TL16C550C

활성

16바이트 FIFO 및 자동 흐름 제어를 지원하는 단일 UART

제품 상세 정보

Protocols UART Rating Catalog Operating temperature range (°C) -40 to 85
Protocols UART Rating Catalog Operating temperature range (°C) -40 to 85
PLCC (FN) 44 307.3009 mm² (17.53 mm × 17.53 mm) LQFP (PT) 48 81 mm² (9 mm × 9 mm) TQFP (PFB) 48 81 mm² (9 mm × 9 mm)
  • Programmable Auto-RTS and Auto-CTS
  • In Auto-CTSMode, CTS Controls Transmitter
  • In Auto-RTS Mode, RCV FIFO Contents and Threshold Control RTS
  • Serial and Modem Control Outputs Drive a RJ11 Cable Directly When Equipment Is on the Same Power Drop
  • Capable of Running With All Existing TL16C450 Software
  • After Reset, All Registers Are Identical to the TL16C450 Register Set
  • Up to 16-MHz Clock Rate for up to 1-Mbaud Operation
  • In the TL16C450 Mode, Hold and Shift Registers Eliminate the Need for Precise Synchronization Between the CPU and Serial Data
  • Programmable Baud Rate Generator Allows Division of Any Input Reference Clock by 1 to (216 −1) and Generates an Internal 16×Clock
  • Standard Asynchronous Communication Bits (Start, Stop, and Parity) Added to or Deleted From the Serial Data Stream
  • 5-V and 3.3-V Operation
  • Independent Receiver Clock Input
  • Transmit, Receive, Line Status, and Data Set Interrupts Independently Controlled
  • Fully Programmable Serial Interface Characteristics:
    • 5-, 6-, 7-, or 8-Bit Characters
    • Even-, Odd-, or No-Parity Bit Generation and Detection
    • 1-, 1 1/2-, or 2-Stop Bit Generation
    • Baud Generation (dc to 1 Mbit/s)
  • False-Start Bit Detection
  • Complete Status Reporting Capabilities
  • 3-State Output TTL Drive Capabilities for Bidirectional Data Bus and Control Bus
  • Line Break Generation and Detection
  • Internal Diagnostic Capabilities:
    • Loopback Controls for Communications Link Fault Isolation
    • Break, Parity, Overrun, and Framing Error Simulation
  • Fully Prioritized Interrupt System Controls
  • Modem Control Functions (CTS, RTS, DSR, DTR, RI, and DCD)
  • Programmable Auto-RTS and Auto-CTS
  • In Auto-CTSMode, CTS Controls Transmitter
  • In Auto-RTS Mode, RCV FIFO Contents and Threshold Control RTS
  • Serial and Modem Control Outputs Drive a RJ11 Cable Directly When Equipment Is on the Same Power Drop
  • Capable of Running With All Existing TL16C450 Software
  • After Reset, All Registers Are Identical to the TL16C450 Register Set
  • Up to 16-MHz Clock Rate for up to 1-Mbaud Operation
  • In the TL16C450 Mode, Hold and Shift Registers Eliminate the Need for Precise Synchronization Between the CPU and Serial Data
  • Programmable Baud Rate Generator Allows Division of Any Input Reference Clock by 1 to (216 −1) and Generates an Internal 16×Clock
  • Standard Asynchronous Communication Bits (Start, Stop, and Parity) Added to or Deleted From the Serial Data Stream
  • 5-V and 3.3-V Operation
  • Independent Receiver Clock Input
  • Transmit, Receive, Line Status, and Data Set Interrupts Independently Controlled
  • Fully Programmable Serial Interface Characteristics:
    • 5-, 6-, 7-, or 8-Bit Characters
    • Even-, Odd-, or No-Parity Bit Generation and Detection
    • 1-, 1 1/2-, or 2-Stop Bit Generation
    • Baud Generation (dc to 1 Mbit/s)
  • False-Start Bit Detection
  • Complete Status Reporting Capabilities
  • 3-State Output TTL Drive Capabilities for Bidirectional Data Bus and Control Bus
  • Line Break Generation and Detection
  • Internal Diagnostic Capabilities:
    • Loopback Controls for Communications Link Fault Isolation
    • Break, Parity, Overrun, and Framing Error Simulation
  • Fully Prioritized Interrupt System Controls
  • Modem Control Functions (CTS, RTS, DSR, DTR, RI, and DCD)

The TL16C550C and the TL16C550CI are functional upgrades of the TL16C550B asynchronous communications element (ACE), which in turn is a functional upgrade of the TL16C450. Functionally equivalent to the TL16C450 on power up (character or TL16C450 mode), the TL16C550C and the TL16C550CI, like the TL16C550B, can be placed in an alternate FIFO mode. This relieves the CPU of excessive software overhead by buffering received and transmitted characters. The receiver and transmitter FIFOs store up to 16 bytes including three additional bits of error status per byte for the receiver FIFO. In the FIFO mode, there is a selectable autoflow control feature that can significantly reduce software overload and increase system efficiency by automatically controlling serial data flow using RTS output and CTS input signals.

