PMA-11 HAMAMATSU | Alldatasheet

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Photonic Multichannel Spectral Analyzer Model: PMA-11 The PMA-11 is a spectral analyzer that integrates a spectrograph and high performance multi-channel photodetector in a single compact chassis. Light collection is simplified through the use of optical fiber. The diffraction grating of the spectrograph and multi- channel photodetector are rigidly fixed, resulting in excellent wavelength reproducibility. The wavelength axis and spectral response characteristics are cali- brated at the factory, so that spectral measurements can be carried out easily and accurately. The PMA-11 series offers four different multi-channel photo-detectors to choose from, for additional flexibility in grating selection, allowing the user to optimize the performance for the application at hand. Equipped with a standard SCSI interface, the PMA-11 is easily connected to any type of computer for data collection and analysis. G Compact Integration of a Spectrograph and Multi- channel Photodetector G Easy Measurement Using Optical Fiber Input G High Sensitivity

A compact unit containing a multi-channel photo-detector,and power supply all in one. Optical fiber input makes spectral measurements easier than ever.

FEATURES

G Measurements of the spectrum are easier and more accurate than ever before The spectrum can now be easily measured by light collection through an optical fiber. The wavelength axis and spectral response characteristics are calibrated at the factory, so that spectral measurements can be carried out easily and accurately. G Superb cost perfomance model : C5965 The C5965 uses a MOS linear image sensor realises high performance and low cost. G High sensitivity model : C5966 The C5699 uses the CCD leaner image sensor has sensitivity a hundred times better than the C5965 model. G Ultra-high sensitivity model : C7473-36 The C7473-36 consists the thermoelectric-cooling type BT-CCD image sensors, which have a high quantum efficiency and a compact Czerny- Turner type spectrograph. The simultaneous measurement of the wavelength from an ultraviolet to a near-infrared region with high wavelength resolution and high sensitivity is realised. G Near infrared model : C8147-34, C8147-38 The C8147 realises a simultaneous and high-resolution measurement of absorption or reflection spectra in a near infrared wavelength region with a wide dynamic range and a low noise. G High efficiency optics Adoption of a ø1mm bundle fiber and a bright spectrograph detects a measured light efficiently. G Compact design High performance is built in a small case. This completely new design ensures that the PMA-11 will fit anywhere. G External synchronisation can be used Measurements can now be carried out synchronised to external trigger signals, allowing measurement of pulse phenomena. G Standard SCSI interface allows connection to computer

APPLICATIONS

G UV to visible spectroscopy G Fluorescence spectroscopy G Raman scattering G Chemiluminescence analysis G Liquid chromatography Personal computer POWER SIGNAL INPUT C7473HAMAMATSU Basic software Microscope SCSI Main unit Fiber input optics PMA-11 Standard Configuration C5965 (MOS linear image sensor model) C5966 (CCD image sensor model) C7473 (BT- CCD image sensor model) C8147 (InGaAs linear image sensor model) Light source Microscope attachment Main unit Fiber input optics Basic software [Standard Configuration] * SCSI cable not included G Gas chromatography G ICP emission analysis G Discharge emission analysis G Combustion analysis G Micro spectroscopy G Water quality testing G Evaluation of light sources G Chromaticity measurements G Impurities testing G Thin film thickness monitors G UV-ray monitors G Plasma monitors G Fruit tester G Plastic sorting G Color filter testing [ Industrial applications ][ Scientific applications ]

1Luminescence spectrum of a deuterium lamp MEASUREMENT EXAMPLES 3Luminescence spectrum of an LED 5Fluorescence spectrum of fluorosein 2Absorption spectrum of a didymium filter 4Chromaticity coordinates of an LED 63-d display of plasma emission spectra 7Transmittance spectra in near infrared reagion Dotted line: Compact disc Solid line: PET botle 8Transmittance spectra in near infrared reagion Dotted line : Styren monomer Solid line : Polystyren 300 450 600 750 900 Wavelength (nm) Relative Intensity 500 900800700600 Wavelength (nm) Optical Density 0.0 0.5 1.0 1.5 2.0 300 450 600 750 900 Wavelength (nm) 300 450 600 750 900 Wavelength (nm) 900 1050 1200 1350 1500 Wavelength (nm) 1650 900 1050 1200 1350 1500 Wavelength (nm) 1650 Relative IntensityRelative IntensityTransmittance (%) 100Transmittance (%) [ x ] 0.0 0.2 0.4 0.6 0.8 [ y ] Angle of field : 2˚ Chromaticity coordinates Dominant wavelength Excitation purity Tristimulus value X : 58.25 Y : 100.00 Z : 0.96 x : 0.3659 y : 0.6281 : 559.04 nm : 98.97%

