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The lithium ion batteries installed on the Boeing 787 are inherently unsafe, says Elon Musk, founder of SpaceX and owner of electric car maker Tesla. "Unfortunately, the pack architecture supplied to Boeing is inherently unsafe," writes Musk in an email to Flightglobal. "Large cells without enough space between them to isolate against the cell-to-cell thermal domino effect means it is simply a matter of time before there are more incidents of this nature," he adds. Both Boeing and Tesla use batteries fueled by lithium cobalt oxide, which is among the most energy-dense and flammable chemistries of lithium-ion batteries on the market. While Boeing elected to use a battery with a grouping of eight large cells, Tesla's batteries contain thousands of smaller cells that are independently separated to prevent fire in a single cell from harming the surrounding ones.

"Moreover, when thermal runaway occurs with a big cell, a proportionately larger amount of energy is released and it is very difficult to prevent that energy from then heating up the neighboring cells and causing a domino effect that results in the entire pack catching fire," says Musk.

An aerospace-capable version of Tesla's battery has been developed for use in SpaceX's Falcon 9 space launch vehicle. SpaceX, also owned by Musk, competes with Boeing/Lockheed Martin joint venture United Launch Alliance for customers. Boeing has thus far declined offers of assistance from Tesla and SpaceX, says Musk. "They [boeing] believe they have this under control, although I think there is a fundamental safety issue with the architecture of a pack with large cells," writes Musk in an email. "It is much harder to maintain an even temperature in a large cell, as the distance from the center of the cell to the edge is much greater, which increases the risk of thermal runaway."

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Musk's assessments of battery cells were confirmed by Donald Sadoway, a professor of electrical engineering at the Massachusetts Institute of Technology. "I would have used the same words," says Sadoway. "I would have used the same words. I'm glad someone with such a big reputation put it on the line." "He's engineered [Tesla's battery] to prevent the domino effect, while Boeing evidently doesn't have that engineering," adds Sadoway. As a fleet-wide grounding enters its third week, the battery failures on 787s flown by Japan Airlines and All Nippon Airways eariler this month remain under investigation by the US National Transportation Safety Board. Japanese inspectors have cleared the maker of the battery, GS Yuasa, of any defects before the unit leaves the factory. But both Japanese and US investigators continue to examine and test the batteries to understand why they failed after they were integrated into the 787 electrical system and operated on commercial flights.

The NTSB, for example, has began a detailed examination of an undamaged 787 battery at a US Navy laboratory, hoping to "uncover signs of any degradation in expected performance".

Investigators are trying to find the answer to a problem that eluded Boeing and the FAA in the certification phase, even though the manufacturer and the regulator were well aware of the risks posed by lithium-ion batteries.

Mike Sinnett, Boeing's 787 chief project engineer, explained the careful design philosophy employed for the 787's battery system, the first to serve as a starter for an auxiliary power unit and emergency power back-up in a commercial aircraft. "I design a cell to not fail and then assume it will and the ask the next 'what-if' questions," Sinnett said. "And then I design the batteries that if there is a failure of one cell it won't propagate to another. And then I assume that I am wrong and that it will propagate to antoher and then I design the enclosure and the redundancy of the equipment to assume that all the cells are involved and the airplane needs to be able to play through that."

http://www.flightglobal.com/news/articles/elon-musk-boeing-787-battery-fundamentally-unsafe-381627/

Oddly enough, the Japanese claim there's nothing wrong with the battery (which just so happens to be designed in Japan).

Dreamliner: No fault found with Boeing 787 battery

Airline safety inspectors have found no faults with the battery used on Boeing's 787 Dreamliner, Japan's transport ministry has said.

The battery was initially considered the likely source of problems on 787s owned by two Japanese airlines.

It has raised fears that there will be no quick fix to a problem that meant all 50 787s in service were grounded.

Attention has now shifted to the electrical system that monitors battery voltage, charging and temperature.

Transport ministry official Shigeru Takano said "we have found no major quality or technical problem" with the lithium-ion batteries. Shares in GS Yuasa, which makes the batteries, jumped 5% on the news.

"We are looking into affiliated parts makers," he said. "We are looking into possibilities."

The safety investigation started after one of the 787s operated by All Nippon Airways made an emergency landing in Japan when its main battery overheated. Earlier, a battery in a Japan Airlines 787 caught fire while parked at Boston's Logan International Airport.

