Full-Time

Senior Construction Quality Coordinator

Deadline 7/24/27
Haskell

Haskell

1,001-5,000 employees

Global design-build and EPC services

No salary listed

Frisco, TX, USA + 1 more

More locations: Ridgeland, MS, USA

In Person

Travel is required nationwide, with over 50% of time spent at project sites.

Category
Facilities Operations (1)
Required Skills
Microsoft Office
Word/Pages/Docs
Quality Assurance (QA)
Excel/Numbers/Sheets
Microsoft Outlook

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Requirements
  • The candidate must have 0-3 years of data center experience.
  • The candidate must have 8+ years of experience in civil, structural, architectural, mechanical, electrical, or plumbing work.
  • The candidate must have a high school diploma.
  • The candidate must have 2+ years of construction quality, inspection, or testing experience.
  • The candidate must be able to analyze and accurately interpret building construction documents and related reports.
  • The candidate must be skilled in leading preconstruction meetings to establish quality benchmarks and inspection protocols.
  • The candidate must be competent in evaluating construction progress at designated milestones.
  • The candidate must be able to collaborate with client quality assurance teams and guide on-site inspectors to uphold testing and inspection standards.
  • The candidate must have strong interpersonal and communication skills.
  • The candidate must have effective organizational abilities to manage and prioritize multiple tasks concurrently.
  • The candidate must have excellent written and verbal communication proficiency.
  • The candidate must have meticulous attention to detail and commitment to thorough follow-up.
  • The candidate must be experienced in using Microsoft Office programs, including Word, Excel, PowerPoint, and Outlook.
  • The candidate must be willing and able to travel extensively, with over 50% of time spent at project sites.
  • The candidate must be able to stand, walk, stoop, kneel, crouch, and manipulate light to medium weights of 10-50 pounds, and must have sufficient visual acuity, hand-eye coordination, and arm, hand, and finger dexterity to operate equipment and read application or form information.
Responsibilities
  • The coordinator monitors all quality activities on assigned projects and ensures compliance with the Quality Implementation Plan.
  • The coordinator participates in design-phase activities and document reviews.
  • The coordinator conducts preconstruction conferences, first-work-in-place inspections, and periodic inspections to verify compliance with design documents.
  • The coordinator promotes the use of materials, finishes, and details with strong long-term quality performance.
  • The coordinator initiates the Quality Implementation Plan on every assigned project.
  • The coordinator conducts design quality kick-off meetings.
  • The coordinator ensures design reviews are completed and signed off at 30% and 100%.
  • The coordinator lists quality risks and develops mitigation plans.
  • The coordinator personally reviews final documents on assigned projects.
  • The coordinator ensures geotechnical, concrete, and envelope reviews are held and performs geotechnical report reviews.
  • The coordinator advises the Project Director, Project Manager, and architectural/engineering design principals on critical related information.
  • The coordinator conducts construction quality kick-off meetings.
  • The coordinator participates in selecting and evaluating independent testing laboratories for the construction phase.
  • The coordinator develops budgets, administers contracts, and monitors scheduled laboratory reports, field activities, tests, and inspections.
  • The coordinator distributes test results to appropriate design and quality assurance team members.
  • The coordinator finalizes quality risks and develops mitigation plans.
  • The coordinator works with the Project Manager and Superintendent to ensure required preconstruction conferences are conducted.
  • The coordinator ensures first-work-in-place inspections are scheduled and conducted, and monitors corrective measures.
  • The coordinator works with the Design Principal, Project Manager, and Superintendent to ensure site observations are conducted.
  • The coordinator performs assigned quality assurance inspections, prepares reports, documents deficiencies, and monitors deficiency correction.
  • The coordinator works with the Project Manager and Superintendent to ensure Haskell and subcontractor completion conferences are conducted and documented.
  • The coordinator monitors creation and completion of architectural/engineering punch lists.
  • The coordinator performs the final quality assurance punch list, documents findings, and verifies and documents completion of deficiencies.
  • The coordinator conducts lessons-learned meetings with project leadership, prepares the lessons-learned document, and distributes it to the project team and Director of Quality.
  • The coordinator produces concise, thorough, logically structured, and well-written reports for assigned Quality Implementation Plan activities and distributes them promptly.
  • The coordinator communicates potential inconsistencies, deficiencies, errors, omissions, and liability-exposing conditions to the Quality Assurance Manager or Director of Quality.
  • The coordinator prepares monthly summaries of assigned Quality Implementation Plans, notes trends, and participates in monthly delivery-group Quality Implementation Plan meetings.
  • The coordinator participates in Quality Implementation Plan audits with the Quality Assurance Manager or Director of Quality when requested.
  • The coordinator completes at least 8 hours of professional development to improve job knowledge.
  • The coordinator provides quality training on specific subject matter when requested, at least once per year.

