0
登录后你可以
  • 下载海量资料
  • 学习在线课程
  • 观看技术视频
  • 写文章/发帖/加入社区
会员中心
创作中心
发布
  • 发文章

  • 发资料

  • 发帖

  • 提问

  • 发视频

创作活动
C9913GC

C9913GC

  • 厂商:

    HAMAMATSU

  • 封装:

  • 描述:

    C9913GC - Integrating optical system, image sensor and circuit - Hamamatsu Corporation

  • 详情介绍
  • 数据手册
  • 价格&库存
C9913GC 数据手册
MODULE Mini-spectrometer TG series C9406GC, C9913GC, C9914GB Integrating optical system, image sensor and circuit Hamamatsu TG series mini-spectrometers are polychromators integrated with optical elements and an image sensor. Light to be measured is guided into the entrance port of TG series through an optical fiber and the spectrum measured with the built-in image sensor is output from the USB port to a PC for data acquisition. Non-cooled type and cooled type are provided. Non-cooled type is a palmtop-size unit and operates on USB bus power. Cooled type allows accurate measurement with low noise by cooling the image sensor. Two models are available: C9913GC (TG-cooled NIR-I) and C9914GB (TG-cooled NIR-II). The TG series comes with sample software, device driver and DLL that let you easily set measurement conditions and acquire, save and graphically display the spectrum data. Features Applications C9406GC (TG-NIR) l High throughput due to transmission grating made of quartz l Highly accurate optical characteristics l Water content measurement l G9406GC: No external power supply required l Optical communication component testing (Uses USB bus power) *1 l Film thickness measurement l Low noise measurement (Cooled type) C9913GC (TG-cooled NIR-I), C9914GB (TG-cooled NIR-II) l Compact design for easy assembly l Water content measurement l Wavelength conversion factor *2 is recorded in internal l Component analysis in food, agriculture fields, etc. memory l Process control for chemical products *1: C9913GC, C9914GB: Each requires 5 V and 12 V power supplies. *2: A conversion factor for converting the image sensor pixel number into a wavelength is recorded in the module. A calculation factor for converting the A/D converted count into the input light intensity is not provided. n Mini-spectrometer line-up Type No. Type TM-UV/VIS-CCD High sensitivity TM-UV/VIS-CCD High resolution Spectral response range (nm) 200 400 600 800 1000 1200 1400 1600 1800 2000 2200 Spectral resolution Max. (nm) Image sensor C10082CA C10082CAH 6 200 to 800 1* 6 8 (λ=320 to 900 nm) Back-thinned type CCD image sensor TM series C10082MD C10083CA C10083CAH TM-UV/VIS-MOS Wide dynamic range TM-VIS/NIR-CCD High sensitivity TM-VIS/NIR-CCD CMOS linear image sensor High resolution TM-VIS/NIR-MOS 320 to 1000 Back-thinned type CCD image sensor 1* (λ=320 to 900 nm) TG series TG series C10083MD C9404CA C9404CAH C9404MC C9405CA C9405MC C9406GC C9913GC C9914GB Wide dynamic range TG-UV-CCD 8 3 200 to 400 CMOS linear image sensor Back-thinned type CCD image sensor Back-thinned type CCD image sensor CMOS linear image sensor High sensitivity TG-UV-CCD High resolution TG-UV-MOS 1* 3 Wide dynamic range TG-SWNIR-CCD High sensitivity 500 to 1100 TG-SWNIR-MOS Wide dynamic range TG-NIR Back-thinned type 5 (λ=550 to 900 nm) CCD image sensor 5 (λ=550 to 1100 nm) 7 900 to 1700 NMOS linear image sensor Non-cooled type TG-cooled NIR-I Low noise (cooled type) TG-cooled NIR-II 7 1100 to 2200 InGaAs linear image sensor Low noise (cooled type) 8 9 CMOS linear image sensor RC series C9407MA * Typ. RC-VIS-MOS Spectrometer module 340 to 780 OEM model Type No. Type Spectral response range (nm) 200 400 600 800 1000 1200 1400 1600 1800 2000 2200 Spectral resolution Max. (nm) Image sensor CMOS linear image sensor RC series C9409MA RC-VIS-MOS Spectrometer head 340 to 780 9 1 Mini-spectrometer TG series s Specifications C9406GC, C9913GC, C9914GB Non-cooled type P a ra m e te r N u m b e r o f p ixe ls S p e c tra l re s p o n se ra ng e S p e c tra l re s o lu tio n M a x. (S p e c tra l re s p o n se h alf w id th ) * 3 W a ve le n g th re p ro d u c ib ility * 4 W a ve le n g th te m p e ra tu re d e p e n d e n c e S p e c tra l s tra y lig h t * 3 , * 5 B ro a d b a n d s tra y lig h t * 3 , * 6 S lit * 7 A /D c o n ve rs io n In te g ra tio n tim e O p tic a