Security teams log 54% of successful attacks and alert on just 14%. The rest move through your environment unseen.
The Picus whitepaper shows how breach and attack simulation tests your SIEM and EDR rules so threats stop slipping by detection.
An anonymous reader quotes a report from MacRumors: Apple has reportedly sent legal letters to dozens of former Apple employees now working at OpenAI, telling them to preserve potentially relevant documents and communications as it continues to pursue its trade secret lawsuit against the AI company. The Financial Times (paywalled) reports that Apple has targeted around 40 former employees with legal preservation letters, acting on its belief that the alleged misappropriation of confidential information may extend beyond the individuals named in its original complaint.
The development follows Apple’s lawsuit filed last week against OpenAI, in which the company alleges a coordinated effort to obtain confidential information relating to its hardware engineering and product development. Apple claims OpenAI recruited key engineers, including former Apple executives Tang Tan and Chang Liu, and benefited from proprietary designs, manufacturing processes, and other trade secrets. Tan is OpenAI’s Chief Hardware Officer and a 24-year Apple veteran who led product design, while Liu is on the hardware team at OpenAI after working as a senior system electrical engineer at Apple.
A vulnerability dubbed HollowByte allows unauthenticated attackers to trigger a denial-of-service (DoS) condition on OpenSSL servers with a malicious payload of just 11 bytes.
The OpenSSL team has silently fixed the vulnerability (no identifier assigned) and backported the patch to older releases.
Because the OpenSSL software is the foundational backbone for secure internet communication, organizations should prioritize switching to a fixed version of the library.
In an advisory earlier this week, Okta’s Red Team described how the HollowByte DoS vulnerability works and its impact in a real-world scenario.
The researchers explain that in a TLS handshake, each message has a 4-byte header for declaring the size of the incoming message. However, vulnerable OpenSSL versions allocate the declared length before receiving the payload and checking its size.
Every TLS handshake message begins with a 4-byte handshake header, where a three-byte length field discloses the size of the handshake data that should follow.
Without validating the payload, the server trusts the packet’s claims and allocates the indicated memory. “The worker thread then blocks, waiting indefinitely for data that will never arrive,” Okta explains.
An unauthenticated attacker can trigger HollowByte by opening a TLS connection and sending an 11-byte malicious input with a header declaring that a much larger message body will follow.
The attacker repeats the same process across multiple connections, causing the server to allocate considerable amounts of memory via a relatively small volume of transmitted data.
Okta researchers note that while OpenSSL frees the buffers when a connection drops, the GNU C Library (glibc) has a different way to handle memory and “does not immediately return small-to-medium allocations to the operating system; it keeps them for potential reuse.”
“By launching waves of connections with randomized claimed sizes, an attacker prevents the allocator from reusing those freed chunks,” Okta says.
“The heap fragments heavily, causing the server’s Resident Set Size (RSS) to climb continuously. Even after the attacker disconnects, the server remains permanently bloated.”
The only way to fully reclaim the space is by restarting the process.
The open-source OpenSSL library is embedded in popular software projects such as NGINX and Apache web servers, language runtimes (e.g., Node.js, Python, Ruby, PHP), and databases (MySQL, PostgreSQL). It comes pre-installed on most Linux distributions for TLS encryption and certificate handling.
In Okta’s tests on NGINX showed that low-capacity environments can be easily depleted of memory using HollowByte, while higher-spec servers may lose up to 25% of their memory while the attack bandwidth remains below security alerting thresholds.
Although DoS flaws are considered less severe than vulnerabilities that enable data theft or code execution, they can cause operational disruptions and reputational damage.
The HollowByte DoS issue has been fixed in OpenSSL 4.0.1 and backported to versions 3.6.3, 3.5.7, 3.4.6, and 3.0.21, which now grow the buffer only when the data arrives, ignoring header claims.
Despite being addressed as a “hardening fix” and not a security vulnerability, Okta recommends “upgrading your distribution’s OpenSSL packages immediately.”
Security teams log 54% of successful attacks and alert on just 14%. The rest move through your environment unseen.
