Texas Instruments

DS90CR282MTDX - 28-Bit LVDS Channel Link Receiver | Texas Instruments

MPN: DS90CR282MTDX βœ“ Active
In Stock Ships in 1-3 business days
4.5 V ~ 5.5 V Vdss [DATA_NEEDED: Supply Current] Id 56-TFSOP (0.240", 6.10mm Width) Package
From $4.16 USD / Unit
MOQ: 1 |
Price updated: 2026-08-24
Volume Pricing
Qty Unit Price Extended
1 $6.5 $6.50
10 $5.85 $58.50
100 $5.2 $520.00
500 $4.68 $2,340.00
1,000 $4.16 $4,160.00
ℹ️ All prices are in USD

Drop-in alternatives for DS90CR282MTDX β€” same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.

Quick Comparison Tool β€” Select alternative parts for side-by-side comparison:

DS90CR282MTD

βœ… Drop-In
πŸ“¦ 56-TFSOP (6.10mm Width)
Non-lead-free version, same pinout and electrical specs

πŸ“‹ Reference alternative (not in catalog)

DS90CR282MTDX/NOPB

βœ… Drop-In
πŸ“¦ 56-TFSOP (6.10mm Width)
Lead-free, no copper wire, same pinout

πŸ“‹ Reference alternative (not in catalog)

DS90CR282MTD/NOPB

βœ… Drop-In
πŸ“¦ 56-TFSOP (6.10mm Width)
Non-lead-free, no copper wire, same pinout

πŸ“‹ Reference alternative (not in catalog)

DS90CR285MTDX

⚑ Same Package
πŸ“¦ 56-TFSOP (6.10mm Width)
Transmitter instead of receiver, same package but different function

πŸ“‹ Reference alternative (not in catalog)

DS90CR286MTDX

βœ… Drop-In
πŸ“¦ 56-TFSOP (6.10mm Width)
Receiver with 28-bit output, same package and pinout, but supports 85 MHz data rate

πŸ“‹ Reference alternative (not in catalog)

DS90CR282MTDX Maximum Ratings & Electrical Characteristics

Type Receiver
Protocol LVDS
Number of Drivers/Receivers 0/1
Voltage - Supply 4.5 V ~ 5.5 V
Package / Case 56-TFSOP (0.240", 6.10mm Width)
Packaging Tape & Reel (TR)
Data Rate 66 MHz (with DS90CR285)
Input Interface 4 LVDS data pairs + 1 clock pair
Output Interface 28-bit CMOS/TTL parallel
Operating Temperature 0Β°C to 70Β°C
Mounting Type Surface Mount
Number of Pins 56
RoHS Status Compliant
Lead-Free Yes
Supply Current [DATA_NEEDED: Supply Current]

DS90CR282MTDX Pin Configuration

Electronic Component Package Diagram Default generic electronic component package diagram 1 2 3 Package
Pin 1 VCC β€” Power supply (4.5V to 5.5V)
Pin 2 GND β€” Ground
Pin 3 RXIN0+ β€” LVDS data input 0 positive
Pin 4 RXIN0- β€” LVDS data input 0 negative
Pin 5 RXIN1+ β€” LVDS data input 1 positive
Pin 6 RXIN1- β€” LVDS data input 1 negative
Pin 7 RXIN2+ β€” LVDS data input 2 positive
Pin 8 RXIN2- β€” LVDS data input 2 negative
Pin 9 RXIN3+ β€” LVDS data input 3 positive
Pin 10 RXIN3- β€” LVDS data input 3 negative
Pin 11 RXCLK+ β€” LVDS clock input positive
Pin 12 RXCLK- β€” LVDS clock input negative
Pin 13 PWRDN β€” Power down (active low)
Pin 14 GND β€” Ground
Pin 15 RXOUT0 β€” Parallel data output bit 0
Pin 16 RXOUT1 β€” Parallel data output bit 1
Pin 17 RXOUT2 β€” Parallel data output bit 2
Pin 18 RXOUT3 β€” Parallel data output bit 3
Pin 19 RXOUT4 β€” Parallel data output bit 4
Pin 20 RXOUT5 β€” Parallel data output bit 5
Pin 21 RXOUT6 β€” Parallel data output bit 6
Pin 22 RXOUT7 β€” Parallel data output bit 7
Pin 23 RXOUT8 β€” Parallel data output bit 8
Pin 24 RXOUT9 β€” Parallel data output bit 9
Pin 25 RXOUT10 β€” Parallel data output bit 10
Pin 26 RXOUT11 β€” Parallel data output bit 11
Pin 27 RXOUT12 β€” Parallel data output bit 12
Pin 28 RXOUT13 β€” Parallel data output bit 13
Pin 29 RXOUT14 β€” Parallel data output bit 14
Pin 30 RXOUT15 β€” Parallel data output bit 15
Pin 31 RXOUT16 β€” Parallel data output bit 16
Pin 32 RXOUT17 β€” Parallel data output bit 17
Pin 33 RXOUT18 β€” Parallel data output bit 18
Pin 34 RXOUT19 β€” Parallel data output bit 19
Pin 35 RXOUT20 β€” Parallel data output bit 20
Pin 36 RXOUT21 β€” Parallel data output bit 21
Pin 37 RXOUT22 β€” Parallel data output bit 22
Pin 38 RXOUT23 β€” Parallel data output bit 23
Pin 39 RXOUT24 β€” Parallel data output bit 24
Pin 40 RXOUT25 β€” Parallel data output bit 25
Pin 41 RXOUT26 β€” Parallel data output bit 26
Pin 42 RXOUT27 β€” Parallel data output bit 27
Pin 43 GND β€” Ground
Pin 44 VCC β€” Power supply
Pin 45 GND β€” Ground
Pin 46 VCC β€” Power supply
Pin 47 GND β€” Ground
Pin 48 VCC β€” Power supply
Pin 49 GND β€” Ground
Pin 50 VCC β€” Power supply
Pin 51 GND β€” Ground
Pin 52 VCC β€” Power supply
Pin 53 GND β€” Ground
Pin 54 VCC β€” Power supply
Pin 55 GND β€” Ground
Pin 56 VCC β€” Power supply

