200M 400M 200M
RNG: 2.4 KM
BRG: 047°
ALT: 3,200 FT
SPD: 480 KTS
HDG: 012° N
TGT: ALPHA-7
MODE: SEARCH
PWR: NOMINAL
FREQ: X-BAND
STATUS: LOCK
NAVTGTWPNDEFRDRCOM
MIL-STD-1553IFF: ACTIVELINK-16: SYNC
SECTOR: ALPHA
THREAT: CLEAR
RADAR: ACTIVE
TRACK: 6 TGT
LAT 28.6213°N LON 77.3873°E
NX
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Oxygen Gas Boosting Systems – High-Pressure and Modular Solutions The Oxygen Gas Boosting System is designed for safe, precise, and high-pressure oxygen delivery across medical, industrial, and specialty applications. These systems enhance cylinder filling, gas transfer, and oxygen supply, ensuring reliable performance in demanding environments. Core platforms include oxygen booster pumps, pneumatic oxygen boosters, high-pressure oxygen boosters, and oxygen compressor systems, suitable for oxygen cylinder filling, portable oxygen boosters, and modular oxygen booster configurations. Advanced setups integrate PLC-controlled oxygen boosters, HMI interfaces, and oxygen purity boosters, providing precise control over flow, pressure, and gas quality. Applications span medical oxygen boosting, industrial oxygen supply, scuba cylinder boosting, hyperbaric oxygen systems, and ATEX-compliant oxygen boosters for hazardous environments. Additional capabilities include oxygen dew-point control, oxygen gas transfer systems, and plant-air oxygen boosters, ensuring safe and efficient operation in laboratories, hospitals, industrial plants, and emergency response units. The combination of portable design, high-pressure performance, and modular control options makes these oxygen gas boosting systems essential for medical, industrial, and specialty applications requiring reliable, continuous, and controlled oxygen delivery.
Oxygen gas boosting station - industrial and defence oxygen compression and high-pressure cylinder charging system by Neometrix

Oxygen Gas Boosting System

About

Neometrix Oxygen Gas Boosting System — plant-air skid boosts O2 to 350 bar, no electrical ignition risk. ASTM G-93 compliant, multi-stage intercooled design.
Oxygen gas boosting station close-up - compact oxygen booster unit with automated pressure control for medical and aviation oxygen supply by Neometrix

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Technical Details

Parameter Specification
Drive Medium Plant air (3–7 bar) / Optional electric motor
Gas Inlet Pressure 20–120 bar
Max. Outlet Pressure 350 bar (≈5,000 psi)
Flow Rate Up to 20 Nm³/h @ 200 bar; 5 Nm³/h @ 350 bar
Dew Point < -40 °C (post-filter)
Purity > 99.5 % O₂
Drive-Air Consumption 100–200 Nm³/h
Noise Level < 75 dB(A) at 1 m
Weight & Footprint ~250 kg; 1.5 m × 0.8 m skid
Safety Relief Setting 210 bar
Certifications CE, ISO 13485, ASTM G-93, ATEX Zone 2
- Cylinder Filling & Gas Transfer: Rapid, safe topping-off of industrial, medical, and emergency O2 cylinders.
- Medical & Life-Support: ICU backup, hyperbaric therapy charging, mobile field-hospital carts.
- Aviation & Defense: Aircraft emergency O2, pilot rebreather top-off, EVA ground support.
- SCUBA & Rebreather Industry: Dive-shop fill stations, military dive teams.
- Industrial Manufacturing: Laser cutting, welding, glass-melting, reactor purges, semiconductor oxidation.
- Environmental & Research: Waste-water aeration, hypersonic wind-tunnel injection, combustion tests.

   
        

Key Features

  • Multi-stage piston booster with SS intercoolers lifts 20–120 bar O2 inlet to 350 bar (≈5,000 psi) via plant air.
  • Inline O2 analyzer and moisture sensor maintain >99.5% purity and dew point <–40 °C for medical-grade O2 output.
  • ASTM G-93 oxygen-clean construction with hydro-tested, certified hoses ensures safe, contamination-free O2 service.
  • Integrated 7″ PLC/HMI touchscreen stores recipes, logs events, and offers Modbus/SCADA connectivity for remote use.
  • 210 bar relief valve and post-shutdown purge sequence protect all downstream connections from oxygen overpressure.
  • Forklift pockets, lifting eyes, and ISO 8434 quick-connects enable rapid O2 skid deployment in under two hours.
  • ATEX Zone 2 rated, fully pneumatic design eliminates electrical ignition risk in oxygen-enriched hazardous zones.
  • Serves medical cylinder filling, aircraft rebreather top-off, hyperbaric therapy, laser cutting, and O2 reactors.

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Details


Introduction
The Oxygen Gas Boosting System is a compact, skid-mounted unit designed to elevate oxygen pressures up to 350 bar (≈5,000 psi) using only plant air (3–7 bar), eliminating electrical ignition risks and ensuring intrinsic safety for oxygen service. Its oxygen-clean construction (ASTM G-93), multi-stage compression, and integrated control logic make it suitable for cylinder filling, rebreather top-off, emergency backup, and continuous feed in critical medical, industrial, and defense applications.