Zafar Khan, aviation analyst at Societe Generale, said: "The obvious implication is that it may prolong the grounding.

"If it's not the battery then we are back to the drawing board. We know it's an electrical - and not a structural - issue and that will be the focus for the inspectors. But there's a lot of cabling on these aircraft."

'Fingers crossed'

Keith Hayward, head of research at the Royal Aeronautical Society, said that if the issue is no longer about replacing a faulty battery, it raised the prospect of Boeing having to do a major re-design.

"I think people had their fingers crossed that it was a battery fault... it looks more systemic and serious to me. I suspect it could be difficult to identify the cause," he said.

He added that aviation regulators will have to put the 787 through another airworthiness certification process, which itself could become a complicated and lengthy process depending on the final cause of the problem.

Two weeks ago the US Federal Aviation Administration said both batteries had leaked electrolyte fluid, and there had been smoke damage to parts of the aircraft.

The FAA said airlines must demonstrate battery safety before flights could resume, a statement that effectively meant airlines had to ground their 787s.

Boeing, which competes against Europe's Airbus, has halted 787 deliveries. Boeing has orders for more than 800 Dreamliners.

The 787 is the first airliner made mostly from lightweight composite materials, which increases an aircrafts fuel efficiency. It also relies on electronic systems rather than hydraulic or mechanical systems to a greater degree than any other airliner.

Compensation

Mr Khan said that most analysts had forecast that the 787 would be out of service for, perhaps, eight weeks at most. Beyond 10-12 weeks, and it could impact on Boeing's production line and future deliveries, he said.

"That raises questions of damages (to airlines) for late delivery and the leasing of alternative aircraft," he said.

Last week, analysts at Bernstein put the cost of fixing the Dreamliner at about $350m (?222m). Meanwhile, Jefferies estimated the likely cost at between $250m to $625m. But that was before the likely primary cause - the battery - was ruled out.

Depending on the cause of the problem, Boeing might be able to recoup any costs from suppliers. But analysts say that the longer the issue continues, the higher the risk for Boeing, suppliers, jobs, and investors.

On Wall Street, Boeing shares opened almost 1% down and are more than 4% lower since the issue came to light. "The amazing thing is that the share price has held up so well," said Mr Khan.

Source: http://www.bbc.co.uk/news/business-21230940

  • Like 2

Its a shame this. The 787 is probably one of the safest flying machines around, yet due to efficiency and space, the lithium cell may just be its downfall. Fearsome in everyday use, such as laptops, mobiles etc, but 'deadly' as part of today's commercial flying.

The use of smaller, physically isolated LiIon cells is one of Tesla & SpaceX's better ideas. They set the cell size to a tad larger than a AA battery, limiting the amount of energy in a failed cell that needs to be dissipated. Other battery makers use much larger prismatic or cylindrical cells that would generate tons more heat if they fail. Individual cells can also be electrically isolated from the rest of the stack if a problem is detected. Tesla's cells are fabbed by Panasonic to their specs.

Oddly enough, the Japanese claim there's nothing wrong with the battery (which just so happens to be designed in Japan).

Source: http://www.bbc.co.uk...siness-21230940

This was my understanding too. I had read that it was the charging mechanism that was bad, not the batteries themselves.

Late reports are that it was the electrinics / wiring, but Musk is still correct that the battery design is suboptimal.

Of course it is. The same **** happened when GS Yuasa tested the 787 batteries a couple of years ago and it looks like they didn't change anything from it.

Not to mention, the outsourcing done on the 787 is crazy.

This battery was contracted to be designed and built in Japan. Instead what happened was the battery was designed in Japan, manufactured in China and then shipped to France (Thales Communications) where it was put together and had some bits added on before being sent to Boeing.

The wing ribs were originally going to be made in Japan but that company sold the contract to Hyundai who sold it to a Chinese company.

  • 2 weeks later...

Lithium ion is the best for the job if you build them properly, meaning lots of small, well isolated cells. Smaller isolated cells limit the amount of heat generated by a shorted cell.

This is how Tesla builds its batteries, which other automakers also use, and it's how SpaceX builds its batteries for the Dragon spacecraft and its Falcon rockets.

JAL 787 cause: shorted battery cell

http://arstechnica.com/business/2013/02/investigation-reveals-cause-of-battery-fire-on-boeing-787-dreamliner/

Note to Boeing: call Elon

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Now, investigators at the National Transportation Safety Board have determined the cause of the battery fire in the Japan Airlines 787, saying that the fire was caused by a short circuit in one of the battery?s cells leading to a thermal runaway which led to the other cells catching fire. The NTSB said that temperatures inside the battery exceeded 260 degrees Celsius (500 degrees Fahrenheit).

