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Most parked domains now push scams and malware

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Most parked domains now push scams and malware

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Typing a web address directly into your browser feels harmless. In fact, it feels normal. But new research shows that a simple habit is now one of the riskiest things you can do online. A recent study from cybersecurity firm Infoblox reveals a troubling shift.

Most parked domains now redirect visitors to scams, malware or fake security warnings. In many cases, this happens instantly. You do not have to click anything. That means a single typo can expose your device.

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What are parked domains? 

Parked domains are unused or expired web addresses. Many exist because someone forgot to renew a domain. Others are deliberate misspellings of popular sites like Google, Netflix or YouTube. For years, these domains displayed harmless placeholder pages. They showed ads and links to monetize accidental traffic. While annoying, they rarely posed serious danger. That is no longer true. Infoblox found that more than 90 percent of visits to parked domains now lead to malicious content. This includes scareware, fake antivirus offers, phishing pages and malware downloads.

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A single mistyped web address can redirect you from a trusted site to a dangerous parked domain in seconds, Kurt Knutsson writes. (PeopleImages/Getty Images)

Why direct navigation has become so risky

Direct navigation means typing a website address by hand instead of using a bookmark or search result. One missing letter can change everything. For example, mistyping gmail.com as gmai.com does not trigger an error. Instead, it can deliver your email straight to criminals. Infoblox found that some of these typo domains actively run mail servers to capture messages. Even worse, many of these domains form part of massive portfolios. One group tracked by Infoblox controlled nearly 3,000 lookalike domains associated with banks, tech companies and government services.

Malicious parked domains often trigger fake security warnings or hidden redirects without requiring any clicks. (CyberGuy.com)

How these domains decide whom to attack

Not everyone sees the same thing when visiting a parked domain. That is intentional. Researchers discovered that parked pages often profile visitors in real time. They analyze IP address, device type, location, cookies and browsing behavior. Based on that data, the domain decides what you see next. Visitors using a VPN or non-residential connection often see harmless placeholder pages. Residential users on phones or home computers get redirected to scams or malware instead. This filtering helps attackers stay hidden while maximizing successful attacks.

Why parked domain scams are increasing

Several trends are fueling the problem. First, traffic from parked domains is often resold multiple times through affiliate networks. By the time it reaches a malicious advertiser, there is no direct relationship with the original parking company. Second, recent ad policy changes may have increased exposure. Google now requires advertisers to opt in before running ads on parked domains. While intended to improve safety, this shift may have pushed bad actors deeper into affiliate networks with weaker oversight. The result is a murky ecosystem where responsibility is difficult to trace.

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Even government domains are being targeted

Infoblox also found typosquatting aimed at government services. In one case, a researcher accidentally visited ic3.org instead of ic3.gov while trying to report a crime. The result was a fake warning page claiming a cloud subscription had expired. That page could just as easily have delivered malware. This highlights how easy it is to fall into these traps, even when doing something important.

A screenshot shows how mistyping the FBI’s IC3 web address redirects users to an unrelated parked domain. (Infoblox)

Ways to stay safe from parked domain traps

You can reduce your risk with a few smart habits:

1) Use bookmarks for important sites

Save banks, email providers and government portals. Avoid typing these addresses manually.

2) Double-check URLs before hitting Enter

Slow down when entering web addresses. One extra second can prevent a costly mistake.

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3) Install strong antivirus software

Strong antivirus software protects your device if a malicious page loads, blocking malware downloads, scripts and fake security pop-ups.

The best way to safeguard yourself from malicious links that install malware, potentially accessing your private information, is to have strong antivirus software installed on all your devices. This protection can also alert you to phishing emails and ransomware scams, keeping your personal information and digital assets safe.

Get my picks for the best 2025 antivirus protection winners for your Windows, Mac, Android and iOS devices at Cyberguy.com.

4) Consider a data removal service

Data brokers often fuel targeting by selling personal details. Removing your data can reduce exposure to personalized scam redirects.

While no service can guarantee the complete removal of your data from the internet, a data removal service is really a smart choice. They aren’t cheap, and neither is your privacy. These services do all the work for you by actively monitoring and systematically erasing your personal information from hundreds of websites. It’s what gives me peace of mind and has proven to be the most effective way to erase your personal data from the internet. By limiting the information available, you reduce the risk of scammers cross-referencing data from breaches with information they might find on the dark web, making it harder for them to target you.

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Check out my top picks for data removal services and get a free scan to find out if your personal information is already out on the web by visiting Cyberguy.com.

Get a free scan to find out if your personal information is already out on the web: Cyberguy.com.

5) Be cautious of scare tactics

Fake warnings about expired subscriptions or infected devices are a major red flag. Legitimate companies do not use panic screens.

6) Keep your browser and device updated

Security updates often close the exact loopholes attackers use to exploit malicious redirects.

7) Consider a VPN for added protection

While not a cure-all, VPNs can reduce exposure to targeted redirects tied to residential IP addresses.

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For the best VPN software, see my expert review of the best VPNs for browsing the web privately on your Windows, Mac, Android and iOS devices at Cyberguy.com.

