세계의 6G 통신 유망 재료, 하드웨어 및 시스템 : 시장 및 기술 기회(2026-2046년)
6G Communications Winning Materials, Hardware, Systems: Markets, Technology Opportunities 2026-2046
상품코드 : 1812616
리서치사 : Zhar Research
발행일 : 2025년 09월
페이지 정보 : 영문 339 Pages
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한글목차

이 보고서는 2030년 런칭 시 및 이후에 출현하는 6G 재료 및 하드웨어의 기회에 대한 종합적인 개요를 제공합니다. 시스템과 신호 처리와 같은 밀접하게 관련된 주제도 다루고 있으며, 이오노머, 메타물질, 에너지 수확기, 투명 재료, 구조 일렉트로닉스 등 신흥 재료가 어떻게 유용한지 배울 수 있습니다. 주요 6G 재료 및 하드웨어 기회는 다음 분야에 중복되어 있습니다.

20년간 예측·로드맵 : 2026-2046년

본 보고서는 투자자로부터 부가가치 재료 기업, 제품·시스템 통합자, 모바일 네트워크 운영자, 학술 관계자, 규제 당국 등 밸류체인에 관련된 모든 관계자를 지원합니다. 잠재적인 파트너와 인수, 승리 접근법, 모범 사례, 실패로부터 배우는 교훈을 찾을 수 있습니다. 박사 학위 수준의 새로운 분석으로 12건의 SWOT 평가, 17가지 주요 결론, 수많은 새로운 비교 차트, 인포그램, 기업별 평가, 2046년까지 6행 로드맵, 2046년까지 48건의 예측 데이터 라인, 그리고 Zhar Research Comment로 기록된 수많은 섹션이 제시되었습니다.

목차

제1장 주요 요약과 결론

제2장 소개

제3장 6G에 최적인 컴포넌트 및 재료 분석

제4장 기지국과 NTN(비지상 네트워크) 6G : UM-MIMO, HAPS, 기타 UAV

제5장 전파 경로와 기지국을 강화하는 RIS 및 메타물질 반사 어레이

제6장 ZED(제로 에너지 디바이스) 및 6G 인프라 및 클라이언트 디바이스에서 배터리 제거

제7장 6G 재료 및 하드웨어 관련 36개사 : 제품, 계획, 특허, Zhar Research에 의한 평가

JHS
영문 목차

영문목차

Summary

This 339-page, commercially-oriented report from Zhar Research gives a grand overview of 6G materials and hardware opportunities emerging at launch in 2030 and later stages. See closely-allied topics of systems and signal processing. Learn how emerging materials such as ionomers, metamaterials, energy harvesters, transparent materials and structural electronics can assist. The primary 6G materials and hardware opportunities lie in these overlapping topics:

20-year forecasts and roadmaps 2026-2046

The report assists all in the value chain from investors to added-value materials companies, product and system integrators, mobile network operators, academics, regulators and others. Discover potential partners, acquisitions, winning approaches, best practice, lessons of failure. The new PhD level analysis is presented as 12 SWOT appraisals, 17 key conclusions, many new comparison charts, infograms, assessments by company, 6-line roadmaps to 2046, 48 forecast lines to 2046 and many sections marked "Zhar Research Comment".

Appraisal of research advances through 2025 is essential

Vitally, there is deep coverage of the flood of new research and company activity through 2025 because 6G capabilities and objectives are changing. Old information and analysis can be very misleading.

Lucid analysis not rambling text

The Executive Summary and Conclusions (65 pages) is rapidly readable by those with limited time, presenting mostly graphics, graphs with tables of all forecasts, SWOT appraisals and bullet-point key conclusions.

