Introduction

Air Bath Oscillator uses gyrophonic (orbital) motion for smoother, circular shaking. It is compatible with global power standards which are 110 V 60 Hz and 220 V 50 Hz. The oscillator has a microprocessor-based intelligent control system for temperature and timing. Its 20 mm oscillation amplitude ensures consistent sample movement. Our analyzer is suitable for applications requiring gentle mixing such as cell cultures.

This laboratory oscillator 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 Air Bath Oscillator is used in colleges and universities, medical, petrochemical, health and epidemic prevention, environmental monitoring and other scientific research departments for the oscillation culture of various liquid and solid compounds such as biology, biochemistry, cells, and strains.

Specifications

Oscillation Mode Gyrophonic
Working Size (mm) 520 × 420 × 200 mm
Clamp Size 420 × 320 mm
Temperature Range RT + 5 to 60°C
Temperature Fluctuation ± 0.5°C
Timer Range 0 to 999 h 59 min or 0 to 9999 min or continuous
Shaking Frequency Startup to 300 rpm, stepless adjustment
Amplitude 20 mm
Heating Power 300W
Power Supply 110V 60Hz / 220V 50Hz
Dimension 700 × 450 × 515mm
Packaging Dimension 790 × 540 × 610mm
Net Weight 33 kg
Gross Weight 48 kg

Features

Built-in electronic timer

Color display

Quiet and smooth operation

User-friendly interface

Durable design

FAQs

1. What is gyrophonic oscillation and how is it useful?

Gyrophonic oscillation refers to a smooth, orbital shaking motion that moves samples in a circular path rather than a straight line. This type of motion is particularly beneficial for applications requiring gentle agitation, such as cell cultures or low-shear mixing processes. This Air Bath Oscillator uses this mode to ensure uniform nutrient distribution and gas exchange in biological samples, reducing the risk of cell damage while promoting optimal growth conditions. This makes the device an excellent choice for labs focused on tissue culture, enzyme reactions, or any process involving delicate suspensions.

2. Can the air bath oscillator be used for long durations?

Yes, as Air Bath Oscillator features an exceptionally flexible timer that allows for countdown settings from 0 to 999 hours and 59 minutes or up to 9999 minutes, in addition to a continuous operation mode. This is a significant advantage for long-duration experiments such as overnight incubations, fermentation, or prolonged mixing protocols. Researchers don’t have to reset the device repeatedly, saving time and ensuring uninterrupted conditions. This extended timing capability also minimizes the need for additional timing equipment.

3. How does it address the challenge of contamination in sensitive experiments?

Contamination control is a major concern in labs, especially when dealing with microbiological cultures or sterile media. Air Bath Oscillator offers an optional UV sterilization feature, which helps sanitize the interior chamber between uses. This not only prevents cross-contamination between experiments but also helps maintain aseptic conditions—crucial for studies involving pathogens, cells, or sensitive chemical reactions. UV sterilization adds a layer of biosafety and convenience, eliminating the need for separate disinfection processes or reliance on external sterilizing equipment.

4. Can this be used in a global lab environment with varying power standards?

It supports dual power input of 110V 60Hz or 220V 50Hz, making it compatible with electrical standards across most countries. This is a practical advantage for international labs or institutions with global procurement needs. It also makes the device an attractive choice for multinational research facilities, academic collaborations, or contract research organizations that require standardized equipment across different locations.

5. How precise is the temperature control in this air bath oscillator?

The temperature control is highly accurate, maintaining a fluctuation of only ±0.5°C within the range of room temperature +5°C to 60°C. This ensures consistent conditions for sensitive biological or chemical processes.

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