Articles

At Amp-Line Corp. we take pride in powering innovation and discovery for research laboratories and university research centers. Our products have been trusted by many universities and laboratories from around world, contributing to various fields of research.

We are excited to share our collection of research articles from universities, where our products played a crucial role in experimental setups and outcomes. These publications show real-world applications and how our solutions are being utilized in their projects.
Selective isolation of live/dead cells using contactless dielectrophoresis (cDEP)

Equipment:
Plasma Power Supply Systems - Model no. AL-50-HF-A Wideband AC Power Amplifier & C
ustom Made High Voltage High Frequency Transformer
User: Virginia Tech
Research and Application: Contactless dielectrophoresis method of isolating live and dead cells based on their dielectric properties by challenging the effect of different voltages and frequencies.
A Microfluidic System for Biological Particle Enrichment Using Contactless Dielectrophoresis.

Equipment:
Plasma Power Supply Systems - Model no. AL-50-HF-A Wideband AC Power Amplifier & High Frequency Transformer

User: Virginia Tech
Application and Requirement: Development of a microfluidic system that uses dielectrophoresis (DEP) method without harming the sample used
Selective Concentration of Human Cancer Cells Using Contactless Dielectrophoresis

Equipment: Plasma Power Supply Systems - Model no. AL-50-HF-A Wideband AC Power Amplifier & Model AL-T350.4 High Frequency Transformer
User: Virginia Tech
Research and Application: Continuous study of contactless dielectrophoresis method of isolating specific cell types from a mixed population of live cells
Microfluidic Mixing Using Contactless Dielectrophoresis

Equipment:
Plasma Power Supply Systems - Model no. AL-50-HF-A Wideband AC Power Amplifier & Model AL-T350.4 High Frequency Transformer

User: Virginia Tech
Application and Requirement: Contactless dielectrophoresis method of rapid mixing enhancements in a microfluidic system
Silica Nanoparticles Treated by Cold Atmospheric-Pressure Plasmas Improve the Dielectric Performance of Organic−Inorganic Nanocomposites

Equipment:
 AL-T500-V200 HVHF Output Transformer

User: CSIRO Materials Science and Engineering
Research and Application: Using high voltage high frequency transformer in a system to carry out plasma treatment on cancer cells and have published results of very high level.

Designing Atmospheric-Pressure Plasma Sources for Surface Engineering of Nanomaterials

Equipment:
 AL-T500-V200 HVHF Output Transformer

User: CSIRO Materials Science and Engineering
Research and Application: Using high voltage high frequency transformer in a system to carry out plasma treatment on cancer cells and have published results of very high level.

Atmospheric microplasma-functionalized 3D microfluidic strips within dense carbon nanotube arrays confine Au nanodots for SERS sensing

Equipment:
 AL-T500-V200 HVHF Output Transformer

User: CSIRO Materials Science and Engineering
Research and Application: Using high voltage high frequency transformer in a system to carry out plasma treatment on cancer cells and have published results of very high level.

The Influence of a Rotating Magnetic Field on the Thermal Effect in Magnetic Fluid

Equipment:
Model no. AL-300-HF-A Wideband AC Power Amplifier

User: Adam Mickiewicz University
Application and Requirement: 
Generation of a Rotating High Frequency Magnetic Field Designed for Use in Magnetic Hyperthermia

Equipment:
Model no. AL-300-HF-A Wideband AC Power Amplifier
User: Adam Mickiewicz University
Application and Requirement:
 
Magnetic Pickering Emulsions Heated in a Rotating Magnetic Field

Equipment:
 Model no. AL-300-HF-A Wideband AC Power Amplifier
User: Adam Mickiewicz University
Application and Requirement:
G-Z0BPK2VLRQ