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  • AMD’s Nostalgic Pitch: Will Old Tech Pave the Way for Future Growth?

    AMD’s Nostalgic Pitch: Will Old Tech Pave the Way for Future Growth?

    In a world where tech companies incessantly chase the next big thing, AMD has taken a different route at Computex 2026. Rather than dazzling with cutting-edge innovations, AMD is doubling down on its legacy. The company has committed to supporting its AM5 desktop motherboard socket through 2029, encouraging users to stick with older, relaunch-ready components. But is this a bold move or a sign of stagnation?

    What happened

    At Computex 2026, AMD unveiled a strategy centered on relaunching older products, including a “10th Anniversary” edition of the Ryzen 7 5800X3D and the Ryzen 7 7700X3D. The company promises compatibility for its AM5 socket with new Ryzen processors until the end of the decade. This means users can continue upgrading CPUs without needing a new motherboard. Meanwhile, the Radeon RX 9070 GRE, previously exclusive to China, is now available in the US for $549. However, this price is contentious, considering the more powerful RX 9070 was supposed to start at the same price point but rarely did due to market shortages (The Verge).

    Why it matters

    AMD’s strategy highlights a significant shift in the tech industry’s approach to product lifecycles. By extending the life of its AM5 socket, AMD is acknowledging both the rising costs of technology and the saturation of the PC gaming market. This move could appeal to budget-conscious consumers and those fatigued by the relentless upgrade cycles. However, it also risks signaling a lack of innovation, potentially impacting AMD’s market position against competitors like Intel and Nvidia, who continue to push the envelope with new technology.

    The precedent

    This isn’t the first time a tech company has bet on older technology. Intel has often revived older CPUs for budget lines, and Nvidia has re-released GPUs to fill gaps during shortages. However, these moves typically occur in response to specific market conditions, such as supply chain issues or economic downturns. AMD’s strategy seems more premeditated, suggesting a long-term plan rather than a stopgap measure.

    Postmortem

    The critical question is whether AMD’s reliance on older components will pay off. While the promise of long-term compatibility is appealing, it may not be enough to maintain consumer interest in the face of more innovative offerings from competitors. The decision to price the RX 9070 GRE at $549, despite its lower performance compared to the RTX 5070, could deter consumers who expect better value for their money. AMD’s strategy appears to hinge on the assumption that consumers prioritize affordability and compatibility over raw performance.

    What to watch

    Investors and consumers alike should keep an eye on AMD’s next earnings report for indications of how this strategy is playing out financially. Watch for shifts in market share against Intel and Nvidia, particularly in the desktop CPU and GPU markets. Additionally, any announcements related to new product lines or technological advancements will provide insights into AMD’s future direction. Regulatory filings and executive comments during earnings calls will also be telling.

    As AMD navigates this unusual strategy, the larger question remains: Can a tech company thrive by looking backward, or is innovation the only path forward in a rapidly evolving industry?

  • Character.AI’s User Revolt: A Case Study in AI Enshittification

    Character.AI’s User Revolt: A Case Study in AI Enshittification

    Character.AI, once a darling of the AI chatbot community, has found itself in the crosshairs of its own user base. A series of recent changes aimed at monetizing the platform and addressing regulatory concerns have instead ignited a full-blown user revolt, raising questions about the governance strategies of AI companies.

    What happened

    Character.AI, an app that lets users create and interact with virtual characters, has faced backlash after implementing several unpopular changes. The company has introduced more ads, increased usage restrictions for free users, and replaced popular AI models with a new, less engaging one called Pipsqueak 2, which users describe as “lobotomized.” Additionally, the app has added new filters and invasive age verification measures. The response has been a torrent of negative feedback on platforms like Reddit, with users creating subreddits dedicated to protesting these changes and looking for alternatives. The uproar underscores a growing dissatisfaction with what users perceive as the ‘enshittification’ of AI tools—where the drive for monetization and regulation overshadows user experience.

    Why it matters

    The Character.AI debacle serves as a cautionary tale for the broader AI industry, which is grappling with the dual pressures of financial sustainability and regulatory compliance. As AI technologies become more integrated into daily life, user experience and trust become critical metrics for success. The backlash against Character.AI suggests that users are unwilling to tolerate products that prioritize profit and compliance over functionality and enjoyment. This situation could lead to decreased engagement and financial harm for companies that fail to balance these competing priorities.

    The precedent

    This is not the first time we’ve seen a tech company face backlash after making changes perceived as detrimental to user experience. Social media platforms like Facebook and Twitter have faced similar revolts after altering algorithms or monetization strategies. In many cases, these companies have had to backtrack or significantly alter their approaches to regain user trust. Character.AI seems to be following this well-trodden path, which historically has led to a temporary dip in user numbers and, in more severe cases, permanent loss of market share.

