JGMaker
| Dual independent extruders, different filaments (PLA, Pet-g, ABS)
| Fused deposition modelling (FDM)
| IMT- Israel Institute of Materials Manufacturing Technologies
| Leonid Chernobylskiy |
|  |
|
Job box and transfer cart
| Printing table with transfer cart (Ex One. M-Flex)
| Bibder Jet 3D printing
| IMT- Israel Institute of Materials Manufacturing Technologies
| Alex Katz |
|  |
|
Jobin Yvon (Fluorolog-3) Fluorometer
| Jobin Yvon (Fluorolog-3) Fluorometer
| Chemical and Surface Analysis
| Chemical and Surface Analysis Lab
| Rachel Edrei |
|  |
|
JPK NanoWizard AFM (Bruker)
| A very-high-resolution imaging, with precise control of probe-to-sample interactions at high speed
| Atomic Force Microscopy
| Technion Center for Structural Biology (TCSB)
| Yael Pazy Benhar |
|  |
|
K850 Critical Point Dryer
| Critical Point Dryer
| Electron microscopy
| Biomedical Core Facility (BCF)
| Lihi Shaulov |
|  |
|
Kelvin Probe (NRH020 KP Technologies)
| The Nitrogen Relative Humidity Chamber is equipped with a non-scanning Kelvin Probe, which is a non-contact, non-destructive vibrating capacitor device used to measure the work function of conducting materials or surface potential of semiconductors. This system is equipped with a high intensity monochromator light source (Horiba Jobin Yvon S.A.S) that enables measuring CPD at different wavelengths.
| Kelvin Probe
| GTEP Hydrogen Technologies Lab
| Karam Yassin |
|  |
|
Lab scale continuous (membrane) reactor system
| iSAF – For high temperature and pressure reactions (up to 500 C, 40 bar) with on line MS
| Reactors
| iSAF - The Israeli Sustainable Aviation Fuel
| Keren-Or Rosner |
|  |
|
Label free proteome analysis from FFPE tissue -HFX/Exploris 480 MS
| Label free proteome analysis-Identification and quantification of proteins from FFPE tissue using DIA or DDA fragmentation
| Mass Spectrometry
| The Smoler Proteomics Center
| Tamar Ziv |
|  |
|
Label free proteome analysis-HFX/Exploris 480 MS
| Label free proteome analysis-Identification and quantification of proteins from whole lysates (cells, tissues, plants, bacteria) using DIA or DDA fragmentation
| Mass Spectrometry
| The Smoler Proteomics Center
| Tamar Ziv |
|  |
|
LaboPress-3 Machine
| Mounting press, sample diameter 25 mm.
| Mounting
| IMT- Israel Institute of Materials Manufacturing Technologies
| Alex Katz |
|  |
|
Large scale Drone scans
| DJI Mavic pro2
| Drone flight
| Architecture recources center - Media Lab
| Haim Zinger | |  |
|
Laser cutter (VLS 4.60, Universal Laser Systems)
| Laser cutting technology enables cutting complex shapes without the need for tooling. During the laser cutting procedure, there is laser beam used to cut different materials like plastic, wood, rubber, etc. The technology also can be used for marking and engraving. The laser cutter is equipped with 60W power laser and a standard 2 inch focusing lens, the average size of a focus point is 0.127mm. High-Power Density-Focusing Optics (HPDFO) lens that gives much smaller focus point (0.025mm) is also available.
| Laser cutter
| GTEP Fuel Cells Lab
| Irena Levin |
|  |
|
Laser Lithography System
| Photolithography exposer and mask preparation (Heidelberg Instruments DWL 66+)
| Photolithography
| MNFU - Micro-Nanoelectronics Fabrication Unit
| Yana Milyutin |
|  |
|
Laser-induced fluorescence
| iSAF – Nd:YAG + dye laser o Wavelength range: 200 – 600 nm. Rep rate: 20 Hz o Pulse duration: 6-10 ns
| Analyzers
| iSAF - The Israeli Sustainable Aviation Fuel
| Keren-Or Rosner |
|  |
|
LC-MS-MS
| | Liquid Chromatography; Mass Spectrometry
| The Center for Research in Environmental Engineering,
Analytical Laboratory for Micro-Pollutants
| Nura Azzam |
|  | |
LCA
| iSAF equipment
| Analyzers
| iSAF - The Israeli Sustainable Aviation Fuel
| Keren-Or Rosner |
|  |
|
LEAP 6000 XR APT
| Mass spectometry, MCP detector
| Atom Probe Tomography
| The Israeli Center of Atom Probe Tomography (ICAPT)
| Inbar Freilich |
|  |
|
Leica ACE Freeze fracture system
| Freeze-fracture-replication and cryo-SEM specimen preparation. Possible platinum and chromium coating.
