Questions. Answered.
Everything buyers ask before they commit: price, safety, daily use, and what happens in year five.
Buying & delivery
Price, what is included, and getting it into your home.
Yes. OxyHelp chambers of different sizes can be installed and used at home, as well as in clinics and wellness centres, provided the space meets the installation requirements. You do not need a member of staff standing beside the chamber to operate valves or manage the pressure throughout a session: the process is automated, and you can control it from the touchscreen inside.
The system works and responds in real time. It measures oxygen and carbon dioxide levels inside the chamber, controls compressor operation and continuously ventilates the chamber with fresh air. The chamber is pressurised with air; concentrated oxygen is delivered separately through the breathing interface. Our patent-pending air-quality architecture is designed to keep oxygen in the chamber atmosphere below 23.5%. If that level is exceeded, the chamber automatically shuts down.
For those who prefer a ready-made programme, an optional package of eight automated Smart Protocols is available. Developed specifically for OxyHelp chambers by Dr Zayd Ratansi, who has more than 26 years of clinical experience and is a member of IHA and IBUM, the protocols let you select a session profile and have the chamber manage its programmed settings.
We’ll review your room, access route and equipment placement to recommend the right chamber and installation plan for your home.
The standard price includes the chamber and its control system. To complete the setup, you need one cooling unit per chamber and one OXYSPA oxygen concentrator per person using it. We list these separately in your quotation, so you can see the full cost of your chosen setup.
OXYSPA is designed specifically to deliver oxygen against the back pressure inside a hyperbaric chamber. It delivers 20 L/min at 1 ATA and 10 L/min in tests at 2 ATA. Its rectangular shape keeps the equipment compact: units can be stacked, or placed in an optional rack. The exhaust can also be routed into suitable building ventilation or outdoors through a window, rather than released into the equipment room.
There is more than one way to bring an OxyHelp chamber into a room. Depending on the model and the access route, it may be delivered fully assembled or brought in as separate sections and assembled on site. This means a doorway that is too narrow for the finished chamber does not necessarily rule out installation.
Before confirming your order, our team checks the entire route, not just the front door. We review the narrowest doorways, corridors, stairs or lift, as well as the space available inside the room. From those measurements, we determine how your chosen chamber can be delivered and installed.
Of course. By 2026, OxyHelp has placed more than 3,100 chambers worldwide, so we can often help you find one to experience near you. Leave your details in our contact form, and a local partner will reach out in a language you’re comfortable with to discuss available locations and arrange a visit.
Yes. OxyHelp chambers are installed in more than 50 countries worldwide. Our international network supports delivery, installation and ongoing service well beyond Europe. Tell us where your chamber will be installed, and we’ll explain the arrangements available in your location.
Every OxyHelp chamber comes with a two-year warranty, which can be extended to five years at purchase. Service and replacement parts remain available after the warranty expires.
Many software issues can be diagnosed and resolved remotely using a Windows laptop. If you notice a technical problem, submit a request at oxyhelp.com/service. Our team will contact you to diagnose the issue and arrange the next steps. When a repair requires a visit, on-site service can be arranged in many locations worldwide.
We offer several ways to work with OxyHelp, from affiliate partnerships and reseller agreements to official representation in an exclusive territory. The margin available depends on the partnership model and your purchase volume over an agreed period. Tell us about your market and business plans, and we’ll discuss the structure that fits.
The main running cost is electricity for the chamber’s compressors, oxygen concentrator and cooling unit. For popular models such as the C2 and C1 E, peak power demand is approximately 6.5 kW. Actual electricity use depends on the chamber configuration and how the equipment operates during a session.
Routine maintenance includes replacing the filters every 800 operating hours or once a year, whichever comes first. You should also allow for personal breathing interfaces, such as nasal cannulas, which are available from pharmacies.
The entrance trim seal needs regular care with a suitable spray. Where shipping arrangements allow, we include this spray in the chamber’s starter pack. Our team will explain the maintenance schedule and provide the relevant instructions when your chamber is installed.
The chamber
What it is, what pressure it runs at, and how it is built.
No. OxyHelp chambers are non-medical wellness devices and we make no medical claims. In hospitals, at higher pressures, hyperbaric oxygen is a prescribed medical treatment. That is a different setting. If you have a health concern, talk to a doctor.
Home and wellness use sits at a gentle 1.3 to 1.5 ATA. Above 2.0 ATA you are in clinical, supervised territory. Our chambers are limited to 50 kPa and tested well beyond it, at 150 kPa.
ISO 9001, ISO 14001 and ISO 45001, independently verified every year. Additional documentation for qualifying medical-sector buyers is available on request.
The chamber has standard feeding nozzles inside that connect to any type of mask, so you can source a mask you find comfortable locally. An oxygen concentrator is available as an option.
We favour breathing interfaces that leave the nose and mouth uncovered, such as nasal cannulas or nasal pillows. A mask creates a space around the airways where exhaled CO2 could remain and be inhaled again unless its breathing and exhaust system is properly designed.
For a BIBS mask, two functions must work together. Effective mask washout clears exhaled CO2 from the mask before the next breath. An overboard exhaust system then carries that gas outside the chamber; depending on the design, it may include a dumping reservoir. An exhaust outlet alone does not establish that the mask provides adequate washout.
