微流控成像观察用超快相机-Axiocam 702 mono
蔡司Axiocam 702单声道摄像机专为低光下的高性能成像而设计,尤其适用于实时荧光细胞采集。
其1/1.2”(对角线13.3mm)的2.3MP CMOS传感器在全分辨率(1920×1216)下可以达到128 fps的帧速率。
该相机采用Peltier冷却技术,确保低噪音,低光敏度和可重现的图像,尤其是在黑暗区域或长时间曝光。
特点:
l 230万像素低图像噪声CMOS传感器
l 全分辨率128帧/秒(1920×1216)
l Peltier冷却系统可实现低读取噪音
l HDR(高动态范围)模式,用于扩展位深度成像
l 快速USB 3.0连接
l 全局快门读数可避免CMOS滚动快门图像失真
l ZEN多维采集中的硬件触发支持
l 使用ZEN软件快速高效地运行
无论任务是需要灵敏度的高分辨率成像还是跟上快速动态事件,Axiocam 702 mono都可以完成这项工作。Axiocam 702 mono采用全局快门CMOS芯片,全帧速率为每秒128帧,帧速率更小,每秒超过1000帧。易于使用和学习的ZEN软件驱动摄像机,无缝集成,兼容多个蔡司支架和显微镜系统。
Sensor Model | Sony IMX174 Exmor Pregius |
Global Shutter | |
Active Pixel CMOS | |
Selected sensor quality | |
Sensor Pixel Count | 2.3 MP: 1920 (H) x 1216 (V) |
Pixel Size | 5.86 μm x 5.86 μm |
Sensor Size | Effective sensor size: 11.3 mm x 7.1mm; image diagonal 11.3mm, equivalent to 1/1.2" sensor format |
Spectral Sensitivity Range | Approx. 350 nm – 1000 nm, coated BK 7 protective glass |
Max Full Well Capacity (typical) | 32000 e |
Digitization | 14 bit (by data processing, native 12 bit by ADC) |
Readout Speed | 594 Mbit/s over 8 channels |
Readout Noise (typical) | min 3.75e at gain 16× |
Dynamic Range (typical) | Typical > 5000:1 at gain 1×, HDR Mode 25.000:1 |
Dark Current (typical) | <1.1e/p/s at 15° C sensor temperature |
Coo领 | Regulated thermoelectric coo领 (power supplied through USB 2.0 ports) |
Delta-T 23 °C, sensor temperature 15 °C | |
Dark Current Compensation | Dark current compensation for best low light performance at long exposure times |
Exposure Time Range | 0.1ms − 60 s |
Frame Rates | Pixel Count (H x V) | FPS @ Exposure Time <1 ms |
1920 x 1216 | 128 | |
1920 x 720 | 210 | |
1920 x 512 | 288 | |
1920 x 256 | 534 | |
1920 x 128 | 881 | |
1024 x 112 | 1003 | |
Color Interpolation Mode | n.a. |
Live Frame Rates | Max. Frame Rate | Mode | Resolution / Pixel |
Max. Ratings at optimum settings | >100 fps | 1 / slow | 1920 x 1216 |
Data-Post Processing (optional) | Lens specific shading correction |
Sharpening | |
Black reference, dark current compensation | |
Noise filter | |
Special Features | Timing from camera for precise acquisition timing |
Auto Bandwith Optimization for maximum image transmission speed | |
Adjustable intensity of status LED | |
Special Preset Modes | Eight pre-loadable sets of imaging parameters for speed optimized multi modal image acquisition (internally used by ZEN) |
Overlapping exposure and readout for fast time lapse imaging | |
High Dynamic Range | Dynamic Range 1:25.000 at 5e read noise (equivalent full well 160.000e) |
Region of Interest (ROI) | User defined imaging sub area for improvement of readout speed and reduction of amount of data |
Hardware Trigger | Galvanically isolated I / O-signals |
Three output signals: exposure time, readout time, trigger ready, i.e. for control领 external mechanical shutters | |
One trigger input for exposure control, 5 V auxiliary voltage, GND | |
Status LED | Top LED: camera status (acquisition, power, coo领, speed) |
Back LED: trigger status | |
Interface | USB 3.0 SuperSpeed (5 Gbit / s) |
Bandwidth max. 300 MB / s | |
USB 2.0 optional, with lower speed | |
Optical Interface | C-Mount (17.5 mm) |
Max. File Size per Image | Approx. 4,7 MB per image with 1920 x 1216 Pixels at 14 Bit / Pixel |
Operating Systems | Microsoft® Windows 7 Ultimate, Enterprise and higher |
Size (W x H x D) / Weight | 10.8 cm x 4.3 cm x 7.8 cm / 500 g |
Housing | Blue anodized aluminum |
¼" standard camera mount screw thread | |
Zero vibration by convection-coo领, optimized coo领 fins | |
Teflon coated C-Mount thread | |
Certificates | CE |
Power Supply | Max. 7 W power consumption power by USB 2.0 and USB 3.0-Bus from PC |
For maximum performance connection to USB 3.0 and USB 2.0 required, dual connection cab领 provided with camera | |
Ambient Conditions (Operation) | + 5 °C ... + 35 °C |
Max. 80 % relative humidity, non-condensing | |
Free air circulation required | |
Ambient Conditions (Storage) | – 15 °C ... + 60 °C |
90 % relative humidity at + 40 °C, 80 % relative humidity at + 20 °C, non-condensing |
所有帧速率都是在低于传感器读出时间的短曝光时间内的最大值。曝光时间,计算机硬件操作系统和软件可以降低可实现的最大帧速率。通过使用binning或传感器子区域(ROI),可以进一步增加帧速率。由于技术的进步,技术数据可能会发生变化。
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