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Air Bath Oscillator LABO-A22

Air Bath Oscillator LABO-A22

Air Bath Oscillator LABO-A22 features a 30 mm vibration amplitude that ensures efficient sample agitation. It offers a reliable performance balance between temperature control and mechanical shaking. The unit is designed for low maintenance and easy cleaning. Its tray design supports easy sample loading and minimizes spillage risks. Our Oscillator supports protein expression, bacterial growth, and compound extraction.

Air Bath Oscillator LABO-A22
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Type Air Bath
Temperature Range RT+5 to 50°C
Oscillation Mode Reciprocating
Rotation Rate 0 to 300 rpm
Vibration Amplitude 30 mm
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 40 kg
Gross weight 55 kg
  • Stainless Steel Chamber
  • Internal Illumination Lamp
  • Power Recovery Memory
  • Universal Spring Fixture
  • Built-in Timer Function

Our Air Bath Oscillator supports protein expression, bacterial growth, and compound extraction, providing consistent mixing and controlled incubation environments, ideal for academic, industrial, and government research settings.

Air Bath Oscillator LABO-A22 | Type : Air Bath | Temperature Range : RT+5 to 50°C
Air Bath Oscillator LABO-A22 | Stainless Steel Chamber | Internal Illumination Lamp


Models of Air Bath Oscillator

Labtron Air Bath Oscillator is made to maintain stable temperature conditions for sensitive electronic components. It ensures minimal frequency drift by isolating oscillators from external temperature fluctuations using a controlled air chamber. Ideal for laboratories and calibration environments, it delivers consistent performance and long-term stability. Key features include low phase noise, excellent frequency accuracy, and robust construction. Our air bath oscillator is widely used in frequency standards, timing applications, and high-precision test setups. Its compact design and reliable performance make it a preferred choice for professionals seeking accuracy and stability.

Air Bath Oscillator LABO-B10

Air Bath Oscillator LABO-B10

  • Type : Air Bath
  • Temperature Range : RT+5 to 65°C
  • Oscillation Mode : Orbital
  • Rotation Rate : 40 to 300 rpm
Air Bath Oscillator LABO-A11

Air Bath Oscillator LABO-A11

  • Oscillation Mode : Reciprocating
  • Working Size (mm) : 520 × 420 × 200 mm
  • Clamp Size : 420 × 320 mm
  • Temperature Range : RT + 5 to 60°C
Air Bath Oscillator LABO-B11

Air Bath Oscillator LABO-B11

  • Type : Air Bath
  • Temperature Range : RT+5 to 65°C
  • Oscillation Mode : Orbital or Reciprocating
  • Rotation Rate : 40 to 300 rpm
Air Bath Oscillator LABO-A20
Air Bath Oscillator LABO-A20
  • Type : Air Bath
  • Temperature Range : RT+5 to 50°C
  • Oscillation Mode : Orbital
  • Rotation Rate : 0 to 220 rpm
Air Bath Oscillator LABO-A21
Air Bath Oscillator LABO-A21
  • 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)
Air Bath Oscillator LABO-A10

Air Bath Oscillator LABO-A10

  • Shaking Mode : Orbital
  • Working Size (mm) : 520 × 420 × 200mm
  • Clamp Size : 420 × 320mm
  • Temperature Range : RT + 5 to 60°C
Air Bath Oscillator LABO-A12

Air Bath Oscillator LABO-A12

  • Oscillation Mode : Gyrophonic
  • Working Size (mm) : 520 × 420 × 200 mm
  • Clamp Size : 420 × 320 mm
  • Temperature Range : RT + 5 to 60°C
Air Bath Oscillator LABO-B12

Air Bath Oscillator LABO-B12

  • Type : Air Bath
  • Temperature Range : RT+5 to 65°C
  • Oscillation Mode : Reciprocating
  • Rotation Rate : 40 to 300 rpm
Air Bath Oscillator LABO-A22 FAQ's
  • Yes, it is ideal for bacterial growth, protein expression, and compound extraction due to its stable temperature control and effective shaking mechanism. The adjustable shaking speed ensures optimal aeration and mixing, critical for microbial and cellular activity. Its consistent incubation environment enhances reproducibility of biological reactions. The stainless steel chamber ensures a sterile workspace, minimizing contamination risks. This makes it suitable for routine use in biotech, pharmaceutical, and academic laboratories.

  • Yes, it has a built-in timer range from 0 to 9999 minutes or hours for precise control over incubation periods. This function allows users to set specific durations for shaking operations, improving workflow efficiency. It helps prevent over-processing and ensures consistent experimental conditions. The timer is especially useful for long-duration experiments requiring unattended operation. Additionally, the timer display is easy to read, enabling quick monitoring of the remaining time.

  • The internal chamber is made of stainless steel, ensuring durability, easy cleaning, and corrosion resistance. Stainless steel provides a hygienic surface that resists contamination, making it ideal for biological and chemical applications. Its robust construction withstands frequent use and exposure to various solvents and reagents. The smooth surface minimizes sample adhesion and facilitates quick maintenance, helping to maintain a sterile environment throughout experiments.

  • Yes, the Air Bath Oscillator includes a power recovery memory function that restores previous settings automatically after power outages. This ensures that ongoing experiments are not disrupted or reset unexpectedly, maintaining experimental accuracy. The device resumes operation with the same temperature, shaking speed, and timer settings as before the power loss. This feature minimizes downtime and the risk of sample damage, providing peace of mind in environments with unstable power supply.

  • Yes, the design emphasizes low maintenance with smooth surfaces, a removable tray, and minimal spillage risk. The stainless steel chamber resists corrosion and is easy to clean with standard lab detergents. The removable tray allows quick access for cleaning and sample loading, reducing downtime between experiments. Additionally, the robust construction and simple controls minimize the need for frequent repairs or adjustments, making it reliable for continuous lab use.

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