| Electron microscopy specimen preparation
| Technion Center for Electron Microscopy of Soft Matter
| Olga Kleinerman |
|  |
|
Leica CM1850 Cryostat
| Frozen sectioning
| Cryostat
| Biomedical Core Facility (BCF)
| Katren Sakran |
|  |
|
Leica DMI8 inverted Fluorescent Microscope
| Monochrome and color camera. Inverted. For fluorescence and histology imaging
| Fluorescence Microscope
| Life Sciences and Engineering Infrastructure Center (LSE)
| Nitsan Dahan |
|  |
|
Leica GP2
| Cryo-TEM specimen preparation under controlled conditions
| Cryo-TEM specimen preparation
| Technion Center for Electron Microscopy of Soft Matter
| Zipora Lansky |
|  |
|
Leica ICE high pressure freezing system
| Cryo-SEM specimen vetrification
| Cryo-SEM specimen preparation
| Technion Center for Electron Microscopy of Soft Matter
| Olga Kleinerman |
|  |
|
Leica RM 2135 Microtome
| Paraffin sectioning
| Microtome
| Biomedical Core Facility (BCF)
| Katren Sakran |
|  |
|
Leica UC7 Ultramicrotome
| Thin sections preparation for TEM, surface polishing of SEM samples.
| Electron microscopy specimen preparation
| Technion Center for Electron Microscopy of Soft Matter
| Ellina Kesselman |
|  |
|
Life Canvas Smart SPIM Lightsheet
| Lasers: 405, 488, 561, 642 nm. Objective lenses:x1.8 x3.6, x9 x15,
| Lightsheet microscope for imaging large cleared tissue samples
| Biomedical Core Facility (BCF)
| Maya Holdengreber |
|  |
|
Lightboard recording studio
| | Lightboard
| The Center for Promotion of Learning and Teaching
| Olga Chuntonov | |  |
|
Linn Furnace
| Inductive heating furnace. Max. temp. 1500 °C
| Induction heating
| IMT- Israel Institute of Materials Manufacturing Technologies
| Alex Katz |
|  |
|
Lipidomics Services
| Lipidomics Services
| Lipidomics
| Biomedical Core Facility (BCF)
| Ifat Abramovich |
|  |
|
Lipidomics profiling (Orbitrap Exploris 240)
| Lipid profiling of different lipid families (glycerolipids, phospholipids, sphingolipids, Glycerophospholipids, Sterol Lipids, etc.)
