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Air Bath Oscillator LABO-B12

Air Bath Oscillator LABO-B12

Air Bath Oscillator LABO-B12 offers a rotation rate adjustable between 40 and 300 rpm. It is designed with a corrosion-resistant stainless steel chamber for durability. Its sturdy housing ensures long-term performance under frequent use. The LCD display screen provides clear temperature and frequency control. Our Oscillator is ideal for microbial growth studies, protein expression, and biochemical analyses.

Air Bath Oscillator LABO-B12
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Type Air Bath
Temperature Range RT+5 to 65°C
Oscillation Mode Reciprocating
Rotation Rate 40 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 300 W
Housing Dimensions (W×D×H) 740 × 480 × 500 mm
Tray Dimensions (W×D) 430 × 340 × 320 mm
Package Dimensions 800 × 560 × 530 mm
Net weight 44 kg
Gross weight 60 kg
  • Integrated Lighting System
  • Power Failure Auto-Recovery
  • Settings Memory Function
  • Adjustable Spring Holder
  • Programmable Timer

Our Air Bath Oscillator is ideal for microbial growth studies, protein expression, and biochemical analyses, providing uniform temperature distribution and controlled agitation for optimal sample processing and consistent experimental outcomes.

Air Bath Oscillator LABO-B12 | Type : Air Bath | Temperature Range : RT+5 to 65°C
Air Bath Oscillator LABO-B12 | Integrated Lighting System | Power Failure Auto-Recovery


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-A13

Air Bath Oscillator LABO-A13

  • Oscillation Mode : Reciprocating + gyrophonic
  • Working Size (mm) : 520 × 420 × 200 mm
  • Clamp Size : 420 × 320 mm
  • Temperature Range : RT + 5 to 60°C
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-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-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-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-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-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-B12 FAQ's
  • The chamber is made of corrosion-resistant stainless steel for enhanced durability and easy cleaning. This material resists rust, chemical corrosion, and wear, ensuring a longer service life. Its smooth, non-porous surface prevents sample contamination and allows quick, hygienic maintenance. The stainless steel construction also provides excellent thermal conductivity, contributing to uniform temperature distribution inside the chamber. Designed to withstand frequent use in demanding lab environments, the robust chamber maintains consistent performance and reliability over time.

  • Yes, it is ideal for microbial growth studies, protein expression, and biochemical analyses. Its uniform temperature distribution and precise shaking control create optimal conditions for microbial cultures, promoting consistent growth and reproducible results. The adjustable rotation speeds accommodate a variety of experimental protocols, from gentle mixing to vigorous agitation. Additionally, its corrosion-resistant chamber ensures contamination-free operation and easy cleaning. This makes it a reliable and durable tool for research, development, and quality control in microbiology and biochemical laboratories.

  • It features an LCD display screen for clear and accurate temperature and frequency control. The microcomputer-based controller maintains stable temperature settings throughout the experiment. Programmable shaking speeds allow precise adjustment to meet specific protocol requirements. This combination ensures consistent and reproducible experimental conditions every time. The system also includes automatic setting memory, which restores previous parameters after a power interruption. Uniform temperature distribution across the chamber ensures all samples receive equal thermal exposure, improving result reliability.

  • Yes, its sturdy housing design ensures long-term performance even under frequent use. The corrosion-resistant stainless steel chamber enhances durability and withstands exposure to various reagents. High-quality components support continuous operation in demanding lab environments. Its robust construction minimizes wear and tear, making it suitable for daily use. Additionally, its power failure recovery function helps maintain workflow consistency during unexpected interruptions.

  • The temperature range is RT+5°C to 65°C, providing optimal conditions for various experiments. This range supports a wide variety of biological and chemical applications requiring controlled thermal environments. The microcomputer-based control system ensures temperature stability and uniformity throughout the chamber. It is suitable for incubation, culturing, and enzymatic reactions where precise thermal control is essential.

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