Introduction

Air Bath Oscillator long-duration experiments with a programmable timer up to 9999 hours. It includes a universal spring fixture for secure placement of varied sample containers. The built-in memory function retains parameters after power recovery. Its efficient heat distribution supports consistent incubation conditions. Our Oscillator is widely used in life science, microbiology, and pharmaceutical labs.

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 widely used in life science, microbiology, and pharmaceutical labs for applications such as cell cultivation, enzyme activity tests, and germination experiments requiring stable conditions.

Specifications

Type Air Bath
Temperature Range RT+5 to 50°C
Oscillation Mode Orbital or Reciprocating
Rotation Rate 0 to 220 rpm (Orbital) 0 to 300 rpm (Reciprocating)
Vibration Amplitude 20 mm (Orbital) 30 mm (Reciprocating)
Timer Range 0 to 9999 min/h
Full Load Configuration 500×6 or 1000×2 [ml×pc]
Power Consumption 400 W
Internal Dimensions (W×D×H) 500×400×250 mm
Housing Dimensions (W×D×H) 705×455×440 mm
Tray Dimensions (W×D) 430×340×230 mm
Package Dimensions 810×560×580 mm
Net weight 45 kg
Gross weight 60 kg

Features

Precise Digital Control

Durable Steel Interior

Illuminated Sample Area

Auto Power Recovery

Versatile Clamp Holder

FAQs

1. How precise is the temperature control system?

The microcomputer control system ensures accurate and stable temperature regulation throughout experiments. It maintains consistent temperatures to prevent fluctuations that could affect results. This precision supports sensitive applications like enzyme reactions and cell cultures. Reliable temperature control improves reproducibility and experimental accuracy.

2. What is the power consumption of the air bath oscillator?

The air bath oscillator consumes 400 watts of power during operation. This power level balances efficient heating with energy savings. It ensures rapid temperature ramp-up and stable maintenance. The device is designed for continuous use in lab settings without excessive electricity costs. Additionally, its energy-efficient design helps reduce overall lab operational expenses while maintaining reliable performance.

3. Is the chamber easy to clean?

Yes, the stainless steel chamber is chemical-resistant and designed for easy cleaning and maintenance. Its smooth surface prevents residue buildup, ensuring hygienic conditions. The durable material resists corrosion from common lab chemicals. Routine cleaning helps maintain optimal performance and prolongs the equipment’s lifespan. The chamber’s design also allows quick access, simplifying cleaning procedures and minimizing downtime.

4. What safety features does the air bath oscillator offer?

It includes power failure recovery and parameter memory to protect experiment continuity. These features ensure that settings are retained and experiments resume automatically after power interruptions. Additionally, the system provides stable temperature control to prevent overheating. The durable stainless steel chamber enhances safety by resisting chemical corrosion and contamination.

5. Can the shaking speed be adjusted?

Yes, rotation rates can be controlled up to 220 rpm for orbital and 300 rpm for reciprocating modes. This allows precise tuning of agitation to suit different sample types and experimental requirements. Adjustable speed helps optimize mixing without damaging sensitive samples. The dual-mode shaking enhances versatility across various lab applications. The intuitive control interface ensures easy speed adjustments, enabling users to maintain consistent mixing conditions.

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