| Mass Spectrometry
| Biomedical Core Facility (BCF)
| Ifat Abramovich |
|  |
|
LSR II
| Lasers: 355, 405, 488, 635 nm. HTS system
| FACS Analyzer
| Life Sciences and Engineering Infrastructure Center (LSE)
| Aviv Lutaty |
|  |
|
LSR SORP, 5 lasers, HTS
| Lasers: 405, 488, 561, 635 nm. HTS system
| FACS Analyzer
| Life Sciences and Engineering Infrastructure Center (LSE)
| Aviv Lutaty |
|  |
|
LSR-Fortessa
| Lasers: 355, 405, 488, 640 nm
| FACS Analyzer
| Biomedical Core Facility (BCF)
| Amir Grau |
|  |
|
LSR-Fortessa with HTS
| Lasers: 355, 405, 488, 561, 640 nm. HTS system
| FACS Analyzer
| Biomedical Core Facility (BCF)
| Amir Grau |
|  |
|
Lunaphore Comet
| 40-plex imaging per slide,multiomics with RNAscope HiPlex
| Spatial Biology
| Biomedical Core Facility (BCF)
| Maya Holdengreber |
|  |
|
Lyophilizer Freeze drying Alpha 1-4
| Extraction of water from frozen material through sublimation for conservation of sensitive components
| Lyophilizer
| Biomedical Core Facility (BCF)
| Amir Grau |
|  |
|
M-FLEX (3D printer)
| Powder bed Binder Jetting 3D printer (Ex One. M-Flex)
| Bibder Jet 3D printing
| IMT- Israel Institute of Materials Manufacturing Technologies
| Alex Katz |
|  |
|
Mahr, M1
| Automatic
| Roughness measurement
| IMT- Israel Institute of Materials Manufacturing Technologies
| Roman Biletskiy |
|  |
|
MALDI
| | Masspectrometry
| Chemical and Surface Analysis Lab
| Larisa Panz |
|  |
|
Mastersizer 3000 Malvern
| Particle size disribution up to 3500 micron
| Particle Size Analyzer
| The Russell Berrie Nanoparticles and Nanometric System Characterization Center
| Sigal Eichler |
|  |
|
Materials Manufacturing Technologies
| The Israel institute of Materials Manufacturing Technologies
| The Israel institute of Materials Manufacturing Technologies
| IMT- Israel Institute of Materials Manufacturing Technologies
| Keren Zohar Hauber |
|  |
|
Media nutrients consumption / secretion absolute quantification (Orbitrap Exploris 240/Q Exactive)
| Media nutrients secretome and consumption profiling; including absolute quantification
| Mass Spectrometry
| Biomedical Core Facility (BCF)
| Ifat Abramovich |
|  |
|
Mehoudar Center for Inventors
| Center for Inventors
| Center for Inventors
| Mehoudar Center for Inventors
| Boaz Drori |
|  |
|
Membrane Test System (MTS) (Scribner)
| The 740 MTS is intended for studying new ionomers and solid electrolyte materials. It offers rapid and accurate measurements of membrane resistance and conductivity as a function of temperature, humidity and pressure without a need of catalyzing a membrane and preparing a membrane-electrode assembly. The size of a membrane sample that is necessary for a measurement is 6X30 mm.
| Membrane Test System
| GTEP Fuel Cells Lab
| Irena Levin |
|  |
|
Metabolomics Services
| Metabolomics Services
| Metabolomics
| Biomedical Core Facility (BCF)
| Ifat Abramovich |
|  |
|
MHC peptidome
| Identification and quantification of MHC peptides
| Mass Spectrometry
| The Smoler Proteomics Center
| Tamar Ziv |
|  |
|
Micro Tester G2
| Micro- scale compression test system
| Micro scale Mechanical test -Microbeam applies deformations while measuring applied forces
| The Russell Berrie Nanoparticles and Nanometric System Characterization Center
| Sigal Eichler |
|  |
|
Micro-Ultracentrifuge RC-M150
| 150,000 rpm, 899,744 x g
| Micro-Ultracentrifuge
| Biomedical Core Facility (BCF)
| Amir Grau |
|  |
|
Microscope system Axioskop 40, ZEIS
| | Confocal Microscope
| Grand Water Research Institute (GWRI)
| Ilana Barzilay |
|  | |
MILabs VECTor7 PET/SPECT/CT/OI
| PET/SPECT/CT/OI system for small animals
| In Vivo Imaging System
| Biomedical Core Facility (BCF)
| Galit Saar |
|  |
|
MinION (Oxford Nanopore)
| Long-read DNA-seq
| Long read sequencing
| Azrieli-Technion Genomics Center
| Liat Linde |
|  |
|
Mitochondrial Stress Test
| Assessing mitochondrial function: basal respiration, ATP-linked respiration, maximal and reserve capacities, and non-mitochondrial respiration.
