Glove Box
Single Station Super Purification Vacuum Glove Box System for Ultra Pure Inert Atmosphere Research
Item Number : ST13
Price varies based on specs and customizations
- Gas Purity (O2 & H2O)
- < 1 ppm
- Chamber Material & Dimensions
- 304 Stainless Steel (3mm), 1220×750×900 mm
- Control System & Blower Flow
- Siemens PLC Touchscreen, 90 m³/h Circulation
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Product Overview


This single station super purification vacuum glove box is engineered to deliver an ultra-clean, controlled inert atmosphere for handling highly sensitive materials. Operating under closed-loop gas circulation with integrated catalytic deoxygenation and molecular sieve moisture removal, the system reliably sustains ambient conditions with less than 1 ppm of oxygen (O2) and less than 1 ppm of moisture (H2O). It provides researchers and industrial engineers with an uncompromised barrier against atmospheric contamination during critical synthesis, handling, and assembly operations.
Designed specifically for universities, advanced research institutes, and modern battery pilot lines, the equipment supports specialized work in solid-state electrolytes, lithium-ion battery assembly, organometallic synthesis, perovskite solar cell fabrication, and high-purity chemical processing. The robust 304 stainless steel containment paired with dual antechambers allows seamless material transfer without perturbing the primary chamber equilibrium.
Built for continuous operation and rigorous process control, this system integrates an industrial-grade Siemens PLC automation platform with an intuitive touchscreen interface. Automatic regeneration protocols, continuous pressure balancing, integrated gas purification loops, and optional IoT smart connectivity ensure operational reliability, low maintenance overhead, and comprehensive traceability across demanding research cycles.
Key Features
- Ultra-Pure Atmosphere Maintenance: Advanced single-column purification architecture containing 5 kg of high-efficiency copper catalyst and 5 kg of molecular sieve achieves and sustains moisture and oxygen concentrations below 1 ppm, ensuring zero degradation of air-sensitive substrates.
- Industrial Siemens PLC Automation: A high-resolution touchscreen PLC system governs all routine operations, offering automated pressure compensation (freely configurable within ±15 mbar with ±16 mbar overpressure safety trip), comprehensive self-diagnostics, auto-restart upon power recovery, and secure multi-level password protection.
- Integrated Closed-Loop Gas Circulation: The internal high-performance blower circulates working gas (Nitrogen, Argon, or Helium) at 90 m³/h (upgradeable to 145 m³/h or 180 m³/h), ensuring rapid atmosphere homogenization and uniform contaminant removal across the entire internal volume.
- Automated Catalyst Regeneration: Fully automated PLC-driven thermal regeneration routines utilize an external forming gas mixture (90-95% inert gas / 5-10% H2) to restore the copper catalyst and desorb water from molecular sieves without requiring hardware disassembly.
- Dual-Chamber Material Transfer Architecture: Includes a large automated cylindrical antechamber (Ø360 mm x 600 mm) with a smooth sliding tray and vertical-lift aluminum doors, alongside a manual small antechamber (Ø150 mm x 300 mm) for rapid tool and vial transfers without unnecessary cycle times.
- Heavy-Duty Stainless Steel Construction: The main containment body is fabricated from 3 mm thick 304 stainless steel with an interior oil-film brushed finish for chemical resistance and effortless decontamination, complemented by an 8 mm tempered safety glass front viewing window.
- Ergonomic Hands-Free Pressure Adjustment: Dual-directional integrated foot pedals allow operators to adjust chamber pressure upward or downward during delicate glove operations without removing hands from the workspace or breaking focus.
- Optional IoT Smart Management Platform: Cloud-enabled monitoring system provides remote centralized management, real-time data reporting, automated alarm notifications, historical parameter querying, remote diagnostics, and online service ticketing directly from mobile devices.
- High-Precision Gas Analytical Instrumentation: Factory-calibrated electrochemical oxygen analyzer (0–1000 ppm) and ceramic dew point moisture transmitter (0–500 ppm) provide continuous, real-time feedback on chamber atmosphere purity.
