Jonathan Slavic

Adjunct Faculty @Onondaga Community College

Auburn, NY, US
MOBILE NUMBERS
+17•••••••51

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WORK HISTORY

Jul 2025 — Present

Adjunct Faculty @Onondaga Community College

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Syracuse, NY, US

Teaching and developing new courses for the Electrical Technology program at OCC.Teaching assignments:ELT-141 Circuits I w/ Lab - 4cr (F25)ELT-171/ENS-201 Digital Logic w/Lab -4cr (S26)TBD PCB Design and Fab w/Lab -3cr (planned F26)Design and deliver advanced Electronic Technology curriculum aligned with modern manufacturing and automated test environments.Developed a PCB-focused course from the ground up, integrating schematic interpretation, layout fundamentals, signal integrity considerations, and manufacturability principles.Incorporate real-world production test architecture, data structure, and failure analysis concepts into classroom instruction.Bridge academic foundations with current industry practices in automation, structured data capture, and scalable manufacturing systems.Mentor students entering advanced manufacturing, defense electronics, and OEM production environments.

EDUCATION

2007 — 2008

Point Park University

MSEM, Master of Science in Engineering Management

2003 — 2006

Point Park University

BSEET, Electrical Engineering

1995 — 1997

Community College of Beaver County

ASET, Electronics Technology

SKILLS

Test EquipmentEngineeringSoftware EngineeringMicrocontrollersLabviewSix SigmaSolidworksPro EngineerElectronicsEmbedded SystemsManufacturingRoboticsCDesign for ManufacturingEmbedded SoftwareFirmwareTestingElectrical EngineeringAutomation

ABOUT JONATHAN SLAVIC

For more than 25 years, I have built and modernized production test ecosystems across OEM, contract manufacturing, and Department of Defense environments. Most manufacturing organizations do not struggle because of a lack of test coverage. They struggle because of architectural debt. Development test systems become long-term production infrastructure. Flat files become permanent records. Workarounds become standards. Over time, visibility, scalability, and decision speed suffer. My work focuses on eliminating that architectural debt.I design production data architectures that scale globally, align with cybersecurity and governance requirements, and transform test output into structured manufacturing intelligence.Today, I lead architecture strategy across pre- and post-sales engagements, integrating factory test systems with enterprise platforms such as WATS while enabling secure factory-to-enterprise data transport through TestPartner. This includes designing hardened network pathways that move production data safely from controlled manufacturing environments into corporate systems.My experience spans brownfield modernization and greenfield design. I have implemented structured production intelligence layers within legacy defense environments and led global standardization efforts across international OEM manufacturing sites. In both cases, the objective is the same: prevent architectural drift and ensure production systems remain scalable over time.What I work on: Pre-sales technical strategy and architecture alignmentPost-sales integration of production data systemsSecure OT/IT data transport frameworksStructuring test data for troubleshooting, yield improvement, and complianceBridging development engineering, manufacturing execution, and analytics platformsIn addition to industry work, I serve as an Adjunct Professor in Electronic Technology, preparing the next generation of manufacturing professionals. I design curriculum with a focus on structured thinking, testability, and long-term system scalability.Architectural debt in manufacturing does not appear overnight. It compounds quietly. My work centers on preventing and eliminating it before it limits growth.Impact Focus: Brownfield modernization of legacy test environmentsGreenfield data architecture embedded at the test executive levelGlobal standardization of production intelligence platformsSecure factory-to-enterprise data transport frameworksPrevention and reduction of architectural debt in manufacturing systems

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