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Ultrasonic Cell Disruptor LUCD-A10

Ultrasonic Cell Disruptor LUCD-A10

Ultrasonic Cell Disruptor LUCD-A10 features a working frequency range of 20 to 25 kHz for effective cavitation and cell disruption. It provides an integrated temperature sensor to detect sample heat buildup and prevent overheating. The system is compatible with various probe sizes to match specific sample types and volumes. Our ultrasonic cell disruptor offers fault protection systems designed to ensure safe, reliable and uninterrupted operation.

Ultrasonic Cell Disruptor LUCD-A10_Top View
Ultrasonic Cell Disruptor LUCD-A10_Front View
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Working Frequency 20 to 25 KHz
Display Mode 7 TFT Touch
Set The Ultrasound Time 0.1 to 9.9 seconds
Set The Time Gap 0.1 to 9.9 seconds
Set The Full Time 0.1 to 999 minutes
Ultrasonic Power 650 W
Random Amplitude Transformer Φ 6
Optional Amplitude Transformer Φ2, Φ3, Φ10, Φ15
Crushing Capacity 0.1 to 500 ml
Duty Cycle 0.1 to 99.9 %
Data Storage 20 group
Temperature Warning 0 to 99 ℃
Power Supply 220 V/110 V 50 Hz/60 Hz
Size of Power Supply Case 400 mm × 280 mm × 220 mm
Size of Sound Proof Box 275 mm × 250 mm × 480 mm
Outer Packaging Size 534 mm × 295 mm × 435 mm
Net Weight of Soundproof Box 8.04 kg
Net Weight of Power Supply Case 12.2 kg
Net Weight 14.3 kg
  • Real-Time Temperature Sensors

  • Programmable Method Storage

  • Automatic Frequency Tracking

  • Variable Power Control 

  • Automatic Fault Detection

Ultrasonic Cell Disruptor LUCD-A10 uses high‑frequency sound waves to generate cavitation in liquids. It plays a key role in biotechnology, biochemistry, medical, clinical diagnostics, nanotechnology, material sciences and environmental sciences.

Ultrasonic Cell Disruptor Supplier

Labtron Ultrasonic Cell Disruptor applies high‑frequency ultrasonic waves to generate powerful cavitation in liquid samples. They provide an automatic frequency tracking mode, ensuring optimal performance and safety through self-adjusting resonance control. These sound-proof enclosures feature illumination, sterilization, and automatic lifting mechanisms to enhance safety. Their thermostat-regulated water cooling effectively minimizes thermal buildup during high-power or extended sonication runs. Our ultrasonic cell disruptor includes optimized advanced processes in fields like nanotechnology, emulsification, chemical extraction, and high-precision biochemical workflows.

Ultrasonic Cell Disruptor LUCD-A10 FAQ's
  • Labtron supplies advanced ultrasonic cell disruptor LUCD-A10. Amplitude controls the actual displacement of the probe tip—the metric that determines bubble collapse and shear—while electrical wattage merely reflects power draw, not tip motion. Laboratory-grade sonicators like the Sonics Vibracell series use feedback systems to automatically adjust power to maintain a set amplitude, even as the sample’s viscosity, volume or probe immersion changes, thereby delivering consistent mechanical dose every time. Studies show that two runs at the same percent amplitude (e.g. 50?%) can look identical even if one draws 30?W and the other 90?W due to sample load variations-highlighting why amplitude control is far more reliable than power based dosing.

  • Labtron supplies premium ultrasonic cell disruptor LUCD-A10. Pulse mode allows users to interleave sonication on and off phases to slow heat buildup, while an optional temperature probe monitors the sample in real time. If the set threshold is exceeded, the instrument automatically pauses until the temperature drops below the start point—preventing thermal degradation of proteins, RNA or organelles. Most modern sonicators offer programmable pulse timings and interlocks tied to temperature limits for safe, reproducible runs in sensitive workflows.

  • Labtron supplies premium ultrasonic cell disruptor LUCD-A10. High precision sonicators automatically detect and lock onto the resonance frequency of the horn–converter assembly to sustain consistent cavitation intensity—even as components heat or wear. In tandem, fault sensors detect no load conditions (e.g. loose or missing tip) or cavitation stall, shutting down the unit before damage occurs. These safeguards minimize user error, eliminate manual retuning between samples, and extend the life of the transducer and power supply for safer, more reliable operation.

  • Labtron supplies advanced ultrasonic cell disruptor LUCD-A10. Energy mode measures the cumulative ultrasonic energy delivered (in joules), which compensates for variations in acoustic coupling or sample resistance that cause instantaneous power to fluctuate. Terminating each run when a target energy level is reached ensures every sample receives the same mechanical dose, regardless of viscosity or volume differences. This strategy is particularly important for scaling protocols or comparing soft vs rigid cell types, and it also provides tighter documentation under regulatory regimes like GLP/GMP.

  • Labtron supplies ultrasonic cell disruptor LUCD-A10. Probe diameter corresponds roughly to optimal processing volume: micro tips for inner sonotrode, and larger or booster caps for l or more. If you regularly run liter scale or continuous workflows, flow through reactors operate at precise flow rates with temperature controlled jackets, enabling long-duration operation without overheating or cavitation drift. Switching horns or reactors lets labs scale up from single-tube disruption to high-volume or plate-based processing with consistent, reproducible acoustic exposure.

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