l N A * 8 Im a g e se n so r C o n n e c to r fo r o p tica l fib e r In te rfa c e C u rre n t c o n s u m p tio n * 9 O p e ra tin g te m p e ra tu re * 1 0 S to ra g e te m p e ra tu re D im e n s io n s T G -N IR C9406GC 512 9 0 0 to 1 7 0 0 7 ±0 .2 0 .0 2 -3 5 -3 0 7 0 (H ) × 5 0 0 (V ) 16 5 to 1 0 0 0 0 0 .2 2 In G a A s lin e a r im a g e se n so r (G 9 2 0 4 -5 1 2 D ) SMA905D U S B 1 .1 250 + 5 to + 4 0 -2 0 to + 7 0 4 0 (W ) × 1 0 6 (D ) × 8 6 (H ) U n it p ixe ls nm nm nm n m /°C dB dB µm b it ms mA °C °C mm Cooled type P a ra m e te r N u m b e r o f p ixe ls S p e c tra l re s p o n se ra ng e S p e c tra l re s o lu tio n * 3 (S p e c tra l re s p o n se h alf w id th ) W a ve le n g th re p ro d u c ib ility * 4 W a ve le n g th te m p e ra tu re dependence S p e c tra l s tra y lig h t * 3 , *5 B ro a d b a n d s tra y lig h t * 3 , *6 S lit * 7 A /D c o n ve rs io n In te g ra tio n tim e O p tic a l N A * 8 Im a g e se n so r T G -c o o le d N IR - I C9913GC 512 9 0 0 to 1 7 0 0 7 ±0 .2 0 .0 2 -3 5 -3 0 7 0 (H ) × 5 0 0 (V ) 16 5 to 1 0 0 0 0 T G -c o o le d N IR - II C9914GB 256 11 0 0 to 2 2 0 0 8 ±0 .4 0 .0 4 -3 5 -3 0 7 0 (H ) × 2 5 0 (V ) U n it p ixe ls nm nm nm n m /° C dB dB µm b it ms - 0 .2 2 0 .2 2 In G a A s lin e a r im a g e se n so r In G a A s lin e a r im a g e se n so r (G 9 2 0 4 -5 1 2 S ) (G 9 2 0 6 -0 2 ) Im a g e se n so r co o lin g te m p e ra tu re -5 -2 0 °C C o n n e c to r fo r o p tica l fib e r SMA905D In te rfa c e U S B 1 .1 U S B b u s p o w e r c u rre n t co n su m p tio n 250 250 mA P o w e r s u p p ly fo r c o o lin g e le m e n t (M a x.) * 11 5 /1 .8 5 /2 .8 V /A P o w e r s u p p ly fo r c o o lin g fa n * 11 1 2 /0 .2 V /A O p e ra tin g te m p e ra tu re * 1 0 + 5 to + 3 5 (+ 5 to + 3 0 * 1 2 ) °C S to ra g e te m p e ra tu re -2 0 to + 7 0 °C D im e n s io n s 1 4 2 (W ) × 2 1 8 (D ) × 8 0 (H ) mm *3 : D e p e n d s o n th e s lit o p e n in g . Va lu e s w e re m e a s u re d w ith th e slit o p e n in g lis te d in th e ta b le . *4 : M e a s u re d u n d e r c on s ta n t lig h t in p u t c o n d itio n s . *5 : W h e n m o n o c h ro m a tic lig h t o f th e fo llo w in g w a ve le n g th s is in p u t, s p e c tra l s tra y lig h t is d e fin e d a s th e ra tio o f th e c o u n t m e a s u re d a t th e in p u t w a ve le n g th , to th e c o u n t m e a su re d in a re gio n o f th e in p u t w a ve le n g th ±4 0 n m . C 9 4 0 6 G C /C 9 9 1 3 G C : 1 3 0 0 n m , C 9 9 1 4 G B : 1 6 5 0 n m *6 : T h is is th e ra tio o f th e tra n s m itta n c e m e a s u re d w ith lig h t p a s sin g th ro u g h th e fo llo w in g o p tic a l filte rs to th e tra n sm itta nc e m e a s u re d in th e b lo c kin g re g io n . C 9 4 0 6 G C /G 9 9 1 3 G C : L P 1 4 0 0 (S P E C T R O G O N ), C 9 9 1 4 G B : L P 1 7 0 0 (S P E C T R O G O N ) *7 : E n tra n c e s lit a p e rtu re size *8 : N u m e rica l a p e rtu re (so lid a n g le ) *9 : U S B b u s p o w e r *1 0 : N o c o n d e n sa tio n *11 : M a xim u m va lu e in s te a d y s ta te . N o te th a t in ru sh c u rre n t flo w s a t s ta rt-u p . *1 2 : F o r c o n tro lla b le co o lin g te m p e ra tu re 2 Mini-spectrometer TG series s Optical component layout TG series mini-spectrometers use a transmission holographic grating made of quartz and precision optical components arranged on a rugged optical base, making it possible to deliver high throughput and highly accurate optical characteristics. FOCUSING LENS TRANSMISSION GRATING IMAGE SENSOR COLLIMATING LENS ENTRANCE SLIT C9406GC, C9913GC, C9914GB s Connection example (transmission light measurement) Light to be measured is guided into the entrance port of TG series through an optical fiber and the spectrum measured with the built-in image sensor is output through the USB port to a PC for data acquisition. There are no moving parts inside the unit so stable measurements are obtained at all times. An optical fiber that guides light input from external sources allows a flexible measurement setup. PC USB CABLE UV-VIS FIBER LIGHT SOURCE (Deuterium lamp and Halogen lamp) L10290 MINI-SPECTROMETER C9913GC, C9914GB KACCC0256EA POWER SUPPLY