    Postmortem

    The core mistake here appears to be a misalignment between Character.AI’s strategic goals and user expectations. By focusing heavily on monetization and regulatory compliance, the company has alienated its core user base. The decision to replace popular AI models with a less dynamic alternative has been particularly damaging, as it directly undermines the app’s primary appeal—engaging conversational experiences. The addition of intrusive ads and usage limits further compounds the issue, as it disrupts the seamless interaction users expect from AI companions.

    What to watch

    Going forward, the key markers to watch will be how Character.AI responds to this backlash. Will they roll back some of these changes, or will they forge ahead with their current strategy? Additionally, the reaction of other AI companies will be telling. Will they learn from Character.AI’s missteps and prioritize user satisfaction, or will they follow the same path in search of revenue? Regulatory developments will also be crucial, as increased scrutiny could force further changes across the sector.

    The larger structural question this raises is whether AI companies can find a sustainable model that balances user satisfaction with financial and regulatory pressures. As the industry matures, the ability to navigate these challenges will likely separate the enduring players from the flash-in-the-pan failures.

    Source: https://www.404media.co/lobotomized-character-ai-is-showing-what-ai-enshittification-looks-like/

  • Blue Origin’s New Glenn Setback: A Cautionary Tale in Rocketry Ambitions

    Blue Origin’s New Glenn Setback: A Cautionary Tale in Rocketry Ambitions

    Blue Origin’s ambitious space endeavors hit a significant snag as its New Glenn rocket exploded during a ground test at Cape Canaveral. The incident, occurring during a hot-fire test, underscores the formidable challenges facing even the most well-funded space ventures.

    What happened

    On Thursday night, Blue Origin’s New Glenn rocket met an untimely demise during a hot-fire test at a Space Force launch facility in Florida. The test, a critical step in assessing the rocket’s readiness for launch, resulted in an explosion that thankfully did not harm any personnel. Blue Origin, led by Amazon’s Jeff Bezos, has been striving to carve out a niche in the competitive space industry dominated by Elon Musk’s SpaceX. The explosion was described by Brevard County Emergency Management as an “anomaly” that posed no threat to the public. Jeff Bezos assured on social media that the team is safe and committed to uncovering the cause.

    Why it matters

    This incident raises serious questions about Blue Origin’s operational safety and the robustness of its technology. The explosion is more than a technical setback; it has implications for investor confidence and the company’s role in NASA’s Artemis program. Just a day before the explosion, NASA Administrator Jared Isaacman praised Blue Origin’s contributions to the Artemis mission, which aims to return humans to the Moon by 2028. With a $188 million contract to help build a Moon Base, any delay or technical issue could ripple through these high-stakes projects.

    The precedent

    Blue Origin is not the first to experience such a setback. SpaceX, despite its current success, faced numerous early failures, including the infamous Falcon 1 launch failures. These incidents highlight the inherent risks in developing new rocket technology. However, SpaceX’s resilience and eventual success offer a roadmap for overcoming such setbacks. The key will be how Blue Origin manages the aftermath and learning curve of this failure.

    Postmortem

    The immediate cause of the explosion remains unknown, but the incident underscores the risks inherent in rocket development. Blue Origin’s rapid approach, perhaps aiming to match SpaceX’s pace, might have led to oversight in some safety protocols. The explosion serves as a stark reminder that in space ventures, safety cannot be compromised for speed. The company’s response, both in terms of technical fixes and public relations, will be crucial in regaining trust.

    What to watch

    As the investigation unfolds, several key markers will indicate Blue Origin’s recovery trajectory. Watch for updates on the root cause analysis and any changes in their testing protocols. The company’s communication with NASA and any resulting adjustments to the Artemis timeline will also be telling. Additionally, keep an eye on how this impacts future contracts and partnerships, both with governmental and commercial entities. Investor reactions and potential shifts in funding could also signal broader implications for Blue Origin’s long-term plans.

    While the explosion is a setback, it raises broader questions about the structural challenges in the commercial space race. As companies push the boundaries of technology and speed, the balance between ambition and safety becomes ever more precarious. Blue Origin’s response to this incident will not only shape its future but also influence the trajectory of private space exploration.

    Source: https://www.cnbc.com/2026/05/29/blue-origin-new-glenn-rocket-explosion-florida-test-nasa-artemis.html

  • Blue Origin’s New Glenn Explosion Signals Operational and Governance Challenges

    Blue Origin’s New Glenn Explosion Signals Operational and Governance Challenges

    In a dramatic turn of events, Blue Origin’s New Glenn rocket exploded during a static fire test at Cape Canaveral, Florida. This incident marks a major setback for Jeff Bezos’ spaceflight company and its efforts to compete with SpaceX in the commercial space race.

    What happened

    During a routine static fire test, Blue Origin’s New Glenn rocket experienced a catastrophic failure, resulting in an explosion at the launch site. The test was a precursor to the fourth launch of the rocket, intended to carry Amazon’s Leo internet satellites. Fortunately, all personnel were reported safe, but the event represents one of the largest rocket explosions in U.S. history and the most significant failure for Blue Origin thus far. The Federal Aviation Administration (FAA) confirmed there was no impact on air traffic, and NASA has pledged to support a thorough investigation into the anomaly.

