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Acrylic Lab Incubator
Chendun Lab Incubator is designed for laboratory operation under customized conditions. It provides a stable environment, precise temperature control and a reliable workspace for microbiology or semiconductor research.

This equipment can customize the environment control box you need, including temperature, humidity, oxygen content, carbon dioxide content, nitrogen content, etc. for gas environment control.
Acrylic Lab Incubator

Acrylic Lab Incubator

Model: ACR Series
Chamber Size:400x400x400 or Customzied
Temperature Range: 4°C to 60°C (Constant temperature and humidity)
Vacuum Degree: -0.1Mpa. Or positive pressure can be customized
Humidity control:1%-60% or Customized

Product Overview

Chendun's acrylic laboratory incubator is designed to meet your diverse environmental control requirements, making it an ideal solution for small-scale experiments and precision applications. It supports customized control of temperature, humidity, and vacuum levels to create a stable and controlled environment.

We provide acrylic vacuum chambers in various sizes and configurations, tailored to meet your specific needs. Custom options are available, including reserved wiring ports, special-shaped acrylic enclosures, and other personalized designs.

With reliable quality and professional customization capabilities, Chendun's equipment has been successfully exported to the United States, Canada, Germany, France, Italy, Poland, the Netherlands, Malaysia, Thailand, and many other countries worldwide. We are committed to providing flexible solutions for laboratories, research institutions, and industrial applications.

Key Features

Fully Transparent

It is very convenient for experimenters to observe the experimental conditions in the cavity and is easy to operate.

Passable Gas

This equipment can customize the air inlet and outlet for you, and can pass in high-purity gas to form a pure working environment.

Temperature Controllable

We can place cooling or heating equipment in the box to accurately control the ambient temperature of the warehouse.

Humidity Controllable

Rapid humidity reduction by gas replacement, or humidity control using molecular sieves and desiccants without gas replacement.

Applications

Controlled Atmosphere Biological Research
The acrylic environmental chamber provides a stable and adjustable environment for biological experiments requiring precise temperature, humidity, and gas control. By introducing gases such as nitrogen, carbon dioxide, or other inert gases, researchers can create customized atmospheric conditions for cell culture, biological samples, and environmental response studies.
Hypoxia and Anaerobic Experiment Studies
With vacuum adjustment and controlled gas replacement, the chamber can create low oxygen, oxygen-free, or special gas environments. It is suitable for anaerobic microorganism cultivation, hypoxia-related biological research, and experiments that require controlled oxygen concentration.
Plant Tissue Culture and Growth Environment Simulation
The transparent chamber allows researchers to observe plant samples directly while maintaining stable temperature, humidity, and atmospheric conditions. It can simulate different environmental conditions for seed germination, plant stress studies, and controlled growth experiments.
Material Testing Under Controlled Atmosphere
The chamber is designed for evaluating material performance under specific environmental conditions. By controlling humidity, temperature, vacuum degree, and protective gases, it can be used for moisture sensitivity tests, oxidation prevention studies, aging evaluation, and material stability analysis.
Electronic Components and Sensitive Sample Storage
For samples that are sensitive to moisture, oxygen, or environmental changes, the chamber provides a clean and controllable storage environment. Nitrogen or other inert gases can be introduced to reduce oxidation and maintain sample stability during storage and testing.
Chemical and Laboratory Reaction Environment Control
The chamber can provide a customized atmosphere for laboratory reactions and experimental processes. Through vacuum regulation and gas filling, researchers can create low-pressure, inert gas, or humidity-controlled environments for chemical experiments, sample preparation, and process studies.

Technical Specifications 

ParameterSpecification
Product TypeAcrylic Vacuum Environmental Control Chamber / Glove Box
ApplicationMoisture-sensitive material handling, anaerobic research, biological/chemical experiments, and vacuum storage
Chamber DimensionsCustomizable from 20×20×20 cm to 60×60×60 cm (Any custom shapes/geometries available upon request)
Chamber MaterialHigh-transparency, heavy-duty optical acrylic (PMMA) with reinforced structure
Temperature Range4°C ~ 60°C
Temperature Accuracy±0.5°C
Humidity Control Range1% ~ 60% RH (Precision adjustable)
Humidity Accuracy±2.0% RH
Vacuum Level ControlPrecision digital vacuum display and manual/automatic pressure control system
Environmental ControlIntegrated precise temperature, humidity, and vacuum environment regulation
Glove / Operation PortsOptional sealed glove ports (Latex / Butyl gloves) or quick-access hatch
Gas Supply ConnectionQuick-connect gas inlet/outlet ports for inert gas purging (N₂, Ar, etc.)
Control SystemMicroprocessor intelligent PID control system with digital display
Sealing SystemHigh-performance silicone sealing gasket with heavy-duty quick-clamp latches
Power SupplyAC220V 50Hz (AC110V 60Hz optional)

FAQ

What level of vacuum can this acrylic chamber achieve? Is it suitable for Ultra-High Vacuum (UHV)?
This equipment is designed for low-to-medium vacuum levels and micro-positive or negative pressure control. Heavy-duty optical acrylic (PMMA) with a reinforced structure offers excellent pressure resistance and transparency, but due to physical material limits, it is not suitable for Ultra-High Vacuum (UHV) applications. It is ideal for gas displacement after evacuation or maintaining a controlled negative pressure alongside precise temperature and humidity regulation.
How are temperature and humidity controlled inside the chamber? Are the precision levels sufficient for strict experimental requirements?
The chamber features a built-in microprocessor intelligent PID control system and high-precision sensors:

* Temperature Control: Range of 4°C ~ 60°C with an accuracy of ±0.5°C.

* Humidity Control: Range of 1% ~ 60% RH with an accuracy of ±2.0% RH.
The system supports digital display and auto-tuning to maintain a long-term, highly stable environment for moisture-sensitive material handling, biological research, and anaerobic experiments.
Can inert gases be introduced into the chamber? How is a low-oxygen or low-humidity environment achieved?
Yes. The chamber comes standard with quick-connect gas inlet and outlet ports that connect directly to inert gas sources like Nitrogen (N₂) or Argon (Ar). Through a "vacuum evacuation and inert gas purging" cycling process, ambient oxygen and moisture are rapidly displaced to create an ultra-low oxygen and low-humidity environment.
Are chamber dimensions, glove ports, or feedthrough connectors customizable?
Full customization is supported. Beyond standard sizes (from 20×20×20 cm up to 60×60×60 cm), options include:

* Structure & Layout: Custom geometry, single/double operator glove ports, and quick-access pass-through boxes (Antechambers).

* Functional Feedthroughs: Internal power outlets, sealed cable feedthroughs, fluidic ports, and signal transmission connectors.
What are the main precautions for operating and maintaining the acrylic chamber?
* Avoid Organic Solvents: Never use alcohol, acetone, anhydrous ethanol, or chemical solvents to clean acrylic panels, as they cause stress cracking or hazing. Clean using neutral detergents with a soft lint-free cloth.

* Gasket Maintenance: Periodically inspect and clean the silicone sealing gasket to remove dust that could impair airtightness. Ensure all quick-clamp latches are fully secured before pulling a vacuum or purging gas.

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