Introduction
Automated Tissue Processor has a 9 large data such as reagent status, pressure, and temperature. Our processor is used for the automated dehydration, clearing, and paraffin infiltration of biological tissue samples.
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 is used in hospitals and pathology labs for preparing tissue samples for diagnosis. It is also used in research institutions for histological and biomedical studies.
Specifications
| Capacity | 9 L |
| Sample Processing Capacity | 330 cassettes |
| Number of Tanks | 13 + 3 (1 to 9 for dehydration, 10, 12, 13 for paraffin, and 14 to 16 for water) |
| Number of Wax Cylinders | 3 |
| Vacuum/Pressure Modes | Normal, Positive, Negative |
| Temperature Control (Wax) | 58 to 70 °C (within ±3 °C difference) |
| Studio Temperature Range | Solvent: Up to 45 °C |
| Programmable Soaking Time | 0 to 300 minutes |
| Number Of Pre-Set Programs | 90 |
| Alarm Systems | Over-temp, pressure, valve failure, liquid levels, discharge errors |
| Self-Cleaning Function | Yes |
| Automatic Reagent Change | Yes (based on usage limits) |
| Magnetic Stirring System | Adjustable timing and intervals |
| Operation Modes | Manual and Automatic |
| Display | 15-inch touch screen |
| Studio Volume | 9 L |
| Reagent Bottle Volume | 6 L each |
| Permissible Temperature/Humidity | 5 to 35°C / Up to 90% RH (25 °C, non-condensing) |
| Permissible Atmospheric Pressure | 86 to 106 kPa |
| Power Consumption | Up to 1200W ± 10% |
| Fuses | 10 A fuses |
| Power Supply | 220V ± 22V, 50Hz ± 1Hz |
| Dimension | 650 × 650 × 1130 mm |
| Packing Dimension | 750 × 750 × 1450 mm |
| Net Weight | 175 kg |
| Gross Weight | 205 kg |
Features
Automatic liquid change function
Comprehensive set of alarms
Self-cleaning studio
Flexible soaking time
Built-in activated carbon filtration system
FAQs
1. What are the major advantages of using the Automated Tissue Processor in a clinical or research pathology laboratory?
Automated Tissue Processor offers several advantages that make it ideal for high-throughput pathology environments. Its ability to process up to 330 samples in a single cycle allows laboratories to manage large volumes efficiently. The integration of three pressure modes improves reagent infiltration, resulting in better tissue preservation and sectioning quality. It offers advanced automation with 90 programmable dehydration protocols, adjustable soaking times (5 to 300 minutes), and both conventional and rapid processing modes, the latter capable of completing tissue dehydration in under 3 hours.
2. How does the Automated Tissue Processor ensure safety and reliability during tissue processing?
The Automated Tissue Processor is built with a comprehensive safety system to ensure both operator and sample protection. It monitors and alerts for a wide range of conditions, including over-temperature, valve malfunction, excessive or insufficient liquid levels, pressure anomalies, and discharge errors. These alarms help prevent sample loss, damage to the device, or hazardous working conditions. Additionally, the processor is equipped with an activated carbon filtration system that captures harmful reagent vapors, enhancing lab safety. The device operates within a controlled temperature and pressure range, and it has a self-cleaning function to reduce the risk of cross-contamination between runs.
3. In what ways does the Automated Tissue Processor improve efficiency and workflow in tissue processing?
Automated Tissue Processor significantly enhances efficiency by automating many steps traditionally performed manually. Its high capacity allows processing of 330 samples in one cycle, reducing the need for multiple runs. The 90 memory slots for dehydration programs let users quickly switch between different tissue protocols without reprogramming each time. Automatic reagent change based on usage limits helps reduce human error and ensures optimal reagent use. The magnetic stirring system promotes uniform reagent mixing, which improves processing consistency. The inclusion of a fast dehydration mode shortens processing time for urgent samples, while the self-cleaning feature minimizes downtime between runs. Altogether, these features streamline lab workflow and reduce technician workload.
4. What makes the Automated Tissue Processor suitable for processing a variety of tissue types and sizes?
The Automated Tissue Processor is versatile enough to handle various tissue types, from small biopsies to larger surgical specimens. It offers flexible programmable soaking times and customizable pressure settings to accommodate different tissue densities and sizes. Its adjustable magnetic stirring ensures thorough reagent penetration, even in more fibrous or fatty tissues. With 90 customizable dehydration protocols, labs can tailor settings for specialized needs such as delicate nerve tissues or fatty breast tissue. Additionally, the fast dehydration mode is ideal for small, urgent samples, making it valuable tool in both routine pathology and specialized diagnostic applications.
5. How user-friendly is the Automated Tissue Processor, and what design features support ease of operation?
Automated Tissue Processor is designed with user convenience in mind. Its 15-inch touchscreen interface displays real-time information such as temperature, pressure, reagent levels, and program status, enabling easy monitoring and control. The graphical interface is intuitive, requiring minimal training for operators. Automatic reagent rotation and self-cleaning reduce the need for manual handling and maintenance. Program presets and one-touch start options make routine processing efficient and straightforward. The compact footprint and ergonomic design ensure the processor can be installed even in space-constrained labs.
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