
AELAB provides ultrasonic laboratory equipment for sample disruption, homogenization, extraction, dispersion, emulsification, particle processing and precision cleaning applications.
The available product range includes ultrasonic cell disruptors, probe sonicators, non-contact ultrasonic wave pulverizers, mechanical ultrasonic cleaners and digital ultrasonic cleaning systems for scientific research, laboratory sample preparation and industrial quality control.
Users can compare AELAB ultrasonic systems according to sample type, processing volume, required ultrasonic power, operating mode, temperature sensitivity, contamination control requirements and laboratory workflow.
Compare ultrasonic cell disruptors, non-contact ultrasonic processors and ultrasonic cleaning systems for different laboratory applications.
Ultrasonic laboratory equipment uses high-frequency mechanical vibration to transfer energy into samples, liquids or cleaning solutions. Depending on the system design, ultrasonic energy may be applied directly through a probe, indirectly through a non-contact vessel or through an ultrasonic cleaning tank.
Probe-type ultrasonic cell disruptors are generally selected for intensive processing of biological, chemical or material samples. Non-contact systems help reduce direct probe contact with the sample, while ultrasonic cleaners use cavitation inside a liquid bath to remove contamination from laboratory tools, components and other compatible items.
| Equipment Type | Typical Function |
|---|---|
| Ultrasonic Cell Disruptor | Transfers ultrasonic energy directly into a sample for cell disruption, homogenization, dispersion, emulsification and extraction. |
| Probe Sonicator | Provides concentrated ultrasonic energy through a probe for processing small or medium sample volumes. |
| Non-Contact Ultrasonic Processor | Processes samples without inserting a probe directly into the sample container, helping reduce cross-contamination risks. |
| Ultrasonic Wave Pulverizer | Supports ultrasonic treatment, dispersion and particle-processing applications according to the selected model and configuration. |
| Digital Ultrasonic Cleaner | Uses ultrasonic cavitation in a cleaning bath for laboratory glassware, tools, components and compatible accessories. |
| Mechanical Ultrasonic Cleaner | Provides practical ultrasonic cleaning with mechanical control for routine laboratory and technical cleaning tasks. |

| Comparison Item | Ultrasonic Cell Disruptor | Ultrasonic Cleaner |
|---|---|---|
| Main Purpose | Sample processing, disruption, homogenization, dispersion and extraction. | Cleaning laboratory tools, glassware and compatible components. |
| Energy Transfer | Usually concentrated through a probe or specialized processing vessel. | Distributed through liquid inside an ultrasonic cleaning tank. |
| Sample Contact | May involve direct probe contact or non-contact processing, depending on the system. | The item is normally placed inside a basket or cleaning bath. |
| Typical Users | Biology, chemistry, pharmaceutical, material science and research laboratories. | Laboratories, workshops, quality control departments and technical service facilities. |
| Selection Priority | Sample volume, ultrasonic output, probe type, operating mode and temperature sensitivity. | Tank capacity, cleaning load, control method, operating time and heating requirements. |
The correct ultrasonic instrument should be selected according to the required process rather than only the nominal ultrasonic power. Users should first determine whether the application involves sample disruption, particle dispersion, extraction, non-contact processing or ultrasonic cleaning.
| Selection Factor | Questions to Consider |
|---|---|
| Application Type | Is the instrument required for cell disruption, homogenization, dispersion, extraction, pulverization or cleaning? |
| Sample Volume | What is the minimum and maximum sample volume processed during each operating cycle? |
| Sample Properties | Is the sample liquid, suspension, biological material, powder mixture, viscous material or another sample type? |
| Direct or Non-Contact Processing | Can a probe contact the sample directly, or must the sample remain inside a sealed container? |
| Ultrasonic Output | How much ultrasonic energy is required to achieve the expected disruption, dispersion or extraction result? |
| Temperature Sensitivity | Is the sample sensitive to heat generated during ultrasonic treatment? |
| Operating Mode | Does the method require continuous operation, pulsed processing, timed operation or adjustable output? |
| Probe or Vessel Configuration | Which probe size, processing vessel or non-contact accessory is appropriate for the sample volume? |
| Cleaning Capacity | For ultrasonic cleaners, what tank size and usable basket dimensions are required? |
| Contamination Control | Must cross-contamination between samples be minimized through non-contact processing or disposable containers? |

AELAB Ultrasonic Cell Disruptors AE-1000N
An ultrasonic sample-processing solution for laboratory cell disruption, homogenization, dispersion and related sonication applications.
