IMX477 is a 1/2.3-inch type, using 1.55um single pixel process technology to support total effective pixel 12.3 million video shooting. This new CMOS image sensor also supports Sony's exclusive SME-HDR (Spatially Multiplexed Exposure HDR) and DOL-HDR (Digital Overlap HDR) advanced image processing technologies. In addition, the image sensor can support dual sensor synchronous operation. IMX477 also uses backlit imaging technology to achieve high-quality images in low illumination.
●Características:
■Backlit stacked CMOS image sensor
■Digital overlap high dynamic range (DOL-HDR) mode with raw data output.
■Alta relação sinal-ruído (SNR).
■Resolução total a 60 fps (normal), 4K2K a 60 fps (normal), 1080p a 240 fps
▲Resolução total a 40 fps (12 bits normal), resolução total a 30 fps
■Formatos de saída de vídeo RAW12/10/8, COMP8.
■Power saving mode
■Leitura de binning de pixels e funções de subamostragem V.
■Viragem e espelho independentes.
■ Frequência de clock de entrada de 6 a 27 MHz
■Saída de dados seriais CSI-2 (MIPI 2 vias/4 vias, máx. 2,1 Gbps/via, compatível com a especificação D-PHY versão 1.2)
■Comunicação serial de 2 fios.
■Dois PLLs para geração de clock independente de controle de pixel e interface de saída de dados.
■Defective pixel correction (DPC)
■Ambient light sensor (ALS)
■Transição de modo rápido. (Em tempo real)
■Operação síncrona de sensor duplo (compatível com várias câmeras)
■ROM OTP de 7 k bits para uso do usuário.
■Sensor de temperatura integrado
■Conversão A/D de 10 bits/12 bits no chip
■Pacote cerâmico de alta precisão de 92 pinos
Dogoozx customized IMX477 camera module:
-
Dogoozx 8mp 12mp IMX415 IMX377 IMX477 IMX577 Cmos AF FF para módulo de câmera sony imx 4k 2K
-
Dogoozx 12MP 4K2K 1080P 240fps video capture WDR IMX577 IMX477 drone camera module MIPI
-
The Raspberry Pi high-end camera module is now available
-
IMX477 camera image sensor FAQ
-
1. What type of image sensor is IMX477?
-
A: IMX477 is a backlit stacking CMOS image sensor using 1.55um single-pixel process technology, with 12.3 million total effective pixels and supports video shooting.
-
2. What advanced image processing technologies does IMX477 support?
-
A: IMX477 also supports Sony's exclusive SME-HDR (partitioned high dynamic range exposure) and DOL-HDR (digital overlap high dynamic) advanced image processing technologies, which can provide excellent image quality.
-
3. What are the main performance features of IMX477?
-
A: The main performance features of IMX477 include:
-
High signal-to-noise ratio: up to 60 frames per second at full resolution, supporting 4K2K@60 frames per second and 1080p@240 frames per second shooting.
-
High dynamic range: DOL-HDR mode supports wider dynamic range.
-
Multiple output formats: supports multiple video formats such as raw12/10/8, COMP8.
-
Flexible functions: including independent flip and mirror, fast mode conversion, pixel bin, readout and V sub-sampling functions.
-
Environmental adaptability: built-in ambient light sensor and temperature sensor, supporting dual sensor synchronous operation.
-
4. In what fields is IMX477 widely used?
-
A: With its excellent performance and special features, IMX477 is widely used in many fields, including but not limited to:
-
Intelligent monitoring: through the collaborative work of multiple sensors, it provides more comprehensive and stable image output.
-
Security system: adapt to complex environments and improve monitoring effects.
-
Unmanned driving: powerful environmental perception capabilities, assisting autonomous driving technology.
-
Smartphone: improve the quality of photo and video recording.
-
Medical imaging: Provide high-resolution image support in the medical field.
-
Aerial photography: Meet the needs of professional photography and capture wonderful moments.
-
5. What are the packaging methods of IMX477?
-
Answer: The packaging method of IMX477 depends on the specific product design and application scenario. Common packaging methods include:
-
LGA (Land Grid Array): The pins are arranged in a square array with a high pin density.
-
BGA (Ball Grid Array): The pins are arranged in a spherical array, which is easy to manufacture and install.
-
CSP (Chip Scale Package): The pins are directly connected to the chip itself, the package is compact but difficult to manufacture and install.
-
6. What common problems may IMX477 encounter during use?
-
Answer: The problems that IMX477 may encounter during use include but are not limited to:
-
Image noise: In low-light environments, there may be an increase in noise, which can be improved by adjusting the gain and exposure parameters.
-
Color distortion: Color distortion may occur due to factors such as light and color temperature, which can be corrected by adjusting the white balance.
-
Autofocus problem: Autofocus may be affected by factors such as ambient light and object movement, resulting in inaccurate focus or slow speed.
-
Overheating problem: Long-term use may cause the sensor to overheat, affecting image quality and stability. Pay attention to heat dissipation and temperature control.
-
-
7. How to solve the overheating problem of IMX477?
-
Answer: Solving the overheating problem of IMX477 can start from the following aspects:
-
Optimize heat dissipation design: Ensure that there is enough heat dissipation space around the sensor, and use efficient heat dissipation materials and technologies.
-
Control usage time: Avoid long-term continuous use and take a proper rest to reduce the temperature.
-
Adjust the working environment: Try to avoid using it in harsh environments such as high temperature and humidity.
-
Software optimization: Adjust the working state of the sensor through software algorithms to reduce power consumption and heat generation.