Photonic IC Market Eyes USD 98.7 Billion by 2031, Driven by Optical Communication Needs
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The global Photonic Integrated Circuits (PIC) market is set
to experience unprecedented expansion over the next decade. Valued at USD
10.2 billion in 2022, the industry is projected to grow at a 29.2%
compound annual growth rate (CAGR) from 2023 through 2031, reaching USD 98.7
billion by the end of 2031. Analysts observe that rising demand for
ultra-high-speed communication, coupled with increased adoption of photonic
technologies in space applications and high-reliability computing, will
accelerate market growth. Vendors are capitalizing on high-bandwidth use cases data
centers, enterprise networking, and computing devices to expand their PIC
portfolios and secure market share.
Market Overview
Photonic Integrated Circuits merge lasers, modulators,
detectors, waveguides, and other optical elements onto a single substrate,
leveraging photons instead of electrons to transmit and process data. This
paradigm shift enables remarkably compact, energy-efficient optical systems
with bandwidth and latency advantages over traditional electronic circuits.
Advances in silicon photonics, allowing high-density integration using mature
CMOS fabrication techniques, have paved the way for increasingly complex PIC
architectures. As miniaturization and system-on-chip approaches gain traction,
vendors are intensifying R&D to develop next-generation PICs that address
surging data traffic, emerging sensing applications, and the stringent reliability
requirements of space missions.
Market Drivers & Trends
- High-Speed
Communication Needs: The explosion of data consumption driven by cloud
computing, streaming, and AI workloads fuels demand for faster, lower-latency
interconnects. PICs deliver multi-terabit throughput in compact form
factors, making them indispensable for modern network infrastructures.
- Space
Sector Adoption: Increasing investment in satellite communications,
earth observation, and interplanetary exploration highlights the need for
radiation-tolerant, lightweight photonic components. PICs’ immunity to
ionizing radiation and low power consumption make them ideal for
spaceborne optical links.
- Computing
Device Integration: As photonics merges with high-performance
computing (HPC) and data center processors, on-chip optical interconnects
promise to overcome electrical bottlenecks, reducing latency and power
usage while boosting throughput.
Latest Market Trends
- Hybrid
Integration Dominance: In 2022, hybrid integration accounted for 53.6%
of total PIC shipments, enabling the combination of disparate materials silicon,
indium phosphide, lithium niobate on a single platform to unlock novel
functionalities.
- Silicon
Photonics as a Growth Engine: The silicon segment is forecast to grow
at a 34.1% CAGR through 2031, driven by low-cost, scalable
manufacturing and compatibility with existing semiconductor fabs.
- Modular
Photonic Platforms: Vendors increasingly offer scalable PIC building
blocks modulators, wavelength multiplexers, on-chip lasers allowing system
designers to tailor optical engines to specific bandwidth and wavelength
requirements.
Key Players:
Broadcom Inc., Broadex Technologies Co., Ltd., Ciena
Corporation, Cisco Systems, Inc., Coherent Corp., Enablence, Hewlett Packard
Enterprise Development LP, Huawei Technologies Co., Ltd., Infinera Corporation,
Intel Corporation, Lightwave Logic, Inc., LioniX International, Lumentum
Holdings, Inc., MACOM, Nokia Technologies, Q.ANT GmbH, TE Connectivity, Teem
Photonics, VLC Photonics S.L., Other Key Players
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Recent Developments
- December
2022: Intel Labs demonstrated seamless integration of photonics with
CMOS silicon, validating the feasibility of embedding optical links within
standard logic processes—an important milestone toward on-chip optical
networks.
- May
2022: Cisco introduced advanced predictive analytics into its
observability suite, harnessing photonic sensors to improve network
reliability and performance under dynamic traffic loads.
These milestones underscore the rapid maturation of PIC
technologies and their growing role in mainstream electronics and
telecommunications.
Market Opportunities
- Data
Center Upgrades: Hyperscale operators are adopting PIC-based
transceivers to support 400 Gb/s and terabit-class links, creating a
multibillion-dollar replacement market for legacy optics.
- Enterprise
and Edge Computing: As 5G networks and edge AI proliferate, compact
PIC modules will be in high demand for fronthaul, backhaul, and localized
data processing nodes.
- Sensing
& Quantum Applications: Industrial monitoring, biomedical
diagnostics, and quantum information systems represent rapidly expanding
frontiers for photonic chips, leveraging their precision, stability, and
integration potential.
Future Outlook
By 2031, PICs are expected to permeate virtually every
segment of the telecommunications and computing landscape. Continued R&D in
heterogeneous integration, novel materials (e.g., silicon nitride,
chalcogenides), and advanced packaging will enable even denser, more capable
chips. The convergence of photonics with electronics—spanning from server racks
to satellites—signals a transformative era in information technologies, where
light replaces electrons as the primary data carrier in high-performance
systems.
Market Segmentation
The report offers in-depth analysis across multiple
dimensions:
- Integration
Type: Monolithic | Hybrid | Module Integration
- Raw
Material: Indium Phosphide | Gallium Arsenide | Lithium Niobate |
Silicon | Silicon-on-Insulator | Other (Silica-on-Silicon, SiO₂)
- Component:
Lasers | Waveguides | Modulators | Detectors | Attenuators | Multiplexers/Demultiplexers
| Optical Amplifiers
- Application:
Optical Communication (FTTx, long-haul, datacom) | Microwave/RF Photonics
| Sensing (structural, chemical, aerospace) | Optical Signal Processing
& Metrology | Quantum Optics | Biophotonics & Medical | Photonic
Lab-on-a-Chip | Analytics & Diagnostics
Regional Insights
- North
America: Holds the largest share through 2031, buoyed by U.S.
hyperscale data centers (≈ 2,700 facilities, nearly one-third of the
global total) and strong government funding for space photonics.
- Europe:
Steady demand driven by telecommunications upgrades across fiber-rich
networks in Germany, France, and the U.K., and growing quantum photonics
initiatives.
- Asia
Pacific: Rapid expansion, led by China’s US$ 156 billion computer
exports in 2020, coupled with surging 5G rollouts in India, Japan, and
South Korea, underpins robust PIC adoption for datacom and telecom
applications.
- Middle
East & Africa and South America: Emerging opportunities in
satellite ground stations, oil & gas sensing, and greenfield network
deployments.
Why Buy This Report?
- Comprehensive
Market Sizing: Detailed valuation of 2017–2022 historical data and
2023–2031 forecasts by value and volume.
- Strategic
Insights: In-depth analysis of drivers, restraints, opportunities,
Porter’s Five Forces, and value chain dynamics.
- Competitive
Landscape: Profiles of 20+ leading companies, including financials,
product pipelines, strategies, and recent developments.
- Actionable
Segmentation: Granular breakdown by integration, material, component,
and application facilitating targeted go-to-market plans.
- Regional
Analysis: Tailored insights for North America, Europe, Asia Pacific,
Middle East & Africa, and South America, with country-level
granularity.
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