AELAB Ultrasonic Cell Disruptors AE Series
A family of ultrasonic cell disruptors designed for different laboratory sample-processing requirements and operating conditions.
AELAB Ultrasonic Cell Disruptor UP-400S
Suitable for ultrasonic laboratory processing where controlled sample disruption, mixing, dispersion or homogenization is required.
AELAB Ultrasonic Cell Disruptor UP-250
Designed for routine sonication and laboratory sample preparation applications involving compatible sample volumes and processing methods.
Ultrasonic Cell Disruptor JY96-IIN
A laboratory ultrasonic processing system for disruption, dispersion, emulsification and related sample preparation procedures.
Ultrasonic Cell Disruptor JY88-IIN
Developed for laboratory sonication workflows where reliable ultrasonic treatment of biological, chemical or material samples is required.
AELAB Non-Contact Ultrasonic Wave Pulverizer AF-32T
A non-contact ultrasonic processing solution for applications in which samples should remain inside their containers during treatment.
AELAB Non-Contact Ultrasonic Wave Pulverizer AF-16T
Supports non-contact ultrasonic sample treatment while helping reduce direct probe contact and cross-contamination concerns.
Smart Mechanical Ultrasonic Cleaner AE-20 Series
A practical ultrasonic cleaning range for laboratory utensils, glassware, compatible components and routine technical cleaning applications.
AELAB Digital Ultrasonic Cleaners – Precision Lab Series
Digital ultrasonic cleaning systems designed to support repeatable cleaning procedures in laboratories, research facilities and quality control environments.
View the Complete AELAB Ultrasonic Range, Models and Technical Specifications
To receive a suitable ultrasonic equipment recommendation, provide the AELAB technical sales team with the following information:
AELAB is a laboratory equipment brand and supplier based in Guangzhou, China. The company provides laboratory instruments, analytical equipment and quality control solutions for distributors, universities, research institutions and industrial customers worldwide.
The AELAB product portfolio includes ultrasonic laboratory equipment, analytical instruments, laboratory sample preparation systems, environmental testing equipment, pharmaceutical testing instruments and other laboratory solutions.
Official website: www.aelabgroup.com
What types of ultrasonic laboratory equipment does AELAB supply?
AELAB supplies ultrasonic cell disruptors, probe-type ultrasonic processors, non-contact ultrasonic wave pulverizers, mechanical ultrasonic cleaners and digital ultrasonic cleaning systems.
What is an ultrasonic cell disruptor used for?
An ultrasonic cell disruptor transfers ultrasonic energy into a sample for applications such as cell disruption, homogenization, particle dispersion, emulsification, extraction and sample preparation.
What is the difference between direct and non-contact sonication?
Direct sonication normally places an ultrasonic probe inside the sample. Non-contact sonication transfers ultrasonic energy to samples while they remain inside compatible containers, reducing direct probe contact.
Can an ultrasonic cleaner replace an ultrasonic cell disruptor?
Not usually. Ultrasonic cleaners are primarily designed for cleaning items inside a liquid bath, while cell disruptors provide more concentrated ultrasonic processing for sample preparation.
How should I select the correct ultrasonic power?
The required ultrasonic output depends on sample volume, sample properties, processing objective, probe configuration, operating time and temperature sensitivity. AELAB can recommend suitable options after reviewing the application.
Why is temperature control important during sonication?
Ultrasonic processing may generate heat. Temperature-sensitive biological, pharmaceutical or chemical samples may require pulsed operation, cooling or controlled processing intervals.
Which information should I send when requesting a quotation?
Send the application, sample type, sample volume, direct or non-contact preference, expected workload, required accessories, destination country and power-supply requirements.
Can AELAB recommend a suitable ultrasonic model?
Yes. The AELAB team can review your laboratory application and recommend appropriate ultrasonic cell disruptors, non-contact systems or ultrasonic cleaners.
Tell the AELAB technical sales team about your sample type, processing volume, application, preferred operating method, required accessories and destination country.
A quotation can include recommended models, available technical specifications, compatible accessories, delivery time, export packaging and shipping information.
View AELAB Ultrasonic Equipment
Email: info@aelabgroup.com
WhatsApp / WeChat: +86 158 0001 6110
Website: www.aelabgroup.com
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