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^What's funny about this whole thing:

Japan's transport safety board said a whole two days after the grounding that there was nothing wrong with the batteries and they were fine. And now the NTSB says the batteries do have flaws. Not to mention that this same issue happened in 2007 during testing with the same batteries that GS Yuasa then dumped into the 787. Trying to protect Japanese companies eh JTSB?

Another story in the 787's saga, apparently the FAA contracted out 90% of the safety / certification stuff to Boeing in order to save costs. So in essence Boeing engineers were the ones vouching for the safety of the plane.

In comparison, say you built your own kit airplane and wanted to get it certified. You'd call up the FAA and an inspector will come over to check it. This is for a tiny plane that can't be used for hire (and has a bunch of other restrictions too).

The tests on the lithium-ion batteries at the center of Boeing?s unprecedented crisis were conducted by the company. And the people the FAA designated on its behalf to ensure that the batteries conformed to its safety regulations also were Boeing employees.
In a 2011 review, the inspector general of the Department of Transportation found the FAA in one case delegated some 90 percent of the determination for regulatory compliance for new aircraft design to outside representatives. The Inspector General?s Office would not identify the company, but the report focused on Boeing, Cessna Aircraft and Bombardier-Learjet.
Among other things, the FAA required the battery design to prevent the possibility of spreading, uncontrolled overheating. That danger, known as thermal runaway, is exactly what occurred in the first of two 787 incidents, when a fire broke out aboard a Japan Airlines 787 after it landed in Boston?s Logan Airport on Jan. 7. The National Transportation Safety Board (NTSB) said the battery showed signs of short-circuit and thermal runaway.

The FAA also had decreed that any battery malfunction not damage surrounding electrical systems and equipment enough to cause a more serious failure. Yet the Japanese plane sustained damage to the adjacent electronics bay, although the NTSB has yet to determine whether the battery ? located beneath the cabin in the plane?s rear and accessible only from the outside ? could have disabled critical flight controls had the fire occurred in midair.

http://seattletimes.com/html/localnews/2020288737_787faaxml.html

FAA dumped it to Boeing, and odds are Boeing largely deferred to GS Yuasa & Japanese regulators. Distributed responsibility = circle jerk IMO.

Meanwhile, SpaceX & Tesla engineers took on the responsibility themselves; making their own judgements based on rational self-interest, which appear to be very sound, speccing to Panasonic exactly what they wanted. They are now not only driving the roads with them but flying them in the harshest environments of all - space launches & flight.

There's a lesson in there somewhere....

Tesla Model S battery

ModelS_pack01.jpg

Uh-Oh....

http://aviationweek.com/Article.aspx?id=/article-xml/awx_02_19_2013_p0-550136.xml

Swelling Found In Second Battery On All Nippon 787

Cells in a second lithium-ion battery on a Boeing Co 787 Dreamliner forced to make an emergency landing in Japan last month showed slight swelling, a Japan Transport Safety Board (JTSB) official said on Tuesday.

The jet, flown by All Nippon Airways Co, was forced to make the landing after its main battery failed.

?I do not know the exact discussion taken by the research group on the ground, but I heard that it is a slight swelling (in the auxiliary power unit battery cells). I have so far not heard that there was internal damage,? Masahiro Kudo, a senior accident investigator at the JTSB said in a briefing in Tokyo.

Kudo said that two out of eight cells in the second battery unit showed some bumps and the JTSB would continue to investigate to determine whether this was irregular or not.

The plane?s auxillary power unit (APU) powers the aircraft?s systems when it is on the ground. National Transportation Safety Board investigators in the United States are probing the APU from a Japan Airlines plane that caught fire at Boston?s Logan airport when the plane was parked.

The U.S. Federal Aviation Authority grounded all 50 Boeing Dreamliners in commercial service on Jan. 16 after the incidents with the two Japanese owned 787 jets.

>

O_o

Article on "the fix":http://www.aviationweek.com/awmobile/Article.aspx?id=/article-xml/awx_02_20_2013_p0-551029.xml

http://www.aviationweek.com/awmobile/Article.aspx?id=/article-xml/awx_02_20_2013_p0-550650.xml

Boeing To Present 787 Fix Proposal To FAA

A Boeing team led by Commercial Airplanes President Ray Conner is set to present details of its proposed near-term solution to the 787 battery issues to the FAA later this week, possibly as early as Feb. 21.