The Picus whitepaper shows how breach and attack simulation tests your SIEM and EDR rules so threats stop slipping by detection.
SOFTWARE
And what to expect in Firefox 153 as the next ESR release gets close
Firefox releases will soon get even closer together – but not ESR ones, which remain annual, with the next one due out soon. The change was announced last week on the dev-platform@mozilla.org mailing list by Mozilla’s director of engineering Sylvestre Ledru:
“We are planning to move Firefox Desktop and Android from a 4-week release cadence to a 2-week release cadence starting in September 2026.
“This will be an experiment… This does not mean that all work needs to ship twice as fast. Work that is not ready should not be rushed, and features can still take the time they need to bake.
“The current target is to release Firefox 155 on September 1, 2026, instead of September 15 …
“We will closely monitor how this change works in practice and adjust if needed.”
The change is already visible in the upcoming Firefox Release Calendar. At the time of writing, it shows the current four-week cadence for Firefox 153 and 154, with Firefox 155 brought forward to September 1. From then on, it lists releases at roughly two-week intervals.
This isn’t unprecedented. The last time Mozilla did it was over a decade ago. Google announced a very similar change for Chrome back in March, and The Register reported on it going to six-weekly releases in 2010 and then four-weekly ones in 2021.
In the meantime, Firefox 153 is nearly here: at the time of writing, it’s scheduled for Tuesday, July 21. Right now, the release notes are blank, but the beta release notes are more forthcoming.
You can look forward to further improvements to PDF editing. Version 153 will be able to merge multiple PDF documents into one by a simple drag-and-drop in the PDF sidebar, and insert images into PDFs as new pages. It will also improve highlighting text in PDFs.
The new version can generate QR codes for sharing web pages offline, such as in printed documents. It can verify and display the EU’s new Qualified Website Authentication Certificates, or QWACs for short. These are part of the new eIDAS legislation, which is a slightly convoluted acronym for “electronic IDentification, Authentication and trust Services”. Sounds cumbersome, but if it helps make the Wild West of the Web a bit safer, we’re all for it. Another security tweak is that extensions will lose local-file access by default. As we use one that relies on it – the excellent Multithreaded Download Manager – that’s slightly concerning, although users will be able to grant the permission separately, so we’ll see.
If a tab is using your location, Firefox 153 will highlight this with a map-pin icon in the address bar. The last release could recognize a few keywords in the address bar to mute all sound: this function will get extended, with typed commands for picking colors from pages, and accessing experimental “Labs” features. Come back, Ubuntu Unity and your HUD, all is forgiven.
There’s also experimental JPEG XL support. Pop-up video player controls will work better, and if you use Windows and have a compatible GPU and drivers, 153 will play HDR video. On macOS, Firefox supports the Fn+F keystroke for switching to full-screen mode – which means KeyboardControls.com has to update its description of the function.
Firefox 153 will also be a significant release, because it will be the next ESR version: it will get security updates for at least 15 months, meaning until late 2027. (And maybe longer: Firefox 115 is still getting updates, and now will until March 2027.)
In turn, that means that Firefox 153 is also the basis of the latest beta of the AI-free Waterfox fork, which recently integrated built-in ad blocking. ®
The FBI arrested a Florida man accused of uploading fake Steam games containing malware that stole passwords, data, and cryptocurrency wallet credentials from victims. Prosecutors say the scheme infected about 8,000 people, compromised roughly 80 crypto wallets, and stole at least $220,000 through games that appeared legitimate but secretly carried malware. TechCrunch reports: On Tuesday, the FBI arrested Zyaire Wilkins, a 21-year-old Florida resident and student. On Wednesday, prosecutors accused him and a number of unnamed co-conspirators of hacking crimes. Over the past two years, Wilkins and his partners allegedly published several malware-laden video games on Steam, including BlockBlasters, Dashverse, Lampy, Lunara, and PirateFi. Using that malware, says the FBI, Wilkins and his accomplices infected around 8,000 victims, and then hacked around 80 cryptocurrency wallets to steal at least $220,000 worth of crypto. Wilkins and the others marketed their malicious video games on Discord, LinkedIn, and Telegram, according to the authorities.
