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Cubic Transportation Systems Jobs in Indiana (NOW HIRING)

CDL A Driver II - Roll Off

Indianapolis, IN ยท On-site

$1.2K - $1.6K/wk

Load, secure, transport, and drop roll-off containers at customer and facility locations ... cubic-yard boxes, and pallets. * Ability to carry and connect cables and operate hydraulic systems ...

CDL A Driver II - Roll Off

Indianapolis, IN ยท On-site

$1.2K - $1.6K/wk

Load, secure, transport, and drop roll-off containers at customer and facility locations ... cubic-yard boxes, and pallets. * Ability to carry and connect cables and operate hydraulic systems ...

Cubic Transportation Systems information

See Indiana salary details

$20.2K

$81.3K

$149.1K

How much do cubic transportation systems jobs pay per year?

As of Aug 31, 2026, the average yearly pay for cubic transportation systems in Indiana is $81,258.00, according to ZipRecruiter salary data. Most workers in this role earn between $44,996.00 and $108,742.00 per year, depending on experience, location, and employer.

What is Cubic Transportation Systems?

Cubic Transportation Systems is a division of Cubic Corporation that specializes in providing transportation technology solutions, particularly for public transit systems. They design, develop, and operate fare collection systems, real-time passenger information, and traffic management solutions. Their products and services are used by major cities around the world to help improve the efficiency, convenience, and security of public transportation. Cubic's technology enables contactless payments, mobile ticketing, and integrated transit management, helping agencies and riders navigate urban mobility more effectively.

What are some common challenges faced by engineers working at Cubic Transportation Systems, and how can they be addressed?

Engineers at Cubic Transportation Systems often work on complex, large-scale projects that require integrating software, hardware, and networking solutions for public transit systems. A common challenge is ensuring system reliability and minimizing downtime, as public transportation relies on seamless operation. Collaboration with cross-functional teams, including project managers and client representatives, is essential to address evolving requirements and tight deadlines. Staying up-to-date with the latest transit technologies and maintaining strong communication within the team can help engineers overcome these challenges and contribute to successful project delivery.

What are the key skills and qualifications needed to thrive as a professional at Cubic Transportation Systems, and why are they important?

To excel at Cubic Transportation Systems, a strong background in engineering, computer science, or information technology is generally required, often with a relevant degree. Familiarity with fare collection systems, transit management software, and industry-specific certifications like PMP or Six Sigma is highly valuable. Strong problem-solving, communication, and teamwork skills help professionals navigate complex projects and collaborate with clients and stakeholders. These abilities are crucial for delivering innovative transportation solutions that meet client needs and maintain operational reliability.

What is the difference between Cubic Transportation Systems vs Ticketing Systems Technician?

AspectCubic Transportation SystemsTicketing Systems Technician
CredentialsRelevant certifications in transit technology, network systemsTechnical certifications in ticketing hardware/software, electronics
Work EnvironmentDesign, implement, and maintain transit fare collection systemsInstall, troubleshoot, and repair ticketing hardware/software
Industry UsageUsed by transit agencies worldwide for fare managementEmployed by transit agencies and vendors for ticketing system support

Both roles focus on transit fare systems but differ in scope. Cubic Transportation Systems primarily develops and manages integrated fare collection solutions, while Ticketing Systems Technicians focus on installing and maintaining specific hardware and software components. Understanding these differences helps in choosing the right career path or job search focus within transit technology.

What are the most commonly searched types of Cubic Transportation Systems jobs in Indiana?

The most popular types of Cubic Transportation Systems jobs in Indiana are:

What job categories do people searching Cubic Transportation Systems jobs in Indiana look for?

The top searched job categories for Cubic Transportation Systems jobs in Indiana are:

Infographic showing various Cubic Transportation Systems job openings in Indiana as of August 2026, with employment types broken down into 87% Full Time, 9% Part Time, 3% Contract, and 1% Nights. Highlights an 84% Physical, 4% Hybrid, and 12% Remote job distribution, with an average salary of $81,258 per year, or $39.1 per hour.

Opportunity for Logistics Engineer (Lead Logistics Systems & Warehouse Engineer) _ Michigan city, IN

Noblesoft Technologies

Michigan City, IN โ€ข On-site

Contractor

Posted 7 days ago


Job description

Job Title: Logistics Engineer (Lead Logistics Systems & Warehouse Engineer)

Location: Michigan city, Indiana

Duration: 9+ Months Contract

Job Summary

Advanced Manufacturing | SAP EWM | Lean Material Flow

  • Seeking a highly technical, execution-focused Lead Logistics Systems & Warehouse Engineer to architect, standardize, and optimize end-to-end warehouse and production material flow systems within a high-mix manufacturing environment. This role serves as the engineering authority for warehouse design, SAP-driven inventory architecture, line-side logistics, replenishment engineering, material handling systems, and lean operational transformation.
  • The ideal candidate will possess advanced expertise in warehouse systems engineering, SAP EWM integration, industrial engineering methodologies, production logistics, inventory control, lean material flow, warehouse optimization, and manufacturing support operations. This role supports high-throughput manufacturing operations through scalable logistics infrastructures, real-time inventory accuracy, optimized material movement, and zero-disruption production support.

