Senior Project Engineer (Saudi Arabia) Jeddah

Cummins Arabia

Requirements

Requires a Bachelor’s degree in Mechanical or Electrical Engineering and 8-10 years of experience in projects and commissioning. Proficiency in AutoCad, Project Management certification, and experience with power plants or low voltage systems are required.

Job Summary

Job Summary: 
This product focused position applies specialized knowledge of engineering
principles and design practices to create optimized design concepts and
mechanical design specifications considering application, cost, weight,
performance, reliability, durability, manufacturing, assembly, and
serviceability. This role effectively communicates the capability of a design
concept to meet cross-functional requirements including assessment of
alternative and competitive design concepts, and works effectively across
cross-functional disciplines to develop corporate and customer requirements
including those required to resolve product issues. 

Key Requirements:

8-10 years of experience in Projects and Commissioning

Team Management experience is preferred

Experience in Low Voltage Systems, Powergen, Power plants

College, university, or equivalent Bachelor’s degree in Mechanical/ Electrical
Engineering 

 Demonstrated track record of technical problem solving and quality decision
making. 

Knowledge of MS Office, AutoCad 

Project Management Certificate 

Key Responsibilities: 
Obtains input and leads the negotiation with cross-functional and
cross-discipline technical experts and senior-level designers to communicate the
component and subsystem design intent through a thorough Design Review package
to the Product Preceding Technology, (PPT), Value Package Introduction (VPI), or
Value Package Change Request (VPCR) team requiring a such holistic assessment of
various design concepts. 

Leads the design decision making in the areas of component and subsystem design
concept selection, concept optimization, and design specifications that impact
customers targeted to be served by a given Product Preceding Technology, (PPT),
Value Package Introduction (VPI), or Value Package Change Request (VPCR)
initiative. 

Applies and leads the execution of processes such as Critical Design Decisions,
System Design and Validation Consideration Checklist, Design Review and tools
such as iDFMEA, DVA, GD&T, CREO, ANSYS Workbench required to enable high quality
subsystem-level design decision making and design refinement. 

Provides independent leadership of smaller business impact projects or ownership
of complex components, products, systems or services with greater elements of
ambiguity over the senior or lead engineer level and with full accountability to
the project team.

 Delivers independent execution of established and emerging work processes and
systems, while still developing technology or product knowledge. Leads the
development and improvement of work processes and systems across a functional
discipline area within a business unit site. 

Coordinates and directs work amongst technicians and temporary student
employees, assists in the transfer of knowledge to lesser experienced engineers
through either indirect (scope of influence) or direct management of a small,
local group of engineers. 

Provides support and guidance to influence technical direction within a project
team and continues to develop proficiency in the competency areas critical to
success in the role. Operates as a recognized specialist in a discipline or
product area within the immediate team. 

Qualifications and Competencies: 
Competencies: Cross-Functional Design Integration – Translates the value package
requirements that include the voices of many stakeholders into virtual designs,
and communicates the capability of the design through an approved
cross-functional design review.

 Mechanical Design of Mechanical Systems – Acquires and applies an in-depth
understanding of mechanical systems through working knowledge that guides a
designer’s ability to create innovative and sound design concepts to meet
Cummins and customer expectations; designs for requirements of all lifecycle
stages by considering the customer requirements in different operating
environments to ensure a robust system. 

Mechanical Design Modeling and Analysis – Creates Computer Aided Design models
in accordance with Cummins’ standards to represent architectural or product
level system design concepts, and to enable completion of various system-level
computer analyses such as Dimensional Variation Analysis and Finite Element
Analysis. Product Problem Solving – Solves product problems using a process that
protects the customer; determines the assignable cause; implements robust,
data-based solutions; and identifies the systemic root causes and recommended
actions to prevent problem reoccurrence. 

System Requirements Engineering  – Uses appropriate methods and tools to
translate stakeholder needs into verifiable requirements to which designs are
developed; establishes acceptance criteria for the system of interest through
analysis, allocation and negotiation; tracks the status of requirements
throughout the system lifecycle; assesses the impact of changes to system
requirements on project scope, schedule, and resources; creates and maintains
information linkages to related artifacts. 

Product Platform Planning and Architecting – Creates and develops a holistic
product platform including key architectural feature and function variants
needed to align with market level product plans of future target markets;
generates alternative architectures traceable to the requirements and performs
trade-off analysis in collaboration with life-cycle stakeholders to ensure a
balanced and optimum platform; communicates and maintains traceable information
and plans executed by product development teams. 

Decision quality – Making good and timely decisions that keep the organization
moving forward. Drives results – Consistently achieving results, even under
tough circumstances. Communicates effectively – Developing and delivering
multi-mode communications that convey a clear understanding of the unique needs
of different audiences. Builds networks – Effectively building formal and
informal relationship networks inside and outside the organization. 

Resourcefulness – Securing and deploying resources effectively and efficiently.
Manages complexity – Making sense of complex, high quantity, and sometimes
contradictory information to effectively solve problems. 

 

Responsibilities

Leads the creation and optimization of mechanical design concepts and specifications while coordinating cross-functional teams to meet customer requirements. Manages complex components and projects, overseeing design reviews and the implementation of technical work processes.

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