[…] After the FBI identified another person involved in the crimes, according to the complaint, federal agents interviewed them. The unnamed person said they worked with other people to raise money to launch and market the malicious games in return for sharing some of the stolen cryptocurrency. The FBI identified a specific crypto account involved in the scheme, and then traced cryptocurrency payments made with that account to buy several gift cards, including for UberEats. After subpoenaing Uber, the feds were able to see that the gift cards were linked to an account that made deliveries to Wilkins, who went by the nickname Sibel.eth online, according to the complaint. The feds then got a search warrant for Wilkins’ residence, where they seized his MacBook laptop, cellphones, other devices, and digital wallets. According to the complaint, he refused to speak or answer any questions.
The petition was delivered by leaders of the Alphabet Workers Union to Sundar Pichai’s office at Google’s California headquarters.
More than 4,500 Google employees have signed a petition calling for layoff protections, as sweeping workforce cuts continue to hit the tech industry.
The petition was brought to Google’s California headquarters yesterday (16 July) by leaders of the Alphabet Workers Union, with union president Parul Koul delivering it to Google CEO Sundar Pichai’s office.
Koul, a software engineer at the tech giant, reportedly left the petition with a staff member who committed to deliver it to Pichai, while more than 100 Google employees rallied outside. Koul stated that upon delivering the petition, the group was “greeted with closed doors and no response for the most part”.
“We are demanding that Google workers have the conditions and the security to do their best work, where they can actually bring new ideas and innovations to life instead of working in an environment driven by fear, where you might be pit against your colleagues or every day you’re not sure how much longer you will have this job,” said Koul at the demonstration outside Google’s headquarters, according to San Francisco’s ABC7 News.
According to The Guardian, the union-led petition calls for guaranteed severance, buyouts before mandatory layoffs in all product areas and the option to take severance as extended paid leave.
Union members have also asked to end performance ratings, which they say are based on achieving quotas rather than on merit.
The petition comes as scores of layoff decisions continue to affect thousands of tech workers across the industry, with a significant number of cuts being announced in 2026 alone.
Since the start of the year, companies including Meta, Microsoft (as well as its gaming division Xbox), Amazon, LinkedIn, GitLab, Cloudflare, Coinbase, eBay, Oracle, Snapchat, Epic Games, Atlassian and Block have all laid off scores of employees – as many of the same companies ramp up expenditure on AI around the same time. Some companies, such as Block and Atlassian, have also explicitly stated that their decision to cut jobs was directly linked to their increased focus on AI.
Google has also reportedly been quietly laying off employees this year, with the company recently cutting roles from its Google Cloud division, according to Business Insider. One source reportedly told the publication that Google cited “the need to reinvest in growth areas, such as AI”, to justify the cuts.
The tech giant also reportedly laid off more than one-third of managers overseeing small teams between August 2024 and August 2025, according to CNBC.
Commenting on the Alphabet Workers Union petition and the wider trend of layoffs in favour of AI, Rebecca Hinds, head of the Work AI Institute at Glean, told SiliconRepublic.com that business leaders need to adjust their view on AI in regards to workforce reductions.
“Leaders should stop asking how many roles AI can remove and start asking how work should be redesigned – what AI should do, what humans must continue to own and how the productivity gains will be reinvested in people,” she said.
“Companies that use AI only as a headcount lever may cut costs in the short term, but they will also hollow out the skills and institutional knowledge they need to compete.”
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The U.S. Surgeon General’s office issued a warning yesterday about the harms of extended uses of screens on children, raising concerns about its impact on academic performance, physical health and mental well-being.
The advisory follows a contentious debate over screen time that has been fraught in recent years as schools that implemented 1-to-1 device ratios amid the pandemic now struggle with student attention, behavioral and mental health issues that took root around the same time.