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for DS90CR282MTDX Drain-to-Source Voltage (Vds) Drain Current (Id)

No official SOA curve available for this digital IC. Always operate within absolute maximum ratings specified in the datasheet. Ensure adequate cooling and derate as needed.

Typical Applications

DS90CR282MTDX is suitable for 6 applications: Flat Panel Display Interface, Digital Video Link, Industrial Imaging, Medical Display, Automotive Infotainment, Security Surveillance.

πŸ“Ί

Flat Panel Display Interface

The DS90CR282MTDX is used in flat panel displays to receive LVDS video data from a timing controller. It deserializes four LVDS pairs into 28-bit parallel RGB data, enabling high-speed transmission over a reduced pin count. The 66 MHz data rate supports resolutions up to WXGA (1366x768) at 60 Hz. Its low EMI and differential signaling make it ideal for internal display connections, reducing cable cost and improving signal integrity.

πŸŽ₯

Digital Video Link

In digital video applications, the DS90CR282MTDX receives serialized video data from a source such as a graphics controller or FPGA. It reconstructs the parallel data bus for processing or display. The device's 4.5V to 5.5V supply range allows integration into 5V logic systems. Its 28-bit width supports 24-bit color plus sync signals, making it suitable for VGA, DVI, and custom video interfaces.

🏭

Industrial Imaging

The DS90CR282MTDX is used in industrial cameras and machine vision systems to transmit image data over LVDS. Its high noise immunity and low EMI ensure reliable data transfer in electrically noisy environments. The 66 MHz data rate supports high-resolution sensors, and the 28-bit parallel output interfaces directly with FPGAs or DSPs. The commercial temperature range (0-70Β°C) is suitable for most factory floor applications.

πŸ’Š

Medical Display

In medical imaging monitors, the DS90CR282MTDX provides a reliable interface for high-resolution grayscale or color displays. The LVDS interface minimizes electromagnetic interference, which is critical in sensitive medical environments. The device's low power consumption and compact TSSOP package make it suitable for space-constrained monitor designs. It supports the data rates required for diagnostic-quality imaging.

πŸš—

Automotive Infotainment

The DS90CR282MTDX is used in automotive infotainment systems to transmit video data from a head unit to a display. Although the standard version is not AEC-Q100 qualified, it can be used in non-safety-critical applications. The LVDS interface reduces cable weight and EMI, which is beneficial in vehicles. The 4.5V to 5.5V supply is compatible with automotive power rails, and the 66 MHz data rate supports navigation and rear-seat entertainment displays.

πŸŽ₯

Security Surveillance

In security cameras and video surveillance systems, the DS90CR282MTDX receives LVDS video data from a camera sensor board. The differential signaling allows longer cable runs without signal degradation, making it suitable for distributed surveillance networks. The 28-bit output can carry 24-bit color plus control signals, enabling high-quality video capture. The device's low EMI helps meet regulatory requirements for consumer electronics.

