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C10151

更新时间: 2024-10-28 04:10:23
品牌 Logo 应用领域
HAMAMATSU 传感器图像传感器
页数 文件大小 规格书
7页 204K
描述
CCD multichannel detector head Designed for back-thinned CCD area image sensor

C10151 技术参数

生命周期:ActiveReach Compliance Code:unknown
风险等级:5.73Base Number Matches:1

C10151 数据手册

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I M A G E S E N S O R  
CCD multichannel detector head  
C10150,  
C10151  
Designed for back-thinned CCD area image sensor  
C10150 and C10151 are high sensitivity multichannel detector heads for use with back-thinned FFT-CCD area image sensors (S10140/S10141  
series) that offer high UV sensitivity and quantum efficiency. C10150 is designed for the non-cooled back-thinned CCD image sensor (S10140  
series), while C10151 for the one-stage TE-cooled CCD area image sensors (S10141 series) for detection at even lower light levels. Both C10150  
and C10151 incorporate a low-noise driver/amplifier circuit that provides reliable operation from simple external signals. C10151 also includes a  
highly stable temperature controller that cools the sensor to a preset temperature level (Ts= -10 ˚C) as soon as the power is turned on. If the  
cooler fails and causes internal circuitry to overheat, the built-in protection circuit automatically turns off the power to the thermoelectric cooler.  
Despite its compact size, the housing configuration is designed for good heat dissipation, and threaded mounting holes on the front panel allow  
connections to other devices such as monochrometers. The table below shows back-thinned CCD image sensors for C10150 and C10151.  
C10150 and C10151 do not come with a CCD image sensor, so select the desired sensor and order it separately.  
Controller for multichannel detector head C7557 is also available. The software supplied with the C7557 allows easy control of the multichannel  
detector head and data acquisition.  
Features  
Applications  
Designed for back-thinned CCD area image sensor *1  
C10150: for non-cooled type (S10140 series)  
C10151: for TE-cooled type (S10141 series)  
Line binning operation *2/area scanning operation  
Driver/amplifier circuit for low noise CCD operation  
Highly stable temperature controller (C10151)  
Cooling temperature: -10 ± 0.05 ˚C  
Fluorescence spectroscopy  
Raman spectroscopy  
Other low-light-level detection  
Simple signal input operation  
Compact configuration  
Selection guide  
The table below shows CCD area image sensors applicable for C10150, C10151.  
Since C10150, C10151 do not include a CCD area image sensor, so select the desired sensor and order it separately.  
CCD area image sensor  
Type No.  
Active area  
[mm (H) × mm (V)]  
12.288 × 1.464  
12.288 × 3.000  
12.288 × 6.072  
24.576 × 1.464  
24.576 × 3.000  
24.576 × 6.072  
12.288 × 1.464  
12.288 × 3.000  
12.288 × 6.072  
24.576 × 1.464  
24.576 × 3.000  
24.576 × 6.072  
Type No.  
Number of pixels  
Number of active pixels  
S10140-1007  
S10140-1008  
S10140-1009  
S10140-1107  
S10140-1108  
S10140-1109  
S10141-1007  
S10141-1008  
S10141-1009  
S10141-1107  
S10141-1108  
S10141-1109  
1044 × 128  
1044 × 256  
1044 × 512  
2068 × 128  
2068 × 256  
2068 × 512  
1044 × 128  
1044 × 256  
1044 × 512  
2068 × 128  
2068 × 256  
2068 × 512  
1024 × 122  
1024 × 250  
1024 × 506  
2048 × 122  
2048 × 250  
2048 × 506  
1024 × 122  
1024 × 250  
1024 × 506  
2048 × 122  
2048 × 250  
2048 × 506  
C10150  
C10151  
*1: In normal CCD image sensors that receive light from the front surface, the active area is covered with electrodes for charge transfer.  
These electrodes cut off UV radiation incident on the image sensor and also reduce the quantum efficiency. In contrast, back-  
thinned CCD image sensors have a unique structure in which the back of the active area is finely ground to allow light to enter from  
the back surface. This structure ensures high UV sensitivity and quantum efficiency because incident light need not pass through the  
electrodes.  
*2: The FFT-CCD was originally designed as a two-dimensional image sensor. However, it can be operated like a linear image sensor  
having a large active area by transferring all the pixel signals in the vertical direction to the horizontal register (this is referred to as  
line binning).  
1

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