Sr. Manager, Product Development Engineer - Passive Optical Engineering, Digital Data Networks (DDN)
TE ConnectivityAbout the role
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
Sr. Manager, Product Development Engineer – Passive Optical Engineering, Digital Data Networks (DDN) Unit | TE Connectivity
The Opportunity Join TE Connectivity's cutting-edge Passive Optics organization as a Product Development Engineering Manager and help pioneer the next generation of optical interconnect solutions powering AI and hyperscale computing. You'll tackle complex engineering challenges in fiber optics, working with advanced materials and precision manufacturing to create products that enable the world's most demanding data center applications.
Why This Role Matters
As AI workloads demand unprecedented bandwidth and reliability, optical interconnect engineering has become mission-critical. You'll be at the forefront of solving complex technical challenges that directly enable the AI revolution while advancing TE's leadership in high-performance optical connectivity.
Please note: operations are currently based at a temporary site in Webster, NY. The team will transition to a permanent Rochester location (near RIC) upon completion.
Job Requirements
What You'll Engineer:
Advanced Optical Design & Development
• Optical System Design: Develop innovative FAU (Fiber Attachment Unit) fiber optic connectors for attachment to the PIC (Photonic Integrated Circuit), cable assemblies, and optical components using advanced modeling and simulation tools
• Precision Engineering: Design sub-micron tolerance systems ensuring optimal optical performance across temperature ranges and environmental conditions
• Performance Optimization: Engineer solutions for critical optical parameters including insertion loss, return loss, backscatter and optical power management
Materials & Thermal Engineering
• Thermal Stability: Analyze and optimize material properties for thermal cycling, coefficient of thermal expansion (CTE) matching, and long-term stability
• Materials Selection: Evaluate and specify advanced polymers, ceramics, and metallic materials for optical applications
• Environmental Testing: Design and execute comprehensive test protocols for temperature, humidity, vibration, and mechanical stress validation
Advanced Optical Concepts
• Optical Coupling: Design and optimize grating couplers, edge couplers, and fiber-to-chip interfaces for maximum efficiency
• Polarization Management: Develop solutions for polarization-dependent loss (PDL), polarization mode dispersion (PMD), and state of polarization control
• Beam Management: Engineer systems for optimal beam pointing stability, diffraction control, and optical path management
• Optical Modeling: Utilize ray tracing, wave optics simulation, and finite element analysis for design optimization
Product Development & Validation
• Prototyping: Lead rapid prototyping efforts from concept through production-ready designs
• Testing & Characterization: Develop comprehensive test methodologies for optical performance, reliability, and manufacturing quality
• Cross-functional Collaboration: Work closely with manufacturing, quality, and product management teams to ensure design for manufacturability (DFM)
What your background should look like
What We're Looking For
Essential Qualifications
• Education: BS/MS in Optical Engineering, Physics, Electrical Engineering, or related technical field
• Experience: 7-10 years in optical product development, fiber optics, or photonics engineering
• Technical Expertise: Hands-on experience with optical design tools (Zemax, Code V, BeamPROP, or similar) and physics of optical coupling structures
• Materials Knowledge: Understanding of optical materials, thermal properties, and mechanical behavior of polymers, glasses and ceramics
Core Technical Competencies
• Optical Theory: Deep understanding of geometric and wave optics, polarization, diffraction, and scattering phenomena
• Precision Manufacturing: Experience with sub-micron tolerancing, precision molding, and optical assembly processes, thin film optical coating technologies
• Measurement Systems: Proficiency with optical test equipment (OSAs, OTDRs, interferometers, polarimeters)
• Modeling & Simulation: Experience with finite element analysis (ANSYS, COMSOL) and optical simulation software
Specialized Knowledge Areas
• Fiber Optics: Single-mode (SM), multi-m
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