
Google Beam Hands-On: The Most Lifelike 3D Video Calling That Didn't Totally Blow Me Away
Google has made something really impressive, but it's not exactly perfect—yet.
After Android XR smart glasses, I was most excited to try out Google Beam, a shrunken and commercialized version of Project Starline 3D video calling booth that Google has been plugging away at over the past couple of years. Seemingly everyone who has tried Project Starline has told me how mind-blowing it is to video call with someone inside of what's essentially a glasses-free 3D TV, and feel like they're really sitting in front of them. I finally got the opportunity to try the technology at Google I/O 2025—it's impressive, but it's far from some perfect replication of the person you're talking with.
Let me just repeat myself so there's no confusion: that Google can replicate a person from a bunch of 2D videos that are then stitched together into 3D using a custom AI neural network is nothing short of wizardry. The 3D person inside of the screen really feels as if they're sitting across the table. In my demo, which was actually using the older Project Starline setup and not the more compact one HP is making, a friendly guy named Jerome, who said he was being streamed from Seattle, Wash. to my screen in Mountain View, Calif., reached out to hand me an apple that was in his hand, and I instinctively tried to grab it. A few beats later, when he told me the demo was over, we high-fived—I, again, did it without much thought. All the while, during our 1-2 minute convo, we made eye contact, smiled, and laughed, as if we were together IRL. It was all very… normal.
Ridiculously short as my demo was, the limitations of the current version of 3D video calling technology were immediately obvious as soon as I sat down in front of the TV 'booth.' When Jerome appeared on the screen, I could see that the 3D render of him was jittering very slightly. The entire time, I could see the slightly horizontal jitters as he moved around. The closest thing I can compare it to is like slightly jittery TV scanlines—but it was something that I noticed right away and became fixated on.
Another limitation is the camera tracking and viewing angle—it only really works looking at it dead center. Whenever I shifted my chair to the left or right, Jerome's picture darkened and became distorted. Even with an 8K resolution, the light field display still looked grainy. I also noticed that if you try to 'look around' the other person's body, there's nothing there. It's just… empty particle-like space. That makes sense because Beam/Starline's cameras are only capturing the front and parts of a person's sides, not back angles. If you've ever seen the back of a person's portrait mode photo (see below), you'll know there's just no captured data back there.
This is too cool: iPhone Portrait mode…exploded into depth layers pic.twitter.com/oA8FicilWG
— Ray Wong (@raywongy) November 22, 2018
I'm also suspicious as hell about how well Beam works in less-than-optimal lighting. The room I was in had nicely diffused lighting. I suspect that the image quality might be greatly degraded with dimmer lighting. There would probably be some real noticeable image noise.
I should also note that my chat with Jerome was actually my second demo. My first demo was with a guy named Ryan. The experience was equally as brief, but Starline crashed and his image froze, and I had to be transferred to Jerome. Prototypes! Sure, Zoom calls can freeze up too, but you know what doesn't freeze up? Real-life conversations in person.
Because these units were Project Starline ones—the cameras and speaker modules were attached to the sides of the screen instead of built into them—there's no way to know whether Google Beam is a more polished product or not.
I really expected to have my mind blown like everyone else, but because it felt so natural, the whole experience didn't quite make me freak out. And I'm known for freaking out when some new technology seems amazing. Maybe that's a blessing in disguise—there's no shock factor (not for me, at least), which means the Beam/Starline technology has done its job (mostly) getting out of the way to allow for genuine communication.

Try Our AI Features
Explore what Daily8 AI can do for you:
Comments
No comments yet...
