FT series. Spectral response range 790 to 920 nm Spectral resolution Typ. 0.4 nm

Similar documents
Mini-spectrometer. TF series. Compact and thin, built-in high-sensitivity CMOS image sensor for Raman spectroscopy C14214MA. Applications.

TM series. Trigger function included

TM series TM-UV/VIS-MOS

Mini-spectrometer. TG series. Enhanced near infrared sensitivity type. C9405CB. High sensitivity in near infrared region

Mini-spectrometers. TG series. High sensitivity type (integrated with backthinned type CCD image sensor) Optical characteristics

Mini-spectrometer. TM series. Trigger function and a high sensitivity CMOS image sensor included. C11697MB. Optical characteristics

mini-spectrometer TG series Long-wavelength type (to 2.55 μm) nearinfrared C11118GA Optical characteristics (Ta=25 C)

Mini-spectrometer. TG series. Enhanced near infrared sensitivity type. C9405CB. High sensitivity in near infrared region

Mini-spectrometers. TM series. High sensitivity type (integrated with backthinned type CCD image sensor) C10082CA/C10083CA series

Mini-spectrometer. TG series. For near IR, integrating optical system, image sensor and circuit. C9406GC, C9913GC, C9914GB

TF series. Spectral response range 340 to 830 nm Spectral resolution Typ. 2.3 nm

Photon counting module

Driver circuit for CCD linear image sensor

Driver circuit for CMOS linear image sensor

Driver circuit for InGaAs linear image sensor

Mini-spectrometers. RC series. Compact and low cost C11009MA, C11010MA: for installation into measurement equipment.

Driver circuits for CCD image sensor

Driver circuit for MPPC

Driver circuit for CCD linear image sensor

Mini-spectrometers. RC series. Compact and low cost C11009MA, C11010MA: for installation into measurement equipment.

Optics modules. Absorbance measurement module with built-in photodiode array, optical elements, current-tovoltage. C13398 series.

MPPC modules. MPPC array modules for very-low-level light detection, 16 ch analog output. C13368/C13369 series (Analog output type)

MS series. Parameter Min. Typ. Max. Unit Driving voltage V Power consumption mw Video rate khz

InGaAs multichannel detector head

Micro-spectrometer C12666MA. Finger-tip size, ultra-compact spectrometer head integrating MEMS and image sensor technologies.

APD modules. Operates an APD with single 5 V supply (standard type, short-wavelength type) C12702 series.

Peak emission wavelength: 4.3 μm

Application OCT. Dimensions (mm) Weight (g) Operating temperature* 1 Storage temperature* 1 λ=1.55 μm (V) (mw)

Signal processing circuit for 1-D PSD

Driver circuit for CCD linear image sensor

Mini-spectrometer. SMD series C14384MA-01. High sensitivity in the near infrared region (to 1050 nm), ultra-compact grating type spectrometer

Peak sensitivity wavelength λp (nm) Photosensitive area (mm)

APD modules. APD module integrated with peripheral circuits. C12703 series. Selection guide. Block diagram

Power supply for MPPC

Driver circuit for InGaAs linear image sensor

Photosensitive area (mm) 4 4. Peak sensitivity wavelength (nm) Supply voltage Dark state. Max. Vcc max. Tstg Min. Max. (ma) (V)

Peak emission wavelength: 3.9 μm

Signal processing circuit for 2-D PSD

Micro-spectrometer C12666MA. Finger-tip size, ultra-compact spectrometer head integrating MEMS and image sensor technologies.

Effective photosensitive area (mm) Photosensitive area size

Parameter Specification Unit Photosensitive area mm Package Glass epoxy - Seal material Silicone resin -

Mini-spectrometers. MS series. Ultra-compact mini-spectrometer integrating MEMS and image sensor technologies.

MPPC (multi-pixel photon counter)

These Si photodiodes have sensitivity in the UV to near IR range. They are suitable for low-light-level detection in analysis and the like.

