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Customizing a Hyperbaric Oxygen Chamber involves far more than choosing its size, color, or exterior finish. Pressure range, oxygen delivery, chamber dimensions, safety controls, electrical requirements, and accessibility can all affect how well the system fits a home recovery routine. Home-oriented soft-shell models are designed around practical placement and straightforward operation, but the exact configuration still needs to be defined before production. A clear pre-order specification helps buyers communicate these requirements accurately, compare quotations more effectively, and avoid discovering important mismatches after the chamber has already been built.
Start the requirement brief by describing the user rather than naming an ATA level. State whether the chamber is intended for home wellness, fitness recovery, post-exercise recovery, relaxation, or rehabilitation support. Then define the expected capacity and how the user prefers to spend the session: lying flat, sitting, reclining, or switching between positions. Approximate user height and body size are useful because a chamber can look spacious in an exterior drawing while offering less usable interior room once supports, cushions, hoses, and entry hardware are considered.
Entry design should be specified at the same stage as chamber dimensions. Record the preferred opening style, minimum entrance dimensions, and whether the user needs additional room to enter comfortably. If mobility is limited, tell the manufacturer before the shell and support structure are finalized; accessibility is much harder to solve as a cosmetic modification after production.
Control access belongs in the same discussion. Some buyers want the occupant to manage the chamber independently, while others prefer controls accessible from both sides. The GIHOMO SL001 uses interior and exterior display panels, giving users access to controls from both inside and outside the chamber.
Measure the home before asking for a final chamber size. The available footprint can quickly determine whether a wider chamber, a longer lying configuration, or a more compact design is practical. The compact 1.3 ATA one-person soft-shell Hyperbaric Oxygen Chamber, ST001, measures 1700 × 1500 × 1000 mm, while the lying-type SL001 uses a longer 2200 mm format with an 800 mm diameter.
Those differences illustrate why a request such as “one-person soft chamber” is not specific enough for custom production. The requirement brief should state the available space, preferred body position, capacity, and access needs first. Pressure and oxygen specifications can then be matched to a chamber format that actually works in the intended room.

Once the use case is clear, convert it into measurable chamber requirements. For a home-oriented soft-shell Hyperbaric Oxygen Chamber, the specification should cover construction type, number of occupants, external dimensions, minimum usable internal space, body position, entrance dimensions, and any portability or storage constraints. Soft-shell configurations are particularly suited to home wellness and recovery settings where manageable weight, convenient placement, and straightforward setup are priorities.
These variables should be treated as one configuration rather than separate options. Increasing interior width, changing from sitting to lying, or enlarging the entrance can affect shell geometry, supporting structure, air volume, and placement requirements. A quotation should therefore identify the exact dimensional configuration being priced rather than merely listing the product family.
Do not ask only for the highest pressure the chamber can reach. State the intended working pressure and whether adjustable operation is required. The manufacturer should confirm the supported working range, how pressure is set, how it is displayed, and how the system maintains the selected condition.
Different soft-shell configurations may be designed around different pressure levels. The GIHOMO ST001 operates at 1.3 ATA, while the STW03 uses a 1.5 ATA lying-type configuration. The useful buying question is therefore not “Which ATA is best?” but “What operating pressure does this application require, and is the complete chamber engineered around that specification?”
A Hyperbaric Oxygen Chamber is a system, so pressure cannot be specified independently from oxygen delivery. The RFQ should identify the oxygen source or concentrator, rated purity, flow in liters per minute, delivery pressure, number of outlets, breathing interface, and whether a BIBS arrangement is required. “Oxygen concentrator included” does not provide enough information for technical comparison.
The GIHOMO ST001 pairs a GH05A concentrator with 5 L/min flow, oxygen purity above 90%, and oxygen output pressure of 100 kPa. The STW03 uses a GH15A system delivering 15 L/min, also with oxygen purity above 90% and 100 kPa output pressure.
Those figures should not be read as evidence that more flow is automatically better. They show that oxygen capacity changes with the chamber configuration. Buyers should ask the manufacturer to confirm that the selected oxygen system, chamber volume, intended pressure, breathing interface, and number of users are engineered as a matched package.

Safety specifications should describe functions, not rely on phrases such as “advanced safety system.” A custom order should identify how chamber pressure is measured, displayed, controlled, and released. Automatic decompression, manual pressure release, emergency release access, and any redundant pressure-relief mechanisms should appear as separate line items where applicable.
GIHOMO soft-shell configurations combine electronic and mechanical pressure-relief mechanisms. The ST001 includes dual emergency pressure-release valves, while the SL001 incorporates real-time monitoring of chamber pressure and oxygen conditions. These are the kinds of functions that should appear in the agreed technical specification rather than being assumed from a general product description.
Oxygen monitoring deserves equal attention because oxygen concentration and electrical conditions are part of the chamber’s safety environment. Oxygen-rich environments require careful control of electrical components, ventilation, grounding, materials, and items brought into the chamber because elevated oxygen levels increase combustion risk.
The requirement brief should therefore identify the monitoring and protection functions expected from the chamber:
GIHOMO soft-shell configurations can incorporate real-time oxygen monitoring and forced ventilation when the configured oxygen threshold is exceeded. The STW03 also combines oxygen monitoring, a 24 V control power supply, and internal and external control panels. Its operating controls are designed to support straightforward home use without requiring professional medical staff for routine operation.