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Kurt’s key takeaways 

The web has changed in subtle but dangerous ways. Parked domains are no longer passive placeholders. In many cases, they act as active delivery systems for scams and malware. The most alarming part is how little effort it takes to trigger an attack. A typo is enough. As threats grow quieter and more automated, safe browsing habits matter more than ever.

Have you ever mistyped a web address and ended up somewhere suspicious, or do you rely entirely on bookmarks now? Let us know by writing to us at Cyberguy.com.

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Copyright 2025 CyberGuy.com. All rights reserved.

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Nothing cancels this year’s CMF phone due to RAM prices

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Nothing cancels this year’s CMF phone due to RAM prices

Nothing’s next budget phone is the latest victim of RAMageddon. As 9to5Google reports, Nothing co-founder Akis Evangelidis announced in a post on X that a follow-up to the CMF Phone 2 Pro won’t be coming this year:

We were working on a successor but with memory prices where they are right now, we can’t build a phone that feels like a genuine step forward at a price that makes sense for CMF. As a result, we’ve decided not to launch a new CMF phone this year.

Last week, Nothing CEO and co-founder Carl Pei also said the RAM shortage has impacted the cost of the company’s mid-range phone, stating, “For Phone 4A, memory costs doubled between when we decided to build the device and when it launched. They’ve doubled again since.” According to Pei, “memory is now the most expensive component in a smartphone.” Nothing is far from the only company facing RAM pricing challenges — earlier this week, Tim Cook announced Apple will be raising prices, saying “the situation has become unsustainable.”

While there won’t be a new CMF phone this year, Evangelidis added in his post that CMF still has “several new products launching as well as some entirely new categories.” He also hinted that “the smartphone launch season at Nothing isn’t over yet.”

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China’s brain chip breakthrough raises big questions

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China’s brain chip breakthrough raises big questions

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A coin-sized brain chip in China could help people with paralysis control devices using their thoughts. China has approved a brain-computer interface called NEO for commercial medical use in certain patients with paralysis caused by spinal cord injuries. That moves brain-chip technology out of research trials and closer to real-world medical care.

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Developed by researchers at Tsinghua University and Shanghai-based Neuracle Technology, NEO sits under the skull but rests on the brain’s protective outer layer rather than piercing deep into brain tissue. That design could make it less invasive than some competing implants.

For patients who have lost movement, this kind of technology could be life-changing. It could help restore a level of independence that once felt out of reach. But here’s where we need to slow down a bit. If a brain chip can turn your brain signals into digital commands, we need to ask who controls that data and how well it is protected.

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BRAIN IMPLANT ENABLES ALS PATIENT TO COMMUNICATE USING AI

China’s NEO brain implant could help some paralysis patients control devices, like prosthetic hands, with their thoughts while raising concerns over brain data privacy. (Tsinghua University)

What is China’s NEO brain chip?

NEO is a brain-computer interface, often called a BCI. These systems read brain activity and translate it into commands for an external device. In this case, the implant uses sensors placed near the brain’s motor-control area. Those signals can help a patient operate equipment such as a robotic glove or computer interface.

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What makes NEO especially notable is its placement. Brain-computer interfaces can be designed in different ways, and some go deeper into the brain than others. The company most people know in this space is Neuralink, the brain-chip startup co-founded by Elon Musk. Its implant uses tiny threads that enter the brain’s cortex. NEO takes a less invasive approach by placing electrodes on the dura mater, which is the protective membrane around the brain.

That design matters because every brain implant carries medical risk. Surgery can cause bleeding, swelling, infection or tissue damage. Even a small complication in the wrong part of the brain can affect speech or movement.

China’s approval does not mean brain chips are suddenly available for anyone who wants one. This remains a medical device for a narrow group of patients. Right now, the focus centers on helping people with severe paralysis regain some digital or assisted movement control.

Why China’s brain chip breakthrough matters

The medical upside here is hard to deny. More than three billion people worldwide live with neurological conditions, according to the World Health Organization. That includes people dealing with stroke, epilepsy, Parkinson’s disease, spinal cord injuries and other serious conditions.

For someone who has spent years unable to move freely or communicate easily, even a small amount of restored control could feel enormous. That is why brain-computer interfaces are getting so much attention. They could give some patients a new way to interact with the world around them.

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Neuralink has already shown what that can look like in real life. Audrey Crews, a Neuralink trial participant who has been paralyzed for years, publicly shared that she wrote her name using the implant by controlling her computer.

ELON MUSK SHARES PLAN TO MASS-PRODUCE BRAIN IMPLANTS FOR PARALYSIS, NEUROLOGICAL DISEASE

How China’s brain chip compares with Neuralink

Elon Musk’s Neuralink has attracted most of the public attention in the U.S. brain-chip race. Musk has talked openly about restoring movement, helping people communicate and one day addressing vision loss.

Neuralink received approval to begin human trials, and more than 20 people have reportedly received its implant through testing. However, it has not received broad FDA approval for general commercial use.

