Seeking innovative training solutions for the oil and gas sector? Dive into Hard Hat VR, a revolutionary immersive training platform crafted specifically for the high-stakes realm of oil and gas. Step away from outdated methods and embrace Virtual Reality tailored to enhance safety and efficiency in your industry!
Why Hard Hat VR for Oil & Gas?
- Realistic Oilfield Scenarios: Experience training in lifelike oil rigs and refineries without real-world risks.
- Industry-Tailored Interactivity: Engage in hands-on, industry-relevant training for lasting impact.
- Cost-Effective Solutions: Slash training expenses and minimize operational interruptions.
- Enhanced Safety Protocols: Prepare your workforce for real hazards within a controlled VR environment.
Who Benefits?
- Oil and Gas Companies
- HSE (Health, Safety, and Environment) Professionals
- Technical and Vocational Institutes
Maximize Your Gains
- Heightened Training Efficiency
- Elevated Safety Standards on the Field
- Enhanced Knowledge Retention Among Employees
The Smart Automation Certification Alliance (SACA) recently hosted an exclusive Process Control Technical Work Group meeting at Endress+Hauser headquarters in Greenwood, Indiana. The meeting brought together experts in the process control and instrumentation industry to help validate certification standards for process control in areas such as process control systems, process control troubleshooting, and smart process instrumentation.
In this video, SACA Executive Director Jim Wall and Endress+Hauser Director of Workforce Development Nicole Otte discuss the importance of industry experts providing input on the skills and competencies needed for today’s smart manufacturing workforce. Collaboration with industry experts is essential to create nationally-recognized, occupation-driven certifications that will ensure that future workers have the skills employers need most.
According to Wall, “The whole goal of having the standards and certifications program is to help schools and colleges and other training providers develop and expand programs that include these new technologies, so that we get more people with these skills into the workforce.”
Ladder safety is a key aspect of fall prevention. According to the CDC, 81% of fall injuries, which is the leading source of fatalities among construction site workers, involve the use of ladders. As such, it’s important to remember and follow ladder safety best practices. Ladder Training isn’t considered a necessity by law, but the importance is often overlooked. The HSE recommends that anyone using ladders needs to be competent and carrying out officially certified training is one way to do this. Teaching the basics of ladder health and safety can help prevent potential injuries and inform others on how to identify if a ladder is a potential risk.
Learning Objectives
The primary goal of this course is to teach workers safe work procedures to follow when using ladders in a work environment. The user will learn:
- To identify hazards associated with ladder use
- How to select the correct ladder for the job
- How to inspect a ladder for defects
- How to practice proper safety procedures
- To see the consequences of improper actions
The Ladder Safety simulation is ideal for employees or supervisors who work in or around work environments that utilize ladders.
Oakland Community College (OCC), situated in Auburn Hills, MI, stands as one of FANUC America's esteemed 1,500 partner institutions. At OCC, a specialized robotics and automated systems technology program equips students for roles in the realm of industrial automation. The automation lab at OCC houses an extensive array of FANUC robots renowned worldwide for their application in material handling, welding, palletizing, and machine tending across various industries. Graduates from OCC, having acquired certifications or degrees, emerge primed for careers in industries employing robotics and automation technology.
This video spotlights OCC's steadfast dedication to nurturing individuals into adept professionals in advanced automation, paving the way for prosperous career trajectories. Through firsthand accounts from multiple students, viewers gain insights into their educational journey and future aspirations. The central message underscores the demand from employers seeking individuals capable of bridging the skills gap. OCC's program not only supplies skilled workers to meet industry demands but also assists its graduates in securing fulfilling and rewarding career paths.
Step into the future of automation with Amatrol’s Smart Factory Tabletop Mechatronics Training System—now featuring an integrated FANUC collaborative robot (cobot). This compact, classroom-ready system is designed to teach learners the hands-on skills they need to succeed in Industry 4.0 environments. With five fully connected stations, RFID tracking, real-time performance analytics, and interaction with Rockwell Automation components, this portable system brings smart factory operations to life.
