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SC16C654BIB64
+BOMUART Interface IC 16CB 2.5V-5V 4CH UART 64B FIFO
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ManufacturerNXP Semiconductors
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Mfr. Part #SC16C654BIB64
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Datasheet SC16C654BIB64 DataSheet
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In Stock9596
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Specifications
| Attribute | Value |
| Packaging | Tray |
| Standard Pack Qty | 800 |
Overview
Description
The SC16C654BIB64 supports 5, 6, 7, or 8-bit character lengths, along with various stop and parity bit configurations, making it highly flexible for different communication protocols. It also includes a programmable baud rate generator and infrared (IrDA) encoder/decoder, making it versatile for a wide range of applications.
The device operates over a wide temperature range and can be interfaced with 3.3V or 5V logic levels, making it ideal for industrial, automotive, and consumer electronics applications. Its 64-pin LQFP package facilitates easy integration into complex systems.
Equivalent
1. Maxim Integrated MAX14830 - Quad UART with 128-word FIFOs.
2. Texas Instruments TL16C754B - Quad UART with 64-byte FIFO.
3. Exar (now MaxLinear) XR16C854 - Quad UART with 64-byte FIFO.
4. NXP SC28L92 - Dual UART but often considered in similar applications.
These products are suitable for applications where multiple UART channels are needed. Always verify electrical and timing characteristics for compatibility.
Features
1. Quad UART Channels: Supports up to four UART channels, allowing multiple serial data communication.
2. 64-byte FIFOs: Each channel features a 64-byte FIFO for both transmit and receive, reducing CPU overhead and improving data throughput.
3. High-Speed Data Rates: Capable of handling high-speed serial data communication, suitable for various applications.
4. Programmable Baud Rate: Offers flexible baud rate settings for compatibility with various communication protocols.
5. Auto Flow Control: Supports hardware and software flow control, including RTS/CTS (Request to Send/Clear to Send).
6. IrDA Support: Includes Infrared Data Association (IrDA) support for wireless communication.
7. Interrupt and DMA Interface: Provides interrupt-driven and direct memory access (DMA) modes for efficient data processing.
8. Low Power Operation: Designed for low power consumption, making it suitable for battery-operated devices.
9. Industrial Temperature Range: Operates over a wide temperature range, suitable for harsh environments.
10. Package Options: Available in a compact 64-lead LQFP package, making it suitable for space-constrained applications.
Pinout
Pin Count:
The SC16C654BIB64 comes in a 64-pin LQFP (Low-Profile Quad Flat Package).
Functions:
1. Quad UART Channels: Provides four independent UART channels for serial communication.
2. 64-byte FIFOs: Each channel is equipped with 64-byte transmit and receive FIFOs to support high-speed data transfer and reduce CPU overhead.
3. Baud Rate Options: Supports a wide range of baud rates for flexible communication settings.
4. Interrupts and Status Registers: Includes various interrupt features and status registers to handle data transmission efficiently.
5. Programmable Features: Offers programmable features like character length, parity, stop bits, and flow control.
6. Clock Prescaler: Comes with a clock prescaler for adjusting the input clock frequency.
7. High-Speed Operation: Capable of operation at high speeds which is suitable for demanding applications.
These features make the SC16C654BIB64 suitable for embedded systems requiring multiple serial communication channels with high efficiency and control.
Manufacturer
Application
1. Embedded Systems: Facilitates data communication between microcontrollers and peripheral devices.
2. Industrial Automation: Ensures reliable serial communication for controlling machinery and equipment.
3. Networking Equipment: Used in routers and switches for serial data transmission.
4. Telecommunications: Supports serial interfaces in modems and other communication devices.
5. Consumer Electronics: Enables communication in home automation systems and IoT devices.
6. Medical Devices: Provides data transfer capabilities in diagnostic and monitoring equipment.
These applications leverage the UART's capability to manage multiple communication channels simultaneously.