DS90LV031ATM/NOPB

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LVDS Interface IC 3V LVDS QUAD CMOS DIFF LINE DRVR

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Service & Packaging

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DS90LV031ATM/NOPB DataSheet

Pricing (USD)

Quantity Unit Price Ext. Price
1 $2.947 $2.95
10 $2.563 $25.63
30 $2.335 $70.05
100 $1.962 $196.20
500 $1.856 $928.00
1000 $1.807 $1,807.00

These prices are subject to market fluctuations, and a quote submission is required to obtain the latest prices.

Interested Parts

Rapid Quote

Please submit RFQ for DS90LV031ATM/NOPB or email to us: Email: [email protected], we will contact you in 12 hours.

DS90LV031ATM/NOPB Details

The DS90LV031ATM/NOPB is an LVDS interface IC from National Semiconductor, designed for reliable data transmission in noisy environments. This device is ideal for industrial communication applications, featuring high-speed signaling rate, low power consumption, and a wide operating temperature range. It is housed in a package, making it suitable for compact circuit designs.

Key Features

  • Fast Skew Control Time: Provides robust skew control time for reliable data transmission.
  • Low Power Consumption Mode: Designed for low power operation, making it suitable for battery-powered applications.
  • Industrial Standard Operating Temperature Range: Offers a wide operating temperature range, ensuring reliable performance in various industrial environments.

Applications

  • Industrial Communication Networks: Ideal for industrial communication networks requiring robust and reliable data transmission.
  • Automotive Systems: Suitable for automotive communication systems where high-speed signaling rate and low power consumption are critical.
  • Building Automation: Used in building automation systems for efficient and reliable data communication.

Where to Use

The DS90LV031ATM/NOPB is suitable for applications that require reliable LVDS interface, especially in industrial and automotive environments. It is ideal for systems where high-speed signaling rate and low power consumption are important.

How to Use

Connect the DS90LV031ATM/NOPB to your LVDS interface bus by wiring the pins to the respective bus lines. Ensure proper power supply connections to VCC and GND. Use the pins to control and monitor data transmission. For detailed usage instructions, refer to the datasheet.

Application Circuit

The application circuit diagram for the DS90LV031ATM/NOPB illustrates how to connect the interface IC to an LVDS bus. It includes connections for power supply, ground, and communication bus lines, ensuring proper operation and reliable data transmission.

(Tip: For detailed circuit diagram connections and usage guide, refer to the datasheet.)

Equivalents

  • SN65LVDS01: A similar LVDS interface IC from Texas Instruments offering comparable features and performance.
  • ADM3051: An alternative LVDS interface IC from Analog Devices with equivalent functionality.

Complementary

The DS90LV031ATM/NOPB can be complemented by the DS90LV032ATM, which offers additional features such as higher data rates and enhanced ESD protection, suitable for more demanding communication applications.

When selecting complementary interface ICs, ensure that their features and specifications align with your specific application requirements for optimal performance and compatibility.

DS90LV031ATM/NOPB

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 LVCMOS, LVTTL Output signal LVDS
Rating Catalog Operating temperature range (°C) -40 to 85

Datasheet PDF

Datasheets record the features, absolute maximum ratings, applications and more of the device, which benefit a lot as an overall guide to the specific application of the part.

Preliminary Specification DS90LV031ATM/NOPB PDF Download

FAQs

What is DS90LV031ATM/NOPB?

The DS90LV031ATM/NOPB is a quad CMOS differential line driver designed by Texas Instruments. It is commonly used in applications requiring high-speed differential signaling, such as in data communication systems, automotive electronics, and industrial automation.

How Does DS90LV031ATM/NOPB Work?

The DS90LV031ATM/NOPB functions as a quad differential line driver, converting single-ended signals into differential signals. It is designed to provide high-speed and low-power operation while maintaining signal integrity over long distances. The driver helps minimize electromagnetic interference (EMI) and crosstalk in high-speed communication systems.

How Many Pins does DS90LV031ATM/NOPB have and What are the Functions of the Pinout Configuration?

The DS90LV031ATM/NOPB is housed in a 16-pin TSSOP (Thin Shrink Small Outline Package) package. The pinout configuration includes:

  • VCC: Power supply pin.
  • GND: Ground pin.
  • Y0-Y3: Differential outputs for each channel.
  • EN (Enable): Enable input pin to activate the driver.
  • SD (Shutdown): Shutdown input pin for low-power mode.
  • VEE: Negative power supply pin.

What are the Pros and Cons of DS90LV031ATM/NOPB?

Pros:

  • High-Speed Operation: Designed for high-speed differential signaling applications.
  • Low Power Consumption: Operates with low power, suitable for battery-powered systems.
  • Signal Integrity: Maintains signal integrity over long transmission lines.
  • EMI Reduction: Helps minimize electromagnetic interference in communication systems.
  • Multiple Channels: Quad-channel design for versatility in differential signal applications.

Cons:

  • Complexity: Requires proper signal conditioning and termination for optimal performance.
  • Temperature Sensitivity: Performance may be affected by temperature variations.
  • External Components: May need additional support circuitry for specific applications.

Are There Any Equivalents/Alternatives to DS90LV031ATM/NOPB for Recommendation?

  • An equivalent part to the DS90LV031ATM/NOPB is the SN65LVDS31 from Texas Instruments.
  • Alternatives to the DS90LV031ATM/NOPB include the MAX9247A from Maxim Integrated and the LT1785 from Analog Devices.

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