Learners gain real-world experience in cobot programming, photoelectric sensing, barcoding, cloud-based SCADA, MES, and more. The intuitive drag-and-drop interface on the FANUC cobot’s touchscreen pendant makes robotic training accessible—even for beginners—while the cobot’s force-sensing safety features allow learners to program by hand-guided movement. When paired with Amatrol’s robust eLearning curriculum, this solution delivers an unmatched learning experience for schools and training centers focused on smart automation, industrial robotics, and mechatronics.
Elevate HVACR Education with Amatrol's Cutting-Edge Training Solutions
Explore Amatrol's comprehensive suite of HVACR training systems, meticulously designed to immerse learners in industrial, commercial, and residential heating and cooling technologies. Our curriculum covers traditional air conditioning methods alongside diverse topics such as insulation, lighting, ceiling fans, and cutting-edge renewable energy systems like geothermal applications.
One of our flagship offerings includes a specialized steam training system, essential for grasping fundamental concepts and honing skills utilized in diverse industries such as paper mills, power generation companies, and even aboard nuclear submarines. Amatrol's suite of thermal products seamlessly integrates into various pivotal programs, including HVACR, Power and Energy, STEM initiatives, and Industrial Maintenance training.
Diverse Applications, In-Depth Learning
Amatrol's HVACR training products not only cater to foundational learning but also enable students to delve into advanced applications and emerging technologies within the realm of heating, ventilation, air conditioning, and refrigeration. With a focus on hands-on learning, our systems empower learners to master critical skills essential for success in today's dynamic industrial landscape. Whether pursuing careers in commercial HVACR, residential installations, or exploring renewable energy systems, Amatrol's training solutions provide a robust platform for skill development, aligning with the demands of evolving industries.
Experience an innovative approach to HVACR education with Amatrol – where theory meets practical application to forge competent, industry-ready professionals.
In this video, Mike Idle provides an overview of Amatrol’s Commercial Refrigeration Learning System (T7400). This trainer teaches users how to operate, control, and troubleshoot commercial refrigeration systems like those used in commercial air conditioning, refrigerated display cases, walk-in coolers and freezers, and more. This system will prepare future commercial refrigeration technicians to handle various real on-the-job issues efficiently.
The Commercial Refrigeration Learning System includes several real-world components that allow users to practice hands-on skills. Some of these components include a semi-hermetic compressor, evaporators, a condenser, expansion and solenoid valves, electric and air defrost, adjustable airflow fans, an oil separator, and more.
FaultPro, Amatrol’s premier computer-based fault-insertion system, is also included. By utilizing FaultPro and the included multimedia curriculum, users can practice troubleshooting 35 different faults and perform multiple hands-on skills. Some skills covered include taking airflow measurements, configuring a smart controller for single-zone operation, adjusting the pressure settings on a dual pressure control device, and operating a multi-evaporator commercial refrigeration system.
Experience the power of Advanced Manufacturing education as students at a Bluegrass Community & Technical College embark on a hands-on journey using Amatrol equipment. Join us to explore the world of skills training in manufacturing as these students develop their expertise on campus. Get inspired and gain valuable insights into the future of post-secondary education.
At BCTC's Georgetown campus, the Advanced Manufacturing Center mirrors a genuine work environment, prioritizing experiential learning over conventional classrooms. Housing specialized labs for industrial maintenance technology, advanced manufacturing, computerized machining, integrated engineering technology, and electrical engineering, the campus caters to around 300 students each semester. Captivated by the layout and cutting-edge facilities, students seamlessly translate classroom knowledge into real-world manufacturing scenarios.
In this video, Amatrol Regional Sales Manager Mike Idle provides an overview of Amatrol’s new HVAC Controls Learning System, including its operation and main features. The HVAC Controls training system combines a hands-on workstation with an interactive eLearning curriculum to teach the installation, operation, application, and troubleshooting of control systems related to the HVAC industry.
The hands-on workstation runs on single-phase power and features manual fault insertion and optional electronic fault insertion for advanced troubleshooting training. Users will gain practical experience with real industrial HVAC components, such as single-phase AC compressor and blower motors, an electronic temperature controller, a programmable digital thermostat, and a programmable defrost controller.
Safety is a top priority of the HVAC Controls training system. Users will learn the basics of lock-out/tag-out and gain hands-on experience with safety features like sheathed leads and guards over components.
