A QUICK way to the
big discoveries.

A QUICK way to the
big discoveries.

A QUICK way to the
big discoveries.

A QUICK way to the
big discoveries.

A QUICK way to the
big discoveries.

Revolutionize Your Research with the
Cutting-Edge QCM-D Biosensing Device

Revolutionize Your Research with the
Cutting-Edge QCM-D Biosensing Device

Revolutionize Your Research with the
Cutting-Edge QCM-D Biosensing Device

Revolutionize Your Research with the Cutting-Edge QCM-D Biosensing Device

The ultimate tool for life science researchers seeking precision and accuracy in their experiments. This cutting-edge device employs advanced biosensing to deliver highly sensitive and accurate measurements in real-time. Researchers can exploit QCM-D capabilities to monitor biological interactions, drug binding, and molecular interactions with unparalleled precision.

The ultimate tool for life science researchers seeking precision and accuracy in their experiments. This cutting-edge instrument employs advanced biosensing to deliver highly sensitive and accurate measurements in real-time. Researchers can exploit QCM-D capabilities to monitor biological interactions, drug binding, and molecular interactions with unparalleled precision.

The ultimate tool for life science researchers seeking precision and accuracy in their experiments. This cutting-edge device employs advanced biosensing to deliver highly sensitive, accurate, and repeatable measurements in real-time. Researchers can exploit QCM-D capabilities to monitor biological interactions, drug binding, and molecular interactions with unparalleled precision.

The ultimate tool for life science researchers seeking precision and accuracy in their experiments. This cutting-edge device employs advanced biosensing to deliver highly sensitive and accurate measurements in real-time. Researchers can exploit QCM-D capabilities to monitor biological interactions, drug binding, and molecular interactions with unparalleled precision.

The ultimate tool for life science researchers seeking precision and accuracy in their experiments. This cutting-edge device employs advanced biosensing to deliver highly sensitive and accurate measurements in real-time. Researchers can exploit QCM-D capabilities to monitor biological interactions, drug binding, and molecular interactions with unparalleled precision.

Sensitivity

QCM-D is a highly sensitive technique that can measure changes in mass at the nanoscale level.

QCM-D is a highly sensitive technique that can measure changes in mass at the nanoscale level.

Sensitivity

Real-Time
Monitoring

QCM-D instruments provide real-time measurements, allowing for dynamic monitoring of changes in mass or properties of materials in-situ.

QCM-D instruments provide real-time measurements, allowing for dynamic monitoring of changes in mass or properties of materials in-situ.

QCM-D instruments provide real-time measurements, allowing for dynamic monitoring of changes in mass or properties of materials in-situ.

Real-Time
Monitoring

Versatility

QCM-D is a versatile technique that can be used in various fields of research, including life science, materials science, surface chemistry, biochemistry, biophysics, and more.

QCM-D is a versatile technique that can be used in various fields of research, including life science, materials science, surface chemistry, biochemistry, biophysics, and more.

Versatility

High Precision

QCM-D measurements are typically highly reproducible and can provide precise quantitative data on mass changes, thickness, and viscoelastic properties of materials.

QCM-D measurements are typically highly reproducible and can provide precise quantitative data on mass changes, thickness, and viscoelastic properties of materials.

High Precision

Unlocking the Power of Gold

Unlocking the
Power of Gold

Coating gold with antibodies is a technique used in biomedical research and testing. This process involves attaching antibodies to the surface of a thin gold layer, which can then be used to detect specific molecules or cells in biological samples.

Coating gold with antibodies is a technique used in biomedical research and testing. This process involves attaching antibodies to the surface of a thin gold layer, which can then be used to detect specific molecules or cells in biological samples.

With QUICK Software you do not need any programming skills.

With QUICK Software you do not need any programming skills.

With QUICK Software you do not need any programming skills.

With QUICK Software
you do not need any programming skills.

Don’t settle for less, make the best of QUICK through proper sensor coating selection.

Don’t settle for less, make the best of
QUICK through proper sensor coating selection.

Don’t settle for less, make the best of
QUICK through proper sensor coating selection.

Don’t settle for less, make the best of
QUICK through proper sensor coating selection.

Don’t settle for less, make the best of QUICK through proper sensor coating selection.

Gold (Au):

Gold (Au):

Gold (Au):

Particularly for studying protein interactions, DNA hybridization, and cell adhesion.

Particularly for studying protein interactions, DNA hybridization, and cell adhesion.

Particularly for studying protein interactions, DNA hybridization, and cell adhesion.

Particularly for studying protein interactions, DNA hybridization, and cell adhesion.

Polymer:

Polymer:

Polymer:

Optimal for environmental monitoring, drug discovery, and medical diagnostics.

Optimal for environmental monitoring, drug discovery, and medical diagnostics.

Optimal for environmental monitoring, drug discovery, and medical diagnostics.

Optimal for environmental monitoring, drug discovery, and medical diagnostics.

Titanium (Ti):

Titanium (Ti):

Titanium (Ti):

Commonly used in thin-film deposition studies, such as studying the growth and properties of thin films.

Commonly used in thin-film deposition studies, such as studying the growth and properties of thin films.

Commonly used in thin-film deposition studies, such as studying the growth and properties of thin films.

Commonly used in thin-film deposition studies, such as studying the growth and properties of thin films.

Silica (SiO2):

Silica (SiO2):

Silica (SiO2):

Material of choice in studies of surface chemistry, such as the interaction of organic molecules with inorganic surfaces.

Material of choice in studies of surface chemistry, such as the interaction of organic molecules with inorganic surfaces.

Material of choice in studies of surface chemistry, such as the interaction of organic molecules with inorganic surfaces.

Material of choice in studies of surface chemistry, such as the interaction of organic molecules with inorganic surfaces.

Aluminum (Al):

Aluminum (Al):

Aluminum (Al):

Ideal in studies of corrosion and surface analysis of metals.

Ideal in studies of corrosion and surface analysis of metals.

Ideal in studies of corrosion and surface analysis of metals.

Ideal in studies of corrosion and surface analysis of metals.