China's Tech Industry Is Crossing the 'Visibility Threshold' in Bulk

marsbit發佈於 2026-08-03更新於 2026-08-03

文章摘要

China's tech industries are successively crossing a "visibility threshold" into the global market spotlight. This wave, exemplified by AI, robotics, and innovative pharmaceuticals (the "new-new three"), differs from past waves like garments/appliances or EVs/batteries/solar panels. Earlier industries met existing demand, but these new sectors are helping to *define* emerging markets and applications. Crossing this threshold signifies an industry has achieved scale, competitive advantages, rapid growth, and the ability to drive its supply chain. Recent data shows China's AI sector growing over 30%, producing 80% of certain intelligent robots, and a surge in new drug approvals. This acceleration stems from China's industrial evolution from "completeness" to "density": different sectors now share technologies, talent, and infrastructure, enabling capabilities (e.g., from EVs) to rapidly migrate to adjacent fields (e.g., robotics). This dense ecosystem, combined with improved system integration and faster market access, acts as an infrastructure for generating new industries. The nature of competition is also evolving. The visible product is just an interface; long-term advantage lies in the underlying patents, standards, and open ecosystems. While building this "moat," China's approach emphasizes openness—through open-source models and collaborative R&D—to foster wider adoption and iterative improvement. Crossing the visibility line marks the start of market validation. The ...

A recent phenomenon is noteworthy: China's tech industries across different fields are successively entering the global market and the view of international media.

In the past July, Chinese large model company Moonshot AI released Kimi K3; the official version API of DeepSeek-V4-Flash went live for public beta testing. Beyond these two model updates, China's advanced robotics equipment has also become one of the focal points of attention in the international community. Not long before this, American biopharmaceutical company Pfizer reached a cooperation agreement with China's Innovent Biologics on 12 early-stage oncology and pioneering R&D projects, with an upfront payment of $650 million.

Behind this is the accumulated industrial capacity of China over the long term, now collectively crossing the 'visibility threshold'.

Why are more and more competitive Chinese tech industries collectively crossing this line? What does this indicate about the stage China's sci-tech innovation has reached?

01

To answer these questions, we need to extend the observation period a bit longer.

Over the past decades, the labels the international community uses to understand China's industries have been constantly changing, with different industries successively crossing the 'visibility threshold' of the global market and international media.

||In the 1980s and 1990s, the 'old three staples'—garments, furniture, and home appliances—formed the main impression of 'Made in China' for the world. By 1995, the export share of mechanical and electrical products had risen to 29.4%, surpassing textiles and garments to become the largest category of China's exports. Since then, computer and communication equipment manufacturing and equipment manufacturing have continuously become the main drivers of exports.

||By 2023, mechanical and electrical products already accounted for 58.6% of China's total export value. In recent years, the 'new three staples'—new energy vehicles (NEVs), lithium-ion batteries, and photovoltaic products—have become representatives of China's march into the global market.

||Today, artificial intelligence, robotics, and innovative drugs are beginning to enter the view of the global market and international media. These industries are also called the 'new new three staples'.

They belong to different fields and face different markets. However, Tan Zhu's analysis finds that whenever a new batch of Chinese industries becomes the focus of global attention, several common characteristics typically have already emerged:

||First, scale formation. The industry's output value, exports, orders, or technology transactions reach a scale of billions or tens of billions, beginning to have a noticeable impact on economic growth and export structure.

||Second, prominent advantages. Products rank among the global leaders in terms of market share, technical performance, cost-effectiveness, etc., starting to influence the choices of international customers.

||Third, accelerated growth. The industry is in a phase of rapid growth, representing the main direction of China's industrial upgrading.

||Fourth, driving industrial chain development. What goes global is not just a single product; it also drives the joint development of components, equipment, software, and services.

This boundary, from 'the capability already exists' to 'being consistently visible to the global market', is what we refer to as the 'visibility threshold'.

The concentrated appearance of these characteristics also signals a transformation occurring within an industry:

Before crossing this dividing line, technology R&D, product testing, and supply chain construction primarily occur within the industry; after crossing it, the industry begins to influence the judgments and choices of the international market.

A set of data recently released by the National Development and Reform Commission (NDRC) can be observed in relation to this line:

In the first half of this year, China's artificial intelligence-related industries maintained growth exceeding 30%; out of every 10 humanoid and quadruped intelligent robots sold globally, 8 are produced in China; 38 innovative drugs were approved for marketing in the first half, of which 31 are domestic innovative drugs, with the total value of outbound technology licensing reaching approximately $100 billion.