This video offers an overview of DAC Worldwide's Pump Maintenance with Alignment Trainer, showcasing its functionality and key attributes. This trainer utilizes a standard ANSI centrifugal pump to demonstrate the step-by-step process of disassembling and reassembling this commonly used pump type.
Specifically designed for benchtop training in industrial pump operations, this system features a transparent acrylic backhead that enables detailed instruction on pump packing procedures and the proper installation of mechanical seals. With a simulated motor element and movable flanged bearings, the trainer facilitates teaching shaft alignment by allowing adjustments for angular and parallel misalignment.
Comprising authentic industrial components like an ANSI centrifugal pump, backhead/stuffing box, aluminum motor element, replaceable steel shaft with keyways, and aluminum motor mounting pads, this trainer offers hands-on learning opportunities.
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Item Number:BH-85Each Basic Hydraulics training system features standard industrial grade components. This attention to quality gives students experience they would normally only get on-the-job by helping them recognize industrial components and how to troubleshoot them more effectively. Components included with Basic Hydraulics are pre-mounted on circuit panels with silk-screened labels next to each, which facilitates ease of use and identification.
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Item Number:85-BPAmatrol’s Basic Pneumatics training system (85-BP) introduces pneumatic principles through a combination of Amatrol’s top-flight multimedia curriculum with hands-on industrial pneumatic skill-building. Topics covered in this learning system include single-acting cylinder circuits, pressure vs. cylinder force, and flow control valves, while the panels can be used to practice skills such as connecting and operating a needle valve to control actuator speed.
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Item Number:85-EHThe Electro-Hydraulics training system includes an electrical control panel with relay control components and an electrical valve module with solenoid-operated hydraulic directional control valves and electrical/electronic sensors. These components will be used to study a variety of topics including electrical control systems, basic control devices, power devices, control relays, sequencing control, timer control, pressure control applications, and circuit applications.
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Item Number:CR-35iAFANUC’s new CR-35iA is the world’s first collaborative robot with a payload capacity of up to 35 kg. Fenceless, it opens a whole new world of possibilities. Working safely side by side with human operators, it is space as well as cost saving. And because inside it’s like any other FANUC robot, it operates like all FANUC robots. Certified to meet the requirements of ISO 10218-1:2011 and RIA/ANSI R15.06-2012, FANUC’s CR-35iA collaborative robot can work in a variety of applications alongside human workers including: machine tending, handling heavy payloads that require lift assist devices or custom equipment, higher payload mechanical assembly, palletizing or packing, and tote or carton handling.
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Item Number:CR-4iACR-4iA is a small collaborative robot with 4 kg payload
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Item Number:CR-7iAThe FANUC CR-7iA is FANUC's newest collaborative robot resembles the LR Mate family. Painted green to show it's ability to work beside humans, you can expect the same reliability as FANUC's yellow robots. The CR-7iA is ideal for small part sorting and assembly, inspection, machine tending, and part delivery. It has a 7 kg payload, 717 mm reach, and is equipped with iRVision and Force Sensing. There are a variety of mounting options such as floor, wall, and ceiling.
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FANUC’s new SCARA robots are ideal for high-speed, precision applications such as assembly, pick and place, testing/inspection and packaging processes.
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In the rare event that a burning ember or spark is drawn into the fume extraction unit, there is the possibility that debris in the filters could ignite. Although any resultant fire would typically be retained within the fume extraction unit, this would cause significant damage and in extreme circumstances, the risk may extend beyond the extraction unit. For processes where such risks have been identified, additional protection in the form of an in-line firebox is an additional precaution.
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The BOFA inline pre-filter 1000 has been designed specifically for applications that generate high amounts of dust or particulate.
This inline filter unit is positioned alongside the main BOFA fume filtration system to increase the overall filter capacity and extend the life of the main filters. The DeepPleat DUO pre-filter incorporates a massive drop-out chamber within the filter, having a volume area of 15ltrs. Above the drop-out chamber but still within the housing there is a sealed 200mm deep pleat layer of F8 media giving a surface area in excess of 30 sq meters.
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The BOFA inline prefilters have been designed specifically for applications that generate high amounts of dust or particulate.














