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Director Metering Engineer Jobs in Boca Raton, FL

Director Metering Engineer information

What does a Director Metering Engineer do?

A Director Metering Engineer oversees the design, implementation, and management of metering systems for utilities such as electricity, water, or gas. They lead teams responsible for ensuring accurate measurement, data collection, and compliance with industry standards. This role involves strategic planning, project management, and collaboration with other departments to optimize metering technologies and processes. The Director also stays updated on regulatory changes and technological advancements to enhance system efficiency and reliability.

What is the difference between Director Metering Engineer vs Metering Engineer?

AspectDirector Metering EngineerMetering Engineer
CredentialsBachelor's or higher in engineering, often with management experienceTechnical engineering degree or diploma, specialized in metering systems
Work EnvironmentLeadership role overseeing teams and projects in energy or utility companiesHands-on technical work, installation, and maintenance of metering equipment
Employer & IndustryUtilities, energy companies, large industrial firmsUtilities, energy providers, manufacturing plants
Search & Comparison IntentLeadership, management, strategic planning in meteringTechnical skills, system installation, troubleshooting

The main difference is that the Director Metering Engineer focuses on leadership, strategy, and overseeing metering projects, while the Metering Engineer handles technical installation and maintenance tasks. Both roles require relevant technical knowledge, but the director position involves higher-level management responsibilities.

What are the key skills and qualifications needed to thrive as a Director Metering Engineer, and why are they important?

To excel as a Director Metering Engineer, you need a strong background in electrical engineering, utility metering systems, and leadership, typically supported by a relevant engineering degree and significant industry experience. Familiarity with advanced metering infrastructure (AMI), SCADA systems, and certifications such as Professional Engineer (PE) are highly beneficial. Outstanding project management, strategic thinking, and communication skills set top candidates apart in this leadership role. These competencies ensure effective oversight of metering operations, compliance with regulatory standards, and successful implementation of metering technologies.

What engineers make $500,000 a year?

Highly experienced engineering managers, senior petroleum engineers, and specialized software engineers in certain industries can earn $500,000 or more annually. These roles often require advanced skills, certifications, and leadership responsibilities, typically in high-demand sectors like technology, oil and gas, or finance.

What engineers make $300,000 a year?

Senior engineers in specialized fields such as petroleum, aerospace, or software engineering can earn $300,000 or more annually, especially with extensive experience, advanced certifications, or leadership roles. Director-level metering engineers in energy or utility sectors may also reach this salary level, often requiring expertise in metering systems, industry regulations, and project management.

What is the highest paid type of engineer?

Among engineering roles, petroleum engineers and computer hardware engineers tend to have the highest average salaries, often exceeding $100,000 annually. Specialized fields such as aerospace, nuclear, and software engineering also offer high compensation, especially with advanced certifications and experience.

What is a metering engineer?

A metering engineer is a professional responsible for designing, installing, maintaining, and calibrating metering systems that measure energy, water, or gas consumption. They often work with specialized tools and may require certifications in instrumentation or engineering to ensure accurate data collection and compliance with industry standards.

What are the primary challenges faced by a Director Metering Engineer when managing large-scale utility metering projects?

A Director Metering Engineer often faces challenges related to integrating new metering technologies with legacy systems, ensuring regulatory compliance, and managing cross-departmental teams. Coordinating between field technicians, IT specialists, and regulatory bodies requires strong communication and project management skills. Additionally, staying current with industry standards and technological advancements is essential to ensure accurate data collection and system reliability. Proactive problem-solving and adaptability are key to overcoming these challenges and driving successful project outcomes.
What job categories do people searching Director Metering Engineer jobs in Boca Raton, FL look for? The top searched job categories for Director Metering Engineer jobs in Boca Raton, FL are:

Senior Electrical Engineer - Power Delivery &

BEOWULF ELECTRICITY & DATA LLC

West Palm Beach, FL • On-site

$104K - $135K/yr

Full-time

Posted 3 days ago


Job description

Position Summary

Serving as the owner’s technical lead for the medium- and high-voltage power that feeds our data centers, this role is focused on extracting power from a site, generating it on-site where needed, and delivering it to the data center to support fast go-to-market execution. Scope runs upstream of the white space — utility interconnection, transmission and substation infrastructure, on-site generation, and the full MV/HV delivery chain up to the point of use — rather than the critical power equipment inside the building. The engineer partners with development and acquisition teams during due diligence to assess and unlock power at prospective sites, owns design intent, directs external Engineers of Record (EORs) and design consultants, leads equipment procurement, and provides hands-on field oversight through construction, commissioning, and energization. The mandate is speed to power: sequencing interconnection, generation, and delivery so that megawatts are available to the data center as early as possible. This is a senior individual-contributor role — a hands-on technical expert who leads through engineering authority rather than direct reports. It calls for demonstrated experience making engineering decisions and overseeing this scope of work, backed by real field experience.

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Core Functions

· Lead electrical engineering decisions for the power feeding the data center across MV (typically 1–35 kV) and HV/transmission (35 kV and above) systems, including utility interconnection, transmission, substations, switchgear, transformers, and delivery topology up to the point of use.

