Asia-Pacific AI Chip Market Size, Share, Analysis, and Growth Forecasts 2020â2035
Asia-Pacific AI Chip Market â Size, Share Analysis, Industry Trends & Statistics, and Growth Forecasts 2020 - 2035
The Asia-Pacific AI Chip Market is experiencing significant growth driven by advancements in artificial intelligence applications across industries. The market size was valued at USD 8,720 million in 2025 and is expected to reach USD 49,300 million by 2035, growing at a CAGR of 18.7% from 2024 to 2035. The region is at the forefront of technological innovation, with robust investments from players such as Samsung Electronics and Huawei Technologies, making Asia-Pacific a global hub for AI chip development and deployment.
Rising Investments in AI Infrastructure: Major companies like Huawei Technologies and Tencent Holdings are heavily investing in AI research and infrastructure, which is accelerating the adoption of AI chips across various sectors in Asia-Pacific. With the expansion of 5G and cloud computing, demand for high-performance AI processors has soared, particularly in China, Japan, and South Korea. Huawei, for instance, has introduced its Ascend series of AI chips integrated in data centers across the region, enabling faster AI computations and supporting a wide range of applications including autonomous driving, smart cities, and industrial automation.
Proliferation of Consumer Electronics and Smart Devices: The Asia-Pacific region is the worldâs largest market for consumer electronics, and companies like Samsung Electronics and MediaTek are at the forefront of incorporating highly efficient AI chips into smartphones, tablets, wearables, and home appliances. Samsung's Exynos AI chipsets have empowered real-time language translation, intelligent camera features, and on-device processing, enhancing user experience while reducing reliance on cloud services. The growing middle-class population and rising disposable incomes in countries like India and Indonesia further contribute to the rapid adoption of AI-embedded electronics.
Market Trends
Edge AI Accelerates Adoption: A significant trend in the Asia-Pacific AI chip market is the rapid shift towards edge AI processing, where computation is performed on-device rather than centralized cloud servers, reducing latency and improving data privacy. Companies such as MediaTek and Alibaba Group are developing specialized edge AI chips for IoT devices, surveillance cameras, and industrial robots. MediaTek's NeuroPilot platform, for example, accelerates AI experiences in smartphones and automotive electronics, leading to enhanced performance and energy efficiency.
Collaboration Between Industry Leaders and Startups: The market is seeing increased collaboration between established giants and emerging startups to accelerate AI chip innovation. For example, SK Hynix has partnered with several AI hardware startups in South Korea to develop energy-efficient AI accelerators tailored for LLM (large language model) processing and smart healthcare devices. These collaborations foster knowledge exchange, fast-track innovation, and create new pathways for commercial AI chip deployment across diverse industries.
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Market Opportunities
Smart City Expansion: The push for smart cities, particularly in China, Singapore, and Japan, opens vast opportunities for AI chip deployment in traffic management, surveillance, and resource optimization. Companies like SenseTime and Hikvision are developing AI chips specifically for urban infrastructure, supporting intelligent traffic monitoring, public safety, and energy-efficient smart grids.
Healthcare AI Integration: The adoption of AI chips in medical devices and diagnostics is rapidly increasing, presenting opportunities for players like Panasonic and Fujitsu. AI-enabled imaging and patient monitoring systems are gaining traction, powered by efficient AI processors that enable faster and more accurate analyses.
Asia-Pacific AI Chip Market Revenue (USD Million), 2020-2035
The chart depicts a strong upward trajectory for the Asia-Pacific AI Chip Market from 2020 to 2035. Starting at USD 2,120 million in 2020, the market witnesses progressive growth, reaching USD 8,720 million in 2025. The revenue is estimated to accelerate further as AI adoption expands across sectors, culminating in a projected USD 49,300 million by 2035. Significant growth phases are anticipated post-2027, attributed to large-scale rollouts of AI-powered IoT, autonomous vehicles, and smart city initiatives in key markets like China, Japan, and South Korea. The period between 2030 and 2035 marks the highest year-on-year growth, highlighting the marketâs immense future potential.
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Asia-Pacific AI Chip Market by Region Share (%), 2025
In 2025, China dominates the Asia-Pacific AI Chip Market with a 49% share, propelled by massive industrial investments, government support, and a vibrant AI startup ecosystem. Japan holds the second-largest share at 16%, leveraging advancements in robotics and automotive AI. South Korea, with 14%, is driven by its semiconductor giants like Samsung and SK Hynix. India, rapidly digitalizing, accounts for about 9%, while Southeast Asia (including Singapore, Malaysia, and Indonesia) comprises 12%, showing strong growth prospects amid regional smart city and IoT initiatives. The regional landscape underlines the marketâs competitive and innovative dynamism across Asia-Pacific.
Recent Developments (Last 6 Months)
In May 2024, Samsung Electronics unveiled its latest AI chip for smartphones, the Exynos 2500, with enhanced power efficiency and AI processing capabilities. The new chip features an upgraded NPU (Neural Processing Unit) optimized for on-device generative AI applications and real-time translation, supporting Samsung's flagship Galaxy line. This launch positions Samsung as a leader in integrating advanced AI chips for consumer electronics, catering to growing demand for real-time AI experience in mobile devices.
Huawei Technologies, in partnership with Baidu, announced the deployment of the Ascend AI processor in large-scale data centers in Shanghai and Shenzhen in June 2024. This collaboration aims to power new generative AI and cloud intelligence services for enterprises and public sector clients. By leveraging Huaweiâs in-house chip design and Baidu's powerful AI algorithms, they target improved performance, cost-effectiveness, and sustainability in data-heavy applications like autonomous driving simulation and city-level video analytics.
