# Capacity Expansion Related Articles

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Wall Street Unanimously Bullish: ASML's Capacity Surge, The 'Peak Theory' for Memory Can Be Put to Rest

Wall Street is collectively bullish on ASML after the company reported a far-better-than-expected Q2 and significantly raised its full-year guidance, while providing a rare 2027-2028 capacity expansion roadmap. Key financials surpassed consensus: Q2 revenue of €9.3B beat estimates, with gross margin at 54%. The company raised its 2026 revenue outlook to €43-€45B and expects Q3 revenue of €11-€12B. Most notably, management outlined aggressive capacity increases for both Low-NA EUV and immersion DUV systems. EUV capacity is projected to reach ~85 units in 2027 (up ~30% from 2026) and potentially ~110 in 2028. DUV capacity is set to rise to ~169 units in 2027 and ~220 in 2028. These targets exceed prior market expectations, leading analysts to significantly revise up 2028 earnings estimates, with JPMorgan suggesting EPS could surpass €65. Major banks including Goldman Sachs, JPMorgan, and Barclays maintained Buy/Overweight ratings. Analysts view the roadmap as a direct rebuttal to narratives about an AI-driven demand peak or an imminent memory price top. ASML stated that AI demand is accelerating expansion in both logic (for nodes like 2nm) and memory segments (driven by DDR/HBM shortages and the transition to more EUV-intensive nodes like 1c/1d DRAM). This structural shift, alongside the high wafer intensity of HBM production, is seen extending the memory upcycle. While most reactions were positive, some nuance existed on whether the 2027 EUV guidance was sufficiently aggressive versus heightened expectations. Overall, the results are seen as validating sustained AI-driven demand and ASML's unrivaled position as the key beneficiary of the industry's advanced node transition.

链捕手07/15 14:57

Wall Street Unanimously Bullish: ASML's Capacity Surge, The 'Peak Theory' for Memory Can Be Put to Rest

链捕手07/15 14:57

Optical Chips: Collective Capacity Expansion

The global optical chip industry is experiencing a massive wave of expansion driven by surging AI data center demand. Major players across the US, Japan, Europe, and China are aggressively investing to ramp up production capacity. In the US, Coherent is expanding its 6-inch Indium Phosphide (InP) semiconductor fab in Texas, supported by CHIPS Act funding and a $2 billion strategic investment from NVIDIA. Lumentum is building a new factory for InP optical devices, and Nokia is scaling its advanced photonic chip packaging and testing capabilities. NVIDIA's investments aim to secure future supply of critical lasers and optical interconnect products for AI infrastructure. Japan's JX Advanced Metals, a leading InP substrate supplier, plans a multi-billion yen investment to increase its capacity 7-10 times, strengthening its grip on the crucial upstream materials market. In Europe, IQE and Tower Semiconductor settled a patent dispute and signed a multi-year InP epitaxial wafer supply agreement, highlighting that next-generation silicon photonics platforms will integrate high-performance InP components. STMicroelectronics and Sivers Semiconductors are also expanding silicon photonics production and partnerships. China is rapidly building out its domestic supply chain. Dongshan Precision's subsidiary, Source Photonics, announced a $12 billion project to expand optical chip and module production. Companies like Sanan Optoelectronics and Yunnan Germanium are scaling up InP chip manufacturing and substrate production, moving towards vertical integration from materials to modules. While debate continues around the exact future architecture—whether CPO (Co-Packaged Optics), NPO, or pluggables will dominate—analysts like Morgan Stanley argue the underlying driver is unchangeable: the explosive growth in bandwidth demand. This will inevitably increase the volume of optical engines, lasers, and related content per GPU, regardless of the final technical path. The competition for "more light" in the AI era has intensified into a global, full-chain capacity race.

marsbit06/20 10:16

Optical Chips: Collective Capacity Expansion

marsbit06/20 10:16

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