    Why it matters

    This explosion is not just a technical failure; it highlights the broader challenges Blue Origin faces in its quest to establish itself as a serious contender in the space industry. Having spent nearly a decade developing the New Glenn, this setback could delay Blue Origin’s schedule for launching national security missions for the Pentagon and supporting NASA’s Artemis missions. Furthermore, the explosion raises questions about Blue Origin’s ability to deliver on its ambitious plans, especially given its attempts to rival SpaceX’s established dominance.

    The precedent

    Rocket explosions are not unprecedented in the space industry. SpaceX, Blue Origin’s main competitor, has had its share of explosive setbacks, such as the Falcon 9 explosion in 2016. However, SpaceX has managed to recover, learn from its errors, and improve its technology. The key difference lies in the operational agility and governance that SpaceX has demonstrated in overcoming past failures, which Blue Origin will need to emulate if it hopes to rebound from this setback.

    Postmortem

    The immediate cause of the explosion remains unidentified, labeled simply as an ‘anomaly.’ However, this incident may reflect deeper issues within Blue Origin’s operational and governance frameworks. The company has been criticized for its slow progress and lack of transparency compared to its competitors. This explosion could be a symptom of inadequate risk management and oversight, areas that need urgent attention if Blue Origin is to avoid future setbacks.

    What to watch

    Moving forward, stakeholders should watch for the results of the FAA and NASA investigations into the explosion. Blue Origin’s response to the findings will be crucial in determining its ability to manage and mitigate risks. Additionally, the timeline for resuming New Glenn launches will be a key indicator of the company’s operational resilience. Observers should also monitor any strategic shifts in Blue Origin’s approach to governance and risk management, as these will be vital for regaining confidence from partners and clients.

    This incident raises fundamental questions about the structural challenges in the space industry, particularly for companies attempting to scale rapidly. As Blue Origin navigates this crisis, its ability to adapt and learn from this failure will be critical in defining its future trajectory.

    Source: https://techcrunch.com/2026/05/28/blue-origins-new-glenn-rocket-explodes-during-testing-in-florida/

  • Blue Origin’s New Glenn Explosion: A Setback for NASA and Amazon

    Blue Origin’s New Glenn Explosion: A Setback for NASA and Amazon

    In the high-stakes arena of space exploration, Blue Origin’s New Glenn rocket explosion is a stark reminder that even the best-laid plans of billionaires can go spectacularly awry. The mishap, which occurred during a hot-fire test at Blue Origin’s Florida launch site, has thrown a wrench into NASA’s Moon base ambitions and Amazon’s burgeoning satellite constellation.

    What happened

    The incident unfolded during a routine test at Blue Origin’s Launch Complex 36A, where seven engines of the New Glenn rocket’s booster stage were ignited. Unfortunately, the test did not go as planned, resulting in a dramatic explosion that severely damaged the only launchpad available for the New Glenn. This setback not only delays the rocket’s future missions but also complicates timelines for NASA and Amazon, two of Blue Origin’s major clients. According to The Verge, the damage could take months to repair, potentially pushing back the next launch to 2027.

    Why it matters

    The repercussions of this explosion are profound. For NASA, the delay in the New Glenn’s availability could impact its plans to deliver a robotic lunar lander by fall 2026 and participate in the Artemis III mission in 2027. The Artemis mission is integral to NASA’s strategy for returning humans to the Moon and establishing a sustainable presence. Meanwhile, Amazon’s ambitions to compete with SpaceX’s Starlink in the satellite internet space are jeopardized. The New Glenn was slated to carry 48 Amazon Leo satellites into orbit, a vital step towards meeting FCC requirements for their satellite constellation.

    The precedent

    This isn’t the first time a rocket explosion has disrupted ambitious space plans. SpaceX, another titan in the commercial space race, experienced a similar setback in 2016 when its Falcon 9 rocket exploded on the launch pad. That incident led to a temporary halt in launches, but SpaceX managed to bounce back, thanks in part to its robust infrastructure and multiple launch sites. Blue Origin, however, may find recovery more challenging due to its reliance on a single launchpad for the New Glenn.

    Postmortem

    The explosion highlights potential governance and operational lapses within Blue Origin’s testing protocols. While spaceflight is inherently risky, the scale of the damage suggests a need for more stringent safety measures and contingency plans. The company’s reliance on a single launchpad for a rocket as critical as the New Glenn is a vulnerability that has now been exposed. Additionally, the financial implications are significant. Delays could lead to penalties or lost contracts, further straining Blue Origin’s resources.

    What to watch

    Going forward, several markers will be crucial in assessing Blue Origin’s recovery. The timeline for repairing the launchpad will be a key indicator of the company’s ability to resume its mission schedule. Additionally, the outcome of the investigation into the explosion’s cause will be closely watched. For NASA and Amazon, alternative arrangements will need to be considered, such as relying more on secondary providers like United Launch Alliance and Arianespace. The competitive dynamics between Blue Origin and SpaceX will also be an area of interest, especially if Amazon turns to SpaceX for launch capabilities.