The latest advisory urges kids to pursue — and for the adults in their lives to encourage — a “broader world, beyond the confines of screens,” Health and Human Services Secretary Robert F. Kennedy Jr. said in an opening letter. The role of U.S. surgeon general has been vacant since January 2025, but the advisory was issued by a committee led by Kennedy Jr.
The report encapsulates what researchers and education experts have been long saying: Excessive time in front of devices like smartphones and tablets can worsen mental health and academic outcomes for students.
The American Academy of Pediatrics took a more nuanced approach to a similar report it released, Whitney Raglin Bignall, associate clinical director of The Kids Mental Health Foundation, tells EdSurge. Researchers rolled back their specific limits on screen time in favor of “family media plans” that set boundaries for media consumption.
The Surgeon General’s advisory calls on schools to implement plans that many districts are already adopting or considering: bell-to-bell cellphone bans, or bans that do not allow the use of phones during the entirety of the school day, including passing periods and lunchtime. It also proposes screen time limits. The advisory specifies that screen time limit exceptions should be made for students who have individualized education programs or other needs for assistive devices — something about which disability advocates have expressed worry.
It also urges schools to teach digital citizenship and digital literacy along with offering students social and physical activities that don’t involve screens.
The report hits back against tech companies, like those that recently lost a California civil case over social media addiction. They were called by the advisory to eschew designing their apps for engagement in favor of user well-being by incorporating warnings about harmful screen use every time a user opens the app. The advisory also calls for tech companies to encourage children to socialize with friends and play outside, and get rid of features like recommendation algorithms and notifications.
Raglin Bignall, associate clinical director of The Kids Mental Health Foundation, cautions that while research has found a correlation between screen time and poor mental health, there’s not yet cause-and-effect evidence.
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“There might be kids who need less [screen time], or those who are doing lots of different types of things with that content that’s interactive that is not harmful,” Raglin Bignall says. “Nevertheless, it should be monitored. By doing that, we make sure that we’re not doing too much [with screens], and that whatever we are doing is beneficial.”
Teachers might notice students being distracted, not listening, being irritable or having a hard time being away from screens, Raglin Bignall says. Fatigue or lack of sleep among students may also be signs of too much screen time. She adds that screen time should especially be monitored for children who have attention or hyperactivity disorders.
Not all screen time or content is equal, Raglin Bignall says. Teachers don’t need to rush to boot quality, evidence-based education apps from their lesson plans.
The warning calls attention to harmful online behaviors like bullying and gambling. The content children encounter on these platforms can encourage risky behaviors like self-harm and substance use, the advisory claims, or put them in the path of exploitative strangers.
In general, good content is educational, slow-paced and isn’t trying to market any products, Raglin Bignall says. Adults should pay special attention to what teens and tweens are seeing online, as those who struggle with confidence could be particularly vulnerable to harmful content like accounts that promote eating disorders.
“I wouldn’t want to make it seem that all screen time is bad,” Raglin Bignall says. “I often recommend co-watching with adults during those younger ages. As kids get older, it’s still important for adults to monitor the level of content and what is being offered to them.”
Nadia Tamez-Robledo (@nadiatamezr) is a reporter covering K-12 education for EdSurge with focuses on student and teacher mental health and changing demographics. You can reach her at ntamez-robledo [at] iste [dot] org

Tesla surprised owners and enthusiasts this morning when it added a new item to its online store. A balance bike designed for children aged two to five debuted unexpectedly. There is no battery, motor, or pedals, just a lightweight frame and two wheels intended to teach young riders the most important skill on two wheels.

The bike’s frame is made of magnesium, which keeps the overall weight low enough for even the tiniest children to handle. The white finish is appealing, and the black accents on the seat and other elements complement it well. The Tesla logo runs along the side, while the T logo is clearly displayed in the front for all to see. You may also move the seat to one of five different locations as your youngster grows taller. This bike is designed for children, with a minimum leg length of 13.7 inches and a maximum weight capacity of 77 pounds.
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Kids use the bike as intended, by sitting on the seat and pushing off the ground with their feet. They can cruise at their own pace, and as their confidence grows, they can try lifting both feet off the ground and gliding. The low center of gravity and broad handlebar make it seem very stable from the first ride; no training wheels are required, and there are no sophisticated brakes to worry about; and the greatest thing is that parents may accompany them the entire time.

