Posted 2 months ago
Packaging Engineer- Bump Interconnect
AI Summary
Lead bump interconnect development for advanced semiconductor packages (2.5D/3D/chiplet/fan-out), owning ubump and C4 metallurgy, RDL design and plating, capture pad rules, OSAT engagement, reliability, and failure analysis through productization.
About this role
We’re seeking an experienced engineer to lead bump interconnect development for advanced semiconductor devices (2.5D/3D/chiplet/fan-out).
This role spans ubump and C4 bump metallurgy, RDL design and
plating, chip-side and interposer capture pad design rules, OSAT engagement, reliability,
failure analysis, and cross-functional support through package and system productization.
Core Responsibilities
- Own end-to-end bump interconnect development for both ubump (micro-bump) and C4
processes, including bump formation, and reflow for use with mass reflow, TCB, and LAB chip
attach for high-performance semiconductor packages.
- Define and own bump metallurgy stacks for ubump (e.g., Cu pillar/SnAg) and C4 (e.g., SAC alloys)
interconnects, including UBM selection and pad finish specifications for both chip-side and
interposer capture pads.
- Develop and own design rules for bump interconnects including pitch, bump diameter, standoff
height, keep-outs, and land pad geometry for both the chip side and interposer or substrate
capture pads.
- Lead RDL (redistribution layer) process development including electroplating of Cu RDL traces,
via fills, and pad finishes; define RDL design rules for line/space, via diameter, and layer stack-up
to meet electrical and reliability requirements.
- Collaborate with OSATs and bumping foundries to qualify ubump and C4 bumping processes,
drive design rule alignment, and manage process transfers into production.
- Evaluate and mitigate bump interconnect assembly risks including non-wet opens, voiding, head-
in-pillow, intermetallic growth, and joint fatigue failures across both ubump and C4 interconnect types.
- Perform root cause analysis of assembly and reliability failures using cross-sectioning, SEM,
CSAM, and other failure analysis techniques.
- Support reliability qualification including thermal cycling, drop, mechanical shock, and power cycling.
- Work cross-functionally with design, reliability, thermal, and manufacturing teams to ensure
robust package performance from concept through high-volume production.
Required Technical Skills
- Strong experience in bump interconnect processes including ubump (Cu pillar, micro-bump) and
C4 bumping for semiconductor devices.
- Deep understanding of bumping metallurgy including UBM stacks, solder alloy systems (SnAg),
intermetallic compound (IMC) formation and growth kinetics, and their impact on joint reliability.
- Experience with RDL plating processes including Cu electroplating, photoresist patterning, seed
layer deposition, and associated design rules for line/space, via geometry, and pad stack.
- Understanding of thermo-mechanical behavior in bump interconnect assemblies including CTE
mismatch, warpage, solder joint fatigue, and IMC-driven reliability risks for both ubump and C4
configurations.
- Hands-on experience with failure analysis and reliability testing (cross-sections, SEM, CSAM,
thermal cycling).
- Ability to work with OSATs and suppliers to develop and transfer assembly processes into
production.
- Strong problem-solving skills with ability to debug yield and reliability issues in manufacturing
environments.
Preferred / Differentiating Skills
- Experience with III-V packaging, photonics packaging, and precision chip attach.
- Experience with advanced packaging technologies including 2.5D interposers, 3D stacking,
chiplets, and CoWoS-like architectures.
- Familiarity with fine-pitch micro-bump and hybrid bonding approaches.
- Experience integrating high-power or high-TDP devices with tight warpage and thermal
constraints.
- Exposure to thermo-mechanical modeling or collaboration with simulation teams for warpage
and reliability prediction.
- Understanding of system-level interactions (warpage, second-level interconnect reliability).
- Deep expertise in bump metallurgy fundamentals including UBM stack design (Ti/Cu, etc.), solder
alloy selection, wetting behavior, and the influence of plating chemistry and process conditions
on bump morphology and composition.
- Fundamental knowledge of intermetallic compound (IMC) formation, growth kinetics, and phase
behavior in Cu/Sn, Ni/Sn, and Au/Sn systems; understanding of how IMC thickness, morphology,
and composition affect joint strength, electromigration resistance, and long-term reliability.
Education & Experience:
Industry experience in semiconductor packaging with strong emphasis on bump interconnect
processes, RDL development, and productization.
Skills
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