SCIENTZ-8TD Multichannel Ultrasonic Cell Disruptor | 8-Channel Parallel Processing For Faster Sample Disruption

Aug 11, 2026

Leave a message

Ederson
Ederson
administrator

Eight samples. One run. Complete disruption.

This is the daily performance of the SCIENTZ-8TD Multichannel Ultrasonic Cell Disruptor. While traditional single-probe systems process samples one by one, SCIENTZ-8TD completes the disruption of eight samples simultaneously under identical conditions.

For high-throughput screening, parallel comparative experiments, and multi-omics sample preparation, time means efficiency and consistency determines data reliability. SCIENTZ-8TD is designed to solve these two critical challenges.

01 | Why Choose a Multichannel System?

Parallel comparative experiments: Multiple samples can be processed under exactly the same conditions, ensuring reliable data comparison.

High-throughput screening: When dozens or hundreds of samples need to be processed, handling them individually can be time-consuming.

Precious micro samples: Valuable samples with limited volume can be processed in one batch, reducing sample loss risks.

Shared laboratory operation: One instrument supports simultaneous sample loading for multiple users.

news-1080-1050

02 | What Can SCIENTZ-8TD Do?

Equipped with eight Φ6 titanium alloy probes, SCIENTZ-8TD supports simultaneous processing of 1–20 mL samples. With 2400 W ultrasonic power and continuously adjustable output power from 1% to 100%, it meets the disruption requirements of various biological and material samples.

Applications include plant and animal cell disruption, microbial lysis, DNA fragmentation preparation, nanomaterial dispersion, traditional medicine extraction, and beverage homogenization.

03 | Core Advantages: Three Key Benefits

Consistent: Eight samples are processed simultaneously under the same conditions, eliminating batch-to-batch variations.

Efficient: Eight samples can be handled in one operation, significantly shortening experimental cycles.

Simple: The 7-inch touchscreen provides intuitive parameter settings. Up to 20 programs can be stored, with interval or continuous pulse modes available. Pulse duration can be adjusted from 0.1–99.9 seconds.

1

04 | Working Principle

Based on the cavitation effect of ultrasonic waves in liquids, the transducer converts electrical energy into mechanical vibration through the probe tip, generating high-intensity shear forces and alternating pressure waves in the liquid.

These ultrasonic cavitation effects create microscopic bubbles that rapidly expand and collapse, producing powerful pressure peaks and shock waves. The resulting mechanical forces effectively disrupt cells and promote the dispersion of materials such as polymers.

05 | Application Areas

Bioengineering: Cell, bacteria, virus, and spore disruption; DNA fragmentation preparation.

Biopharmaceuticals: Drug substance dispersion; herbal extraction; nanoparticle disruption and emulsification.

Food Engineering: Beverage homogenization; wine aging acceleration; enhanced chemical reactions.

Environmental Engineering: Homogenization of soil and rock samples.

SCIENTZ-8TD Multichannel Ultrasonic Cell Disruptor provides laboratories with a faster, more consistent, and more efficient solution for parallel sample processing.

 

Send Inquiry