The bike itself costs $225, which is quite expensive, but keep in mind that it is a luxury product made of premium materials such as magnesium. Other manufactures provide similar bikes for roughly the same price, but their magnesium versions are a step above in terms of appearance and feel. You’ll get a set of tools to assist you put everything together, and most families can have it up and running in under an hour. The bike was in high demand; the listing sold out in a matter of hours, and new orders will not be shipped until late August, when they are back in stock. If you live in Canada, be prepared to pay a little extra, around $310, but the specifications don’t change.

This isn’t the first time Tesla has dabbled in children’s products, having previously collaborated on a Cyberquad ATV and a toy Model Y radio flyer, but this time they’ve gone for something a little more low-key, as the bike is pretty basic, just getting kids riding and having fun without all of the bells and whistles.
As he instructs bilingual learners in the humanities and social studies, Daniel Gomez sees big promise in artificial intelligence.
“Teachers in general cannot be knowledgeable about every single subject,” and certainly not in multiple languages, says Gomez, who teaches at the bilingual K-12 Ideal School in Tampa, Florida. AI can help close the gaps. “It will be able to pick up any topic students are interested in and handle the topic reasonably well.”
He isn’t alone in this assessment. Harvard researchers, for example, are actively exploring how AI-powered chatbots can support bilingual student learning and parent–child dialogues.
“There are lots of opportunities to use AI to adapt learning materials into different languages, which can expand access for bilingual learners,” says Ying Xu, an assistant professor of education at Harvard and one of the researchers involved in the work.
“Some projects are also exploring how AI can provide additional scaffolding to help children comprehend content in their home language,” she adds. “For example, a multilingual language model might keep the core learning content in English while offering explanations, prompts or supports in the child’s home language.”
Experts see great potential for AI to elevate bilingual education — if it’s done right.
“Bilingual learners are obviously learning the language and culture of the classroom and the environment that they’re in,” says Krystle Salas, assistant director of special populations at Second Mile, which operates alternative education charter schools for at-risk students in several states.
“They don’t necessarily have access to the instructional materials or even just the conversations going on in the classroom — and certainly not at the level of their peers,” she continues. And teachers may not have the experience or the tools to scaffold the necessary supports for these students.
AI can help teachers to be more effective, and it can help bilingual learners thrive. A chatbot “can give [students] pieces of the content in Spanish or give them smaller sentences that are simpler,” Salas says.
Chatbots can also help bilingual students build confidence. “Maybe I don’t want to talk in English in front of other people, but I’ll talk in English to the chatbot because the chatbot doesn’t care if I’m doing it wrong,” says Melissa Henning, the K-12 educational content manager at The Source for Learning.
“You can have a conversation with the chatbot about what you meant to say and what came out, and it can help you rephrase it,” she adds. “That can really empower you as a multilingual learner.”
Gomez sees a role for AI in helping young learners master the concepts being taught in the classroom. Perhaps the chatbot will teach it to them in their native language, but that’s alright. Students can get a handle on the materials, “and later on we can worry about knowing whether [they] also know the word” in English, he adds.
Chatbots can be a boon, too, because of their 24/7 availability. Although there are many ways to master learning materials, they don’t help “if you are not actively practicing,” Gomez says. Especially for those learning in a foreign language, AI’s ever-present availability creates more opportunities for practice.
Using SchoolAI, education strategist and ISTE Certified Educator Stephanie Howell has seen the benefits of AI firsthand. Students use it as a “guide on the side,” annotating as they read, she adds, “and if they don’t know a word, they can go over to the AI and say, ‘Explain this to me in another way.’ It creates that self-awareness skill. I’m not the one always finding the words that they need help with.”
As a second- and third-grade intervention specialist at Lancaster City Schools in Ohio, she’ll create a learning activity and tell the AI, “When they get it wrong the first time, I don’t want you to super-scaffold for them. I want them to have that productive struggle. But if they miss it a second time, I want you to provide a sentence starter.”
