Industrial Engineering Technician

What is an Industrial Engineering Technician?

Industrial Engineering Technicians assist industrial engineers in the design, development, testing, and optimization of production systems and processes. They play a crucial role in increasing efficiency, reducing costs, and improving the quality of products in manufacturing and other industries.

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How much does an Industrial Engineering Technician earn

According to the U.S. Bureau of Labor Statistics, typical income (in USD) is...

Bottom 10%Bottom 25%Median (average)Top 25%Top 10%
$46K
per year
$53K
per year
$65K
per year
$79K
per year
$98K
per year

Compared to other careers: Median is $15K above the national average.

What does an Industrial Engineering Technician do?

Work environment

Industrial Engineering Technicians typically work in manufacturing plants, warehouses, or offices. They may spend time on production floors analyzing processes and systems, or in office settings working on data analysis and process design. The role often involves collaboration with engineers, production staff, and management.

Quick task list

  • Assists in the design and implementation of production systems.
  • Analyzes production data to identify inefficiencies and recommend improvements.
  • Conducts time and motion studies to optimize workflow.
  • Assists with quality control and assurance processes.
  • Prepares reports and documentation on production processes.

Areas of specialization

  • Process Optimization: Focusing on improving and streamlining production processes.
  • Quality Assurance: Specializing in maintaining and improving product quality standards.
  • Supply Chain Management: Assisting in the optimization of supply chain and logistics processes.
  • Lean Manufacturing: Implementing lean principles to minimize waste and maximize efficiency.
  • Safety Management: Focusing on workplace safety and compliance with regulations.

Description

Industrial Engineering Technicians are integral in making production processes more efficient and cost-effective. They assist in analyzing current production methods, identifying inefficiencies, and suggesting improvements. This may include redesigning workflow, optimizing production schedules, and improving the use of resources. They use a variety of tools and techniques for data analysis, including statistical analysis software, CAD systems, and time-measurement tools.

A significant part of their work involves collaborating with industrial engineers and other professionals to implement changes in production processes. They often play a role in quality assurance, ensuring that the production processes meet set standards. Strong analytical skills, attention to detail, and the ability to communicate findings effectively are essential for this role.

Industrial Engineering Technicians need to adapt to various work environments and be comfortable working both on the production floor and in an office. They must be able to translate technical information into actionable recommendations and have a practical understanding of engineering principles and manufacturing processes.

Job Satisfaction

Sources of satisfaction

You might make a good Industrial Engineering Technician if you are...

Pros:

  • Active involvement in improving production and operational efficiency.
  • Opportunities to work in a variety of industries.
  • Potential for career growth and development in industrial engineering fields.

Cons:

  • The work can be demanding, requiring attention to detail and the ability to manage multiple tasks.
  • Working environments can vary, with time spent in both offices and on production floors.
  • The need to continually update skills to keep pace with technological advancements in manufacturing and engineering.

How to become an Industrial Engineering Technician

Typical education

An associate degree in industrial engineering technology or a related field is commonly required, which typically involves 2 years of post-secondary education. Some positions may benefit from additional certifications or specialized training.

High school preparation

Courses:

  • Mathematics, especially algebra, geometry, and statistics.
  • Science courses, particularly physics, to understand basic engineering principles.
  • Computer science classes to develop skills in data analysis and software.
  • Technical education courses, such as drafting or mechanics, for hands-on skills.

Extra-Curricular Activities:

  • Joining a robotics club or engineering club to gain practical experience in problem-solving and design.
  • Participating in science fairs or competitions related to engineering and technology.
  • Volunteering or interning in manufacturing settings or with local engineering firms to gain real-world exposure.

Preparation after high school

  • Enroll in a technical college or community college program focusing on industrial engineering technology or a related field.
  • Consider certification programs in areas such as lean manufacturing, Six Sigma, or quality control.
  • Seek internships or apprenticeships in manufacturing or industrial settings to gain practical, hands-on experience.

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