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Microsystems Engineers in Washington

Microsystems Engineers in Washington

Want to work as a Microsystems Engineers in Washington? Below are the key facts. All engineers not listed separately. Excludes “Sales Engineers” (41-9031), “Locomotive Engineers” (53-4011), and “Ship Engineers” (53-5031).

What do Microsystems Engineers Make in Washington?

The microsystems engineers working in Washington, the median annual wage is $125,080 per year (or roughly $60.14/hour).Earnings range from $69,220 at the 10th percentile to $174,060 at the 90th percentile.

Wage Statistic Annual Hourly
10th percentile $69,220 $33.28
25th percentile $97,170 $46.72
Median (50th) $125,080 $60.14
75th percentile $150,530 $72.37
90th percentile $174,060 $83.68
Salary ranges for Microsystems Engineers in Washington

Location quotient — how concentrated this career is in Washington relative to the national average — is 0.91.

National Wage Comparison

Nationally, microsystems engineers earn a median of $104,558 per year ($50.27/hour), higher than the Washington median.

Microsystems Engineers earnings in Washington vs. the national average

Employment Outlook

Nationally, total employment in this occupation is 41,930 microsystems engineers across the United States. In Washington alone, about 3,150 people work in this role. That’s more than the typical state, which employs around 1,430 microsystems engineers.

Microsystems Engineers in Washington vs. the average state Forecasted number of jobs for Microsystems Engineers

Top Washington Metros for Microsystems Engineers

These are the Washington metros with the most microsystems engineers in Washington.

Metro Area Number Employed Annual Median Salary
Seattle-Tacoma-Bellevue, WA 1,960 $121,350
Bremerton-Silverdale-Port Orchard, WA 390 $140,130
Kennewick-Richland, WA 300 $139,080
Spokane-Spokane Valley, WA 70 $109,750
Bellingham, WA 50 $113,770
Walla Walla, WA 50 $113,030

Top States for Microsystems Engineers Employment

The table below shows the states where the most microsystems engineers work.

State Number Employed
California 26,500
Texas 9,900
Florida 9,120
Louisiana 7,630
Maryland 6,670
Michigan 6,630
Virginia 5,980
Ohio 5,970
New York 5,020
Pennsylvania 4,710
Tennessee 4,610
North Carolina 4,230
Georgia 3,970
New Jersey 3,910
Alabama 3,370
Washington 3,150
Illinois 3,010
Massachusetts 2,930
Arizona 2,660
District of Columbia 2,640

Highest-Paying States for Microsystems Engineers

These states pay the most for microsystems engineers.

State Annual Median Salary
District of Columbia $167,270
Alabama $146,480
New Mexico $142,520
Virginia $142,110
Wyoming $139,010
Maryland $135,990
Alaska $132,410
Massachusetts $132,020
New Jersey $131,960
Rhode Island $131,830

Skills

Top microsystems engineers skills, rated on an importance scale of 0 to 5:

Reading Comprehension  4.0 / 5
0
5
Critical Thinking  4.0 / 5
0
5
Active Listening  4.0 / 5
0
5
Complex Problem Solving  3.9 / 5
0
5
Writing  3.8 / 5
0
5
Systems Analysis  3.8 / 5
0
5

Knowledge Areas

Important knowledge areas for this occupation, rated on an importance scale of 0 to 5:

Computers and Electronics  4.6 / 5
0
5
Engineering and Technology  4.6 / 5
0
5
Mathematics  4.1 / 5
0
5
Physics  4.0 / 5
0
5
Design  3.9 / 5
0
5
English Language  3.5 / 5
0
5

Abilities

Top abilities for microsystems engineers, rated on an importance scale of 0 to 5:

Written Comprehension  4.1 / 5
0
5
Oral Comprehension  4.1 / 5
0
5
Inductive Reasoning  3.9 / 5
0
5
Oral Expression  3.9 / 5
0
5
Deductive Reasoning  3.9 / 5
0
5
Problem Sensitivity  3.8 / 5
0
5

Daily Tasks

Common tasks include:

  • Create schematics and physical layouts of integrated microelectromechanical systems (MEMS) components or packaged assemblies consistent with process, functional, or package constraints.
  • Investigate characteristics such as cost, performance, or process capability of potential microelectromechanical systems (MEMS) device designs, using simulation or modeling software.
  • Create or maintain formal engineering documents, such as schematics, bills of materials, components or materials specifications, or packaging requirements.
  • Conduct analyses addressing issues such as failure, reliability, or yield improvement.
  • Plan or schedule engineering research or development projects involving microelectromechanical systems (MEMS) technology.
  • Propose product designs involving microelectromechanical systems (MEMS) technology, considering market data or customer requirements.
  • Develop formal documentation for microelectromechanical systems (MEMS) devices, including quality assurance guidance, quality control protocols, process control checklists, data collection, or reporting.
  • Communicate operating characteristics or performance experience to other engineers or designers for training or new product development purposes.
  • Evaluate materials, fabrication methods, joining methods, surface treatments, or packaging to ensure acceptable processing, performance, cost, sustainability, or availability.
  • Refine final microelectromechanical systems (MEMS) design to optimize design for target dimensions, physical tolerances, or processing constraints.
  • Conduct harsh environmental testing, accelerated aging, device characterization, or field trials to validate devices, using inspection tools, testing protocols, peripheral instrumentation, or modeling and simulation software.
  • Develop or file intellectual property and patent disclosure or application documents related to microelectromechanical systems (MEMS) devices, products, or systems.

Work Activities

  • Making Decisions and Solving Problems
  • Working with Computers
  • Getting Information
  • Establishing and Maintaining Interpersonal Relationships
  • Analyzing Data or Information
  • Thinking Creatively
  • Drafting, Laying Out, and Specifying Technical Devices, Parts, and Equipment
  • Processing Information
  • Communicating with Supervisors, Peers, or Subordinates
  • Updating and Using Relevant Knowledge
  • Documenting/Recording Information
  • Organizing, Planning, and Prioritizing Work

Tools & Technology

Software and systems commonly involved: Hot technologies: Adobe Photoshop, Apple macOS, Autodesk AutoCAD, Bash

What Major Will Prepare You For This Career?

Several college majors map to this occupation:

Careers similar to microsystems engineers include:

Also Known As

Applications Engineer, Arrhythmia Engineer, Control Systems Engineer, Design Engineer, Device Engineer, Engineer, GaN Device Engineer (Gallium Nitride Device Engineer), MEMS Device Scientist (Microelectromechanical Systems Device Scientist), MEMS Engineer (Microelectromechanical Systems Engineer), MEMS Integration Engineer (Microelectrical Mechanical Integration Engineer), MEMS Process Engineer (Microelectromechanical Systems Process Engineer), Medical Device Engineer, Microelectronics Engineer, Microsystems Engineer, Mobile Device Engineer.

References

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