SN65LVDS389

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八路 LVDS 驱动器

产品详情

Function Driver Protocols LVDS Number of transmitters 8 Number of receivers 0 Supply voltage (V) 3.3 Signaling rate (MBits) 630 Input signal LVTTL Output signal LVDS Rating Catalog Operating temperature range (°C) -40 to 85
Function Driver Protocols LVDS Number of transmitters 8 Number of receivers 0 Supply voltage (V) 3.3 Signaling rate (MBits) 630 Input signal LVTTL Output signal LVDS Rating Catalog Operating temperature range (°C) -40 to 85
TSSOP (DBT) 38 62.08 mm² 9.7 x 6.4
  • Four (’391), Eight (’389), or Sixteen (’387) Line
    Drivers Meet or Exceed the Requirements of ANSI
    EIA/TIA-644 Standard
  • Designed for Signaling Rates Up to 630 Mbps
    With Very Low Radiation (EMI)
  • Low-Voltage Differential Signaling With Typical
    Output Voltage of 350 mV and a 100-Ω Load
  • Propagation Delay Times Less Than 2.9 ns
  • Output Skew Is Less Than 150 ps
  • Part-to-Part Skew Is Less Than 1.5 ns
  • 35-mW Total Power Dissipation in Each Driver
    Operating at 200 MHz
  • Driver Is High-Impedance When Disabled or With
    VCC < 1.5 V
  • SN65’ Version Bus-Pin ESD Protection Exceeds
    15 kV
  • Packaged in Thin Shrink Small-Outline Package
    With 20-mil Pin Pitch
  • Low-Voltage TTL (LVTTL) Logic Inputs Are 5-V
    Tolerant
  • Four (’391), Eight (’389), or Sixteen (’387) Line
    Drivers Meet or Exceed the Requirements of ANSI
    EIA/TIA-644 Standard
  • Designed for Signaling Rates Up to 630 Mbps
    With Very Low Radiation (EMI)
  • Low-Voltage Differential Signaling With Typical
    Output Voltage of 350 mV and a 100-Ω Load
  • Propagation Delay Times Less Than 2.9 ns
  • Output Skew Is Less Than 150 ps
  • Part-to-Part Skew Is Less Than 1.5 ns
  • 35-mW Total Power Dissipation in Each Driver
    Operating at 200 MHz
  • Driver Is High-Impedance When Disabled or With
    VCC < 1.5 V
  • SN65’ Version Bus-Pin ESD Protection Exceeds
    15 kV
  • Packaged in Thin Shrink Small-Outline Package
    With 20-mil Pin Pitch
  • Low-Voltage TTL (LVTTL) Logic Inputs Are 5-V
    Tolerant

This family of 4, 8, and 16 differential line drivers implements the electrical characteristics of low-voltage differential signaling (LVDS). This signaling technique lowers the output voltage levels of 5-V differential standard levels (such as EIA/TIA-422B) to reduce the power, increase the switching speeds, and allow operation with a 3.3-V supply rail. Any of the 16 current-mode drivers will deliver a minimum differential output voltage magnitude of 247 mV into a 100-Ω load when enabled.

When disabled, the driver outputs are high-impedance. Each driver input (A) and enable (EN) have an internal pulldown that will drive the input to a low level when open-circuited.

The SN65LVDS387, SN65LVDS389, and SN65LVDS391 devices are characterized for operation from –40°C to 85°C. The SN75LVDS387, SN75LVDS389, and SN75LVDS391 devices are characterized for operation from 0°C to 70°C.

This family of 4, 8, and 16 differential line drivers implements the electrical characteristics of low-voltage differential signaling (LVDS). This signaling technique lowers the output voltage levels of 5-V differential standard levels (such as EIA/TIA-422B) to reduce the power, increase the switching speeds, and allow operation with a 3.3-V supply rail. Any of the 16 current-mode drivers will deliver a minimum differential output voltage magnitude of 247 mV into a 100-Ω load when enabled.

When disabled, the driver outputs are high-impedance. Each driver input (A) and enable (EN) have an internal pulldown that will drive the input to a low level when open-circuited.

The SN65LVDS387, SN65LVDS389, and SN65LVDS391 devices are characterized for operation from –40°C to 85°C. The SN75LVDS387, SN75LVDS389, and SN75LVDS391 devices are characterized for operation from 0°C to 70°C.

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类型 标题 下载最新的英语版本 日期
* 数据表 SNx5LVDS3xx High-Speed Differential Line Drivers 数据表 (Rev. G) PDF | HTML 2016年 1月 14日
应用简报 How to Support 1.8-V Signals Using a 3.3-V LVDS Driver/Receiver + Level-Shifter 2018年 12月 28日
应用简报 LVDS to Improve EMC in Motor Drives 2018年 9月 27日
应用简报 How Far, How Fast Can You Operate LVDS Drivers and Receivers? 2018年 8月 3日
应用简报 How to Terminate LVDS Connections with DC and AC Coupling 2018年 5月 16日
技术文章 Applications of Low Voltage Differential Signaling (LVDS) in Multifunction and Ind PDF | HTML 2017年 8月 24日
应用手册 An Overview of LVDS Technology 1998年 10月 5日

设计和开发

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评估板

SN65LVDS387EVM — 16 通道 LVDS 驱动器评估模块

We have designed easy-to-use evaluation modules (EVM) for our 16-channel low-voltage differential signaling (LVDS) driver and receivers. Flexibility has been designed into these EVMs so they can be set up in a point-to-point topology (1 driver to 1 receiver) or a multidrop topology (1 driver (...)

用户指南: PDF
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仿真模型

SN65/75LVDS389 IBIS Model (Rev. A)

SLLC096A.ZIP (5 KB) - IBIS Model
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用户指南: PDF
英语版 (Rev.A): PDF
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TSSOP (DBT) 38 Ultra Librarian

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  • REACH
  • 器件标识
  • 引脚镀层/焊球材料
  • MSL 等级/回流焊峰值温度
  • MTBF/时基故障估算
  • 材料成分
  • 鉴定摘要
  • 持续可靠性监测
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