In July 2024, MediaTek launched its first automotive-grade AI processor, the Dimensity Auto 1000, designed to deliver advanced driver-assistance systems (ADAS) and in-car infotainment. The chip integrates edge AI capabilities for real-time decision-making and enhances vehicle safety features. Major automotive OEMs across Japan and South Korea have begun collaborating with MediaTek, underscoring the companyâs expansion into the fast-growing automotive semiconductor market and supporting the region's autonomous vehicle ambitions.
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1.      Asia-Pacific 5G Chipsets Market Outlook 2025-2035 - https://bussinessinsights.com/rd/information-&-technology/asia-pacific-5g-chipsets-market
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Daycare apps are insecure surveillance dumpster-fires
When my EFF colleague Alexis Hancock signed her baby up for daycare, she was told that she had to download a childcare management appâââto monitor and specify âfeedings, diaper changes, pictures, activities, and which guardian picked-up/dropped-off the child.â
This was during the lockdown, and the app was a way to comply with social distancing and contact tracing rules, but it was also designed to help with âseparation anxiety of newly enrolled children and their anxious parents.â
Alexis wasnât the only EFFer with a newborn encountering these apps. Being a digital privacy and security expert, she and her colleagues started to pick apart these apps and seek dialogue with the companies that made them. They discovered a nightmare of bad security practices, worse privacy practice, and yawning indifference to the digital wellbeing of very small children and their parents.
First of all, there was the matter of account security. When Alexis and co started looking into these apps, they all shared a glaring defect: none of them implemented two-factor authentication, âone of the easiest ways to increase your security.â
They contacted Brightwheel, a leading childcare app vendor, who proudly announced that they were rolling out 2FAâââand that this would make them the only childcare app to support it. Incredibly, this is true. As Alexis writes for Wired: this is âbullshit.â
Assessing whether an app has 2FA or whether it doesnât is easy: you just have to poke around in the settings. But a more comprehensive look at app security requires a more sophisticated investigation. EFF undertook a static analysis and network analysis of childcare apps and turned up some disturbing results.
For example, the Android Tadpoles app exfiltrates a ton of data to Facebookâs Graph API, as well as extremely granular device info to Branch.io (neither company is mentioned in Tadpolesâ privacy policy).
Then thereâs HiMama, which stores user data in Amazonâs cloudâââand misleadingly labels this practice as âsuited to run sensitive government applications and is used by over 300 U.S. government agencies, as well as the Navy, Treasury and NASAâ (none of this activity runs on the Amazon cloud that Himama usesâââitâs on the AWS Govcloud, a completely separate product).
Thereâs an industry-wide gap in disclosure of which data is collected and how it is used; the disclosures they do make are misleading or incomplete.
Worse, the companies have been vastly indifferent to these problems. In ââWe may share the number of diaper changesâ: A Privacy and Security Analysis of Mobile Child Care Applications,â a peer-reviewed paper presented at the 2022 Privacy Enhancing Technologies Symposium, a team lays these problems out in eye-watering detail:
Writing for EFF, Hancock makes a series of recommendations to the childcare app industry:
2FA for all admins and staff
Address known security vulnerabilities in mobile applications
Disclose and list any trackers and analytics and how they are used
Use hardened cloud server images. Additionally, a process in place to continuously update out-of-date technology on those servers
Lock down any public cloud buckets hosting childrenâs videos and photos
She also strongly recommends implementing end-to-end encryption between schools and parents: âThereâs no need for the service itself to view communication being passed between schools and parents.â
The irony here is that all of this is happening in the context of apps, which were sold to us as âcurated computing.â We were promised that if we ended the practice of software authors providing code to their users, and instead let Apple and Google decide what code we were allowed to run, all the evils of software would go away:
In reality, apps are some of the dirtiest code we use. Muslim call-to-prayer apps harvest their usersâ data and sell it to ICE and other domestic spy agencies:
Period-tracking apps share their usersâ sex lives, fertility data, location and other sensitive info to all comers, and will be a bonanza for bounty-hunting forced-birth advocates seeking to turn in people who have abortions for cash rewards:
Why are apps such a consistent dumpster-fire? Well, for one thing, apps have to be built using the app storesâ specs, which are billed as imposing rigor on software authors. In reality, the overheads this imposes has driven app makers to use software development kits that sneak privacy-invading data-collection onto users.
Because apps come from âapp storesâ and not as standalone software, app vendors can âupdateâ their code with new, malicious behaviors and users canât âdowngradeâ to the earlier, superior versions. For example, when Audacity was taken over by dickheads who announced that the program would soon come with built-in tracking, users responded by announcing that they wouldnât install the new versions, and the company backed down:
Thatâs not how it works for apps. A couple years ago, a trivial app I used to specify Bluetooth priority (so my phone wouldnât connect to my kidâs speaker when I walked past her room) was updated to include intrusive adware that popped up ads every time I unlocked the device. Eventually I figured out what was going on and uninstalled the software, but because this was from an app store, I canât roll back to the superior, pre-adware version.
The revelations about bad data-handling in childcare apps are disturbingly predictable. These are the very same bad practices that Elizabeth Warren, Cory Booker and Ron Wyden have raised with mental health apps like Betterhelp and Talkspace:
Itâs hard to say which is more disturbing: privacy-invading, insecure mental health apps, or privacy-invading, insecure apps that track your toddlerâs play, sleep, location and diaper changes.
Neither is acceptable.
