Products Cell Assembly & Filling Equipment Glove Box Laboratory Single Station Vacuum Glove Box with Automated Rectangular Antechamber
Laboratory Single Station Vacuum Glove Box with Automated Rectangular Antechamber

Glove Box

Laboratory Single Station Vacuum Glove Box with Automated Rectangular Antechamber

Item Number : ST15

Price varies based on specs and customizations


Atmosphere Purity
H2O < 1 PPM, O2 < 1 PPM
Antechamber Type
Automated Rectangular with 30% Gas Savings
Window Design
Integral Flanged with O-Ring Sealing
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Product Overview

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This laboratory single station vacuum glove box provides an ultra-clean, hermetically controlled inert environment engineered specifically for handling moisture-sensitive and oxygen-sensitive materials. By integrating advanced gas purification technology capable of maintaining both H2O and O2 concentrations below 1 ppm, this system establishes a dependable baseline for sensitive chemical synthesis, advanced battery cell assembly, and precision materials science research. Its modern architecture combines robust structural integrity with user-centric functionality, making it an essential platform for modern research facilities.

Engineered to streamline rigorous experimental workflows, the equipment features an automated rectangular antechamber system that fundamentally improves material transfer efficiency while reducing gas consumption by up to 30 percent compared to conventional cylindrical transition chambers. The clean exterior profile and optimized interior layout offer maximum usable volume without expanding the overall laboratory footprint. Target industries include next-generation lithium and solid-state battery R&D, organometallic chemistry, perovskite photovoltaics, semiconductor packaging, and specialized metallurgy.

Built for uncompromised reliability and operational safety, this unit incorporates an integral flanged viewing window with precision O-ring compression seals, achieving exceptionally low atmospheric leakage rates during prolonged isolation cycles. Programmatically interlocked automatic door mechanisms safeguard process integrity by preventing inadvertent dual-door opening and cross-contamination. Every subsystem is manufactured to rigorous engineering standards, providing laboratories with consistent, repeatable baseline conditions under demanding around-the-clock research schedules.

Key Features

  • High-Efficiency Purification System: Maintains strictly controlled inert gas conditions with both moisture and oxygen levels consistently below 1 PPM (< 1 PPM H2O and O2), safeguarding highly reactive reagents and sensitive battery chemistries from degradation.
  • Automated Rectangular Antechamber: Features a high-capacity rectangular geometry that maximizes usable pass-through clearance for large apparatus, test fixtures, and chemical vessels while eliminating awkward spatial constraints typical of cylindrical ports.
  • 30% Gas-Saving Design: Optimized internal chamber volume of the rectangular transfer module reduces inert purge gas consumption by 30%, lowering long-term operating costs and cylinder changeout frequencies during high-throughput daily transfers.
  • Integral Flanged Viewing Window: Heavy-duty integral flange window structure combined with specialized O-ring compression sealing guarantees structural rigidity, optical clarity, and an exceptionally low overall system leakage rate.
  • Automated Interlocking Chamber Doors: Precision automatic door actuation with intelligent programmatic interlocks eliminates operator error, preventing simultaneous door openings and maintaining internal vacuum integrity and environmental purity.
  • Integrated Heating Antechamber Options: Modular heated rectangular transition modules deliver uniform thermal pre-treatment and moisture degassing for incoming components before entering the pristine primary workstation environment.
  • Clean and Aesthetic Industrial Design: Features an exterior profile with clean lines, smooth welded surfaces, and intuitive ergonomic placement of glove ports to minimize operator fatigue during extended manipulation sessions.