LCOS-SLM (Liquid Crystal on Silicon - Spatial Light Modulator)

Driver circuit for CCD image sensor

Suppressed IR sensitivity

Short wavelength type APD. Effective photosensitive area (mm) Effective photosensitive area size* 2

M=100, RL=50 Ω λ=800 nm, -3 db

Effective photosensitive* 2 area size. Storage temperature Tstg (mm) ( C) ( C) S φ0.2 φ0.5 S φ to to +100 S9075

Driver circuit for CMOS linear image sensor

Effective photosensitive area. Photosensitive area size

Infrared detector modules with preamp

Si photodiode. Applicable to lead-free solder reflow and wide temperature range. S9674. Absolute maximum ratings

Reverse voltage VR max. Electrical and optical characteristics (Typ. Ta=25 C, unless otherwise noted) Short. Temp. S coefficient (A/W) of

Power supply for MPPC

Photosensitive area size (mm) Reverse voltage VR max (V) R to +60

Signal processing circuit for 1-D PSD

Low bias operation, for 800 nm band

Si PIN photodiodes. High-speed detectors with plastic package. Structure. Absolute maximum ratings

Si PIN photodiodes. High-speed detectors with plastic package. Structure. Absolute maximum ratings

Parameter Specification Unit Photosensitive area mm Package Glass epoxy - Seal material Epoxy resin -

RGB color sensor. Effective photosensitive area. Green, Red: 2.25 Blue : 4.5

PbSe photoconductive detectors

Applications. Photosensitive area size. Storage temperature Tstg (mm) (mm 2 ) (V) ( C) ( C) S

APD module. Variable gain, stable detection even at high gain. C Applications. Features. Sensitivity vs.

InAsSb photovoltaic detector

Signal processing circuit for 2-D PSD

NMOS linear image sensor

MCT photoconductive detectors

Parameter Symbol Specification Unit Photosensitive area - ɸ0.8 mm Package mm

Photo IC diode. Plastic package shaped the same as metal package. S SB. Absolute maximum ratings (Ta=25 C)

Driver circuits for photodiode array with amplifier

1-D PSD with small plastic package

Photo IC diode. Wide operating temperature: -40 to +105 C. S MT. Absolute maximum ratings (Ta=25 C)

MCT photoconductive detectors

Between elements measure. Photosensitive area (per 1 element)

MPPC modules. Photon counting module with built-in MPPC. C series C10751 series. Selection guide

High-speed photodiodes (S5973 series: 1 GHz)

Photodiode modules. C10439 series. Integrates photodiode for precision photometry with low-noise amp.

Accessories for infrared detector

16-element Si photodiode arrays

Non-discrete position sensors utilizing photodiode surface resistance

InAsSb photovoltaic detectors

Effective photosensitive area (mm)

MPPC (Multi-Pixel Photon Counter)

InAsSb photovoltaic detector

Photosensor with front-end IC

Variable gain and stable detection even at high gains

InGaAs PIN photodiode arrays

16-element Si photodiode arrays

Photo IC diode. Plastic package shaped the same as metal package. S SB. Features. Applications

S P. Ultra-miniature, high performance Electromagnetically driven laser scanning MEMS mirror. Features.

Artisan Technology Group is your source for quality new and certified-used/pre-owned equipment

Photo IC diode. COB (chip on board) type, small package. S CT. Absolute maximum ratings

16-element Si photodiode arrays

CMOS linear image sensors

InAsSb photovoltaic detectors

MPPC (Multi-Pixel Photon Counter) arrays

16-element Si photodiode arrays

Transcription:

