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Small Satellite Star Tracker Market to Reach $1.3 Billion by 2030 – Key Trends & Growth Analysis | Valuates Reports

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Small Satellite Star Tracker Market is Segmented by Type (Framed Star Tracker, Fixed Star Tracker), by Application (Military, Commercial, Civilian).

BANGALORE, India, Feb. 21, 2025 /PRNewswire/ — The Global Market for Small Satellite Star Tracker was estimated to be worth USD 652 Million in 2023 and is forecast to a readjusted size of USD 1298.3 Million by 2030 with a CAGR of 10.3% during the forecast period 2024-2030.

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Major Factors Driving the Growth of Small Satellite Star Tracker Market:

Overall, the small satellite star tracker market is poised for sustained growth as the space industry continues its shift toward lower-cost, versatile platforms. From Earth observation to deep-space missions, these compact devices offer the precise orientation data necessary for mission success. Heightened demand arises from both commercial and government sectors, driven by expanding applications like remote sensing, broadband constellations, and interplanetary exploration. As competition intensifies, manufacturers explore advanced materials, novel optical designs, and integrated software solutions to enhance accuracy and resilience. This innovation drive lowers barriers to entry for new participants, spurring further market expansion. Meanwhile, supportive policies and public-private partnerships bolster star tracker adoption across diverse regions. As launch costs decline, small satellite deployments multiply, reinforcing the demand for reliable attitude solutions. All these factors converge to form a dynamic environment in which the small satellite star tracker market flourishes, underpinned by continuous improvements in global performance and affordability.

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TRENDS INFLUENCING THE GROWTH OF THE SMALL SATELLITE STAR TRACKER MARKET:

Framed star trackers are pivotal in enhancing the accuracy and reliability of small satellite attitude determination systems. By capturing sequential star field images within a defined frame, these devices enable high-precision orientation data, essential for diverse satellite missions. The structured approach allows quick image processing, reducing noise and ensuring stable performance even under challenging environmental conditions. As small satellites increasingly serve Earth observation, communication, and scientific research, the need for compact but precise tracking solutions grows, placing framed star trackers in high demand. Their modular design simplifies integration, lowers weight, and reduces power consumption compared to more complex alternatives. These benefits attract budget-conscious space programs, startups, and universities focused on advanced missions. Furthermore, the robust design of framed star trackers, coupled with streamlined data processing, contributes to consistent system reliability, fostering greater adoption in the evolving small satellite market. Overall, these trackers strengthen growth by delivering enhanced dependable orientation capabilities.

Fixed star trackers, mounted in a single orientation, play an integral role in stabilizing small satellite operations. By continuously monitoring a fixed field of view, they collect star data essential for precise attitude determination, thus supporting tasks like imaging, data relays, and on-orbit maneuvers. Their straightforward design reduces mechanical complexity and lowers potential failure points, appealing to cost-sensitive missions. As the small satellite sector grows, operators seek dependable, low-maintenance solutions that can handle demanding orbital conditions. Fixed star trackers cater to this need by offering simplified integration and streamlined calibrations, ultimately enhancing mission reliability. Additionally, the consistent performance of fixed trackers supports extended mission lifespans, reducing the need for frequent replacements. This reliability is especially beneficial for constellations where maintaining uniform performance across multiple satellites is crucial. Consequently, fixed star trackers gain traction, driving the small satellite star tracker market’s expansion in various commercial, academic, and defense segments and scalability.

Military applications significantly fuel the small satellite star tracker market. Defense agencies deploy constellations of small satellites for missions like reconnaissance, communications, and early-warning systems, all of which demand precise orientation data. Star trackers provide this accuracy, enabling covert operations and high-resolution imaging crucial for intelligence gathering. Robust star tracker designs withstand radiation and temperature extremes common in military orbits. As defense budgets allocate resources for space capabilities, there’s growing investment in advanced attitude control solutions, including star trackers. Governments often partner with private firms to develop specialized trackers tailored to specific security needs, further accelerating innovation. This collaboration drives continuous demand for new materials, radiation-hardened components, and enhanced data processing algorithms. The military sector’s emphasis on reliability and mission success propels the small satellite star tracker market, ensuring ongoing growth and technological evolution in meeting complex national security requirements. Increasing geopolitical tensions underscore the value of reliable space-based assets.

