Hamamatsu r928 pdf
Light absorption of silica nanoparticles I. S. Altman,1,2 D. Lee,1 J. D. Chung,1 J. Song,1 and M. Choi1,* 1National CRI Center for Nano Particle Control, Institute of Advanced Machinery and Design, School of Mechanical and Aerospace Engineering, Seoul National University, Seoul 151-742, Korea 2Physics Department, Odessa National University, Dvoryanskata 2, 65026 Odessa, Ukraine (Jarrell Ash); the UV light was detected with a cooled Hamamatsu R928 photomultiplier tube (PMT). For the nanosecond laser system the SHG signal was obtained by integration of the PMT pulses with a boxcar averager (Stanford Research Model 280), and for … Hamamatsu R928 Photomultiplier Tube (PMT) is attached to the side exit of the spectrometer. In this measurement, the PMT detector is used. It has a spectral response from 120nm to 900nm. 3.3 NIM system . NIM system is the core of the measurement setup. It explores the lifetime of the XEOL according to the TCSPC principle by ... Hamamatsu Corporation: R928: PHOTOMULTlPLlER TUBES: R928: PHOTOMULTIPLIER TUBES: R928: PHOTOMULTIPLIER TUBES: R928: Extended Red, High Sensitivity, Multialkali Photocathode 28 mm (1-1/8 Inch) Diameter, 9-Stage, Side-On Type: Search Partnumber : Start with "R928"-Total : 5 ( 1/1 Page) Hamamatsu Corporation: R9220: PHOTOMULTIPLIER TUBE High QE ... Emitted light was detected with a photomultiplier tube (PMT, Hamamatsu R928). PMT current was amplified and recorded using a transient digitizer (Tektronix DSA 602). Excitation spectra were recorded on a Jobin Yvon Spex Fluorolog-3-11.
(Hamamatsu, model R928). The photomultiplier tube output (terminated into 50 ohm) was connected to a 200 MHz digital oscilloscope (Tektronix, model TDS 350) that was interfaced to a personal computer. During these measurements, a pure gas or gas mixture was used to purge the entire sample chamber for 5 min and 10–20 R928 Information furnished by HAMAMATSU is believed to be reliable. However, no responsibility is assumed for possible inaccuracies or omissions. Specifications are subject to change without notice. No patent rights are granted to any of the circuits described herein. ©2006 Hamamatsu Photonics K.K. (R928, Hamamatsu) was mounted on the secondary spectrometer output in order to verify results from and to calibrate the ICCD camera intensity. Figure S4: Images of electrode probes. a) SEM image of 100 nm tip of tungsten probe used as electrode. b) and c) ~ 4 μm diameter carbon fibers. Figure S5: Images of carbon nanotubes used as probes. The R928 and R955 feature extremely high quantum efficiency, high current amplification, good S/N ratio and wide spectral re-sponse from UV to near infrared. The R928 employs a UV glass envelope and the R955 has a fused silica envelope for UV sen-sitivity extension. The R928 and R955 are well suited for use in broad-band spec- Request HAMAMATSU [Hamamatsu Corporation] R5984: PHOTOMULTIPLIER TUBE online from Elcodis, view and download R5984 pdf datasheet, More ICs specifications. Horiba Scientific) coupled to a Hamamatsu R928 photomultiplier. The wavelengths of irradiation were selected according to the λ max for each compound. The Table 1. Naming of the LHS/Sx-p samples Surfactant (S) UV absorber (x) Method (p) DBS = dodecylbenzene sulfonate DDS = dodecylsulfate b = benzophenone b3 = 2-hydroxy-4-methoxybenzophenone output of which is fed to a Hamamatsu R928 photomultiplier. The ampliﬁed signal is sent to a third SR-810 lock-in ampliﬁer. The monochromator slit width is 1 mm, corresponding to an optical bandwidth of 1 nm. C. Facility and Vacuum-Side Optics Experiments are performed in the Large Vacuum Test Facility
R928 R3896 QUANTUM EFFICIENCY CATHODE RADIANT SENSITIVITY LIGHT PHOTOELECTRON TRAJECTORIES GRID GLASS BULB ANODE PHOTOCATHODE 9th DYNODE 2nd DYNODE 1st DYNODE Information furnished by HAMAMATSU is believed to be reliable. However, no responsibility is assumed for possible inaccuracies or omissions. Specifications are 元器件交易网www.cecb2b.com PHOTOMULTIPLIER TUBES R928, R955 Extended Red, High Sensitivity, Multialkali Photocathode 28 mm (1-1/8 Inch) Diameter, 9-Stage, Side-On Type The R928 and R955 feature extremely high quantum efficiency, high current amplification, good S/N ratio and wide spectral response from UV to near infrared. R928, R928P, R955, R955P Information furnished by HAMAMATSU is believed to be reliable. However, no responsibility is assumed for possible inaccuracies or omissions. Specifications are subject to change without notice. No patent rights are granted to any of the circuits described herein. ©2016 Hamamatsu … 11858 | J. Mater. Chem. C,2015, 3 , 11857--11867 This journal is© The Royal Society of Chemistry 2015 Among the diﬀerent counter-balancing cations that are The fluorescence emission intensity was monitored perpendicular to the excitation direction, with a combination of a long-pass filter (>352 nm) and a short-pass filter (388 nm), and measured with a Hamamatsu R928 photomultiplier tube and a 500-MHz transient digitizer. formed by using a Hamamatsu R928 photomultiplier mounted in a homemade housing and ﬁtted to a PTI 01-001 monochromator exit slit port. Photomultiplier signals were monitored with a 500-MHz and 1GSa/s Hewlett-Packard digital oscilloscope, model 54540A. … Since 1875, Shimadzu is pursuing leading-edge science and technologies in analytical and measuring instruments including chromatographs and mass spectrometers, medical devices, aeronautics, and industrial equipment.