According to airline sources, Conner will present details of the manufacturers? revised battery system directly to FAA Administrator Michael Huerta in Washington D.C. If the plans are accepted then Boeing is understood to have provisional plans in place to begin flight testing the modified system immediately, and for fleet-wide retrofit action which would enable the first 787 to return to service as early as mid-March.

However, given the high-profile nature of the battery probe, and the subsequent review of the FAA?s oversight in connection with the original certification of the 787, it is far from clear if the agency will even consider Boeing?s request until the National Transportation Safety Board has completed its investigation. The NTSB, and its Japanese counterpart, the JTSB, are still evaluating the root cause of multiple battery failures in early January which prompted a worldwide grounding of the 787 on Jan. 16.

Boeing, which revealed additional details of the aircraft?s battery and related electrical system features on Feb. 20, declines to comment on the upcoming appeal to the FAA or on reported details of the proposed interim battery modification. Without identifying specifics, Boeing says that details published last weekend in a local newspaper contain ?significant errors and speculation.? The manufacturer adds it is ?working tirelessly in cooperation with our customers and the appropriate regulatory and investigative authorities. Everyone is working to get to the answer as quickly as possible and good progress is being made.?

Boeing?s bid for approval, which is based on developing a sturdy containment system and additional sensors, comes as investigators from the JTSB reveal that two cells in the second battery of the All Nippon Airways 787 that made an emergency landing at Takamatsu Airport on Jan. 16 were ?swollen.? Although the emergency was prompted by problems with the main battery, which was badly damaged by burning electrolyte, the signs of apparent degradation were found in the auxiliary power unit battery located in the aft electrical/electronic equipment bay.

The JTSB says the APU battery was initially thought to be undamaged, but adds that subsequent tomographic scans revealed evidence of slight swelling. Officials, however, say that the probe remains focused on the causes of the original failure in the main battery.

Airlines meanwhile continue to make contingency plans to cover for the continued grounding of the 787. United Airlines expects the aircraft to remain out of service through March 30, while Air India expresses hope that the 787 will be back in operation by early April.

Getting a bit close the A350 for these issues now Boeing.

I fear for our QANTAS. They were ****ed around with the 380 and it cost them, not they'll be ****ed around with the 787. They are going to have to continue flying their old heaps of **** 767 fleet.

I like how one of Boeing's solutions is "put a box around the batteries so any explosion can be contained"

Wtf Boeing...wtf.

Boeing is to meet with the Federal Aviation Authority (FAA) tomorrow to discuss temporary methods to fix the problems with the 787's auxiliary power unit, it has been reported.

According to the Associated Press, Boeing Commercial Airplanes' CEO, Ray Conner, is to meet with Michael Huerta, head of the FAA. They will discuss adding more ceramic spacers between battery cells, which Boeing believes will contain any potential fire caused by short-circuiting.

Another solution is to encase the cells in a titanium or steel box equipped with a high-pressure vent to contain and expel any fire.

However, yet more confusion was shed on the cause of the fire yesterday when Japan's Transport Ministry disclosed that the auxiliary power unit it examined was improperly wired.

Investigators at the National Transportation Safety Board (NTSB) had already found a different issue. It discovered multiple short-circuiting of eight cells, which caused progressively hotter temperatures, known as a 'thermal runway'.

Without complete understanding of the cause, a long-term solution is still far from sight. Meanwhile, Boeing is incurring significant costs and 787s are reportedly piling up as its production plant.

Last week, Imperial Capital analyst, Ken Herbert, estimated it could cost Boeing $25m a month in direct costs. Air India will now be seeking compensation for the delayed delivery of its 787s and United Airlines has announced that it has scheduled for its 787s to be out of action until at least the beginning of April.

Source: http://afm.aero/news/talking-point/item/583-talking-point-boeing-to-suggest-quick-fix-for-787

I don't think Musk is in a position to categorically say that the 787 battery is fundamentally flawed. Li-Ion batteries are inherently dangerous but can be done safely, as is the case in our phones.

