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Infrastructure Solutions Engineer Jobs in Washington

Senior Solution Engineer

Ashburn, VA ยท On-site

$56.50 - $72.75/hr

Zayo's communications infrastructure solutions include dark fiber, private data networks ... Zayo Senior Solutions Engineers are critical to driving mutual success for Zayo and our customers.

Solve complex problems with IT infrastructure, application design, development, and user ... solution engineering experience * Active Top Secret Security Clearance * Programming experience ...

Senior Solutions Engineer - SLED

Washington, DC ยท On-site +1

$171K - $205K/yr

Cloudera Solutions Engineers are the technical leaders in the sales account team. They are ... Private cloud infrastructure and platforms (including distributed container platforms, such as ...

Cloud Solutions Engineer

Washington, DC ยท On-site

$63.25 - $84.50/hr

Overview The Cloud Solutions Engineer is responsible for implementing and managing cloud and on-premises IT infrastructure, with a primary focus on Microsoft Azure and Microsoft Entra ID. Reporting ...

Showing results 41-60

Infrastructure Solutions Engineer information

What is an infrastructure solutions engineer?

Infrastructure Solutions Engineers are professionals who design, implement, and manage the foundational technology systems that support an organization's operations. They focus on ensuring that hardware, software, networks, and cloud services work together seamlessly to meet business needs. Their responsibilities often include evaluating technology requirements, developing scalable infrastructure solutions, troubleshooting complex issues, and optimizing system performance. By bridging the gap between technical requirements and business goals, Infrastructure Solutions Engineers play a crucial role in maintaining efficient and secure IT environments.

What are some common challenges infrastructure solutions engineers face when integrating new technologies into existing systems?

Infrastructure Solutions Engineers often encounter challenges related to compatibility and scalability when introducing new technologies into established IT environments. These challenges can include ensuring seamless integration with legacy systems, minimizing downtime during transitions, and maintaining robust security throughout the process. Successful engineers collaborate closely with network administrators, developers, and security teams to plan and test integrations, troubleshoot unexpected issues, and document solutions. Proactive communication and a thorough understanding of both old and new systems are key to overcoming these hurdles.

What are the key skills and qualifications needed to thrive as an infrastructure solutions engineer, and why are they important?

To thrive as an Infrastructure Solutions Engineer, you need a strong background in systems architecture, network administration, and cloud computing, often supported by a degree in computer science or a related field. Familiarity with tools like VMware, AWS, Azure, scripting languages, and certifications such as CompTIA Network+ or AWS Certified Solutions Architect is typically required. Strong problem-solving abilities, communication skills, and the ability to collaborate effectively make someone stand out in this role. These competencies ensure that complex infrastructure solutions are designed, implemented, and maintained efficiently to meet organizational needs.

What is the difference between Infrastructure Solutions Engineer vs Network Engineer?

AspectInfrastructure Solutions EngineerNetwork Engineer
CertificationsCCNA, Cisco certifications, cloud certificationsCCNA, CCNP, Cisco certifications
Work EnvironmentDesigning and implementing infrastructure solutions, working with cloud and on-premise systemsManaging and maintaining network hardware, troubleshooting network issues
Industry UsageIT, cloud providers, enterprise infrastructureTelecommunications, enterprise IT, data centers

While both roles involve networking and infrastructure, the Infrastructure Solutions Engineer focuses on designing comprehensive infrastructure solutions, including cloud integration, whereas the Network Engineer primarily manages and troubleshoots network hardware and connectivity. The roles often overlap but differ in scope and focus.

How much do infrastructure solutions engineers get paid?

Infrastructure Solutions Engineers typically earn a median annual salary ranging from $80,000 to $130,000, depending on experience, location, and certifications. Senior roles or those with specialized skills in cloud platforms or networking can earn higher salaries, often exceeding $150,000 annually.

What are popular job titles related to Infrastructure Solutions Engineer jobs in Washington?

For Infrastructure Solutions Engineer jobs in Washington, the most frequently searched job titles are:

What job categories do people searching Infrastructure Solutions Engineer jobs in Washington look for?