Precise attitude control is a critical driver for the small satellite star tracker market. Operators require pinpoint orientation to support tasks like high-resolution imaging, signal transmission, and station-keeping maneuvers. Star trackers offer an efficient solution by capturing stellar patterns to determine exact positioning in orbit. As small satellites tackle complex missions, sub-degree accuracy becomes essential, motivating satellite developers to integrate specialized tracking systems. This need spans various sectors, including Earth observation, communications, and scientific research. Moreover, the growing use of laser-based instruments and inter-satellite links further raises demands for precise pointing capabilities. In response, star tracker manufacturers innovate to deliver reliable, compact, and low-power devices that meet these specifications. Concurrently, the emphasis on extended mission lifespans pushes for robust tracking solutions resistant to harsh orbital environments. This collective pursuit of high-precision control ultimately propels the market, sustaining ongoing investment in advanced small satellite star tracker technologies across multiple orbital regimes.

Affordable launch services increasingly propel the small satellite star tracker market. Lowered costs come from rideshare missions and dedicated small launch vehicles, allowing more entities to place satellites in orbit. As budget constraints ease, universities, startups, and smaller nations gain access to space, expanding the user base for star trackers. This shift encourages frequent deployments, boosting demand for reliable, cost-efficient attitude determination. With launch prices falling, mission operators can allocate more resources toward advanced star trackers to enhance performance and mission objectives. Furthermore, more frequent launches shorten development cycles, enabling quicker technology adoption. The result is a competitive environment where manufacturers must balance cutting-edge features with affordability. In turn, star tracker providers develop standardized, modular products that facilitate rapid integration and reduce total mission expenses. This synergy between cost-effective launches and star tracker innovations accelerates overall market growth, reinforcing the small satellite sector’s continued expansion worldwide across different orbital regimes.

Advances in component miniaturization substantially impact the small satellite star tracker market. As electronics shrink in size, manufacturers can design lighter, compact star trackers that fit within tight CubeSat and microsatellite footprints. This miniaturization helps reduce mass and power requirements, crucial factors for low-cost missions. Smaller star trackers also free up space for additional instruments or payload expansions, increasing overall satellite capabilities. In tandem, developments in micro-optics and high-density sensor arrays further enhance performance without inflating form factors. The rising popularity of standardized bus architectures supports the integration of miniaturized star trackers, lowering development hurdles for new entrants. By optimizing weight and energy consumption, these tiny devices extend mission lifespans and facilitate ambitious multi-satellite constellations. As miniaturization progresses, star tracker providers continually refine designs to meet evolving mission objectives, ultimately driving growth in the small satellite star tracker market by making advanced attitude solutions more accessible to global space stakeholders.

Growing government backing for small satellite initiatives significantly drives the star tracker market. Many agencies allocate funds to research and development programs or sponsor university-led missions, promoting advanced attitude control systems. These grants often target cost-reduction and capability-enhancement efforts, catalyzing breakthroughs in star tracker hardware and software. Additionally, space-focused educational programs cultivate engineering talent skilled in designing innovative satellite components. Such support extends beyond financial aid, encompassing regulatory measures that simplify licensing, frequency allocation, and mission approval. Governments also collaborate with commercial players through public-private partnerships, transferring technology and expertise to accelerate star tracker development. In emerging space nations, government-led programs lay the groundwork for indigenous small satellite manufacturing and launch services, broadening market opportunities. This comprehensive backing not only ensures a steady stream of demand but also encourages healthy competition among suppliers. Ultimately, government support acts as a significant cornerstone, fueling expansion of the small satellite star tracker sector.

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MARKET SHARE ANALYSIS

North America, home to established aerospace companies and numerous startups, maintains a leading position due to robust R&D investments.

Europe follows closely, benefiting from collaborative programs under the European Space Agency and private initiatives aimed at advanced satellite systems.

Key Companies:

SODERNBerlin Space TechnologiesBlue Canyon TechnologiesAAC Clyde SpaceCubeSpaceSolar MEMSChang Guang SatelliteBeijing Sunwise SpaceKAIROSPACE Co., Ltd.LeonardoNanoAvionicsRedwire SpaceRocket LabSputnixTermaVECTRONIC Aerospace GmbHCubeSat PointingARCSECTY-Space Technology LtdBall AerospaceAntrix Corporation Limited

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DISCOVER MORE INSIGHTS: EXPLORE SIMILAR REPORTS!

–  Star Tracker Market

– The global market for Star Tracker for Nano Satellite (STNS) was valued at USD 153 Million in the year 2023 and is projected to reach a revised size of USD 453 Million by 2030, growing at a CAGR of 15.7% during the forecast period.

