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Key Parameters and Features of SC28L92A1BS,528:
1. UART Functionality: The SC28L92A1BS,528 includes two UART channels, making it suitable for dual communication or multiplexed data transmission.
2. Baud Rate Control: It supports programmable baud rates, allowing for flexible data transfer speeds.
3. FIFO Buffers: This IC features FIFO (First-In-First-Out) buffers for both transmission and reception, enabling smoother data flow and reducing the risk of data loss during high-speed communication.
4. Programmable Logic Levels: The IC allows you to configure the logic levels (TTL or CMOS) for compatibility with various microcontrollers and devices.
5. Hardware Flow Control: It supports hardware flow control mechanisms like RTS (Request to Send) and CTS (Clear to Send) to manage data flow between devices.
6. Low Power Consumption: The SC28L92A1BS,528 is designed with low power consumption in mind, making it suitable for battery-powered applications.
Application Scenario: UART Communication in an Industrial Sensor Node
In an industrial sensor node, the SC28L92A1BS,528 can be employed to facilitate communication between multiple sensors and a central control unit. Below is a detailed circuit connection example:
Note: In this example, we'll focus on one of the UART channels.
Circuit Connection:
- SC28L92A1BS,528 Pinout:
- Pin 1 (VCC) - Connect to the power supply voltage (e.g., +3.3V).
- Pin 2 (GND) - Connect to the ground (0V).
- Pin 3 (TXD) - Connect to the transmit data pin of the sensor node microcontroller.
- Pin 4 (RXD) - Connect to the receive data pin of the sensor node microcontroller.
- Pin 5 (RTS) - Optionally connect to the Request to Send pin of the microcontroller for hardware flow control.
- Pin 6 (CTS) - Optionally connect to the Clear to Send pin of the microcontroller for hardware flow control.
- Pin 7 (DTR) - Not used in this scenario.
- Pin 8 (DSR) - Not used in this scenario.
- Pin 9 (DCD) - Not used in this scenario.
- Pin 10 (RI) - Not used in this scenario.
Design Considerations:
1. Baud Rate Selection: Ensure that the baud rate configured in the SC28L92A1BS,528 matches the baud rate settings in the microcontroller firmware to enable proper communication.
2. Voltage Levels: Confirm that the logic levels (TTL or CMOS) of the SC28L92A1BS,528 are compatible with those of the microcontroller.
3. FIFO Buffer Management: Properly configure and manage the FIFO buffers to prevent data overflow or underflow.
4. Flow Control: If required, set up hardware flow control using the RTS and CTS pins to manage data flow between the sensor node and the central control unit.
By addressing these considerations and following the specified connections, you can establish reliable UART communication in an industrial sensor node using the SC28L92A1BS,528.
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