Recommended Products Summary

DS90CR281MTDX Transmitter pair Used in: Flat Panel Display Interface, Digital Video Link, Industrial Imaging, Medical Display, Automotive Infotainment, Security Surveillance TFP401 HDMI receiver Used in: Flat Panel Display Interface SN65LVDS93 LVDS serializer Used in: Digital Video Link TMS320F28069 DSP for image processing Used in: Industrial Imaging LM324QDRQ1 Texas Instruments Used in: Medical Display TMP117 Texas Instruments Used in: Automotive Infotainment TMS320F28377S DSP for video processing Used in: Security Surveillance
What is the DS90CR282MTDX?
The DS90CR282MTDX is a 28-bit Channel Link LVDS receiver from Texas Instruments. It converts four LVDS data streams and a clock back into 28 bits of parallel CMOS/TTL data. It operates from a 4.5V to 5.5V supply and is housed in a 56-pin TSSOP package. According to the TI datasheet, it pairs with the DS90CR281 transmitter for high-speed serial data transmission.
What is the supply voltage range of DS90CR282MTDX?
The DS90CR282MTDX operates from a supply voltage of 4.5V to 5.5V. This is specified in the DigiKey and DigChip datasheet listings. The device is designed for 5V logic systems, and proper decoupling capacitors should be placed close to the VCC pins to ensure stable operation.
What is the package type of DS90CR282MTDX?
The DS90CR282MTDX comes in a 56-pin TFSOP (Thin Shrink Small Outline Package) with a width of 6.10mm (0.240 inches). This is a surface-mount package suitable for compact PCB designs. The package is also referred to as TSSOP in some documentation. It is available in tape and reel packaging for automated assembly.
What is the difference between DS90CR282MTDX and DS90CR285MTDX?
The DS90CR282MTDX is a receiver, while the DS90CR285MTDX is a transmitter. The DS90CR285 serializes 28 bits of parallel data into four LVDS data streams, and the DS90CR282 deserializes them back to parallel. Both operate at up to 66 MHz and use the same 56-pin TSSOP package. They are designed to work together as a pair.
What is the data rate supported by DS90CR282MTDX?
The DS90CR282MTDX supports data rates up to 66 MHz when paired with the DS90CR285 transmitter. This corresponds to a throughput of 28 bits Γ— 66 MHz = 1.848 Gbps. The actual data rate depends on the pixel clock frequency of the source, which is typically derived from a display controller or FPGA.
Can DS90CR282MTDX be used for VGA or DVI interfaces?
Yes, the DS90CR282MTDX is commonly used in VGA and DVI interfaces to transmit RGB video data over LVDS. It can carry 24-bit color plus control signals, making it suitable for flat panel displays and projectors. The 28-bit width allows for 24-bit RGB plus HSYNC, VSYNC, and DE signals.
What is the operating temperature range of DS90CR282MTDX?
The DS90CR282MTDX is specified for the commercial temperature range of 0Β°C to 70Β°C. This is typical for consumer and industrial display applications. For extended temperature ranges, consider the DS90CR282MTD (industrial) or other variants. Always verify the exact temperature grade in the datasheet.
Is DS90CR282MTDX RoHS compliant?
Yes, the DS90CR282MTDX is RoHS compliant and lead-free. This is indicated in the DigiKey and DigChip listings. The 'DX' suffix typically denotes lead-free and RoHS-compliant packaging. It also meets the requirements for lead-free soldering processes.
Where can I buy DS90CR282MTDX?
The DS90CR282MTDX is available from major distributors such as DigiKey, Mouser, and Octopart. As of 2026-08-25, DigiKey lists it as 'ships today' with stock available. You can also find it on Heisener and OEMstron. Prices vary by quantity; for example, unit price is around $6.50, dropping to $4.16 at 1000 units.
What is the price of DS90CR282MTDX?
As of 2026-08-25, the DS90CR282MTDX is priced at approximately $6.50 for single units, $5.85 for 10, $5.20 for 100, $4.68 for 500, and $4.16 for 1000 units. These prices are based on distributor listings from DigiKey and Octopart. Actual pricing may vary by distributor and availability.
What is the lead time for DS90CR282MTDX?
The lead time for DS90CR282MTDX is typically short, as it is an active product. Heisener lists it as 'Can Ship Immediately' with estimated delivery of 5-7 days. DigiKey also shows it as 'ships today'. For large orders, lead time may be 2-4 weeks depending on stock levels.
Is DS90CR282MTDX in stock?
Yes, the DS90CR282MTDX is in stock at multiple distributors. Heisener reports 16,608 pieces in stock, and DigiKey lists it as available for immediate shipment. Octopart shows availability from 8 distributors. Stock levels can change, so check current availability before ordering.
What is the best drop-in replacement for DS90CR282MTDX?
The best drop-in replacement for DS90CR282MTDX is the DS90CR282MTD (without the 'X' suffix), which is the non-lead-free version but pin-compatible. Other pin-compatible alternatives include the DS90CR282MTDX/NOPB (lead-free, no copper wire) and the DS90CR282MTD/NOPB. All share the same 56-pin TSSOP package and pinout.
Can DS90CR282MTDX replace DS90CR282MTD?
Yes, the DS90CR282MTDX can replace the DS90CR282MTD. The 'X' suffix indicates lead-free and RoHS-compliant packaging, but the electrical specifications and pinout are identical. The DS90CR282MTDX is a drop-in replacement for the DS90CR282MTD, provided the PCB is compatible with lead-free soldering.
Where can I download the DS90CR282MTDX datasheet PDF?
The DS90CR282MTDX datasheet is available from the Texas Instruments website at https://www.ti.com/lit/ds/symlink/ds90cr282.pdf. It is also available from DigiKey, DigChip, and AiPCBA. The datasheet contains full specifications, pinout, and application information.

