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Space-ng Demonstrates AstroVision and Lunar Optical Navigation at the 40th Space Symposium

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COLORADO SPRINGS, Colo., April 4, 2025 /PRNewswire/ — Space-ng optical navigation software provides terrain relative navigation, hazard detection, and attitude determination from lunar orbit to the surface, as demonstrated by the recent success of Firefly Aerospace’s Blue Ghost Mission 1 (BGM1) landing at Mare Crisium. The technology used in this mission, and its capabilities regarding other computer vision applications for space systems, will be presented in video and interactive displays at the Space-ng Booth #SS208 .

AstroVision hardware, currently undergoing qualification testing, will also be demonstrated at the Space-ng booth. AstroVision was developed by Space-ng to host the powerful software that will drive next generation computer vision applications for space systems. This includes the spacecraft equivalent of level 5 self driving, proven by Firefly on BGM1, with optical navigation support from Space-ng.

Attendees at the 40th Space Symposium will include Space-ng Founder and CEO Ethan Rublee as well as Co-Founder and Chief Engineer Steve Bailey.

Space-ng is on a mission to provide computer vision, optical navigation, and autonomous operations across the solar system, as well as returning cinematic experiences and imagery from pioneering space missions.

Space-ng’s Role in the Historic Firefly Blue Ghost Lunar Lander Mission

On March 2nd, as Blue Ghost descended to Mare Crisium, Space-ng’s software processed camera images, comparing them to a 3D, geospatially accurate, onboard lunar digital terrain map and dynamically correcting the vehicle’s navigation solution. In the final moments before touchdown, the system identified hazardous terrain like slopes, rocks, and craters and autonomously re-directed the lander to a safe site – ensuring a soft, precise landing.

Future Vision Based Navigation Systems

In future applications, Space-ng software will be hosted on Space-ng’s AstroVision hardware. AstroVision combines advanced optical sensors, high-speed remote data transmission, high-performance computing, and neural engine processing to enable the use of computer vision and machine learning algorithms using physics-based visual reasoning. AstroVision provides quaternions and state vectors from Earth orbit to the surface of the Moon absent of GPS and radio communication, supporting Alt PNT cislunar spaceflight, as well as lunar orbit, landing and surface operations.

AstroVision combines Space-ng’s expertise in vision-based navigation software with space-qualified hardware that includes an 8 core CPU as well as hardware acceleration including an Image Signal Processor (ISP), Digital Signal Processor (DSP), Graphics Processing Unit (GPU), and an AI/Neural Network Engine. AstroVision includes up to 12 configurable high-resolution Camera Modules, each with sensors and optics tailored to users needs, and each located up to 15 meters from the AstroVision Base Unit. This multi-headed vision system provides all-sky coverage eliminating the need for spacecraft maneuvers or attitude constraints in acquiring and tracking the Sun or stars.

This innovative approach to position and attitude determination uses both bright objects like the Sun, Earth, and Moon and dim objects, such as stars and distant planets, to produce a precise state vector solution without relying on conventional sun sensors, star trackers, GPS, two-way-radio ranging, or ground-in-the-loop approaches. Each of the twelve AstroVision global or rolling shutter imagers comes with a user-selectable field of view, 12 Mpixel resolution, up to 6 Gbps bandwidth, and internal IMU, weighing in at only 150 grams apiece.

The AstroVision Hardware and Software Ecosystem

Space-ng is taking orders for AstroVision hardware, with first flight hardware delivery in Q3 of 2025 and with EDU hardware now available. AstroVision hardware supports many use cases ranging from science imaging and video documentation to spacecraft automation such as rendezvous, proximity operations, manufacturing, assembly, security, and space situational awareness. As a software-defined system with an open architecture model with standard APIs, the flight software may be licensed from Space-ng, or developed by the customer to suit their needs. AstroVision comes with hardware and software supporting each stage of the spacecraft development life cycle, including design & development, test & integration, mission operations, and overall cyber-security. This includes real time simulation, electrical ground support equipment, command and telemetry, and Over the Air (OTA) updates. Space-ng can provide dedicated support through delivery and integration, or all the way to mission success.