The Introduction explains why two very-different phases of 6G are now inevitable. Expect incremental 6G launch then a disruptive, very difficult second phase. See how the physical layer will be influenced by advances and requirements in higher layers. Here is the frequency spectrum for 6G phases in context of current general use of spectrum with a SWOT appraisal. Initially, many of the traditional telcos will economise by upgrading existing infrastructure and adding minimal new hardware. However, the mismatch of planned and researched 6G frequencies shown here and other radical advances will invite usurpers, better serving the more heroic ambitions of companies such as Meta. Understand the situation with primary 6G infrastructure and client devices by type set against radical advances in 6G materials in general and the surge in importance of optical technologies for 6G phase two- optical wireless communication, optical tuning, deep fiber optic intermediary. Grasp the strong 6G trend from components-in-a-box to smart materials and metasurfaces, self-healing, long life and self-cleaning materials for 6G with SWOT.

Grasp electrically-functionalised transparent glass, sophisticated thermal materials and semiconductor advances demanded for 6G. See how the conjunction of 6G and other disruptive hardware may enable genuine Internet of Things IOT rather than renaming of what we had already. Like every other chapter, there is a close look at the important inventions and changes of direction through 2025.

Chapter 3. "Analysis revealing best 6G component and material opportunities" (46 pages) presents data from the many Zhar Research drill down reports measuring which research and company materials development is winning for which 6G applications. Enjoy maturity curves by year, detailed comparison tables, research analysis pie charts for all those candidate materials and components. For example, for the essential progress beyond 5G bands, the much higher frequencies will increasingly use tuning materials rather than components in the metasurfaces. Here, two chalcogenides are losing out to vanadium dioxide, liquid crystal and plasmonic graphene. See other materials added for optical communication.

Chapter 4. "Base stations and Non-Terrestrial Network NTN 6G: UM-MIMO, Tower in the Sky HAPS, other UAV" (26 pages) clarifies the vital importance of these for 6G to have much better coverage than 5G. However, it requires collaboration with other companies that own these types of infrastructure such as the NEO satellites and the newly- important solar drones loitering in the stratosphere, potentially for years. 6G can both benefit from and assist unmanned aerial vehicles.

Chapter 5. Reconfigurable intelligent surfaces RIS and metamaterial reflect-arrays enhancing propagation path and base stations (53 pages) is extensive because it is one of the few new forms of hardware essential for 6G to launch with more than fixing a few 5G problems. RIS can increase range, security, reach around obstructions, and add many business cases and paybacks for 6G. It is little-used in 5G but essential for 6G as it starts largely at GHz and making mmWave performance more widely available then progresses to much tougher frequencies for stellar performance. See many new infograms, SWOT appraisals, dramatic advances through 2025.

Self-powering must come center-stage for 6G because so much will be inaccessible and too numerous to visit to charge or repair - from tens of billions of 6G IoT nodes to the base station as "Tower in the Sky". Chapter 6 dives into this. Called, "Zero energy devices ZED and battery elimination in 6G infrastructure and client devices" it employs 46 close-packed pages of infograms, SWOTs, tables of options. Yes, even unpowered and very low power client devices are likely for later 6G and you have excellent opportunities for your added-value materials. Learn which ones.

The report closes with 48 pages of Chapter 7. "36 companies involved in 6G materials and hardware: products, plans, patents, Zhar Research appraisals: 2025-6. Here the focus is on what these companies are targeting and achieving for new 6G hardware, RIS being one priority.

The Zhar Research report, "6G Communications Winning Materials, Hardware, Systems: Markets, Technology Opportunities 2026-2046" is your essential reading and there are drill-down reports with even more on specifics.

CAPTION: The most successful materials in recent research relevant to battery-free and self-powered 6G infrastructure and client devices. Source: Zhar Research report, "6G Communications Winning Materials, Hardware, Systems: Markets, Technology Opportunities 2026-2046".

Table of Contents

1. Executive summary and conclusions

2. Introduction

3. Analysis revealing best 6G component and material opportunities

4. Base stations and Non-Terrestrial Network NTN 6G: UM-MIMO, Tower in the Sky HAPS, other UAV

5. Reconfigurable intelligent surfaces RIS and metamaterial reflect-arrays enhancing propagation path and base stations

6. Zero energy devices ZED and battery elimination in 6G infrastructure and client devices

7. 36 companies involved in 6G materials and hardware: products, plans, patents, Zhar Research appraisals: 2025-6

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