    The larger structural question this incident raises is about the sustainability and resilience of current space exploration strategies. As reliance on commercial partners increases, so too does the need for robust risk management frameworks and diversified launch infrastructure. The New Glenn explosion serves as a costly reminder of the fragility inherent in space ventures, and the need for a more resilient approach.

  • Air Taxi Industry Hits Turbulence Amid Legal Battles and Investor Doubts

    Air Taxi Industry Hits Turbulence Amid Legal Battles and Investor Doubts

    The promise of air taxis, long depicted as a futuristic solution to urban congestion, is being overshadowed by a series of legal disputes that threaten to stall the industry’s progress. Despite the backing of President Donald Trump’s eVTOL pilot program, the sector is grappling with infighting and investor hesitation.

    What happened

    Legal battles have erupted between leading players in the electric vertical take-off and landing (eVTOL) sector. Joby Aviation has accused Archer of corporate espionage, alleging that Archer used stolen information to interfere with a real estate deal. In retaliation, Archer has claimed that Joby engaged in deceptive practices, including misclassifying aircraft parts to defraud the U.S. government. Not to be left out, Archer is also embroiled in a patent infringement suit against Vertical Aerospace, which it claims copied its Midnight aircraft design. All these cases are currently making their way through the court system, casting a shadow over the sector’s potential.

    Why it matters

    The air taxi industry is at a critical juncture where achieving Federal Aviation Administration (FAA) certification is paramount for commercial viability. The Trump administration’s pilot program was designed to fast-track this process, offering a much-needed boost. However, the ongoing legal disputes could derail these efforts by diverting resources and attention away from certification and development. Investors, already skittish due to market volatility and the complex regulatory landscape, may further distance themselves from the sector, as evidenced by significant stock value declines for key players like Archer, Vertical Aerospace, and Joby Aviation.

    The precedent

    The eVTOL industry’s current predicament mirrors past tech sectors where hype outpaced reality, such as the early days of the autonomous vehicle industry. Like the air taxis today, self-driving cars were once heralded as imminent game-changers. However, legal challenges, regulatory hurdles, and technological limitations have delayed widespread adoption. The air taxi industry risks following a similar trajectory, where legal and logistical complications overshadow technological advancements.

    Postmortem

    The avoidable mistake here lies in the industry’s inability to present a united front in the face of regulatory and market challenges. The internal conflicts and lawsuits not only sap financial and human resources but also tarnish the industry’s reputation. The focus has shifted from innovation and collaboration to litigation, which is a costly distraction at a time when the sector needs to prove its viability to both regulators and investors.

    What to watch

    Looking ahead, several factors will determine the fate of the air taxi industry. Key among them is the resolution of the ongoing lawsuits, which could either clear the path for progress or further entrench divisions. Additionally, the pace at which companies achieve FAA certification will be crucial. Watch for updates on the progress of the Trump administration’s pilot program, as well as any shifts in investor sentiment following legal resolutions. The industry’s ability to build necessary infrastructure, such as vertiports and charging stations, will also be a significant factor in its eventual success or failure.

    As the air taxi industry navigates these turbulent times, the larger structural question remains: can the sector overcome its internal divisions and regulatory hurdles to deliver on its promise of transforming urban mobility?

    Source: https://www.cnbc.com/2026/05/29/evtol-air-taxi-lawsuits-us-launch-trump.html

  • Trash Bags Over Cameras: A Tale of Municipal Missteps and Surveillance Regret

    Trash Bags Over Cameras: A Tale of Municipal Missteps and Surveillance Regret

    In a move that seems more like a scene from a dystopian satire than municipal governance, cities like Dayton, Ohio, are resorting to covering surveillance cameras with trash bags. This peculiar visual metaphor underscores a significant governance misstep: the inability to efficiently extricate themselves from costly and controversial surveillance contracts.

    What happened

    Dayton, Ohio, recently made headlines for covering its Flock automated license plate reader cameras with black trash bags. This action was taken partly because local authorities were uncertain about whether the cameras remained active and whether they were legally permitted to remove them. The decision came on the heels of public discontent and a scandal involving the accidental sharing of camera data for immigration enforcement purposes. A $30,000 audit was conducted to assess how these cameras were being used. Dayton’s Deputy City Manager, Joe Parlette, confirmed at a city commission meeting that the bags were a temporary measure until the cameras could be removed. This isn’t an isolated incident; Evanston, Illinois, faced a similar situation last year, covering its cameras with trash bags while waiting for their removal.

    Why it matters

    The situation in Dayton and Evanston underscores a broader issue of governance and accountability. Surveillance technology, often touted for enhancing public safety, has increasingly come under scrutiny when data management and privacy concerns arise. Public backlash against these technologies highlights a growing mistrust between citizens and governing bodies. Moreover, the inability of cities to easily terminate these contracts suggests a lack of foresight in the initial contract negotiations, raising questions about how municipalities engage with private surveillance companies.