This set of data indicates that artificial intelligence, robotics, and innovative drugs have become the latest batch of representative industries crossing the 'visibility threshold'.

However, the ways in which these rounds of industries crossed the 'visibility threshold' differ.

When garments, furniture, and home appliances went global, global demand was relatively mature. China mainly solved the problem of how to produce products stably with higher efficiency and lower costs. Demand came first, capacity followed.

When new energy vehicles, lithium-ion batteries, and photovoltaic products rose, global green transition demand was forming. At the same time, price and large-scale application remained obstacles. China reduced costs through manufacturing capabilities and economies of scale, bringing many demands that stayed in planning and intent into the real market.

By the stage of artificial intelligence, robotics, and innovative drugs, the product forms, application scenarios, and even market rules are still forming, while Chinese enterprises have already entered the stages of R&D, verification, and deployment.

China is no longer merely waiting for a mature market to emerge; instead, it is creating both the product and the market by lowering application thresholds, opening technical interfaces, and building industrial ecosystems.

This means the relationship between China's industries and the 'visibility threshold' has also changed.

In the past, the world first defined what it needed, then decided which Chinese industries would be seen first. Consequently, China could only be narrated and defined.

Today, this relationship is beginning to change. China's technological progress itself is starting to lead global demand, thereby influencing the global market. In other words, China is beginning to lead the narrative, even prompting external markets and public opinion to react following China's actions.

China is no longer merely entering a pre-defined market but is also beginning to participate in defining new products, new demands, and new industrial directions. The cost for the world to ignore China's innovation is also rising.

Simultaneously, the intervals between successive rounds of representative industries crossing the 'visibility threshold' are shortening.

Decades passed from when garments, furniture, and home appliances formed export scale in the last century to when the exports of new energy vehicles, lithium-ion batteries, and photovoltaic products exceeded 1.06 trillion yuan in 2023.

Yet, after the 'new three staples' gained global influence, artificial intelligence, robotics, and innovative drugs entered the global market's view within just a few years.

Jiang Zhao, Deputy Researcher at the Institute of Circulation and Consumption Research of the Chinese Academy of International Trade and Economic Cooperation (CAITEC) under the Ministry of Commerce, told Tan Zhu that the shortening industrial iteration cycles stem, on the one hand, from the accelerated breakthroughs in the global technological revolution, speeding up the transformation of technological achievements into industries; on the other hand, it also indicates a change in China's industrial innovation capability, beginning to evolve in sync with the global frontier, with the speed and initiative of independent iteration significantly enhanced.

An industry crossing the 'visibility threshold' also conversely changes the industry itself.

It sends a signal to global customers that the technology is ready for use, attracting suppliers, talent, and capital. Customers bring demand, scenarios generate data, suppliers follow up with supporting facilities; these resources then cycle back into R&D and production.

Therefore, 'visibility' is not just the result of innovation; it also forms new expectations, which in turn drive innovation. Of course, expectations may also run ahead of real demand.

The role of the 'visibility threshold' is to help us judge which industries have already moved from internal accumulation to market validation, which capabilities remain unseen by the outside world, and where the next batch of industries might emerge from.

But being seen only explains the outcome. To explain why these industries can emerge collectively, we need to look at the characteristics of China's innovation behind the 'visibility threshold'.

02

These new industries do not appear randomly. They are highly adjacent to China's existing industrial capabilities.

The accumulated capabilities in batteries, motors, electronic controls, sensors, and precision manufacturing from China's new energy vehicle industry are migrating to the robotics industry.

Behind artificial intelligence lies connections to chips, servers, communication networks, and power systems.

Hu Yanping, a professor at the Digital Economy Research Institute of Shanghai University of Finance and Economics, observes that computing power demand not only drives GPUs, various ASIC chips including TPUs, but also an entire industrial chain involving storage, optical communication, PCBs, cluster technology, and cooling systems.

Innovative drugs are also built upon long-term accumulation in the chemical industry, clinical resources, and production processes. With AI entering drug R&D, computing power, data, and algorithms are beginning to connect with life sciences.

This also answers a question: China established a complete industrial system very early on, so why have these innovative industries only begun to emerge densely in recent years?

What was called 'complete' in the past mainly referred to the ability to produce the vast majority of industrial products. The change happening today is that this industrial system is moving from 'complete' to 'dense': different industries are beginning to share technologies, talent, suppliers, and infrastructure; the capabilities accumulated in one industry can rapidly migrate to another.

Industry observer Xiao Lei told Tan Zhu that the large model-led artificial intelligence did not grow independently of existing industries; it is built upon the long-term development and iteration of the chip industry. Technological products like chips also do not have a technical endpoint of 'finishing once made'; they must continuously iterate, operate, and promote themselves in the market.

