Technologies and applications available in Technion researcher labs.
| Equipment | Service | Features | Technology | PI & Faculty | Contact Person | Phone | Link | |
|---|---|---|---|---|---|---|---|
High capacity book scanner and digitization software | Offering high-resolution scanning and digitization of printed materials, including OCR in any language, and packaging as a searchable PDF document | I2S Escan Open System A3 | Or Aleksandrowicz | Architecture and Town Planning | Or Aleksandrowicz | |||
Particle size distribution and counting | Only for aqueous solutions. Has advantage over other methods for low number of particles. | AccuSizer FXnano - Counts and finds size distribution of particles in aqueous solutions. Size from 0.2 to 200 microns | Eran Friedler | Civil and Environmental Engineering | Yael Gilboa | |||
Ultra high-speed electronic signals test and measurement laboratory | Probe station mounted on an optical table | State-of-the-art equipment for transceivers characterization up to 224Gb/s, exceeding 70GHz | Ariel Cohen, Electrical and Computer Engineering Faculty | Electrical and Computer Engineering | Ariel Cohen | |||
Meta Quest 3 | Qualcomm Snapdragon XR2 Gen 2 chipset, high-resolution pancake lenses (2064 × 2208 per eye), full-color passthrough for AR, 6DoF inside-out tracking, hand tracking support, wireless standalone operation, PC VR tethering, lightweight ergonomic design. | Standalone mixed reality (MR) headset with VR/AR passthrough. | Davide Schaumann | Architecture and Town Planning | Michal Cohen | |||
Eye Tracking Room | Reception and experiment room for eye tracking experiments. Acoustic shielding. State-of-the-art EyeLink 1000 Plus Tower Mount eyetracker. | EyeLink 1000 Plus | Yevgeni Berzak | Faculty of Data and Decision Sciences | Yevgeni Berzak | |||
Topographic measurements of deep grooves and surface properties estimation, using a tapping sensor in resonance | Renanating sensors for distributed sensing | Vibrating nanofiber sensing and surface reconstruction. Tapping sensor adaptive control and sensing | Bucher Izhak | Mechanical Engineering | Izhak Bucher | |||
Data Storage in DNA | sequencing of synthesized DNA | Designing codes and algorithms for DNA-based storage systems | Eitan Yaakobi | Computer Science | Omer Sabary | |||
Ellipsometer | Simple and fast measurement without chemicals | Measuring thickness of thin layers | Razi Epsztein | Civil and Environmental Engineering | Razi Epsztein | |||
Cascade Summit 12000 Probe Station | Sophisticated and high-performance wafer probing platform for semiconductor testing and device characterization | Wafer Probing | Shahar Kvatinsky | Electrical and Computer Engineering | Ilan Lipschutz | |||
Lumisizer - Colloid stability and sizing | Space and time resolved extinction profiling of samples under controlled centrifugation | Analytical centifugation | Uri Lesmes | Biotechnology and Food engineering | Carmit Shani Levi | |||
N80 Neoscan Micro-CT Scanner | Spatial resolution 800nm; X-ray source | 3D reconstruction of internal microstructure of the objects | Boaz Pokroy | Materials Engineering | Iryna Polishchuk | |||
Acoustic Chamber (IAC Acoustics) | Supports the collection of high quality data with EEG and/or eye tracking. Shielding for acoustic and electrical noise. Monitor, speakers, microphone, connector board for additional equipment. | EEG (Biosemi), Eyetracker (EyeLink Potable Duo) | Yevgeni Berzak | Faculty of Data and Decision Sciences | Yevgeni Berzak | |||
The XRF (Malvern Panalytical) system consists of an X-ray tube, detector, sample holder, and dedicated analysis software. | The instrument is equipped with advanced calibration and data-processing capabilities to ensure reliable analytical performance. Additional accessories include sample preparation tools and safety shielding systems that comply with laboratory safety standards. The XRF (X-ray Fluorescence) analyzer enables rapid and non-destructive elemental analysis of a wide range of materials. The system provides high accuracy and repeatability, requires minimal sample preparation, and allows both qualitative and quantitative analysis. It is suitable for analyzing powders and solids materials. Powder samples can be analyzed either as pressed pellets prepared using a hydraulic press or as fused glass beads, enabling accurate and reliable elemental characterization for different research and industrial applications. | The XRF technology is based on the interaction between X-rays and matter. When the sample is exposed to primary X-rays, atoms within the material emit secondary fluorescent X-rays at characteristic energies unique to each element. The detector measures these energies and intensities, allowing identification and quantification of the elemental composition of the sample. This technology provides fast, precise, and non-destructive chemical analysis for a broad range of applications. | Semion Zhutovsky | Faculty of Civil and Environmental Engineering | Smadar Kedem | |||
Malvern Mastersizer 3000 | The measurement can be performed in air or a liquid | Laser Diffraction Particle Size Analyzer | Semion Zhutovsky | Civil and Environmental Engineering | Semion Zhutovsky, Smadar Kedem | |||
Glacios, Thermo Fisher | The microscope is in GTIIT | Cryo-Electron Microscope and related equipment: we provide support to all the application including (1) Morphological analysis of all nanostructures in solution at cryogenic temperature; (2) Cryo-electron tomography (Cryo-ET); (3) High-resolution structural analysis including SPA and helical reconstruction. | Dganit Danino | Biotechnology and Food Engineering | Inbal Ionita | |||
Urban shade maps generation (service) | The resulting maps are provided as vector shapefiles showing the Shade Index and Tree Canopy Cover ratio values for each street segment and open public space | Original technology for high-resolution outdoor shade mapping of cities based on raw geographic data | Or Aleksandrowicz | Architecture and Town Planning | Or Aleksandrowicz | |||
Research and Concept Design of new concepts of marine floating vessels and structures | Theoretical expertise and 40 years Practical Design experience of unique and innovative marine structures | Mathematical Modeling and Design | Nitai Drimer | Mechanical Engineering | Nitai Drimer | |||
Netzsch STA 449 F5 Jupiter | Thermal gravimetry analysis and differential scanning calorimetry can be performed simultaneously in an inert or oxidizing atmosphere | Thermal gravimetry analysis | Semion Zhutovsky | Civil and Environmental Engineering | Semion Zhutovsky, Smadar Kedem | |||
Non-destructive testing of parts using nonlinear vibration analysis and ultrasonic wave beams | Wave beaming for focused sensing | Nonlinear vibration backbone-based charaterization of defects. Model-based ultrasonic beaming | Bucher Izhak | Mechanical Engineering | Izhak Bucher | |||
X-Ray diffraction | X-Ray Diffraction of powders is performed using Panalytical Empyrean Diffractometer. The analysis is performed using HighScore Plus software. | Qualitative and quantitative analysis results for a mineral sample | Semion Zhutovsky | Civil and Environmental Engineering | Semion Zhutovsky, Smadar Kedem | |||
Bruker D6 Phaser Diffractometer | XRD for crystal structure analysis. | X-ray Diffraction, Pair Distribution Function | Arad Lang | Materials Science and Engineering | Arad Lang | |||
| Equipment | Service | Features | Technology | PI & Faculty | Contact Person | Phone | Link |