Type No. C5965-31 C5966-3x C7473-36 Photodetector MOS linear image sensor CCD linear image sensor Cooling temepareture non-cooling 0 ˚C Read-out noise 10 000 electrons 60 electrons 10 electrons Dark current 12,500 electrons/scan ( at 25˚C ; 20ms ) 512 electrons/scan( at 0˚C ; 20ms ) 75 electrons/scan ( at -15˚C ; 20ms ) C8147-34 InGaAs linear image sensor No. of photosensitive device channels 1024 ch 1024 ch 1024 ch 256 ch Channel size 25 µm(H) × 2.5 mm (V) 24 µm (H) × 3.07 mm(V) 24 µm(H) × 2.928 mm(V) 50 µm(H) × 250 µm (V) 0˚C 12,500 electrons 20,000 electrons/scan ( at 0˚C ; 5ms ) A/D resolution Spectrograph F number Spectrograph type Simultaneous measurement wavelength range Wavelength resolution * 300 nm to 800nm < 3 nm(FWHM) 200 nm to 950 nm < 2 nm(FWHM) 900 nm to 1650 nm < 9 nm(FWHM) x=1 300 nm to 800 nm x=2 200 nm to 400 nm x=3 600 nm to 1000nm x=1 < 3 nm(FWHM) x=2 < 1.5 nm(FWHM) x=3 < 2.5 nm(FWHM) Effective Light-receiving area of optical fiber Interface SCSI Line voltage AC100V to 240V ±10%, 50, 60Hz 1mm Optical fiber length 1.5m Exposure time 5 ms to 32 s20ms to 32s External trigger input TTL level / High impedance 16bit 3 4 Concave spherical grating type Czerny-Turner type -15˚C BT- CCD linear image sensor SPECIFICATIONS DIMENSIONAL OUTLINES (Unit :mm) G C5965. C5966 (approx. 4.5kg) 6±1 40±1 260±13±0.5 98.5±1 170±1 232±1 333±1 POWER SIGNAL INPUT PMA-11PHOTONIC MULTI-CHANNEL ANALYZER G C7473 (approx. 5kg) 6±1 25±1 325±1 3±0.5 98.5±1 200±1 262±1 383±1 POWER SIGNAL INPUT C7473PHOTONIC MULTI-CHANNEL ANALYZER 6±1 25±1 375±1 3±0.5 123.5±1 200±1 262±1 433±1 POWER SIGNAL INPUT PMA-11PHOTONIC MULTI-CHANNEL ANALYZER G C8147 (approx. 7.5kg) 12-0.1 1500 10-0.1 Bundle diameter 1.0 0.2 G Fiber input optics (approx.100g) Cat. No. SSCS1040E07 JUL /2002 HPK Created in Japan (PDF) PVC sheathed SUS flexible tube ( 7) 15 strands G Basic software

  • Spectral measurement Measurement • Reflection spectra measurement functions • Absorption spectra measurement
  • Color measurement Temporal resolution • Temporal fluctuation of spectra over time measurement functions • Temporal fluctuation of reflection factor and transmittance over time Data acquisition • Exposure time condition setting • Memory integration count times
  • Temporal fluctuation measurement Calibration and • Wavelength axis correction • Sensitivity uniformity
  • Dark current Display functions
  • Spectrum (non-limited accumulation)
  • Temporal fluctuation of waveform over time (non-limited accumulation)
  • Chromaticity diagram Wavelength axis display• Wavelength (nm) ,Wavenumber (cm -1 ), Energy (eV) Brightness axis display• Linear, logarithm
  • Wavelength (Wavenumber etc.) vs, intensity Cursor analysis • Peak detection functions • FWHM between two cursors
  • Integrated intensity Other analytical • Smoothing functions • Differential waveform
  • Color measurement G Main unit Homepage Address http://www.hamamatsu.com # Product and software package names noted in this documentation are trademarks or registered trademarks of their respective manufacturers. G Subject to local technical requirements and regulations, availability of products included in this promotional material may vary. Please consult with our sales office.. G Information furnished by HAMAMATSU is believed to be reliable. However, no responsibility is assumed for possible inaccuracies or omissions. Specifications and external appearance are subject to change without notice.. © 2001Hamamatsu Photonics K.K. ISO 9001 Certificate: 09 105 79045 HAMAMATSU PHOTONICS K.K., Systems Division 812 Joko-cho, Hamamatsu City, 431-3196, Japan, Telephone: (81)53-431-0124, Fax: (81)53-435-1574, E-mail:export@sys.hpk.co.jp Germany: Hamamatsu Photonics Deutschland GmbH: Arzbergerstr. 10, D-82211 Herrsching am Ammersee, Germany, Telephone: (49)8152-375-0, Fax: (49)8152-2658, E-mail: info@hamamatsu.de, United Kingdom:Hamamatsu Photonics UK Limited: 2 Howard Court, 10 Tewin Road, Welwyn Garden City, Hertfordshire, AL7 1BW, U.K., Telephone: (44) 1707-294888, Fax: (44) 1707-325777, E-mail: info@hamamatsu.co.uk North Europe: Hamamatsu Photonics Norden AB: Smidesvägen 12, SE-171-41 Solna, Sweden, Telephone: (46)8-509-031-00, Fax: (46)8-509-031-01, E-mail: info@hamamatsu.se - Italy: Hamamatsu Photonics Italia S.R.L.: Strada della Mois, 1/E 20020 Arese (Milano), Italy, Telephone: (39)02-935 81 733, Fax: (39)02-935 81 741, E-mail: info@hamamatsu.it C8147-38 -10˚C 2.5 × 107 electrons/scan ( at -10˚C ; 5ms ) 1600 nm to 2350 nm < 9 nm(FWHM) 5 ms to 50 ms (typ.)