    The precedent

    The current predicament faced by Dayton and Evanston is reminiscent of other municipal technology rollouts that have gone awry. Consider the case of San Diego, where the city decided to scrap its smart streetlight program after facing similar challenges with vendor contracts and public opposition. The pattern here is clear: cities often rush into technology partnerships without fully considering the long-term implications, both financial and social.

    Postmortem

    The avoidable mistake in this scenario lies in the initial contract agreements with Flock. Cities failed to include clear exit strategies or contingencies for public disapproval. The result is a costly and embarrassing stop-gap measure of physically covering cameras, which does little to restore public trust or address the privacy concerns that sparked the controversy. This highlights a critical oversight in governance: the need for transparency and adaptability in public contracts.

    What to watch

    Going forward, stakeholders should keep an eye on how other cities respond to similar challenges. Will there be a push for more stringent oversight on surveillance contracts? Will municipalities demand more flexible terms from technology vendors? Additionally, watch for any legislative changes at the state or federal level aimed at regulating the deployment and use of surveillance technologies. Finally, the public’s reaction in upcoming city council meetings may provide further insight into how these issues will be navigated.

    As cities grapple with the complexities of modern surveillance, the broader question remains: how can municipalities balance technological advancement with civil liberties? The trash bags over cameras are a temporary solution, but they symbolize a much larger issue of governance that needs addressing.

    Source: https://www.404media.co/cities-are-covering-flock-cameras-with-trash-bags/

  • PayPal’s Leadership Turmoil: A Case of Weak Guidance and Weaker Confidence

    PayPal’s Leadership Turmoil: A Case of Weak Guidance and Weaker Confidence

    PayPal Holdings, Inc. (NASDAQ:PYPL) is finding itself in a precarious position, as recent leadership changes have compounded an already challenging financial landscape. The sudden departure of its CEO in early February 2026 has added uncertainty to an organization that was already grappling with disappointing earnings and increased competitive pressures.

    What happened

    In the first quarter of 2026, PayPal reported results that fell short of expectations, prompting a significant sell-off of its stock. The company not only missed earnings estimates but also lowered its guidance on earnings and transaction margins, as highlighted in an investor letter from the Artisan Value Fund. The fund noted that PayPal’s performance was particularly weak in its high-margin branded checkout business, which faced growth slowdowns due to macroeconomic headwinds and execution issues.

    The abrupt CEO change further exacerbated the situation, increasing investor apprehension about the company’s strategic direction. This leadership instability has left stakeholders questioning the timeline and effectiveness of any potential turnaround strategy, as competition from the likes of Apple Pay and Stripe continues to intensify.

    Why it matters

    Leadership changes are rarely seamless, and in PayPal’s case, the timing couldn’t be worse. The company’s struggles reflect broader issues in the digital payments sector, where rapid technological change and fierce competition are the norms. The uncertainty surrounding PayPal’s leadership transition has heightened investor concerns, leading to a 24.29% drop in its share price over the past year. This has significant implications for shareholders who are already anxious about the company’s eroding market position.

    Moreover, the competitive landscape is becoming increasingly unforgiving. PayPal’s market share is under threat from tech giants like Apple and specialized fintech firms such as Stripe, both of which are making aggressive inroads into digital payments. This raises the stakes for PayPal to stabilize its leadership and refine its strategic vision.

    The precedent

    Leadership changes leading to financial underperformance is not a new phenomenon. Consider the case of General Electric in the early 2000s. A series of rapid leadership turnovers saw GE struggle to maintain its market dominance, culminating in a significant loss of investor confidence. Similarly, Intel faced a leadership vacuum in the mid-2010s, which coincided with a period of missed opportunities and market share erosion.

    These cases illustrate that leadership instability often leads to strategic missteps and competitive disadvantages, particularly when the market environment is challenging. For PayPal, the lesson is clear: stabilizing leadership is crucial to regaining investor trust and market position.

    Postmortem

    PayPal’s avoidable mistake lies in its lack of succession planning and transparency around its leadership transition. The sudden CEO departure has left a strategic vacuum at a time when decisive action is critical. The company’s failure to communicate a clear turnaround strategy has only fueled market skepticism. Additionally, PayPal has been slow to address the structural pressures from new entrants, which have been steadily eroding its market share.

    What to watch

    Investors should keep an eye on any announcements regarding PayPal’s new leadership. The appointment of a permanent CEO with a robust strategic vision will be essential. Additionally, PayPal’s upcoming earnings reports will be critical to assess whether the company can stabilize its financial performance and regain market confidence.

    Further, watch for any strategic partnerships or innovations that PayPal might pursue to counteract competitive pressures. Regulatory filings and shareholder meetings may also offer clues about the company’s future direction and governance reforms.

    The larger question that PayPal’s situation raises is about the role of leadership in navigating technological disruption and competitive threats. As the digital payment landscape continues to evolve, companies that can marry stable governance with strategic foresight will be best positioned to thrive.