Haskell provides architecture, engineering, construction and consulting services, delivering more than $2 billion in annual revenue. It operates as a global, fully integrated design-build and EPC firm with over 2,400 in-house professionals across industrial and commercial markets and 20+ offices worldwide. The company works by acting as a single-source partner that designs, procures, constructs, and manages capital projects under one organization to assure outcomes. This integrated model contrasts with firms that outsource design or construction, enabling tighter coordination, faster decision-making, and clear accountability. Haskell differentiates itself through its global reach, in-house expertise, and end-to-end capabilities, allowing it to handle complex projects from start to finish. The goal is to ensure certainty of outcome for complex capital projects worldwide, delivering projects on time, on budget, and to the required quality.

Company Size

1,001-5,000

Company Stage

N/A

Total Funding

N/A

Headquarters

Jacksonville, Florida

Founded

1965

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Simplify Jobs

Simplify's Take

What believers are saying

  • February 2026 leadership promotions and a new 10-year roadmap signal fresh growth ambition.
  • March 20, 2026 ABC awards validate execution quality and reinforce Haskell’s safety brand.
  • April 27, 2026 pet-food digital twin messaging positions Haskell for higher-margin industrial work.

What critics are saying

  • Haskell’s 701 San Marco headquarters move risks distraction and cost overruns through 2026.
  • Fixed-bid capital projects expose Haskell to margin compression when scope, labor, or materials change.
  • Aging process expertise, flagged April 27, 2026, creates knowledge-loss risk if experts exit.

What makes Haskell unique

  • Haskell’s integrated design-build EPC model spans architecture, engineering, construction, and consulting.
  • John-Paul Saenz became president on January 30, 2026, sharpening succession and execution.
  • Haskell’s in-house specialists and Regional Operations Centers support complex global capital projects.

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Benefits

Health Insurance

401(k) Retirement Plan

Professional Development Budget

Hybrid Work Options

Company News

Petfood Industry
Apr 28th, 2026
Consistency and innovation intersect in pet food facility design.

