As offshore oil & gas, wind power, and marine engineering projects rapidly expand, the demand for high-quality offshore living and office modules is rising. These modules are essential for ensuring personnel safety, operational efficiency, and comfort in remote maritime environments. At TLS, we specialize in providing robust, DNV 2.7-1 certified containerized modules designed to perform in the harshest offshore conditions.
1. DNV 2.7-1 Certification: Built for Harsh Offshore Conditions
TLS offshore modules are engineered and manufactured in strict accordance with the DNV 2.7-1 offshore container standard, ensuring:
2. Advanced Corrosion Protection for Marine Environments
To withstand the corrosive challenges of marine climates, TLS modules feature a multi-layer coating system:
3. Comfort-Driven Interior Design
Understanding the demands of extended offshore stays, our modules prioritize comfort and functionality:
4. Lifting and Transport Flexibility
TLS modules are designed for ease of deployment and transport across offshore operations:
Conclusion
TLS offshore living and office modules combine the strength of DNV 2.7-1 certification, marine-grade corrosion protection, and ergonomic interior layouts to deliver a safe and productive environment for offshore personnel. We support your offshore operations with dependable, certified containerized infrastructure that performs when and where it matters most.
TLS Offshore Containers / TLS Energy is a global supplier of standard and customised containerised solutions.
Wherever you are in the world TLS can help you, please contact us.
Keywords:#DNV 2.7-1 offshore container,#Marine accommodation module,#Offshore living quarters,#Offshore office container,#Corrosion-resistant container,#Certified offshore module,#C5-M anti-corrosion coating,#Modular offshore accommodation,#Heavy-duty lifting container,#Comfortable offshore workspace
1. DNV 2.7-1 Certification: Built for Harsh Offshore Conditions
TLS offshore modules are engineered and manufactured in strict accordance with the DNV 2.7-1 offshore container standard, ensuring:
- Exceptional wave and wind resistance, suitable for high-sea operations
- Reinforced steel structure, designed for lifting, stacking, and heavy transport
- Structural integrity and sealing performance, protecting against seawater ingress and salt spray
2. Advanced Corrosion Protection for Marine Environments
To withstand the corrosive challenges of marine climates, TLS modules feature a multi-layer coating system:
- l Epoxy primer and polyurethane topcoat designed for long-term C5-M corrosive environments
- l Rust prevention even during prolonged exposure to salt spray and sea air
- l UV and humidity resistance, extending service life and reducing maintenance costs
3. Comfort-Driven Interior Design
Understanding the demands of extended offshore stays, our modules prioritize comfort and functionality:
- Smartly partitioned spaces, including private bedrooms, offices, washrooms, and lounge areas
- Excellent insulation and thermal regulation, adaptable to extreme temperature shifts
- Low-noise and efficient ventilation systems, creating a quiet and breathable environment
- International-standard electrical layouts, ensuring safety and user-friendliness
4. Lifting and Transport Flexibility
TLS modules are designed for ease of deployment and transport across offshore operations:
- Heavy-duty certified lifting lugs, compatible with marine cranes and land-based handling equipment
- Standard container dimensions, suitable for transport via barge, flatbed truck, or container vessel
- Shock-resistant structural enhancements, ensuring integrity during transit
Conclusion
TLS offshore living and office modules combine the strength of DNV 2.7-1 certification, marine-grade corrosion protection, and ergonomic interior layouts to deliver a safe and productive environment for offshore personnel. We support your offshore operations with dependable, certified containerized infrastructure that performs when and where it matters most.
TLS Offshore Containers / TLS Energy is a global supplier of standard and customised containerised solutions.
Wherever you are in the world TLS can help you, please contact us.
Keywords:#DNV 2.7-1 offshore container,#Marine accommodation module,#Offshore living quarters,#Offshore office container,#Corrosion-resistant container,#Certified offshore module,#C5-M anti-corrosion coating,#Modular offshore accommodation,#Heavy-duty lifting container,#Comfortable offshore workspace
Written by Snowy
In industrial projects, the Motor Control Center (MCC) often acts as the “brain” of the electrical and automation system. The stable operation of MCC panels, PLCs, VFDs, and other control equipment depends on more than just smart wiring—it starts with a safe, reliable, and robust physical infrastructure.
At TLS, we specialize in delivering high-quality containerized MCC shelters designed for prefabrication, rapid deployment, and durability in extreme environments. These are not just boxes—they are purpose-built control cabins engineered for real-world industrial demands.
