DS90C383B

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+3.3V 可编程 LVDS 发送器 24 位平板显示器 (FPD) 链路 - 65MHz

产品详情

Applications In-vehicle Infotainment (IVI) Input compatibility LVCMOS Function Serializer Output compatibility FPD-Link LVDS Color depth (bpp) 24 Features Low-EMI Point-to-Point Communication Rating Catalog Operating temperature range (°C) -10 to 70
Applications In-vehicle Infotainment (IVI) Input compatibility LVCMOS Function Serializer Output compatibility FPD-Link LVDS Color depth (bpp) 24 Features Low-EMI Point-to-Point Communication Rating Catalog Operating temperature range (°C) -10 to 70
TSSOP (DGG) 56 113.4 mm² (14 mm × 8.1 mm)
  • No special start-up sequence required between clock/data and /PD pins. Input signal (clock and data) can be applied either before or after the device is powered
  • Support Spread Spectrum Clocking up to 100kHz frequency modulation and deviations of ±2.5% center spread or -5% down spread
  • "Input Clock Detection" feature will pull all LVDS pairs to logic low when input clock is missing and when /PD pin is logic high
  • 18 to 68 MHz shift clock support
  • Best-in-Class Setup and Hold Times on TxINPUTs
  • Tx power consumption < 130 mW (typ) at 65MHz Grayscale
  • 40% Less Power Dissipation than BiCMOS Alternatives
  • Tx Power-down mode < 60μW (typ)
  • Supports VGA, SVGA, XGA and Dual Pixel SXGA.
  • Narrow bus reduces cable size and cost
  • Up to 1.8 Gbps throughput
  • Up to 227 Megabytes/sec bandwidth
  • 345 mV (typ) swing LVDS devices for low EMI
  • PLL requires no external components
  • Compatible with TIA/EIA-644 LVDS standard
  • Low profile 56-lead TSSOP package
  • Improved replacement for:
    • SN75LVDS83, DS90C383A

All trademarks are the property of their respective owners. TRI-STATE is a trademark of Texas Instruments. TRI-STATE is a trademark of Texas Instruments.

  • No special start-up sequence required between clock/data and /PD pins. Input signal (clock and data) can be applied either before or after the device is powered
  • Support Spread Spectrum Clocking up to 100kHz frequency modulation and deviations of ±2.5% center spread or -5% down spread
  • "Input Clock Detection" feature will pull all LVDS pairs to logic low when input clock is missing and when /PD pin is logic high
  • 18 to 68 MHz shift clock support
  • Best-in-Class Setup and Hold Times on TxINPUTs
  • Tx power consumption < 130 mW (typ) at 65MHz Grayscale
  • 40% Less Power Dissipation than BiCMOS Alternatives
  • Tx Power-down mode < 60μW (typ)
  • Supports VGA, SVGA, XGA and Dual Pixel SXGA.
  • Narrow bus reduces cable size and cost
  • Up to 1.8 Gbps throughput
  • Up to 227 Megabytes/sec bandwidth
  • 345 mV (typ) swing LVDS devices for low EMI
  • PLL requires no external components
  • Compatible with TIA/EIA-644 LVDS standard
  • Low profile 56-lead TSSOP package
  • Improved replacement for:
    • SN75LVDS83, DS90C383A

All trademarks are the property of their respective owners. TRI-STATE is a trademark of Texas Instruments. TRI-STATE is a trademark of Texas Instruments.

The DS90C383B transmitter converts 28 bits of CMOS/TTL data into four LVDS (Low Voltage Differential Signaling) data streams. A phase-locked transmit clock is transmitted in parallel with the data streams over a fifth LVDS link. Every cycle of the transmit clock 28 bits of input data are sampled and transmitted. At a transmit clock frequency of 65 MHz, 24 bits of RGB data and 3 bits of LCD timing and control data (FPLINE, FPFRAME, DRDY) are transmitted at a rate of 455 Mbps per LVDS data channel. Using a 65 MHz clock, the data throughput is 227 Mbytes/sec. The DS90C383B transmitter can be programmed for Rising edge strobe or Falling edge strobe through a dedicated pin. A Rising edge or Falling edge strobe transmitter will interoperate with a Falling edge strobe Receiver (DS90CF386) without any translation logic.

This chipset is an ideal means to solve EMI and cable size problems associated with wide, high speed TTL interfaces.

The DS90C383B transmitter converts 28 bits of CMOS/TTL data into four LVDS (Low Voltage Differential Signaling) data streams. A phase-locked transmit clock is transmitted in parallel with the data streams over a fifth LVDS link. Every cycle of the transmit clock 28 bits of input data are sampled and transmitted. At a transmit clock frequency of 65 MHz, 24 bits of RGB data and 3 bits of LCD timing and control data (FPLINE, FPFRAME, DRDY) are transmitted at a rate of 455 Mbps per LVDS data channel. Using a 65 MHz clock, the data throughput is 227 Mbytes/sec. The DS90C383B transmitter can be programmed for Rising edge strobe or Falling edge strobe through a dedicated pin. A Rising edge or Falling edge strobe transmitter will interoperate with a Falling edge strobe Receiver (DS90CF386) without any translation logic.

This chipset is an ideal means to solve EMI and cable size problems associated with wide, high speed TTL interfaces.

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顶层文档 类型 标题 格式选项 下载最新的英语版本 日期
* 数据表 DS90C383B 3.3V Prog LVDS Trans 24-Bit FPD Link-65 MHz 数据表 (Rev. G) 2013-4-17
应用手册 High-Speed Layout Guidelines for Reducing EMI for LVDS SerDes Designs 2018-11-9
应用手册 How to Map RGB Signals to LVDS/OpenLDI(OLDI) Displays (Rev. A) 2018-6-29
应用手册 AN-1032 An Introduction to FPD-Link (Rev. C) 2017-8-8
应用手册 Receiver Skew Margin for Channel Link I and FPD Link I Devices PDF | HTML 2016-1-13
应用手册 TFT Data Mapping for Dual Pixel LDI Application - Alternate A - Color Map 2004-5-15
应用手册 AN-1056 STN Application Using FPD-Link 2004-5-14
应用手册 AN-1085 FPD-Link PCB and Interconnect Design-In Guidelines 2004-5-14

设计与开发

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参考设计

TIDA-01051 — 针对自动测试设备优化 FPGA 利用率和数据吞吐量的参考设计

TIDA-01051 参考设计用于演示超高通道数的数据采集 (DAQ) 系统(如用在自动测试设备 (ATE) 中的系统)经过优化的通道密度、集成、功耗、时钟分配和信号链性能。利用串行器(如 TI DS90C383B)将多个同步采样 ADC 输出与多个 LVDS 线路相结合,可显著减少主机 FPGA 必须处理的引脚数量。  因此,单个 FPGA 可处理的 DAQ 通道数量显著增加,而且电路板布线的复杂度大幅降低。
支持的产品和硬件
封装 引脚 CAD 符号、封装和 3D 模型
TSSOP (DGG) 56 Ultra Librarian

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