Allicdata Part #: | FLV-DR7030IR-ND |
Manufacturer Part#: |
FLV-DR7030IR |
Price: | $ 0.69 |
Product Category: | Industrial Controls |
Manufacturer: | Omron Automation and Safety |
Short Description: | DIRECT RING 70MM 30DEG IR |
More Detail: | N/A |
DataSheet: | FLV-DR7030IR Datasheet/PDF |
Quantity: | 1000 |
1 +: | $ 0.63000 |
Series: | * |
Part Status: | Active |
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Machine Vision - Lighting is a branch of the robotics industry that involves using specialized software in combination with cameras and lighting to find solutions to recognize objects and read information. One such technology is the FLV-DR7030IR application field and working principle. This article will explore the application field and working principle of FLV-DR7030IR.
Overview
FLV-DR7030IR is a high-quality infrared (IR) imaging system that can be used in a variety of applications. It features a high-resolution CMOS sensor and 40mW of infrared illumination, making it ideal for a range of uses including surveillance, industrial automation, medical imaging, and mobile robots. The system is lightweight, rugged, and easy to use, offering up to 15x digital zoom and onboard software to facilitate quick set-up and imaging.
Application field
FLV-DR7030IR is an ideal solution for a range of applications where imaging in low-light or extreme environments is necessary. This includes surveillance, industrial automation, medical imaging, and mobile robots. It is also suitable for applications where high-resolution imaging is required, such as facial recognition or object tracking. By utilizing the 40mW of infrared illumination, the system is capable of producing clear, detailed images even in complete darkness.
Within the surveillance category, FLV-DR7030IR can be used for property, perimeter, and facial recognition. Its ability to detect movement and capture images even in complete darkness means that objects and people can be identified and monitored more effectively. In industrial automation, it can be used to inspect objects, identify defects, and detect and recognize objects. Its high-resolution imaging capabilities make it perfect for object tracking, vision guidance, and robotic guidance systems.
In the medical field, the system can be used to visually inspect skin abnormalities, detect and track tumors, and monitor wound healing. The 40mW of infrared yield detailed images even in complete darkness, allowing medical practitioners to detect and identify subtle irregularities. In the mobile robotics field, the FLV-DR7030IR can be used to identify objects, determine their position, and ensure the robot is on the right path.
Working Principle
The FLV-DR7030IR system is based on CMOS technology, which utilizes a high-resolution sensor and 40mW of infrared illumination. This combination yields detailed images even in complete darkness. The built-in digital zoom can be used to capture a range of detail with the same accuracy, from 10 to 15 times. The system also features an onboard processor to enhance the image quality, processing time, and reduce the overall system power consumption. The processor works in tandem with the 40mW of infrared illumination to deliver clear, detailed images.
The CMOS-based imaging system is much more efficient than traditional CCD-based systems, offering considerable advantages in terms of size, power consumption, and cost. FLV-DR7030IR is also extremely robust, having been tested under a variety of conditions to ensure it will stand up to the rigors of industrial use. Additionally, it is easy to set up and configure, allowing for quick deployment without the need for extensive programming.
Conclusion
The FLV-DR7030IR system is an ideal solution for applications involving low-light or extreme environments. Its high-resolution CMOS sensor and 40mW of infrared illumination provide detailed images, even in complete darkness. It is lightweight, rugged, and easy to use, and offers up to 15x digital zoom with onboard software for quick setup and imaging. With its built-in processor, FLV-DR7030IR is much more efficient than traditional CCD-based systems, offering considerable advantages in terms of size, power consumption, and cost. It is suitable for surveillance, industrial automation, medical imaging, and mobile robotics applications.
The specific data is subject to PDF, and the above content is for reference
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