And she’s using AI herself to support her students. As a co-teacher, she’ll take what the main teacher has assigned and break it down, asking AI, “What vocabulary in this article might my students struggle with?” or “Help me analyze the patterns that you notice.” This gives her greater insight and more time in the day to focus on one-on-one learning and other high-value strategies.
Chatbots can also help close the gap for students who otherwise wouldn’t be able to talk fully about their schoolwork at home.
“A lot of parents speak Spanish. Their kids are coming home with this English stuff, and they don’t speak [the language]. Rather than having students speak in both languages, they can actually use both languages at the same time to build concepts,” with the chatbot translating simultaneously, Henning says.
“A lot of times the students are stronger English speakers than their parents,” she continues. With help from a chatbot, “they can engage in dialogue, positioning the home language as an asset rather than a barrier.”
Teachers can foster this. With their prompting, “a bot could send a family a nightly question tied to the day’s lesson, like ‘Ask your child about the bravest thing this character did in the book,’” she adds. “That gives non-English-speaking parents a way to have a conversation about that content.”
For schools looking to leverage chatbots in support of bilingual learners, experts say it’s important to move ahead thoughtfully. They need to be careful about “the unintended consequences of widening existing gaps,” Xu says.
“For example, many AI systems are still less accurate at recognizing bilingual children’s speech, especially when children have accented speech or dialectal variation or are moving between languages,” she adds.
As a result, “bilingual learners may benefit less from these tools if the system cannot accurately understand their speech,” she continues. “This concern also applies to the use of AI for assessment, where dialectal variation or accented speech could lead to inaccurate evaluation.”
Then there’s the digital divide to consider, since students will need access to the chatbots for any of this to work. “You want to make sure that we’re not widening the gap because they don’t have devices available at home or they don’t have internet at home,” Henning says.
Howell encourages teachers to make intelligent use of AI’s built-in multilingual capabilities. With some tools, “[students] can actually start typing in Spanish if I don’t set up the requirement to stay in English,” she adds.
That can be helpful, but it needs to used thoughtfully. “Sometimes as a teacher, I can’t have my students go back and forth because they have to learn it in English,” she continues. “It always goes back to the learning goal.”
Educators also need to be mindful about the AI models their chatbots are using. Tools may be trained on academic language, but students need to tackle school subjects informally as well. The AI should suit the need.
“If we need more technical vocabulary or something that is more prone to be used on an everyday basis, we can train it to do that,” Gomez says. “We can customize it to our needs.”
And the teacher’s voice should always be the most prominent. “Even though AI can be a very valuable tool — it can help with a great many things — you always need that human touch,” he adds.
At Second Mile, Salas echoes this notion. “Children need that human interaction,” she says. “A teacher can read their emotions; they can see the full context of the situation and adjust in real time. And AI can make mistakes, so we always want to make sure the majority of the instruction and support is coming from the humans.”
The big picture: Traditional DRAM and memory manufacturers have been forced to allocate nearly all of their production capacity toward supporting massive AI data center projects. Every other device requiring memory chips is now a secondary priority, but China-based companies could soon turn these unprecedented market conditions upside down.
According to a new report from Citrini Research, ChangXin Memory Technologies (CXMT) is growing much faster than expected. The Chinese memory and IDM manufacturer is expected to produce between 350,000 and 375,000 DRAM wafers per month by the end of 2026. In 2020, CXMT had a capacity of 40,000 WPM for DDR4 production. By the end of 2025, the company had reached a quarterly output of 720,000 wafers.
The new research highlights the growing presence of Chinese DRAM manufacturers amid ongoing semiconductor supply chain challenges and Big Tech’s AI data center expansion. The traditional “Big Three” memory manufacturers are US-based Micron, along with South Korean giants Samsung and SK Hynix. If CXMT can reach 375,000 WPM in 2026, its production capacity would be comparable to Micron’s.