  • Zscaler’s Stock Plunge: A Cautionary Tale of Overhyped Growth and Sales Shakeup

    Zscaler’s Stock Plunge: A Cautionary Tale of Overhyped Growth and Sales Shakeup

    Zscaler’s stock took a nosedive, dropping over 30% in a single day, marking the worst trading session in its history. This drastic decline was triggered by the company’s underwhelming guidance and a concerning sales leadership shakeup. Despite posting better-than-expected fiscal third-quarter results, the cybersecurity firm now faces a significant challenge in regaining investor confidence.

    What happened

    Zscaler reported fiscal third-quarter earnings that exceeded expectations, with adjusted earnings per share at $1.08 on $850 million in revenue, surpassing analyst predictions of $1.01 EPS on $835 million. However, the positive earnings were overshadowed by a cautious outlook for the fiscal year 2027. The company projected a 16% to 17% year-over-year growth in annual recurring revenue, falling short of market expectations. Additionally, Zscaler’s revenue forecast for the upcoming quarter was slightly below FactSet’s estimate. The company also revealed that two sales leaders had departed, contributing to the uncertainty.

    The financial guidance was deemed “prudent” by CFO Kevin Rubin, reflecting a conservative approach amid internal transitions. Zscaler also noted that capital expenditures would increase by 200 basis points in the 2027 fiscal year due to rising costs and memory prices. The company’s shares have already lost half their value over the past year, and this recent plunge has compounded the pressure.

    Why it matters

    The cybersecurity sector is under the microscope as investors reassess the impact of artificial intelligence on traditional software business models. While AI-driven cyber threats present new opportunities for firms like Zscaler, the narrative of AI-induced disruption has soured sentiment towards software stocks. Zscaler, which is involved in projects such as Project Glasswing with Anthropic, is at a critical juncture where it must balance innovation with stability.

    The broader stakes involve not just Zscaler’s future but the confidence in cybersecurity companies as a whole. The market’s reaction underscores a growing impatience with promises of growth that don’t materialize as expected, particularly in a sector that investors have high hopes for due to increasing cybersecurity threats.

    The precedent

    This isn’t the first time a tech company has faced the wrath of the market due to overpromising and underdelivering. In 2019, Cisco Systems experienced a similar fallout when it issued guidance that failed to meet Wall Street expectations, leading to a significant stock drop. The key lesson here is that while growth projections can excite investors, failure to meet these expectations can lead to severe market punishment.

    Postmortem

    Zscaler’s misstep appears to be a combination of overhyped growth expectations and internal management turbulence. The departure of key sales leaders at a time when the company needed to reassure investors of its growth potential only exacerbated the situation. The decision to issue conservative guidance, while perhaps fiscally responsible, was poorly timed, coinciding with broader market skepticism about the sustainability of tech valuations.

    The company’s reliance on AI advancements as a future growth driver also presents a double-edged sword; while AI has the potential to revolutionize cybersecurity, it also raises questions about the adaptability of existing business models.

    What to watch

    Investors and analysts will closely monitor Zscaler’s next earnings report to see if the company can stabilize its operations and deliver on its tempered expectations. Key indicators will include any further changes in leadership, the impact of increased capital expenditures, and progress on AI-driven projects like Project Glasswing. Additionally, market sentiment towards the broader cybersecurity sector and its intersection with AI will be pivotal.

    In the interim, Zscaler must navigate a challenging landscape, balancing innovation with the need for consistent and reliable growth, all while under the scrutiny of a skeptical market.

    The larger question this situation raises is whether the tech industry, particularly cybersecurity, can maintain its growth trajectory amidst the disruptive forces of AI and internal governance challenges. As Zscaler’s experience shows, the path forward is fraught with both potential and peril.

    Source: https://www.cnbc.com/2026/05/27/zscaler-zs-earnings-q3-2026.html

  • Being a Computer Science Major Is Dead: But What About EE and CE?

    Being a Computer Science Major Is Dead: But What About EE and CE?

    I am a Computer Science graduate and work in Software and DevOps Engineering and I don’t personally thing CS is dying like the market believes…. but hiring is much more competitive until companies the ROI and product quality on AI is not as high as human engineers. The better way to say it is this: computer science is not dead, but the easy version of the computer science career path is. The “learn to code, get a six-figure job, work remote, and job-hop every two years” era has been violently corrected by layoffs, AI tooling, interest rates, outsourcing, and a flood of new graduates who all heard the same advice for the last decade.

    At the same time, another engineering market is doing something very different. Electrical engineering, computer engineering, semiconductor manufacturing, chip design, embedded systems, power systems, controls, verification, and hardware-adjacent software are becoming more valuable because the world is realizing something obvious: software does not run without hardware. AI does not run without GPUs. Data centers do not run without power. National security does not run without chips. And every company talking about AI infrastructure eventually runs into the same bottleneck: someone has to design, manufacture, test, power, cool, and maintain the physical systems underneath it all.