Related Articles
Yahoo
41 minutes ago
- Yahoo
Data Center Global Market Landscape 2025-2030: New Tariff Policies Threaten Data Center Construction Costs
Key trends include enhanced sustainability through renewable energy, increased demand for AI and 5G technologies, higher rack density, liquid cooling adoption, and innovative construction techniques. Major participants like AWS, Google, and Microsoft are pushing investments globally, particularly in IT infrastructure. Trade tensions and tariffs pose challenges to infrastructure costs. Data Center Market Dublin, June 02, 2025 (GLOBE NEWSWIRE) -- The "Data Center Market Landscape 2025-2030" report has been added to Data Center Market was valued at USD 379.30 Billion in 2024, and is projected to reach USD 627.40 Billion by 2030, rising at a CAGR of 8.75%. The data center market in several regions is experiencing significant growth, driven by a combination of technology advancements, increased digitalization, and government support. In terms of investment United States and China dominate the global data center market, both contributing more than 65% market share in 2024. In the Americas, the United States has contributed the highest market share in terms of investments in 2024, followed by Latin America and Canada. In Europe, Western Europe contributed the largest market share in 2024, followed by Nordic and Central & Eastern Europe. In MEA, the Middle East dominates the data center market in 2024 in terms of investments, followed by Africa. In APAC, China dominated the data center market share in terms of investment in 2024, followed by Southeast Asia, Australia, Japan, India, South Korea, Hong Kong, Taiwan, New Zealand, and the rest of APAC countries. In the SEA region, Malaysia dominated the data center market share in terms of investment in 2024, followed by Singapore, Indonesia, Thailand, the Philippines, Vietnam, and other SEA countries. KEY TRENDS Data Center Operators Enhancing Sustainability The adoption of renewable energy is on the rise across the globe, and it will continue to grow. The data center market is responsible for most of the global electricity consumption, and they have a significant impact on the environment. To reduce their environmental impact, operators in the data center market are powering their facilities with renewable and green energy. The sustainability measures are significantly attracting data center operators to invest in the industry with a growing commitment to environmental responsibility. The adoption of renewable energy and sustainability initiatives should be mandated for data center operators to enhance energy efficiency. As the demand for digital services is rising, the focus on sustainable initiatives should also be raised simultaneously across the world to promote sustainability and reduce greenhouse gases. Adoption of Artificial Intelligence The adoption of artificial intelligence across various industries for enhanced operations has seen significant improvement, and it has also increased demand for computing power and advanced data management. Various servers are required to process huge data as the AI demand is rising and the operation of such huge servers requires increased need for efficient power and as the high rack density generates more amount of heat, to cool this servers advanced cooling infrastructure should be implemented and thus there will be increasing demand for liquid immersion cooling in data centers globally. Such factors are projected to support the data center market growth. 5G Networks Fueling Edge Data Center Deployments The growth in 5G service adoption fuels the growth of edge deployments due to increased connectivity options with established hyperscale data centers. Edge data centers will create a decentralized model of data centers, where multiple edge data centers will be connected to a centralized hyperscale facility. The growth of edge data centers is fueled by 5G deployment, IoT proliferation, and the need for real-time data processing, enabling faster and low-latency performance to support the digital transformation. Increase in Rack Power Density The global data center market is witnessing a significant surge in digital transformation, fueled by advancements in cloud computing, artificial intelligence, and big data analytics. This growth is demanding data centers capable of processing vast data efficiently. The operators are addressing this by increasing rack density. The Uptime Institute's 2024 survey reveals that the average rack density is around 8 kW, driven by high-power server processors and GPU deployments, and some facilities have even deployed rack densities of over 50 kW to 100 kW to support enterprise, colocation, and cloud segments. Deployment of Microgrids in Data Centers Microgrids have the added advantage of minimizing the environmental and public health impact that data centers have on their surroundings. Usually, the data center market relies on diesel generators for backup power, even though these generators are both unreliable and polluting, which can lead to objections from community members against data center construction in their areas. With the installation of microgrid systems, data center facilities can become Distributed Energy Resources (DERs), which can respond to grid conditions in real-time. This enables them to mitigate outages and grid stress. Innovative & Sustainable Construction Technologies There is an increasing focus on sustainable and innovative data center technologies. With the growing awareness of environmental concerns and the need for energy efficiency, operators in the data center market are investing in innovative and sustainable construction techniques for the development of data centers. Schneider Electric, Huawei Technologies, and Vertiv are among the popular companies that claim their facilities can reduce construction and deployment times by almost 40% to 