All of this should be viewed against the backdrop of legislative and regulatory initiatives to force tech giants to give their customers more say over which apps they run, and how. In response, Big Tech companies insist that allowing software developers to directly transact with device owners will expose the public to bad privacy and security practicesâââinsisting, against all evidence, that âmobileâ is a synonym for âsecure.â
One intriguing way out of this mess is by forcing the mobile platforms to fully support Web Apps, or at least to get out of the way developers who want to offer mobile tools to users to make Web Apps fully functional:
A Web App is just what it sounds like: an app that is delivered into your browser, and runs inside of it. The Web App experience could be (but isnât) pretty much identical to installing app store apps: choose your app, click install, grant or refuse permissions, get an icon on your home screen:
https://open-web-advocacy.org/
But because Web Apps run in browsers, they can be modified by browser pluginsâââlike ad- and tracker-blockers. And because Web Apps are defined by open standardsââânot by corporate fiat handed down by monopolists whose own products compete with app developersâââanyone can make a Web App development toolkit:
https://www.w3.org/standards/webdesign/
Regular software can spy on users and steal their data, too, of course. But turning âprogramsâ into âappsâ didnât solve this problemâââit just limited usersâ ability to defend themselves, making them reliant on two companies to decide what protections they deserve.
[Image ID: A line of kindergartners horsing around in a toddler-sized institutional bathroom, looking into the mirror. Out of the mirror is the glaring eye of HAL 9000 from 2001: A Space Odyssey. The kids' reflection is color-inverted, and their reflected, inverted faces are traced with facial recognition geometry lines.]
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âSave who you can,â Tony said to himself as he splashed water on his face.
He blindly grabbed for a towel and dried off, meeting his eyes in the mirror for what felt like the first time in years. âDonât look back.â He straightened his shoulders and took a deep breath, trying to calm his nerves, and went out into his bedroom. He picked up the photo that sat on his bedside table and took it out of the frame, tucking it into the pocket of his pants. Glancing around his bedroom, he nodded once, and went down to his workshop. He saluted the painting of Howard on the wall then dug out the photo of the Winter Soldier from his desk and set it on fire, dropping it to the concrete floor and watching it burn.
 âReady, JARVIS?â he asked. He ground the last bit of embers into the concrete to put them out.
 âAre you ready, sir?â
 âYep,â Tony lied. âLetâs rock and roll.â
âLet it Burn Protocol initiated.â As JARVIS spoke, Tony felt the first explosion rock the house, rumbling through his feet as he stepped into the matte black suit in the gantry in the middle of the room. The facemask closed over his face as cracks appeared in the walls of the lab, and as the ground fell away from his feet he was already in the air.
36 days ago
Once he was sure that Stane was gone for good, Tony went down to his work shop and said, âWake up, JARVIS, we have work to do.â
Sitting down at his workstation, he opened up the master file with the suit schematics and eyed the hologram critically. The hardest part of the suit to master was going to be the flight system, so he isolated and magnified that part from the diagram, studying the repulsors built into the gauntlets and boots with stabilizers along the back. âStart machining the parts Iâm going to need for these,â he said. âCircumstances have changed and we are going to need to hit the ground running, so to speak."
âYes, sir,â JARVIS said, and the whirring of machinery became a low hum, punctuated by sharp bzzts as parts were cut and de-burred. Tony studied the prototype, exploding the diagram, moving it around, and after a while came up with a short list of non-critical design items he could spoon feed to Hydra to show his âenthusiasticâ cooperation. An hour later, the whirring stopped and the sudden quiet broke Tony out of his concentration. He sat up and stretched, wincing as his back popped. Standing, he went over to the coffee maker and started a new pot, then dug under the counter for his emergency stash of scotch, splashing a fingers worth in his mug while he waited for the coffee.
He had realized two very important things today. The first was that the Soldier needed saving even more than Tony did; the knowledge that the man was Hydraâs slave, kept ignorant and locked up until Hydra needed an attack dog, had shifted Tonyâs world view like a kaleidoscope, shaking up everything he thought knew and making an entirely new pattern. The second was that he couldn't keep waiting around for a chance to escape, he was going to have to make one.
This suit, he knew, was the key to both of those realizations. But this half-baked, insane plan to rescue the Winter Soldier was going to kick the anthill big time and Tony also knew he needed to have some kind of plan for dealing with Hydra in the aftermath. This wasnât going to be like Afghanistan, where he thought he was out and got pulled right back in again. The stakes were way too high this time.
With that thought in mind, when the coffee was done, he filled up his mug and went back to his desk. He pulled up the operating program for the suit and created a subroutine to overload the reactor, ignoring the flash red warning that said that this would result in a critical core breach and an uncontrolled chain reaction, and set the activation code as âLast Resort.â
One way or another, he thought as he sipped on his doctored coffee, this suit would be his way out.
 32 Days Ago
Tony stared tiredly at the news as he took a swallow of stone-cold coffee. The breaking report was about the assassination of an Iranian nuclear scientist. Iran was already blaming Israel, who was of course denying it, but in response Iran was threatening to pull out of the treaties against nuclear enrichment and swore they could split the atom within the year. Political and military analysts were seeing storm clouds on the horizon unless someone backed down and talking about how another war would tax America's already overstretched military. Tony, meanwhile, could tell that this assassination had Hydra's fingerprints all over it, and knew that this was almost certainly the work of the Soldier. "JARVIS," Tony said, muting the television. "I need you to break into Hydraâs servers and find everything you can on the Winter Soldier. Cross reference it with the name James Barnes.â There was a chance that Stane had made the name up, but it seemed unlikely â from what he could tell, the Soldier would have responded to anything, and âJames Barnesâ was a lot more specific than a simple âJohn Smithâ or âJoe Blow.â âActually, while youâre at it,â Tony said, having a sudden thought, âI want all of Hydraâs files. Copy them to one of SIâs remote servers.â
Hours later, Tony was just finishing up the wiring assembly for the repulsor system when his computer dinged. Setting down the soldering gun, Tony rubbed his eyes tiredly and turned on his monitor to see what JARVIS had found. To his dismay, there were thousands of files on the Winter Soldier; as he scrolled down the list, he realized that they went back decades. âFuck,â he said aloud as he looked at the dates and the file names, most of which were a string of letters and numbers that no doubt made sense to someone in Hydra but gave no clue as to what the file contained. He buried his head in his hands and tried not to cry at the enormity of the task in front of him. He was so tired that his eyes were blurry and his head was pounding, but every time he tried to close his eyes he kept seeing Jamesâs body arching with pain and hearing his screams.