FT series C1354MA Compact and thin, built-in high-sensitivity CMOS for Raman spectroscopy The mini-spectrometer FT (flat type) series is a polychromator provided in a compact, thin case that houses optical elements,, and driver circuit. Spectrum data can be acquired by guiding measurement light into a mini-spectrometer through an optical fiber and transferring the measured results to a PC via the USB connection. The incorporation of a highsensitivity CMOS maintains high sensitivity equivalent to that of a CCD and achieves low power consumption. Moreover, the trigger function that can be used for short-term integration enables spectroscopic measurement of pulse emissions. The product includes evaluation software with functions for setting measurement conditions, acquiring and saving data, drawing graphs, and so on. Furthermore, the DLL function specifications are disclosed, so users can create their original measurement software programs. Features Applications Compact, thin case Raman spectroscopy Highly accurate optical characteristics: High spectral resolution.4 nm High-sensitivity CMOS built in (high sensitivity equivalent to that of a CCD) With trigger function High throughput using quartz transmission grating External power supply not necessary (USB bus powered) Easy installation in devices Stores wavelength conversion factor* 1 in internal memory *1: A conversion factor for converting the pixel number into a wavelength. A calculation factor for converting the A/D converted count into the input light level is not provided. Optical characteristics Parameter Specification Unit Spectral response range 79 to 92 nm Spectral resolution Typ..4 (FWHM)* 2 Max..7 nm Wavelength reproducibility* 3 -.2 to +.2 nm Wavelength temperature dependence -.2 to +.2 nm/ C Spectral stray light* 2 * 4-33 max. db *2: When the slit in the table in Structure is used. The spectral resolution depends on the slit. *3: Measured under constant light input conditions *4: The ratio of the count measured when an 6 nm light is input to the count measured when an 6 ± 1 nm light is input Electrical characteristics Parameter Specification Unit A/D conversion 16 bit Integration time 11 to 1 μs Interface USB 2. - USB bus power current Typ. 22 consumption Max. 25 ma www.hamamatsu.com 1

FT series C1354MA Structure Parameter Specification Unit Dimensions (W D H) 6 12 mm Weight g Image sensor High-sensitivity - Number of pixels 512 pixels Slit* 5 (H V) 1 4 μm NA* 6.11 - Connector for optical fiber SMA95 - *5: Input slit aperture size *6: Numeric aperture (solid angle) Absolute maximum ratings Parameter Value Unit Operating temperature* 7 +5 to +5 C Storage temperature* 7-2 to +7 C *7: No dew condensation When there is a temperature difference between a product and the surrounding area in high humidity environment, dew condensation may occur on the product surface. Dew condensation on the product may cause deterioration in characteristics and reliability. Note: Exceeding the absolute maximum ratings even momentarily may cause a drop in product quality. Always be sure to use the product within the absolute maximum ratings. Spectral response (typical example) (Ta=25 C) 1 9 Spectral resolution vs. wavelength (typical example) (Ta=25 C).6.5 Relative sensitivity (%) 7 6 5 4 3 Spectral resolution (nm).4.3.2 2 1.1 75 5 9 95 75 5 9 95 Wavelength (nm) Wavelength (nm) KACCB37EB KACCB379EB 2

FT series C1354MA Linearity (typical example) Dark output vs. temperature (typical example) A/D output 1 1 1 1-1 1 Typical example of A/D output -15 Ideal A/D output 1 Difference between ideal value and typical example -2.1 1 1 1 2 15 1 5-5 Difference between ideal value and typical example (%) A/D output (averaged over all pixels) (Integration time=1 ms) 6 5 4 3 2 1 1 2 3 4 5 Integration time (ms) Ambient temperature ( C) KACCB3EA KACCB37EA A/D output is the output with dark output is subtracted when light is input. The difference between the ideal value and typical example contains a measurement error. The smaller the A/D output, the larger the measurement error. A/D output is the sum of the sensor and circuit offset outputs and the sensor dark output. Optical component layout The mini-spectrometer FT series employs a transmission holographic grating made of quartz and an optical system arranged on a robust optical base to produce high throughput and highly accurate optical characteristics. Focus lens Transmission grating Collimating lens Image sensor Input slit KACCC256EA 3

FT series C1354MA Connection example (transmitted light measurement) Spectrum data can be acquired by guiding measurement light into a mini-spectrometer through an optical fiber and transferring the measured results to a PC via the USB connection. Since there are no moving parts inside the device, constantly stable measurements can be expected. Moreover, the optical guiding section uses an optical fiber making connection to the measured object flexible. PC UV-visible fiber light source (deuterium lamp + halogen lamp) L129 USB cable Fiber Quartz cell (for holding liquid sample) KACCC79EA Trigger operation modes In the C1354MA, the following trigger operation modes are available. You can switch between these modes from the evaluation software supplied with the C1354MA. (1) Asynchronous data measurement at software trigger input (2) Synchronous data measurement at software trigger input The first piece of digital data that is converted after a software trigger is applied from the PC is acquired. Sensor operation (integration) starts when a software trigger is applied from the PC. Software trigger Software trigger Software trigger Software trigger KACCC53EC KACCC55EB 4

