MAX102AC-10G 科学相机
产品介绍
102MP 彩色全画幅相机(Sony IMX461AQR),3.76 µm 像元,10GigE 高速链路,支持多分辨率读出(全分辨率 8.7 fps)。内置 TEC 深度制冷(典型 ΔT≈40 °C)与防结雾结构,适合彩色高分辨率记录、测量与拼接。提供软/硬触发、ROI/Binning(依机型)与跨平台 SDK。
产品特点
- 传感器:Sony IMX461AQR,102MP(彩色,RS)
- 分辨率:11648×8742;像元:3.76 µm;多模式帧率
- 靶面:43.80 × 32.87 mm;对角线 54.76 mm(3.42")
- 接口:10GigE;稳定长距离传输
- TEC 制冷(典型 ΔT≈40 °C),防结雾光学结构
- 触发/IO:光耦隔离输入/输出 + GPIO(按机型)
- 图像功能:ROI、Binning 等(依机型)
- 多位深输出(见规格),内置缓存(依机型)
- 配套 ToupView/ToupLite 与 Windows/Linux/macOS SDK
产品详情
| 规格参数 | |
| 型号 | MAX102AC-10G |
| 传感器 | IMX461AQR (C,RS) |
| 快门类型 | 卷帘快门 |
| 色彩类型 | 彩色 |
| 分辨率 | 102M (11648×8742) |
| 传感器尺寸 | 43.80 mm × 32.87 mm |
| 传感器对角线 | 3.4" (54.95 mm) |
| 像素尺寸 | 3.76 µm × 3.76 µm |
| 性能参数 | |
| 帧率 | 8.7 fps@11648×8742; 8.7 fps@5824×4370; 27.8 fps@3872×2912; 82.5 fps@1280×970 |
| 曝光时间范围 | 150us ~3600s |
| 位深 | 8-bit / 16-bit |
| 动态范围 | 82.8 dB |
| 灵敏度 | 485mV @ 1/30s; 0.04mV @ 1/30s |
| 接口参数 | |
| GPIO | 1路光耦隔离输入,1路光耦隔离输出,2路非隔离输入输出口 |
| 镜头接口 | M72 接口 |
| 数据接口 | 10GigE |
| 电源供电 | DC19V供电 |
| 物理参数 | |
| 外形尺寸 | 110 mm × 110 mm × 129.8 mm |
| 重量 | 1.44 kg |
| 环境参数 | |
| 工作温度 | -10°C ~ +50°C |
| 工作湿度 | 20%~80%(无冷凝) |
| 存储温度 | -30°C ~ +70°C |
| 存储湿度 | 20%~80%(无冷凝) |
| 其他参数 | |
| 操作系统 | Windows/Linux/macOS/Android 多平台 SDK(原生 C/C++、C#/VB.NET、Python、Java、DirectShow、Twain 等) |
| 认证 | CE/FCC |
产品概述
MAX102AC-10G 是一款搭载 IMX461AQR (C,RS) 背照式 sCMOS 图像传感器的科学级制冷相机,具有以下特征:
- 高分辨率成像:102M (11648×8742) 分辨率,3.76 µm × 3.76 µm 像元尺寸,靶面尺寸为 43.80 mm × 32.87 mm
- 快门设计:采用卷帘快门设计,支持黑白成像,适用于荧光成像、光谱分析、基因测序等科研场景
- 高速数据传输:支持 10GigE 高速数据接口,最大帧率可达 8.7 fps@11648×8742; 8.7 fps@5824×4370; 27.8 fps@3872×2912; 82.5 fps@1280×970,数据输出格式涵盖 8-bit / 16-bit
- 优异动态范围:动态范围最高可达 82.8 dB,灵敏度为 485mV @ 1/30s; 0.04mV @ 1/30s
- 制冷系统:内置制冷系统,可将温度降低至环境以下 TBD,有效降低暗电流
- 丰富接口:支持 GPIO 接口,镜头接口为标准 M72 接口 接口
- 紧凑设计:整机尺寸为 110 mm × 110 mm × 129.8 mm,重量约为 1.44 kg,供电为 DC19V供电
- 全平台支持:支持 Windows/Linux/macOS/Android 多平台 SDK(原生 C/C++、C#/VB.NET、Python、Java、DirectShow、Twain 等) 系统,配套 ToupView 软件及跨平台 SDK,支持 C/C++、C#、Python 等主流开发语言
核心性能指标
帧率
8.7 fps@11648×8742; 8.7 fps@5824×4370; 27.8 fps@3872×2912; 82.5 fps@1280×970
分辨率
102M (11648×8742)
动态范围
82.8 dB
科学成像特性
背照式传感器
采用背照式 sCMOS 传感器,量子效率更高,特别适合微弱光成像应用
制冷降噪
内置制冷系统有效降低暗电流和噪声,提升图像质量和信噪比
高灵敏度
灵敏度达到 485mV @ 1/30s; 0.04mV @ 1/30s,满足科学成像的高精度要求
灵活控制
支持ROI、Binning、触发控制等功能,适应不同科研需求
MAX102AC-10G 相机凭借其卓越的科学成像性能、稳定的制冷系统和丰富的接口配置,是科研院所、医疗机构和高端工业应用的理想选择,能够满足各种精密成像和分析需求。
Package Contents #
Package list for model MAX102AC-10G (10GigE Cooled)
- Camera body (MAX series 10GigE · cooled)
- Power adapter (input AC 100–240 V, 50/60 Hz; output per in-box spec)
- I/O cable (7-pin cable or extension)
- 10GigE network cable (Cat6A/7, shielded recommended)
- Lens (optional: M72 / M52 / M42 / C mount)
Product Dimensions #
Dimensions for model MAX102AC-10G (MAX102)
Frequently Asked Questions
Learn more about scientific CMOS cameras
- Ultra-low read noise: sCMOS read noise approaches 1 e⁻, far outperforming traditional CCDs.
- High frame rate: Parallel readout architecture supports 100 fps or higher.
- Wide dynamic range: Captures bright and dark regions simultaneously with ratios up to tens of thousands to one.
- Large field of view and high resolution: Suits high-resolution, wide-field imaging.
EMCCD cameras excel in ultra-low light or long-exposure conditions.
sCMOS delivers greater value for high-resolution, high-speed imaging with low noise.
In-Depth Product Overview
sCMOS Sensor Architecture
Each pixel has its own amplifier and column ADC for parallel readout, enabling high-speed, high-SNR imaging. Dual gain channels and dual ADC designs further expand dynamic range and sensitivity.
Low Noise + Wide Dynamic Range
Typical sCMOS noise is < 2 e⁻ (30 fps) with dynamic range up to 50,000:1—far exceeding traditional CCDs.
Fast Readout & Versatility
Parallel readout supports >100 fps for capturing fast events such as cell motion, fluorescence lifetime studies, and plasma dynamics.
Low-Light Performance
Back-illuminated sCMOS sensors achieve >95% QE from UV to NIR, with low fixed-pattern noise and cooling down to −30 °C for astronomy and other needs.
Application Scenarios & System Value
Ideal for fluorescence microscopy, astronomy, cold atom research, X-ray imaging, materials inspection, and industrial microscopy—delivering high sensitivity, precision, and adaptability.
Key Application Areas
Representative sCMOS applications
sCMOS Technology Advantages Summary
- Ultra-low read noise (<2 e⁻)
- High frame rate (>100 fps)
- Wide dynamic range (50,000:1)
- High quantum efficiency (>95%)
- Large FOV, high resolution
- Cooling capability (−30 °C)
- Parallel readout architecture
- Adaptable to diverse research needs