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SN65LVDS3487D

Four-channel differential line driver integrated circuit designed to drive high-speed data signals

Inventory:6,754

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Overview of SN65LVDS3487D

The SN65LVDS3487D is a LVDS Interface IC optimized for high-speed data transmission over long distances with low-voltage operations. It provides excellent performance for applications requiring reliable data transfer with minimal electromagnetic interference.

Pinout

The SN65LVDS3487D pinout refers to the configuration and function of each pin in its SOIC-16 package. This package typically includes a diagram showing the layout of the pins when viewed from the top down with pins named sequentially. Each pin on the SN65LVDS3487D has a specific role such as power supply input, ground connection, or signal interface. The pinout details are crucial for integrating this component into a circuit as they ensure correct connections for optimal device performance. Designers and engineers must refer to the datasheet provided by the manufacturer to get accurate information regarding each pin's function and electrical characteristics.

Features

  • Meet or Exceed the Requirements of ANSI TIA/EIA-644 Standard: The SN65LVDS3487D meets or exceeds the requirements of ANSI TIA/EIA-644 standard for LVDS interface ICs.
  • Low-Voltage Differential Signaling With Typical Output Voltage of 350 mV and 100-Ω Load: This feature enables reliable data transfer with minimal electromagnetic interference.
  • Typical Output Voltage Rise and Fall Times of 500 ps (400 Mbps): The SN65LVDS3487D has a fast output voltage rise and fall time, making it suitable for high-speed applications.
  • Typical Propagation Delay Times of 1.7 ns: This feature ensures that the device can handle high-frequency signals with minimal delay.
  • Operate From a Single 3.3-V Supply: The SN65LVDS3487D operates from a single 3.3-V supply, making it suitable for battery-powered or low-voltage applications.
  • Power Dissipation 25 mW Typical Per Driver at 200 MHz: This feature ensures that the device consumes minimal power while operating at high speeds.
  • Driver at High-Impedance When Disabled or With VCC = 0: The SN65LVDS3487D driver is in a high-impedance state when disabled or with VCC = 0, making it suitable for space and high-reliability applications.
  • Bus-Terminal ESD Protection Exceeds 8 kV: The SN65LVDS3487D has bus-terminal ESD protection that exceeds 8 kV, ensuring reliable operation in harsh environments.
  • Low-Voltage TTL (LVTTL) Logic Input Levels: This feature ensures that the device can operate with low-voltage TTL logic input levels.
  • Pin Compatible With AM26LS31, MC3487, and µA9638: The SN65LVDS3487D is pin compatible with other LVDS interface ICs, making it easy to integrate into existing systems.
  • Cold Sparing for Space and High-Reliability Applications Requiring Redundancy: This feature enables cold sparing for space and high-reliability applications requiring redundancy.

Applications

  • Automotive Infotainment Systems: The SN65LVDS3487D is suitable for automotive infotainment systems that require reliable data transfer over long distances with minimal electromagnetic interference.
  • Data Centers and Cloud Computing: This device is also suitable for data centers and cloud computing applications that require high-speed data transmission with low power consumption.
  • Industrial Automation: The SN65LVDS3487D can be used in industrial automation applications that require reliable data transfer over long distances with minimal electromagnetic interference.

Advantages and Disadvantages

The SN65LVDS3487D has several advantages, including its ability to meet or exceed the requirements of ANSI TIA/EIA-644 standard, low power consumption, and high-speed data transmission. However, it also has some disadvantages, such as its limited compatibility with other LVDS interface ICs.

Equivalents

  • AM26LS31: The AM26LS31 is a pin-compatible equivalent of the SN65LVDS3487D.
  • MC3487: The MC3487 is another pin-compatible equivalent of the SN65LVDS3487D.
  • µA9638: The µA9638 is also a pin-compatible equivalent of the SN65LVDS3487D.

Frequently Asked Questions

Q: What is the typical output voltage rise and fall time of the SN65LVDS3487D?
A: The typical output voltage rise and fall time of the SN65LVDS3487D is 500 ps (400 Mbps).

Q: Can the SN65LVDS3487D operate from a single 3.3-V supply?
A: Yes, the SN65LVDS3487D can operate from a single 3.3-V supply.

Q: What is the power dissipation of the SN65LVDS3487D per driver at 200 MHz?
A: The power dissipation of the SN65LVDS3487D per driver at 200 MHz is 25 mW typical.

Q: Does the SN65LVDS3487D have bus-terminal ESD protection?
A: Yes, the SN65LVDS3487D has bus-terminal ESD protection that exceeds 8 kV.

Specifications

The followings are basic parameters of the part selected concerning the characteristics of the part and categories it belongs to.

Function Driver Protocols LVDS
Number of transmitters 4 Number of receivers 0
Supply voltage (V) 3.3 Signaling rate (MBits) 400
Input signal LVTTL Output signal LVDS
Rating Catalog Operating temperature range (°C) -40 to 85

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SN65LVDS3487D

Four-channel differential line driver integrated circuit designed to drive high-speed data signals

Inventory:

6,754