FOR COOLING ELEMENT AND COOLING FAN * QUARTZ CELL (For holding liquid sample) FIBER * External power supply should be prepared by the user. C9406GC: No external power supply required (Uses USB bus power) KACCC0370EA s Dedicated software package (supplied with unit) Installing the dedicated software package (containing sample software, device driver, DLL)*13 into your PC allows running the following basic tasks: · Measurement data acquisition and save · Measurement condition setup · Module information acquisition (wavelength conversion factor, polychromator type, etc.) · Graphic display · Arithmetic operation Pixel number to wavelength conversion Dark subtraction Comparison calculation with reference data (transmittance, reflectance) Gaussian approximation (peak position and count, FWHM) Note: Two or more mini-spectrometers can be connected and used with one PC simultaneously. *13: Compatible OS: Microsoft Windows Professional Edition 2000 (SP3 or later) and XP (SP1a or later) Device driver and DLL for controlling hardware are also provided. You can develop your own measurement programs by using a software development environment that includes Microsoft Visual C++ and Visual Basic.*14 The DLL provides functions such as USB port open/close, measurement condition setup, measurement data and module information acquisition. *14: Operation of the device driver and DLL has been verified only with Microsoft Visual C++® and Visual Basic®. Microsoft Visual C++ and Microsoft Visual Basic are either registerd trademarks or trademarks of Microsoft Corporation in the United States. 3 Mini-spectrometer TG series s Measurement example · Film thickness measurement (white light interferometry) Thickness of 10 µm thick food wrapping film (polyvinylidene chloride) was measured with C9406GC (TG-NIR). 40000 C9406GC, C9913GC, C9914GB Note: Principle of film thickness measurement: In film thickness measurement utilizing white light interferometry, an interference spectrum resulting from internal reflections between the front and back surfaces of a film is obtained. The film thickness can then be determined by calculation from the spectral peak count, wavelength range, refractive index of film and incident light angle. 30000 A/D COUNT 20000 10000 0 0 100 200 300 400 500 NUMBER OF PIXELS KACCB0095EA s Dimensional outline (unit: mm) C9406GC 40.0 106 86 KACCA0146EA C9913GC, C9914GB 218 142 COOLED NIR-II (λ: 2.2) Spectrometer COOLED NIR-II (λ: 2.2) Spectrometer 80 KACCA0158EB s Accessories · USB cable · Dedicated software (sample software, device driver, DLL) · Connector for connection to cooling element and cooling fan power supply (C9913GC, C9914GB) s Options (sold separately) Optical fibers for light input Type. No Product name Fiber for visible/ A9763-01 near infrared range Specification Core diameter 600 µm, N.A.=0.22, length 1.5 m, connectorized SMA905D at both ends 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. ©2007 Hamamatsu Photonics K.K. HAMAMATSU PHOTONICS K.K., Solid State Division 1126-1 Ichino-cho, Higashi-ku, Hamamatsu City, 435-8558 Japan, Telephone: (81) 53-434-3311, Fax: (81) 53-434-5184, www.hamamatsu.com U.S.A.: Hamamatsu Corporation: 360 Foothill Road, P.O.Box 6910, Bridgewater, N.J. 08807-0910, U.S.A., Telephone: (1) 908-231-0960, Fax: (1) 908-231-1218 Germany: Hamamatsu Photonics Deutschland GmbH: Arzbergerstr. 10, D-82211 Herrsching am Ammersee, Germany, Telephone: (49) 08152-3750, Fax: (49) 08152-2658 France: Hamamatsu Photonics France S.A.R.L.: 19, Rue du Saule Trapu, Parc du Moulin de Massy, 91882 Massy Cedex, France, Telephone: 33-(1) 69 53 71 00, Fax: 33-(1) 69 53 71 10 United Kingdom: Hamamatsu Photonics UK Limited: 2 Howard Court, 10 Tewin Road, Welwyn Garden City, Hertfordshire AL7 1BW, United Kingdom, Telephone: (44) 1707-294888, Fax: (44) 1707-325777 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 Italy: Hamamatsu Photonics Italia S.R.L.: Strada della Moia, 1/E, 20020 Arese, (Milano), Italy, Telephone: (39) 02-935-81-733, Fax: (39) 02-935-81-741 Cat. No. KACC1141E01 4 Apr. 2007 DN
C9913GC
### 物料型号 - C9406GC(TG-NIR) - C9913GC(TG-cooled NIR-I) - C9914GB(TG-cooled NIR-II)

