India's richest person wants to build the world's largest data center, five times the capacity of Microsoft's biggest site - Related to largest, plus, site, controller, new
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India's richest person wants to build the world's largest data center, five times the capacity of Microsoft's biggest site

Mukesh Ambani's Reliance touches the lives of nearly everyone in India.
Reliance plans to build a 3GW data center in India, the largest in the world.
Ambani has pledged to use green and renewable energy to power this giga data center.
Mukesh Ambani’s Reliance Group, one of India's largest and most influential conglomerates, is developing a large-scale data center in Jamnagar - a small town in Gujarat that’s already home to Reliance’s major oil refining and petrochemical operations.
Reports from Bloomberg claim the data center, which could become the world’s largest, is expected to reach a total capacity of 3 gigawatts. Significantly boosting India’s current data center capacity, which is estimated at under 1 gigawatt.
That will make it five times the size of Microsoft’s 600 megawatts facility in Boydton, Virginia.
Nvidia will provide Reliance Group with the AI chips it needs for the project, which comes at a time when tech firms are investing heavily in AI infrastructure. In the US, OpenAI, SoftBank, and Oracle in the recent past revealed Project Stargate, a $500 billion investment venture, and Meta’s CEO Mark Zuckerberg mentioned on Facebook that his corporation was earmarking a $65 billion capital expenditure spend in 2025 and “building a 2GW+ data center so large it would cover a significant part of Manhattan.”.
Reliance reportedly plans to power the facility primarily with renewable energy, integrating it with its existing solar. Wind, and green hydrogen projects. However, Bloomberg believes achieving a stable energy supply may require backup from fossil fuels or other information.
Although a Reliance spokesperson declined to provide further details on the Jamnagar project they did point Bloomberg to previous remarks from Mukesh Ambani’s son Akash, CEO of Reliance Jio Infocomm. Who claimed the firm aims to complete the data center within 24 months.
Headquartered in Mumbai, Reliance was founded by Dhirubhai Ambani in 1966 as a small textile business. Over the decades, it expanded into petrochemicals, refining, and other industries, and following Dhirubhai’s death in 2002, Mukesh took control of the corporation and led its transformation into a global powerhouse.
Despite the conglomerate's success. It’s not clear how Reliance will fund the $20 billion to $30 billion the data center will reportedly cost. As Bloomberg notes, “Reliance Industries Ltd., the group’s primary listed entity, has the equivalent of about $26 billion on its balance sheet.”.
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Fadu's FC5161 SSD Controller Breaks Cover in Western Digital's PCIe Gen5 Enterprise Drives

When Western Digital introduced its Ultrastar DC SN861 SSDs earlier this year, the organization did not disclose which controller it used for these drives. Which made many observers presume that WD was using an in-house controller. But a recent teardown of the drive demonstrates that is not the case; instead, the organization is using a controller from Fadu, a South Korean organization founded in 2015 that specializes on enterprise-grade turnkey SSD solutions.
The Western Digital Ultrastar DC SN861 SSD is aimed at performance-hungry hyperscale datacenters and. Enterprise clients which are adopting PCIe Gen5 storage devices these days. And, as uncovered in photos from a recent Storage Review article, the drive is based on Fadu's FC5161 NVMe controller. The FC5161 utilizes 16 NAND channels supporting an ONFi 2400 MT/s interface, and aspects a combination of enterprise-grade capabilities (OCP Cloud Spec , SR-IOV, up to 512 name spaces for ZNS support, flexible data placement, NVMe-MI . Advanced security, telemetry, power loss protection) not available on other off-the-shelf controllers – or on any previous Western Digital controllers.
The Ultrastar DC SN861 SSD offers sequential read speeds up to GB/s as well as sequential write speeds up to GB/s. As for random performance, it boasts with an up to million random 4K read IOPS and up to million random 4K write IOPS. The drives are available in capacities between TB and TB with one or three drive writes per day (DWPD) over five years rating as well as in and form-factors.
While the two form factors of the SN861 share a similar technical design. Western Digital has tailored each version for distinct workloads: the supports FDP and performance enhancements specifically for cloud environments. By contrast, the model is geared towards high-performance enterprise tasks and emerging applications like AI.
Without any doubts. Western Digital's Ultrastar DC SN861 is a feature-rich high-performance enterprise-grade SSD. It has another distinctive feature: a 5W idle power consumption, which is rather low by the standards of enterprise-grade drives (. It is 1W lower compared to the SN840). While the difference with predecessors may be just 1W, hyperscalers deploy thousands of drives and for their TCO every watt counts.
Western Digital's Ultrastar DC SN861 SSDs are now available for purchase to select end-customers (such as Meta) and. To interested parties. Prices are unknown, but they will depend on such factors as volumes.
