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Vp Of Engineering Food Manufacturing Jobs (NOW HIRING)

$200K - $300K/yr

Vice President of Engineering Los Angeles / Long Beach, California Compensation * $200,000 - $300 ... Provide executive oversight for engineering, manufacturing, maintenance, reliability, project ...

Vice President of Engineering

Gainesville, GA · On-site

$167K - $216K/yr

Vice President of Engineering Atlanta, GA (Northeast Suburbs) About the Opportunity Meridian Group ... This leader will work cross-functionally with Manufacturing, Operations, Sales, Supply Chain, and ...

VP of Engineering

Austin, TX · On-site

$170K - $205K/yr

Vice President of Engineering Location: Cedar Park, Texas Work Arrangement: 100% Onsite Position ... Collaborate closely with Operations and Quality teams to ensure manufacturability, regulatory ...

Role Overview As Vice President of Engineering, you will be the technical heartbeat of Moon ... manufacturing, and installation. * Establish world-class engineering processes, tools, and culture ...

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Vp Of Engineering Food Manufacturing information

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$112.5K

$215.6K

$398.5K

How much do vp of engineering food manufacturing jobs pay per year?

As of Sep 11, 2026, the average yearly pay for vp of engineering food manufacturing in the United States is $215,595.00, according to ZipRecruiter salary data. Most workers in this role earn between $180,000.00 and $232,000.00 per year, depending on experience, location, and employer.

What does a VP of Engineering do in food manufacturing?

A VP of Engineering in food manufacturing oversees the engineering and technical operations within a food production company. Their responsibilities include managing engineering teams, ensuring equipment and processes comply with safety and quality standards, and driving innovation for efficient production. They collaborate with other departments, oversee capital projects, and implement strategies to improve productivity and reduce costs. Additionally, they play a key role in maintaining regulatory compliance and supporting the company’s growth objectives.

What are the key skills and qualifications needed to thrive as a VP of Engineering in food manufacturing?

To thrive as a VP of Engineering in Food Manufacturing, you need deep expertise in engineering principles, food production processes, and regulatory compliance, typically backed by an engineering degree and significant industry experience. Familiarity with process automation, manufacturing execution systems (MES), and quality management certifications like Six Sigma or Lean are highly valuable. Strong leadership, cross-functional collaboration, and strategic problem-solving skills set top candidates apart. These capabilities are essential to drive operational excellence, ensure food safety, and maintain competitive advantage in a regulated industry.

What are some common challenges faced by a VP of Engineering in food manufacturing, and how are they typically addressed?

A VP of Engineering in food manufacturing often faces challenges such as ensuring regulatory compliance, maintaining production efficiency, and managing cross-functional teams. Balancing the implementation of new technologies with cost constraints and strict food safety standards is a key difficulty. Addressing these challenges usually involves close collaboration with quality assurance, operations, and R&D teams, as well as staying updated on industry regulations and best practices. Proactive problem-solving and continuous improvement initiatives are essential for success in this dynamic environment.

What is the difference between Vp Of Engineering Food Manufacturing vs Food Manufacturing Plant Manager?

AspectVp Of Engineering Food ManufacturingFood Manufacturing Plant Manager
Primary FocusOversees engineering strategies, technical operations, and process improvementsManages daily plant operations, production, and staff
Required CredentialsEngineering degree, technical certifications, industry experienceOperations management experience, industry knowledge, leadership skills
Work EnvironmentCorporate offices, engineering departments, technical settingsManufacturing plant floor, production lines, operational settings

The Vp Of Engineering Food Manufacturing focuses on technical leadership, engineering projects, and process optimization, while the Food Manufacturing Plant Manager handles daily operations, production efficiency, and staff management. Both roles require industry experience but differ in scope and responsibilities.

What are popular job titles related to Vp Of Engineering Food Manufacturing jobs?

For Vp Of Engineering Food Manufacturing jobs, the most frequently searched job titles are:

Infographic showing various Vp Of Engineering Food Manufacturing job openings in the United States as of September 2026, with employment types broken down into 68% Full Time, 31% Part Time, and 1% Nights. Highlights an 99% Physical, and 1% Remote job distribution, with an average salary of $215,595 per year, or $103.7 per hour.

