José Manuel Catalá

Anti-Counterfeiting Marker Detection via Microwave Microscopy (Sensors, 2021)

We are happy to share our new research describing a novel application of microwave technology in the fight against counterfeiting, “Detection of Anti-Counterfeiting Markers through Permittivity Maps Using a Micrometer Scale near Field Scanning Microwave Microscope“, released in August 2021 at Sensors.

The work introduces an innovative approach to detecting anti-counterfeiting markers on banknotes using a specially designed near-field scanning microwave microscope (NSMM). This portable instrument can measure permittivity maps of heterogeneous paper specimens at the micrometre scale, employing the information of a displacement laser and the cavity perturbation technique. …

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Mineral Detection by Microwave Microscopy (Sensors, 2022)

Take a look at our new development for the characterization of rocks published in the paper ‘High-Resolution Detection of Rock-Forming Minerals by Permittivity Measurements with a Near-Field Scanning Microwave Microscope,’ available since January 2022 in Sensors.

Our research introduces a portable near-field scanning microwave microscope (NSMM) that allows non-invasive and non-contact measurements of the permittivity maps of rocks, which is probably the most relevant parameter needed to develop more efficient, fast, and eco-friendly microwave-based processes in the rock industry. …

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Bespoke microwave equipment on-demand

To meet the specific needs of your application, ITACA-DIMAS designs and develops bespoke measurement solutions for microwave processes tailored to industrial conditions. These solutions may include specialized microwave reactors, supplementary components for signal treatment and data processing, calibration procedures, and user-friendly control software.

The equipment is designed to be simple, affordable, and robust while retaining essential functionality, making it particularly relevant for research activities focused on investigating microwave processing methods.

Additionally, ITACA-DIMAS offers cost-effective, stand-alone, highly precise dielectric measurement systems and microwave reactors suitable for various types of materials.

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Manufacturing Microwave Components

High frequency microwave components require sophisticated and precise manufacturing technology to ensure high yield performance.

With decades of expertise in CNC precision technology and manufacturing, ITACA-DIMAS is equipped with cutting-edge CNC resources, ensuring high precision across a variety of machining needs. Utilizing the latest in CAD/CAM technology, our design engineering team offers quick turn prototype services to produce early-stage samples for engineering evaluation and product functional validation.

These mechanical design facilities coupled with the high-speed machine tools within the area enable us to produce components with complex geometries achieving precision within 5 microns.

This combination of expertise and technology ensures that our high-frequency microwave components meet the accurate standards required for their applications.

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Portable Waveguide Impedance Measurement System

Microwave parameters such as dielectric properties, power, reflection, impedance, and frequency are essential during the microwave processing of materials. Both off-line and on-line measurements of these parameters can offer unique control capabilities, which might be critical for the successful application of microwave technologies.

There is commercially available equipment capable of performing most of these microwave measurements, such as network analyzers, spectrum analyzers, microwave counters, dielectric properties fixtures. However, most of this equipment is designed for laboratory use and requires specialized operators. Additionally, the cost of commercial network analyzers, while acceptable for telecommunications engineers, is often prohibitive for microwave power industrialists.

Microwave industrial processes require equipment specifically designed for industrial conditions: simple, robust, and affordable, while retaining a useful subset of their regular functionality.

The Portable Low Power Vectorial Waveguide Reflectometer is a compact instrument designed for off-line magnitude and phase measurements of impedance or reflection (S11) in a standard WR340 rectangular waveguide around the IMS frequency of 2.45 GHz. This equipment offers a complete solution for network evaluation, including all necessary components for the generation, separation, control, and analysis of microwave signals, along with the display of results.

Figure 1. Picture of waveguide low power Vector Reflectometer around 2.45 GHz.

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