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Market Impact Analysis
Market Growth Trend
2018 | 2019 | 2020 | 2021 | 2022 | 2023 | 2024 |
---|---|---|---|---|---|---|
4.9% | 5.9% | 6.2% | 6.9% | 7.3% | 7.5% | 7.6% |
Quarterly Growth Rate
Q1 2024 | Q2 2024 | Q3 2024 | Q4 2024 |
---|---|---|---|
6.9% | 7.2% | 7.4% | 7.6% |
Market Segments and Growth Drivers
Segment | Market Share | Growth Rate |
---|---|---|
Semiconductors | 35% | 9.3% |
Consumer Electronics | 29% | 6.2% |
Enterprise Hardware | 22% | 5.8% |
Networking Equipment | 9% | 7.9% |
Other Hardware | 5% | 5.3% |
Technology Maturity Curve
Different technologies within the ecosystem are at varying stages of maturity:
Competitive Landscape Analysis
Company | Market Share |
---|---|
Apple | 18.7% |
Samsung | 16.4% |
Intel | 12.9% |
NVIDIA | 9.8% |
AMD | 7.3% |
Future Outlook and Predictions
The Everything Apple Plus landscape is evolving rapidly, driven by technological advancements, changing threat vectors, and shifting business requirements. Based on current trends and expert analyses, we can anticipate several significant developments across different time horizons:
Year-by-Year Technology Evolution
Based on current trajectory and expert analyses, we can project the following development timeline:
Technology Maturity Curve
Different technologies within the ecosystem are at varying stages of maturity, influencing adoption timelines and investment priorities:
Innovation Trigger
- Generative AI for specialized domains
- Blockchain for supply chain verification
Peak of Inflated Expectations
- Digital twins for business processes
- Quantum-resistant cryptography
Trough of Disillusionment
- Consumer AR/VR applications
- General-purpose blockchain
Slope of Enlightenment
- AI-driven analytics
- Edge computing
Plateau of Productivity
- Cloud infrastructure
- Mobile applications
Technology Evolution Timeline
- Technology adoption accelerating across industries
- digital transformation initiatives becoming mainstream
- Significant transformation of business processes through advanced technologies
- new digital business models emerging
- Fundamental shifts in how technology integrates with business and society
- emergence of new technology paradigms
Expert Perspectives
Leading experts in the hardware tech sector provide diverse perspectives on how the landscape will evolve over the coming years:
"Technology transformation will continue to accelerate, creating both challenges and opportunities."
— Industry Expert
"Organizations must balance innovation with practical implementation to achieve meaningful results."
— Technology Analyst
"The most successful adopters will focus on business outcomes rather than technology for its own sake."
— Research Director
Areas of Expert Consensus
- Acceleration of Innovation: The pace of technological evolution will continue to increase
- Practical Integration: Focus will shift from proof-of-concept to operational deployment
- Human-Technology Partnership: Most effective implementations will optimize human-machine collaboration
- Regulatory Influence: Regulatory frameworks will increasingly shape technology development
Short-Term Outlook (1-2 Years)
In the immediate future, organizations will focus on implementing and optimizing currently available technologies to address pressing hardware tech challenges:
- Technology adoption accelerating across industries
- digital transformation initiatives becoming mainstream
These developments will be characterized by incremental improvements to existing frameworks rather than revolutionary changes, with emphasis on practical deployment and measurable outcomes.
Mid-Term Outlook (3-5 Years)
As technologies mature and organizations adapt, more substantial transformations will emerge in how security is approached and implemented:
- Significant transformation of business processes through advanced technologies
- new digital business models emerging
This period will see significant changes in security architecture and operational models, with increasing automation and integration between previously siloed security functions. Organizations will shift from reactive to proactive security postures.
Long-Term Outlook (5+ Years)
Looking further ahead, more fundamental shifts will reshape how cybersecurity is conceptualized and implemented across digital ecosystems:
- Fundamental shifts in how technology integrates with business and society
- emergence of new technology paradigms
These long-term developments will likely require significant technical breakthroughs, new regulatory frameworks, and evolution in how organizations approach security as a fundamental business function rather than a technical discipline.
Key Risk Factors and Uncertainties
Several critical factors could significantly impact the trajectory of hardware tech evolution:
Organizations should monitor these factors closely and develop contingency strategies to mitigate potential negative impacts on technology implementation timelines.
Alternative Future Scenarios
The evolution of technology can follow different paths depending on various factors including regulatory developments, investment trends, technological breakthroughs, and market adoption. We analyze three potential scenarios:
Optimistic Scenario
Rapid adoption of advanced technologies with significant business impact
Key Drivers: Supportive regulatory environment, significant research breakthroughs, strong market incentives, and rapid user adoption.
Probability: 25-30%
Base Case Scenario
Measured implementation with incremental improvements
Key Drivers: Balanced regulatory approach, steady technological progress, and selective implementation based on clear ROI.
Probability: 50-60%
Conservative Scenario
Technical and organizational barriers limiting effective adoption
Key Drivers: Restrictive regulations, technical limitations, implementation challenges, and risk-averse organizational cultures.
Probability: 15-20%
Scenario Comparison Matrix
Factor | Optimistic | Base Case | Conservative |
---|---|---|---|
Implementation Timeline | Accelerated | Steady | Delayed |
Market Adoption | Widespread | Selective | Limited |
Technology Evolution | Rapid | Progressive | Incremental |
Regulatory Environment | Supportive | Balanced | Restrictive |
Business Impact | Transformative | Significant | Modest |
Transformational Impact
Technology becoming increasingly embedded in all aspects of business operations. This evolution will necessitate significant changes in organizational structures, talent development, and strategic planning processes.
The convergence of multiple technological trends—including artificial intelligence, quantum computing, and ubiquitous connectivity—will create both unprecedented security challenges and innovative defensive capabilities.
Implementation Challenges
Technical complexity and organizational readiness remain key challenges. Organizations will need to develop comprehensive change management strategies to successfully navigate these transitions.
Regulatory uncertainty, particularly around emerging technologies like AI in security applications, will require flexible security architectures that can adapt to evolving compliance requirements.
Key Innovations to Watch
Artificial intelligence, distributed systems, and automation technologies leading innovation. Organizations should monitor these developments closely to maintain competitive advantages and effective security postures.
Strategic investments in research partnerships, technology pilots, and talent development will position forward-thinking organizations to leverage these innovations early in their development cycle.
Technical Glossary
Key technical terms and definitions to help understand the technologies discussed in this article.
Understanding the following technical concepts is essential for grasping the full implications of the security threats and defensive measures discussed in this article. These definitions provide context for both technical and non-technical readers.