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分类:CMOS图像传感器传感器类型: CMOS 决议: 2MPMP # 像素 (H): 2048 # 像素: 1088 像素大小: 5.5μm2um
CMV2000是一款高灵敏度、流水线全局快门CMOS图像传感器,具有2048 X 1088像素分辨率,支持高清格式。流水线操作允许在读出期间曝光。较先进的像素架构提供真正的相关双采样(CDs),显著降低固定模式噪声和暗噪声。该成像器集成了16个LVDS通道,每个通道以480 Mbps的速度运行,从而以每像素10位的全分辨率实现340 FPS的帧速率。驱动和读出通过串行外设接口进行编程。内部定时发生器产生图像传感器的读出和曝光控制所需的信号。外部曝光触发仍然可能。每像素12位模式在降低的帧速率下是可用的。
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分类:CMOS图像传感器传感器类型: CMOS 决议: 0.3MPMP # 像素 (H): 640 # 像素: 480 像素大小: 7.4μm2um
CMV300是一款专为机器视觉应用开发的高速CMOS图像传感器,具有640 X 480像素(1/3光学格式)。图像阵列由7.4μm X 7.4μm流水线全局快门像素组成,允许在读出和CDs操作期间曝光。用户可以选择4路12位数字LVDS串行输出或1路10位并行CMOS输出。该图像传感器集成了可编程增益放大器和偏移调节。每个LVDS通道的较大运行速度为480 Mbps,在全分辨率下的较大运行速度为480 FPS。在行窗口或行子采样模式中可以实现更高的帧速率。所有模式均可通过SPI接口编程。所有内部曝光触发、读出时序和高速时钟均由可编程的板载序列器和PLL产生。外部触发和曝光编程也是可能的。可以通过多个集成的高动态范围模式来实现扩展的光学动态范围。
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分类:CMOS图像传感器传感器类型: CMOS 决议: 4MPMP # 像素 (H): 5.5μm2 # 像素: 5.5μm2 像素大小: 2048um
CMV4000是一款高灵敏度、流水线全局快门CMOS图像传感器,具有2048 X 2048像素分辨率,支持高清格式。流水线操作允许在读出期间曝光。较先进的像素架构提供真正的相关双采样(CDs),显著降低固定模式噪声和暗噪声。该成像器集成了16个LVDS通道,每个通道以480 Mbps的速度运行,从而以每像素10位的全分辨率实现180 FPS的帧速率。驱动和读出通过串行外设接口进行编程。内部定时发生器产生图像传感器的读出和曝光控制所需的信号。外部曝光触发仍然可能。每像素12位模式在降低的帧速率下是可用的。
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传感器类型: CMOS 决议: 45.7MP # 像素 (H): 7920 # 像素: 6004 像素大小: 4.6um
CMV50000是一款具有7920×6004有效像素(47.5MP)的高速CMOS图像传感器,专为机器视觉和视频应用而开发。图像阵列由4.6μm流水线8T全局快门像素组成,允许在读出期间曝光,同时执行真正的CDs(相关双采样)操作。该图像传感器还集成了可编程模拟增益放大器和偏移调节。图像传感器具有22个数字子LVDS数据输出通道。每个输出通道的运行速度高达830 Mbit/s,从而在全分辨率下产生30 FPS的帧速率。在行窗口模式或行子采样模式中可以实现更高的帧速率。这些模式均可通过SPI接口进行编程。所有内部曝光和读出时序均由可编程片内序列器生成。外部触发和曝光编程也是可能的。通过双曝光HDR模式可以实现扩展的光学动态范围。
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传感器类型: CMOS 决议: 14MP # 像素 (H): 3856 # 像素: 3600 像素大小: 3.2um
CSG14K_CSG8K是专为机器视觉和视频应用开发的高速CMOS图像传感器系列。图像阵列由3.2µm流水线全局快门像素组成,允许在读出期间曝光,同时执行真正的CDs(相关双采样)操作。图像传感器具有16个子LVDS数据输出通道。每个输出通道以高达1.25 Gbit/s的速度运行,从而在全分辨率下产生140 FPS(CSG14K)或231 FPS(CSG8K)的帧速率。在行窗口模式或行子采样模式中可以实现更高的帧速率。这些模式均可通过SPI接口进行编程。所有内部曝光和读出时序均由可编程片内序列器生成。外部触发和曝光编程也是可能的。可以通过双重曝光HDR(高动态范围)模式来实现扩展的光学动态范围。该图像传感器还集成了黑色电平箝位。
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传感器类型: CMOS 决议: 0.52MP # 像素 (H): 2048 # 像素: 256 全帧速率: 2500fps
达芬奇相机专门用于以较佳信噪比(SNR)的较大速度运行CMOS成像器。在较低光级下,SNR受读取噪声限制,而在较高光级下,SNR受光子噪声限制。通过使用具有高填充因子的大像素,DaVinci CMOS成像器被设计为对于感兴趣的波长具有较高可能的量子效率(QE),而无需使用小透镜或背减薄。这通过较大化从每个可用光子收集的电子的数量来产生优化的光子噪声限制的SNR。凭借极高响应度的输出放大器,达芬奇成像器还设计为具有尽可能低的读取噪声,以在读取噪声受限时较大限度地提高SNR,从而实现尽可能高的实际动态范围。
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传感器类型: CMOS 决议: 4.2MP # 像素 (H): 2048 # 像素: 2048 全帧速率: 200fps
达芬奇相机专门用于以较佳信噪比(SNR)的较大速度运行CMOS成像器。在较低光级下,SNR受读取噪声限制,而在较高光级下,SNR受光子噪声限制。通过使用具有高填充因子的大像素,DaVinci CMOS成像器被设计为对于感兴趣的波长具有较高可能的量子效率(QE),而无需使用小透镜或背减薄。这通过较大化从每个可用光子收集的电子的数量来产生优化的光子噪声限制的SNR。凭借极高响应度的输出放大器,达芬奇成像器还设计为具有尽可能低的读取噪声,以在读取噪声受限时较大限度地提高SNR,从而实现尽可能高的实际动态范围。
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传感器类型: CMOS 决议: 2.1MP # 像素 (H): 2048 # 像素: 1024 全帧速率: 640fps
达芬奇相机专门用于以较佳信噪比(SNR)的较大速度运行CMOS成像器。在较低光级下,SNR受读取噪声限制,而在较高光级下,SNR受光子噪声限制。通过使用具有高填充因子的大像素,DaVinci CMOS成像器被设计为对于感兴趣的波长具有较高可能的量子效率(QE),而无需使用小透镜或背减薄。这通过较大化从每个可用光子收集的电子的数量来产生优化的光子噪声限制的SNR。凭借极高响应度的输出放大器,达芬奇成像器还设计为具有尽可能低的读取噪声,以在读取噪声受限时较大限度地提高SNR,从而实现尽可能高的实际动态范围。