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STM32U535NET6QTR 数据表(PDF) 67 Page - STMicroelectronics |
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STM32U535NET6QTR 数据表(HTML) 67 Page - STMicroelectronics |
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67 / 278 page ![]() DS14217 Rev 1 67/278 STM32U535xx Functional overview 84 3.31 Digital camera interface (DCMI) The DCMI is a synchronous parallel interface able to receive a high-speed data flow from an external 8-, 10-, 12- or 14-bit CMOS camera module. It supports different data formats: YCbCr4:2:2/RGB565 progressive video and compressed data (JPEG). This interface is for use with black and white cameras, X24 and X5 cameras, and it is assumed that all preprocessing such as resizing is performed in the camera module. The DCMI features are: • 8-, 10-, 12- or 14-bit parallel interface • Embedded/external line and frame synchronization • Continuous or snapshot mode • Crop feature • Supports the following data formats: – 8/10/12/14-bit progressive video: either monochrome or raw Bayer – YCbCr 4:2:2 progressive video – RGB 565 progressive video – Compressed data: JPEG 3.32 Parallel synchronous slave interface (PSSI) The PSSI and the DCMI use the same circuitry. As a result, these two peripherals cannot be used at the same time: when using the PSSI, the DCMI registers cannot be accessed, and vice versa. In addition, the PSSI and the DCMI share the same alternate functions and the same interrupt vector. The PSSI is a generic synchronous 8-/16-bit parallel data input/output slave interface. It enables the transmitter to send a data valid signal that indicates when the data is valid, and the receiver to output a flow control signal that indicates when it is ready to sample the data. The PSSI peripheral main features are the following: • Slave mode operation • 8-bit or 16-bit parallel data input or output • 4-word (16-byte) FIFO • Data enable (PSSI_DE) alternate function input and ready (PSSI_RDY) alternate function output When selected, these inputs can either enable the transmitter to indicate when the data is valid, or allow the receiver to indicate when it is ready to sample the data, or both. 3.33 Touch sensing controller (TSC) The TSC provides a simple solution to add capacitive sensing functionality to any application. A capacitive sensing technology is able to detect finger presence near an electrode that is protected from direct touch by a dielectric (such as glass or plastic). The capacitive variation introduced by the finger (or any conductive object) is measured using a proven implementation based on a surface charge transfer acquisition principle. |
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