âSir, it has been twelve hours and thirty-six minutes since you last ate,â JARVIS said. âAnd youâve made four mistakes in the past fifteen minutes. You need to rest.â
âI have?â Tony pulled his magnifying glass back over to the circuit board and saw what JARVIS was talking about. âShit. Alright, fine.â He pushed away from the desk and went to the bar sink next to the coffee pot and ran his head under cold water for a second. He came up and wiped his face and the back of his neck, shivering as water dripped from his hair down his back, and went upstairs to look for food. Leaving his work shop felt like he was crossing into hostile territory, like he could be attacked at any moment. And he could, he thought as he opened the refrigerator. Stane had made sure that he always had free access to Tonyâs home, because a locked door meant secrets and the only secrets Hydra allowed were their own. He wished he could just walk away from this place, blow it up and find a place to live that Hydra had never stepped foot in, a place that would feel like it was his â
He froze with a jug of orange juice in his hand. He stood there, thoughts racing, for so long that the chiller on the refrigerator came on with a hum. Then Tony said âHuhâ to the boxes of leftovers and absently shut the fridge door, OJ still in hand.
25 Days Ago
âJARVIS, this doesnât make sense,â Tony said, rereading the file for the fifth time. âThis thing is saying that the first Winter Soldier was James Barnes, but the current Winter Soldier is James Barnes.â It was hard to think that it was a clerical error, since the earliest files went back to the 1940s and consisted of paper files that had been scanned into a computer sometimes in the 80s. âIs it an alias? Are all Winter Soldiers called âJames Barnesâ as a security precaution?â
âFacial pattern analysis indicates that it is the same James Barnes,â JARVIS said, and it flashed up an image that looked like a scanned-in polaroid; in it the man was unconscious on an operating table, face dirty and bloody and pale. Next to it JARVIS pulled up an image from Hydraâs own security footage of what the Soldier looked like without his goggles and mask on. There was a vague resemblance to Tonyâs eyes, but as the facial recognition algorithm measured the features in each photograph, the conclusion was mathematically precise â there was a 99.7% chance that it was the same man in each photo.
Tonyâs face went slack with shock. âHow is that possible? Heâd have to be almost 100 years old!â
âThat part I donât know, sir.â
âHoly shit.â Tony went back to the original file, reading it more carefully. âJames Buchanan Barnes,â he read. âBorn 1917. American POW.â He paused at that and sat back in his chair. âWhy does that sound familiar?â
In response, JARVIS pulled up a Wikipedia page on Tonyâs screen. As he read it, Tony was speechless; for a long moment, he flipped screens between the dead-eyed man from Hydraâs surveillance footage and the smiling man with his arm around Captain America, but this time he didnât need JARVIS to tell him that it was the same man. The implications made his stomach turn, and as he stared at the screen he exhaled shakily and covered his mouth with his hands. 80 years. James Barnes had been in Hydraâs clutches for 80 years.
He stood suddenly, sending his chair rolling backwards. âWeâre doing another flight test. Right now.â 80 years was already far too long, and Tony wasn't going to let it be one more day longer than it had to be.
19 Days Ago
âTony!â Ms. Potts said with surprise. âI didnât expect you in the office today.â
Probably because Tony had been dodging Stark Industries for a while now, only coming out of his lab long enough to get her to leave him alone before burying himself in work again. It had occurred to him as he got in his car to go to SI headquarters, blinking in the bright sunlight, that this was the first time he had been outside of the house since Staneâs forced excursion. âYeah, I wanted to meet with you,â Tony said, shutting the door behind him. Â He set a stack of papers in front of her as he sat down.
âWhatâs this?â She said, flipping through the papers. There was a line of confusion between her eyebrows which only deepened as she started reading them.
âIâm making you CEO of Stark Industries,â Tony said. âEffective two weeks from now. Should be an easy transition, you do most of my job anyway.â He grabbed a pin from her desk and clicked it, the sound loud in the sudden silence. âSign on the highlighted line, please,â he added, holding the pen out to her, and despite everything he had to smile at the stunned look on her face.
 11 Days Ago
Tony put a hand on Rhodeyâs arm and met his eyes, willing him to understand. âIâm saying that Afghanistan wasnât a random attack,â he said urgently. âI think I was being targeted, and I think whoever did it might try again.â He palmed a thumb drive from his pocket and slid it across the table. In the Hydra files, JARVIS had found that a senator named Stern had been behind the Afghanistan attack, apparently trying to get Tony out of the way so that his good buddy Justin Hammer and his company Hammer Industries could take over SI's lucrative military contracts. There was all of that and more on here, just enough information that if Rhodey put all the threads together he would start getting the bigger picture. Pierce, the STRIKE teams, all of it. âIf anything happens to me, I need you to finish what Iâve started.â
âTony, if you are afraid for your life-â Rhodey started, still looking dubious but starting to get alarmed.
âNot just me. You. Ms. Potts. Anyone I'm friends with. I canât do anything to make these people suspicious,â Tony insisted. It was strange to feel like he was lying even though every word heâd said was true. âNo unexplained bodyguards, no sudden trips, and absolutely no cops.â
âI donât like this,â Rhodey said emphatically. âYouâre asking me to sit back and wait to see if someone kills you!â
âI know what Iâm doing,â Tony said. That part was a lie. He had a plan in the broadest definition of the word; mostly he was making it up as he went along and praying he could handle the fallout. âI need you to trust me.â Rhodeyâs mouth was a grim line and his jaw was tight, and Tony knew he wasnât convinced so he pulled out his trump card. âI canât do this unless I know you are safe,â he said, lowering his voice and leaning forward. âI wonât risk you.â It took a long minute, and Rhodey looked like he was swallowing something unpleasant, but he finally nodded and put the thumb drive in his pocket. Tony exhaled and sagged with relief. âThank you."
