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ST16C2550 Datasheet (PDF) - Exar Corporation

ST16C2550 Datasheet PDF - Exar Corporation
Part # ST16C2550
Download  ST16C2550 Download

File Size   443.31 Kbytes
Page   34 Pages
Manufacturer  EXAR [Exar Corporation]
Direct Link  http://www.exar.com
Logo EXAR - Exar Corporation
Description DUAL UART WITH 16-BYTE TRANSMIT AND RECEIVE FIFOS

ST16C2550 Datasheet (PDF)

Go To PDF Page Download Datasheet
ST16C2550 Datasheet PDF - Exar Corporation

Part # ST16C2550
Download  ST16C2550 Click to download

File Size   443.31 Kbytes
Page   34 Pages
Manufacturer  EXAR [Exar Corporation]
Direct Link  http://www.exar.com
Logo EXAR - Exar Corporation
Description DUAL UART WITH 16-BYTE TRANSMIT AND RECEIVE FIFOS

ST16C2550 Datasheet (HTML) - Exar Corporation

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ST16C2550 Product details

GENERAL DESCRIPTION

The ST16C2550 (C2550) is a dual universal asynchronous receiver and transmitter (UART). The ST16C2550 is an improved version of the PC16550 UART with higher operating speed and faster access times. The C2550 provides enhanced UART functions with 16 byte FIFO’s, a modem control interface, and data rates up to 4 Mbps. Onboard status registers provide the user with error indications and operational status. System interrupts and modem control features may be tailored by external software to meet specific user requirements. Independent programmable baud rate generators are provided to select transmit and receive clock rates from 50 bps to 4 Mbps. The Baud Rate Generator can be configured for either crystal or external clock input. An internal loopback capability allows onboard diagnostics. The C2550 is available in a 44-pin PLCC and 48-pin TQFP packages. The C2550 is fabricated in an advanced CMOS process capable of operating from 2.97 volt to 5.5 volt power supply.



FEATURES

Added feature in devices with top mark date code of "A2 YYWW" and newer:

   ■ 5 Volt Tolerant Inputs

• Pin-to-pin compatible to Exar’s ST16C2450, XR16L2550 and XR16L2750

• Pin-to-pin compatible to TI’s TL16C752B on the 48- TQFP package

• Pin alike XR16C2850 48-TQFP package but without CLK8/16, CLKSEL and HDCNTL inputs

• 2 independent UART channels

   ■ Up to 4 Mbps with external clock of 64 MHz

   ■ Up to 1.5 Mbps data rate with a 24 MHz crystal frequency

   ■ 16 byte Transmit FIFO to reduce the bandwidth requirement of the external CPU

   ■ 16 byte Receive FIFO with error tags to reduce the bandwidth requirement of the external CPU

   ■ 4 selectable Receive FIFO interrupt trigger levels

   ■ Modem control signals (CTS#, RTS#, DSR#, DTR#, RI#, CD#)

   ■ Programmable character lengths (5, 6, 7, 8) with even, odd, or no parity

• Crystal oscillator or external clock input

• 48-TQFP and 44-PLCC packages



APPLICATIONS

• Portable Appliances

• Telecommunication Network Routers

• Ethernet Network Routers

• Cellular Data Devices

• Factory Automation and Process Controls



 



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About Exar Corporation


Exar Corporation is a semiconductor company that designs and manufactures a wide range of high-performance analog and mixed-signal integrated circuits (ICs). Their products are used in a variety of applications, including communications, networking, industrial, automotive, and consumer electronics.

Exar's portfolio includes analog-to-digital converters (ADCs), digital-to-analog converters (DACs), amplifiers, power management ICs, interface ICs, and timing and synchronization ICs. They also offer customized solutions for customers with unique requirements.

Exar has a long history in the semiconductor industry, with more than 40 years of experience. They are known for their expertise in signal conditioning and power management, and have a reputation for delivering high-quality, reliable products.

In 2017, Exar was acquired by MaxLinear, a leading provider of RF and mixed-signal ICs. The acquisition allowed MaxLinear to expand its product portfolio and strengthen its position in the data center and networking markets.

*This information is for general informational purposes only, we will not be liable for any loss or damage caused by the above information.




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