–   The global Minisatellite Star Tracker market was valued at USD 121 Million in 2023 and is anticipated to reach USD 992 Million by 2030, witnessing a CAGR of 36.0% during the forecast period 2024-2030.

–  The global market for Daylight Star Tracker was estimated to be worth USD 45 Million in 2023 and is forecast to a readjusted size of USD 88 Million by 2030 with a CAGR of 9.8% during the forecast period 2024-2030.

–  Astronomy Apps for Stargazing Market

–  Solar Frame Market

–  Vessel Tracking Software Market

–  Small Satellite Market revenue was USD 1030 Million in 2022 and is forecast to a readjusted size of USD 3527.9 Million by 2029 with a CAGR of 19.0% during the forecast period (2023-2029).

Minisatellite Star Tracker market was valued at USD 121 Million in 2023 and is anticipated to reach USD 992 Million by 2030, witnessing a CAGR of 36.0% during the forecast period 2024-2030.

Small Satellite Solution Market

Small Satellite Test Solution Market

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DEFSEC Ships New BLISS (“Battlespace Laser Identification Sensor System”) To U.S. Army Yuma Test Center

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OTTAWA, ON, April 29, 2026 /PRNewswire/ – DEFSEC Technologies Inc. (TSXV: DFSC) (TSXV: DFSC.WT.U) (NASDAQ: DFSC) (NASDAQ: DFSCW) (“DEFSEC” or the “Company”) today confirmed that it has now shipped two new networked BLISSTM systems to the United States Army Yuma Test Center (US Army YTC) for test and evaluation.

The BLISSTM shipment today to the US Army YTC follows delivery of an earlier version, called BLDS (Battlefield Laser Detection System) to the U.S. Army last year for testing and trial activity.  BLISSTM is an enhanced, networked version of BLDS as the next step in the evolution of the Company’s technology roadmap for battlespace laser detection and intelligence.

The patent-pending BLISSTM system alerts operators to laser activity across the battlespace, providing critical early warning and valuable seconds to assess, evade, defend, and deploy countermeasures. Miniaturized BLISSTM sensors can be mounted on vehicles and fixed infrastructure, or worn on personnel, to affordably blanket a battlespace with sensors for enhanced survivability and situational awareness and battlespace intelligence in contested environments.  It transforms laser warning into shared, actionable battlespace information.

Beyond real-time detection, BLISSTM incorporates enhanced laser pulse signature capture and analysis to help identify the source, intent, and affiliation of detected emissions.  By enabling users to distinguish among known signatures, the system supports faster, more informed tactical decisions.

“The BLISSTM system shipped today to Yuma for US Army testing represents a major step forward in tactical-edge force protection and actionable battlespace intelligence for commanders,” said Sean Homuth, President and CEO. “This capability will provide operators with critical time, better information, and a meaningful operational advantage against laser-enabled threats, including those seen in current Middle East conflicts.”

DEFSEC expects to brief domestic and foreign delegations on its BLISS product at Canada’s upcoming annual defence and security show, “CANSEC”, May 27 and 28, 2026, in Ottawa.

About DEFSEC

DEFSEC (TSXV: DFSC) (TSXV: DFSC.WT.U) (NASDAQ: DFSC) (NASDAQ: DFSCSW) (FSE: 62UA) develops and commercializes breakthrough next-generation tactical systems for military and security forces. The company’s current portfolio of offerings includes digitization of tactical forces for real-time shared situational awareness and targeting information from any source (including drones) streamed directly to users’ smart devices and weapons. Other DEFSEC products include countermeasures against threats such as electronic detection, lasers and drones. These systems can operate stand-alone or integrate seamlessly with OEM products and battlefield management systems, and all come integrated with TAK. The company also has a new proprietary less-lethal product line branded PARA SHOTTM with applications across all segments of the non-lethal market, including law enforcement. The Company is headquartered in Ottawa, Canada.