Vice President of Engineering

Randolph, MA

Cox Engineering
Construction • 201 - 500 employees

$220K - $250K/yr

Full-time

Medical, Retirement

Re-posted 6 days ago


Job description

VICE PRESIDENT OF ENGINEERING
Cambridgeport | HVAC Manufacturing
Department: Engineering
Reports to: President
Direct Reports: Engineering Managers, Principal Engineers, R amp;D Leads, Product Engineering
Location: On-site / Hybrid (Randolph, MA HQ; travel to Georgetown, MA and customer sites)
Employment Type: Full-time, Exempt
Industry: HVAC Manufacturing — Custom Air Handlers (AHUs) and Computer Room Air Handlers (CRAHs)
Position Summary
Cambridgeport is entering its most ambitious growth phase to date. We are an established HVAC manufacturer of custom air handlers and the fastest-growing independent supplier of Computer Room Air Handlers (CRAHs) to the data center market. Over the next 24 to 36 months, we will significantly expand our engineering organization, scale CRAH production to meet hyperscaler demand, continue delivering bespoke AHU solutions to our pharmaceutical and industrial customers, and invest heavily in the manufacturing infrastructure that supports both lines.
Reporting to the President, the VP of Engineering will own the full engineering function: product engineering for both HVAC custom units and CRAH platforms, manufacturing engineering across our Randolph and Georgetown facilities, R amp;D for next-generation data center cooling, and engineering operations. The leader will translate aggressive commercial goals into a scalable engineering organization. This is a builder's role: the leader will shape the team, the processes, and the technology platform that will define Cambridgeport's next decade.
The ideal candidate is a hands-on executive who has scaled an engineering organization through hyper-growth in HVAC manufacturing, has direct experience designing or scaling data center cooling products (CRAH, CRAC, in-row, rear-door heat exchangers, or liquid cooling), and has stood up engineering capabilities across multiple sites. Experience with hyperscaler customers (Tesla, Microsoft, Google, Meta, AWS, or AI infrastructure providers) is a significant plus.
Why This Role Matters
  • Custom Air Handler demand from long-standing industrial and pharmaceutical customers continues to grow alongside the data center business. The VP must lead engineering across both product lines without trading one off against the other.
  • We are transitioning our Georgetown facility to support CRAH panel production. The VP will lead the engineering elements of that transition — tooling, process design, validation, and tight coordination with our Prima power machine operations.
  • Our manufacturing infrastructure must scale to support multiples of current throughput. The VP will lead the engineering investments — automation, design-for-manufacturability, supplier engineering — that make that possible while protecting margin.
  • Data center cooling is a strategic platform bet. The VP will own the R amp;D pathway for next-generation CRAH and complementary cooling products as hyperscaler thermal demands evolve toward AI-scale densities.
Our Values
Cambridgeport's culture is defined by three values that the VP of Engineering will be expected to embody, reinforce, and scale across a growing organization:
Where the Best Are Built
  • We hold ourselves and our products to the highest standard. The VP will set and protect that bar in the people we hire, the products we ship, and the engineering practices we build, and will ensure that as we grow, the quality of our work grows with us.
We Do What We Say
  • Commitments are sacred at Cambridgeport. The VP will instill an operating discipline where commitments to customers, partners, and each other are met or proactively renegotiated, never silently broken, and where program forecasts can be trusted at the executive and senior leadership level.
We Are Always Getting Better
  • Standing still is falling behind. The VP will lead a culture of continuous improvement in product quality, manufacturing performance, engineering practices, and personal growth, and will model that learning posture personally, including welcoming feedback and adjusting course quickly.
Key Responsibilities
Strategy and Growth Leadership
  • Partner with the President and executive team to translate Cambridgeport's growth strategy into a multi-year engineering roadmap covering custom HVAC product engineering, CRAH platform engineering, manufacturing engineering, capacity, and capability investments.
  • Set engineering OKRs aligned to revenue, margin, on-time delivery, and quality targets for both AHU and CRAH product lines; report progress to the executive team and Cox Engineering.
  • Own the engineering operating budget and capital plan; make build-vs-buy and outsource-vs-insource decisions that protect margin while accelerating throughput.
  • Serve as the senior engineering voice in customer-facing executive conversations on programs, technology direction, and risk, including hyperscaler engagements and pharma validation discussions.
Organizational Build-Out
  • Scale the engineering team from its current size to a multi-site organization capable of supporting 2 to 3x revenue growth, while preserving the technical bar and culture.
  • Design the engineering org structure: define functional groups (custom AHU engineering, CRAH product engineering, manufacturing engineering, R amp;D, quality engineering, engineering operations), levels, career ladders, and managerial spans.
  • Personally lead recruiting for senior and principal-level hires; partner with HR and Talent Acquisition on a hiring plan that includes university pipeline, experienced hires, and strategic acquihires where appropriate.
  • Build out engineering leadership across Randolph (HQ + Custom AHU + final CRAH assembly) and Georgetown (CRAH panel hub), including establishing local management practices and ensuring tight integration across sites.
  • Establish performance management, compensation philosophy, and leveling rubrics that scale with the organization.
Product Lines and Program Execution
