Why More Growth Companies Are Looking Beyond the Traditional IPO
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Enhanced Games at Resorts World Las Vegas. PHOTO: FACEBOOK@ENHANCEDGAMES
Enhanced Games reached the public markets in less than six months.
In an era where traditional IPOs can take more than a year to complete, the speed of the company’s merger with A Paradise Acquisition Corp. (NASDAQ: APAD) stands out, particularly given the significantly tighter regulatory scrutiny surrounding SPAC transactions since 2021.
The transaction highlights why some growth-stage companies are evaluating special-purpose acquisition companies (SPACs) as a viable alternative to the traditional IPO process.
Led by Dr. Aron D’Souza and backed by investors including Peter Thiel and Christian Angermayer, Enhanced Games announced its Business Combination Agreement with APAD in November 2025. The transaction closed in May 2026, bringing the company to the public markets materially faster than the timeline typically associated with a conventional IPO.
For decades, the traditional IPO has been considered the default route for private companies entering the public markets. But for many high-growth businesses today, the process has become increasingly slow, expensive, and difficult to execute efficiently.
A conventional IPO can take well over a year to prepare, involving extensive audits, regulatory reviews, underwriter coordination, investor roadshows, and careful timing against market conditions. During that period, companies remain exposed to volatility, shifting investor sentiment, and delayed access to capital. According to EY, many companies postponed planned IPOs amid market volatility and uncertainty surrounding U.S. tariff announcements, highlighting how sensitive IPO execution can be to broader market conditions.
For businesses operating in fast-moving industries, timing matters. Delayed access to liquidity can slow expansion, hiring, acquisitions, partnerships, and product development at critical stages of growth.
That is one reason why the merger between Enhanced Games and APAD is notable. The SPAC structure allowed Enhanced Games to negotiate valuation, governance terms, and financing arrangements early in the process, compressing many of the steps normally associated with a conventional IPO into a single transaction.
Enhanced Games operates across sports, media, performance science, and wellness, sectors that require significant upfront investment and rapid execution. Earlier access to public capital provided the company with liquidity, visibility, and strategic flexibility at an important stage of growth.
The public listing also gives the company tradable equity that can potentially support acquisitions, partnerships, athlete compensation structures, sponsorship arrangements, and future fundraising initiatives. These capabilities are particularly relevant in industries evolving as rapidly as sports entertainment, wellness, and human-performance science, where speed itself can become a competitive advantage.
The deal also highlights one of the SPAC market’s core advantages: the ability to combine capital raising and public-market entry within a single process.
Beyond speed, the SPAC structure offered Enhanced Games another major advantage: earlier visibility into valuation.
In a traditional IPO, pricing is largely determined near the end of the process through institutional book-building and investor demand during the roadshow phase. Even late-stage IPO candidates can face valuation cuts, downsized offerings, or postponed listings if market conditions weaken.
Recent IPO markets have repeatedly demonstrated this risk. Instacart went public in 2023 at an approximate US$9.9 billion valuation, which is dramatically below the US$39 billion private valuation it achieved during the 2021 market peak. Similarly, WeWork’s failed IPO attempt became one of the clearest examples of how rapidly investor sentiment can shift during the IPO process.
SPAC mergers operate differently.
Enhanced Games secured an implied enterprise valuation of approximately US$1.2 billion months before closing the transaction. While the merger still required SEC review and shareholder approval, the company gained significantly greater visibility into deal economics much earlier in the process.
That certainty is particularly valuable for growth companies whose valuations are tied more closely to long-term platform potential than near-term profitability.
Rather than relying entirely on shifting IPO market sentiment, the SPAC structure allowed Enhanced Games to negotiate around its broader growth strategy and future expansion plans from the outset.
The Enhanced Games transaction also reinforces why some growth-stage companies evaluate SPACs as an alternative to the traditional IPO process.
Traditional IPO investors often prefer businesses with long operating histories, stable earnings, and predictable growth profiles. Many expansion-stage companies simply do not fit that model yet, even if their long-term opportunities are substantial.
SPACs offer a different pathway.
Instead of waiting years to achieve the operational maturity typically expected in a conventional IPO, companies can access public-market capital earlier while still in growth mode.
For Enhanced Games, early access to the public markets provides more than capital. Public equity can support acquisitions, partnerships, athlete compensation structures, sponsorship arrangements, and future fundraising efforts. These capabilities are particularly important in sectors evolving as rapidly as sports entertainment, wellness, and human-performance science, where speed itself can become a competitive advantage.
The transaction also highlights how the SPAC market has evolved since the speculative boom of 2020 and 2021.