For more information, please visit https://www.defsectec.com

Forward-Looking Statements

This news release contains “forward-looking statements” and “forward-looking information” within the meaning of Canadian and United States securities laws (collectively, “forward-looking statements”), which may be identified by the use of terms and phrases such as “may”, “would”, “should”, “could”, “expect”, “intend”, “estimate”, “anticipate”, “plan”, “foresee”, “have sight of”, “believe”, or “continue”, the description of “optimism”, ” momentum” or “interest”,  the negative of these terms and similar terminology, including references to assumptions, although not all forward-looking statements contain these terms and phrases. Forward-looking statements are provided for the purpose of assisting the reader in understanding us, our business, operations, prospects and risks at a point in time in the context of historical and possible future developments and therefore the reader is cautioned that such information may not be appropriate for other purposes. Such forward-looking statements are based on the current expectations of DEFSEC’s management and are based on assumptions and subject to risks and uncertainties that are documented in detail in the Company’s public filings. Forward-looking statements included in this include, but are not limited to: management’s belief of sufficiency of available financial resources to support forecasted activities in 2026 based on cash on hand, anticipated revenue streams and planned expenditures in the fiscal year, subject to execution of the Company’s operating plan and other risks and factors described  in its public filings; interest in DEFSEC LightningTM, BLISSTM or other products and services as well as timing of full implementation or commercial release thereof; the Company’s estimates of increases to annualized gross margin on a go-forward basis and extent thereof, if any; the stage of scaled production for the PARA SHOTTM technology into new training cartridges and timing of release thereof; and management’s belief that its extensive customer base of law enforcement agencies for ARWEN throughout North America is a ready market for its new products like PARA SHOTTM as well as DEFSEC LightningTM.

Although DEFSEC’s management believes that the assumptions underlying such forward-looking statements are reasonable, they may prove to be incorrect. The forward-looking statements discussed in this news release may not occur by certain specified dates or at all and could differ materially as a result of known and unknown risk factors and uncertainties affecting DEFSEC, including DEFSEC’s inability to execute on its current operating plan and/or fiscal 2026 forecasted activities, DEFSEC’s inability to secure contracts and subcontracts (on the timelines, size and scale expected or at all), statements of work and orders for its products in fiscal 2026 and onwards for reasons beyond its control, the renewal or extension of agreements beyond their original term, the granting of patents applied for by DEFSEC, inability to finance the scale up to full commercial production levels for its physical products, inability to secure key partnership agreements to facilitate the outsourcing and logistics for its ARWEN® and PARA SHOTTM products, inability to commercialize DEFSEC’s Battlespace Laser Identification Sensor System (BLISS), inability to secure or complete the execution of government contracts, inability to drive growth in DEFSEC’s ARWEN® product line, inability to advance the commercialization of DEFSEC’s PARA SHOTTM products, delay or inability to launch DEFSEC’s Lightning SaaS offering, lower than expected or delayed demand for DEFSEC’s BLISS, overall interest in DEFSEC’s products being lower than anticipated or expected; general economic and stock market conditions; a stagnation or decrease in North American defense and public safety spending, adverse industry events; future legislative and regulatory developments in Canada, the United States and elsewhere; the inability of DEFSEC to implement and execute its business strategies; risks and uncertainties detailed from time to time in DEFSEC’s filings with the Canadian Security Administrators and the United States Securities and Exchange Commission, and many other factors beyond the control of DEFSEC. Although DEFSEC has attempted to identify important factors that could cause actual actions, events or results to differ materially from those described in forward-looking statements, there may be other factors that cause actions, events or results to differ from those anticipated, estimated or intended. Except as required by applicable securities laws, forward-looking statements speak only as of the date on which they are made and DEFSEC undertakes no obligation to publicly update or revise any forward-looking statements, whether as a result of new information, future events or otherwise.

Neither the TSX Venture Exchange nor its respective Regulation Services Provider (as that term is defined in the policies of the TSX Venture Exchange) accepts responsibility for the adequacy or accuracy of this news release.

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SOURCE DEFSEC Technologies Inc

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SPX Cooling Tech Unveils the Marley® OlympusMAX™ Fluid Cooler

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Maximum Capacity. Trusted Performance.

OVERLAND PARK, Kan., April 29, 2026 /PRNewswire/ — SPX Cooling Tech, LLC announced the launch of the Marley® OlympusMAX™ Fluid Cooler, engineered to deliver unmatched performance, efficiency and design flexibility for mission-critical facilities. Designed to meet the evolving demands of data centers, industrial plants and high-density cooling applications, the OlympusMAX Fluid Cooler sets a new benchmark in dry and adiabatic cooling technology.

Built on a century of heat rejection expertise, the OlympusMAX Fluid Cooler brings a new level of performance in dry and adiabatic cooling.  It is available in both adiabatic and dry configurations. The bolt-on adiabatic module can be factory or field installed—or even installed after the equipment is operational in order to provide maximum flexibility in response to changing conditions and site demands.

As global data center density continues to expand, operators are increasingly seeking cooling solutions that balance performance, energy use, water use and operational flexibility. “OlympusMAX reflects our commitment to advancing cooling technology to support the evolving demands of mission-critical facilities,” said Dustan Atkinson, Director of Product Management for SPX Cooling Tech. “By offering scalable dry and adiabatic performance, engineered flexibility and streamlined installation, we’re helping facilities meet increasingly challenging demands while maintaining efficiency and long-term reliability.”

