Allicdata Part #: | NOII5FM1300A-QDC-ND |
Manufacturer Part#: |
NOII5FM1300A-QDC |
Price: | $ 0.00 |
Product Category: | Sensors, Transducers |
Manufacturer: | ON Semiconductor |
Short Description: | SENSOR IMAGE 1.3MP CMOS 84-LCC |
More Detail: | CMOS Image Sensor 1280H x 1024V 6.7µm x 6.7µm 84-L... |
DataSheet: | NOII5FM1300A-QDC Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Series: | -- |
Packaging: | Tray |
Part Status: | Obsolete |
Type: | CMOS |
Pixel Size: | 6.7µm x 6.7µm |
Active Pixel Array: | 1280H x 1024V |
Frames per Second: | 27 |
Voltage - Supply: | 3 V ~ 4.5 V |
Package / Case: | 84-LCC |
Supplier Device Package: | 84-LCC (18x18) |
Operating Temperature: | -30°C ~ 65°C (TJ) |
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Image sensors, cameras, and products of optics such as lens, filters, and mirrors, are the driving forces of various modern imaging systems used in surveillance, space exploration, and other applications. The NOII5FM1300A-QDC is one such product in the NOII image sensor series developed by IQT Solutions Inc. of the United States. The chip provides high-performance imaging, high frame-rates, and low-light operation. This article will discuss its application fields and working principle.
Application Fields
The NOII5FM1300A-QDC is the primary imaging device in the NOII series, and is widely used in both terrestrial and space-borne applications. The device is highly suited for applications in surveillance, industrial automation, and medical imaging. It is also beneficial for image stitching, near infrared imaging, space exploration, and other imaging tasks.
The device features a high dynamic range, which enables it to capture detailed images in challenging lighting conditions. The chip\'s low read-out noise allows for clear, noise-free image capture in low-light settings. The device\'s on-chip stabilization further enhances image quality, as it compensates for vibrations and movements associated with various motion-based applications.
The NOII5FM1300A-QDC can also be used in a wide range of tasks, such as location-based services, navigation, and line-scanning. Its array of integrated features also allows it to be used in applications involving low latency video streaming, image recognition, and object detection.
Working Principle
The NOII5FM1300A-QDC employs a matrix of photodiodes, or \'pixels\', which gather incoming light and convert it into digital signals. The pixel array is split into four separate quadrants, or QDCs, which are each processed separately. This allows for more efficient signal processing, as each QDC is allocated its own dedicated portion of the chip\'s on-board memory. The advantage of this architecture is that the chip can effectively function as four separate image sensors, each with its own set of data.
The device also includes an advanced multi-frame averaging algorithm, which allows it to capture a sequence of images and use them to make adjustments to image noise and other disturbances. The algorithm combines the data from the multiple frames to form a much clearer image, allowing for more accurate detection of motion and other features.
The NOII5FM1300A-QDC has an onboard ADC, which allows the chip to digitize the analog signals it receives. The ADC is capable of capturing high-resolution images with minimal signal distortion, and can be synchronized with the camera\'s own functioning. This allows the chip to accurately capture images in real-time, without needing to wait for data from the previous frame to arrive.
Conclusion
The NOII5FM1300A-QDC is a versatile image sensor designed for a wide range of applications. With its low read-out noise, high dynamic range, and on-chip stabilization, the device is ideal for surveillance, industrial automation, medical imaging, and other imaging tasks. Its wide range of features also allows it to be used in a variety of tasks such as location-based services, navigation, and line-scanning. The device\'s multi-frame averaging algorithm further improves image quality and accuracy. With its array of features and capabilities, the NOII5FM1300A-QDC is a powerful imaging device.
The specific data is subject to PDF, and the above content is for reference
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