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About Orbis Systems

Orbis Systems provides quality control solutions, functional testing solutions, components and services for its customers’ R&D, production and after sales needs. Our products and services increase efficiency and performance in our customers’ processes and hence shorten time to market, lower process costs and increase the end customers’ satisfaction.

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125, Suitland Street, USA

+86 106 7870 880

edward.wang@orbissystems.eu

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Tailored OTA Chamber Fits Perfectly Inside Office Space

Orbis Systems’ first class Over-the-Air (OTA) testing solutions are developed to support all your 5G R&D needs.

Upgrade your office with Orbis Systems’ OTA Chamber

Imagine having the advanced capabilities of an Over-the-Air (OTA) chamber inside of your office. We recently delivered a customized OTA chamber to a prominent European telecom company, marking a significant leap in testing convenience and efficiency.

Save costs by optimizing your space

Our latest project involved successfully delivering an OTA chamber for a leading telecom client in Germany, mirroring the features found in several meters’ long container chambers in customer test labs in two European countries. The challenge was to fit a container chamber into the limited space of an office building. Our solution? A cleverly designed container that fits seamlessly into office environments. This pioneering approach, a first in Europe, brings a new era of flexibility to testing procedures and we are looking forward to delivering more. Orbis Systems has capabilities for large scale chamber deliveries on a global scale.

“We appreciated the excellent collaboration during the delivery and we are now fully utilizing the chamber and its features.”

– Customer Program Manager

Your trusted global partner

With a history of successfully delivering nearly 150 OTA chambers and large-scale radio frequency (RF) walls, Orbis Systems is recognized for its expertise on a global scale. We prioritize collaborative solutions that transcend geographical boundaries, making us the preferred partner for tailored testing solutions worldwide.

With our rich experience and demonstrated success, we stand ready to deliver customized solutions that perfectly match our customers’ needs, regardless of geographical limitations or the size of the OTA test environment. Orbis Systems is skilled at providing OTA Chambers that seamlessly fit into practically any confined space.

Read about our OTA Chambers.

Are you interested in learning more about Orbis Systems and our solutions? Feel free to contact us for further details.

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All Stories

Testing Made Efficient with Triple Testing Solutions

Orbis Systems redefines testing efficiency with advanced positioners for three Devices Under Test and Base Stations. In just three months, our solutions bring automation, tilt simulation and enhanced safety to testing setups. Discover precision testing made easy with Orbis Systems.

The practical challenge

Orbis Systems faced an interesting challenge when a customer asked for a positioner that could handle three Devices Under Test (DUTs) with manual movements, and another one for three Base Stations. The goal was straightforward — improve test efficiency and cut down on test cycle time by allowing simultaneous testing of multiple components.

Our steady response

In just three months, Orbis Systems successfully developed the requested positioners, smoothly moving from the initial design to on-site implementation at the customer’s premises.

Key features for streamlined testing

The solution comes with a handy feature — automatic maneuvering of Devices Under Test (DUTs) and Base Stations through software commands. This functionality is easily accessible through our user-friendly interface (UI) or via API commands.

For those aiming higher, the Triple Base Station positioner includes the ability to simulate tilt, enhancing the overall test setup for optimal performance.

Safety at the core

Safety is a top priority. The positioners integrate with the Orbis Safety System, ensuring an added layer of protection. If someone is detected within the testing chamber, the Safety System will automatically halt all movements, prioritizing a secure working environment.

With Orbis Systems, you get practical solutions that enhance your testing process without unnecessary complications. Let’s make your testing experience more efficient and secure.

Are you interested in learning more about Orbis Systems and our solutions? Feel free to contact us for further details.

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Brochures

Orbis Systems Products, Solutions and Services

Orbis Systems’ cost-effective and tailored solutions enable our customers to verify and optimize the performance of their products and services. Our OTA Chambers, RF Signal Switching Units, Automated Positioners, Fixtures and Test Systems are highly customizable and available over a wide range of frequencies including sub-6GHz and mmWave. Furthermore, we are already developing testing solutions for 6G.

This brochure provides an insightful overview of Orbis Systems’ offerings, within three main categories:

  1. Orbis Systems Products Offering
    1. Racks and Associated Plug-In Units
    2. RF Signal Switching Units
    3. Automated Positioners
  2. Orbis Systems Solutions Offering
    1. OTA Chambers
    2. RF Shielded Rooms
    3. RF Shielded Boxes
    4. Functional Test Systems and Fixtures
  3. Orbis Systems Services Offering
    1. Test Equipment Engineering Services
    2. Test Equipment Manufacturing Services
    3. Support Services

Download the brochure by filling in the form below to get an insightful overview of Orbis Systems’ innovative and cost-effective products, solutions and services.





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    Brochures

    Enhancing Modern Testing with RF Signal Switching Units

    Orbis Systems’ RF Signal Switching Units seamlessly integrate with automated laboratory systems, enabling swift and effective configuration changes. The modular system architecture, comprising a main case, controller and plug-in modules, empowers users to build extensive test systems.