- High-Capacity Rotary Vane Vacuum System: Standard 8 m³/h or 12 m³/h (optional 16 m³/h) oil-sealed rotary vane vacuum pump equipped with an integrated exhaust oil mist filter and gas ballast control ensures efficient chamber evacuation and smooth antechamber pump-down cycles.
Applications
| Application | Description | Key Benefit |
|---|---|---|
| Lithium & Solid-State Battery Assembly | Encapsulation, coin-cell fabrication, pouch-cell sealing, and electrolyte filling under ultra-low moisture conditions. | Prevents violent oxidation of metallic lithium and eliminates parasitic side reactions caused by trace water vapor. |
| Perovskite & Organic Photovoltaic R&D | Spin-coating, thermal annealing, and encapsulation of moisture-sensitive perovskite precursor films. | Protects delicate halide perovskite crystalline structures from rapid environmental degradation during device processing. |
| Organometallic & Air-Sensitive Synthesis | Handling of pyrophoric catalysts, Grignard reagents, metal alkyls, and moisture-labile coordination complexes. | Eliminates fire hazards, preserves reagent reactivity, and ensures repeatable chemical synthesis outcomes. |
| Advanced Powder Metallurgy & Additive Manufacturing | Sifting, loading, and recovery of reactive metal powders (titanium, aluminum, magnesium, zirconium alloys). | Inhibits surface oxidation, prevents interstitial gas contamination, and preserves mechanical integrity of sintered parts. |
| Semiconductor & Quantum Dot Processing | Surface passivation, nanomaterial synthesis, and microelectronic substrate packaging under inert gas blanket. | Guarantees high interfacial purity and minimizes non-radiative recombination centers caused by oxide impurities. |
| Specialty Welding & Laser Processing | Hermetic sealing and micro-laser welding of titanium, zirconium, or tantalum precision medical and aerospace assemblies. | Eliminates atmospheric embrittlement and discoloration in heat-affected zones by maintaining an inert argon environment. |
Technical Specifications
| Parameter Category | Specification Details | Configuration & Values (ST13) |
|---|---|---|
| Model Item Identifier | System Model Code | ST13 |
| Target Contaminant Levels | Moisture Concentration (H2O) | < 1 ppm (Standard Operating Range) |
| Oxygen Concentration (O2) | < 1 ppm (Standard Operating Range) | |
| Main Chamber Dimensions | External / Internal Envelope | Length: 1220 mm × Depth: 750 mm × Height: 900 mm |
| Chamber Construction | Shell Material | 304 Stainless Steel, 3.0 mm Thickness |
| Internal Wall Finish | High-Grade Oil-Film Brushed Finish | |
| External Wall Finish | 304 Stainless Steel Surface | |
| Viewing Window | Window Geometry & Material | Slanted Front Panel, 8.0 mm Laminated Tempered Safety Glass |
| Glove Ports & Gloves | Port Ring Material & Sealing | High-Strength POM or Anodized Aluminum Alloy, Dual O-Ring Sealing |
| Glove Material & Dimensions | Premium Butyl Rubber, Thickness: 0.4 mm, Diameter: 7" or 8" | |
| Internal Shelving & Lighting | Storage Shelving | 304 Stainless Steel, 2-Tier Modular Structure, Height Adjustable |
| Chamber Illumination | Energy-Efficient Glare-Free LED Lighting, Protective Enclosure | |
| Filtration & Utility Ports | HEPA Gas Filters | 0.3 μm Particle Retention (One Gas Inlet, One Gas Outlet) |
| Standard Feedthroughs | DN40KF Feedthrough Ports, Multiple Blind Spares, 1× 220V Internal Power Socket | |
| Purification Unit Structure | Column Architecture | Single-Column Purification Circuit, Hermetically Sealed 304 Stainless Steel |
| Purification Reactants | 5 kg High-Activity Copper Catalyst + 5 kg Regenerable Molecular Sieve | |
| Total Absorption Capacity | Oxygen Removal: 60 L Pure O2; Moisture Absorption: 2.0 kg H2O | |
| Gas Circulation System | Working Inert Gases | High-Purity Nitrogen (N2), Argon (Ar), or Helium (He) |
| Internal Circulation Blower | Standard: 90 m³/h Integrated Blower (Optional: 145 m³/h or 180 m³/h) | |