| Real-Time Cell Metabolic Analysis (XFe96 Seahorse Analyzer)
| Biomedical Core Facility (BCF)
| Ifat Abramovich |
|  |
|
Model refinement using quantum chemical computations
| iSAF equipment
| Computational
| iSAF - The Israeli Sustainable Aviation Fuel
| Keren-Or Rosner |
|  |
|
Molecular Vapor Deposition (AMTS 100E)
| | Film deposition
| MNFU - Micro-Nanoelectronics Fabrication Unit
| Yana Milyutin |
|  |
|
Mosquito Crystal, TTP Labtech
| High throughput nanoliter liquid handling for screening crystallization conditions
| Protein Crystallography
| Technion Center for Structural Biology (TCSB)
| Yael Pazy Benhar |
|  |
|
MST, Monolith, Nanotemper
| Determine binding affinity (Kd) based on mobility changes
| Microscale Thermophoresis
| Technion Center for Structural Biology (TCSB)
| Yael Pazy Benhar |
|  |
|
MTS 656 (Hydraulic )
| 250kN, 25Hz, +\- 75mm
| Tensile machine
| The Materials Mechanics Center
| Ziv keren | |  |
|
Multi Modal Super Resolution Microscope
| LASERS: 405;488;561;640, depletion laser:775; Objective for TIRF 100x and; 63x with NA1.46, two sCMOS camera PECO edge4.2. Full incubation for live imaging
| Super resolution Elyra Lattice SIM, PALM, STEDyCON
| Life Sciences and Engineering Infrastructure Center (LSE)
| Nitsan Dahan |
|  |
|
Multimedia classroom
| Classroom
| Multimedia classroom
| The Center for Promotion of Learning and Teaching
| Olga Chuntonov | |  |
|
N-terminus labeling and identification of a protein
| N-terminus labeling and identification of a protein
| Mass Spectrometry
| The Smoler Proteomics Center
| Tamar Ziv |
|  |
|
Nano DSF, Prometheus, Nanotemper
| Label-free protein stability analysis by monitoring intrinsic fluorescence (tryptophan and tyrosine) changes by temperature gradient, with additional aggregation detection via back reflection technology.
| Differential Scanning Florimetry
| Technion Center for Structural Biology (TCSB)
| Yael Pazy Benhar |
|  |
|
Nano ITC, TA Instruments
| Determine binding affinity by heat changes during molecular binding to (deltaG, Kd, kon, koff)
| Isothermal Titration Calorimeter
| Technion Center for Structural Biology (TCSB)
| Yael Pazy Benhar |
|  |
|
NanoDrop 2000 (Thermo)
| DNA/RNA quantification
| Spectrophotometer
| Azrieli-Technion Genomics Center
| Liat Linde |
|  |
|
Nepa21 Super Electroporator
| Cell transfection
| Cell transfection
| Azrieli-Technion Genomics Center
| Liat Linde |
|  |
|
Nextseq 2000 (Illumina)
| RNA-seq, miRseq, whole genome- equencing (WGS), ChIP-seq, CEL-seq, Amplicon-seq, 16S, RRBS, Exome
| Next-generation sequencing (NGS)
| Azrieli-Technion Genomics Center
| Liat Linde |
|  |
|
Nicolet FTIR Spectrometer
| Diamond ATR
| FTIR
| The Center for Research in Environmental Engineering,
Analytical Laboratory for Micro-Pollutants
| Nura Azzam |
|  | |
Nicolet iS50 FTIR Spectrometer (Thermo Scientific)
| The Nicolet iS50 FTIR is equipped with VeeMAX III specular reflection accessory with ATR (PIKE Technologies), offering continuous variable angle of incidence and a variety of crystal plates to selectively control the depth of penetration of the IR beam into the sample. ATR applications include the study of layered samples, coatings, release agents, monolayers on silicon and chemical migration studies.
| FTIR
| GTEP Hydrogen Technologies Lab
| Karam Yassin |
|  |
|
Nikon Spinning Disk Confocal
| Inverted confocal. CSU-W with Dual sCMOS camera photometrics BSI , Lasers: 405; 488; 561; 640, Objectives 100x silicon (NA 1.35) and 100x oil (NA 1.45). Full incubation for live imaging
| Spinning Disc Confocal Microscope
| Life Sciences and Engineering Infrastructure Center (LSE)
| Nitsan Dahan |
|  |
|
Nikon, LV150
| Up to X1000, brightfield, darkfield, contrast.