tube (Hamamatsu R928), using excitation at 975 nm from laser diode operating in the pulsed mode. All measurements were carried out at room temperature. 2.3 Diffuse optical imaging using UCNPs Diffuse optical imaging of UCNPs in liquid tissue phan-tom was performed either in a trans-illumination or in a equipped with a standard R928 PMT for measuring conven-tional emission (<900 nm) and a Hamamatsu R5509-42 NIR PMT for measuring near infrared (NIR) emission (<1400 nm). Cyclic voltammetry was carried out in a conventional three-electrode cell with a BAS-27 potentiostat and a Houston Instruments model 100 X-Y recorder according to a previously spectrofluorimeter equipped with a Hamamatsu R928 photomultiplier tube (PMT). Emission spectra were measured in cyclohexane, CH 2 Cl 2, or water, depending on the solubility of the compound. Excitation anisotropy spectra were measured with two Glan-Thomson polarizers in an L-format method in high viscosity solvent (glycerol, Acros) to
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r928, r3896 –‡Ï‡ÌÓ‚ÒÍ‡ˇ ÒÔÂÍÚ ÓÒÍÓÔËˇ 1. ¬˚ÒÓÍ‡ˇ Í‚‡ÌÚÓ‚‡ˇ ˝ÙÙÂÍÚË‚ÌÓÒÚ¸ 2. Ã‡Î˚È ÚÂÏÌÓ‚ÓÈ Ò˜ÂÚ 3. ¬ÓÁÏÓÊÌÓÒÚ¸ ‰ËÒÍ ËÏËÌ‡ˆËË ÔÓ ÓÚ‰ÂÎ¸Ì˚Ï ÙÓÚÓÌ‡Ï r2949 r1463p, r649 r943-02 r7400u-20 (Hamamatsu Photonics, Hamamatsu City, Japan) was used as the light source and an R928 side-o n photomultiplier (Hamamatsu Photonics) was used to detect the in tensity of the scattered light. The 3.3 mM cisplatin solutions were prepared by dilution from 5 mM stock solutions which were prepared on the day before the Paper Metallomics (analog Hamamatsu R6094, ФЭУ-85 (in Russian)). 1 piece photomultiplier tube PMT FEU-85 (analog Hamamatsu R6094). Photomultiplier tube PMT FEU-85. Dark current Anode current μA … photomultiplier tube (PMT,) (Hamamatsu R928), which allows phase and modulation locking of the instrument. Scattered light is collected by a second fibre (~2) identical to F1 and transmitted to the measurement photomultiplier tube (PMT,) (Hamamatsu R928). The gain of the Transparent glass ceramics containing hexagonal NaGdF4: Yb3+, Ho3+ nanocrystals were successfully fabricated via self-crystallization, which was further confirmed by XRD, TEM, HRTEM, and STEM-HADDF, as well as upconversion (UC) emission spectra. Impressively, GC750 exhibited fascinating upconversion luminescence, and the corresponding 5F1/5G6 and 5F2,3/3K8 states of Ho3+ were proven to be ... F980 spectrometer operating software is at the heart of all our fluroescence spectrometers and is a fully comprehensive, user-friendly data analysis software package. Irrespective of system configurations, this software provides the user with complete control. The F980 software is Windows 7, 8 and 10 compatible and is based on a data centred design that enables the user to focus on their ... R928, hamamatsu datasheet, cross reference, circuit and application notes in pdf format. The Datasheet Archive. Search. Recent Listings Manufacturer Directory Get instant insight into any electronic component. Try Findchips PRO for R928, hamamatsu. R928, hamamatsu Datasheets Context Search ... DOI: http://dx.doi.org/10.1590/1980-5373-MR-2015-0448 Materials Research. *e-mail: [email protected] 1. Introduction A dimethyl sulfoxide (DMSO) adduct of uranyl
R928 Hamamatsu photomultiplier, respectively, using a front face ...
