Glove Box
Benchtop Stainless Steel Vacuum Glove Box for Laboratory Use
Item Number : ST02
Price varies based on specs and customizations
- Chamber Material
- Corrosion-Resistant Stainless Steel
- Antechamber Configuration
- Single or Dual Vacuum Transition Chambers with Sliding Trays
- Internal Utility Integration
- Multi-Port Electrical Sockets and Localized Heating Support
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Product Overview


This benchtop stainless steel vacuum glove box provides a high-integrity, sealed barrier system designed to protect moisture-sensitive and oxygen-reactive materials from ambient atmospheric exposure. By facilitating deep evacuation and inert gas purge cycles, the equipment establishes an ultra-clean, anhydrous, and anaerobic environment. It enables researchers and technicians to transfer, manipulate, synthesize, and analyze sensitive samples without the risk of oxidation, degradation, or deliquescence.
Engineered primarily for advanced battery research, chemical synthesis, semiconductor processing, and precision materials science, this workstation accommodates sensitive cell assembly, pyrophoric reagent handling, and halide electrolyte preparation. The unit bridges the gap between basic dry boxes and complex industrial isolation enclosures, delivering exceptional gas sealing and structural resilience in a compact footprint tailored for laboratory benchtops.
Manufactured with heavy-gauge stainless steel and precision-machined sealing interfaces, this vacuum glove box delivers outstanding mechanical stability under vacuum pressure. Its durable construction ensures dependable, continuous operation across rigorous experimental cycles, giving research teams absolute confidence when performing delicate, moisture-critical chemical reactions and electrochemical characterizations.
Key Features
- Heavy-Duty Stainless Steel Construction: Fabricated from premium, corrosion-resistant stainless steel, the main chamber withstands aggressive chemical vapors, simplifies cleaning protocols, and prevents cross-contamination across continuous operational cycles.
- Dual Transition Antechamber Architecture: Available configurations feature dual-antechamber designs (large transfer chamber and small auxiliary chamber) that significantly reduce inert gas consumption, shorten purge cycles, and maintain chamber baseline purity during sample loading.
- High-Clarity Panoramic Observation Window: Engineered with an expansive, optically clear viewing panel that provides operators with an unobstructed, bright visual field across the entire interior workspace for fatigue-free microscopic and precision manipulation.
- Specialized Vacuum Sealing Latex Gloves: Equipped with heavy-duty, ultra-tight latex gloves that provide an impermeable barrier against atmospheric moisture and oxygen while ensuring excellent tactile dexterity and tear resistance during delicate operations.
- Integrated Multi-Port Electrical Sockets: Fitted with internal multi-pin power interfaces, allowing seamless operation of laboratory instruments, magnetic stirrers, analytical balances, and monitoring tools directly within the inert enclosure without compromising seal integrity.
- Internal Heating and Furnacing Support: Designed with thermal accommodation to integrate dedicated mini-furnaces or heating elements, enabling localized thermal treatments, drying cycles, and temperature-controlled reactions in an oxygen-free atmosphere.
- Ergonomic Internal Shelving and Sliding Trays: Incorporates built-in sliding antechamber trays and multi-tier stainless steel shelving to optimize interior organization, facilitate safe material transfer, and streamline the storage of reagents and sample vessels.
- Large Side-Access Flange Door: Select configurations include a generous 400x400 mm side access port that allows operators to introduce bulky apparatus, specialized electrochemical test fixtures, and custom tooling directly into the main compartment.
