Advanced Manufacturing Engineer I at Honeywell
Mississauga, ON, Canada -
Full Time


Start Date

Immediate

Expiry Date

08 Nov, 25

Salary

0.0

Posted On

09 Aug, 25

Experience

0 year(s) or above

Remote Job

Yes

Telecommute

Yes

Sponsor Visa

No

Skills

Good communication skills

Industry

Mechanical or Industrial Engineering

Description

As an Advanced Manufacturing Engineer I here at Honeywell, you will play a crucial role in ensuring the quality and efficiency of our manufacturing operations. You will be responsible for developing and implementing strategies to optimize production processes, driving continuous improvement initiatives, and collaborating with cross-functional teams to achieve operational excellence. With your expertise and leadership, you will contribute to the growth and success of our organization.
In this role, you will impact our manufacturing operations by optimizing production processes and driving continuous improvement initiatives. You will contribute to increased efficiency, reduced costs, and improved quality in our manufacturing operations. Your expertise will help us stay at the forefront of advanced manufacturing technologies and ensure that we deliver innovative and high-quality products to our customers. Your contributions will directly impact our bottom line and help us maintain our position as a global technology leader.

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Responsibilities
  • Design, develop, and implement new manufacturing assembly processes to build customer products.
  • As a technical focal point for the Cell, lead Root Cause and Corrective Action analyses, implement improvements to eliminate defects, improve product quality and yield
  • Assist in resolving supplier technical issues arising from deviation requests, design ambiguities and manufacturability at Honeywell facility
  • Lead products return related investigations, implement preventive measures, propose product design and manufacturing process improvements to eliminate escapes
  • Execute with support, capability of machines and process steps using Design of Experiments and statistical methods to ensure maximum utilization of critical resources, maximum throughput, minimum cost and capacity growth; involves integrating equipment, people, material flow, and information systems
  • Solve technical product, process, component, and related problems that affect the efficient operation and/or manufacture of products
  • Provide feedback to product designers on suitability of designs for manufacturability with supervision
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