Today’s de-SPAC environment operates under significantly tighter regulatory scrutiny, including enhanced disclosure requirements, greater SEC oversight, and stricter treatment of projections and liability standards.
The Harvard Law School Forum on Corporate Governance noted that redemption rates spiked in 2022, in some cases approaching 100%, contributing to a significant slowdown of the SPAC activity.
In response to rising investor concerns and regulatory pressure, the U.S. Securities and Exchange Commission adopted enhanced SPAC disclosure and liability rules in 2024 designed to align de-SPAC transactions more closely with traditional IPO standards. Sponsors also faced greater pressure to demonstrate financing certainty, stronger disclosures, and more credible post-merger execution.
Enhanced Games completed its transaction within this more disciplined environment.
Its Form S-4 included audited financial statements, governance disclosures, transaction details, and extensive risk-factor analysis subject to SEC review. The company also supplemented SPAC trust proceeds with a separately arranged US$40 million PIPE financing commitment designed to strengthen liquidity and improve deal certainty.
That structure reflects a more institutional and disciplined SPAC market than the speculative wave seen several years ago.
The Enhanced Games transaction demonstrates that, despite tighter regulation and a far more selective market environment, SPACs can offer certain growth companies a practical alternative to the traditional IPO.
For businesses prioritising speed, capital access, and execution certainty, a well-structured de-SPAC transaction may provide a more efficient route to the public markets, particularly when supported by credible financing, disciplined structuring, and strong investor backing.
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A new AI model replaces months of simulation with near-instant predictions, changing how spacecraft operations are prepared
Updated
April 24, 2026 10:53 AM

Northrop Grumman Stargaze serves as the mother ship for the Pegasus, an air-launched orbital rocket. PHOTO: UNSPLASH
Flexcompute, a startup that builds software to simulate real-world physics, is working with Northrop Grumman to change how space missions are prepared. Together, they have developed an AI-based system that can predict how spacecraft respond during critical manoeuvres such as docking—when one spacecraft moves in and connects with another in orbit. These steps have traditionally taken months of preparation.
At the centre of this work is a long-standing problem in space operations. When a spacecraft fires its thrusters, the exhaust plume interacts with nearby surfaces. These interactions can affect movement, temperature and stability. Because these effects are difficult to test in real conditions, engineers have relied on large volumes of computer simulations to estimate outcomes before a mission. That process is slow and resource-intensive.
The new system replaces much of that workflow with a trained AI model. Instead of running millions of simulations, the model learns patterns from physics-based data and can make predictions in seconds. It also provides a measure of uncertainty, which helps engineers understand how reliable those predictions are when making decisions.
"At Northrop Grumman, we're pioneering physics AI to accelerate design and solve complex simulation and modelling problems like plume impingement—critical for station keeping, rendezvous and space robotics. Simply put: we're pushing the boundaries of advanced space operations", said Fahad Khan, Director of AI Foundations at Northrop Grumman. "Partnering with Flexcompute and NVIDIA, we're accelerating innovation and mission timelines to deliver superior space capabilities for customers at the speed they need".
The system is built using technology from NVIDIA, which provides the computing framework behind the model. Flexcompute has adapted it to handle the specific challenges of spaceflight, including how gases expand and interact in a vacuum. The result is a tool that can simulate complex scenarios much faster while maintaining the level of accuracy needed for mission planning.
By shortening preparation time, the model changes how engineers approach spacecraft design and operations. Faster predictions mean teams can test more scenarios and adjust plans more quickly. It also helps improve fuel use and extend the lifespan of spacecraft.
"Northrop Grumman's confidence reflects what sets Flexcompute apart", said Vera Yang, President and Co-Founder of Flexcompute. "We are able to take the most accurate and scalable physics foundations and evolve them into highly trained, customized Physics AI solutions that engineers can rely on. This work shows how we are transforming the role of simulation, not just speeding it up, but expanding what engineers can confidently solve and how quickly they can act".
The collaboration points to a broader shift in how engineering problems are being handled. Instead of relying only on detailed simulations that take time to run, companies are beginning to use AI systems that can approximate those results quickly while still reflecting the underlying physics.
"The industry's most ambitious space missions now demand a level of speed and precision that traditional engineering cycles can no longer sustain", said Tim Costa, vice president and general manager of computational engineering at NVIDIA. "By integrating NVIDIA PhysicsNeMo, Northrop Grumman and Flexcompute are transforming complex simulations like plume impingement from days of compute into seconds of insight, drastically accelerating the path from mission concept to orbit".
What emerges from this work is a shift in how missions are prepared. When prediction cycles move from months to seconds, testing and decision-making can happen faster. For space operations, where timing and precision are closely linked, that change could reshape how systems are built and run.