Key Features
▹ Multi-Stage Compression with Intercooling: Three- to five-stage piston arrangement with stainless-steel intercoolers to maintain gas integrity and manage temperatures < 80 °C.
▹ Variable Drive-Air Control: Optional proportional valve or hybrid electric drive for soft-start and optimized air consumption.
▹ Purity & Dew-Point Monitoring: Inline oxygen analyzer (> 99.5 % purity) and moisture sensor (dew point < –40 °C) for medical and semiconductor standards.
▹ Oxygen-Clean Design: All wetted parts, hoses, gauges, and vessels cleaned and certified to ASTM G-93; hydro-test-certified hoses and calibration certificates included.
▹ Explosion-Proof Operation: Fully pneumatic (or ATEX-rated electric) design approved for Zone 2 hazardous areas.
▹ Integrated PLC/HMI Interface: 7′′ touchscreen with recipe storage, SCADA/Modbus connectivity, event logging, and self-diagnostics.
▹ Automated Purge & Relief: Post-shutdown purge clears residual O2; safety-relief valves set at 210 bar protect against over-pressure.
▹ Modular Skid-Mount Construction: Forklift pockets, lifting eyes, shock mounts, and pre-piped skid for rapid deployment.

Technical Specifications
Parameter Specification
Drive Medium Plant air (3–7 bar) / Optional electric motor
Gas Inlet Pressure 20–120 bar
Max. Outlet Pressure 350 bar (≈5,000 psi)
Flow Rate Up to 20 Nm³/h @ 200 bar; 5 Nm³/h @ 350 bar
Dew Point < -40 °C (post-filter)
Purity > 99.5 % O₂
Drive-Air Consumption 100–200 Nm³/h
Noise Level < 75 dB(A) at 1 m
Weight & Footprint ~250 kg; 1.5 m × 0.8 m skid
Safety Relief Setting 210 bar
Certifications CE, ISO 13485, ASTM G-93, ATEX Zone 2
Applications ▹ Cylinder Filling & Gas Transfer: Rapid, safe topping-off of industrial, medical, and emergency O2 cylinders. ▹ Medical & Life-Support: ICU backup, hyperbaric therapy charging, mobile field-hospital carts. ▹ Aviation & Defense: Aircraft emergency O2, pilot rebreather top-off, EVA ground support. ▹ SCUBA & Rebreather Industry: Dive-shop fill stations, military dive teams. ▹ Industrial Manufacturing: Laser cutting, welding, glass-melting, reactor purges, semiconductor oxidation. ▹ Environmental & Research: Waste-water aeration, hypersonic wind-tunnel injection, combustion tests. System Architecture & Control ▹ Air-Drive Section: Piston assembly isolated by stainless membranes; two-stage filtration (coalescing + carbon) for pneumatic valves. ▹ Oxygen Compression Block: Oxygen-service pistons with intercoolers to limit temperatures; dynamic seals for leak-free operation. ▹ Control & Safety Subsystem: PLC monitors pressures, executes PID loops; redundant transmitters and mechanical relief valves ensure fail-safe operation. ▹ Human-Machine Interface: 7′′ touchscreen for setpoints, alarms, maintenance countdown; Ethernet/Modbus TCP for remote SCADA integration. Principle of Operation ▹ Startup: Drive-air signal or electric motor engages booster at low stroke, ramping to full flow. ▹ Compression: Oxygen passes through staged pistons; intercoolers remove heat to protect gas quality. ▹ Pressure Regulation: Outlet transducer closes drive-air valve at setpoint; excess pressure is bled safely. ▹ Shutdown & Purge: Drive-air venting and purge valve operation clear residual oxygen, avoiding stagnation. Maintenance & Lifecycle ▹ Monthly/500 h: Inspect filters, hoses, relief-valve settings. ▹ Quarterly: Calibrate transmitters and dew-point sensor; test interlocks. ▹ Annual: Full oxygen-clean re-certification; dynamic seals and hose hydro-test to 1.5× MAWP. ▹ Spares Kit: O-rings, filters, relief cartridges, transducer module, PLC backup. Optional Modules & Customization - Redundant Booster Skid: Auto-switchover for uninterrupted operation. - Gas Blending Package: Precise O2–N2 mixtures via mass-flow controllers. - Remote Monitoring: Cloud telemetry with SMS/email alerts, dashboard analytics, MQTT/OPC-UA. - Climate-Controlled Enclosure: IP55 cabinet with heater/AC for –20 °C to +55 °C environments. - Mobile Configuration: Wheel-mounted frames, fold-down skid arms, shock isolation. Installation & Commissioning - Plug-and-Play Piping: ISO 8434 quick-connect fittings, reducing hook-up time to < 2 hours. - Factory Acceptance Testing: Pneumatic endurance run, PSIP report, witness video. - Site Survey & Layout: 2D/3D CAD for placement, ventilation, and service access. - Operator Training: Two-day on-site course covering operation, maintenance, and emergency procedures. Environmental & Efficiency Considerations - Optimized Air Consumption: Piston timing logic cuts drive-air use by up to 30%. - Noise Reduction: Acoustic enclosure and chamber muffler achieve < 70 dB(A), meeting OSHA standards. - Heat Recovery: Optional exchanger captures waste heat for process or building heating. - Compact Footprint: 1.2 m × 0.8 m skid; modular stacking of dryers or buffer tanks. After-Sales Support & Warranty - Standard Warranty: 12 months on parts and labor; extendable to 24 months with annual maintenance contract. - Service Agreements: Bimonthly inspections, 24×7 hotline, 48-hour spare-parts delivery. - Spares Availability: Kits stocked for 5 years post-sale, distributed via Neometrix Defence Limited. - Software Updates: Free firmware enhancements and cybersecurity patches via USB or remote download. Conclusion This turnkey Oxygen Gas Boosting System combines ultra-safe pneumatic compression, smart controls, and scalable modules to meet the most demanding requirements in medical, industrial, and defense sectors. With its oxygen-clean design, robust safety features, and comprehensive lifecycle support, it delivers unmatched reliability, purity assurance, and total cost of ownership optimization.

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