“Optical navigation is critical in situations where you need precise maneuvering and a GPS signal is not available,” said Will Coogan, Chief Engineer at Firefly Aerospace. “We chose Space-ng for the Blue Ghost mission to the Moon because their software provides a precision landing location on the lunar surface that avoids hazardous obstacles like rocks and craters. Space-ng provides excellent support and expertise, and we look forward to working with them for future missions to the Moon and beyond!”

Media Contact: Please contact hello@space-ng.com for additional requests for information or media contact.

Space-ng is developing revolutionary machine vision hardware and software for Civil, Commercial, and Defense customers. To learn more about Space-ng visit www.space-ng.com, where you’ll find the answers to your most common questions as well as contact information on how to customize AstroVision for your mission.

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SOURCE Space-ng Inc.

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Mixx Technologies Acquires Sophic Silicon Technologies and Announces Manufacturing Collaboration with Kaynes Semicon

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A landmark dual announcement signals India’s emergence as a vertically integrated force in global AI semiconductor infrastructure, spanning design to deployment

BENGALURU, India, July 23, 2026 /PRNewswire/ — Mixx Technologies, Inc., a US based venture-backed deep-tech company building the interconnect layer for hyperscale AI infrastructure, today announced two simultaneous strategic moves that together mark a defining moment in India’s semiconductor journey. First, the acquisition of Sophic Silicon Technologies, a Bengaluru-based semiconductor IP design firm, beneficiary of India’s DLI and whose analog mixed-signal design expertise is now integral to Mixx’s co-packaged optics platform. Second, a manufacturing collaboration with Kaynes Semicon Private Limited, an Outsourced Semiconductor Assembly and Test (OSAT) specialist and beneficiary of India’s Production Linked Incentive (PLI) scheme, to establish a test and assembly facility that will support Mixx’s optical IC packaging roadmap. Taken together, the two announcements represent the first time an international deep-tech company has anchored both the design and manufacturing layers of a next-generation AI silicon platform in India, turning the country’s policy ambition into commercial reality.

The Acquisition: Completing the Full-Stack Foundation for Co-Packaged Optics
Every major cloud provider is deploying GPUs at a pace and scale that would have seemed implausible three years ago. But raw compute density is only half the equation. The harder problem is making sure those GPUs are working to its full potential and not waiting. In large AI clusters, accelerators spend a significant fraction of their time stalled on data waiting to move between chips fast enough to keep compute fed. The interconnect, not the GPU itself, is increasingly the binding constraint on utilization. And utilization directly determines the cost of a token and the energy burned to produce it. For hyperscalers running inference at billions of queries a day, the economics are unforgiving: every percentage point of GPU idle time is waste at scale. Introducing optics to declutter the data path improves efficiency. Co-packaged optics (CPO), the most effective solution to the interconnect bottleneck, integrates photonic engines directly alongside ASICs and accelerators, moving data at optical speeds and at a fraction of the power of conventional electrical interconnects. It unlocks the bandwidth density required to keep GPUs utilized efficiently and sustainably, bringing down both the cost of a token and the energy consumed to produce it.

The industry is focused, the demand is now, and Mixx is ready for real-world deployments.

Delivering CPO at hyperscale, however, requires precision across the full electronic-photonic stack; the hardest layer to design is the analog mixed-signal interface between the photonics and the digital system. That is precisely what Sophic Silicon Technologies has designed using advanced CMOS process nodes. Their IP now forms the electronic IC foundation of Mixx’s HBxIO™ platform – a multi-terabit, ultra-high-radix optical interconnect architecture purpose-built for large-scale AI inference and training. The acquisition brings Sophic Silicon’s full team and IP portfolio into Mixx, effective immediately.