Built to Withstand, Designed to Perform
Our MCC container shelters are constructed using weather-resistant steel and industrial-grade anti-corrosion coating systems. TLS combines standardized design with on-site adaptability to meet the unique needs of each project:
Climate Control and Ventilation: Protecting What Matters
High-density electrical equipment requires precise thermal management to ensure long-term stability. TLS addresses this at the enclosure level:
More Than a Box: Designed for Electrical System Integration
TLS MCC containers are not empty shells—they are engineered integration platforms built around electrical usage scenarios:
Fast Deployment, Smarter Than Civil Works
Compared to traditional cast-in-place or welded steel buildings, TLS MCC containers offer inherent delivery and schedule advantages:
Conclusion: The Shelter Is the First Line of Defense
A high-standard MCC shelter isn’t just steel and bolts—it’s the first safety layer of your entire electrical infrastructure. With TLS, you get more than a structure; you gain a professionally engineered, ready-to-deploy foundation for modern industrial control systems.
TLS Offshore Containers / TLS Energy is a global supplier of standard and customised containerised solutions.
Wherever you are in the world TLS can help you, please contact us.
Keywords: #MCC Container #Electrical Enclosure #Industrial Control Room #Zone1Zone2 #Prefabricated Housing #Modular Energy Solutions #Explosion Proof #TLS Containers #Smart Infrastructure #Turnkey Solution
At TLS, we specialize in delivering high-quality containerized MCC shelters designed for prefabrication, rapid deployment, and durability in extreme environments. These are not just boxes—they are purpose-built control cabins engineered for real-world industrial demands.
Built to Withstand, Designed to Perform
Our MCC container shelters are constructed using weather-resistant steel and industrial-grade anti-corrosion coating systems. TLS combines standardized design with on-site adaptability to meet the unique needs of each project:
- Structural strength supports centralized installation of heavy electrical equipment, with certified lifting points and stackable frames
- Optional C4/C5 anti-corrosion coating for challenging environments such as coastal areas, deserts, and chemical zones
- Customizable floors with load-bearing reinforcements, anti-slip surfaces, and anti-static treatments
- Fully integrated external interfaces, lifting lugs, and pre-cut cable entry/exit ports for ease of deployment
Climate Control and Ventilation: Protecting What Matters
High-density electrical equipment requires precise thermal management to ensure long-term stability. TLS addresses this at the enclosure level:
- Ventilation layout and air duct design tailored to power load and heat dissipation needs
- Ready-to-integrate support for industrial air conditioners or heat exchangers, with pre-installed cutouts and mounting brackets
- Optional accessories such as louver vents, dust filters, and rain hoods for enhanced operational reliability
- Excellent air-tightness to support positive pressure ventilation and explosion-proof upgrades when needed
More Than a Box: Designed for Electrical System Integration
TLS MCC containers are not empty shells—they are engineered integration platforms built around electrical usage scenarios:
- Reinforced wall panels and optimized cutout positions for efficient cabinet installation
- Flexible prefabrication of flooring, cable trays, and cable routing pathways
- Fireproofing, explosion protection, and IP ratings tailored to specific project requirements
- Compatibility with Zone 1 / Zone 2 hazardous area classification, including structural interface adjustments and safety enhancements
Fast Deployment, Smarter Than Civil Works
Compared to traditional cast-in-place or welded steel buildings, TLS MCC containers offer inherent delivery and schedule advantages:
- Factory-prefabricated under controlled quality standards, reducing on-site installation time
- Fully enclosed for transport, with no on-site welding required
- Suitable for permanent installations, as well as temporary rental or mobile applications
- Seamlessly integrates with the customer’s electrical systems for turnkey delivery
Conclusion: The Shelter Is the First Line of Defense
A high-standard MCC shelter isn’t just steel and bolts—it’s the first safety layer of your entire electrical infrastructure. With TLS, you get more than a structure; you gain a professionally engineered, ready-to-deploy foundation for modern industrial control systems.
TLS Offshore Containers / TLS Energy is a global supplier of standard and customised containerised solutions.
Wherever you are in the world TLS can help you, please contact us.
Keywords: #MCC Container #Electrical Enclosure #Industrial Control Room #Zone1Zone2 #Prefabricated Housing #Modular Energy Solutions #Explosion Proof #TLS Containers #Smart Infrastructure #Turnkey Solution
Written by Snowy
In laboratory environments involving flammable gases, volatile solvents, or hazardous samples, explosion protection is not an option—it is a bottom line. Yet, too many organizations treat “positive pressure test chambers” as ordinary boxes merely labeled “explosion-proof,” overlooking the essential safety mechanisms inside. The result? Even a minor leak can trigger a serious accident.
We firmly believe that true explosion protection is not left to chance—it relies on scientific design and systematic engineering.
