| Main Chamber Dimension (L×B×H) | 700 × 450 × 550 mm |
| Antechamber Dimension(L×B×H) | 260 × 260 × 260mm |
| H₂O and O₂ Content | 200 to 300 PPM |
| Side Door Dimension (L×B) | 300 × 300mm |
| Ball Valve | 304 Stainless Steel balloon valve with integrated water nozzles for air or water entry |
| Power Socket | Multi hole power sockets |
| Reserved Interface | KF reserved interface |
| Power Supply | 220V, 50Hz / 60Hz |
| Packing Dimension (L×B×H) | 1250 × 570 × 770mm |
| Net Weight | 25kg |
| Gross Weight | 30 kg |
Acrylic Glove Box ADAGB-508 is widely used in pharmaceutical, biotechnology, and chemical laboratories to handle sensitive samples in a controlled environment.
1. Why is an antechamber included in Acrylic Glove Box ADAGB-508?
The antechamber in Acrylic Glove Box ADAGB-508 ensures materials can be introduced or removed without exposing the main chamber to outside air. Its compact 260 × 260 × 260?mm size allows quick and secure transfer, preserving the controlled environment.
2. What type of power sockets are installed inside Acrylic Glove Box ADAGB-508?
Acrylic Glove Box ADAGB-508 features multi-hole power sockets designed to support a wide range of laboratory instruments. These sockets ensure that users can conveniently connect various devices within the sealed environment.
3. How does the valve in Acrylic Glove Box ADAGB-508 support evacuation?
The stainless-steel ball valve in Acrylic Glove Box ADAGB-508 allows smooth evacuation of air or gases from the glove box. By connecting to a vacuum or pumping system, it ensures efficient removal of air, maintaining low oxygen or moisture levels for sensitive experiments.
4. How are the gloves attached to Acrylic Glove Box ADAGB-508?
The gloves are securely fixed to the glove ports using a sealing ring. This ensures an airtight connection, maintaining the controlled internal environment and preventing leaks during operation.
5. What is the reserved KF interface used for in the Acrylic Glove Box ADAGB-508?
Acrylic Glove Box ADAGB-508 includes a reserved KF interface, allowing users to connect additional modules or equipment in the future. This provides flexibility for expanding capabilities without major modifications to the existing system.
6. Why choose acrylic material for a glove box?
Acrylic is an ideal choice because it is lightweight yet highly durable, offering long-lasting performance. Its excellent transparency ensures clear visibility during experiments, while the smooth, non-porous surface provides strong chemical resistance and makes cleaning simple and efficient.
7. Can an Acrylic Glove Box maintain a controlled atmosphere?
Yes, Acrylic Glove Boxes can be equipped with gas inlet/outlet ports and purging systems that allow operation under inert gas or low-humidity conditions. This ensures safe handling of moisture-sensitive, air-sensitive, or hazardous materials in research and industrial processes.
8. Is the Acrylic Glove Box easy to clean and maintain?
Yes, the non-porous acrylic surface makes the glove box simple to clean and maintain. Regular wiping with suitable cleaning agents keeps it clear and contamination-free, ensuring durability and hygiene for long-term laboratory or industrial use without compromising performance.
| Main Chamber Dimension (L×B×H) | 900 × 600 × 700mm |
| Material Thickness | 6 mm |
| H₂O and O₂ Content | 200 to 300 PPM |
| Main Chamber Dimension (L×B×H) | 800 × 550 × 600 mm |
| Antechamber Dimension (L×B×H) | 260 × 260 × 260mm |
| H₂O and O₂ Content | 200 to 300 PPM |
| Main Chamber Dimension (L×B×H) | 1000 × 750 × 700 mm |
| Antechamber Dimension(L×B×H) | 260 × 260 × 260mm |
| H₂O and O₂ Content | 200 to 300 PPM |
| Main Chamber Dimension (L×B×H) | 900 × 500 × 500mm |
| Material Thickness | 6mm |
| H₂O and O₂ Content | 200 to 300 PPM |
| Main Chamber Dimension (L×B×H): | 1120 × 750 × 900mm |
| Thickness : | 3mm |
| Vacuum Degree: | -0.1mpa |
| Main Chamber Dimension (L×B×H): | 800 × 650 × 680mm |
| Thickness : | 3mm |
| Vacuum Degree: | -0.1mpa |
| Main Chamber Dimension (L×B×H): | 800 × 650 × 680mm |
| Thickness : | 3mm |
| Vacuum Degree: | -0.1mpa |
| Main Chamber Dimension (L×B×H): | 1120 × 750 × 900mm |
| Thickness : | 3mm |
| Vacuum Degree: | -0.1mpa |
| Main Chamber Dimension (L×B×H): | 600 × 450 × 450mm |
| Thickness : | 3mm |
| Vacuum Degree: | -0.1mpa |
| Main Chamber Dimension (L×B×H): | 600 × 450 × 450mm |
| Thickness : | 3mm |
| Vacuum Degree: | -0.1mpa |
| Material: | Stainless steel |
| Air Lock Size: | 200 mm dia. x 260 mm length |
| Main Chamber Size: | 550 mm (W) x 440 mm (D) x 410 mm (H) |
| Working Gas: | Nitrogen, argon (gas purity 99.999%) |
| H₂O and O₂ Index: | Less than 1PPM |
| Circulating Capacity: | Integrated fan flow rate of 90m³/h |
| Working Gas: | Nitrogen, argon (gas purity 99.999%) |
| H₂O and O₂ Index: | Less than 1PPM |
| Circulating Capacity: | Integrated fan flow rate of 90m³/h |
| Working Gas: | Nitrogen, argon (gas purity 99.999%) |
| H₂O and O₂ Index: | Less than 1PPM |
| Circulating Capacity: | Integrated fan flow rate of 90m³/h |
| Working Gas: | Nitrogen, argon (gas purity 99.999%) |
| H₂O and O₂ Index: | Less than 1PPM |
| Circulating Capacity: | Integrated fan flow rate of 90m³/h |
| Working Gas: | Nitrogen, argon (gas purity 99.999%) |
| H₂O and O₂ Index: | Less than 1PPM |
| Material: | Stainless steel, 3mm thickness |