Interface - Serializers, Deserializers

Image Part Number Description / PDF Quantity Rfq
MAX9293GTN+T

MAX9293GTN+T

Maxim Integrated

IC SERIALIZER GMSL COAX 56TQFN

0

SN65HVS882PWPG4

SN65HVS882PWPG4

Texas Instruments

IC SERIALIZER 1MBPS 28HTSSOP

0

DS92LV3242TVSX/NOPB

DS92LV3242TVSX/NOPB

Texas Instruments

IC DESERIAL LVDS 32BIT 64TQFP

0

DS90UH928QSQ/NOPB

DS90UH928QSQ/NOPB

Texas Instruments

DS90UH928Q-Q1 5MHZ - 85MHZ 24-BI

0

DS90C241IVS/NOPB

DS90C241IVS/NOPB

Texas Instruments

IC SERIAL/DESERIAL 24BIT 48-TQFP

359

THCV241A

THCV241A

THine Solutions

IC SERIALIZER V-BY-ONE HS

0

DS32ELX0124SQ/NOPB

DS32ELX0124SQ/NOPB

LINE RECEIVER, 2 FUNC, 2 RCVR

953

DS92LV1023EMQX/NOPB

DS92LV1023EMQX/NOPB

LINE DRIVER, 1 FUNC, 1 DRIVER

8071

ISL76321ARZ-T7A

ISL76321ARZ-T7A

Intersil (Renesas Electronics America)

IC VIDEO SERDES LONG 16BIT 48QFN

0

MAX9257AGCM/V+

MAX9257AGCM/V+

Maxim Integrated

IC SERDE PROG UART/I2C 48LQFP

0

THCV214

THCV214

THine Solutions

IC DESERIALIZER LVDS 48TQFP

0

THC63LVD827-Q

THC63LVD827-Q

CEL (California Eastern Laboratories)

IC TRANSMITTER LVDS 72VFBGA

1816

MAX96700GTJ/V+T

MAX96700GTJ/V+T

Maxim Integrated

1.5GBPS GMSL DESERIALIZER PROGRA

0

TLK2501IRCPRG4

TLK2501IRCPRG4

Texas Instruments

IC TRNSCVR 1.5-2.5GBPS 64HVQFP

0

DS92LV2412SQ/NOPB

DS92LV2412SQ/NOPB

Texas Instruments

IC DESERIALIZER 24BIT 60WQFN

0

SN65LV1224BDBR

SN65LV1224BDBR

Texas Instruments

IC DESERIALIZER 660MBPS 28SSOP

989

SCAN921025HSM/NOPB

SCAN921025HSM/NOPB

Texas Instruments

IC SER/DESER HI TEMP 80MHZ LVDS

168

DS90UB925QSQE/NOPB

DS90UB925QSQE/NOPB

Texas Instruments

IC SERIALIZER FPD LINK11 48WQFN

651

SN65LVDS96DGG

SN65LVDS96DGG

Texas Instruments

IC LVDS SERDES RCVR 48-TSSOP

3

THC63LVDR84C

THC63LVDR84C

THine Solutions

IC DESERIALIZER LVDS 56TSSOP

0

Interface - Serializers, Deserializers

1. Overview

Serializers/Deserializers (SerDes) are semiconductor devices that convert parallel data streams into serial formats (Serializer) and vice versa (Deserializer). These ICs enable high-speed data transmission in modern electronic systems by reducing physical signal lines while maintaining data integrity. SerDes technology is fundamental to high-bandwidth communication protocols in computing, automotive, and industrial applications.

2. Major Types & Functional Classification

TypeFunctional CharacteristicsApplication Examples
Point-to-Point SerDesDedicated link between two devices, low latencyPCIe interconnects, GPU memory interfaces
Embedded Clock SerDesIntegrated clock recovery, reduced signal linesDisplayPort, HDMI 2.0+ interfaces
Multi-Channel SerDesParallel channel bonding for higher throughput100G Ethernet optical modules
LVDS SerDesLow-voltage differential signaling, noise immunityIndustrial sensor interfaces

3. Structure & Composition

Typical SerDes architecture consists of:

  • Parallel data bus interface (4/8/16-bit width)
  • Phase-locked loop (PLL) for clock generation
  • Serializer/deserializer core with encoding/decoding logic
  • Differential signal drivers/receivers (CML/LVDS standards)
  • Common packages: QFN, BGA, TSSOP (14-256 pins)

4. Key Technical Specifications

ParameterDescriptionImportance
Data Rate100 Mbps to 112 Gbps per laneDetermines system bandwidth capacity
Bit Error Rate (BER)Typical 10-12 to 10-15Measures data transmission reliability
Power Consumption50mW-500mW per channelImpacts thermal design and efficiency
Jitter PerformanceRMS jitter <0.5psAffects signal integrity at high speeds
Protocol SupportStandards: PCIe 5.0, DisplayPort 1.4a, etc.Determines system compatibility

5. Application Areas

  • Telecommunications: 5G base stations, optical transceivers (QSFP28)
  • Automotive: Autonomous driving systems (GMSL SerDes for camera interfaces)
  • Industrial: Machine vision systems, industrial Ethernet (PROFINET)
  • Consumer Electronics: AR/VR headsets with embedded display interfaces

6. Leading Manufacturers & Products

ManufacturerRepresentative ProductKey Features
Texas InstrumentsDS90UB953-Q124-bit color FPD-Link III, 600MHz clock rate
Analog DevicesADV7511HDMI 1.4 transmitter with 3D video support
NXP SemiconductorsS32K144Automotive general-purpose SerDes interface
STMicroelectronicsVL53L1XToF sensor with I2C interface SerDes

7. Selection Guidelines

Key selection criteria:

  • Match protocol requirements (e.g., GMSL vs. FPD-Link)
  • Calculate required bandwidth: Data Rate = (Resolution Color Depth Frame Rate)/Efficiency Factor
  • Verify voltage compatibility (1.2V-3.3V I/O standards)
  • Assess EMI/ESD protection requirements
  • Consider package thermal performance
  • Real-world example: Selecting MAX9271 for automotive camera systems requires checking 100m cable reach support and ASIL safety compliance.

8. Industry Trends

Emerging development directions:

  • 112Gbps+ per lane speeds for 800G Ethernet (IEEE 802.3df standard)
  • Integration with AI accelerators (CXL protocol support)
  • Advanced equalization techniques (DFE with 7-tap support)
  • Automotive functional safety (ISO 26262 ASIL-D compliance)
  • 3D-stacked SerDes for reduced form factor
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