50% compared with traditional data center build methods. The integration of renewable energy sources, advanced cooling systems, and scalable designs is crucial for future developments in the data center industry. Several strategies will be implemented to enhance the effectiveness of data center construction by prioritizing sustainability in the forecast period. Rising Adoption of Liquid Cooling Technologies The increasing demand for data processing and storage has led to a significant rise in the heat generated by IT equipment in data centers. In global data centers, liquid cooling is being adopted as an alternative to address these rising heat challenges in the facilities. Liquid cooling adoption is expected to increase rapidly in global data centers in the upcoming years as data centers are increasingly demanding of it, as this technology offers superior heat management, enhanced performance, and scalability for next-gen technologies. The rising heat management demands in data centers driven by AI and high-performance computing are fueling the adoption of advanced liquid cooling technologies such as direct-to-chip and immersion cooling in data centers, and these investments are expected to increase further in the future. U.S. TARIFF IMPACT ON THE GLOBAL DATA CENTER MARKET The recent tariff war has posed a challenge for data center infrastructure, particularly in sourcing raw materials, as increased import and export taxes are expected to raise overall infrastructure costs. The recent increase in tariffs has started to threaten both the rising cost and lead time of data center construction. Some of the construction-related materials that may be impacted include iron and steel, aluminum, and others that are crucial to data center development. SEGMENTATION INSIGHTS Hyperscale operators such as AWS, Google, Meta, and Microsoft are involved in their respective data center projects across the globe. These operators focus more on the deployment of OCP-scale infrastructure in their data center facilities. This drives the investments for OCP infrastructure across the globe. The global data center market is witnessing more investment in IT infrastructure due to the increasing demand for AI-ready data centers across the globe. IT infrastructure in the data center is expected to grow at a CAGR of 6.24%. AI and HPC workloads operate at a higher density, which makes traditional cooling inadequate. Therefore, data centers are investing in installing liquid cooling techniques in their facilities. Liquid cooling in the data center is expected to grow at a CAGR of 20.86% The use of advanced technologies, such as cloud, IoT, big data, quantum computing, and AI, by businesses is expected to increase the adoption of HPC infrastructure in the coming years across the globe. VENDORS IT Infrastructure Providers Arista Networks Atos Broadcom Cisco Systems DataDirect Networks (DDN) Dell Technologies Extreme Networks Fujitsu Hewlett Packard Enterprise Hitachi Vantara Huawei Technologies IBM Infortrend Technology Inspur Intel Lenovo Micron Technology MiTAC Holdings NEC Corporation NetApp Nimbus Data Oracle Pure Storage QNAP Systems Quanta Cloud Technology Quantum Seagate Technology Silk Synology Western Digital Wiwynn Global Data Center Contractors and Subcontractors AECOM Arup Corgan DPR Construction Fortis Construction Holder Construction Jacobs Mercury RED Engineering Design Syska Hennessy Group Turner Construction Turner & Townsend AtkinsRealis Aurecon Group Basler & Hofmann CAP INGELEC Collen Construction COWI Dornan Engineering and Construction DSCO Group Edarat Group EMCOR Group Ethos Engineering EYP Mission Critical Facilities Fluor Corporation Gensler Gilbane Building Company HDR Architecture HITT Contracting Hoffman Construction ISG Kirby Group Engineering Laing O'Rourke Linesight M+W Group Mortenson Quark Unlimited Engineering Royal HaskoningDHV Skanska Sterling and Wilson Structure Tone Winthrop Technologies Global Support Infrastructure Providers ABB Caterpillar Cummins Delta Electronics Eaton Johnson Controls Rehlko Legrand Rittal Rolls Royce Schneider Electric STULZ Vertiv 3M Airedale Alfa Laval Asetek Assa Abloy Asperitas Bloom Energy Carrier Condair Group CoolIT Systems Cormant Cyber Power Systems Dakin Applied DCX LIQUID COOLING SYSTEMS Enlogic FNT Software Generac Power Systems GIGABYTE Green Revolution Cooling HITEC Power Protection Honeywell Iceotope KyotoCooling LiquidStack Mitsubishi Electric Munters Natron Energy NetZoom Nlyte Software Panduit Pillar Power Systems Siemens Submer Toshiba Trane Technologies Yanmar ZincFive Key Attributes: Report Attribute Details No. of Pages 571 Forecast Period 2024 - 2030 Estimated Market Value (USD) in 2024 $379.3 Billion Forecasted Market Value (USD) by 2030 $627.4 Billion Compound Annual Growth Rate 8.7% Regions Covered Global The report includes the investment in the following areas:Segmentation by Facility Type Hyperscale Data Centers Colocation Data Centers Enterprise Data Centers Segmentation by Infrastructure IT Infrastructure Electrical Infrastructure Mechanical Infrastructure General Construction Segmentation by IT Infrastructure Server Infrastructure Storage Infrastructure Network Infrastructure Segmentation by Electrical Infrastructure UPS Systems Generators Transfer Switches & Switchgear Power Distribution Units Other Electrical Infrastructure Segmentation by Mechanical Infrastructure Cooling Systems Racks Other Mechanical Infrastructure Segmentation by Cooling Systems CRAC & CRAH Units Chiller Units Cooling Towers, Condensers, and Dry Coolers Economizers & Evaporative Coolers Other Cooling Units Segmentation by Cooling Techniques Air-based Liquid-based Segmentation by General Construction Core & Shell Development Installation & Commissioning Services Engineering & Building Design Physical Security Fire Detection & Suppression DCIM Segmentation by Tier Standard Tier I & II Tier III Tier IV Segmentation