The TL16C550C and TL16C550CI perform serial-to-parallel conversions on data received from a peripheral device or modem and parallel-to-serial conversion on data received from its CPU. The CPU can read the ACE status at any time. The ACE includes complete modem control capability and a processor interrupt system that can be tailored to minimize software management of the communications link.

Both the TL16C550C and the TL16C550CI ACE include a programmable baud rate generator capable of dividing a reference clock by divisors from 1 to 65535 and producing a 16× reference clock for the internal transmitter logic. Provisions are included to use this 16× clock for the receiver logic. The ACE accommodates a 1-Mbaud serial rate (16-MHz input clock) so that a bit time is 1 µs and a typical character time is 10 µs (start bit, 8 data bits, stop bit).

Two of the TL16C450 terminal functions on the TL16C550C and the TL16C550CI have been changed to TXRDY and RXRDY, which provide signaling to a DMA controller.

The TL16C550C and the TL16C550CI are functional upgrades of the TL16C550B asynchronous communications element (ACE), which in turn is a functional upgrade of the TL16C450. Functionally equivalent to the TL16C450 on power up (character or TL16C450 mode), the TL16C550C and the TL16C550CI, like the TL16C550B, can be placed in an alternate FIFO mode. This relieves the CPU of excessive software overhead by buffering received and transmitted characters. The receiver and transmitter FIFOs store up to 16 bytes including three additional bits of error status per byte for the receiver FIFO. In the FIFO mode, there is a selectable autoflow control feature that can significantly reduce software overload and increase system efficiency by automatically controlling serial data flow using RTS output and CTS input signals.

The TL16C550C and TL16C550CI perform serial-to-parallel conversions on data received from a peripheral device or modem and parallel-to-serial conversion on data received from its CPU. The CPU can read the ACE status at any time. The ACE includes complete modem control capability and a processor interrupt system that can be tailored to minimize software management of the communications link.

Both the TL16C550C and the TL16C550CI ACE include a programmable baud rate generator capable of dividing a reference clock by divisors from 1 to 65535 and producing a 16× reference clock for the internal transmitter logic. Provisions are included to use this 16× clock for the receiver logic. The ACE accommodates a 1-Mbaud serial rate (16-MHz input clock) so that a bit time is 1 µs and a typical character time is 10 µs (start bit, 8 data bits, stop bit).

Two of the TL16C450 terminal functions on the TL16C550C and the TL16C550CI have been changed to TXRDY and RXRDY, which provide signaling to a DMA controller.

다운로드 스크립트와 함께 비디오 보기 비디오

관심 가지실만한 유사 제품

open-in-new 대안 비교
다른 핀 출력을 지원하지만 비교 대상 장치와 동일한 기능.
TL16C750E 활성 128바이트 FIFO 및 자동 흐름 제어를 지원하는 단일 UART Wider supply voltage support and 128 byte FIFO.

기술 자료

검색된 결과가 없습니다. 검색어를 지우고 다시 시도하세요.
2개 모두 보기
상위 문서 유형 직함 형식 옵션 최신 영어 버전 다운로드 날짜
* 데이터 시트 TL16C550C Asynchronous Communications Element with Autoflow Control datasheet (Rev. I) PDF | HTML 1994. 3. 1
Product overview UART Quick Reference Card (Rev. D) 2008. 4. 9

설계 및 개발

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시뮬레이션 모델

TL16C550C IBIS Model FN PKG

SLLC216.ZIP (3 KB) - IBIS 모델
지원되는 제품 및 하드웨어
시뮬레이션 모델

TL16C550C IBIS Model PT PKG

SLLC217.ZIP (3 KB) - IBIS 모델
지원되는 제품 및 하드웨어
패키지 CAD 기호, 풋프린트 및 3D 모델
PLCC (FN) 44 Ultra Librarian
LQFP (PT) 48 Ultra Librarian
TQFP (PFB) 48 Ultra Librarian

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