NOIL1SM0300A-QDC Allicdata Electronics
Allicdata Part #:

NOIL1SM0300A-QDCOS-ND

Manufacturer Part#:

NOIL1SM0300A-QDC

Price: $ 134.16
Product Category:

Sensors, Transducers

Manufacturer: ON Semiconductor
Short Description: IC IMAGE SENSOR LUPA300 48LLC
More Detail: CMOS Image Sensor 640H x 480V 9.9µm x 9.9µm 48-LCC...
DataSheet: NOIL1SM0300A-QDC datasheetNOIL1SM0300A-QDC Datasheet/PDF
Quantity: 285
1 +: $ 121.96800
5 +: $ 114.34500
10 +: $ 110.53400
25 +: $ 106.72200
50 +: $ 104.81700
Stock 285Can Ship Immediately
$ 134.16
Specifications
Series: --
Packaging: Tray 
Part Status: Active
Type: CMOS
Pixel Size: 9.9µm x 9.9µm
Active Pixel Array: 640H x 480V
Frames per Second: 250
Voltage - Supply: 2.5 V, 3.3 V
Package / Case: 48-LQFN
Supplier Device Package: 48-LCC (14.22x14.22)
Operating Temperature: -40°C ~ 70°C (TJ)
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 and cameras are devices used to capture static or dynamic images and provide spatial information about physical objects in a certain field. NOIL1SM0300A-QDC is an image sensor with an array of CCD (charge-coupled device) pixels. It has an active imaging plane and an array of pixels for recording incident light. By cycling charges through its pixels, it can convert incident light into electric charges.

NOIL1SM0300A-QDC has a wide range of application fields. It is widely used in surveillance cameras, medical imaging, commercial aerial photography, machine vision, and robotic vision etc. It is also used for capturing images in low light conditions, such as in fluorescent labs and night clubs, due to its high sensitivity. Moreover, NOIL1SM0300A-QDC is suitable for advanced image processing systems and provides a better noise performance than other image sensors.

The working principle of NOIL1SM0300A-QDC is very similar to other CCD image sensors. Incident light entering through an aperture is a converted into an electric charge by the sensor\'s CCD pixels. The charges are then readout through a single output line. This output is further digitized, either by an analog-to-digital converter or a charge-coupled device analog-to-digital converter, depending on the specific application.

The charge produced by the CCD pixels is transferred to the output via several different phases. In the first phase, the charges are shifted to the output register. In the second phase, the triggered reset pulse is used to restore the CCD pixels to a preset voltage, thus allowing the charge to be shifted into the output register. In the third phase, the charge is shifted from the output register to its output line for digitization. The fourth phase of the operation is the clocking phase, which is used to ensure that the output data is properly biased. Finally, the output line is digitized and the digital signal is sent to other components for further data processing.

The performance of NOIL1SM0300A-QDC is excellent due to its low noise and high sensitivity. It is characterized by a pixel size of 6.8μm, a dynamic range of 70dB, and a sensitivity of 512 mV/lux-sec. These features allow for the capture of images in low light environments and provide better image processing performance than other CCD image sensors. It is also compatible with many camera mounts, making it a versatile and flexible option for a broad variety of imaging applications.

In conclusion, NOIL1SM0300A-QDC is an advanced CCD image sensor with low noise and high sensitivity. It has a wide range of applications and is compatible with many camera mounts. Its working principle is also similar to other CCD image sensors, using charge-coupled devices for pixel conversion and output digitalization. The performance of NOIL1SM0300A-QDC is excellent and makes it an excellent choice for image processing systems.

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

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