by Geography North America The U.S. Canada Latin America Brazil Mexico Chile Colombia Argentina Rest of Latin America Western Europe The U.K. Germany France Netherlands Ireland Switzerland Italy Spain Belgium Portugal Greece Other Western European Countries Nordics Sweden Norway Denmark Finland Iceland Central & Eastern Europe Russia Poland Austria Czechia Other Central & Eastern European Countries Middle East UAE Saudi Arabia Israel Oman Qatar Jordan Bahrain Kuwait Other Middle East Countries Africa South Africa Kenya Nigeria Egypt Other African Countries APAC China Hong Kong Australia New Zealand Japan India South Korea Taiwan Rest of APAC Southeast Asia Singapore Indonesia Malaysia Thailand Philippines Vietnam Other Southeast Asia Countries For more information about this report visit About is the world's leading source for international market research reports and market data. We provide you with the latest data on international and regional markets, key industries, the top companies, new products and the latest trends. Attachment Data Center Market CONTACT: CONTACT: Laura Wood,Senior Press Manager press@ For E.S.T Office Hours Call 1-917-300-0470 For U.S./ CAN Toll Free Call 1-800-526-8630 For GMT Office Hours Call +353-1-416-8900Error in retrieving data Sign in to access your portfolio Error in retrieving data Error in retrieving data Error in retrieving data Error in retrieving data

Associated Press
an hour ago
- Associated Press
Colle AI Unifies Multichain Design for Frictionless NFT Experience Creation
Platform introduces cohesive multichain architecture to simplify NFT development, deployment, and interaction across blockchain ecosystems London, United Kingdom--(Newsfile Corp. - June 2, 2025) - Colle AI (COLLE), the AI-powered NFT creation platform, has unveiled a unified multichain design system to streamline how creators develop and deploy NFTs across major blockchain networks. This strategic refinement reduces complexity and empowers creators to focus on innovation rather than infrastructure. [ This image cannot be displayed. Please visit the source: ] Design and deploy NFTs seamlessly across chains with Colle AI's unified multichain system. To view an enhanced version of this graphic, please visit: The updated architecture brings together Ethereum, Solana, Bitcoin, XRP, and BNB Chain under a seamless creation flow. Colle AI's intelligent backend handles routing, metadata formatting, smart contract automation, and gas optimization—enabling users to launch NFTs across chains without manual configuration or platform switching. With a user-centric interface backed by AI automation, the unified system also supports real-time design syncing, batch asset deployment, and dynamic cross-chain interaction. Creators can now move from concept to multichain distribution in minutes, while benefiting from Colle AI's performance enhancements and integrated scalability. Colle AI's multichain design evolution marks another step in simplifying Web3 for creators—enabling frictionless NFT creation and expanding access to decentralized tools that adapt to each user's creative goals. About Colle AI Colle AI leverages AI technology to simplify the NFT creation process, empowering artists and creators to easily transform their ideas into digital assets. The platform aims to make NFT creation more accessible, fostering innovation in the digital art space. Media Contact Dorothy Marley KaJ Labs +1 707-622-6168 [email protected] Social Media Twitter Instagram To view the source version of this press release, please visit

Associated Press
an hour ago
- Associated Press
Atua AI Expands Multichain Intelligence with Modular Infrastructure Innovations
Next-Gen Architecture Enables Scalable AI Deployment Across Blockchain Ecosystems Singapore, Singapore--(Newsfile Corp. - June 2, 2025) - Atua AI (TUA), the decentralized AI-powered productivity platform, has expanded its multichain capabilities through the launch of modular infrastructure innovations designed to optimize performance, adaptability, and intelligence across decentralized networks. The update provides Web3 developers and enterprises with enhanced tools for deploying flexible, AI-driven solutions across multiple blockchains. [ This image cannot be displayed. Please visit the source: ] Scalable multichain intelligence powered by modular AI infrastructure To view an enhanced version of this graphic, please visit: With this modular infrastructure upgrade, Atua AI introduces a more granular system architecture that allows its core AI modules-such as Chat, Writer, and Classifier-to operate independently, synchronize across chains, and dynamically scale based on workload. Each module can now be deployed in isolation or in combination, allowing users to tailor automation workflows for specific tasks, chains, or governance structures. This advancement empowers builders to harness real-time intelligence across Ethereum, BNB Chain, XRP Ledger, and other major blockchains while maintaining low latency, cost-efficiency, and operational control. It supports diverse use cases from decentralized finance to NFT content generation, offering enterprises the flexibility to scale operations securely and efficiently. Atua AI's commitment to modular design ensures a future-ready infrastructure capable of meeting the evolving needs of decentralized applications. This innovation strengthens its position as a leading provider of AI-powered tools built to scale with the multichain internet. About Atua AI Atua AI offers AI-powered productivity and creativity tools in the Web3 space. Its features include Chat, Writer, Imagine, Voiceover, and Classifier-all designed to empower users with intelligent, decentralized solutions for content creation, coding, analysis, and more. Media Contact Dorothy Marley KaJ Labs +1 707-622-6168 [email protected] Social Media To view the source version of this press release, please visit