The top searched job categories for Infrastructure Solutions Engineer jobs in Washington are:

What cities in Washington are hiring for Infrastructure Solutions Engineer jobs?

Cities in Washington with the most Infrastructure Solutions Engineer job openings:

Infographic showing various Infrastructure Solutions Engineer job openings in Washington as of August 2026, with employment types broken down into 82% Full Time, 13% Part Time, and 5% Contract. Highlights an 78% Physical, 3% Hybrid, and 19% Remote job distribution.

Sales Engineer - Data Center Infrastructure

Worldwide Mission Critical LLC

Chantilly, VA โ€ข On-site

$111K - $145K/yr

Full-time

Posted 18 days ago


Job description

Description:

This position serves as the primary technical advisor supporting potential tenants, including hyperscale cloud, neoscaler, and artificial intelligence (AI) companies, along with their high performance computing (HPC) requirements, throughout the presales lifecycle for Starwood Digital Ventures (SDV) and its operating subsidiary, Worldwide Mission Critical (WWMC). The Sales Engineer partners closely with Sales, Product, Engineering, Design, Construction, Operations, Legal, and Delivery teams to develop scalable colocation and data center infrastructure solutions that align tenant technical requirements with commercial objectives. The role owns the technical solution from initial discovery through contract execution, and is accountable for feasibility, compliance, and a successful handoff to the project delivery team.

Essential Responsibilities and Duties

A. Technical Sales Leadership

• Serve as the technical lead during tenant engagements and sales pursuits.

• Partner with and support SDV and WWMC Executives, helping carry technical sales conversations throughout the pursuit.

• Translate tenant business objectives into technical infrastructure solutions.

• Establish credibility as a trusted advisor for current and future hyperscale cloud, neoscaler, and AI tenants.

• Lead technical discussions with tenant representatives, subject matter experts (SMEs), engineers, and tenant executive stakeholders.

• Support strategic account planning for key tenants.

B. Tenant Discovery and Requirements Gathering

• Stay current with tenant technical design requirements across infrastructure, structural, power, cooling, networking, security, and operations.

• Capture current state and future state infrastructure requirements, including growth projections, rack densities, and geographic locations of interest for future expansion.

• Identify outlier requirements that fall outside WWMC standards early in the sales cycle.

C. Solution Design

Assist the design team in designing both standard and customized data center solutions across Starwood's sites, aligned with the following disciplines.

Space: buildings and land plots.

Power Infrastructure: utility feeds, power topology such as Distributed Redundant (DR), Block Redundant (BR), 2N, and 2N+2 configurations, generator redundancy, power to the pod design, centralized versus decentralized UPS, and cooling and pump power redundancy.

Cooling: air cooled versus water cooled requirements per environment, high density deployments, and liquid cooling readiness including direct to chip (D2C) design and coolant distribution unit (CDU) strategy.

Connectivity: network power and cooling requirements, external and internal pathway requirements, structured cabling, fiber pathways, meet me room (MMR) architecture, and diverse entry facilities.

Security: physical security, access control, closed circuit television (CCTV), visitor management, and compliance controls.

BMS: Building Management System (BMS) and Electrical Power Monitoring System (EPMS) integration, including how tenants want to ingest critical infrastructure data and alarms.

D. Technical Proposal Development

• Respond to technical portions of tenant proposals, including solution narratives.

• Support pricing and commercial proposals in partnership with Sales and Finance.

• Ensure technical accuracy across all tenant facing deliverables.

E. RFI, RFP, and RFQ Support

Own technical responses for Requests for Information (RFI), Requests for Proposal (RFP), Requests for Quote (RFQ), due diligence questionnaires, technical compliance matrices, security questionnaires, sustainability questionnaires, and AI infrastructure assessments. Coordinate responses across Engineering, Operations, Construction, Product, and Legal.

F. Engineering and Cross Functional Coordination

• Collaborate with Data Center Design, Construction, Development, Engineering, Commissioning, and Operations to validate technical feasibility before commitments are made to tenants.