âWhen this is over, you better have a good damn explanation,â Rhodey said threateningly, and Tony barked out a humorless laugh.
âYou wonât even believe me when you hear it.â
 8 Days Ago
After Tony hit save on the final design of the suit, he stumbled over to the couch and landed on it face first, exhausted. He was laying on the couch, eyes drifting shut as he went over his plan for the hundredth time trying to figure out if heâd missed anything when the lab went dark. âWhat the hell, JARVIS?â
âSir, itâs been 56 hours since you last slept,â JARVIS said. âIâm turning off your systems for a minimum of twelve hours.â The light in the stairwell going up to the main floor turned on, its glow just enough to let Tony get from the couch to the door without running into anything.
Tony stayed stubbornly on the couch. âWe donât have twelve hours to waste,â he said. âTurn my power back on.â
The lights stayed off. âSir, you are a hazard to yourself and others.â Tony scowled and wondered if he had actually programmed JARVIS like this or if he was channeling the man himself. "Also, there's nothing for you to do while I assemble the suit."
âFine. Ten hours.â
âTen hours," JARVIS repeated. "I will be monitoring the situation while you sleep,â he added, and Tony knew that he meant not just monitoring Stane and James, but also Tonyâs vital signs to make sure he actually slept.
âYouâre insufferable,â Tony accused as he made his way up the stairs.
âYes, sir.â
 2 Days Ago
âSir, thereâs something you should see.â
Tony looked up from the fine-tuning he was doing on the suitâs shoulder-fired weapons to look at the computer screen. JARVIS had maximized the window where he was constantly monitoring Pierceâs communications and highlighted a text that had just been sent. It was to an unknown number and all it said was lvl 10, CovJer10131973 nlt 200810162200Z. The first part was clearly a target identifier and Tony knew enough about the military to recognize the latter as a date time group, set for five days from now. âBring up the camera feed,â Tony said, and sure enough when Tony looked at the video surveillance of the room where James was kept, he could see that the lights in the room were on and a technician was already in the room powering on computers. Theyâd found out a while ago that what Tony had taken for a hyperbaric chamber was in fact a cryostasis chamber, which partly explained why James was almost a hundred years old but looked younger than Tony.
âShit." Tony exhaled long and low, feeling his heart rate spike with nervousness. "How long it takes to thaw him out? Was that in his files?â
JARVIS was silent for a moment. âEvidence suggests approximately 24 hours from the time the procedure is first initiated,â he said.
âRight,â Tony said grimly, turning back to his work with a new urgency. âGuess itâs time.â
 Now
Tony flew north along the coast as his house collapsed into the Pacific Ocean behind him, throwing billowing clouds of dust and smoke into the air as carefully placed explosives reduced it to a smoking ruin. It was thrilling and terrifying to know that for all intents and purposes Tony Stark was sinking to the bottom of the ocean. He'd become a dead man after all, and now the only thing left was this suit and his mission: rescue the Winter Soldier then burn Hydra to the ground.
âPull up James' video feed for me," Tony said as he flew. Since he was over water, he set the suit to autopilot and shifted his attention to the small window at the corner of his HUD. Â James was out of the cryostasis chamber, sitting on a chair as a medical assistant appeared to be taking his vitals. Every now and then he shivered, still shirtless. Other technicians were milling around, tending to the computers, and standing guard were was two members of the STRIKE team, hands on their weapons as they kept an eye on him. His records had indicated that he was prone to âerratic violent outbursts,â which Tony figured was code for âperiodically tries to fight back.â Tony had actually been happy to read that, because it meant that Hydra hadn't managed to break him completely. Right now, though, James just seemed willing to numbly submit to whatever the technicians were doing, his long hair a curtain in front of his face as he stared at the floor.
âSir, we are approaching the facility,â JARVIS said, and minimized the video. Tony flew lower to the water, navigating around the giant cargo ships at dock. Even for a twenty-four hour facility it was late, and there were only one or two ships that had people still unloading shipping containers. He landed close to the Hydra facility but out of the line of sight; he had managed to camouflage the suit to the best of his ability, but he couldnât hide the bright lights of the repulsors so he made the rest of the approach on foot.
JARVISâs scanners found four total guards around the building, patrolling in pairs. By sticking to the deep shadows cast by the stacked shipping containers and the orange-yellow glow of the sodium-vapor security lights, Tony got within hearing distance and hit them with a pulse of high-pitched wave frequency. They both stiffened and fell over, paralyzed, helmets bouncing off the pavement hard enough to knock them unconscious. Tony bound them with their own zip ties and hid them out of sight, then used his backdoor access to the security system to unlock the doors and set all the surveillance cameras on a one hour loop. As he strode through the door into the lab, all eyes turned to face him, and before anyone could even speak there was a brrrt noise and they fell to the floor, killed by the precision targeting system Tony had built into his suit.
When JARVIS confirmed they were all dead, Tony took off the helmet and looked down at one of the bodies; the one closest to him had been here a month ago, monitoring Jamesâ vitals as they wiped his mind. This was the first time Tony had killed anyone and he expected to feel..something, sad or upset or even vindictive, but he didnât really feel anything. It all felt too easy, and Tony knew it was because he had designed a suit that had made it that easy. All the more reason that Hydra couldn't be allowed to get their hands on it.