| Optical microscope
| IMT- Israel Institute of Materials Manufacturing Technologies
| Keren Zohar Hauber |
|  |
|
NYX Cluster
| | HPC (High Performance Computing)
| NYX Cluster
| David Cohen |
|  | |
Octet R8
| Fluidics-free approach to biomolecule kinetic screening and affinity characterization
| Bio-Layer Interferometry (BLI)
| Biomedical Core Facility (BCF)
| Amir Grau |
|  |
|
Odyssey M
| 488, 520, 685, 785 nm, Epi-illumination and Trans-illumination
| Infrared Imaging scanner
| Biomedical Core Facility (BCF)
| Amir Grau |
|  |
|
Olympus BX51 Light Microscope
| light microscopewith a CCD camera
| Light Microscope
| EMC - The Electron Microscopy Center
| Yaron Kauffmann |
|  |
|
Olympus MVX10M
| Macro zoom microscope. Brightfield and fluorescent specimens
| Macro microscope
| Biomedical Core Facility (BCF)
| Maya Holdengreber |
|  |
|
Olympus SZX16 Fluorescent Binocular
| 2 Objectives: X0.8 and X1.6
| Fluorescence Binocular
| Life Sciences and Engineering Infrastructure Center (LSE)
| Nitsan Dahan |
|  |
|
OPA6 14kW Laser
| High power 14Kw fiber CW laser (Civan). 1064 nm wavelength, dinamic beam shape feature
| Welding, Cutting, Surface Hardening, Energy process simulations,
| IMT- Israel Institute of Materials Manufacturing Technologies
| Aleksey Kovalevsky |
|  |
|
Optical Microscope Nikon
| Optical Microscope
| Optical Microscopy
| IMT- Israel Institute of Materials Manufacturing Technologies
| Alex Katz |
|  |
|
Optris PI-08M
| Compact infrared camera for laser applications. Spectral range 780 – 820 nm. Temperature range 575 °C ... 1900 °C
| Thermal analysis
| IMT- Israel Institute of Materials Manufacturing Technologies
| Aleksey Kovalevsky |
|  |
|
Palmitate Oxidation Stress Test
| Intrinsic rate and capacity of a cell to oxidize palmitate in the absence or limitation of other exogenous substrates.
| Real-Time Cell Metabolic Analysis (XFe96 Seahorse Analyzer)
| Biomedical Core Facility (BCF)
| Ifat Abramovich |
|  |
|
Particle Size and Shape Analyzer Camsizer
| Powder size measurements, range from 0.8 mm to 8 mm.
| Optical system with high resolution
| IMT- Israel Institute of Materials Manufacturing Technologies
| Leonid Chernobylskiy |
|  |
|
PEM and AEM Water Electrolyzers
| Comprehensive testing of membrane and catalyst integration under controlled conditions to evaluate performance metrics such as current density, efficiency, and durability.
Hardware size: up to 5 cm2.
| Water Electrolyzers
| GTEP Hydrogen Technologies Lab
| Karam Yassin |
|  | |
PEM Fuel Cells test stations (850e, Scribner)
| The 850e system is a complete test station for operation and measurement of PEM/DMFC fuel cells. 4 test stations are available in the laboratory. The system can be operated in 5/25/50 A current ranges, maximum load power is 100W. The available cell fixtures are suitable for testing cells with active aresa of 5cm2 and 25 cm2. Three test stations are equipped with a humidifyer bypass for wet/dry testing and with a multygas system for switching between various gases during one test. Two are equiped with automatic back pressure unit.
| PEM Fuel Cells test station
| GTEP Fuel Cells Lab
| Irena Levin |
|  |
|
Pentax EPK-1 Gastroscope and Colonoscope
| Gastroscope and Colonoscope
| Gastroscope and Colonoscope
| Pre Clinical Research Authority
| Dvir Mintz |
|  |
|
Perkin Elmer Tri-Carb 4810 TR
| Gamma, beta and alpha radiation for radioactivity quantification
| Radioactivity Scintillation Counter
| Biomedical Core Facility (BCF)
| Amir Grau |
|  |
|
PFIB - Helios 5 PFIB Cxe
| HRSEM, EDS, TEM lamella preparation (large cross sections), nano-patterning
| Plasman Focused Ion Beam
| EMC - The Electron Microscopy Center
| Galit Atiya |
|  |
|
Phosphoproteome- Exploris 480 MS
| Phosphoproteome-Identification and quantification of enriched phosphopeptides from whole lysates.
