Introduction

Floor Model Centrifuge supports both angle and swing rotors, offering a maximum speed of 9000 rpm for the angle rotor and 4500 rpm for the swing rotor. The construction of the centrifuge includes high-quality materials such as 316L stainless steel and Q235 steel for various housing components. Its safety features include automatic rotor identification, imbalance protection, and over-temperature protection. Our centrifuge provides 10 acceleration and 11 deceleration rate options, minimizing sample emulsification and ensuring consistency.

It utilizes high-speed rotation to separate components of different densities, widely used in biological, medical, and chemical laboratories. The unit is equipped with safety protection systems to ensure operator safety during high-speed operation.

Applications

Our Floor Model Centrifuge is ideal for high-volume separation tasks in blood banks, pharmaceutical production, and biological research. It efficiently processes large sample volumes with precise temperature and speed control.

Specifications

Max Speed Angle rotor: 9000 rpm
Swing rotor: 4500 rpm
Speed Accuracy ±10 rpm
Max Angle rotor: 18610 ×g
Swing rotor: 6756 ×g
Max Capacity Angle rotor: 6 × 1000 mL
wing rotor: 8 × 2200 ml
Temperature Setting Range -20°C to +40°C, setpoint adjustable by 1°C, fast pre-cooling reaches -20°C
Sample Temperature Accuracy ±1°C
Temperature Accuracy ±2°C
Time Setting Range Standard mode: 1 min to 99 h 59 min
Timing Mode Start after spinning, start after reach setting speed, continuous, timed operation
Pre-Cooling Function Yes
Imbalance Protection Yes
Rotor Identification Yes
Computer Control RS485 or RS232
Protection Functions Imbalance protection, rotor identification, door lid anti-pinch, motor overheating, over speed, over-temperature
Noise Up to 70 dB (A)
Power Consumption 7.5 kW
Power Supply AC220 ± 22V, 50 Hz
Dimensions (W × D × H) 875 × 996 × 1000 mm
Packing Dimensions (W × D × H) 1080 × 1310 × 1340 mm
Net Weight 575 kg

Features

Dynamic compressor control ()

Supports carbon fiber rotor

RS485 or RS232 computer control

Ethernet connectivity

Built-in safety functions

Soft-touch key operation

FAQs

1. What is the maximum speed capability of the Floor Model Centrifuge for different rotor types?

Floor Model Centrifuge supports two rotor types: angle and swing. With the angle rotor, it can achieve a maximum speed of 9000 rpm, which corresponds to a relative centrifugal force () of 18610 ×g. For the swing rotor, the maximum speed is 4500 rpm, generating an of 6756 ×g. This dual capability allows users to adapt the centrifuge to a wide range of sample types and separation protocols.

2. What temperature range can be maintained by the Floor Model Centrifuge during operation?

The Floor Model Centrifuge offers precise temperature control within a range of -20°C to +40°C, with an adjustable increment of 1°C. It features a fast pre-cooling system to quickly reach -20°C, and maintains sample temperature accuracy within ±1°C. This makes it suitable for temperature-sensitive samples such as blood, enzymes, or pharmaceutical compounds.

3. How does the Floor Model Centrifuge enhance user safety during operation?

Floor Model Centrifuge includes multiple built-in safety mechanisms. These include automatic rotor identification to prevent mismatches, imbalance protection to detect uneven sample loads, and protections for motor overheating, overspeed, and over-temperature. Additionally, the door lid is designed with anti-pinch safety features, minimizing the risk of injury during use.

4. Can the Floor Model Centrifuge be controlled via computer systems?

Yes, the Floor Model Centrifuge is compatible with both RS485 and RS232 computer control interfaces, allowing integration with laboratory information systems. It also includes Ethernet connectivity, enabling remote monitoring, data logging, and customized control of centrifugation cycles. This is particularly useful in labs that prioritize automation and centralized equipment management.

5. What materials are used in the construction of the Floor Model Centrifuge , and how does this affect durability?

The Floor Model Centrifuge is constructed using 316L stainless steel for the internal chamber and Q235 steel for the housing, ensuring durability, corrosion resistance, and long operational life. These materials provide a robust structure capable of withstanding the physical forces generated during high-speed centrifugation, while also ensuring easy cleaning and maintenance.

6. What is a Floor Model Centrifuge and how is it different from a benchtop centrifuge?

Foor Model Centrifuge is a high-capacity, free-standing unit designed to handle large sample volumes and higher speeds compared to benchtop centrifuges. It typically offers enhanced rotor capacity, greater centrifugal force, and is ideal for high-throughput laboratories where benchtop space is limited.

7. What types of rotors are compatible with Floor Model Centrifuge?

Floor model centrifuges are compatible with a variety of rotors, including swing-out rotors for low-speed applications and fixed-angle rotors for high-speed separations. Many models support interchangeable rotors to handle different tube sizes, bottles, and microplates.

8. What are the common applications of Floor Model Centrifuge?

Floor Model Centrifuges are widely used for blood component separation, cell harvesting, protein purification, nucleic acid isolation, and industrial processing. They are essential in clinical labs, pharmaceutical manufacturing, research facilities, and biotechnology environments.

9. How do I choose the right Floor Model Centrifuge for my lab?

Consider factors such as maximum speed (), relative centrifugal force (), rotor capacity, temperature control, and available rotor types. Labs handling temperature-sensitive samples should select a refrigerated model. Also, evaluate the noise level, footprint, and safety features.

10. Does Floor Model Centrifuge offer temperature control?

Yes, many Floor Model Centrifuges come with built-in refrigeration systems that maintain temperatures typically ranging from -20°C to +40°C. This is particularly important for preserving the integrity of biological samples during high-speed spins.

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