China’s NEO approval puts a different kind of pressure on the field. It shows that China wants to move brain-computer interface technology into its health system and build a major industry around it.

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This also fits a larger pattern. China has made BCI development part of its strategic technology push. The country wants breakthroughs by 2027 and a globally competitive brain-computer interface industry by 2030.

The coin-sized NEO brain chip rests on the brain’s protective outer layer, making it less invasive than implants that pierce brain tissue. (Tsinghua University)

Why brain chip privacy is such a big concern

We already worry about phones listening, apps tracking location and smart TVs collecting viewing habits. Brain-computer interfaces take that concern to another level.

A BCI collects signals from the nervous system. Today, that may mean decoding movement intent, such as whether a patient wants to move a cursor left or right. But as the technology improves, the data could become more sensitive.

That raises some big questions. Who owns the brain data? Can it be sold, shared or used to train AI systems? Could an insurer, employer or government ever demand access? What happens if a company changes its privacy policy after the implant becomes part of someone’s daily life?

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Those questions sound dramatic until you remember how many connected devices began as conveniences and turned into data pipelines.

A brain chip designed for medical help should not become another ad platform, another surveillance tool or another database waiting to be breached.

YOUR HEALTH DATA IS BEING SOLD WITHOUT YOUR CONSENT

Could hackers target brain-computer interfaces?

This is where the whole brain-chip conversation gets very serious. Any device that connects to a computer raises security questions. A brain-computer interface raises even bigger ones because it deals with signals from your body and, in some cases, the devices that help you move or communicate.

The concern here is someone getting access to neural data, device settings or the commands moving between the implant and outside equipment. Think about that for a second. If a brain chip helps someone control a robotic hand, a wheelchair or a communication device, a security failure could affect far more than privacy. It could affect that person’s independence and safety. That to me is scary.

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Companies building these devices need to treat cybersecurity like part of the surgery, not some software update they figure out later. Encryption, strict access controls, medical-grade testing and clear update policies should be baked in from day one.

And because a brain implant may stay inside a person’s body for years, long-term support has to be part of the deal. No one should end up with an outdated implant in their head because a company moved on to the next big product launch.

What China’s brain chip means to you

For now, this technology is geared toward patients with serious medical needs. So, no, most of us are not lining up for a brain chip anytime soon. But this should still get your attention.

We already give up a lot of personal data through our phones, watches, cars and smart home devices. A brain implant takes that to a whole different level because the data comes from inside the body. That is about as personal as it gets.

Before this technology moves beyond hospitals and medical trials, patients need plain answers before they agree to anything. They should know who can access the data, how long it gets stored, whether it can be shared and whether it can help train AI systems.

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The medical potential here is incredible. Helping someone regain control or communicate again could change a life. But the privacy protections need to be just as strong as the technology itself.

NEURALINK BRAIN IMPLANT HELPS ARIZONA MAN REGAIN CONTROL OF HIS LIFE

Brain-computer interfaces, like Neuralink, pictured here, could restore independence for some patients, but experts say neural data needs strong privacy and cybersecurity protections. (Neuralink)

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Kurt’s key takeaways

China’s NEO brain chip could be a huge step forward for people living with paralysis. If this technology helps someone regain control or communicate again, that is powerful. But I also think we need to be very careful here. Once a device connects your brain signals to outside technology, the privacy stakes change fast. We are talking about data tied to your nervous system. That to me is the line we need to watch closely. Brain chips could do incredible good. But companies and governments need clear limits before this technology moves any further into everyday life. The promise is real. So are the risks. And when the data comes from inside your own head, “trust us” will never be enough.

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Would you ever consider a brain implant if it could restore movement or communication, or does the privacy risk feel too personal to accept? Let us know by writing to us at CyberGuy.com.

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  • For simple, real-world ways to spot scams early and stay protected, visit CyberGuy.com trusted by millions who watch CyberGuy on TV daily.
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Copyright 2026 CyberGuy.com. All rights reserved.

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NASA selects Eric Schmidt’s rocket company for a 2028 mission to Mars

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NASA selects Eric Schmidt’s rocket company for a 2028 mission to Mars

Relativity Space, the rocket company led by former Google executive Eric Schmidt, was picked to launch NASA’s Aeolus payload to Mars in 2028, as reported earlier by TechCrunch. Under a new public-private partnership, Relativity Space will provide the “spacecraft, rocket, and cruise operations” to fly Aeolus to Mars, where the payload will “provide the first integrated, daily, global view of Martian winds, temperatures, dust, and clouds.”

The Aeolus payload will have four instruments on board for studying the Martian atmosphere, which NASA says will “directly inform entry, descent, and landing systems and support safer, more predictable mission planning for astronauts.”

Schmidt, who served as CEO of Google from 2001 to 2011, became Relativity Space’s CEO in 2025, a couple of years after it launched the “world’s first 3D-printed rocket,” Terran 1, which failed shortly after launch. Relativity Space’s larger Terran R rocket isn’t scheduled to have its first launch until later this year.

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