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Manager Microgrid Engineer Jobs in Florida (NOW HIRING)

Senior Electrical/I&C Design Engineer

Tampa, FL · On-site

$98K - $132K/yr

Experience in battery storage and microgrid projects is also beneficial. It is expected that the ... Manage, lead and coordinate the work of the design team through the schematic design development ...

Senior Electrical/I&C Design Engineer

Tampa, FL · On-site

$98K - $132K/yr

Experience in battery storage and microgrid projects is also beneficial. It is expected that the ... Manage, lead and coordinate the work of the design team through the schematic design development ...

Experience in battery storage and microgrid projects is also beneficial. It is expected that the ... Manage, lead and coordinate the work of the design team through the schematic design development ...

... manage on-site power solutions. In addition, e2Companies has been named one of the Best Places to ... microgrids * Experience with CHP systems and utility-interactive renewable systems * Familiarity ...

Grid Modernization Engineering Lead

Tampa, FL · On-site

$95K - $126K/yr

... Engineer Job Duties Include: * Technical work, including but not limited to engineering design ... microgrids / DERs from feasibility to implementation, inclusive of executing/managing projects. If ...

Grid Modernization Engineering Lead

Orlando, FL · On-site

$95K - $125K/yr

... Engineer Job Duties Include: * Technical work, including but not limited to engineering design ... microgrids / DERs from feasibility to implementation, inclusive of executing/managing projects. If ...

Showing results 41-60

Manager Microgrid Engineer information

What does a manager microgrid engineer do?

A Manager Microgrid Engineer oversees the design, development, and implementation of microgrid systems, which are localized energy grids that can operate independently or in conjunction with the main power grid. They lead engineering teams, manage projects, and ensure that microgrid solutions meet technical, regulatory, and sustainability requirements. Additionally, they often coordinate with clients, stakeholders, and other departments to ensure successful project delivery and optimal system performance.

What are some common challenges faced by manager microgrid engineers in overseeing project implementation?

Manager Microgrid Engineers often encounter challenges such as coordinating multidisciplinary teams, balancing project timelines with regulatory requirements, and ensuring seamless integration of diverse energy resources. They must also address technical complexities in system design, manage stakeholder expectations, and adapt to rapidly evolving technologies. Strong communication and project management skills are essential for overcoming these challenges and delivering reliable, efficient microgrid solutions.

What are the key skills and qualifications needed to thrive as a manager microgrid engineer, and why are they important?

To thrive as a Manager Microgrid Engineer, you need a strong background in electrical engineering, power systems, and project management, often supported by a bachelor's or master's degree and Professional Engineer (PE) licensure. Familiarity with SCADA systems, grid simulation software (such as ETAP or HOMER), and renewable energy integration is typically required. Leadership, effective communication, and problem-solving skills are crucial for managing teams and coordinating multidisciplinary projects. These competencies ensure the successful design, implementation, and operation of efficient, reliable microgrid solutions in evolving energy markets.

What is the difference between Manager Microgrid Engineer vs Microgrid Engineer?

AspectManager Microgrid EngineerMicrogrid Engineer
CredentialsBachelor's or Master's in Electrical Engineering, Project Management certificationsBachelor's or Master's in Electrical or Power Systems Engineering
Work EnvironmentOversees teams, manages projects, strategic planningDesigns, develops, and tests microgrid systems
Industry UsageLeadership roles in energy companies, consulting firmsTechnical roles in renewable energy and microgrid projects

The Manager Microgrid Engineer typically holds leadership responsibilities, overseeing project teams and strategic planning, while the Microgrid Engineer focuses on technical design and system development. Both roles require similar technical credentials, but differ in scope and seniority within the industry.

What are the most commonly searched types of Microgrid Engineer jobs in Florida?

The most popular types of Microgrid Engineer jobs in Florida are:

What are popular job titles related to Manager Microgrid Engineer jobs in Florida?

For Manager Microgrid Engineer jobs in Florida, the most frequently searched job titles are:

What job categories do people searching Manager Microgrid Engineer jobs in Florida look for?

The top searched job categories for Manager Microgrid Engineer jobs in Florida are:

What cities in Florida are hiring for Manager Microgrid Engineer jobs?

Cities in Florida with the most Manager Microgrid Engineer job openings:

Director, Energy Infrastructure

BEOWULF ELECTRICITY & DATA LLC

West Palm Beach, FL • On-site

$200K/yr

Full-time

Posted 2 days ago

New


Job description

Position Overview

The Director of Energy Infrastructure is responsible for the planning, development, engineering, procurement, construction, and commissioning of all owner-controlled energy infrastructure supporting hyperscale, AI/HPC, and mission-critical data center campuses.

This executive leadership role oversees onsite power generation, substations, high-voltage electrical infrastructure, natural gas systems, battery energy storage, renewable energy integration, microgrids, and emerging technologies including Small Modular Reactors (SMRs). The Director ensures that all energy infrastructure is delivered safely, reliably, on schedule, and at the lowest lifecycle cost while supporting aggressive development timelines.

Working closely with Development, Utility Interconnection, Engineering, Preconstruction, EPC contractors, utilities, equipment OEMs, and Operations, the Director establishes the long-term power generation strategy for multi-gigawatt data center portfolios.

Key Responsibilities

Energy Infrastructure Strategy

· Develop the long-term energy infrastructure / power generation strategy supporting a portfolio of hyperscale AI and cloud data centers.

