Introduction
Automated Tissue Processor efficiently processes up to 300 cassettes per cycle, featuring a 6.8 L retort volume. It supports reagent temperatures ranging from 30°C to 65°C, ensuring optimal tissue processing. The device includes 10 programmable protocols for flexible operation. Its advanced liquid and gas circuit control systems reliably evacuate reagents completely. Designed for reliable tissue processing in histology and pathology laboratories.
This tissue processor is designed to meet the rigorous requirements of modern laboratory operations, ensuring high precision, reliability, and ease of use for various experimental applications.Applications
Our Automated Tissue Processor efficiently processes tissue specimens in clinical and research laboratories. It is ideal for preparing samples in histology, pathology, and biomedical analysis.
Specifications
| Cassette Capacity | 300 cassettes |
| Retort Volume | 6.8 L |
| Reagent Bottle Capacity | 4.8 L |
| Wax Cylinder Volume | 5.5 L |
| Reagent Temperature Range | 30°C to 65°C |
| Wax Bath Temperature | 50°C to 70°C |
| Stirring Time | 0 to 5 minutes |
| Stirring Interval | 10 minutes |
| Operation Mode | Manual and automatic |
| Number of Programs | 10 programs |
| Input Power | 1000 W |
| Power Supply Voltage | 220 V |
| Power Supply Frequency | 50 Hz |
| Product Dimensions (W×D×H) | 625×700×1250 mm |
| Packaging Dimensions (W×D×H) | 800×740×1460 mm |
| Net Weight | 130 kg |
| Gross Weight | 172 kg |
Features
Sealed environment system
Automatic start function
Large intuitive color
Reagent discharge system
Power-off recovery
Alerts and notifications
Multi-user memory
Over-temperature protection
FAQs
1. How does the Automated Tissue Processor ensure specimen safety during tissue processing?
Automated Tissue Processor maintains specimens in a fully sealed environment, effectively preventing reagent volatilization and loss. This sealed design significantly reduces the risk of tissue damage during processing by avoiding fluid changes in the cylinder. The system also safeguards specimens against power outages or mechanical failures common in traditional processors. As a result, users benefit from enhanced safety and reliable outcomes in tissue preparation.
2. What are the main benefits of the computer control system in the Automated Tissue Processor?
The processor features a user-friendly color touch screen that allows complete control over tissue processing programs. It supports scheduling automatic operations up to 15 days in advance, making it ideal for unattended workflows. The interface provides clear feedback and intuitive navigation, reducing the chance of user error. This system increases efficiency while enabling precise control over processing parameters.
3. How versatile is the Automated Tissue Processor regarding sample capacity and processing modes?
Automated Tissue Processor can process up to 356 tissue specimens per cycle, making it suitable for high-throughput labs. It offers multiple modes including heating, pressurizing, vacuum, and normal pressure to accommodate diverse specimen types and protocols. Specially designed specimen baskets enable easy loading and unloading with one hand. This flexibility supports a wide range of laboratory needs with minimal manual intervention.
4. How versatile is the Automated Tissue Processor regarding sample capacity and processing modes?
Automated Tissue Processor can process up to 356 tissue specimens per cycle, making it suitable for high-throughput labs. It offers multiple modes including heating, pressurizing, vacuum, and normal pressure to accommodate diverse specimen types and protocols. Specially designed specimen baskets enable easy loading and unloading with one hand. This flexibility supports a wide range of laboratory needs with minimal manual intervention.
5. How does the reagent management system improve operational efficiency and reduce costs?
reagent management system incorporates a double-door design with transparent glass, allowing easy monitoring of reagent levels. The system accurately distributes reagents using motor-driven valves and photoelectric switches to select from up to 15 reagent bottles. Alerts notify users when reagent levels are low to ensure timely refills and uninterrupted processing. These features minimize reagent carryover and optimize usage, lowering overall costs.
6. How does the Automated Tissue Processor manage fluid and reagent circulation within the system?
The Automated Tissue Processor employs sensitive liquid and air circuit control systems powered by integrated pumps and motors to precisely deliver reagents. Distribution valves and photoelectric switches select reagents automatically from multiple bottles to the working chamber. This automation minimizes manual intervention and reduces cross-contamination risks. Efficient fluid circulation ensures thorough tissue dehydration and infiltration.
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