FT series C1354MA (3) Asynchronous data measurement at external trigger input (4) Synchronous data measurement at external trigger input The first piece of digital data that is converted after an external trigger edge (rising or falling edge can be specified) is applied to the external trigger terminal is acquired. (for falling edge) Sensor operation (integration) starts when an external trigger edge (rising or falling edge can be specified) is applied to the external trigger terminal, and then the digital data is acquired. (for falling edge) KACCC56EA KACCC569EA (5) Asynchronous data measurement at external trigger input level (6) Synchronous data measurement at external trigger input level is acquired when an external trigger (high level or low level can be specified) is applied to the external trigger terminal. (for high level) KACCC54EB Sensor operation (integration) starts when a trigger (high level or low level can be specified) is applied to the external trigger terminal, and then the digital data is acquired. (for low level) KACCC56EB In any of the modes (1) to (6), if the trigger input cycle is shorter than the measurement cycle of the spectrometer, the input trigger is ignored. (7) External trigger signal output The start timing (pulse width: 1 μs) of integration can be output from the external trigger terminal (trigger output edge: rising or falling edge can be specified). (for rising edge) KACCC57EC 5

FT series C1354MA Evaluation software (accessory) By installing the evaluation software (SpecEvaluationUSB2.exe)* into a PC, you can perform the following basic operations. Acquire and save measured data Set measurement conditions Module information acquisition (wavelength conversion factor, mini-spectrometer type, etc.) Display graphs Arithmetic functions Pixel number to wavelength conversion Calculation in comparison with reference data (transmittance, reflectance) Dark subtraction Gaussian approximation (peak position and count, FWHM) Note: Up to eight mini-spectrometers can be connected to a single PC and used. *: Compatible OS Microsoft Windows 7 Professional SP1 (32-bit, 64-bit) Microsoft Windows Professional (32-bit, 64-bit) A DLL for controlling the hardware is available. Users can develop original measurement programs using the following development platform. Microsoft Visual Studio 2 (SP1) Visual C++ Microsoft Visual Studio 2 (SP1) Visual Basic Note: Microsoft, Windows, Visual Studio, Visual C++, and Visual Basic are either registered trademarks or trademarks of Microsoft Corporation in the United States and/or other countries. Dimensional outline (unit: mm). Trigger connector 75. (4 ) M3 tap depth 6 6. 55. Micro USB 17. 12..5 SMA connector Tolerance unless otherwise noted: ±.5 Weight: g KACCA364EA 6

FT series C1354MA Accessories USB cable Dedicated software (evaluation software, sample software, DLL) Options (sold separately) Input optical fiber Type no. Product name Core diameter (μm) A9762-1 6 Fiber for visible/near infrared range A9763-5 4 Specification NA=.22, length=1.5 m, low cost With SMA95D connector on each end NA=.22, length=1.5 m, small bending radius at fiber section With SMA95D connector on each end External trigger input coaxial cable A12763 Dimensional outline (unit: mm) 15 +5 BNC-J-17/U 1.5C-QEW MMCX-P-17B/U (4) KACCA35EA 7