· Develop and review single-line diagrams, design basis documents, equipment specifications, and key design deliverables for code compliance, constructability, and reliability.

· Direct and oversee Engineers of Record (EORs) and third-party design firms; review and approve their work, resolve technical gaps, and hold partners accountable to schedule and quality.

· Own equipment procurement for the power delivery and generation chain: write technical specifications, evaluate vendor proposals, and select long-lead equipment (power transformers, MV/HV switchgear, generators, protective relays) to protect the critical path to energization.

· Attend Factory Acceptance Tests (FATs), factory tours, and equipment inspections to verify quality, performance, and compliance before shipment — including periodic overseas travel for certain long-lead electrical equipment.

· Support utility interconnection process & coordination.

· Drive speed to power: own the power delivery critical path, sequence interconnection, on-site generation, and delivery infrastructure — including bridging and interim power strategies — and manage milestones, long-lead procurement timing, and project-controls coordination to make megawatts available to the data center as early as possible and accelerate go-to-market.

· Partner with development and acquisition teams during due diligence on prospective sites and properties — assessing power availability, interconnection feasibility, existing infrastructure, and brownfield or redevelopment reuse potential to inform acquisition decisions.

· Lead or review power system studies — load flow, short-circuit, protective device coordination, arc flash, and transient/stability analysis — to validate delivery and generation design.

· Develop and evaluate on-site and behind-the-meter power generation strategies — natural gas turbines and reciprocating engines, battery energy storage systems (BESS), renewables, and microgrid integration — spanning standby, prime, bridging, and primary generation, including islanding, paralleling, black-start, and grid-synchronization schemes.

· Support cost and value on the power delivery and generation scope: lead value-engineering efforts and evaluate manufacturers and lead times

· Specify and coordinate protection and controls, SCADA, and utility-grade metering for the delivery and generation systems, including protective relaying schemes, telemetry, and revenue metering.

· Design for maintainability and operability, and support the handoff to operations — coordinating O&M requirements, spare-parts strategy, and as-built documentation for long-term reliability.

· Provide field engineering support during construction, commissioning, energization, and troubleshooting of energized systems. Act as a technical authority during incident recovery procedures and root cause analysis (RCA) reporting.

Core Competencies

· Deep expertise in MV and HV power system design and operation, including substation design (AIS/GIS), power transformers, switchgear, and protective relaying.

· Strong command of power delivery reliability and redundancy models (N+1, 2N, 2N+1) applied to interconnection, substation, and generation infrastructure, and an understanding of how upstream power delivery supports data center availability targets (e.g., Uptime Institute Tier standards).

· Proven equipment procurement and vendor management capability, from specification through factory testing and delivery.

· In-depth knowledge of utility interconnection — ISO/RTO queue processes, interconnection studies (feasibility, system impact, facilities), interconnection agreements, network upgrades, and transmission/distribution service.

· On-site and behind-the-meter generation experience — gas turbines, reciprocating engines, BESS, renewables, and microgrids — including paralleling, islanding, black-start, and grid synchronization.

· Commercial and cost acumen — CapEx budgeting and estimating, value engineering, manufacturer and lead-time evaluation, and total-cost/life-cycle trade-off analysis.

· Familiarity with protection and controls, SCADA, and utility-grade metering, and with designing for operability and O&M handoff.

· Familiarity with reports from power system analysis software (ETAP, SKM Power*Tools, or EasyPower) and design tools (AutoCAD/Revit).

· Fluency in applicable codes and standards (NEC/NFPA 70, NFPA 70E, NESC, IEEE, ANSI C84.1, IEC).

· Field and construction experience, including commissioning and energization of MV/HV equipment.

· Brownfield or redevelopment expertise — assessing, repurposing, and upgrading existing electrical infrastructure on previously developed, industrial, or retired power generation and substation sites.

· Sound engineering judgment, risk assessment, and clear communication; able to manage multiple projects and external partners concurrently.

Qualifications

· Bachelor’s degree in electrical engineering or a related field (or equivalent practical experience); Professional Engineer (PE) license preferred.

· 10+ years of experience in electrical power systems, with a demonstrated focus on MV/HV, substations, power generation and power delivery.

· Demonstrated experience making engineering decisions and overseeing EORs / design consultants and equipment procurement, with strong emphasis placed on proven hands-on capability.

· Field experience is highly desired; the strongest candidates bring hands-on field experience in power delivery on power plants or substations, including commissioning, energization, and construction support of energized systems.

· Brownfield or redevelopment experience repurposing or upgrading existing infrastructure and previously developed sites.

· Background in data center, utility, mission-critical, or heavy industrial power environments.

· Direct experience navigating utility interconnection — ISO/RTO queues, interconnection studies, and interconnection/transmission agreements.

· Experience with on-site or behind-the-meter generation (gas turbines, reciprocating engines, BESS, renewables, or microgrids) is strongly preferred.

· Track record of cost ownership and value engineering — budgeting, manufacturer and lead-time evaluation, and total-cost trade-off analysis on major electrical scopes.

· Based in West Palm Beach, FL, with willingness to travel up to ~50% — including periodic overseas travel for Factory Acceptance Tests (FATs) and equipment inspections.