Applications
| Application | Description | Key Benefit |
|---|---|---|
| Lithium-Ion and Solid-State Battery Assembly | Encapsulation, coin/pouch cell stacking, electrolyte filling, and lithium metal handling in pure inert conditions. | Eliminates electrolyte hydrolysis and passivation of alkali metal anodes for reliable cell performance. |
| Organometallic and Pyrophoric Synthesis | Handling of air-sensitive catalysts, Grignard reagents, metal hydrides, and moisture-reactive coordination complexes. | Prevents spontaneous ignition and reagent degradation, ensuring reaction reproducibility and user safety. |
| Perovskite and Optoelectronic Fabrication | Deposition, spin-coating, and annealing of halide perovskite precursors and organic semiconductor materials. | Halts moisture-induced crystal phase degradation, delivering high-efficiency optoelectronic thin films. |
| Powder Metallurgy and Sintering Preparation | Handling, weighing, and compacting of ultrafine metallic powders and titanium or zirconium alloys prior to sintering. | Avoids interstitial oxygen pickup, ensuring superior mechanical toughness and purity in finished sintered parts. |
| Semiconductor and Nanomaterial Packaging | Hermetic sealing, quantum dot handling, and microelectronic substrate preparation under controlled inert gas atmospheres. | Minimizes defect states caused by surface oxidation, preserving electrical conductivity and optical purity. |
| Nuclear and Specialized Isotope Handling | Isolated physical manipulation and containment of radioisotopes, stable tracers, and hazardous analytical samples. | Provides robust physical containment and clean sample management to prevent atmospheric environmental release. |
Technical Specifications
Glove Box System Parameters
| Specification Parameter | ST02-1 | ST02-2 | ST02-3 |
|---|---|---|---|
| Main Chamber Dimensions (W × D × H) | 600 × 450 × 500 mm | 800 × 600 × 700 mm | 1200 × 700 × 900 mm |
| Main Antechamber Dimensions | Φ200 × 270 mm | Φ280 × 350 mm | Φ340 × 400 mm |
| Secondary Small Antechamber Dimensions | Not Applicable | Not Applicable | Φ120 × 160 mm |
| Internal Shelving / Rack | None | 1 Tier with Sliding Tray | 1 Tier with Sliding Tray |
| Glove Port Diameter | Φ145 mm | Φ200 mm | Φ200 mm |
| Observation Window Dimensions | 520 × 250 mm | 700 × 320 mm | 1100 × 380 mm |
| Side Square Maintenance Door | Not Applicable | 400 × 400 mm | 400 × 400 mm |
| Equipment Net Weight | 120 kg | 230 kg | 330 kg |
| Internal Utility Interface | Multi-Port Electrical Socket | Multi-Port Electrical Socket | Multi-Port Electrical Socket |
| Chamber Construction Material | Corrosion-Resistant Stainless Steel | Corrosion-Resistant Stainless Steel | Corrosion-Resistant Stainless Steel |
| Glove Material | Sealed Latex Glove Set | Sealed Latex Glove Set | Sealed Latex Glove Set |
Optional Rotary Vane Vacuum Pump Specifications
| Vacuum Pump Model | ST02-VP2 | ST02-VP4 |
|---|---|---|
| Pumping Speed | 2 L/s | 4 L/s |
| Inlet Port Diameter | Φ30 mm | Φ30 mm |
| Oil Capacity | 0.8 L | 1.0 L |
| Pump Dimensions (L × W × H) | 480 × 120 × 250 mm | 520 × 140 × 250 mm |
| Motor Power | 0.37 kW | 0.55 kW |
| Electrical Supply | 220 V / 380 V | 220 V / 380 V |
| Gross / Net Weight | 22 kg / 20 kg | 21 kg / 20 kg |
| Operating Mechanism | Rotary Vane with Spring-Loaded Sliding Blades | Rotary Vane with Spring-Loaded Sliding Blades |
Why Choose This Product
- Industrial-Grade Vacuum Engineering: Built with reinforced stainless steel walls and precision-machined sealing flanges, this system guarantees leak-tight integrity during vacuum pull-down and inert gas backfilling cycles.
- Optimized Operational Economy: The inclusion of specialized dual-chamber options and fast-evacuation antechambers drastically reduces expensive inert gas consumption (Argon/Nitrogen) while accelerating daily laboratory workflows.
- Flexible Laboratory Scalability: From compact single-operator units for tight bench spaces to expansive dual-antechamber platforms accommodating heating furnaces and test equipment, this modular product line fits any experimental scale.
- Durable Contamination Control: Smooth internal electropolished surfaces and seamless transitions prevent particulate trapping, ensuring easy decontamination and lasting resistance to acidic, basic, or organic solvent vapors.
- Comprehensive Process Integration: Supported by a full suite of compatible rotary vane pumps, specialized feedthroughs, and internal heating modules, ensuring seamless deployment directly into your research workflow.
Contact our technical engineering team today to receive a detailed quote, discuss custom port configurations, or select the ideal system layout for your laboratory application.
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Product Datasheet
Benchtop Stainless Steel Vacuum Glove Box for Laboratory Use
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