DS90C363 LVDS FPD-Link Transmitter

Texas Instruments Signal_Chain — specifications, applications, sourcing support and RFQ.

DS90C363 LVDS FPD-Link Transmitter

RFQ Available Sourcing Support Alternative Matching RoHS
Part Number
DS90C363
Manufacturer
Texas Instruments
Package
48-lead TSSOP
Category
Signal Chain
Product Type
Operational Amplifier

Quick Sourcing Note

DS90C363 from Texas Instruments is a Signal_Chain LVDS FPD-Link transmitter supplied in a 48-lead TSSOP package. The device supports a 3.0 V to 3.6 V recommended supply range and -40°C to +85°C operating free-air temperature. It accepts 21 bits of CMOS/TTL input data, including 18 RGB bits and 3 control bits, and outputs three LVDS data streams plus one LVDS clock link. It supports 20 MHz to 65 MHz shift-clock operation, with 455 Mbps per LVDS channel at 65 MHz, 170 Mbyte/s data throughput, and total throughput up to 1.3 Gbps.

Specifications

TypeDescription
Part NumberDS90C363
ManufacturerTexas Instruments
Product TypeOperational Amplifier
CategorySignal Chain
Package / Case48-lead TSSOP
Supply Voltage3.0 min, 3.3 nom, 3.6 max V
Operating Free-Air Temperature-40 min, +25 nom, +85 max °C
Shift Clock Frequency Support20 to 65 MHz
CMOS/TTL Data Input Width21 bits
LVDS Data Output Channels3 data streams plus 1 LVDS clock link
LVDS Data Rate Per Channel455 Mbps
Data Throughput170 Mbyte/s
Total ThroughputUp to 1.3 Gbps
LVDS Output Swing290 mV
Chipset Power Consumption<250 mW typ
Power-Down Mode Power<0.5 mW total
High-Level Input Voltage2.0 min to VCC max V
Low-Level Input VoltageGND min, 0.8 max V
High-Level Output Voltage2.7 min, 3.3 typ V
Low-Level Output Voltage0.06 typ, 0.3 max V
Input Clamp Voltage-0.79 typ, -1.5 max V
Input Current±5.1 typ, ±10 max µA
Output Short-Circuit Current-60 typ, -120 max mA
Differential Output Voltage250 min, 345 typ, 450 max mV
Change in Differential Output Voltage35 max mV
Offset Voltage1.125 min, 1.25 typ, 1.375 max V
Change in Offset Voltage35 max mV
LVDS Output Short-Circuit Current-3.5 typ, -5 max mA
Output TRI-STATE Current±1 typ, ±10 max µA
Transmitter Supply Current Worst Case, 32.5 MHz31 typ, 45 max mA
Transmitter Supply Current Worst Case, 65 MHz42 typ, 55 max mA
Transmitter Supply Current 16 Grayscale31 typ, 45 max mA
Transmitter Power-Down Supply Current10 typ, 55 max µA
LVDS Low-to-High Transition Time0.75 typ, 1.5 max ns
LVDS High-to-Low Transition Time0.75 typ, 1.5 max ns
TxCLKIN Transition Time5 max ns
TxOUT Channel-to-Channel Skew250 max ps
TxCLKIN Period15 min, 50 max ns
TxIN Setup to TxCLKIN2.5 min ns
TxIN Hold to TxCLKIN0 min ns
Transmitter PLL Set Time10 max ms
Transmitter Power-Down Delay100 max ns
Datasheet Statusrequest_only

Product Overview

The DS90C363 is a Texas Instruments LVDS FPD-Link transmitter for Signal_Chain designs that need to serialize parallel CMOS/TTL display data onto LVDS outputs. Its transmitter input width is 21 bits, covering 18 RGB bits and 3 control bits, and its output architecture provides three LVDS data streams plus one LVDS clock link.

Recommended operation is specified from 3.0 V to 3.6 V supply voltage and -40°C to +85°C free-air temperature. Shift clock frequency support is 20 MHz to 65 MHz, with 455 Mbps LVDS data rate per channel and 170 Mbyte/s data throughput at 65 MHz. Total throughput is specified up to 1.3 Gbps.

The device is offered in a 48-lead TSSOP package. Electrical details include 250 mV to 450 mV differential output voltage into 100 ohm load, 1.125 V to 1.375 V LVDS offset voltage, 250 ps maximum TxOUT channel-to-channel skew, and 10 ms maximum transmitter PLL set time.

Key Features

  • 3.0 V to 3.6 V recommended supply range
  • -40°C to +85°C operating free-air temperature
  • 20 MHz to 65 MHz shift clock support
  • 21-bit CMOS/TTL input for RGB and control data
  • Three LVDS data streams plus one clock link
  • 455 Mbps per LVDS channel at 65 MHz
  • Up to 1.3 Gbps total throughput
  • 250 mV to 450 mV differential output voltage
  • 250 ps maximum TxOUT channel-to-channel skew
  • 10 ms maximum transmitter PLL set time

Typical Applications

  • FPD-Link transmitter interfaces
  • RGB display data serialization
  • CMOS/TTL to LVDS conversion
  • Flat-panel display signal links
  • LVDS clock and data links
  • 65 MHz display clock designs

Procurement Notes

When requesting a quote for DS90C363, buyers should confirm the manufacturer, package or case, required quantity, target date code, compliance documents, packing method, destination country and expected delivery schedule.

If alternatives are acceptable, buyers should share the approved vendor list, required electrical or optical limits, package constraints and qualification requirements. Any alternative part should be reviewed by the buyer's engineering team before production use.

For analog and signal-chain sourcing, supply voltage, bandwidth, accuracy, noise level, package, temperature grade, input/output configuration and qualification requirements should be verified before approval.

FAQ

What supply voltage does the DS90C363 use?

The DS90C363 recommended operating supply voltage is 3.0 V minimum, 3.3 V nominal, and 3.6 V maximum. These limits apply under the recommended operating conditions stated in the extracted datasheet facts.

How much parallel input data does DS90C363 accept?

The transmitter accepts 21 bits of CMOS/TTL input data. The extracted facts specify that this input includes 18 RGB bits and 3 control bits before transmission over the LVDS FPD-Link output architecture.

What LVDS output structure is specified for DS90C363?

The DS90C363 output architecture provides three LVDS data streams plus one LVDS clock link. At a 65 MHz transmit clock frequency, each LVDS data channel is specified for 455 Mbps operation.

What package is used for the DS90C363?

The extracted product facts identify the DS90C363 package case as a 48-lead TSSOP. Assembly and footprint planning should use that package designation together with the manufacturer datasheet.

Technical Review & Sourcing Note

Prepared by LDeepAI Component Sourcing Team. Reviewed for RFQ, documentation and alternative sourcing use. Last updated: July 25, 2026.

This page is based on manufacturer datasheet information and LDeepAI sourcing review. Specifications should be verified against the official manufacturer datasheet before final procurement or design approval. Final electrical, optical and reliability approval should be confirmed by the buyer's engineering team.

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