CMV4000-2E5M1LP

ams OSRAM
469-CMV4000-2E5M1LP
CMV4000-2E5M1LP

制造商:

说明:
图像传感器 Image Sensor

ECAD模型:
下载免费库加载程序,将此文件转换,以供您的ECAD工具使用。了解详情。

供货情况

库存:
无库存
生产周期:
30 周 预计工厂生产时间。
本产品所报告的交付时间长。
最少: 40   倍数: 40
单价:
¥-.--
总价:
¥-.--
预估关税:
此产品免运费

定价 (含13% 增值税)

数量 单价
总价
¥4,316.2836 ¥172,651.34

产品属性 属性值 选择属性
ams OSRAM
产品种类: 图像传感器
RoHS:  
Area Scan Sensor
2048 H x 2048 V
Monochrome
- 30 C
+ 70 C
4 Megapixels
180 fps
5.5 um x 5.5 um
LGA-95
3.3 V
Tray
商标: ams OSRAM
组装国: Not Available
扩散国家: Not Available
原产国: BE
产品类型: Image Sensors
系列: CMV4000
工厂包装数量: 40
子类别: Sensors
电源电压-最大: 3.4 V
电源电压-最小: 2.05 V
零件号别名: 301850003 Q65114A0019
找到的产品:
要显示类似产品,至少选中一个复选框
要显示该类别下的类似产品,请至少选中上方的一个复选框。
已选择的属性: 0

USHTS:
8542390090
ECCN:
EAR99

CMOSIS CMV 4000 图像传感器

CMOSIS CMV4000 Image Sensors are global shutter CMOS image sensors with 2048 by 2048 pixels in a 1" optical format. These image arrays consist of 5.5 um by 5.5 um pipelined global shutter pixels, which allow exposure during read out while performing CDS operation reducing fixed pattern and dark noise significantly. The CMV4000 has 16 12-bit digital LVDS outputs (serial) each running at 480Mbps. These image sensors also integrate a programmable gain amplifier and offset regulation. Each channel runs at 480Mbps maximum, which results in 180fps frame rate at full resolution in 10-bit mode. Higher frame rates can be achieved in row-windowing mode or row-subsampling mode. All operation modes are all programmable using a SPI interface. A programmable on-board sequencer generates all internal exposure and read out timings. External triggering and exposure programming is also possible. Extended optical dynamic range can be achieved by multiple integrated high dynamic range modes. A 12-bit per pixel mode is available at reduced frame rates.
Learn More

迷你型Topled LED

Osram 迷你型Topled LED专为满足公共和私人交通对高亮度和高品质的需求而量身打造。这些LED结合赏心悦目的白光和长达5万小时的使用寿命。Osram迷你型Topled LED仅消耗0.1W功率,是市场最经济的产品之一。仅需20mA的工作电流,迷你型Topled LED即可达到色温4000K时1700mcd和色温6500K时1900mcd的典型发光强度。以坎德拉为单位的发光强度相当于一定立体角下光源发出的以流明为单位的光通量。该新一代LED得益于芯片和封装技术的进一步发展,实现了光输出的不断增长。
了解更多