SR RELAY PRODUCT ENGINEER
TE Connectivity
- Location
- Bangalore, KA, IND, 560037<br/>
- Work model
- On-Site
- Level
- Senior
- H-1B history
- 22 approvals (FY2023)
- Posted
- 212d ago
About this role
Job Description
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Job Title
SR RELAY PRODUCT ENGINEER
Posting Start Date
1/5/26
At TE, you will unleash your potential working with people from diverse backgrounds and industries to create a safer, sustainable and more connected world.
Job Overview
The Senior Engineer will be responsible for the design and development of relays, contactors, power distribution units, and other electromechanical products for TE Connectivity. The role also includes providing design support for sustenance and VAVE projects within the relay product line. The Senior Engineer will collaborate with global and local cross-functional teams to develop products by translating customer requirements into product specifications and managing the development cycle through testing, approval, and release to production. The Senior Engineer is accountable for meeting departmental KPI metrics related to NPD, VAVE, and sustenance activities. Responsibilities and Education
Design and develop relays, contactors, power distribution units (PDUs), and other electromechanical products from Voice of Customer (VOC) through production release. Translate customer and system-level electrical requirements into robust, compliant product designs. Lead end-to-end New Product Development (NPD) activities, including concept generation, detailed design, development, and qualification in accordance with MIL and aerospace standards. Apply strong electrical and mechanical engineering fundamentals to deliver high-reliability electromechanical solutions. Ensure material selection meets functional, environmental, reliability, and regulatory requirements. Incorporate critical design considerations such as magnetic behavior, AC/DC current characteristics, thermal and structural performance, environmental conditions, contact physics, contact plating, plastic part quality, and tooling requirements for sheet metal and molded components. Apply Design for Manufacturability (DFM) and Design for Assembly (DFA) principles at component and subsystem levels to optimize cost, quality, and scalability. Interpret and apply magnetic, structural, and thermal analysis results to drive informed design decisions. Analyze test and qualification data, perform root cause analysis of failures, and implement corrective actions to improve product performance and reliability. Drive engineering performance metrics, including on-time launch, engineering efficiency, innovation engagement, and cost savings through value engineering initiatives. Collaborate effectively with global and cross-functional teams to ensure successful product development and launch. Demonstrate