We break down the explosion-proof capability of our positive pressure test chambers into three critical lines of defense. Each one is a lifeline.
Line of Defense 1: Stable and Reliable Positive Pressure Maintenance System
Positive pressure is the core proactive protection mechanism of the chamber. By continuously supplying air and maintaining a stable positive pressure inside, the chamber effectively prevents external flammable gases from entering—eliminating one of the three essential elements of an explosion: flammable gas.
TLS’s positive pressure maintenance system features:
Line of Defense 2: Explosion-Proof Electrical Design and Zoning
Positive pressure cannot eliminate all risks. Electrical systems themselves are potential ignition sources, especially with fans, lighting, heaters, and control units coexisting inside the chamber. Electrical classification and layout must be meticulously planned.
TLS applies:
Line of Defense 3: Emergency Pressure Relief and Structural Safety Buffer
Even with all systems functioning properly, the chamber must be prepared for extreme conditions such as gas supply fluctuations, electrical short circuits, or abnormal reaction-induced gas buildup. The chamber must be designed to “vent without explosion.”
TLS’s positive pressure chambers incorporate:
Conclusion: Explosion Protection Is More Than a Label
A truly safe positive pressure test chamber does not rely solely on “explosion-proof certification” to earn trust—it hinges on every detail in the design.
At TLS, we don’t just manufacture a container; we engineer a complete hazardous environment containment system.
Keywords:#Positive pressure test chamber,#Explosion-proof design,#Laboratory safety equipment,#Flammable gas protection,#Industrial safety solutions,#Hazardous environment containment,#Explosion prevention system,#Pressure maintenance system,#Electrical explosion-proof zoning,#Emergency pressure relief valve,#ATEX certified equipment,#IECEx compliant chambers,#Overpressure protection,#Safety engineering solutions,#TLS positive pressure technology
We firmly believe that true explosion protection is not left to chance—it relies on scientific design and systematic engineering.
We break down the explosion-proof capability of our positive pressure test chambers into three critical lines of defense. Each one is a lifeline.
Line of Defense 1: Stable and Reliable Positive Pressure Maintenance System
Positive pressure is the core proactive protection mechanism of the chamber. By continuously supplying air and maintaining a stable positive pressure inside, the chamber effectively prevents external flammable gases from entering—eliminating one of the three essential elements of an explosion: flammable gas.
TLS’s positive pressure maintenance system features:
- Effective air delivery system: Redundant fans with variable frequency drives ensure stable and adjustable airflow.
- Intelligent pressure control: Differential pressure sensors combined with PLC control maintain a constant positive pressure threshold.
- Emergency air cut-off linkage: On pressure loss or electrical fault detection, the system automatically shuts off the gas source and triggers alarms.
Line of Defense 2: Explosion-Proof Electrical Design and Zoning
Positive pressure cannot eliminate all risks. Electrical systems themselves are potential ignition sources, especially with fans, lighting, heaters, and control units coexisting inside the chamber. Electrical classification and layout must be meticulously planned.
TLS applies:
- Zone 1 / Zone 2 electrical zoning: High-voltage and control systems are separately arranged to comply with ATEX and IECEx standards.
- Explosion-proof components: Use of certified explosion-proof lights, sockets, junction boxes, etc.
- Positive pressure protection for electrical panels (if required): A secondary positive pressure barrier inside the electrical cabinet adds an extra layer of safety.
Line of Defense 3: Emergency Pressure Relief and Structural Safety Buffer
Even with all systems functioning properly, the chamber must be prepared for extreme conditions such as gas supply fluctuations, electrical short circuits, or abnormal reaction-induced gas buildup. The chamber must be designed to “vent without explosion.”
TLS’s positive pressure chambers incorporate:
- Overpressure relief valves: Automatically open at preset pressures to protect the chamber structure.
- Explosion-proof windows and pressure relief panel interfaces: Ready for rapid integration if needed.
- Hermetic welding and flexible conductive structures: Absorb shock waves to prevent structural rupture and flying debris.
Conclusion: Explosion Protection Is More Than a Label
A truly safe positive pressure test chamber does not rely solely on “explosion-proof certification” to earn trust—it hinges on every detail in the design.
At TLS, we don’t just manufacture a container; we engineer a complete hazardous environment containment system.
Keywords:#Positive pressure test chamber,#Explosion-proof design,#Laboratory safety equipment,#Flammable gas protection,#Industrial safety solutions,#Hazardous environment containment,#Explosion prevention system,#Pressure maintenance system,#Electrical explosion-proof zoning,#Emergency pressure relief valve,#ATEX certified equipment,#IECEx compliant chambers,#Overpressure protection,#Safety engineering solutions,#TLS positive pressure technology