Safety and effectiveness are closely connected at the specification level. A chamber is not effective merely because it reaches a particular ATA rating; pressure, oxygen supply, monitoring, and control functions must work together to maintain the conditions defined in the order.
A chamber can fit the destination room and still be difficult to install. Before production, measure the doorway, hallway turns, staircase access, elevator if applicable, and the clearance around the final chamber position. Also reserve practical space for the oxygen concentrator, supporting equipment, hoses, cables, ventilation, and comfortable entry.
Ask the supplier for both operating dimensions and packing dimensions. Component weights should also be included in the delivery information. The lightweight lying-type soft Hyperbaric Oxygen Chamber, SL001, weighs about 20.5 kg, while the STW03 is approximately 24 kg and uses a larger lying configuration. Such differences can affect where a home chamber can be carried, positioned, or stored.
Electrical requirements should be settled before the chamber leaves production. State the destination country, supply voltage, frequency, plug type, available outlet arrangement, and any constraints on cable length or equipment placement. The manufacturer should then confirm the power requirements for the chamber controls, oxygen concentrator, compressor, and selected accessories as a complete system.
Rated power can vary even among similar home configurations. The ST001 and SL001 use approximately 750 W, while the 1.5 ATA lying-type soft-shell Hyperbaric Oxygen Chamber, STW03, uses approximately 850 W. That difference is another reason not to carry electrical assumptions from one Hyperbaric Oxygen Chamber model into a customized order.
Once the chamber engineering is settled, the buyer can turn to comfort. Interior finish, mattress or seating style, lighting, device holders, trim, and optional entertainment features may make the chamber more pleasant to use and better suited to a particular home environment. They should nevertheless remain separate from the specifications governing chamber pressure, oxygen delivery, structural size, access, and safety.
This distinction keeps the buying process disciplined. Changing a cushion or exterior finish is fundamentally different from changing the internal dimensions, pressure capability, or oxygen system. When both categories are mixed into one customization list, cosmetic preferences can receive disproportionate attention while performance requirements remain vague.
Branding should have its own approval sheet. Record the brand artwork, intended logo position and dimensions, exterior colors, trim choices, interface language, touchscreen graphics if available, and any agreed packaging presentation. Separate approval makes it easier for both buyer and manufacturer to distinguish visual changes from engineering changes.
A practical custom order therefore has two approval tracks: the technical specification defines what the Hyperbaric Oxygen Chamber must do, while the personalization sheet defines how the finished product should look and feel.
The final stage is document control. A detailed sales conversation has little value if the agreed specification never reaches the formal production documents. Before approval, compare the quotation, chamber drawing, technical specification, customization sheet, packing information, and final invoice line by line.
The order package should make the following points unambiguous:
final model or custom configuration and approved chamber drawing;
capacity, shell format, dimensions, entry arrangement, working pressure and adjustment range;
oxygen-system model, purity, flow, delivery pressure, breathing interface and BIBS configuration where selected;
pressure controls, monitoring functions, ventilation response and safety-release mechanisms;
voltage, frequency, plug configuration, rated power and included supporting equipment;
interior, color, branding, interface and accessory selections;
applicable certificates, manual, inspection or functional-test requirements, warranty scope, packing details, and production/shipping terms.
This final check prevents a common procurement problem: one configuration appearing in the sales discussion, another in the drawing, and a third in the invoice. A complete requirement brief gives the manufacturer a single technical target and gives the buyer a clear basis for verifying the finished order.
A custom Hyperbaric Oxygen Chamber works best when performance requirements are settled before cosmetic choices. Pressure, oxygen delivery, chamber dimensions, safety controls, electrical configuration, accessibility, and installation conditions should all be confirmed in writing before production. Guangdong Gihomo Medical Technology Co., Ltd. offers soft-shell chamber configurations and OEM/ODM customization for different sizes, appearances, and interior or exterior requirements. By turning these decisions into a clear specification brief, buyers can reduce misunderstandings, simplify installation planning, and receive a chamber better matched to their home recovery needs.
A: Define the chamber type, capacity, dimensions, working pressure, oxygen flow, delivery pressure, breathing system, safety controls, electrical configuration, accessibility needs, and installation conditions before requesting a final quotation.
A: Start with the intended home use rather than selecting the highest ATA available. Confirm the target working pressure, adjustment range, pressure-control method, and compatibility with the chosen oxygen system.
A: Specify the oxygen source, purity, flow rate, delivery pressure, number of outlets, breathing interface, and whether BIBS is required so the oxygen system matches the chamber configuration.
A: Confirm external dimensions, usable interior space, entrance size, user capacity, preferred sitting or lying position, and the available home footprint rather than relying only on a standard model size.
A: Key requirements may include pressure monitoring, manual and automatic pressure release, emergency depressurization, oxygen monitoring, ventilation response, suitable electrical protection, and controls accessible from inside or outside the chamber.
A: Measure the room, doorways, hallways, stairs, and equipment clearance, then confirm voltage, frequency, plug type, rated power, ventilation, cable routing, and space for supporting oxygen equipment.