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hamamatsu photonics kk (6965) Details

Hamamatsu Photonics K.K. manufactures and sells photomultiplier tubes, imaging devices, light sources, opto-semiconductors, and imaging and analyzing systems in Japan and internationally. The company operates through three segments: Electron Tube, Opto-Semiconductor, and Imaging and Measurement Instruments. The Electron Tube segment provides photomultiplier tubes, electron multipliers, microchannel plates, image intensifiers, X-ray products, and various light sources for use in medical, chemical analysis, measurement, industrial testing, and academic research applications. The Opto-Semiconductor segment offers silicon photodiodes, photo IC components, position sensitive and infrared detectors, image sensors for low-light-level imaging and X-ray imaging, mini-spectrometers, and light emitting devices for applications in medical imaging, high-energy physics, and scientific measurement. The Imaging and Measurement Instruments segment provides a range of cameras for scientific and industrial applications, as well as specialized instruments for use in the fields of pharmaceutical development, semiconductor manufacturing, X-ray nondestructive inspection, spectrophotometry, and optical communications. Hamamatsu Photonics K.K. is also involved in the semiconductor laser and hotel operation businesses. The company was formerly known as Hamamatsu TV Co., Ltd. Hamamatsu Photonics K.K. was founded in 1948 and is headquartered in Hamamatsu, Japan.

4,878 Employees
Last Reported Date: 12/20/18
Founded in 1948

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hamamatsu photonics kk
Hamamatsu Photonics K.K. Develops Novel 3D Fluorescence Scanning Method Called Zyncscan

Hamamatsu Photonics K.K. has developed a novel 3D fluorescence scanning method called “Zyncscan” that performs x-z plane scans using a light-sheet for cell-based fluorescence assays in microplates. This technology provides an x-z plane scan using a light-sheet for a whole 96/384/1536-well microplate, allowing users to obtain 3D fluorescence images of whole wells in xy: 2-3 µm and z: 6-7 µm voxel resolution for = 300 µm thickness from the well bottom within a few minutes per color. This technology also allows for ultra-high level separation of cell fluorescence signals from the background, which makes it possible to obtain fluorescence cell images in the cell culture mediums containing serum and with fluorescent dyes (i.e., no need to wash out fluorescent dyes). In drug discovery and development, there is a rapidly growing need to use more physiologically-relevant in vitro cell culture models. These include primary cells, patient-derived cells, human iPSC-derived disease-modeling cells, co-cultures of different types of cells, and 3D cultures such as spheroids and organoids. To develop and advance phenotypic assays and screenings using these physiologically-relevant cellular models, new types of instruments needed to be developed to facilitate high-throughput fluorescence imaging and measurement of heterogeneous 2D and 3D cell cultures. To meet this need, the company have developed Zyncscan technology that performs an x-z plane scan utilizing a light-sheet for a microplate. Features of the cell-based fluorescence assays in microplate using Zyncscan technology: High-speed fluorescence cytometry for 2D monolayer heterogeneous cell culture. A single 120-second scan (one color) for a whole 96/384/1536-well microplate enables fluorescence cytometry of all individual cells in all wells. Single spheroid analyses using depth information (diameter of spheroid; = 200 µm). A single scan (in just a few minutes) for a microplate enables fluorescence images of spheroids (single or multiple spheroids in a well) in all wells in a 96/384/1536-well microplate. From the images, the entire fluorescence intensity, thickness and volume of each individual spheroid are estimated. Fluorescence images in 3D view (= 300 µm) With a single scan (a few minutes) obtain 3D fluorescence images (300 µm from the bottom of a well) of all wells in a plate. The optical resolution of the image is comparable with the 2x objective of a conventional fluorescence microscope in the x- and y-axes and a 10x objective of confocal fluorescence microscope in the z-axis. In-medium /No dye washout measurement. Measure cellular fluorescence in the medium containing serum and with fluorescent dyes (no need to wash out fluorescent dyes), allowing cells to remain healthy throughout the experiment.

Hamamatsu Photonics K.K. to Report Q2, 2019 Results on May 13, 2019

Hamamatsu Photonics K.K. announced that they will report Q2, 2019 results on May 13, 2019

Hamamatsu Photonics K.K. Reports Consolidated Earnings Results for the First Quarter Ended December 31, 2018; Provides Consolidated Earnings and Dividend Guidance for the Six Months Ending March 31, 2019 and Year Ending September 30, 2019

Hamamatsu Photonics K.K. reported consolidated earnings results for the first quarter ended December 31, 2018. For the quarter, the company reported net sales of JPY 35,700 million compared to JPY 34,282 million a year ago. Operating profit was JPY 6,017 million compared to JPY 6,129 million a year ago. Profit was JPY 4,887 million compared to JPY 4,661 million a year ago. Earnings per share was JPY 31.47 compared to JPY 29.58 a year ago. For the six months ending March 31, 2019, on consolidated basis, the company expects net sales of JPY 74,900 million, operating profit of JPY 13,400 million, profit attributable to owners of parent of JPY 10,300 million and earnings per share of JPY 66.54. For the fiscal year ending September 30, 2019, on consolidated basis, the company expects net sales of JPY 150,400 million, operating profit of JPY 27,500 million, profit attributable to owners of parent of JPY 21,200 million and earnings per share of JPY 136.95. For the six months ending March 31, 2019, the company expects dividend of JPY 20.00 per share against JPY 17.00 per share paid a year ago. For the fiscal year ending September 30, 2019, the company expects dividend of JPY 20.00 per share against JPY 20.00 per share paid a year ago.


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