Core Responsibilities:

Warehouse Systems Engineering & Logistics Architecture

  • Design and implement lean visual warehouse systems utilizing fixed-bin structures, supermarket replenishment models, FIFO-controlled material flow, point-of-use inventory strategies, flow racks, VMIL/heavy-part staging areas, and standardized warehouse zoning. Develop warehouse slotting strategies based on velocity analysis, BOM frequency, travel-time reduction, cubic utilization, and ABC classification principles.
  • Establish engineered standards for warehouse aisles, storage systems, forklift traffic flow, tugger routes, dock-to-line movement, operator ergonomics, equipment charging stations, and material presentation systems. Lead warehouse redesign initiatives involving facility layout optimization, throughput balancing, capacity modeling, warehouse consolidation, and material flow simulation.

SAP EWM / ERP Integration & Inventory Control

  • Own SAP/EWM warehouse alignment including storage types, bin structures, putaway logic, picking strategies, replenishment triggers, warehouse task sequencing, and backflush controls. Establish full digital traceability between physical inventory and SAP warehouse architecture.
  • Develop standardized SAP transaction workflows supporting receiving, putaway, kitting, production staging, line-side replenishment, cycle counting, inventory reconciliation, and backflush execution. Design BOM-driven pick logic and station-level material allocation methodologies while eliminating transactional discrepancies through engineered inventory control processes and real-time material validation.

Production Logistics & Material Flow Engineering

  • Architect structured material flow systems from receiving docks through warehouse supermarkets, production supply areas, line-side presentation, replenishment, and reverse logistics/backflush operations.
  • Engineer replenishment systems utilizing Kanban, two-bin systems, min/max logic, sequenced delivery, milk-run routing, and consumption-based triggers. Define optimal kit sizing and replenishment frequencies through coordination with production scheduling, operations, purchasing, inventory control, and manufacturing engineering teams.
  • Design scalable line-feeding strategies minimizing WIP accumulation, excess travel, handling touches, operator motion waste, and production downtime while maximizing manufacturing throughput and material availability.

Material Handling

  • Lead engineering selection and optimization of forklifts, Drexel equipment, tugger systems, flow racks, lift-assist devices, ergonomic material presentation systems, and heavy-part handling equipment.
  • Analyze and optimize equipment utilization, travel paths, empty travel time, dock utilization, loading efficiency, and material transfer latency. Develop standards for transport systems, material handling constraints, facility traffic patterns, storage density, safety clearances, and ergonomic access zones.
  • Apply warehouse engineering methodologies including time studies, capacity analysis, motion analysis, spaghetti mapping, value stream mapping, process simulation, and throughput analysis to optimize warehouse and logistics performance.

Lean Enterprise & Continuous Improvement

  • Drive warehouse transformation initiatives utilizing Lean Manufacturing, Six Sigma, 6S methodology, standardized work, visual factory principles, Kaizen execution, and root cause analysis.
  • Develop visual management systems including color-coded replenishment controls, KPI dashboards, warehouse performance boards, inventory visibility systems, audit processes, and ownership mapping. Lead continuous improvement projects targeting labor optimization, warehouse space reduction, inventory reduction, throughput improvement, dock-to-stock reduction, and inventory accuracy enhancement.
  • Develop SOPs, operator training programs, skill matrices, standardized work instructions, and warehouse audit systems supporting operational discipline and continuous improvement.

Required Technical Qualifications:

  • Bachelor’s degree in Logistics Engineering, Supply Chain Engineering, Manufacturing Engineering, Operations Engineering.
  • Minimum 7+ years of progressive experience in warehouse engineering, manufacturing logistics, SAP EWM/WM systems, lean material flow, production logistics engineering, warehouse optimization, and inventory control within high-volume manufacturing environments.
  • Advanced expertise in SAP EWM/WM/MM, warehouse slotting optimization, BOM-driven material staging, lean replenishment systems, inventory control engineering, warehouse layout optimization, and material flow analysis. Strong technical knowledge of material handling systems, production supply systems, logistics modeling, and facility layout engineering required. Forklift and Drexel operational knowledge preferred.

Preferred Certifications:

  • Lean Six Sigma Green Belt or Black Belt, APICS CPIM/CSCP, SAP EWM certification, OSHA/warehouse safety training, and lean manufacturing certifications preferred.