· Evaluate centralized versus distributed generation solutions.

· Develop scalable infrastructure standards for campuses ranging from 100 MW to 2+ GW.

· Evaluate lifecycle cost, reliability, carbon intensity, and operational flexibility across competing technologies.

· Support site selection by evaluating energy infrastructure opportunities and constraints.

Onsite Power Generation

Lead development and execution of onsite generation projects, including:

· Natural gas reciprocating engine plants

· Simple-cycle gas turbine facilities

· Combined-cycle power plants

· Dual-fuel generation systems

· Backup generation systems

· Black start capability

· Island mode operations

· Future hydrogen-ready generation

· Small Modular Reactors (SMRs)

Responsibilities include technology selection, owner's engineering oversight, EPC management, permitting support, commissioning, and operational readiness.

Electrical Infrastructure

Provide executive oversight of:

· Utility delivery substations

· Owner-owned substations

· Medium-voltage distribution systems

· High-voltage switchyards

· Gas-insulated substations (GIS)

· Air-insulated substations (AIS)

· Main transformers

· Generator step-up transformers

· Medium-voltage switchgear

· Protection and control systems

· SCADA integration

· Energy management systems (EMS)

Fuel Infrastructure

Lead development of:

· Natural gas pipeline interconnections

· Pressure regulation stations

· Metering facilities

· Gas compression (where applicable)

· LNG backup systems

· Fuel redundancy planning

· Hydrogen readiness assessments

· Fuel supply agreements

Coordinate with pipeline operators, local distribution companies (LDCs), and interstate transmission providers.

Energy Storage & Renewables

Oversee evaluation and implementation of:

· Battery Energy Storage Systems (BESS)

· Solar generation

· Wind integration

· Renewable Power Purchase Agreements (PPAs)

· Hybrid generation systems

· Microgrids

· Peak shaving

· Demand response

· Grid services

EPC & Project Delivery

Lead all owner-side activities related to power generation EPC contracts.

Responsibilities include:

· Scope development

· EPC procurement

· Technical bid evaluations

· Contract negotiations

· Cost control

· Schedule management

· Change management

· Quality assurance

· Commissioning oversight

· Commercial operation readiness

Equipment Procurement

Oversee procurement strategy for long-lead power generation equipment, including:

· Gas turbines

· Reciprocating engines

· Steam turbines

· HRSGs

· Transformers

· Switchgear

· Breakers

· Cooling systems

· Battery storage systems

· Inverters

· Compressors

· Gas equipment

· Protection systems

Develop procurement strategies that reduce schedule risk while optimizing capital cost.

Cross-Functional Leadership

Partner closely with:

· Project Development

· Utility Interconnection

· Engineering

· Preconstruction

· Construction

· Operations

· Environmental

· Permitting

· Finance

· Legal

· Procurement

· Commercial Teams

Coordinate all energy infrastructure milestones with overall campus development schedules.

Risk Management

Identify and mitigate project risks related to:

· Generation technology

· Fuel availability

· Equipment supply chain

· Long-lead procurement

· Environmental permitting

· Utility coordination

· EPC execution

· Commissioning

· Reliability

· Operational readiness

· Capital cost escalation

Develop executive-level reporting and mitigation plans.

Financial Leadership

Support:

· CAPEX budgeting

· Lifecycle cost analysis

· Financial modeling

· Value engineering

· Technology selection

· EPC commercial negotiations

· Cost forecasting

· Investment committee presentations

Qualifications

Education

· Bachelor's degree in Electrical Engineering, Mechanical Engineering, Civil Engineering, Energy Systems, or a related technical field.

· Master's degree or MBA preferred.

· Professional Engineer (PE) license preferred.

Experience

· 12+ years leading development or delivery of large energy infrastructure projects.

· Experience delivering projects exceeding $250 million in capital value.

· Direct experience with utility-scale power generation, substations, transmission infrastructure, or large industrial energy systems.

· Experience supporting hyperscale data centers, utilities, IPPs, EPC firms, or major industrial facilities.

· Demonstrated leadership of multidisciplinary engineering and construction teams.

Preferred Technical Experience

Candidates should possess experience in several of the following areas:

· Gas-fired power generation

· Combined-cycle plants

· Reciprocating engine facilities

· Battery Energy Storage Systems (BESS)

· Utility substations

· Transmission systems

· Medium-voltage distribution

· Protective relaying

· SCADA and EMS

· Natural gas pipeline infrastructure

· Renewable energy integration

· Microgrids

· Reliability engineering

· Commissioning

· Owner's engineering

· EPC contracting

· FERC and NERC compliance

· Data center electrical infrastructure

· AI/HPC campus power systems

· Small Modular Reactor (SMR) development (preferred)

Core Competencies

· Strategic planning

· Infrastructure development

· Energy systems engineering

· Commercial negotiation

· EPC management

· Capital project execution

· Financial acumen

· Risk management

· Cross-functional leadership

· Executive communication

· Decision making

Success Metrics

The Director of Energy Infrastructure will be measured by:

· On-time delivery of all energy infrastructure milestones.

· Safe and successful commissioning of generation and electrical systems.

· Achievement of required reliability and availability targets.

· Effective management of capital budgets and schedules.

· Successful procurement of long-lead equipment.

· Readiness of energy infrastructure to support data center commissioning.

· Minimization of lifecycle operating costs.

· Successful integration with utility infrastructure and campus operations.

· Development of scalable energy standards across the project portfolio.