James was still sitting in the chair, watching Tony as he approached; he hadnât even gone for cover as everyone around him had died. Tony wondered if it was out of surprise or indifference. âDo you know me?â He asked, coming to stand in front of him. James studied his features for a moment and shook his head. âMy name is Tony Stark. You are James Buchanan Barnes, and I am here to rescue you.â Tony offered him a hand to get to his feet, but James didnât move, he just stared at Tony with those glacier blue eyes. There wasn't blankness in them now, only a narrow-eyed look of consideration. âCome on,â Tony tried again. âWeâre escaping. We have to hurry before more people show up.â
James didnât move. âThere is no escape from Hydra. The only way out is-â
âDeath, I know.â Tony kept his hand out but gestured expressively around the room with the other. âBut they never said whose death.â
James studied him again, then turned his gaze to the dead bodies. Finally, after a long moment, he took Tonyâs hand and let him pull him to his feet.
Imagine the heat that your laptop generates, but multiplied across an entire warehouse
âThe cloudâ is a real place. The pictures you post on Instagram, the happy birthday wishes you leave on Facebook pages, and the TV shows you stream on Netflix arenât living in a nebulous ball of condensation in the sky. They live on a massive series of servers â all connected together in rows and towers in giant warehouses.
Few people have ventured into these data centres. But in the Swedish capital Stockholm, I discovered that theyâre not just housing data. All the heat they give off is helping to warm homes in the city of over 900,000 people. How does it work? And could it create a new business model for the tech industry worldwide?
Inside the labyrinth
Walking through a data centre you notice a few things. The air is cool and dry. And thereâs not a dust bunny to be found. The rows of server towers are covered in thousands of blinking lights and there are rarely any people. Everywhere you look across the ceiling and underneath the removable floor tiles are masses of cables running in every direction.
But most of all, itâs really loud. Thatâs because computers get hot â and it takes a lot of fans to keep them cool enough to operate properly. Imagine the heat that your laptop generates, but multiplied across an entire warehouse: thousands of computers all connected together running non-stop, doing complicated tasks, 24-hours a day, seven days a week.
Cooling mostly involves cold water and a lot of fans blowing cool air in and sucking hot air out. The heat is usually tossed out as waste.
But heat is energy. Thatâs why Sweden decided to use it to heat peopleâs homes.
In Stockholm, the project is called Stockholm Data Parks and it runs in partnership with the cityâs government, Fortum VĂ€rme (the local heating and cooling agency), and others. Various major Stockholm data centres take part, and the number is growing as more businesses look to bolster climate conscious reputations, and make money from a new business model. Recently, the programme announced partnerships with data centres run by major international businesses Ericsson (a builder of cellular networks that also helps broadcast BBC TV channels) and clothing retail chain H&M.
Hereâs how it works most of the time in Stockholm: cold water feeds through pipes into the data centre, where itâs used to create the cold air they blow on their servers to keep them from overheating. The water, which has been heated by the cooling process, then runs back out of the pipes and into Fortumâs plants where it is distributed for heating.
Sweden isnât the only country to embrace this idea. Itâs happening in small-scale projects in places like Finland, where one data centreâs heat has been used to warm homes in a small city since last year. There are also programmes in the US, Canada, and France.
But Swedenâs decision to scale it up to this size across the country is an unprecedented experiment.
Stockholm Data Parks is expecting to generate enough heat to warm 2,500 residential apartments by 2018, but the long term goal is to meet 10% of the entire heating need of Stockholm by 2035.Â
According to Data Centres By Sweden â which is launching Stockholm-like projects across the country â only 10 MW of energy is needed to heat 20,000 modern residential apartments. The typical Facebook data centre, for example, uses 120 MW.
One of the main incentives for companies to join the programme in Stockholm is financial â they get to sell their waste heat. Fortum also provides free cold water for their cooling.
At Interxion, a company whose data centres support mobile gaming apps and other cloud-based software, the cost/benefit analysis was so promising that theyâre building a whole new facility for heat capture. âItâs not philanthropic,â says Mats Nilsson Hahne, the companyâs head of business development. Quite the contrary, says Peder Bank, managing director of the company's Nordic arm, âWeâre trying to turn it into a secondary business.â
Still, Interxion is sharing their engineering plans for their new business model publicly with any data centre that wants to set up shop in Stockholm. Asked why they would give their competitive advantage up, Bank reinforces the Swedish attitude about fighting climate change: âThereâs a higher purpose in this than competition. A global purpose,â he says. âIf Iâm able to protect the higher agenda and do my business I should do that. If I am able to attract business to the region I should do that and then I should compete after. I donât see a mismatch. Weâre all living on the same planet.â
Sweden has been embracing greener energy ideas like this for a while. According to Stockholm city climate manager Björn Hugosson, itâs because the country has few natural resources. âWe donât have any fossil resources in our ground. We donât have oil wells or coal mines,â he says.
Today, Sweden has 2,057 hydropower plants, according to the World Energy Council, which account for 40% of their energy use. The rest mostly comes from nuclear power, which is in the process of being phased out, and some coal, which is imported to the countryâs one coal plant from Russia, which will be eliminated in the next five years (likely by 2020). The country hopes to be 100% fossil-fuel free by 2040.
Sweden also produces almost zero waste in the form of garbage. Its citizens recycle more than 99% of their household waste and only 3% ends up in landfills. The country burns about 70% of its waste to produce energy and they import garbage from neighbouring countries to help meet the energy demand theyâve created since the garbage burning programme started.
That said, theyâre not the greenest energy user in the world. That title belongs to Iceland, where 86% of all energy use comes from renewable resources. And though Sweden manages to be 100% fossil fuel free on some days when the weather conditions are just right, their neighbour Denmark hits that goal more regularly thanks to the massive amounts of energy they generate from windmills. (So much, in fact, that Denmark sells its energy overages to neighbouring countries.)