| Mass Spectrometry
| The Smoler Proteomics Center
| Tamar Ziv |
|  |
|
Planetary mono mill (PULVERISETTE 6, Fritsch)
| Planetary Mill is used for fine grinding of hard, medium-hard, soft, brittle, tough and moist materials. The maximum rotational speed of the mill in FC lab is 650 rpm. The minimum volume of a grinded sample is 10 ml. Two grinding bowls, 80 ml and 250 ml volume, and grinding balls of 5mm and 10mm diameter, all made of Zirconium Oxide are available.
| Planetary mono mill
| GTEP Fuel Cells Lab
| Irena Levin |
|  |
|
Plasma Asher (Axic HF-8)
| Plasma clean
| Plasma clean
| MNFU - Micro-Nanoelectronics Fabrication Unit
| Yana Milyutin |
|  |
|
Plasma Asher (YES G-1000)
| Plasma clean
| Plasma clean
| MNFU - Micro-Nanoelectronics Fabrication Unit
| Yana Milyutin |
|  |
|
Plasma-Assisted Atomic Layer Deposition
| Ultratech/ Cambridge Nanotech Fiji G2
| Film deposition
| MNFU - Micro-Nanoelectronics Fabrication Unit
| Yana Milyutin |
|  |
|
Plate Heat Exchanger
| Up to 6 lit/min, 100 °C
| Food Technology - Pasteur
| Carasso FoodTech Innovation Center
| Yair Glick |
|  |
|
Polak family distance learning studio
| | Video productions
| The Center for Promotion of Learning and Teaching
| Olga Chuntonov | |  |
|
Polar metabolomics profiling (Orbitrap Exploris 240/Q Exactive)
| Polar metabolites profiling with a in-house library of 550 metabolites - identification and relative quantification in diverse sample types
| Mass Spectrometry
| Biomedical Core Facility (BCF)
| Ifat Abramovich |
|  |
|
Polyamines identification and relative quantification (Orbitrap Exploris 240/Q Exactive)
| Identification and relative quantification of Polyamines and acetylated foem in dicers sample types
| Mass Spectrometry
| Biomedical Core Facility (BCF)
| Ifat Abramovich |
|  |
|
Potentiometric titrator (751 GPD Titrino, Metrohm)
| iSAF – This instrument can determine the concentration of a given analyte, which helps to determine the amount of ion exchange group of membrane samples.
| Analyzers
| iSAF - The Israeli Sustainable Aviation Fuel
| Keren-Or Rosner |
|  |
|
Powder distribution system
| M-Flex 2-power distribution system
| Mechanical distributing
| IMT- Israel Institute of Materials Manufacturing Technologies
| Alex Katz |
|  |
|
Powder Mixer
| Powder mixing machine, 30 kg mixing volume.
| Powders blending
| IMT- Israel Institute of Materials Manufacturing Technologies
| Alex Katz |
|  |
|
Powder recycler
| Powder sieving machine (Ex One. M-Flex)
| Bibder Jet 3D printing
| IMT- Israel Institute of Materials Manufacturing Technologies
| Alex Katz |
|  |
|
PPS AFX3150 Power Source
| AC+DC, up to 800V, 100A, asymetrical waveforms
| | IMT- Israel Institute of Materials Manufacturing Technologies
| Gennady Kozyukin |
|  | |
Preclinical Surgery rooms
| Surgery rooms
| Surgery rooms
| Pre Clinical Research Authority
| Dvir Mintz |
|  |
|
Predictive chemical kinetic model development
| iSAF equipment
| Computational
| iSAF - The Israeli Sustainable Aviation Fuel
| Keren-Or Rosner |
|  |
|