High Speed Refrigerated Centrifuge EZL-HRC108 Catalog

Description

EziLab offers the High Speed Refrigerated Centrifuge EZL-HRC108, a floor standing lysate spinner that reaches 23,000 rpm and 60,460 g RCF while an eco-friendly cooling circuit holds the chamber between -20 and 40 °C within ±1 °C. Rotors take up to four 1,000 mL bottles, speed holds to ±10 rpm, and the timer runs from 1 minute to 99 hours 59 minutes. Automatic rotor recognition sets the correct speed ceiling as soon as a head is fitted, the rotating head installs and positions without tools, and a 7-inch HD display with multi-language menus walks operators through run setup. Noise sits at 65 dB(A), and the 260 kg cabinet draws 5,000 W. Molecular biology institutes, biochemistry departments, clinical research units, virology laboratories, biopharmaceutical producers and university core facilities use this high speed refrigerated centrifuge when pellets need forces beyond benchtop range. Typical runs include clearing bacterial and tissue lysates, concentrating viral particles, subcellular organelle fractionation, membrane preparation, chemical precipitate recovery and cell harvesting from liter cultures. Choose it over the 16,000 rpm sibling when 60,000 g is the target. Rotor recognition details are on the High Speed Refrigerated Centrifuge page; the whole floor range is compared under High Speed Refrigerated Centrifuges.

Specifications

Maximum Speed 23000 rpm
Maximum RCF 60460 × g
Maximum Capacity 4 × 1000 ml
Timer Range 1min to 99h 59min
Speed Accuracy ±10 rpm
Temperature Range -20°C to 40°C
Temperature Accuracy ±1°C
Noise Level 65dB (A)
Power Consumption 5000 W
Dimension (L × W × H) 930 × 730 × 960 mm
Weight 260 kg

Features

  • ✓ 7 inch HD display
  • ✓ Supports multi-language selection
  • ✓ Automatic rotor recognition system
  • ✓ Employs an eco-friendly cooling agent
  • ✓ Rotating head is simple to install and position

Applications

  • ✓ High Speed Refrigerated Centrifuge EZL-HRC108 is used for separating biological samples and concentrate cytoplasm, viral cells, chemical substances, etc., and is widely used in high-tech fields such as molecular biology, biochemistry, clinical research, etc.