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Texas Instruments·Semiconductors·4 months ago

RFAB Module Industrial Engineer

Richardson, United States of AmericaMid · 2-5 yearsH1B likely

About this role

About the job
Do you have experience in industrial engineering and process planning? Do you want to work for an organization that values your opinion? Do you want to work for an organization where you can play a pivotal role in several different areas? Look no further. Texas Instruments (TI) is looking for an experienced Industrial Engineer to support our manufacturing operations. Here's your opportunity to work in a vibrant and dynamic team-oriented environment with exposure to a variety of state-of-the art applications each day.

Responsibilities include:

  • Lead line and operational performance analysis to identify output and cycle time improvement opportunities
  • Maintain capacity modeling data integrity via engineering change control monitoring and frequent communication with tool owners to ensure model readiness
  • Gather and understand information required to perform capacity analysis and production impact
  • Strong analytical and problem-solving skills 
  • Performing capacity analysis, cost analysis and operational “what-if” analysis to support capital investment and operational decision making
  • Optimize equipment run schedule to maximize asset utilization and output
  • Collect and validate operational performance data via strong analytic methods on automation and system logs to analyze throughput impact of various process requirement
  • Effectively interact across all the different departments and groups to drive execution plans
  • Proactively analyze factory execution entitlement through utilizing predictive modeling techniques to drive operational performance
  • Analyzing and maintaining large data sets
  • Leverage operational data to identify performance trends, propose leading indicators, and provide predictive information to support execution decisions.
  • Analyze complex operational challenges involving multiple stakeholders, driving towards optimal solutions in a complex and dynamic manufacturing environment
  • Identify operational gaps, lead problem formulation, determine root cause, and implement creative and effective solutions
  • Automating data extraction and manufacturing processes
  • Determining starts and mixes that we can support for the current time period and for the future look-ahead based on our capacity, constraints, available tools, tool performance and future process releases scheduled in our factory
  • Providing a list of short-term and long-term focused toolsets for the modules to work on 
  • Identifying opportunities to improve cycle time and increase our capacity models' ability to support operational decision making
  • Performing equipment loading studies and determining methods for flow linearization and reduction in variation
  • Interfacing with engineering, manufacturing, and planning/coordinating the release of new methods, flows, and processes
  • Estimating manufacturing cost, determining time standards, and making recommendations for tooling and process requirements of new or existing process flows