So, could Swedenâs ambitious heat capture and reuse plan take off elsewhere? Perhaps, but it would need other changes to happen first. It works because the the countryâs citizens rely on the government to provide them with the hot water they use to heat their homes.
Called âdistrict heating,â the programme began in Stockholm the 1950s when homes were largely heated by oil. Fortum VĂ€rme started piping hot water to hospitals. When the oil crisis hit in the 1970s, the heating system expanded into homes across the country. Today Fortum sells heat to about 12,000 buildings or 90% of the city of Stockholm. At first, the heat they provided was generated by coal, but today it comes from biofuel: wood pulp left over from production by the countryâs massive forestry industry, brought in to Stockholm on ships. And because Swedes recycle everything, they also reuse hot water after it goes down the drain.
âTake a shower, the water that goes down the drain would get cleaned, treated, and pumped in the sea. The fish gets warmer but they donât appreciate it,â says Jonas Collet, head of media relations at Fortum. âWe figured 30 years ago thatâs a waste. We could reuse that water.â
So if other cities wanted to follow Stockholmâs lead, theyâd need the underground piping infrastructure in place and the business model of providing heat to its residents.
This isnât impossible. Quite a few cities around the world are doing this, including many in Canada, New York City, and almost the entire country of Iceland.
But it shouldn't be seen as a panacea either. Bo Normark, a member of the Royal Swedish Academy of Engineering Sciences and a smart grid advisor to a slew of green energy companies, cautions that he believes Sweden's programme might not be infinitely scalable. Eventually the country wonât need more data centres to join in.
âPeople are overestimating the need for heat. We will have a surplus of heat. We can export electricity. We canât export heat,â Normark says. But, he adds, âin Stockholm it works because the city is fast-growing. Thereâs monetary value in the heat.âÂ
And when new data centres start showing up to the fast-growing city they can get started working just as quickly. The culmination of the work by Stockholm Data Parks is found in four major data park sites around the city that are tied into the clean energy grid and equipped with a plug-and-play setup for companies to connect into the cool water delivery and heat recycling system. The first, already completed, is in the cityâs âSilicon Valley,â a neighbourhood called Kista, and currently houses data centre companies like Interxion. Two more are parks upcoming in 2018 and a fourth in 2019. All data centres need to do is show up and plug in.
âWeâre changing the economics of the whole industry,â says Johan Börje, Head of Marketing Data Centre Cooling and Heat Recovery at Fortum VĂ€rme. On top of that the Swedish federal government, recognising the benefit of the initiative, this year lowered the electricity tax on data centres. Sweden doesnât want data centres to have an excuse to make their homes elsewhere in Europe.
Still, for now the developed world relies on data centres â and that demand will continue to grow. Without them, none of our devices would function and none of our information would move. And that means more and more of these technological libraries are going to be built around the planet. They can keep our digital world moving while drawing clean energy and recycling their waste at the same time â in Scandinavia and beyond.
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The Electronic Frontier Foundation (EFF) is seeking applicants for the position of Operations Engineer to join our Technical Operations team. EFF is the leading nonprofit organization defending civil liberties in the digital world. Founded in 1990, EFF champions user privacy, free expression, and innovation through impact litigation, policy analysis, grassroots activism, and technology development. We work to ensure that rights and freedoms are enhanced and protected as our use of technology grows.
EFF's Technical Operations team is the team responsible for designing and maintaining EFF's systems and networks while also providing hardware and software technical support for EFF's staff. The ideal candidate must work well with a very busy staff with varying levels of technical expertise.
Responsibilities:
Monitor and improve the performance and reliability of production GNU/Linux platforms, network infrastructure,services, and network-attached devices like PBX and conference systems. Maintain the corresponding documentation
Participate in on-call rotation and incident response efforts, perform blameless postmortem reporting
Develop and implement process improvements in the way we build, secure, manage, and maintain our infrastructure over its lifecycle from design through deployment, operation, and retirement
Respond to support requests within team-defined Service Level Agreements (SLAs). This includes working closely with other teams to design and adapt systems for changing program and operational requirements
Scale and standardize systems through automation
Communicate effectively about technical issues with non-technical parties
Minimum Qualifications:
Have a deep respect for user privacy and organizational security
5 years of system administration, site reliability engineering, or other ops experience in a unix-like environment
Excellent organizational, communication and people skills
Ability to debug and optimize code and automate routine tasks
Understanding of common algorithms, data structures, computational complexity analysis, and basic software design
Experience in one or more of the following computer languages: C, Python, Go, Bash / POSIX shell, Rust, PowerShell, Perl
Experience collaborating on engineering projects and processes
Experience operating cloud infrastructure including the configuration and maintenance of virtual servers & load balancers
Experience with TCP/IP network design, installation, and debugging
Experience with relational database administration
Preferred Qualifications:
10 years of experience operating and maintaining servers running unix-like operating systems
Experience in a large-scale or critical production service environment
Experience working in a managed cluster environment (such as Kubernetes, Mesos, Docker Swarm)
Fluency in multiple programming languages
Experience working in an environment controlled by orchestration tools like SaltStack, Puppet, Chef, Ansible, etc.
A history of open-source contributions (bug reports, pull requests, projects / packages)
Experience with network hardware and network hardware configuration orchestration
Experience with key-value or graph database administration
Experience using, designing, and implementing CI/CD pipelines
Experience with SSO, SAML, OAuth and other industry standard AuthN/AuthZ solutions
Experience with bring-your-own-device fleet management in a mixed environment (GNU/Linux, macOS, iOS, Android, etc.)
We offer an excellent benefits package including medical, dental, and vision insurance, a 403(b)(7) retirement savings program with matching, paid time off, holiday benefits, student loans assistance, housing cost assistance, parental leave, a dog-friendly workplace, and more.
