NE2D_BW_V90F2.7_NB2M Allicdata Electronics
Allicdata Part #:

NE2D_BW_V90F2.7_NB2M-ND

Manufacturer Part#:

NE2D_BW_V90F2.7_NB2M

Price: $ 0.00
Product Category:

Sensors, Transducers

Manufacturer: ams
Short Description: IMAGE SENSOR 250HX250V 2M CABLE
More Detail: Image Sensor 250H x 250V 3µm x 3µm
DataSheet: NE2D_BW_V90F2.7_NB2M datasheetNE2D_BW_V90F2.7_NB2M Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: NanEye
Part Status: Obsolete
Type: --
Pixel Size: 3µm x 3µm
Active Pixel Array: 250H x 250V
Frames per Second: 55
Voltage - Supply: 1.8 V ~ 2.4 V
Operating Temperature: 0°C ~ 60°C
Description

Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us:   sales@allicdata.com

Image Sensors, Camera and NE2D_BW_V90F2.7_NB2M are technologies used in industrial automation, surveillance, automotive and many other applications. To understand the application field and working principle of NE2D_BW_V90F2.7_NB2M, one must have an understanding of how this technology functions.

NE2D_BW_V90F2.7_NB2M stands for Net-Enhanced Two Dimensional_Black and White_Voltage 90F2.7_Nano-Byte 2 Mega. It is an image sensor and camera technology that is used in many applications. It combines the use of advanced light and image sensors with digital imaging to provide resolution that is higher than traditional analog CCD and CMOS cameras. Along with resolution, this technology also provides better dynamic range, low noise, and improved low-light performance.

Image sensors are typically used in cameras, ranging from consumer to professional models. The primary role of image sensors is to capture light and process it to create an image. Most modern image sensors are either CMOS (Complementary Metal-Oxide-Semiconductor) or CCD (Charged Coupled Device). CCD sensors, which have traditionally been the most popular type of image sensor, generate an electrical charge for each pixel in the sensor, which the processor then converts into digital data, which in turn is sent to the camera.

CMOS sensors use less power than CCD sensors, but they produce a lower quality image. This is because CMOS sensors use the same sensor for both the capture and readout stages, resulting in lower resolution images. Since NE2D_BW_V90F2.7_NB2M utilizes both types of sensors, it provides better performance thanonly one of the two types.

NE2D_BW_V90F2.7_NB2M has a number of advantages over traditional image sensors. One of the biggest advantages is the high image quality and resolution. The binning process combines the pixels into larger units, allowing for smaller pixels to capture more light. This produces much higher resolution images than analog cameras.

In addition, NE2D_BW_V90F2.7_NB2M has a much lower power consumption. Since it does not require the traditional analog wiring, it does not need power to be drawn for the signal processing from the incandescent lamps. This allows the image sensor to be powered by batteries or solar panels. This makes the technology particularly useful in applications where low power is a must.

The working of NE2D_BW_V90F2.7_NB2M utilizes the properties of two image sensors. One of the sensors is used to capture the light falling on the area of interest. After this, the data from this sensor is processed and combined with the other image sensor. This is done to take advantage of the improved low-light performance, dynamic range, and resolution.

The combination of these two sensors then creates the finished image. Some of the benefits of this technology include lower noise, improved dynamic range, higher resolution, and improved low-light performance. All of these are the results of the combination of an analog sensor and digital image processing.

NE2D_BW_V90F2.7_NB2M technology is used in many industrial automation, surveillance, automotive and industrial applications. It is an image sensor and camera technology that gives superior resolution and image quality. This technology has a low power consumption, making it ideal for applications where power is limited. Its combination of an analog sensor and digital image processing allows it to produce higher resolution images and better dynamic range and low-light performance.

The specific data is subject to PDF, and the above content is for reference

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