“Our vision has always been to build the complete electronic-photonic stack. Sophic Silicon brings critical analog mixed-signal expertise that reinforces HBxIO and moves us closer to deploying optical connectivity at hyperscale.”

        — Vivek Raghuraman, CEO, Mixx Technologies

Sophic Silicon’s founders and core engineers, with backgrounds spanning advanced CMOS process design, EDA and IP development, and high-speed networking, will join Mixx’s core product development organization and continue expanding R&D operations in India.

“Sophic Silicon exists because optical connectivity at hyperscale demands more – lower power, higher bandwidth, seamless multi-protocol integration, and latency that lets networks perform at their absolute best. Mixx gives us the platform, the ecosystem, and the global reach to take that work where it was always meant to go. What we built in Bengaluru is now part of the infrastructure that the world’s largest computing deployments will run on.”

         — Deepak Pancholi, Founder, Sophic Silicon Technologies

The Collaboration: From Design to Deployment with Kaynes Semicon
Designing world-class semiconductor IP in India is a milestone. Manufacturing and testing it there is a transformation. Mixx Technologies’ collaboration with Kaynes Semicon Private Limited, a leading Indian OSAT provider and PLI beneficiary, is precisely that second step.

The collaboration brings together Kaynes Semicon’s advanced OSAT capabilities and Mixx’s optical IC design expertise to build a dedicated test and assembly capability for next-generation optical integrated circuits. Kaynes Semicon brings deep process knowledge in semiconductor assembly, packaging, and test, backed by the capital investment and institutional credibility of a PLI-supported program. For Mixx, the partnership creates a tightly integrated domestic manufacturing pathway for components of the HBxIO™ platform, enabling faster development cycles, closer collaboration between design and production teams, and the kind of end-to-end control that is essential when pushing the limits of optical IC performance.

“This multi-year collaboration with Mixx Technologies is a strong signal of where India’s semiconductor manufacturing ecosystem is headed. We have built the infrastructure and the process depth to support advanced optical IC packaging. Working with Mixx brings a world-class design partner into that ecosystem, demonstrating that PLI-backed Indian manufacturers can play at the leading edge of the global AI hardware supply chain.”

          — Raghu Panicker, CEO, Kaynes Semicon Private Limited

From India, for the World: A New Model for Semiconductor Globalization
Mixx Technologies has maintained R&D operations in India since its founding, alongside its San Jose headquarters and Taiwan facilities. The acquisition of Sophic Silicon deepens that presence significantly, embedding a team with leading-edge analog mixed-signal and photonics design experience into Mixx’s core product organization. The collaboration with Kaynes Semicon adds a manufacturing dimension: for the first time, a next-generation optical interconnect platform will have both its design and its assembly and test operations anchored in India. This is not an offshoring story. It is a story about India becoming a primary node in the global AI semiconductor value chain, with design, manufacturing, and IP origination happening here, at global scale.

“Mixx Technologies is committed to developing next-generation silicon photonics IP and system designs in India, contributing to the country’s ambition of becoming a global hub for semiconductor design and advanced manufacturing. The talent here is exceptional. The policy environment has matured to support it. And today’s announcements are what happens when both come together.”

           — Vivek Raghuraman, CEO, Mixx Technologies

The Road Ahead: Building the AI Interconnect Layer, in India
Sophic Silicon’s mixed-signal IPs is now being integrated across the HBxIO™ platform stack. Mixx is actively engaged with cloud service providers to qualify the platform across both scale-up and scale-out network, connecting servers and clusters across data center fabric.

The Kaynes Semicon collaboration is underway, focused on qualifying advanced optical IC assembly and test processes that meet the stringent performance and reliability standards hyperscale deployments demand. Mixx continues to expand its India R&D organization, with Bengaluru at the center of its global analog mixed-signal and photonics IC development.