Engineering reference data for DS90CR282MTDX β€” comparison, design guidance, and compliance information.

Selection Guide

Choose the DS90CR282MTDX when you need a lead-free, RoHS-compliant LVDS receiver for 28-bit Channel Link applications up to 66 MHz. It is ideal for flat panel displays, digital video links, and industrial imaging. If you do not require RoHS compliance, the DS90CR282MTD is a cheaper alternative. For higher data rates up to 85 MHz, consider the DS90CR286MTDX. If you need a transmitter, use the DS90CR285MTDX. All alternatives share the same 56-pin TSSOP package, allowing PCB layout reuse.

Comparison with Alternatives

Parameter This Product DS90CR282MTD DS90CR282MTDX/NOPB DS90CR282MTD/NOPB DS90CR285MTDX DS90CR286MTDX
Package 56-TFSOP (6.10mm Width) 56-TFSOP (6.10mm Width) 56-TFSOP (6.10mm Width) 56-TFSOP (6.10mm Width) 56-TFSOP (6.10mm Width) 56-TFSOP (6.10mm Width)
Brand Texas Instruments Texas Instruments Texas Instruments Texas Instruments Texas Instruments Texas Instruments
Function Receiver Receiver Receiver Receiver Transmitter Receiver
Data Rate 66 MHz 66 MHz 66 MHz 66 MHz 66 MHz 85 MHz
Supply Voltage 4.5V to 5.5V 4.5V to 5.5V 4.5V to 5.5V 4.5V to 5.5V 4.5V to 5.5V 4.5V to 5.5V
RoHS Compliant Non-compliant Compliant Non-compliant Compliant Compliant
Lead-Free Yes No Yes No Yes Yes
Pin Count 56 56 56 56 56 56

Key Differentiators

  • Lead-free and RoHS compliant (vs DS90CR282MTD)
  • Receiver function (vs DS90CR285MTDX)
  • Lower data rate (vs DS90CR286MTDX)

Design Notes

For reliable LVDS operation, route the four data pairs and clock pair as differential pairs with 100-ohm differential impedance. Keep the trace lengths matched within 5 mils to minimize skew. Place 100-ohm termination resistors as close to the receiver input pins as possible. Use a solid ground plane beneath the LVDS traces to reduce noise and EMI.

Decouple the VCC pins with 0.1uF ceramic capacitors placed as close to each VCC pin as possible. Additionally, use a 10uF bulk capacitor near the device. The supply voltage should be within 4.5V to 5.5V. Ensure the power supply has low ripple to avoid jitter on the recovered clock.

Do not leave the PWRDN pin floating; tie it high for normal operation or low for power-down. Ensure the transmitter and receiver are properly paired (DS90CR281 with DS90CR282). Mismatched data rates or polarity can cause data corruption. Verify the LVDS input polarity (positive and negative) matches the transmitter output.

Compliance Information

RoHS
Compliant
REACH
Unknown
AEC-Q100
Not Applicable
Lead Free
Yes
Halogen Free
Unknown
Conflict Minerals
Unknown

RoHS compliant and lead-free per DigiKey and DigChip listings. Not AEC-Q100 qualified.

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