Solving the problem of going from zero to one is only the first step. Whether a sustainable, updating supply chain and market system can be formed determines both whether a technology can enter the next stage and whether it can provide a foundation for new technological breakthroughs.

The distance between production and R&D is also shortening. As robots enter factories and AI enters manufacturing, problems exposed in real-world use can be fed back to the R&D stage more quickly. Large-scale application is no longer just the result of innovation but has become part of innovation itself.

This change is also reflected in system organization capability.

Industry insider Wang Wuyang summarized China's computing power construction as a 'system efficiency' route: organizing different chips into coordinated working systems through high-speed interconnection, heterogeneous computing, and cluster scheduling. The commissioning of China's first fully domestically produced 100,000-card AI supercluster is one practical verification of this route.

Institutional reforms are also shortening the time for technologies to enter the market.

When industrial capabilities can migrate, real-world applications can feed back to R&D, and single-point technologies can be organized into systems, the original industrial scale changes in nature: it is no longer just a production advantage but has become an infrastructure that continuously generates new industries.

This is the internal cause for the ability of more and more industries to cross the 'visibility threshold'.

03

What does such innovation capability signify?

An important change is that the competitive advantage of China's industries is extending from 'making the product' to establishing knowledge and organizational systems capable of continuously generating value.

Today, industries crossing the 'visibility threshold' share a characteristic: they are increasingly difficult to fully measure using traditional goods trade metrics. Tangible products increasingly resemble the visible interface of an industrial system.

||Beyond the robot body, there is software, algorithms, data, and their operating environment.

||As artificial intelligence goes global, some provide model services via cloud APIs, and some enter developer ecosystems by opening weights.

||Outbound technology licensing for innovative drugs does not just trade a compound.

The product is only the most visible part of these systems. What truly determines whether an industry can obtain long-term gains are often the patents, standards, and ecosystems behind the product.

This is the industrial moat.

In the past, some U.S. tech companies, even without directly undertaking all production stages, could still occupy a larger share of value chain benefits by relying on patents, operating systems, technical standards, and platform ecosystems.

For China's tech industries to continue advancing, manufacturing capability alone is not enough; the ability to master core technologies and industrial ecosystems is also needed.

However, possessing a moat does not equate to building walls. China needs the ability to master core knowledge and ecosystems but does not need to replicate the closed and exclusionary path.

Open-source models, open interfaces, local deployment, and joint R&D can allow more enterprises and users to enter China's technological ecosystem. A broader application scope, in turn, brings data, demand, and suggestions for improvement, driving continuous technological iteration.

Openness is not abandoning core capabilities but expanding the ecosystem to give technology a broader and more lasting impact.

Jiang Zhao believes that the changes across several rounds of representative industries reflect the continuous upgrading of what China provides to the world: from good and inexpensive daily commodities, to the production capacity and systemic solutions needed for the green transition, and further to more inclusive and accessible innovative results and development capabilities.

How can such an industrial moat be built more solidly?

The 15th Five-Year Plan (FYP) has already proposed developing strategic emerging industries such as robotics, biopharmaceuticals, and aerospace, while also planning for future industries like embodied AI, brain-computer interfaces, quantum technology, bio-manufacturing, and the sixth-generation mobile communication (6G).

In the process of building these industries, technology determines whether an industry can continuously move forward; application scenarios determine whether technology can withstand real-world testing; the ecosystem determines whether a single technological breakthrough can be transformed into a long-term operational system.

Of course, whether the moat is truly formed ultimately depends on whether products can continuously obtain orders, whether technology can iteratively improve, whether revenue can support long-term R&D, and whether the industrial ecosystem can attract more participants.

Crossing the 'visibility threshold' is only the beginning of market validation.

China is entering a stage: pushing more and more new industries into market validation and continuously improving the industrial system through this validation.

One industry crossing the 'visibility threshold' might be just a single-point breakthrough. But successive generations of industries crossing it means a country is forming the ability to continuously generate new industries.

Above the 'visibility threshold', new industries and new things constantly emerge and flourish; below it, China's long-term accumulated capabilities are continuously connecting, growing, and moving forward.

This article is from WeChat Official Account: Yuyuan Tantian , Author: Tan Zhu

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相關問答

QWhat is the core concept of the 'visible line' discussed in the article regarding China's tech industries?

AThe 'visible line' refers to the boundary between an industry having existing internal capabilities and becoming continuously visible to the global market. Crossing this line indicates that a Chinese industry has reached a scale and competitive advantage where it significantly influences global market choices and perceptions, moving beyond internal R&D to shape international demand and narratives.

