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Vacuum Tissue Processor LMVTP-A102

Vacuum Tissue Processor LMVTP-A102 features large color LCD touchscreen with smart key function. It operates fully enclosed under vacuum, preventing harmful gas leakage. Equipped with an intelligent anomaly monitoring system that ensures smooth operation and protection. Integrated with self-test capability which diagnoses faults and displays real-time status. Our Processor is ideal for histopathology laboratories that require efficient tissue dehydration.

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Specifications

Paraffin Capacity 5L
Paraffin Cylinder Number 4
Treatment Cylinder Volume 6.5L
Working Pressure ±70 KPA
Stirring Time 30 seconds
Stirring Interval Time 5 minutes
Maximum Capacity 400 tissue boxes
Reagent Bottle Capacity 5L
Treatment Chamber Temperature Range Room Temperature to 85ºC
Paraffin Cylinder Temperature Range Room Temperature to 85ºC
Power Supply 220V ±10%, 50Hz, less than 1500VA

Pricing

Product Price Unit Action
Vacuum Tissue Processor LMVTP-A102 $ 17550 Each of 1

Features

User-friendly interface

Adjustable temperature control

Enhanced tissue preservation

Low-maintenance design

Applications

Vacuum Tissue Processor LMVTP-A102 supports pathology research by automating tissue infiltration and fixation. It enhances laboratory workflow with secure and contamination-free processing.

Similar Products

Vacuum Tissue Processor LMVTP-A101

  • Paraffin capacity: 2.5L
  • Paraffin Cylinder Number: 4
  • Treatment Cylinder Volume: 3.8L
  • Reagent Bottle Capacity: 2.5L
  • Working Pressure: ±70KPA

$ 18068.75 / Each of 1

Vacuum Tissue Processor LMVTP-A100

  • Vacuum function: -60kpa
  • Temperature range: 30°C to 85°C (± 3°C)
  • Tissue processing steps: 12 steps
  • Number of reagent cups: 9
  • Number of paraffin cups: 3

$ 13025 / Pack of 1

Frequently Asked Questions

1 What is a Vacuum Tissue Processor?

A Vacuum Tissue Processor is an apparatus used in histopathology to prepare tissue samples for microscopic examination.

2 How does Vacuum Tissue Processor improve tissue processing efficiency?

It improves tissue processing efficiency by using vacuum and pressure cycles to enhance reagent penetration, reduce processing time, and ensure uniform treatment of tissue samples.

3 Can Vacuum Tissue Processor be used for research as well as clinical diagnostics?

It is widely used in both research and clinical diagnostics due to its precision, consistency, and ability to process various tissue types under controlled conditions.

4 What role does Vacuum Tissue Processor play in improving diagnostic accuracy?

It improves diagnostic accuracy by ensuring uniform tissue preparation, minimizing artifacts, and preserving cellular structure for clear microscopic evaluation.

5 How does Vacuum Tissue Processor reduce cross-contamination between samples?

It reduces cross-contamination by using sealed reagent containers, automated cleaning cycles, and dedicated paths for different reagent types.

6 Can Vacuum Tissue Processor be used for forensic tissue samples?

It is commonly used in forensic pathology to process tissue samples for post-mortem analysis, providing consistent and high-quality preparations critical for legal investigations.

7 How does Vacuum Tissue Processor assist in quality control processes?

It assists in quality control by maintaining consistent processing parameters, reducing variability in tissue preparation, and enabling traceability of each processing cycle.

8 Can Vacuum Tissue Processor be used for toxicology or pharmaceutical research samples?

It is commonly used in toxicology and pharmaceutical research to prepare tissue samples for microscopic examination in preclinical and drug development studies.

9 Can Vacuum Tissue Processor improve turnaround time in cancer diagnosis workflows?

It accelerates sample readiness for histological evaluation, which directly contributes to faster turnaround times in cancer diagnosis workflows and treatment planning.

10 What role does Vacuum Tissue Processor play in biomarker preservation?

It plays a critical role in biomarker preservation by tightly controlling fixation and infiltration parameters, which helps retain antigenicity for immunohistochemical and molecular assays.