### 器件简介 滨松光子TG系列迷你光谱仪是与光学元件和图像传感器集成的多光谱仪。待测光线通过光纤引入TG系列的入口,内置图像传感器测量的光谱通过USB端口输出到PC进行数据采集。提供非制冷型和制冷型两种类型。非制冷型为掌上型单元,使用USB总线电源运行。制冷型通过冷却图像传感器实现低噪声的准确测量。提供C9913GC(TG-cooled NIR-I)和C9914GB(TG-cooled NIR-II)两种型号。

### 引脚分配 - 连接器为SMA905D,用于光纤连接。

### 参数特性 非制冷型(TG-NIR C9406GC): - 像素数量:512像素 - 光谱响应范围:900至1700纳米 - 光谱分辨率最大:7纳米 - 波长再现性:±0.2纳米 - 波长温度依赖性:0.02纳米/°C - 光谱杂散光:-35分贝 - 宽带杂散光:-30分贝 - 狭缝:70(H)x500(V)微米 - A/D转换:16位 - 积分时间:5至10000毫秒 - 光学NA:0.22 - 接口:USB1.1 - 电流消耗:250毫安 - 工作温度:+5至+40°C - 存储温度:-20至+70°C - 尺寸:40(W)x106(D)x86(H)毫米

制冷型(TG-cooled NIR-1 C9913GC & TG-cooled NIR-II C9914GB): - 像素数量:512像素(C9913GC)和256像素(C9914GB) - 光谱响应范围:900至1700纳米(C9913GC)和1100至2200纳米(C9914GB) - 光谱分辨率:7纳米(C9913GC)和8纳米(C9914GB) - 波长再现性:±0.2纳米(C9913GC)和±0.4纳米(C9914GB) - 波长温度依赖性:0.02纳米/°C(C9913GC)和0.04纳米/°C(C9914GB) - 图像传感器冷却温度:-5°C(C9913GC)和-20°C(C9914GB)

### 功能详解 TG系列迷你光谱仪使用由石英制成的透射全息光栅和精密光学元件,排列在坚固的光学基底上,实现了高透过率和高光学特性。通过光纤引导光线进入TG系列的入口,内置图像传感器测量的光谱通过USB端口输出到PC进行数据采集。该设备无移动部件,因此始终能够获得稳定的测量结果。

### 应用信息 - 水分含量测量 - 光通信元件测试 - 膜厚测量 - 食品、农业等领域的成分分析 - 化学品的过程控制

### 封装信息 - C9406GC尺寸:40(W)x106(D)x86(H)毫米 - C9913GC和C9914GB尺寸:142(W)x218(D)x80(H)毫米
C9913GC 价格&库存

很抱歉,暂时无法提供与“C9913GC”相匹配的价格&库存,您可以联系我们找货

免费人工找货