Applications

Application Description Key Benefit
Solid-State Battery Assembly Preparation, stacking, and encapsulation of moisture-sensitive solid electrolytes, lithium metal foils, and sulfur-based cathodes. Maintains sub-1 PPM atmosphere to prevent rapid hydrolysis and oxidation of sensitive electrolyte interfaces.
Perovskite & Photovoltaic R&D Spin-coating, curing, and thermal deposition of organic-inorganic halide perovskite films sensitive to ambient humidity and air. Eliminates environmental degradation vectors, ensuring superior film uniformity and reproducible device efficiency.
Organometallic & Catalysis Synthesis Handling air-sensitive catalysts, pyrophoric Grignard reagents, and metal alkyl compounds under inert nitrogen or argon. Provides secure, hermetic containment with automated interlocks to prevent accidental exposure and hazardous oxidation.
OLED & Semiconductor Packaging Deposition, encapsulation, and hermetic sealing of organic light-emitting diodes, sensors, and microelectronic devices. Low gas leakage rate and pristine vacuum transition preserve thin-film integrity and extend device operational lifespan.
Powder Metallurgy & Nanomaterials Handling, weighing, and blending of ultra-fine reactive metallic powders, titanium alloys, and high-purity ceramic precursors. Rectangular chamber geometry facilitates easy transfer of bulky containers and processing tooling without atmospheric contamination.
Nuclear & Radiochemical Processing Controlled isolation, micro-weighing, and manipulation of radioactive tracers or sensitive non-volatile isotopes in inert media. Reliable dual-door interlock and heavy-duty flange sealing prevent containment breach and protect operator safety.

Technical Specifications

Specification Parameter Value / Description
Base Model Identifier ST15
Workstation Configuration Single Station, Single-Sided Operation
Atmosphere Purity (Moisture) H2O < 1 PPM
Atmosphere Purity (Oxygen) O2 < 1 PPM
Window Construction Integral Flanged Viewing Window with Compression O-Ring Sealing
Leakage Rate Ultra-low leakage rate engineered via unified flange architecture
Antechamber Mechanism Fully Automated Door Actuation with Programmatic Safety Interlock
Operational Gas Efficiency 30% reduction in purge gas consumption via optimized rectangular cross-section

Standard Rectangular Antechamber Variants

Model Variant Nominal Section (mm) Internal Width W (mm) Internal Height H (mm) Internal Depth D (mm) Effective Height h (mm) Tray & Rail Configuration
ST15-120 120 x 150 120 150 300 150 Equipped with sliding tray, rail-free design
ST15-260 260 x 300 254 304 500 264 Integrated sliding tray and precision guide rail
ST15-360 360 x 360 360 360 510 320 Integrated sliding tray and precision guide rail
ST15-450 450 x 450 450 450 610 410 Integrated sliding tray and heavy-duty guide rail

Heated Rectangular Antechamber Variants

Model Variant Nominal Dimensions (mm) Internal Width W (mm) Internal Height H (mm) Internal Depth D (mm) Thermal Processing Note
ST15-H360 360 x 360 x 500 360 360 510 Actual usable internal dimensions depend on heating element configuration and internal insulation format

Why Choose This Product

  • Superior Atmosphere Purity & Reliability: Engineered closed-loop circulation and high-capacity purification media sustain stringent sub-1 PPM oxygen and moisture boundaries, delivering unmatched repeatability for high-stakes electrochemical and chemical research.
  • Measurable Gas Utility Savings: The advanced rectangular antechamber architecture eliminates surplus internal dead volume, reducing inert gas consumption by 30% per cycle and substantially lowering recurring operational overhead over the lifespan of the equipment.
  • Flanged Hermetic Integrity: Moving beyond lightweight clamp-style glass mounts, the integral flanged window system utilizes continuous O-ring compression to provide a robust barrier against environmental ingress, ensuring superior vacuum retention and minimal baseline leakage.
  • Intelligent Programmatic Safety: Automated motorized door mechanisms governed by hardware and software interlocks eliminate cross-draft contamination risks, protecting valuable batch runs, sensitive catalysts, and personnel during transfer sequences.
  • Tailored Dimensional Scalability: With standard and thermally controlled rectangular antechamber configurations spanning nominal apertures from 120x150 mm up to 450x450 mm, the system readily adapts to diverse tooling, hot-plate integrations, and material form factors.

Contact our technical engineering team today to configure your laboratory workstation, request dimensional CAD layouts, or receive a competitive quotation tailored to your experimental requirements.

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Product Datasheet

Laboratory Single Station Vacuum Glove Box with Automated Rectangular Antechamber

Category Catalog

Glove Box


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