process development. Arjun Jain said, "We are delighted to welcome Eric Hamon to Varroc's leadership team. Eric brings a rare combination of deep technical expertise, global engineering leadership and a proven ability to translate technology into vehicle requirements. As our industry accelerates towards electrification, connectivity and sustainability, his leadership will play a pivotal role our accelerating growth." Eric Hamon said, "I am excited to join Varroc at such a transformative time for the global automotive industry. The pace of innovation in electrification, software and connected mobility presents tremendous opportunities to redefine the future of mobility. Varroc has built a strong foundation of engineering excellence, customer trust and global manufacturing capability, and I look forward to working with talented teams across the world to accelerate innovation, deepen customer collaboration and develop technologies that enable safe, smart and sustainable mobility."

Yahoo Finance
Jul 22nd, 2026
Valeo H1 2026: Operating margin up 8%, net debt down $224M to $4.3B

Valeo reported first-half 2026 sales of €10.4 billion, up 0.7% on a like-for-like basis, with its BRAIN and LIGHT divisions outperforming global automotive production. The French automotive supplier posted an operating margin of €514 million, or 5% of sales, up 8% year-on-year. Free cash flow reached €242 million, more than doubling from €100 million in the first half of 2025. Net financial debt declined by nearly €200 million to €3,828 million, reducing the leverage ratio to 1.2x from 1.3x at year-end 2025. Order intake totalled €12.1 billion, in line with the company's Elevate 2028 plan. Valeo secured its first contract to manufacture drone motors, marking progress in adjacent markets beyond automotive. The company reaffirmed its 2026 targets, including sales of €20-21 billion and operating margin of 4.7-5.3%.

Channel NewsAsia
Jul 20th, 2026
Valeo to make drone motors in France for Harmattan AI.

Valeo to make drone motors in France for Harmattan AI. 21 Jul 2026 12:36AM Add CNA as a trusted source to help Google better understand and surface our content in search results. July 20: Automotive supplier Valeo will develop and produce electric drone motors in France for defense technology firm Harmattan AI, the companies said on Monday. The motors, designed for both civil and defense applications, will be manufactured without heavy rare earths to help secure the supply chain, they added. - Production is scheduled to begin in early 2027 at a Valeo facility in France. - Harmattan AI said the partnership helps maintain command of its production capabilities by addressing strategic vulnerabilities in the global supply chain. - "This first contract in the drones sector leverages Valeo's industrial expertise to support national sovereignty," Valeo CEO Christophe Périllat said.

Fixstars
Jul 13th, 2026
Event report: designing the "Data Center on Wheels" - insights from Valeo at the 2026 Embedded Vision Summit.

Event report: designing the "Data Center on Wheels" - insights from Valeo at the 2026 Embedded Vision Summit. miho.yoneda | July 13, 2026 | Edge Robotics Systems Development Following up on the incredible insights from the Embedded Vision Summit, another session that perfectly aligns with its mission at Fixstars was delivered by Frank Moesle, System Architecture and Strategy Manager at Valeo. His presentation, "From Decentralized ECUs to Zonal Compute: Emerging Vehicle Architectures for SDV and Edge AI," provided a masterful roadmap of how vehicle hardware and software architectures are fundamentally rewriting the rules of automotive engineering. For anyone involved in embedded software optimization and high-performance computing, this session was a clear window into the future - and a validation of the architectural challenges Fixstars Corporation is solving today. The evolution of the automotive "brain" Moesle opened his talk with a fascinating biological analogy: while some marine life relies on decentralized, siloed nervous systems (like an octopus with 9 brains), nature's most flexible and powerful machine - the human being - relies on a single, centralized brain. The automotive industry is going through the exact same evolutionary transition: * Past (Distributed): Independent Electronic Control Units (ECUs) scattered across the vehicle, leading to a massive maze of wiring and making software updates incredibly difficult. * Today (Domain): Functions are isolated into specific silos (e.g., Infotainment, ADAS), which unfortunately introduces data exchange bottlenecks and limited scalability. * Future (Zonal & Central Compute): A shift toward a highly centralized architecture featuring a unified "Superbrain" domain controller connected to zonal aggregators. This approach promises up to a 50% reduction in weight and hardware costs while enabling seamless compute-sharing across functions. With the exponential hunger for compute driven by massive in-vehicle infotainment (IVI) displays, AI agents, and automated driving sensor suites (such as systems utilizing up to 12 cameras, 5 radars, and 3 LiDARs), the modern vehicle is no longer just a car - it is a literal "Data Center on Wheels." The triple edge dilemma: power, heat, and cost. Moving a data center into a moving vehicle introduces brutal engineering constraints. Moesle highlighted the triple challenges that automotive architects face when centralizing compute: * Power Consumption: Running massive autonomous driving and IVI workloads drains battery range. * Thermal Management: Packaging high-density silicon into tight vehicle spaces creates severe heat dissipation bottlenecks. * Cost Pressure: Monolithic processors face low production yields on advanced nodes, making scaling financially unsustainable. To solve the cost and scaling crisis of monolithic chips, the industry is aggressively moving toward Open, Heterogeneous Chiplet Architectures supported by global standards like UCIe and ASRA. By breaking down a massive processor into smaller, specialized chiplets, manufacturers can optimize for yield, scale efficiently, and mix-and-match specialized silicon. Bridging the heterogeneous gap: the Fixstars perspective. This is exactly where the presentation transitioned from hardware architecture to a critical software challenge - and where Fixstars sits at the center of the ecosystem. Centralizing compute onto a heterogeneous chiplet architecture means the vehicle's software stack becomes multi-layered and highly complex. As Moesle illustrated, the layered software stack requires co-creation across: * Layered Software Stacks: Integrating parking, driving assistance, infotainment, and autonomous driving. * Middleware & RTOS: Orchestrating real-time operating systems (like QNX or Wind River) alongside infotainment platforms (Linux/Android) under unified hypervisors. * Open Source Collaboration: Initiatives like S-CORE (Open Source Automotive Middleware) are emerging to standardize the foundational layers so the industry can avoid vendor lock-in. Why software optimization is the real enabler. You can design the perfect open chiplet architecture, but if the software stack cannot efficiently map workloads across those heterogeneous cores, you will trigger the exact power and thermal failures Valeo warned about. At Fixstars, its expertise is built for this exact inflection point. Fixstars Corporation specialize in hardware-aware software optimization. When a vehicle's architecture consolidates into a single, heterogeneous "Superbrain," its role is to optimize the middleware, real-time operating systems, and AI models down to the metal. By utilizing advanced parallel computing techniques and maximizing the throughput of specialized accelerators, Fixstars Corporation minimize latency while drastically reducing power consumption and thermal load. In short, Fixstars Corporation help prevent the "Data Center on Wheels" from overheating and draining the vehicle's battery. Moving forward together. The session concluded with a powerful takeaway: the transition to a centralized, future-proof Software-Defined Vehicle (SDV) cannot be achieved alone. It requires massive industry collaboration, open source thinking, and specialized partnerships. As the automotive stack standardizes around open middleware and chiplet ecosystems, the ultimate differentiator will be execution speed and software efficiency. Fixstars is incredibly proud to be part of the community accelerating this transition, ensuring that tomorrow's centralized vehicle architectures are fast, safe, and highly optimized. Discover how Fixstars accelerates automotive software and edge AI optimization here. Given how quickly vehicle architectures are consolidating into a unified "Superbrain," are you currently seeing the power, thermal, or latency constraints of heterogeneous hardware affect your own software deployment pipelines?