Intellia Dual Lift Simulation Curriculum
Practice coordinated dual lifts for crawler or rough terrain cranes, when precise communication and shared decision-making determine lift stability and safety.

Virtual Training Solution
The Intellia Dual Lift Simulation Curriculum delivers true machine-to-machine interaction, enabling trainees to learn from weather shifts and collisions on a realistic jobsite. Multiple operators train together in a shared heavy equipment simulator environment, coordinating dual lifts with crawler and rough terrain cranes. Instructors retain full control to build teamwork skills and monitor progress without relying on strictly defined scenarios.
Simulation Curriculum Features
Learning Outcomes
The Intellia Crew Training Simulation Curriculum features a training program shaped and validated by subject-matter experts. The exercise focuses on coordination, judgment, and shared responsibility during complex lifting operations.
Key learning outcomes include:
- Demonstrating coordinated communication between operators during dual lift execution
- Responding to changing site conditions, including wind, rain, and snow
- Sequencing crane movements to maintain balanced load control across machines
- Adjusting actions in real time based on other operators’ decisions and machine behavior
Authentic Machine Behavior
Our simulation incorporates award-winning engineering-grade machine and material behavior for the most transferable operator skills outside real equipment.
When choosing simulation training for dual lift operations, look for systems that replicate real-world behavior:
- Hook pendulum behavior: Simulations model load swing and inertia as cranes accelerate, decelerate, and reposition.
- Boom deflection: Trainees experience structural flex under load based on lift radius, weight, and configuration.
- Wind speed and direction simulation: Changes in weather and site conditions alter load stability and control requirements throughout the lift.
- Machine-to-machine interaction: Crews coordinate shared operations while managing the real consequences of proximity, contact, and collision events between machines and loads.
Why Does It Need to Be Engineering-Grade?
Avoid creating bad habits or unsafe shortcuts that could carry over to real-world operations. High-quality simulation training ensures trainees learn correct techniques from day one. When the simulator behaves like the real machine, trainees build confidence and skills that transfer directly to the jobsite, reduce risk, save time, and reinforce safe, effective practices from the start.
Specifications
Crawler Crane
- Lifting capacity: 80 t (85 USt)
- Boom length: 30 m (100 ft)
- Line pull: 75 kN (17,000 lb)
- Engine power: 210 kW (280 hp)
Rough Terrain Crane
- Lifting capacity: 35 t (40 USt)
- Boom length: 9.8–31.0 m (32–102 ft)
- Maximum working radius: 28 m (95 ft)
- Engine power: 119 kW (160 hp)
- Anti-two-block system
- Up to 7 parts of line
Related Simulation Curriculum Products
Meet the Intellia Workforce Training System
The Intellia Workforce Training System integrates curriculum products, training management software, and high-fidelity simulators into a unified system for training heavy equipment operators.
Designed for organizations that need safer training, faster readiness, and consistent results across locations. Contact us to learn how to move from fragmented tools to a scalable workforce training system.
Training Management Tools
- Solutions for Instructors, Admins, and Trainees
- Performance metrics and AI assistants
CONSTRUCTION
Construction Simulation Training Solutions
CM Labs delivers discipline-specific construction training for earthmoving, lifting, and heavy equipment operations—reflecting the real jobsite conditions operators face every day. From trenching and grading to complex crane lifts, operators build job-ready skills grounded in authentic machine behavior—without the risk.
All construction training is delivered through the Intellia™ Workforce Training System, enabling organizations to standardize, adapt, and scale construction curricula across equipment types, jobsite roles, and shifting skill demands.
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