Multiplace Hyperbaric Chamber
Commercial Multiplace Hyperbaric Oxygen Chamber Systems
Engineered for clinical hospitals, advanced wellness centers, and sports rehabilitation facilities, our Multiplace Hyperbaric Chamber systems accommodate multiple patients simultaneously under pressurized oxygen environments. Built with ASME-certified carbon steel or Q345R pressure vessels, these systems integrate multi-compartment layouts (main lock and entry lock), medical-grade environmental control, and redundant safety interlocks to support protocols ranging from 1.5 ATA to 3.0 ATA.
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Walk-In Hyperbaric ChamberThe Walk-In Hyperbaric Chamber is a multi-place system engineered for clinical, wellness, and sports recovery environments. It allows multiple occupants to undergo Hyperbaric Oxygen Therapy (HBOT)...read more
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Large-Volume Hyperbaric ChamberThe Multi-Place Large-Volume Hyperbaric Chamber is engineered for clinical hospitals, advanced wound care centers, and research facilities requiring simultaneous treatment for multiple patients....read more
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Key Features
Multi-Lock Compartmentalization: Features a main treatment chamber and a separate entry/exit medical lock, allowing clinical staff or equipment transfer without depressurizing the main cabin.
Redundant Safety Relief Valves: Dual mechanical safety pop-off valves and electronic pressure release mechanisms prevent over-pressurization.
Built-in Breathing System (BIBS): Individual mask regulators supply 100% oxygen directly to patients, preventing cabin oxygen enrichment.
Continuous Gas Monitoring: Real-time sensors track cabin oxygen concentration, carbon dioxide (CO2), carbon monoxide (CO), and humidity levels with automated audio-visual alarms.
Ergonomic Seating & Lighting: Flame-retardant medical-grade leather seating with 24V LED anti-glare illumination.
Technical Specifications
|
Parameter |
Specification Details |
|
Chamber Capacity |
4 to 12 seats (custom configurations available) |
|
Operating Pressure |
1.5 ATA - 3.0 ATA (Standard working pressure: 2.0 ATA) |
|
Vessel Material |
Q345R pressure vessel steel / 304 Stainless Steel interior trim |
|
Gas Supply Interface |
Medical-grade oxygen (93% +/- 3% or 99.5%), breathing air, and compressed air |
|
Fire Suppression System |
Automated water mist activation complying with NFPA 99 standards |
|
Control System |
PLC-based automated pressure control with manual override |
|
Environmental Control |
Integrated HVAC system for temperature (20-26 deg C) and humidity regulation |
|
Electrical Supply |
380V/220V, 50Hz/60Hz, 3-phase (customizable to regional grids) |
Applications
Clinical Wound Care:
Adjunctive therapy for diabetic foot ulcers, radiation necrosis, and non-healing grafts.
Elite Sports Recovery:
Lactic acid clearance, soft tissue injury rehabilitation, and fatigue reduction for professional sports teams.
Neurological & Post-Surgical Recovery:
Clinical support for traumatic brain injury (TBI), stroke rehabilitation, and accelerated tissue healing.
Advanced Wellness & Longevity Clinics:
Commercial protocols focused on cellular regeneration and systemic anti-inflammatory treatments.
Customization Options
Seating Layouts:
Modular folding medical chairs or stretcher-compatible berths.
Exterior Finishes:
Powder-coated carbon steel shell in institutional color palettes or brushed stainless steel shrouds.

Chamber Dimensions:
Scalable diameter from 2.0 meters to 3.2 meters; length tailored to facility spatial constraints.
Integration Interfaces:
Ports for external ECG monitors, EEG equipment, and intravenous (IV) infusion lines.
Certifications & Compliance
Pressure Vessel Standard:
ASME Section VIII Division 1 (U Stamp available upon request) / PED 2014/68/EU.
Quality Management:
ISO 13485 (Medical Devices) and ISO 9001 certified manufacturing facilities.
Electrical Safety:
IEC 60601-1 compliance for electromedical equipment.
Manufacturing & Quality Control
Fabrication occurs in our 15,000-square-meter pressure vessel workshop utilizing automated submerged arc welding (SAW) and CNC plasma cutting.
NDT Inspection:
100% radiographic testing (RT) and ultrasonic testing (UT) performed on all primary structural weld seams.
Hydrostatic Testing:
Each manufactured vessel undergoes water jacket pressure testing at 1.5x maximum allowable working pressure (MAWP) prior to assembly.
Factory Acceptance Testing (FAT):
72-hour continuous dry-run pressure cycling test for valves, compressors, and PLC logic boards before dispatch.

Proven Global Deployment
Project Reference:
8-Seat Multiplace System for a European Regional Clinical Rehabilitation Center.
Configuration:
Dual-lock vessel (6 main cabin seats + 2 medical lock berths), integrated chilled-water HVAC, and triple-redundant BIBS.
Implementation:
Successfully delivered, passing independent third-party notified body inspection (TUV) and commissioning on-site within 14 days of port arrival.

Shipping Method: Dismantled major modules packed in seaworthy ISPM 15-compliant fumigated wooden crates, or shipped via open-top flat rack containers for large-diameter units.
Lead Time: 60 to 90 days from drawing approval and deposit receipt.
Site Support: Engineering installation supervision and on-site commissioning services provided by certified technicians.
FAQ
Q: What site structural requirements are needed for a multiplace chamber installation?
A: Floors must withstand static loads exceeding 1,500 kg/m2. Facilities require dedicated medical oxygen manifolds, compressed air lines, and adequate ceiling clearance for piping and HVAC routing.
Q: How is fire safety managed inside an oxygen-rich pressure vessel?
A: Systems utilize a closed-circuit BIBS mask delivery method so ambient cabin oxygen remains below 23%. Additionally, an independent NFPA 99-compliant water mist suppression system is installed inside the cabin.
Q: What is the maintenance schedule for the compressor and valves?
A: Routine filter replacements and valve seal inspections are recommended every 500 operational hours, with a comprehensive overhaul scheduled every 5,000 hours.

Request a Quote
To receive a detailed technical proposal, layout drawing, and commercial quotation tailored to your facility requirements, submit the parameters below:
Required patient capacity (e.g., 6-seat, 8-seat)
Target operating pressure (ATA)
Destination port or installation site country
Compliance requirements (ASME, CE, or local standards)
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