I'm not an aeronautical engineer and even if I were I haven't studied the confidential plans for the Boeing like the FAA and other safety boards have. One thing for sure is that Boeing has every incentive to make the plane as safe as possible. AirBus is closing in on them in a very hardcore manner and planes that are known for dangerous conditions won't get them more orders. So, if the battery is flawed I'm sure they'll replace the design otherwise, the problem most likely lies elsewhere.

So, if the battery is flawed I'm sure they'll replace the design otherwise, the problem most likely lies elsewhere.

I dunno. When GS Yuasa tested the batteries back in 2007 the same problem showed up, but they still put them on the 787.

The FAA contracting out 90% of the safety tests / checks to Boeing to sign off on probably didn't help either.

Without complete understanding of the cause, a long-term solution is still far from sight. Meanwhile, Boeing is incurring significant costs and 787s are reportedly piling up as its production plant.

I can't feel that sorry for them. They should have analysed the risks going in.

I don't think Musk is in a position to categorically say that the 787 battery is fundamentally flawed. Li-Ion batteries are inherently dangerous but can be done safely, as is the case in our phones.

>

It's a difference in risk mitigation.

What Musk is challenging is the use of large, high volume cells with poor to middling physical and electrical isolation. Each large cell stores more energy, so if/when it fails more heat is released by a larger volume of material, which is also harder to contain.

OTOH, the Panasonic near-AA size cells Tesla & SpaceX use are more easily isolated and release less total heat if/when they fail. This all reduces the risk to other cells and the battery as a whole.