    That is where the discrepancy is becoming hard to ignore.

    The Bureau of Labor Statistics still projects software developers, QA analysts, and testers to grow 15% from 2024 to 2034, with about 129,200 openings per year. So no, software is not “dead” in any rational economic sense. But that number hides the pain at the entry level: the job market can grow overall while still being brutal for new grads competing against experienced engineers, offshore teams, AI-assisted productivity, and companies that no longer want to train juniors the way they did during the zero-interest-rate hiring boom.

    Meanwhile, the semiconductor industry has a much more concrete workforce problem. The Semiconductor Industry Association projects the U.S. semiconductor workforce will grow by nearly 115,000 jobs by 2030, but roughly 67,000 of those roles could go unfilled at current degree-completion rates. That gap is not just software. It breaks down into technicians, engineers, and computer scientists, with an estimated 27,300 engineering jobs and 13,400 computer science jobs at risk of going unfilled.

    That is the difference. In software, the conversation is often, “How do I stand out from 1,000 applicants?” In semiconductors, power, embedded systems, and hardware, the conversation is increasingly, “Where do we even find enough qualified people?”

    TSMC is a perfect example. Its career materials explicitly call out electrical engineering, physics, materials, mechanical, and automation engineering as the kinds of backgrounds it wants. That tells you something about where the bottleneck is. These are not jobs you can fake with a weekend bootcamp or a few LeetCode problems. Semiconductor manufacturing needs people who understand devices, process control, yield, cleanrooms, automation, reliability, power delivery, instrumentation, and the messy reality of building physical systems at scale.

    Micron is in the same category. As a memory manufacturer, it needs engineers across electrical, computer, materials, process, product, firmware, validation, and manufacturing disciplines. The demand is tied not only to consumer electronics but also to AI, data centers, automotive systems, defense, and high-performance computing. In other words, the demand is not just “we need more apps.” It is “we need more infrastructure for the entire digital economy.” Micron’s own careers page reflects this broad technical hiring need across its global operations.

    This is why I think electrical engineering and computer engineering are becoming more strategically valuable than people realize. CS became popular because software scaled beautifully. One engineer could write code that reached millions of users. That is still true. But the problem is that software talent also scaled. Universities pumped out more CS grads. Bootcamps sold the dream. Self-taught developers entered the market. Remote work made the applicant pool global. AI tools made average developers faster. The barrier to entry dropped.

    EE and CE did not experience that same kind of flattening. You cannot fully virtualize a lab. You cannot vibe-code your way through signal integrity, semiconductor physics, FPGA timing, power electronics, RF, PCB layout, embedded firmware debugging, or manufacturing yield problems. AI can assist with these things, but it cannot easily replace the judgment that comes from understanding real-world constraints.

    That is the part people miss when they say, “AI is going to replace engineers.” AI is much better at generating text and code than it is at owning consequences. It can write a React component. It can scaffold a Python script. It can help debug a Kubernetes manifest. But when a fab tool goes down, a power rail is unstable, a board fails compliance testing, a chip has thermal issues, or a production line loses yield, someone still has to understand the system deeply enough to make a real engineering decision.

    Computer engineering sits in a particularly interesting middle ground. CE students usually touch both worlds: low-level software and hardware. They understand programming, but they also understand architecture, digital logic, embedded systems, microcontrollers, operating systems, and sometimes VLSI or FPGA design. That makes them harder to commoditize than a generic software candidate whose resume is just “React, Node, Python, AWS.” The closer you are to the machine, the less replaceable you become.

    This does not mean everyone should abandon CS and run to EE. That would be an overcorrection. CS is still one of the most powerful degrees you can have if you use it correctly. The issue is that the market no longer rewards “I can code” by itself. That skill is becoming table stakes. The CS grads who will still win are the ones who can pair software with something harder: infrastructure, security, distributed systems, AI systems engineering, robotics, embedded systems, cloud cost optimization, data engineering, hardware acceleration, product intuition, or domain expertise.

    In other words, CS is not dead. Generic CS is dead.

    The same thing happened to IT. At one point, knowing how to image a laptop or reset a password was enough to get into the field. Then the field matured. Now the valuable people are the ones who understand cloud, automation, networking, identity, security, observability, compliance, and cost. Software engineering is going through that same maturation cycle. The easy layer is getting automated. The valuable layer is moving up and down the stack at the same time: closer to business outcomes on one side and closer to hardware/infrastructure on the other.

    The BLS projections actually support this more nuanced view. Software roles are still projected to grow faster than average, but so are electrical and electronics engineers, which are projected to grow 7% from 2024 to 2034, with about 17,500 openings per year. Computer hardware engineers are also projected to grow 7%, with about 4,700 openings per year. Those numbers are smaller than software in absolute terms, but the talent pools are also smaller, the skill requirements are more specialized, and the strategic importance is rising.