Consistency and innovation intersect in pet food facility design. Greg Daniel of Haskell Co. argues that breakthrough pet food products demand deep process knowledge, frontier techniques and facilities designed with innovation in mind from day one. April 28, 2026 During Petfood Essentials, Greg Daniel said simulation and digital twin models have the potential to cut installation and commissioning time for full production processing lines in half. MongtaStudio | Bigstock.com Greg Daniel, strategic industry advisor for pet food/treats and protein at Haskell Co., addressed attendees at Petfood Essentials during Petfood Forum 2026 in Kansas City, Missouri, on April 27 with a practical framework for achieving both product differentiation and manufacturing consistency. His session, "The nexus of consistency and innovation in pet food manufacturing," centered on the argument that breakthrough pet food innovation is challenging but achievable - and that it requires strategic collaboration, deep process knowledge and early integration of innovation goals into facility design. The power of 'I don't know' Daniel opened by reframing what innovation actually requires, arguing that the foundation isn't creativity or vision - it's curiosity. "The power of 'I don't know' shouldn't just stop at 'I don't know,'" he said. "It's: what? How do we learn? What is the next step?" Curiosity paired with effective learning builds experience, he said, but true breakthrough innovation only comes when risk-taking enters the equation. He illustrated the point with a story from his time at Mars Petcare, where a chance observation in a break room - watching a colleague heat up a meal - led him to put a Dentastix treat in a microwave. The product puffed up, then hardened. "It's more of 'what happens' learning," Daniel said. "Then asking yourself: how do you create that, if it's something that you're actually looking for?" Process cannot be overlooked. Daniel said the pet food industry holds a vast reservoir of recipe, product and process knowledge accumulated over decades of research, development and engineering. As experienced talent ages out of the workforce, he warned, the next generation of pet food developers and manufacturers will need to fully understand the inherent interactions between formula, equipment and operations - and the physical and chemical transformations that occur throughout production. Equipment wear is a prime example, he said. As extruder screws wear over time, the transformations happening inside the barrel change - and so does the product - even when operators haven't intentionally changed a thing. "If you don't do or change out a screw every so many years, you're going to wear out that screw, and your transformations inside that extruder are going to change," Daniel said. He drew on design-of-experiment work from his time at Procter & Gamble and Iams to illustrate how controllable process variables - moisture, steam, back pressure, screw speed - can be intentionally manipulated to achieve specific outcomes. In one experiment, adjusting moisture inputs shifted bulk density of an extruded kibble by nearly 100 grams per liter, with downstream effects on bag fill, palatant absorption and texture. X-ray imaging of kibble cross-sections allowed the team to quantify porosity changes with precision. In a separate study using Iams cat food, whole-batch grinding of ingredients - with all other processing conditions held constant - resulted in a four-to-one animal preference over the standard product and roughly 58% fewer brokens and fines. The goal, Daniel said, is to develop products and processes that are "process center-lined" - delivering superior consistency while generating less waste. Frontier processing techniques for differentiation. Daniel said some of the most promising avenues for product differentiation in pet food aren't new technologies at all - they're established techniques from adjacent industries that haven't yet been widely adopted in pet food manufacturing. He called them "low-hanging fruit that's been tested in other industries that we can bring to pet food." One example he highlighted is flash drying and milling, a combined single-step process originally designed for the beer, wine and spirits industry that can achieve a five-log pathogen kill on fresh meat. The process can take a 60-70% moisture slurry from raw material to finely milled powder in roughly four to five seconds. Daniel acknowledged the technology carries a higher cost but said it opens new avenues for ingredient innovation in the industry. Other frontier techniques he cited include meat grinding with chunk formers capable of creating muscle meat striations, low-moisture extrusion as an alternative to conventional drying, heat-treat oven/dryer systems adapted from the automotive industry that use steam to achieve thermal kill, and electron beam (e-beam) technology adapted from medical sterilization. "I think it's something that's coming back," he said of e-beam. "It's something that we need to pay attention to." Strategic facility design for product innovation. Daniel argued that the time to embed innovation capability into a production facility is before construction begins - not after equipment has been placed into whatever floor space is available. The framework he outlined spans four areas: product lifecycle management from concept through startup; process development and scale-up; site and system design for food safety and flexibility; and system analytics including simulation modeling and digital twins. On facility layout, Daniel said decisions about floor materials, wall treatments, airflow, drainage placement and zoning have long-term consequences for a facility's ability to pivot to new product formats. "If you're making a baked biscuit today and you want to make fresh pet food tomorrow, how does that incorporate? What is the overlap?" he asked. Looking ahead, Daniel pointed to AI and digital twin technology as the next frontier. He envisions AI systems that integrate formulation and processing data together to drive transformational understanding of product development, compressing timelines significantly. Simulation and digital twin models, he added, have the potential to cut installation and commissioning time for full processing lines in half. Daniel concluded, "Through collaboration, we foster a culture of creativity that drives effective learning and converts knowledge into experience, empowering us to take calculated risks that lead to innovation and strengthen our relationship in this industry." Unlock Personalized Content! Sign up and the recommendations below will be more personalized for you!

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