This topic is now closed to further replies.
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Post Setup (ZimaOS update) Upon first boot, you are alerted that there is a ZimaOS update from 1.5.0 to 1.6.1, which I applied; the full process is shown above with the changelog. ZimaBoard 2 Storage Setup Next, it is time to set up the storage. ZimaOS actually throws everything onto the eMMC flash drive; it is also the default location of AppData, which is definitely something to be wary about, as the 45GB available storage could fill up quickly. HDDs I first attempted to create a Storage Pool using the two 4TB WD Red Plus NAS drives, and got an error message: After several attempts and then looking online, I discovered it was a bug with ZimaOS where the fix was simply to reboot ZimaOS and then try again, this time I was able to create a RAID mirror using the two drives. SSDs I did the same for the SSDs, as you will see in the above gallery, when I created the second Storage Pool, it only allowed me to select available drives. ZimaBoard 2 AppData ZimaOS comes with an App Store that includes a repository of almost 400 apps, so you will be able to find most of what you'll need for a NAS (although after a quick search, I wasn't able to find a Surveillance Manager), and now comes the important part: moving the default AppData location off the 45GB eMMC and onto a larger volume: Open Settings Then Apps Then, in the Select a new location field, click on the new Storage volume you want to move it to (in my case, the Apps Storage Pool), which is the SSD RAID mirror. Confirm the Migration warning Be praised! You can also do this for Docker (which by default installs onto the 45GB eMMC flash drive) and the User database. Plex Setup Next, I tested the configuration by installing the Plex Server app from the App Store. The library folders must already exist (which I placed into the Storage Pool). Plex Server setup is straightforward and requires very little configuration. In my case, all I had to do was add the media path I just created, which you can also browse to using the folder icon in the path field. In addition, you can now map the new Media library in Windows Explorer using the Zima Client. Oddly enough, it is not possible to access the ZimaBoard 2 over the Network Neighborhood; you must map drives using the client, which is shown in the last image in the above gallery. I watched one of my Blu-Ray rips, which is Dolby Vision with Dolby Atmos, and the content played fine with no stuttering or buffering, which is what anyone needs in this scenario. ZimaBoard 2 Zima Client mobile app There's also a client for mobile. It is pretty barebones, as shown in the above gallery, for example, the Apps screen launches the WebUI for that app, and the Backup must be done manually. On opening Backup, you can select internal storage folders on your phone to backup to the ZimaBoard 2's storage, and although this is constantly scanned, the backup action itself must be manually triggered. There is an option to allow foreground backup (last image in the above gallery), but this basically means the queued backup gets triggered when you manually open the app. Benchmarking SATA PCIe 3.0 X4 A CrystalDiskMark test on a mapped network drive from within a Windows 11 25H2 PC (image above) connected over a 2.5 GbE was well within acceptable ranges. Writes were generally better on the SSD RAID mirror. SATA PCIe 3.0 X1 I also ran the NAS Performance tester, which tests the link speed performance. As you can see, it pretty much maxes out the 2.5GbE connection. Of course, you can also opt to bond the two 2.5 GbE connections for a bit more umph, but I didn't do that. Thermals Top PCIe card SATA HDDs Next, I measured some hotspots while playing content on Plex. It's fair to say this will perform better than a NAS that is enclosed in a metal or plastic case, as almost everything storage-wise is exposed! Anyway, the ZimaBoard 2 did not break a sweat with Plex streaming or disk benchmarks. ZimaOS Factory Reset ZimaOS does not include a factory reset option. Instead, you have to download the ZimaOS image and flash it to the eMMC manually. The flashing process is shown in the above gallery. The steps to do so are listed below: Download the ZimaOS image here; Open BalenaEtcher (Run as Administrator) and select the image; Select your inserted USB drive (min 8 GB) Flash to it; Connect your USB drive, monitor, keyboard, USB hub (optional), mouse (optional), and network cable (recommended) to the ZimaBoard 2; Connect power and press F11 continuously; Select your USB drive starting with UEFI in the boot device menu; Press Enter on the Install ZimaOS option; Select /dev/mmcblk0 (MMC) flash drive as target; Confirm with (three times) to wipe the target disk; Wait a couple of minutes while ZimaOS installs; Remove the USB drive and confirm with a reboot; Your ZimaBoard 2 has been factory reset. However, you don't have to stick with ZimaOS, in fact the company also offers official CasaOS images, that are based on Debian; or as they say themselves, put anything you want on this "hackable single board server" it's up to you. Conclusion I had a lot of fun putting this together. I've custom-built all my own PCs and servers since the 90s, and this is the first time I have had to put a NAS together. Even if the actual base ZimaBoard 2 was already a completed build, it still feels pretty custom. I just wish that IceWhale Technology included a getting-started guide in the box for the Start Kit, which would have really completed this kit. Instead, I had to search for the official video on the YouTube channel to make sure I wasn't doing anything wrong. So who is this for? Definitely the hobbyist who is comfortable building their own PC and servers. It also has a much smaller footprint than its nearest equivalent (in terms of specs), like the Beelink Me Pro, which is another NAS I will be testing soon. Although the Beelink does not come with the PCIe 3.0 X4 expansion, the ZimaBoard 2 Starter Kit suddenly looks to be a great bargain, even if it only offers the two 3.5-inch bays over the four in the other example. It makes a lot of sense to use Intel's N150 chip inside a NAS; it is more than capable of doing what the ZimaBoard 2 is intended for, media streaming and backup. It also looks like the IceWhale Technology staff are quite active in the official forums helping people with issues they come across with ZimaOS and the devices, peer support seems to be good as well, I was quickly able to find why I was not able to create a new Storage Pool in ZimaOS v1.6.1 even though that is quite a serious bug, hopefully it will be fixed in the next update. If you are comfortable with the command line and Docker, you'll be fine. You can do great things with this hardware. This was my first time with ZimaOS. It seems a bit barebones in comparison to the likes of Synology DSM, TOS, and UGOS, but it has a ton of apps to get you started with your home or small business NAS. Where to buy As of publishing, IceWhale Technology is running a discount of up to 5% for the Starter Kit. If you opt to get just the ZimaBoard 2 itself, it does come with a SATA Y-Cable, so you will be able to connect up to two 3.5-inch HDDs to it. ZimaBoard 2 1668 Starter Kit for $534.50 on Amazon US (was $548.60) ZimaBoard 2 832 Starter Kit for $372.88 on Amazon US (was $390.60) Zimaboard 2 1668 (16GB+64GB) for $419.90 on Amazon US Zimaboard 2 832 (8GB+32GB) for $359.90 on Amazon Disclosure: IceWhale Technology provided a free sample without any editorial input or review pre-approval. Good to know The Amazon link is U.S. specific, and not available in other regions unless specified. We only use first-party seller links (at the time of article publishing); ensure that you purchase from a first-party seller link only. Check out Today's Deals on Amazon | or our recent tech deals. 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    • It's in the Insider's group so yes it's technically beta, though these days it's hard to see much of a difference unless you opt for the most extreme beta builds, which I don't. When I moved here from the Release Preview channel I did so primarily because I wanted to see how well the restored taskbar functionality (restored from Win10, and earlier) is working and whether it was time to finally abandon SAB--and it is--working fine, so far. Not as polished as SAB, but it'll do for me.
    • I've been using MWB Premium for a number of years so that along with Windows updates and updated browser should be fine. Thanks for that.
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