The global AI chip market is projected to exceed $400 billion by 2030. The interconnect layer, tracking how data moves between chips, between accelerators and between clusters, is where the next wave of differentiation will be won. Mixx Technologies is building that layer. And it is building it in India.

About Mixx Technologies
Mixx Technologies, Inc. is venture-backed deep-tech company founded by the team that commercialized many zero-to-one silicon photonics products. The company is solving the data-movement bottleneck for AI compute infrastructure through its HBxIO™ platform, a multi-terabit, ultra-high-radix co-packaged optical interconnect architecture enabling cloud service providers to deploy large-scale AI inference at the speed and efficiency hyperscale demands. Headquartered in San Jose, California, with R&D operations in India and Taiwan. Visit: www.mixxtech.io.

About Sophic Silicon Technologies
Sophic Silicon Technologies is a Bengaluru-based semiconductor IP design firm specializing in analog mixed-signal, wireless and photonics ICs for AI-scale infrastructure. A beneficiary of India’s Design Linked Incentive (DLI) Scheme under the India Semiconductor Mission, the company developed its IP at leading-edge CMOS process nodes to address the electro-optic interface challenges central to co-packaged optics and next-generation AI scale-up interconnects. Sophic Silicon Technologies is now part of Mixx Technologies.

About Kaynes Semicon Private Limited
Kaynes Semicon Private Limited is an Indian OSAT (Outsourced Semiconductor Assembly and Test) company and beneficiary of the Government of India’s Production Linked Incentive (PLI) scheme for semiconductors. With infrastructure and advanced assembly capabilities at its Sanand, Gujarat facility, Kaynes Semicon is building India’s domestic semiconductor manufacturing ecosystem for next-generation packaging and test requirements.

Media Contact
Ramya Barna
Marketing and Investor Relations, Mixx Technologies, Inc
info@mixxtech.io

Photo – https://mma.prnewswire.com/media/3007336/Mixx_Technologies_System_Level_Solution.jpg
Logo – https://mma.prnewswire.com/media/2834697/Mixxblack_Logo.jpg

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Hydra X Launches HX Gateway API to Advance Institutional Adoption on the Canton Network

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The HX Gateway API supports financial institutions and developers building on Canton, reducing go-to-market timelines by up to 80% and deployment time by 50%.

SINGAPORE, July 23, 2026 /PRNewswire/ — Hydra X, a regulated market infrastructure operator for tokenised capital markets, today announced the launch of HX Gateway API, a REST API layer that supports financial institutions and application developers building on the Canton Network without requiring specialised expertise in Daml, Canton’s underlying programming language.

The API provides a straightforward integration layer that maps directly to familiar business workflows – onboarding participants, issuing and managing assets, and executing transfers. Now, institutions can go from decision to deployment without needing to build infrastructure from the ground up.

Built on Production Experience on the Canton Network

The HX Gateway API is built on Hydra X’s own production experience operating on the Canton Network. The firm has tokenised over US$100 million in assets for institutional clients across multiple regulatory frameworks on Canton through DA Registry – a secure tokenisation solution with regulatory-grade compliance built by Digital Asset, creators of the Canton Network.

That operational depth informed the design of the API, resulting in measurable gains for institutional deployments:

Rapid Go-to-Market: Up to an 80% acceleration in go-to-market timelines.Faster Path-to-Production: A 50% reduction in deployment time.Flexible Integration: Available as a hosted service or as an external deployment for clients with existing validator infrastructure.

“The HX Gateway API was designed to advance institutional adoption on the Canton Network.  It is built on the same infrastructure we run in production for regulated clients, and it means that banks, asset managers and exchanges no longer need to treat Canton integration as a specialist engineering project. It is a business decision now, and the timelines reflect that,” said Mark Tang, VP of Client Solutions, Hydra X.