| Regeneration System | Regeneration Operation | Fully Automated PLC Thermal Regeneration Protocol |
| Required Regeneration Gas | Inert Carrier Gas + Hydrogen Blend (5% - 10% H2 balance N2/Ar) | |
| Vacuum System | Rotary Vane Pump Rates | 8 m³/h or 12 m³/h Standard (Optional: 16 m³/h Heavy-Duty Configuration) |
| Pump Features & Protection | Integrated Exhaust Oil Mist Filter, Manual Gas Ballast Control | |
| Process Valves | Main Angle Valves | DN40KF Electro-Pneumatic Angle Valves |
| Gas Control Valves | Integrated Solenoid Multi-Valve Block | |
| Large Antechamber | Geometry & Dimensions | Cylindrical, Diameter: 360 mm × Length: 600 mm (Optional: Ø400 mm) |
| Material & Surface | 304 Stainless Steel (Interior: Oil-Film Brushed; Exterior: Paint or Mirror Finish) | |
| Doors & Mechanism | 10 mm Anodized Aluminum Vertical-Lift Doors with Counterbalanced Hinge | |
| Material Tray & Gauges | Sliding 304 Stainless Steel Tray; Analog Vacuum/Pressure Gauge | |
| Cycle Control | Automated Evacuation and Refill Sequencing via PLC | |
| Small Antechamber | Geometry & Dimensions | Cylindrical, Diameter: 150 mm × Length: 300 mm (Optional: Ø100 mm) |
| Material & Surface | 304 Stainless Steel (Interior: Oil-Film Brushed; Exterior: Paint or Mirror Finish) | |
| Operation & Gauges | Dual Hinged Doors, Analog Vacuum Gauge, Manual Control Valves | |
| Automation & Control | Controller & Interface | Siemens Industrial PLC with Integrated Full-Color Touchscreen HMI |
| Pressure Control Envelope | Freely Programmable within ±15 mbar; Automatic Safety Cut-Off at ±16 mbar | |
| Operational Safety Features | Auto-Diagnostics, Power-Off Memory, Auto-Recovery, Password Access Control | |
| Foot Switch | Bi-Directional Foot Pedal for Dynamic Box Pressure Adjustment | |
| Data Management | Automated Process Data Logging, Event Memory, and Export Capability | |
| Analytical Sensors | Oxygen Transmitter | Solid-State / Electrochemical Sensor, Range: 0 to 1000 ppm |
| Dew Point Transmitter | Precision Ceramic / Capacitive Sensor, Range: 0 to 500 ppm | |
| Smart IoT System | Connectivity (Optional) | Mobile App / Web Portal Remote Monitoring, Push Alerts, Remote Diagnostics |
Why Choose This Product
- Uncompromising Atmosphere Purity: Engineered with high-grade copper catalyst and molecular sieve beds, this equipment reliably sustains sub-1 ppm moisture and oxygen levels, ensuring total sample protection for the most demanding electrochemical and organometallic processes.
- Precision Industrial Automation: Equipped with a dedicated Siemens PLC control architecture, the unit automates critical routines such as catalyst regeneration, pressure balancing, and routine purging, eliminating operator error and maintaining consistent chamber stability.
- Superior Build Quality and Durability: Constructed from heavy-gauge 3.0 mm 304 stainless steel with precision oil-film brushed interiors, high-integrity DN40KF vacuum flanges, and robust electro-pneumatic valves, this system is built to provide decades of leak-free service under continuous laboratory use.
- Flexible Modularity and Customization: With optional high-flow circulation blowers (up to 180 m³/h), expanded antechamber sizes, chemical solvent trap integrations, and smart IoT remote management, the platform adapts seamlessly to diverse research protocols and facility layouts.
- Comprehensive Process Safety and Support: Built-in overpressure protection, automated self-diagnostics, power-recovery memory, and full-spectrum technical support ensure zero disruption to long-term experiments.
Contact our technical sales team today to request a tailored quote, discuss custom feedthrough configurations, or explore our full line of inert atmosphere solutions.
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Product Datasheet
Single Station Super Purification Vacuum Glove Box System for Ultra Pure Inert Atmosphere Research
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