tada por un fotomultipHcador Hamamatsu R928. Los datos fueron procesados por un integrador boxear EGG-PA4422 . R Los espectros de emisión enregime n continuo se obtuvieron excitando las muestras con un láser deArgon . La fluorescencia se detectó con un fotomultipHcador Hamamatsu R928 y se ana lizó con un amplificador Lock-i. n 3. 112-1680 with a Hamamatsu R928 photomultiplier tube. Disposable acrylic cuvettes (VWR Scientific, New Plainfield, NJ) with 1-cm path lengths were used for all experiments. Tominimize direct acceptor exci-tation, the FITC-LPS samples wereexcited at 470nm. Steady-state inten-sity measurements of samples being analyzed for fluorescence lifetimes Spherical concave mirrors were used to focus the probe light at the sample and to refocus the light on the entrance slit of a monochromator (Acton, Princeton Instruments, Trenton, NJ, USA). The probe light was detected by a Hamamatsu R928 photomultiplier tube mounted on a five-stage base at the monochromator exit slit. Hamamatsu R928 photomultiplier tube, the signal gen-erated is digitized by a LeCroy 9410 digital oscilloscope and sent to an IBM-compatible PC for storage and processing. ELFFS spectra are obtained coincident with the laser pulse (pulse width‹20 ns). NH ﬂuorescence from the photofragmented ammonium nitrate/sulfate molecules is observed at ... (intensified charge-coupled device) camera, 180-850 nm, (2) Hamamatsu R928 photomultiplier (200-870 nm), and (3) A Si-photodiode detector (200-1100 nm). Training to use the instrument was completed in the Fall 2015. The instrument has been used to support research on transient absorption studies of nitroaromatic compounds. The fluorescence signal, collected by the Plan Apochramat 60×/1.40/0.21/oil objective (Nikon) and selected by the HQ535-50 filter (Chroma, Inc.) was fed to a multimode fiber directed to a photomultiplier (R928, Hamamatsu) in the C1 plus controller. Colocalization was done using SVI software (Scientific Volume Imaging). Subcellular fractionation.
diﬀered by 5% was used to deﬁne the upper bound of the linear range. This, it should be noted, is a conservative estimate, as a curved line (the true shape) connecting the last ELCAD detecting the emission with Hamamatsu R928 and R5509-72 photomultipliers. The data were processed by a Tektronix oscilloscope. 3. Results and discussion 3.1. Absorption and emission properties The room-temperature absorption spectra were recorded in the 300–2500 nm spectral range by using a Cary 5 spectrophotometer. 2500) with a Photomultiplier tube (Hamamatsu R928), which was mounted on a mobile 3-D table. The concentrations of O 3 were measured using an ozone monitor (API Model 450). The surface chemical composition of the ITO glass before and after application of the AP plasma jet was measured using an X-ray photoelectron spectrometer (PHI Quantera photo-multipler of Hamamatsu Photonics 931 A for U, B, G, R and W (white light), or R928 for I color band. Photo-multiplier 931 A is sensitive to wavelength 6500 Å, while R928 sensitive to 9300Å. The color filters are UG-I for U, and RG-695 for 1, both of Schott, No. 94 for B, No. light outside of a 1 nm band centered around 542 nm. This signal is coupled to a Hamamatsu R928 photomultiplier tube to amplify the signal and then fed to three Stanford Research Systems SR810 lock-in amplifiers to measure the collected light intensity at the specified chopping frequencies. The data from the lock-in amplifiers and the wave meter You are viewing a large list of the products we carry. To find a specific product, please use this search box. Search Our Equipment & Spares Database File Information Nan4-14_4125-4129.pdf Hokkaido University Collection of Scholarly and Academic Papers : HUSCAP. Nanoscale Cite this: DOI: 10.1039/c0xx00000x ... 6500 spectrofluorometer equipped with a Hamamatsu Photonics R928 photomultiplier tube detector. Results and discussion -promoted formation of [Au 13(dppp) 4Cl 4]