  • Own delivery across all active product programs — both custom AHU configurations for pharma, industrial, and commercial customers, and CRAH platforms for hyperscaler and AI infrastructure customers. Set program governance, gate reviews, and stage-gate criteria; intervene personally on at-risk programs.
  • Drive the next-generation CRAH product roadmap to address evolving data center thermal loads (chip-level cooling, AI training cluster densities, water-cooled augmentation, rear-door heat exchanger compatibility).
  • Stand up new product line engineering teams from concept through launch, including requirements, design, prototyping, validation, and transfer to manufacturing.
  • Drive design-for-manufacturability, design-for-cost, and design-for-quality principles into every program from day one.
  • Establish a portfolio view of engineering investment and R amp;D pipeline; balance near-term customer commitments with longer-horizon platform bets in data center cooling.
Manufacturing and Infrastructure Scale-Up
  • Lead the manufacturing engineering function: process engineering, tooling, fixturing, automation, and continuous improvement to support multi-fold throughput increases on both AHU and CRAH lines.
  • Lead the engineering elements of the Georgetown facility transition to CRAH panel production, including tooling design, line layout, validation, and integration with the Prima power machine.
  • Partner with Operations and Supply Chain on capacity planning, line layouts, equipment selection, and capital investments at both sites.
  • Champion lean manufacturing, Six Sigma, and operational excellence practices specific to sheet metal fabrication, panel assembly, and air handler integration; drive measurable improvements in cycle time, yield, scrap, and unit cost.
  • Sponsor digital transformation in engineering and manufacturing — PLM, Epicor ERP/MES integration, model-based design, CFD simulation for thermal and airflow, and data-driven manufacturing.
Quality, Compliance, and Risk
  • Be the executive owner for engineering quality outcomes — design quality, supplier quality involvement, and manufacturing quality engineering across both product lines.
  • Ensure compliance with applicable HVAC industry standards (AHRI, AMCA, ASHRAE), data center customer-specific quality systems (hyperscaler-specific QMS), pharma cleanroom and validation requirements (cGMP, FDA-relevant where applicable), and general standards (ISO 9001 baseline; AS9100 path if pursued).
  • Maintain a transparent risk register for engineering and manufacturing programs; lead mitigation planning and executive escalation.
  • Partner with EH amp;S to ensure all engineering activity meets safety and environmental requirements, including refrigerant handling, sheet metal fabrication safety, and site-specific ergonomic considerations.
Executive and Cross-Functional Leadership
  • Serve as a peer to the Cambridgeport Leadership Team; build the cross-functional fabric required for multi-site, multi-program execution.
  • Communicate clearly to Cambridgeport leadership, customers, and the broader organization about engineering progress, risks, and decisions.
  • Model the leadership behaviors and culture Cambridgeport wants to scale: customer obsession, technical rigor, ownership, and humility.
Qualifications
Required Experience
  • 15+ years of engineering experience in HVAC manufacturing, mechanical equipment manufacturing, or hardware-intensive industrial manufacturing, including at least 7 years in senior engineering leadership.
  • Direct product engineering experience with air handlers, CRAHs, CRACs, precision cooling, or related thermal management products. Either custom AHU design or data center cooling design is required; both are strongly preferred.
  • Demonstrated experience scaling an engineering organization through a period of significant growth (e.g., doubling team size or revenue, launching new product lines, opening new sites).
  • Track record of leading product engineering and manufacturing engineering simultaneously from concept through volume production.
  • Direct experience standing up or significantly expanding engineering capability at a new geographic site.
  • Hands-on familiarity with stage-gate program management, PLM, ERP/MES (Epicor experience a plus), CFD/thermal simulation, and modern engineering tooling.
  • Operating experience with lean manufacturing, Six Sigma, and continuous improvement methods at an executive level.
  • Bachelor's degree in an engineering discipline (Mechanical, Electrical, Industrial, or related); advanced degree (MS or MBA) preferred.
Preferred Experience
  • Direct experience designing or scaling data center cooling products for hyperscaler or AI infrastructure customers.
  • HVAC industry leadership experience with familiarity in AHRI, AMCA, ASHRAE standards and pharma/cleanroom HVAC validation requirements.
  • Experience in a private or PE-backed company through a high-growth or transformation period; experience working within a holding-company structure is a plus.
  • M amp;A experience including engineering due diligence and post-merger integration of engineering organizations.
  • Customer-facing executive experience in a B2B technical-sales environment with long-cycle, high-dollar capital equipment.
Leadership Competencies
  • Builder's mindset: energized by ambiguity, comfortable building structure where none exists today.
  • Operating discipline: instinctively manages by metrics, root-cause thinking, and clear accountability.
  • Talent magnet: a leader other strong engineers want to work for and follow.
  • Bias for action with engineering rigor — moves fast without compromising quality, safety, or technical integrity.
  • Executive presence: credible with hyperscaler procurement, pharma validation auditors, and a shop-floor team alike.
Compensation and Benefits
Cambridgeport offers a competitive executive compensation package including base salary, performance-based annual bonus, long-term incentive participation, comprehensive health and welfare benefits, retirement plan with company contribution, and relocation assistance where applicable. Specific terms will be discussed with finalists.