• Project manage the completion of tenant qualification documents, including Owner's Performance Requirements exhibits, Request for Qualifications capability matrices, and Technical Due Diligence (TDD) checklists, coordinating input across engineering, construction, operations, security, and other technical disciplines.

G. Capacity Planning

• Evaluate available inventory and recommend deployment strategies.

• Support campus expansion planning and evaluate power availability and cooling capacity.

• Coordinate phased tenant growth and support reservation planning for hyperscale deployments.

H. Commercial Support

• Partner with Executive Sales leaders to develop solution pricing assumptions and validate technical costs.

• Support contract and lease negotiations, and review tenant redlines affecting technical commitments.

• Explain the commercial impact of design decisions to internal and tenant stakeholders.

I. Hyperscale, Neoscaler, and AI/HPC Tenant Support

Support large scale deployments for hyperscale cloud, neoscaler, and AI tenants, involving multi megawatt campuses, build to suit facilities, powered shell solutions, wholesale colocation, campus expansions, AI infrastructure, graphics processing unit (GPU) deployments, high density compute, and multi region deployments. Coordinate across internal teams so that tenant requirements align with construction schedules and delivery milestones, including current and upcoming GPU platform generations such as NVIDIA Blackwell (GB200 and GB300 Ultra), Vera Rubin, and Feynman.

J. Tenant Success and Delivery Support

Support post contract activities, including technical kickoff meetings, phase turnovers, design validation, tenant onboarding, deployment planning, design change management, technical issue resolution, and expansion and future growth planning.

K. Market Intelligence

Monitor competitor offerings and emerging technologies, identify tenant trends, and provide feedback to Product Management to support go to market initiatives and service enhancements.

Requirements:

Required Qualifications

• Bachelor's degree in Mechanical Engineering, Electrical Engineering, or a related technical discipline, or equivalent practical experience in data center design, construction, or operations.

• A minimum of 3 to 5 years of experience in data center design, construction, commissioning, or operations, presales engineering, or a comparable technical tenant facing role.

• Prior experience working for a data center builder, developer, or colocation provider, in a role that directly supported hyperscale, neoscaler, or AI tenants.

• Experience supporting hyperscale, neoscaler, and AI or HPC tenant deployments, and current generation graphics processing unit (GPU) platforms.

• Working knowledge of critical infrastructure systems, including UPS, switchgear, generators, automatic transfer switch (ATS) and static transfer switch (STS) systems, and PDUs.

• Working knowledge of data center cooling systems, including computer room air handlers (CRAH), computer room air conditioners (CRAC), fan walls (FW), chillers, cooling towers, primary chilled water loops, coolant distribution units (CDUs), and direct to chip (D2C) liquid cooling.

• Demonstrated ability to read and mark up electrical and mechanical single line drawings and floor plans.

• Strong verbal and written communication skills, and comfort presenting to tenant executives, architects, and technical stakeholders.

• Proficiency with AutoCAD, Bluebeam, and the Microsoft Office suite.

Preferred Qualifications

• Professional Engineer (PE) license.

• A data center industry certification, such as the Certified Data Center Professional (CDCP), Certified Data Center Specialist (CDCS), or Certified Data Center Design Professional (CDCDP), or the Accredited Tier Designer (ATD) certification offered through the Uptime Institute.

• Direct to chip liquid cooling experience, including CDU strategy, coolant distribution loop architecture, glycol chemistry, and leak detection, and experience with demarcation (DMARC) point structuring by tenant type.

• Familiarity with compliance and security frameworks relevant to hyperscale, neoscaler, and AI tenants, including ISO 27001, System and Organization Controls (SOC) 1 and SOC 2, Payment Card Industry Data Security Standard (PCI DSS), Health Insurance Portability and Accountability Act (HIPAA), and the Federal Risk and Authorization Management Program (FedRAMP), where applicable.

• Familiarity with industry design standards such as Uptime Institute Tier Standards, the ANSI/TIA 942 data center standard, BICSI, ASHRAE, and NFPA.