| Number of Glove Ports | 4 |
| Working Gas | N₂, Ar, He (purity more than 99.999%) |
| Water & Oxygen Index | Less than 0.1 ppm (with proper purification system) |
| Circulation Capacity | 0 to 90 m³/h (oil-free high-speed fan) |
| Material | SUS 304 stainless steel, 3 mm thickness |
| Leakage range | < 0.001 vol%/h |
| Window | 8 mm safety tempered glass or 10 mm polycarbonate (optional) |
| Glove Ports | Duralumin alloy or acetyl material, Ø220 mm, O-ring sealed |
| Gloves | Imported butyl gloves |
| Pressure Control | Automatic pressure control with foot switch operation |
| Big Passing Box | Equipped with heating system, temperature up to 200°C, accuracy ±1°C |
| Small Passing Box | Optional (not specified, usually included in double-station setups) |
| Filter | Inlet & outlet filters, filtration below 0.3 μm |
| Sensor Accuracy | ± 0.1PPM |
| Moisture analyzer Range | 0 to 1000ppm, low drift |
| Moisture analyzer Accuracy | ± 0.1PPM |
| Loop unit | Oil free high-speed fan air volume: 0-90m3/h |
| Shelf | 6 pcs of shelves on the back of chamber |
| Lighting | Integrated LED lighting in upper window frame |
| Gas Purification | Automatic H2O and O2 removal, closed-loop single-column (dual-column optional) |
| Purification Capacity | Suitable for achieving up to 0.1 ppm H₂O and O₂ with continuous operation |
| Gas Cycling System | Closed pipeline loop, oil-free recirculation fan |
| Regeneration Gas | 5 to 10% H2mixed with working gas (purity more than or equals to 99.999%) |
| Vacuum Pump | Rotary vane, 8 m³/h, vacuum is lower than 2×10⁻³ mbar, with oil mist filter and gas ballast |
| Main Valve | Electromagnetic high vacuum valve |
| Control Valve | High-sealing valves integrated into circulation and purge systems |
| Control System | Fully automatic control, sensor-integrated, software-enabled |
| Foot Switch | Yes, for pressure regulation and control |
| Display System | Digital display for oxygen, moisture, pressure, and system status |
| Power Supply | AC 230 V to 50–60 Hz to 10 A or AC 115 V to 50–60 Hz to 20 A (optional) |
| Internal Dimension (L×D×H) | 1214 × 754 × 894 mm |
| Overall Dimension (L×D×H) | 2235 × 935 × 1866 mm (with external systems attached) |
| Net weight | 600 kg |
| Gross weight | 1200 kg |
Built-in recycle system
Convenient design
Caster wheel
Thicker glove
Automatic Recording System Data
Touch screen operation
Our Single Station Glove Box LSGB-A13 glove box system is designed to maintain a moisture and oxygen-free environment, making it ideal for sensitive applications. It supports biomedical research, electronic component handling, and is also used in industries such as nuclear and membrane technology.
Small Antechamber
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Single Station Glove Box LSGB-A13 Catalog
Labtron Single Station Glove Box is designed to provide an inert workspace for precise scientific and manufacturing tasks. These feature real-time monitoring with a touchscreen interface for accurate control and adjustments. Their vacuum pump and purification system maintain ultra-low oxygen and humidity levels. They include a spacious antechamber, automated pressure regulation, and customizable working parameters. Our glove boxes support laboratories, semiconductor fabrication, battery assembly, pharmaceutical production, and aerospace research.



Our Single Station Glove boxes are designed to work with inert gases like nitrogen, argon, and helium. These gases are ideal for creating a dry, oxygen-free environment that protects sensitive materials from moisture, contamination, or unwanted reactions. Depending on what you're working on whether it's research, synthesis, or handling delicate electronics you can choose the gas that best fits your process. This way, you get a clean, stable, and well-controlled atmosphere that supports precise and reliable results.
Our Single Station Glove Box systems typically work with inert gases like nitrogen, argon, and helium. These gases are great for creating a dry, oxygen-free environment, which is essential when you're working with materials that are sensitive to air, moisture, or contamination. Depending on what you're working on whether it's research, chemical synthesis, or handling electronics you can choose the gas that best fits your needs. The right choice helps maintain a clean, stable atmosphere so your work stays precise and protected.
Our Single Station Glove Boxes use an automated pressure control system usually managed by a PLC (Programmable Logic Controller) to keep the internal pressure just slightly above the surrounding air, typically around ±15 mbar. This gentle positive pressure acts as a barrier, keeping outside air from sneaking in and compromising the controlled environment. The system is smart enough to react quickly to any pressure changes, like when you move the gloves or use the airlock, and it adjusts automatically to maintain stability. That way, even with frequent use, the glove box stays safe and consistent for handling sensitive materials.
Absolutely! The glove box is designed with both small and large antechambers to safely move materials in and out. When items are placed in the airlock, they go through either a vacuum cycle or are purged with inert gas before entering the main chamber. This process carefully prevents any outside air from getting in, keeping oxygen and moisture levels extremely low. Even with frequent transfers or sample handling, the internal atmosphere stays clean and stable.
The glove box is equipped with a dual-stage purification system that uses copper catalysts and molecular sieves to continuously remove oxygen and moisture. It also has particulate filters to catch dust and airborne particles. Together, these systems create and maintain an ultra-clean, inert environment ideal for highly sensitive work like organo-metallic synthesis, handling lithium materials, or working with delicate electronics. This setup ensures both your materials and your experimental conditions are well protected.
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Labtron Equipment Ltd., Quatro House, Lyon Way, Camberley, Surrey GU16 7ER United Kingdom
Email: info@labtron.com Whatsapp: +44 73 4441 2688 Phone: +44 2080 043608