Introduction

Orbital Shaker operates at a speed range of 20 to 350 rpm, ensuring smooth and consistent motion. It features an adjustable amplitude of 12.5, 25, and 50 mm for various experimental needs. With a 6 kg load capacity and a 370×350 mm tray, it handles multiple samples. The separate controller allows easy operation without disturbing incubation. Our Orbital Shaker is ideal for suspension cell culture in CO₂ incubators under high humidity environments.

This laboratory shakers 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 Orbital Shaker supports cell culture, microbial growth, enzyme reactions, and solubility studies, ensuring controlled agitation for research. Suitable for CO₂ incubators and high-humidity environments.

Specifications

Drive Mode Magnetic Drive
Amplitude 12.5, 25, 50 mm
Speed Range 20 to 350 rpm
Timing Function 0 to 999 Hours (Continuous at 0)
Host Material 304 Stainless Steel
Controller Display
Power-Off Memory Function Standard
Environmental Conditions 4°C to 60°C, Humidity <99%RH
Maximum Load 6 kg
Maximum Flask Capacity 30×50 ml, 15×100 ml, 15×250 ml, 9×500 ml, 6×1000 ml, 4×2000 ml, 3×3000 ml, 1×5000 ml
Power Supply 220 to 240 V, 50/60 Hz
Maximum Power 20 W
Body Height 70 mm
Tray Size (L×W) 370×350 mm
Host Dimensions (L×W×H) 370×370×70 mm
Controller Dimensions 160×80×30 mm
Weight 15 kg

Features

Magnetic drive operation

Compact height of just 70mm

No belts reduce contamination risk

Multiple amplitude settings for customization

Low energy consumption at 20W

Maintains stable temperature conditions

Durable 304 stainless steel material

Power-off memory function integrated

FAQs

1. What sample capacity does the Orbital Shaker support?

Orbital Shaker accommodates multiple flask sizes, including 50 ml, 100 ml, 250 ml, and larger volumes up to 5000 ml. The spacious 370×350 mm tray allows secure placement of multiple samples, ensuring efficient processing. With a load capacity of 6 kg, it supports high-throughput workflows. This makes it suitable for research and industrial laboratories.

2. How does the magnetic drive system enhance the Orbital Shaker?

Unlike traditional belt-driven systems, our Orbital Shaker features a magnetic drive that minimizes contamination risks. This design ensures smooth, low-noise operation with precise control over speed and motion. It also reduces maintenance needs, offering long-term reliability. The system enhances mixing efficiency while maintaining sample integrity.

3. How does the Orbital Shaker resist weak acid environments?

The Orbital Shaker features corrosion-resistant mechanical parts, making it suitable for weak acid environments. This allows it to be used in biochemical and pharmaceutical research where exposure to mild acidic conditions is common. The durable design ensures a long lifespan even in demanding laboratory settings. It maintains performance without frequent maintenance needs.

4. Why is the absence of belts beneficial in the Orbital Shaker?

Without belts, the Orbital Shaker avoids unnecessary background heat from friction, maintaining stable incubation conditions. This is crucial for sensitive biological samples that require precise temperature control. Additionally, it reduces mechanical wear and contamination risks from belt particles. The design ensures reliable and long-term performance in research environments.

5. How does the Orbital Shaker ensure effective suspension cell culture?

Orbital Shaker provides controlled orbital motion, making it ideal for suspension cell cultures in CO2 incubators. With adjustable amplitude settings, it enables optimal mixing conditions for various cell types. Its magnetic drive system eliminates belts, reducing contamination risks. This ensures stable performance even in high-humidity environments.

6. Can the Orbital Shaker be used in temperature-controlled environments?

Orbital Shaker operates efficiently between 4°C and 60°C, making it suitable for temperature-sensitive applications. The stainless steel construction ensures durability under varying conditions. Its low power consumption prevents unwanted heat generation, maintaining a stable incubation environment. This makes it an excellent choice for microbiology and biopharmaceutical research.

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