Introduction

Hybridization can handle up to 12 slides simultaneously, significantly reducing manual labor and minimizing exposure to harmful reagents. It integrates three operation modes, which are denaturation, hybridization, and multi-step protocols. Additionally, it supports up to 105 programmable protocols, making it useful in high-throughput or multi-user environments. The full touchscreen interface with user-friendly controls offers intuitive control. This is designed to automate and simplify the denaturation and hybridization steps.

This analytical equipment 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 Hybridization is used in molecular pathology and cytogenetics labs for precise denaturation and hybridization of slides. It is ideal for detecting chromosomal abnormalities, gene mapping, and cancer diagnostics.

Specifications

Capacity 12 slides
Temperature Control Range RT+5℃ to 100℃
Temperature Setting Range 0 to 100℃
Temperature Accuracy Up to ± 1 ℃
Temperature Uniformity Up to ± 1 ℃
Heating Time (37℃ To 95℃) Up to 4 min
Cooling Time (95℃ To 45℃) Up to 6 min
Operation Mode Denaturation/hybridization
Fuse 250 V 3 A Փ 5 × 20
Power 350 W
Power Supply 220 V 50 to 60 Hz
Dimension 440 × 220 × 120 mm
Packing Dimension 580 × 390 × 300 mm
Net Weight 4.5 kg
Gross Weight 6 kg

Features

Power failure recovery

Automatic cooling function

Automatic warm-up function

High precision temperature control

Compact and light weight

FAQs

1. What makes the Hybridization ideal for high-throughput laboratories?

Hybridization is specifically engineered to streamline workflows in busy labs. It can process up to 12 slides at once, significantly reducing manual workload. Its support for up to 105 programmable protocols allows seamless switching between test types, ideal for multi-user or high-throughput environments where consistency and speed are critical.

2. How does the temperature control system in the Hybridization ensure experimental accuracy?

Hybridization features a high-precision temperature control system with an accuracy and uniformity of ±1?°C. This tight control is vital for sensitive assays, as even slight deviations can affect hybridization quality. Its fast heating (from 37?°C to 95?°C in up to 4 minutes) and cooling (from 95?°C to 45?°C in up to 6 minutes) ensure time efficiency without compromising accuracy.

3. Can I customize protocols on the Hybridization for different assays?

Yes, the Hybridization supports up to 105 custom protocol storage slots. This allows users to program and save specific settings including temperature, duration, and operation modes for a wide range of assays. It ensures reproducibility and eliminates the need to manually reconfigure the system for different applications.

4. What operation modes are available on the Hybridization ?

Hybridization integrates three distinct operation modes: denaturation, hybridization, and a combined multi-step mode. This versatility makes it suitable for a wide range of procedures, allowing users to automate both individual steps and complex, multi-stage protocols within a single run.

5. How does the Hybridization enhance user safety and convenience?

Hybridization minimizes user exposure to harmful reagents by automating critical steps. It also includes a power failure recovery function, automatic warm-up, and post-run cooling, reducing the need for user intervention. Its compact size and full touchscreen interface make it easy to use and ideal for both large and small laboratories.

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