Citrini researchers explain that CXMT can add manufacturing capacity faster than memory makers in other parts of the world. Funding is no longer the primary obstacle, as AI companies have driven memory prices and profits sharply higher. The major constraint affecting CXMT and other Chinese manufacturers is now access to advanced semiconductor manufacturing equipment, which is far more difficult to export legally from the EU to China.
DRAM products “made in China” are quickly gaining ground in Western markets. Memory companies such as Corsair are increasing their reliance on CXMT-produced chips, providing a potential escape from the “unprecedented” prices affecting today’s DDR5 memory products.
Citrini said CXMT could eventually expand its production capacity to 950,000 WPM by 2030, becoming China’s largest memory manufacturer and one of the biggest memory producers in the world. CXMT still lacks the capability to produce high-performance memory such as HBM products or even high-end DDR5 modules designed for extreme overclocking.
Even if CXMT DRAM modules are not the fastest available, they could still bring a major shift to a struggling memory market where Big Tech and AI companies have left little room for affordable custom PC builds or gaming consoles. As a result, some users are increasingly looking toward a Chinese memory manufacturer as a potential alternative, arguing that AI-driven demand from Western technology companies is making many consumer electronics products significantly more expensive.
It’s a hot one at both microphones, as Elliot Williams and Kristina Panos wilt in the heat with ice lollies and freezer packs. But still, we persevered long enough to make a podcast.
In Hackaday news, Supercon is on! It’s going down in Pasadena, California, but the talks will be somewhere slightly larger, with a courtyard instead of an alley. Get your talk proposals in now! In other Hackaday news, we still have our Frikkin’ Lasers Contest going on until Thursday, July 23rd.
Interestingly enough, we got a comment on an older article from none other than [Michael J. Van de Graaff], whose grandfather invented the Van de Graff generator and was “quite upset” when plans for a DIY version appeared in Scientific American. And finally, Google Earth’s desktop client is being discontinued, but you can still travel the globe on your phone, or in your PC’s browser.
Not only do we have another triple mailbag this week, we have another failed attempt at guessing the Sound by Kristina. However, [Alexander] knew that it was CD-ROM drive a-spinnin’. Speaking of What’s That Sound, be sure to let us know your ideas for the new prize.
That sounds like a lot of preamble, but we quickly get to a full slate of hacks, a couple of which are pretty retro in retrospect. Check out the links below if you want to follow along, and as always, tell us what you think about this episode in the comments!
TCL has spent years saying inkjet-printed OLED could improve image quality, efficiency, lifespan, and manufacturing costs. Back in 2024, the company was still showing prototype laptop panels and promising a “comprehensive breakthrough” once the technology was ready for commercial products.
Two years later, it has finally arrived in a gaming laptop. Lenovo’s new Legion R9000P uses a 16-inch panel that TCL CSOT describes as the world’s first inkjet-printed OLED display integrated into a laptop.
Traditional OLED manufacturing deposits light-emitting material inside expensive vacuum equipment using highly precise metal masks. Inkjet printing places the organic material directly onto the panel in controlled patterns, much like a printer laying ink onto paper.
TCL says the process is simpler, wastes less material, and could make OLED panels cheaper to manufacture at scale. Earlier company estimates claimed a 20% reduction in total cost, better light efficiency, and a longer material lifespan.

The Legion’s panel has a 240Hz refresh rate and covers more than 99% of the DCI-P3 color gamut. Its standard RGB stripe layout should produce sharper text and reduce the colored edges sometimes visible around letters on OLED screens using triangular subpixel arrangements.
Lenovo has not revealed the laptop’s processor, graphics card, pricing, or release date. Previous R9000P models suggest it will sit somewhere between the upper mid-range and premium gaming segments. The 2024 version paired a Ryzen 9 7945HX with an RTX 4060, while the 2025 Ultimate Edition offered a Ryzen 9 9955HX3D and RTX 5080.
An RTX 5080 alongside a current AMD or Intel processor is possible if Lenovo wants to give the new display a flagship debut. R9000P models are commonly sold internationally under the Legion Pro 5 family, though Lenovo has not confirmed any global plans yet.
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