FT series C1354MA lineup Type no. C12CA C12CAH C12MD C13CA C13CAH C13MD C11697MB C944CA C944CAH C945CB C11713CA C11714CB C1142GA C9913GC C9914GB C1111GA TM series TG series TG series Type TM-UV/VIS-CCD High sensitivity TM-UV/VIS-CCD TM-UV/VIS-MOS Wide dynamic range TM-VIS/NIR-CCD High sensitivity TM-VIS/NIR-CCD TM-VIS/NIR-MOS Wide dynamic range TM-VIS/NIR-MOS-II Trigger-compatible TG-UV-CCD High sensitivity TG-UV-CCD TG-SWNIR-CCD-II TG-RAMAN-I TG-RAMAN-II TG2-NIR Non-cooled type TG-cooled NIR-I Low noise (cooled type) TG-cooled NIR-II Low noise (cooled type) TG-cooled NIR-III Low noise (cooled type) Spectral response range (nm) 2 4 6 1 12 14 16 1 2 22 24 26 2 to 4 2 to 32 to 1 5 to 11 5 to 6 79 to 92 9 to 17 11 to 22 9 to 255 Spectral resolution max. (nm) 6 1* 6 (λ=32 to 9 nm) 1* (λ=32 to 9 nm) 3 1* 5 (λ=55 to 9 nm).3*.3* 7 7 2 Image sensor Back-thinned CCD Back-thinned CCD High-sensitivity CMOS linear Back-thinned CCD back-thinned CCD Back-thinned CCD back-thinned CCD InGaAs linear C1353MA C1354MA C117MA C11MA * Typ. FT series RC series FT-SWIR-MOS-II Compact, thin case FT2-RAMAN Compact, thin case RC-VIS-MOS Spectrometer module RC-SWNIR-MOS Spectrometer module 5 to 11 79 to 92 34 to 7 64 to 15 3.5.4* 9 High-sensitivity For installation into mobile measuring equipment Type no. C119MA C111MA RC series Type RC-VIS-MOS RC-SWNIR-MOS Spectral response range (nm) 2 4 6 1 12 14 16 1 2 22 24 26 34 to 7 64 to 15 Spectral resolution max. (nm) 9 Image sensor For installation into mobile measuring equipment (ultra-compact) Type no. C117MA C12666MA C12MA MS series Microspectrometer Type MS-SWNIR-MOS Spectral response range (nm) 2 4 6 1 12 14 16 1 2 22 24 26 34 to 7 34 to 5 64 to 15 Spectral resolution max. (nm) 2 15 15 Image sensor High-sensitivity

FT series C1354MA Related information www.hamamatsu.com/sp/ssd/doc_en.html Precautions Disclaimer s Technical information s Information described in this material is current as of January, 216. Product specifications are subject to change without prior notice due to improvements or other reasons. This document has been carefully prepared and the information contained is believed to be accurate. In rare cases, however, there may be inaccuracies such as text errors. Before using these products, always contact us for the delivery specification sheet to check the latest specifications. The product warranty is valid for one year after delivery and is limited to product repair or replacement for defects discovered and reported to us within that one year period. However, even if within the warranty period we accept absolutely no liability for any loss caused by natural disasters or improper product use. Copying or reprinting the contents described in this material in whole or in part is prohibited without our prior permission. www.hamamatsu.com HAMAMATSU PHOTONICS K.K., Solid State Division 1126-1 Ichino-cho, Higashi-ku, Hamamatsu City, 435-55 Japan, Telephone: (1) 53-434-3311, Fax: (1) 53-434-514 U.S.A.: Hamamatsu Corporation: 36 Foothill Road, Bridgewater, N.J. 7, U.S.A., Telephone: (1) 9-231-96, Fax: (1) 9-231-121 Germany: Hamamatsu Photonics Deutschland GmbH: Arzbergerstr. 1, D-2211 Herrsching am Ammersee, Germany, Telephone: (49) 152-375-, Fax: (49) 152-265- France: Hamamatsu Photonics France S.A.R.L.: 19, Rue du Saule Trapu, Parc du Moulin de Massy, 912 Massy Cedex, France, Telephone: 33-(1) 69 53 71, Fax: 33-(1) 69 53 71 1 United Kingdom: Hamamatsu Photonics UK Limited: 2 Howard Court, 1 Tewin Road, Welwyn Garden City, Hertfordshire AL7 1BW, United Kingdom, Telephone: (44) 177-294, Fax: (44) 177-325777 North Europe: Hamamatsu Photonics Norden AB: Torshamnsgatan 35 1644 Kista, Sweden, Telephone: (46) -59-31-, Fax: (46) -59-31-1 Italy: Hamamatsu Photonics Italia S.r.l.: Strada della Moia, 1 int. 6, 22 Arese (Milano), Italy, Telephone: (39) 2-9351733, Fax: (39) 2-9351741 China: Hamamatsu Photonics (China) Co., Ltd.: B121, Jiaming Center, No.27 Dongsanhuan Beilu, Chaoyang District, Beijing 12, China, Telephone: (6) 1-656-66, Fax: (6) 1-656-266 Cat. No. KACC1233E4 Jan. 216 DN 9