Google

Data Center Engineer, Electrical Engineering

Google Austin, Texas, United States · $102K–$144K/yr

Software Development · 10,001+ employees

4 h ago
Mid (2-5 yrs) Full-time United States
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About the role

Define data center system-level architecture and research and development while establishing operations and maintenance procedures. Conduct engineering analysis and ensure all designs and installations meet strict operational and safety requirements.

What they look for

Electrical Engineering Power Engineering Medium Voltage Systems Mission Critical Facility Design Substations Switchgear Emergency Power Systems Power Monitoring Electrical Protection SCADA Data Center Infrastructure Transformers Generators Fire Safety Systems Security Monitoring Systems Project Implementation

Requirements

Requires a bachelor's degree in Electrical or Power Engineering and a Professional Engineer (PE) license. Candidates must have at least one year of experience in mission-critical facility design and medium voltage systems.

Benefits

Bonus Equity Health Insurance

Full description

Minimum qualifications:

  • Bachelor's degree in Electrical Engineering, Power Engineering, a related technical field, or equivalent practical experience.
  • Professional Engineer (PE) license.
  • 1 year of experience in mission critical facility design and construction environments.
  • 1 year of experience with medium voltage systems.

Preferred qualifications:

  • Master's degree in Engineering, Business or other relevant fields or a Professional Engineering (PE) license.
  • Experience in estimating, electrical design, operation, and commissioning of substations, switchgear, ATP/ATS, emergency power systems and their control systems, power monitoring, and electrical protection.
  • Experience in design, construction, and commissioning of high voltage substations, medium or low voltage electrical distribution systems, AC/DC systems, and associated power management or SCADA tools.
  • Experience working with data center equipment and environments (e.g., switchgear, generators, transformers, controls, security monitoring systems, fire safety systems).

About the job:

Our thirst for technology is a part of everything we do. The Data Center Engineering team takes the physical design of our data centers into the future. Our lab mirrors a research and development department -- cutting-edge strategies are born, tested and tested again. Along with a team of great minds, you take on complex topics like how we use power or how to run state-of-the-art, environmentally-friendly facilities. You're a visionary who optimizes for efficiencies and never stops seeking improvements -- even small changes that can make a huge impact. You generate ideas, communicate recommendations to senior-level executives and drive implementation alongside facilities technicians.

With your technical expertise, you ensure compliance with codes and standards, develop infrastructure improvements and serve as an expert in your specialty (e.g., cooling, electrical).

Behind everything our users see online is the architecture built by the Technical Infrastructure team to keep it running. From developing and maintaining our data centers to building the next generation of Google platforms, we make Google's product portfolio possible. We're proud to be our engineers' engineers and love voiding warranties by taking things apart so we can rebuild them. We keep our networks up and running, ensuring our users have the best and fastest experience possible.

Individual pay is determined by factors including job-related skills, experience, and relevant education or training.

US: $102000 - $144000 (USD) + 15% bonus target + equity + benefits

Learn more about benefits at Google. Responsibilities:

  • Define data center system-level, product architecture, and Research and Development, while helping to develop operations and maintenance procedures for systems/processes.
  • Conduct engineering analysis and research designs and methods of data center equipment and facilities.
  • Ensure designs and installations meet requirements (e.g., predicted cooling, structural, operational concerns, etc.).