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Lead Intelligent × OPPO: Enabling the “Crease-Free Folding” Breakthrough Through Chip-Level Precision Manufacturing

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WUXI, China, June 5, 2026 /PRNewswire/ — In foldable smartphones, the ultimate competitive frontier is no longer the display itself—but the microscopic support structures hidden beneath it. Recently, Wuxi Lead Intelligent Equipment Co., Ltd. (hereafter referred to as Lead Intelligent) partnered with global device manufacturer OPPO to jointly advance a breakthrough manufacturing solution: the cross-industry introduction of chip-level 3D printing technology into the production of foldable smartphone hinge structures.

This foundational innovation—one that moves beyond the limits of conventional mechanical machining—has become a core enabling technology supporting the “crease-free folding” experience targeted for the OPPO Find N6. At the same time, it opens new possibilities for precision manufacturing across the global consumer-electronics industry.

Crossing a Microscopic Manufacturing Threshold

When Conventional Machining Approaches Its Physical Limits

In recent years, foldable smartphones have entered a phase of rapid global expansion. Yet the visible screen crease remains one of the most persistent barriers to improving user experience.

Why is the crease so difficult to eliminate? Within the extremely constrained structural space of a foldable smartphone, even micron-level dimensional deviations that are invisible to the naked eye can accumulate after thousands of folding cycles and ultimately manifest as visible surface deformation on the display.

Traditional machining and polishing processes are now approaching their physical precision limits, making further step-change improvements in surface flatness increasingly difficult to achieve.

To overcome this industry-wide microscopic constraint, Lead Intelligent and OPPO moved beyond conventional process pathways by introducing a micron-scale additive manufacturing solution—a technology typically reserved for semiconductor and chip fabrication environments.

Using this approach, key hinge components can be reconstructed at the micron scale, enabling the deposition of an ultra-uniform polymer support layer precisely matched to the hinge surface geometry. This engineered micro-support structure provides controlled stress release during repeated folding cycles, creating the mechanical foundation required for a genuinely crease-minimized folding experience and marking an important step toward the next generation of foldable-device structural design.

Industrial Synergy

Driving the Evolution of Advanced Manufacturing Through Foundational Innovation

Lead Intelligent’s ability to precisely control the microscopic spreading behavior of single-layer polymer materials across hinge substrates reflects long-term technological accumulation in high-end equipment engineering and precision manufacturing. It also represents the outcome of deep collaborative engagement with OPPO across product architecture and structural-design development.

Together, the two companies overcame major technical barriers in ultra-high-precision three-dimensional contour detection and hardware integration. Through thousands of rounds of joint optimization across critical process parameters, the partners ultimately enabled this advanced manufacturing technology to achieve scalable validation in real commercial production scenarios, marking a decisive transition from proof-of-concept capability to industrial deployment.

By challenging conventional manufacturing boundaries and seeking solutions at the microscopic scale, the collaboration between Lead Intelligent and OPPO represents more than a targeted engineering upgrade addressing foldable-device hinge performance. It signals a broader step forward in China’s capabilities in foundational materials engineering and precision manufacturing technologies.

Looking ahead, Lead Intelligent will continue advancing into the most technically demanding frontiers of advanced manufacturing, deepening collaboration with leading partners across the industrial value chain and accelerating the transition of next-generation laboratory-stage technologies into high-end industrial applications. Through these efforts, Lead Intelligent aims to provide a stronger technological foundation supporting collaborative innovation across the global advanced-manufacturing ecosystem.

View original content:https://www.prnewswire.com/news-releases/lead-intelligent-O-oppo-enabling-the-crease-free-folding-breakthrough-through-chip-level-precision-manufacturing-302792401.html

SOURCE Wuxi Lead Intelligent Equipment Co., Ltd.

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TECNO Wins Two IFA Global Product Technology Innovation Awards for Modular Phone and Tonino Lamborghini TECNO TAURUS

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BERLIN, Sept. 6, 2026 /PRNewswire/ — TECNO, a global AI-driven innovative technology brand, achieved two IFA Global Product Technology Innovation Awards at IFA 2026 for its products: the revolutionary TECNO Modular Phone and the ultra-compact Tonino Lamborghini TECNO TAURUS (MEGA MINI G1 Pro).

Tonino Lamborghini TECNO TAURUS (MEGA MINI G1 Pro) took the Miniaturized Gaming PC Technology Innovation Gold Award, standing out with its Italian aesthetics and the exceptional performance in the compact body. Meanwhile, the TECNO Modular Phone was honored with the Ultra-Slim Magnetic Modular Technology Innovation Gold Award, praised for its ultra-slim craftsmanship and unique modular magnetic technology.

These awards once again demonstrate TECNO’s sustained breakthroughs in product innovation and industry-leading craftsmanship in design excellence. The Global Product Technology Innovation Awards were established in 2014 by IDG, IFA, and DIHK to celebrate excellence across the global consumer electronics industry. The awards honor products that set new industry benchmarks and drive innovation through intelligent technology and user-centric design.