As an advocacy organization, EFF is committed to being part of a diverse community. Diversity of life experiences makes a big difference in how we identify and litigate legal issues, design privacy-enhancing software, and organize our activism. To that end, we deliberately seek applicants with different perspectives, identities, and experiences to build a diverse and inclusive workplace to better inform our advocacy and defense of freedom in our digital world. EFF is an equal opportunity employer and encourages people of all races, genders, ages, abilities, orientations, ethnicities, and national origins to apply.
Interested in joining the team?
Apply here with:
A cover letter introducing yourself and telling us why you want to work at EFF.
Why are the data-formats in Star Wars such an awful mess? Because filmmakers make movies about filmmaking
Sarah Jeong's long, terrifyingly thorough analysis of the data-formats in the Star Wars universe is both hilarious and insightful, and illustrates the difference between the burgeoning technological realism of shows like Mr Robot and the long tradition of science fiction media to treat computers as plot devices, rather than things that audiences are familiar with.
Data formats are central to the Star Wars stories -- the first movie and the most recent one especially -- but there is precious little coherence in the implied technological underpinnings of these systems. That's not unique; all the technology in Star Wars is composed for its visual/acoustic interest, not its coherence (why doesn't R2D2 have a voice chip?). But given the centrality of data-handling and IT to the intrigue in the story, this incoherence looms larger than the rest of the technology dog's breakfast -- imagine if, at the end of the Maltese Falcon, we learned that the statue wasn't just important, it could also grow to the size of a planet and was responsible for unpredictable episodes of mass spoon-bending, all without any explanation.
Jeong's piece is excellent and full of yucks. As thorough as it is, I'd like to propose another lens through which to view the franchise's handling of data formats -- as a funhouse mirror for the history of the lived experience of the film industry with data.
In the mid 1970s, movies and computers were firmly separated. The VFX artists and directors of the day would have limited experience of data handling -- mostly through advertising content from the likes of Sperry-RAND and from one another's cinematic interpretations of same. In other words, they were just making it up.
Gradually, and then in a rush, movies and computers came together. Data-storage is one of the steepest technology curves: the cost of storing data is in freefall, as is the bulkiness and unreliablity of media. From floppies to hard drives to SDDs to RAIDs to cloud-based distributed filesystems, storing data is one of the most reliably advancing dimensions of technology.
But we have a persistent myth of the fragility of data-formats: think of the oft-repeated saw that books are more reliable than computers because old floppy disks and Zip cartridges are crumbling and no one can find a drive to read them with anymore. It's true that media goes corrupt and also true that old hardware is hard to find and hard to rehabilitate, but the problem of old floppies and Zips is one of the awkward adolescence of storage: a moment at which hard-drives and the systems that managed them were growing more slowly than the rate at which we were acquiring data.
In those days, even aggressive technology updaters -- people who bought a new computer every year, say -- would likely migrate into new systems that lacked the hard drive space to store all those users' files. Those people would necessarily store much of their data in fragile and obscure media -- floppies, tapes, Zips -- and often as not, discover down the road that some of their data had succumbed to bitrot.
Gradually, computer drives caught up with even very aggressive users. 1TB SSDs got cheap, then cheaper, and then cheaper and smaller -- and laptops started sporting multiple 7mm/2.5" drive bays, and the drives that could fit in those bays swelled to 2TB and beyond. At the same time, file-lockers and streaming services took much of the bulkiest data out of our laptops and moved it to the cloud. The price of mechanical drives plummeted in the face of competition from cheap, reliable and fast SSDs, bequeathing careful users a welter of cheap local backup options.
Drives in motion are much less susceptible to bitrot than drives on a shelf. The drive controllers are constantly scanning for and marking off bad sectors, copying endangered bytes to good sectors before they're lost. What's more, the rate of change in drive interfaces is much slower than for removable media -- the eventual extinction of 2.5" drive ribbon-cable interfaces will be preceded by many years of co-existence with competing storage interfaces, and those interfaces will support more capacious drives, and the upgrade path from 2.5" to its successors will entail the quick transfer of your 2.5" drives to your new drive and the computer it rode in on. There will be outliers -- someone drops dead suddenly and their laptop is tied up in probate for a decade before anyone can try to recover their data -- but for most of, the destiny of our data will be to move from live, self-healing media to live, self-healing media, without any time at rest in near-line or offline storage, the home of bitrot.
But this isn't the experience of the film industry: they are one of the few industries for whom data is still a hard-to-solve problem. High resolution cameras with high framerates capture so much data -- and often on location -- that the bulk of it is inevitably offline for some or all of the production process. And even the biggest internal servers struggle to store all the intermediate data of a finished film -- all the test-renders and uncompressed raw footage and so on -- meaning that filmmakers are often at the mercy of getting drives out of vaults and plugged into a server somewhere. The distributed nature of film-work, from location shooting to VFX partners in other cities or other continents, means that film-makers routinely struggle with long file-transfer lags that the rest of us have been largely spared for the past decade or so.
It's not a coincidence that there are a lot of novels written about the frustrations of novelists, nor is it a coincidence that filmmakers' tales of dramatic technological struggle look a lot like the kinds of problem-solving that filmmakers go through all day long.
Cloud Computing Server Market - Global Industry Analysis, Size, Share, Growth, Trends and Forecast 2017 â 2022
Cloud Computing Server Market â Global Industry Analysis, Size, Share, Growth, Trends and Forecast 2017 â 2022
MarketResearchNest.com presents âGlobal Cloud Computing Server Sales Market Report 2017â new document to its studies database. The records spread across 117 with more than one tables and figures in it.
 Global Cloud Computing Server Market Report 2017 offered by MarketResearchNest contains a market overview of the industry which talks about market size, product scope, market revenue, growthâŠ