QAccording to the article, what are the four common characteristics of Chinese industries that successfully cross the 'visible line'?

AThe four common characteristics are: 1) Scale: The industry reaches significant output, export, or transaction volumes (hundreds of billions). 2) Distinct Advantage: Its products lead globally in market share, technical performance, or cost-effectiveness. 3) Accelerated Growth: It is in a high-growth phase, representing a major direction for China's industrial upgrade. 4) Industrial Chain Development: Its global expansion drives the development of related components, equipment, software, and services.

QHow has the relationship between Chinese industries and the global 'visible line' evolved across different generations of products?

AThe relationship has fundamentally shifted. For the 'old three' (apparel, furniture, appliances), China entered mature global markets defined by others. For the 'new three' (EVs, lithium batteries, solar), China used scale to meet emerging green demand. For the 'new new three' (AI, robotics, innovative drugs), China is now participating in defining new products, markets, and industry directions from the R&D stage, influencing global demand and narratives rather than just reacting to them.

QWhat internal factor, as explained in the article, enables the dense emergence of new innovative industries like AI and robotics in China?

AThe key internal factor is the evolution of China's industrial system from being 'complete' to being 'dense.' This means different industries now deeply share technologies, talent, suppliers, and infrastructure. Capabilities accumulated in one sector (e.g., batteries and sensors from EVs) rapidly migrate to adjacent ones (e.g., robotics). This dense network, coupled with shortened feedback loops between production/R&D and enhanced system organization capabilities, acts as infrastructure that continuously generates new industries.

QWhat does the article suggest is the true 'moat' or long-term competitive advantage for Chinese tech industries crossing the 'visible line,' beyond just manufacturing products?

AThe article argues that the true industrial 'moat' lies not in the tangible products but in the underlying knowledge and organizational systems: patents, technical standards, software ecosystems, and platform architectures. While products are the visible interface, sustainable value and competitiveness come from the ability to master core technologies and build open, evolving ecosystems that attract global participants, ensuring continuous iteration and wider impact.