At the heart of the OlympusMAX adiabatic module is a patent-pending recirculating adiabatic design that significantly reduces blowdown, minimizing unnecessary water discharge while improving system efficiency. Unlike traditional once-through or spray systems, the unit’s recirculation technology delivers more uniform water flow across the pad – improving saturation efficiency, extending pad life and reducing mineral accumulation on critical components. The result is more predictable energy and water consumption – a critical advantage for performance-sensitive environments such as hyperscale data centers.

Engineered for uptime, the OlympusMAX features high-efficiency Marley Geareducer® gear drives, robust construction materials and integrated component redundancy, including mission-critical fan and VFD systems. With unit options ranging from 120 to 240 horsepower, the design maximizes cooling capacity per square foot, delivering industry-leading heat rejection density.

Installation and serviceability were key priorities in the system’s development. Each unit ships with a factory-assembled electrical access platform, single-point wiring connection, VFDs and PLC controls pre-installed, and full-size access doors with internal walkways. These features streamline installation while enabling safer operation and easier maintenance.

The launch underscores SPX Cooling Tech’s mission to provide flexible, high-efficiency heat rejection solutions across its full portfolio including dry coolers, adiabatic coolers, evaporative coolers, and cooling towers, ensuring customers have a single-supplier solution tailored to their operational strategy.

About SPX Cooling Tech, LLC
SPX Cooling Tech is a leading global manufacturer of cooling towers, fluid coolers, adiabatic and dry cooling systems, evaporative condensers, industrial evaporators and OEM aftermarket parts from brands that include Marley®, Recold® and SGS Refrigeration. Since 1922, our brands’ cooling systems, components and technical services have supported applications in heating, ventilation and air conditioning (HVAC), refrigeration, and industrial process cooling. SPX Cooling Tech and its product brands are part of SPX Technologies, Inc. For more information see www.spxcooling.com.

About SPX Corporation
SPX Technologies is a supplier of highly engineered products and technologies, holding leadership positions in the HVAC and detection and measurement markets. Based in Charlotte, North Carolina, SPX Technologies has approximately 4,700 employees in 16 countries and is listed on the New York Stock Exchange under the ticker symbol “SPXC.” For more information, please visit www.spx.com.

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SOURCE SPX Cooling Technologies

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AMTD’s TGE Reports Full Year Results with 27.7% Increase in Revenue, with 25.5% Increase in Total Assets and 9.1% Increase in Net Assets

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PARIS and LONDON and NEW YORK, April 29, 2026 /PRNewswire/ — The Generation Essentials Group (“TGE” or the “Company”) (NYSE: TGE, LSE; TGE), a NYSE and LSE dual-listed company and a subsidiary of AMTD Group Inc., today announced the filing of its annual report on Form 20-F for the fiscal year ended December 31, 2025 with the Securities and Exchange Commission, with summary highlights below:

Total Revenue increased by 27.7% from US$77.0 million to US$98.3 millionTotal non-GAAP Net Income increased by 3.2% from US$44.7 million to US$46.2 million Total Assets amounted to US$1,464.1 million (US$30.2/share)Net asset value amounted to US$839.1 million (US$17.3/share)

The annual report is available on the Company’s investor relations website at  http://thegenerationalessentials.com. The Company will provide a hard copy of its annual report containing the audited consolidated financial statements, free of charge, to its shareholders upon request. Requests should be directed to Investor Relations Office at ir@tge.media.

About The Generation Essentials Group

The Generation Essentials Group (NYSE: TGE; LSE: TGE), jointly established by AMTD Group, AMTD IDEA Group (NYSE: AMTD; SGX: HKB) and AMTD Digital Inc. (NYSE: HKD), is headquartered in France and focuses on global strategies and developments in multi-media, entertainment, and cultural affairs worldwide as well as hospitality and VIP services. TGE comprises L’Officiel, The Art Newspaper, movie and entertainment projects. Collectively, TGE is a diversified portfolio of media and entertainment businesses, and a global portfolio of premium properties. Also, TGE is a special purpose acquisition company (SPAC) sponsor manager, with its first SPAC successfully raised and priced on December 18, 2025.

For The Generation Essentials Group:
IR Office
The Generation Essentials Group
EMAIL: ir@tge.media

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SOURCE The Generation Essentials Group

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