AR0135CS2C00SUEA0-DPBR1
Product Category: Image Sensor
Basic Information Overview: - Category: Image Sensor - Use: Used in digital cameras, smartphones, and other imaging devices to capture high-quality images. - Characteristics: High resolution, low-light sensitivity, low power consumption. - Package: Surface-mount package - Essence: Capturing high-resolution images with low noise and high dynamic range. - Packaging/Quantity: Typically packaged in reels of 1000 units.
Specifications: - Resolution: 1.2 Megapixels - Pixel Size: 3 µm - Output Format: RAW RGB - Frame Rate: 60 fps - Power Consumption: 120 mW - Operating Temperature: -30°C to 85°C
Detailed Pin Configuration: - Pin 1: VDD - Pin 2: SCL - Pin 3: SDA - Pin 4: GND - Pin 5: DOUT - Pin 6: RESET - Pin 7: PCLK - Pin 8: HSYNC - Pin 9: VSYNC
Functional Features: - High sensitivity in low-light conditions - On-chip noise reduction - Integrated image signal processor - Low power consumption
Advantages and Disadvantages: - Advantages: - High resolution - Low-light sensitivity - Low power consumption - On-chip noise reduction - Disadvantages: - Limited frame rate compared to higher-end sensors - Restricted operating temperature range
Working Principles: The AR0135CS2C00SUEA0-DPBR1 operates on the principle of capturing light through its array of pixels, converting it into electrical signals, and processing the signals to produce a high-quality image. Its low-light sensitivity is achieved through advanced pixel design and on-chip noise reduction techniques.
Detailed Application Field Plans: - Digital cameras - Smartphones - Surveillance cameras - Automotive vision systems - Industrial imaging
Detailed and Complete Alternative Models: - Sony IMX214 - OmniVision OV5647 - Samsung S5K4E6
This concludes the entry for AR0135CS2C00SUEA0-DPBR1, covering its category, basic information overview, specifications, pin configuration, functional features, advantages and disadvantages, working principles, detailed application field plans, and alternative models.
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What is the AR0135CS2C00SUEA0-DPBR1 sensor used for?
What are the key features of the AR0135CS2C00SUEA0-DPBR1 sensor?
How does the AR0135CS2C00SUEA0-DPBR1 sensor perform in low-light conditions?
What interfaces does the AR0135CS2C00SUEA0-DPBR1 sensor support?
Can the AR0135CS2C00SUEA0-DPBR1 sensor be used for autonomous vehicle applications?
What are the power requirements for the AR0135CS2C00SUEA0-DPBR1 sensor?
Is the AR0135CS2C00SUEA0-DPBR1 sensor compatible with image processing algorithms?
What are the typical operating temperature ranges for the AR0135CS2C00SUEA0-DPBR1 sensor?
Does the AR0135CS2C00SUEA0-DPBR1 sensor offer any built-in image stabilization features?
Are there any known compatibility issues with integrating the AR0135CS2C00SUEA0-DPBR1 sensor into specific hardware platforms?