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什麼是 $S$

什麼是 AGENT S

Agent S:Web3中自主互動的未來 介紹 在不斷演變的Web3和加密貨幣領域,創新不斷重新定義個人如何與數字平台互動。Agent S是一個開創性的項目,承諾通過其開放的代理框架徹底改變人機互動。Agent S旨在簡化複雜任務,為人工智能(AI)提供變革性的應用,鋪平自主互動的道路。本詳細探索將深入研究該項目的複雜性、其獨特特徵以及對加密貨幣領域的影響。 什麼是Agent S? Agent S是一個突破性的開放代理框架,專門設計用來解決計算機任務自動化中的三個基本挑戰: 獲取特定領域知識:該框架智能地從各種外部知識來源和內部經驗中學習。這種雙重方法使其能夠建立豐富的特定領域知識庫,提升其在任務執行中的表現。 長期任務規劃:Agent S採用經驗增強的分層規劃,這是一種戰略方法,可以有效地分解和執行複雜任務。此特徵顯著提升了其高效和有效地管理多個子任務的能力。 處理動態、不均勻的界面:該項目引入了代理-計算機界面(ACI),這是一種創新的解決方案,增強了代理和用戶之間的互動。利用多模態大型語言模型(MLLMs),Agent S能夠無縫導航和操作各種圖形用戶界面。 通過這些開創性特徵,Agent S提供了一個強大的框架,解決了自動化人機互動中涉及的複雜性,為AI及其他領域的無數應用奠定了基礎。 誰是Agent S的創建者? 儘管Agent S的概念根本上是創新的,但有關其創建者的具體信息仍然難以捉摸。創建者目前尚不清楚,這突顯了該項目的初期階段或戰略選擇將創始成員保密。無論是否匿名,重點仍然在於框架的能力和潛力。 誰是Agent S的投資者? 由於Agent S在加密生態系統中相對較新,關於其投資者和財務支持者的詳細信息並未明確記錄。缺乏對支持該項目的投資基礎或組織的公開見解,引發了對其資金結構和發展路線圖的質疑。了解其支持背景對於評估該項目的可持續性和潛在市場影響至關重要。 Agent S如何運作? Agent S的核心是尖端技術,使其能夠在多種環境中有效運作。其運營模型圍繞幾個關鍵特徵構建: 類人計算機互動:該框架提供先進的AI規劃,力求使與計算機的互動更加直觀。通過模仿人類在任務執行中的行為,承諾提升用戶體驗。 敘事記憶:用於利用高級經驗,Agent S利用敘事記憶來跟蹤任務歷史,從而增強其決策過程。 情節記憶:此特徵為用戶提供逐步指導,使框架能夠在任務展開時提供上下文支持。 支持OpenACI:Agent S能夠在本地運行,使用戶能夠控制其互動和工作流程,與Web3的去中心化理念相一致。 與外部API的輕鬆集成:其多功能性和與各種AI平台的兼容性確保了Agent S能夠無縫融入現有技術生態系統,成為開發者和組織的理想選擇。 這些功能共同促成了Agent S在加密領域的獨特地位,因為它以最小的人類干預自動化複雜的多步任務。隨著項目的發展,其在Web3中的潛在應用可能重新定義數字互動的展開方式。 Agent S的時間線 Agent S的發展和里程碑可以用一個時間線來概括,突顯其重要事件: 2024年9月27日:Agent S的概念在一篇名為《一個像人類一樣使用計算機的開放代理框架》的綜合研究論文中推出,展示了該項目的基礎工作。 2024年10月10日:該研究論文在arXiv上公開,提供了對框架及其基於OSWorld基準的性能評估的深入探索。 2024年10月12日:發布了一個視頻演示,提供了對Agent S能力和特徵的視覺洞察,進一步吸引潛在用戶和投資者。 這些時間線上的標記不僅展示了Agent S的進展,還表明了其對透明度和社區參與的承諾。 有關Agent S的要點 隨著Agent S框架的持續演變,幾個關鍵特徵脫穎而出,強調其創新性和潛力: 創新框架:旨在提供類似人類互動的直觀計算機使用,Agent S為任務自動化帶來了新穎的方法。 自主互動:通過GUI自主與計算機互動的能力標誌著向更智能和高效的計算解決方案邁進了一步。 複雜任務自動化:憑藉其強大的方法論,能夠自動化複雜的多步任務,使過程更快且更少出錯。 持續改進:學習機制使Agent S能夠從過去的經驗中改進,不斷提升其性能和效率。 多功能性:其在OSWorld和WindowsAgentArena等不同操作環境中的適應性確保了它能夠服務於廣泛的應用。 隨著Agent S在Web3和加密領域中的定位,其增強互動能力和自動化過程的潛力標誌著AI技術的一次重大進步。通過其創新框架,Agent S展現了數字互動的未來,為各行各業的用戶承諾提供更無縫和高效的體驗。 結論 Agent S代表了AI與Web3結合的一次大膽飛躍,具有重新定義我們與技術互動方式的能力。儘管仍處於早期階段,但其應用的可能性廣泛且引人入勝。通過其全面的框架解決關鍵挑戰,Agent S旨在將自主互動帶到數字體驗的最前沿。隨著我們深入加密貨幣和去中心化的領域,像Agent S這樣的項目無疑將在塑造技術和人機協作的未來中發揮關鍵作用。

1.2k 人學過發佈於 2025.01.14更新於 2025.01.14

什麼是 AGENT S

如何購買S

歡迎來到HTX.com!在這裡,購買Sonic (S)變得簡單而便捷。跟隨我們的逐步指南,放心開始您的加密貨幣之旅。第一步:創建您的HTX帳戶使用您的 Email、手機號碼在HTX註冊一個免費帳戶。體驗無憂的註冊過程並解鎖所有平台功能。立即註冊第二步:前往買幣頁面,選擇您的支付方式信用卡/金融卡購買:使用您的Visa或Mastercard即時購買Sonic (S)。餘額購買:使用您HTX帳戶餘額中的資金進行無縫交易。第三方購買:探索諸如Google Pay或Apple Pay等流行支付方式以增加便利性。C2C購買:在HTX平台上直接與其他用戶交易。HTX 場外交易 (OTC) 購買:為大量交易者提供個性化服務和競爭性匯率。第三步:存儲您的Sonic (S)購買Sonic (S)後,將其存儲在您的HTX帳戶中。您也可以透過區塊鏈轉帳將其發送到其他地址或者用於交易其他加密貨幣。第四步:交易Sonic (S)在HTX的現貨市場輕鬆交易Sonic (S)。前往您的帳戶,選擇交易對,執行交易,並即時監控。HTX為初學者和經驗豐富的交易者提供了友好的用戶體驗。

2.7k 人學過發佈於 2025.01.15更新於 2026.06.02

如何購買S

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歡迎來到 HTX 社群。在這裡,您可以了解最新的平台發展動態並獲得專業的市場意見。 以下是用戶對 S (S)幣價的意見。

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