TECNO Modular Phone: The World’s Thinnest Modular Smartphone

At just 4.9mm, the TECNO Modular Phone is the world’s slimmest modular smartphone. Powered by proprietary Modular Magnetic Interconnection Technology—combining a precision magnetic array with pogo-pin connectors—it offers a flexible ecosystem of ten high-performance modules that respond dynamically to changing user needs. The host retains a 3000–4000mAh battery, while modules draw power directly for a snap-and-go experience. The portless unibody achieves an IP-rating for dust and water resistance. The TECNO Modular Phone is also set to enter mass production soon.

Engineered to be the ultimate physical gateway for personal AI assistants, it also resolves the inherent conflict between rising AI computing demands and limited device space. The technology has earned over 20 accolades from leading media including CNET, Android Authority, Yanko Design, and The Verge — with CNET and Yanko Design naming it among the Best of MWC 2026, and The Verge recognizing it as the Best Mobile Tech at MWC 2026.

Tonino Lamborghini TECNO TAURUS: One of the World’s Smallest Water-Cooling Gaming Mini-PCs

Tonino Lamborghini TECNO TAURUS (MEGA MINI G1 Pro) is one of the world’s smallest water-cooling gaming PCs at around 6.36 liters. Its vertical chassis with a panoramic transparent window fuses iconic Italian design with raw engineering, transcending traditional hardware to bring a luxury lifestyle into the gaming tech arena. Powered by the Intel® Core™ i9-13900HK and NVIDIA® GeForce RTX™ 5060 (614 AI TOPS, 145W TGP, DLSS 4), it achieves the absolute pinnacle of performance, empowering gamers with high-fidelity play and users with a high-efficiency AI workstation. The water-cooling system sustains peak frequencies under load, while 15 ports including OCuLink, USB4, and WiFi 6E deliver expandability and connectivity. The design was recognized with Yanko Design’s Best of MWC award.

In addition to these two award-winning products delivering powerful, stylish, and AI-driven solutions, TECNO made waves at IFA with the Next-Gen Bezelless Concept Phone featuring a revolutionary 0mm screen bezel, and the convertible laptop MEGABOOK T15 360 Pro. Relentlessly pushing the boundaries of design, performance, and AI innovation, TECNO is pioneering limitless possibilities for futuristic technology and trailblazing experiences.

About TECNO

TECNO is an innovative, AI-driven technology brand with a presence in over 70 markets across five continents. Committed to transforming the digital experience in global emerging markets, TECNO relentlessly pursues the perfect integration of contemporary aesthetic design with the latest technologies and artificial intelligence. Today, TECNO offers a comprehensive ecosystem of AI-powered products, including smartphones, smart wearables, laptops, tablets, smart gaming devices, the HiOS operating system, and smart home products.

Guided by its brand essence of “Stop At Nothing,” TECNO continues to pioneer the adoption of cutting-edge technologies and AI-driven experiences for forward-looking individuals, inspiring them to never stop pursuing their best selves and brightest futures. For more information, please visit TECNO’s official site: www.tecno-mobile.com.

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SOURCE TECNO MOBILE LIMITED

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LG Energy Solution and Seoul National University Open the Door to Commercializing Next-Generation LMR Batteries

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Joint research team suppresses gas evolution, one of the biggest challenges to commercializing lithium manganese-rich (LMR) batteriesThe technology was applied to and optimized for 40 Ah-class large-format cells, which retained 92.2 percent of initial energy after 883 cyclesResearch published in prestigious international journal Nature Communications

SEOUL, South Korea, Sept. 6, 2026 /PRNewswire/ — LG Energy Solution and Seoul National University have secured a key technology that can significantly improve the stability of next-generation lithium manganese-rich (LMR) batteries. On September 7 Seoul time, LG Energy Solution announced the results of a joint study with Professor Jongwoo Lim and his research team in Seoul National University’s Department of Chemistry.

The findings were published in Nature Communications, a prestigious international academic journal, and support the feasibility of applying LMR batteries to large-format cells for electric vehicles (EVs).

Controlling oxygen reaction reversibility suppresses gas evolution, a key challenge to commercialization, laying the foundation for large-cell commercialization

The joint research team identified factors contributing to gas generation and capacity degradation during LMR battery charging and discharging and developed optimal operating conditions for large-format cells to control these issues.

LMR is a next-generation cathode material that can lower material costs by using lower-cost manganese as a primary material without using cobalt. It can achieve high energy density by storing energy through both transition metals, such as nickel and manganese, and oxygen in the cathode material.

However, if oxygen oxidized during charging does not fully return to its original state during discharge, it can damage the battery’s internal structure and generate gas. In large-format cells for EVs, where available internal space is limited, this can increase internal pressure and degrade performance. As a result, gas generation has been a key challenge in commercializing LMR batteries.