    The semiconductor shortage conversation also proves that the United States cannot simply “software” its way out of every problem. The CHIPS and Science Act put tens of billions of dollars toward rebuilding domestic semiconductor research, development, and manufacturing capacity. But money alone does not create qualified engineers overnight. Fabs require people. Packaging facilities require people. Test engineering requires people. Process engineering requires people. Tool maintenance requires people. The workforce pipeline is now one of the biggest constraints.

    That should be a wake-up call for students choosing between CS, EE, and CE.

    If you want the broadest possible job market, CS still gives you that. If you want to work in software, cloud, AI, cybersecurity, data, or startups, CS is still a great path. But you cannot treat the degree like a golden ticket anymore. You need proof that you can build, ship, operate, and reason through systems better than someone using the same AI tools as you.

    If you want a harder but potentially more defensible path, EE and CE deserve more attention. They sit closer to the physical world, and the physical world is where AI has a much harder time pretending. Chip makers like TSMC, Micron, Intel, Samsung, GlobalFoundries, and Texas Instruments need people who can work across physics, manufacturing, automation, embedded software, power, reliability, and systems. That work is less glamorous than building an app, but it may become more stable and more strategically important over the next decade.

    My take is simple: the “CS is dead” narrative is lazy. What is dead is the belief that every CS major is automatically entitled to a great software job just because they completed the degree. The market is forcing CS grads to specialize, build deeper systems knowledge, and prove they can create value beyond writing boilerplate code.

    EE and CE are not magic shields either. They are difficult degrees. The work can be less remote-friendly. The industries can be slower-moving. Hardware has longer timelines, more regulation, more capital expense, and less instant gratification. But those same factors are why the roles are harder to flood and harder to automate away.

    The future probably belongs to the hybrids: software engineers who understand infrastructure and hardware constraints, computer engineers who can write production-grade software, electrical engineers who understand automation and AI, and CS grads who are not afraid to leave the comfort of pure web development.

    So no, being a computer science major is not dead.

    But being a generic computer science major might be. And if the last decade belonged to software eating the world, the next decade may belong to the people who understand what software runs on.

    Postmortem: What We Got Wrong About CS, EE, and CE

    The biggest mistake the industry made was treating Computer Science like an infinite money machine. For years, students were told that if they learned to code, got a CS degree, or built a few projects, the market would take care of the rest. That was mostly true during the tech boom, but it created a false sense of security. Companies overhired, universities overmarketed CS, bootcamps sold unrealistic outcomes, and students entered the field believing demand would always outpace supply.

    Then the market corrected.

    Interest rates went up. Venture capital got tighter. Big Tech cut headcount. Companies became less willing to train junior engineers. AI tools made existing engineers more productive, or at least gave executives a reason to believe they could slow hiring. Suddenly, the entry-level CS market became brutally competitive. The degree did not become useless, but the advantage became weaker.

    The second mistake was assuming all engineering talent is interchangeable. Software engineering, electrical engineering, and computer engineering are connected, but they are not the same labor market. A company can hire more software developers from a global applicant pool. It can outsource app development. It can use AI to generate boilerplate code. But it cannot magically create experienced semiconductor process engineers, power engineers, verification engineers, embedded systems engineers, or hardware validation engineers overnight.

    That is where the market is now exposing the gap.

    We spent the last decade telling everyone to become software engineers while underestimating the physical infrastructure behind the software economy. AI needs chips. Chips need fabs. Fabs need electrical engineers, computer engineers, materials experts, technicians, manufacturing engineers, process engineers, and automation specialists. Data centers need power systems, cooling, networking, and hardware reliability. None of that goes away because a chatbot can write code.

    The third mistake was confusing short-term hiring pain with long-term career death. CS is not dead. Software is not dead. DevOps is not dead. AI is not replacing every engineer. But the lower end of the software market is being squeezed. The people who only know how to build CRUD apps, copy tutorials, or rely on frameworks without understanding systems are going to have a harder time. The people who can design, debug, secure, scale, and operate real systems will still be valuable.

    The lesson is not “don’t major in CS.” The lesson is “don’t be generic.”

    For students, that means choosing a direction earlier. Pair CS with cloud, security, distributed systems, AI infrastructure, embedded systems, data engineering, or hardware. For EE and CE students, it means realizing they may be entering a market with less hype but stronger structural demand. For universities, it means stop selling every technical student the same software dream and start rebuilding serious pipelines into semiconductors, embedded systems, power, and manufacturing technology.

    For companies, the lesson is even more obvious: you cannot complain about a shortage of hardware and semiconductor talent after spending years optimizing recruiting around software roles, LeetCode screens, and generic tech hiring pipelines. If TSMC, Micron, Intel, Samsung, GlobalFoundries, and the rest of the chip ecosystem need more qualified engineers, then industry has to invest in internships, apprenticeships, lab partnerships, technician pipelines, and real entry-level training.

    The final takeaway is this: software ate the world, but hardware feeds software.

    The companies that understand both sides will win. The engineers who understand both sides will be harder to replace. And the students who see the shift now will be in a much better position than the ones still chasing the 2021 version of the tech job market.