Cost and hygiene matter too, especially when several people use the same chamber. A complete BIBS setup can cost more than €1,000, and each user needs an appropriately cleaned or individual breathing interface. In a busy clinic, the team must also account for cleaning and maintaining the reusable tubing and other parts of the breathing circuit between users. Lower-cost masks do not remove that responsibility.
OxyHelp combines a face-free breathing interface with continuous fresh-air ventilation and real-time monitoring of O2 and CO2 inside the chamber. Individual nasal cannulas are affordable and easy to replace between users, making day-to-day hygiene simpler for families and high-volume centres alike. If you need a mask-based setup, our technical team can review the complete breathing circuit with you.
Very little. The design runs for years without intervention; the only foreseeable wear part is the entrance trim seal after three to four years, a two-hour job with video instructions and the parts supplied by us. Day to day, it comes down to keeping the chamber clean with a neutral detergent.
The shell is only part of the answer. To understand what happens during a session, look at the whole system: how it builds pressure, replaces the air inside, delivers oxygen to the user and measures the chamber atmosphere.
Some soft-shell chambers do provide continuous airflow. But a compact unit advertised as a compressor, oxygen source and ventilation system should be assessed on measured performance at operating pressure. Ask how much fresh air passes through the occupied chamber, what oxygen flow reaches the user, and whether O2 and CO2 are measured throughout the session.
OxyHelp uses dedicated systems for these jobs. In our monoplace chambers, the air supply delivers 340 L/min at 1 ATA. Continuous chamber ventilation is specified separately at 280 L/min for one occupant under maximum working pressure. An OXYSPA concentrator produces oxygen from ambient air and supplies it directly to the breathing interface. O2 and CO2 are monitored inside the chamber in real time.
Some chamber setups instead rely on oxygen cylinders. A cylinder stores gas at high pressure and must be secured, transported and handled correctly. If oxygen leaks into the room or chamber, it can create an oxygen-enriched atmosphere in which a fire starts more easily and burns far more intensely. That makes the location of the cylinders, the gas connections, ventilation and oxygen monitoring essential questions, not minor accessories.
OxyHelp does not require stored oxygen cylinders or liquid oxygen for its standard setup: OXYSPA produces oxygen as the session runs. When comparing chambers, look at the complete gas supply and safety system, not the shell alone.
OxyHelp chambers are non-medical wellness devices, so medical FDA clearance does not apply to them, and we will not pretend otherwise. Worth knowing: in the US, "FDA registered" only means a form was filed. What tells you a chamber is well built is the engineering: a shell tested beyond its working pressure, and a factory audited yearly under ISO 9001, 14001 and 45001.
Using it
Sessions, controls, and what a normal day with the chamber looks like.
At a gentle 1.3 to 1.5 ATA, the chamber is comfortable enough for daily use. Most owners treat it like sleep or training: a routine, not an event.
No. Sessions are set on a digital panel, the door opens by hand from inside, and pressure can be stopped at any time. The chamber is built for self use.
Yes. Sessions run on a pre-set time and end with a slow automatic depressurisation, a ramp of around 8 minutes that keeps your ears comfortable. You can also stop the session at any time from inside.
Around 40 seconds. The everyday end-of-session ramp is deliberately slower, around 8 minutes, for comfort.
Automatic ear pressure relief is built in, and compression speed is adjustable between slow, medium and fast. If your ears are sensitive, a slower ramp usually settles it.
Mostly on how long the compressor has been running, and on your own body heat. For continuous use beyond an hour, the optional cooler keeps the cabin comfortable.
Yes. Every professional partner gets onboarding, operating protocols and ongoing support from the factory team.
Yes. The cabin holds pressurised air, not pure oxygen, so ordinary electronics are not the fire hazard they are in oxygen-filled clinical chambers. A two-way intercom comes as standard, and an audio-video option is available for films and music.
Either, depending on how the panel is set. Pressure and session length can be adjusted at any time from the touchscreen outside. From inside, the standard controls are start, stop and cooling; for self use, the panel can be set so everything is available from within.
Safety
The honest answers, including the one nobody else gives you.
Yes. It is built for self use: sessions are pre-set, the door opens by hand from inside, and pressure can be stopped at any time. Across 3,100+ installed chambers over 15 years, there are zero reported safety incidents.
We recommend it. OxyHelp chambers are non-medical wellness devices and we make no medical claims, so treat this like starting any new wellness routine: a routine check-up is good practice, and if you have a health condition, talk to your doctor first.
No. The chamber is pressurised with ordinary air. The extra oxygen comes through a mask, fed by a concentrator that separates it out of the room. Pure-oxygen chambers exist in hospitals, with the fire precautions that requires.
A sealed chamber lets the CO2 from your own breathing build up as you sit in it. Ours ventilates continuously: fresh air in, stale air out, the whole session. That heavy, stuffy feeling in some chambers is CO2, not depth.
The one worth understanding is air handling on power failure. A soft, sealed chamber can stay inflated with no ventilation while CO2 builds up around the occupant. An OxyHelp chamber depressurises automatically when power is lost, and the door can always be opened by hand from inside.
The fatal incidents reported in the US press happened in chambers filled with pressurised oxygen, an environment where a spark or a device brought inside can be catastrophic. OxyHelp cabins are pressurised with ordinary air, and oxygen arrives only through a personal mask. Different design, different risk: zero reported incidents across 3,100+ chambers in 15 years.