The joint research team analyzed oxygen redox under different charging and discharging conditions and found that oxygen recovery depends on both the upper cutoff voltage during charging and the discharge cutoff voltage during discharge.

In testing, lowering the upper charging voltage from 4.6 V to 4.3 V increased the reduction of oxidized oxygen from 86 percent to 97 percent. The team also confirmed that lowering the discharge cutoff voltage from the conventional 3.0 V to 2.0 V enabled oxygen to recover to nearly its original state.

Based on these findings, LG Energy Solution researchers redesigned the operating voltage range and formation process conditions for 40Ah-class large-format LMR cells. They applied a lower-temperature formation process to effectively suppress gas generation associated with large-format cells.

As a result, the optimized 40 Ah-class large-format LMR cells retained 92.2 percent of their initial energy even after 883 charge and discharge cycles. This outstanding cycle-life stability opens the path for the commercialization of LMR materials in large-format cells for EVs, expanding their potential beyond small-format applications.

“This study identified the causes of degradation in LMR batteries from the perspective of oxygen reversibility and demonstrated that cell stability can be improved through electrochemical protocol design alone,” said Professor Jongwoo Lim of Seoul National University. “We confirmed that achieving long-term stability in LMR batteries requires comprehensive consideration of not only charging conditions but also discharge conditions.”

“This research addresses one of the key challenges facing LMR batteries,” said an LG Energy Solution spokesperson. “It demonstrates that stable battery life can be secured even in large-format cells by effectively suppressing gas generation, providing an important foundation for growth in the next-generation LMR battery market.”

About LG Energy Solution

LG Energy Solution (KRX: 373220) is a leading global manufacturer of lithium-ion batteries for electric vehicles, mobility, IT, and energy storage systems. With more than 30 years of experience in revolutionary battery technology and extensive research and development (R&D), the company is the top battery-related patent holder in the world with over 100,000 patents. Its robust global network, which spans North America, Europe, and Asia, includes battery manufacturing facilities established through joint ventures with major automakers. Committed to building sustainable battery ecosystem, LG Energy Solution aims to achieve carbon neutrality across its value chain by 2050, while embodying the value of shared growth and promoting diverse and inclusive corporate culture. To learn more about LG Energy Solution’s ideas and innovations, visit https://news.lgensol.com.

View original content:https://www.prnewswire.com/news-releases/lg-energy-solution-and-seoul-national-university-open-the-door-to-commercializing-next-generation-lmr-batteries-302870957.html

SOURCE LG Energy Solution

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Park Systems Expands North American Footprint with New Regional Office in Hillsboro, Oregon

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SANTA CLARA, Calif., Sept. 6, 2026 /PRNewswire/ — Park Systems, a leading global manufacturer of atomic force microscopy (AFM) and nanoscale metrology systems, today announced the opening of its newest regional office in Hillsboro, Oregon. The strategic addition enhances the company’s ability to provide localized technical support, rapid-response customer engineering, and direct account management to key semiconductor and high-technology partners across the Pacific Northwest.

The Hillsboro facility complements Park Systems’ existing North American operations network, which includes the U.S. Headquarters in Santa Clara, California, the Latin America Office in Mexico City, and the Advanced Applications Office in Boston, Massachusetts.

“Our mission at Park Systems has always been centered on enabling nanoscience and semiconductor innovation through high-precision metrology,” said Dr. Sang-il Park, Founder and CEO of Park Systems. “Establishing our presence in Hillsboro marks an important milestone in our global growth strategy. By embedding our operations directly within key technology hubs like the Silicon Forest, we deepen our ability to collaborate closely with industry pioneers and drive next-generation semiconductor advancements.”

“Adding a physical presence in Hillsboro directly answers the needs of our regional semiconductor and microelectronics customers,” added Dr. Stefan Kaemmer, President of Park Systems, Inc. “With dedicated application engineers and technical service teams on the ground, we can deliver faster response times, tailored technical partnerships, and hands-on support as our customers scale their advanced manufacturing capabilities.”

The new Hillsboro location will focus on field service engineering, application support, and regional account coordination, reinforcing Park Systems’ commitment to empowering semiconductor and scientific progress across North America.

For more information about Park Systems locations and services, visit www.parksystems.com.

About Park Systems

Park Systems is a global leader in nanometrology, providing advanced measurement solutions for research and industrial applications. Founded by Dr. Sang-il Park, a contributor to the invention of atomic force microscopy (AFM) at Stanford University, the company has grown through continuous innovation and strategic acquisitions. Its technology portfolio includes AFM, white light interferometry (WLI), digital holographic microscopy (DHM), imaging spectroscopic ellipsometry (ISE), active vibration isolation systems, and solid metal probes.

View original content to download multimedia:https://www.prnewswire.com/news-releases/park-systems-expands-north-american-footprint-with-new-regional-office-in-hillsboro-oregon-302870972.html

SOURCE Park Systems, Inc.

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