A Broader Shift in Tokenised Capital Markets

The launch marks a broader shift in how regulated financial institutions can engage with the Canton Network. As tokenised capital markets around the world move from pilot programmes to production deployments, the ability to integrate quickly and reliably into shared network infrastructure is becoming a competitive differentiator. The HX Gateway API is designed to meet that moment, providing institutional-grade tooling that significantly accelerates the path from deciding to build on the Canton Network to achieving a live deployment.

About Hydra X

Hydra X is a regulated market infrastructure operator for tokenised capital markets, with live deployments across Asia-Pacific. The firm builds and operates the full lifecycle of digital capital market infrastructure, spanning tokenisation, distribution, trading, custody and settlement. Hydra X serves financial institutions seeking to issue, trade and custodise digital assets on regulated, institutional-grade infrastructure.

www.hydrax.io

View original content:https://www.prnewswire.com/apac/news-releases/hydra-x-launches-hx-gateway-api-to-advance-institutional-adoption-on-the-canton-network-302832706.html

SOURCE Hydra X

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Unfold Your Passions with a $0 Galaxy on StarHub 5G Unlimited+ Plans

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Pre-order the new Samsung Galaxy Z Fold8 Ultra, Galaxy Z Fold8 and Galaxy Z Flip8 with StarHub to unlock exclusive perks

SINGAPORE, 23 July 2026 /PRNewswire/ — Your next Galaxy upgrade just got easier. Whether it’s streaming Premier League action on the go, multi-tasking on a larger foldable display or enjoying immersive entertainment, StarHub is making it easier than ever to own Samsung’s latest Galaxy foldables.

From today, customers can pre-order the new Samsung Galaxy Z Fold8 Ultra, Galaxy Z Fold8, and Galaxy Z Flip8 on StarHub’s 5G Unlimited+ Plans, enjoying up to $1,688 in device savings, up to $2,880 in DeviceDollars (over 36 months) to offset interest-free device instalments, bringing the cost of owning Samsung’s latest foldables down to as low as $0.

More Value with Every Upgrade

Designed to make upgrading easier and more rewarding, StarHub’s 5G Unlimited+ Plans combine exclusive pre-order offers with perks, so customers get even more from Samsung’s latest Galaxy foldables:

Up to $2,880 in DeviceDollars (over 36 months) to offset interest-free instalments, with flexible payment options across 12, 24 or 36 monthsUpfront pay later device discounts with 5G Unlimited+ PlansUp to $350 off device for new lines and port-insGuaranteed $300 trade-in bonus on top of device’s base trade-in valueComplimentary Premier League Annual Pass worth $380 with Galaxy Z Fold8 Ultra or Fold8Complimentary storage upgrade to 512GB at the price of 256GB worth $300, with 5G Unlimited+ Plus Plans and aboveComplimentary 3 months SmartSupport (worth $42.78) to lock in the 50% trade-in guarantee on your new Galaxy Z Foldable[1]$38 e-voucher for customers who registered their interestWatch add-on savings of up $250 off Galaxy Watch Ultra2 and $100 off Galaxy Watch9

More Freedom with 5G Unlimited+ Plans

Beyond the device, StarHub’s 5G Unlimited+ Plans include unlimited data, built-in global roaming across 165 destinations, and unlimited calls and SMS, giving customers greater peace of mind whether they’re staying connected at home or travelling overseas.

Pre-Order Details

Customers can pre-order the new Samsung Galaxy Z Series, Galaxy Watch Ultra2 and Galaxy Watch9 on StarHub’s 5G Unlimited+ Plans from 23 July 2026, 9am to 13 August 2026, 11.59pm via the StarHub App and online at starhub.com/samsung. Customers who prefer to pre-order in person can do so at StarHub Shops from 4 August 2026, during operating hours.

The Samsung Galaxy Z Series will be available for walk-in purchase at StarHub shops from 14 August 2026, 11am, and online via the StarHub eShop from 14 August 2026, 12am, while stocks last.

For more information, visit: starhub.com/samsung.

[1] Terms and conditions apply, please refer to starhub.com/samsung

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SOURCE StarHub

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