    Automate and speed up your telecom testing with our RF Signal Switching Units, without the need to configure each test case manually. At Orbis Systems we offer 5 different categories of RF Signal Switching Units:

    1. Modular Signal Switching Unit
    2. Blocking Switch Matrix
    3. Variable Attenuator Matrix
    4. Phase Shifter Matrix
    5. Non-Blocking Switch Matrix

    Download the brochure by filling in the form below to learn the advantages of RF Signal Switching Units and see examples of the different solutions that we have delivered to our customers.





      By clicking 'Download' you accept our Privacy Policy.

      Are you interested in learning more about Orbis Systems? Feel free to contact us for further details.
      We are here for you!

      Contact us

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      Blogs

      Why Orbis Systems Leads in RF Test Automation

      Table of Contents

      • How RF Test Automation Works
      • Limitations of Manual RF Testing
      • Orbis Systems’ Automated RF Test Solutions
      • Smart Testing Tools and Software Integration
      • Why Choose Orbis for RF Test Automation
      • Frequently Asked Questions
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      Key Points

      • RF test automation minimizes human error, speeds up validation cycles, and ensures consistent results in demanding test environments.
      • Orbis Systems delivers advanced RF test solutions by combining deep domain expertise, intelligent switching, modular hardware setups, and fully automated control systems.
      • RF test labs benefit from automation with faster turnaround times, improved reliability, and highly repeatable performance across test scenarios.
      • Integrated software platforms in Orbis RF test systems streamline data collection, automate reporting, and enable real-time system monitoring.
      • From telecommunications to defense, Orbis Systems provides scalable, end-to-end RF testing solutions tailored to evolving technical requirements and trusted by Tier-1 clients.

      Radio Frequency (RF) testing plays a central role in validating wireless systems across many industries. From 5G telecom modules to satellite communication devices and automotive sensors, precise RF testing ensures reliable signal behavior and compliance with international standards. A well-equipped RF test lab can simulate real-world signal conditions and verify whether a device will operate correctly across various frequencies and environments.

      The complexity of wireless systems continues to grow, and traditional RF testing methods struggle to keep up with rising demands. Speed, repeatability, and accuracy are critical in high-volume production and R&D environments. That’s why automation is no longer optional; it’s essential. Automated RF testing systems can help reduce test cycles, improve traceability, and allow teams to scale operations more efficiently than ever before.

      How RF Test Automation Works

      RF test automation integrates RF instruments, switching systems, DUT fixtures, and software platforms to create a complete, end-to-end automated test flow. At its core, it utilises hardware and software to execute test sequences with minimal human intervention. Typical setups include signal generators, analyzers, switching units, and control software that runs predefined test cases. These systems automatically collect and analyze data, reducing manual errors and speeding up results.

      Orbis Systems takes this a step further by engineering modular RF switching units, programmable test control interfaces, and custom rack integrations tailored to each client’s needs. Our systems route RF signals between instruments and the Device Under Test (DUT) seamlessly, using smart switching to eliminate cable handling. Combined with robust software platforms, this creates a repeatable, traceable, and high-speed test environment ideal for complex applications.

      Limitations of Manual RF Testing

      Manual testing methods still exist in small-scale or experimental environments, but they have serious limitations. Switching cables between tests can cause signal degradation, introduce errors, and slow down production timelines. In environments where precision is critical, such as an RF test lab validating telecom modules, manual steps increase the risk of inconsistent results.

      Other drawbacks include:

      • Low repeatability and reduced accuracy
      • Time-consuming setup and execution
      • High operator dependency and risk of human error
      • Limited scalability for large-scale testing
      • Difficulty in reproducing identical test conditions

      When teams rely on manual processes, the likelihood of human error increases, and efficiency decreases. In contrast, automated testing systems deliver consistent performance, reduce technician workload, and provide immediate data insights through built-in reporting tools.

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      Orbis Systems’ Automated RF Test Solutions

      At Orbis Systems, we specialize in designing and deploying automated RF testing solutions for R&D and production environments. Whether you’re working with 5G components, IoT modules, or military-grade RF devices, our systems can be tailored to meet specific performance and throughput goals.

      Our modular switching units support a wide range of test setups, while our integrated software handles test control, execution, and result reporting. These custom-built environments help customers:

      • Speed up validation workflows
      • Reduce testing errors
      • Increase testing coverage
      • Improve time-to-market

      From lab environments to scalable production lines, Orbis RF automation is built for consistency and adaptability. We partner with each client to understand their goals and build RF testing systems that evolve alongside their technologies.

      Smart Testing Tools and Software Integration

      One of the major advantages of Orbis Systems’ approach is the integration of intelligent testing tools in software testing workflows. Our test environments aren’t just about hardware; they’re powered by smart software that handles scheduling, monitoring, and reporting automatically.

      These testing tools offer:

      • Centralized test case management
      • Real-time monitoring of test progress
      • Automatic result logging and traceability
      • Customizable dashboards for performance analysis

      By embedding smart tools into the test cycle, engineers gain more control, visibility, and consistency. Whether testing locally or remotely, users can launch, track, and evaluate RF tests with confidence, knowing that each result is generated under controlled, repeatable conditions.

      Why Choose Orbis for RF Test Automation

      The need for scalable, error-free, and fast RF testing has never been greater. Whether you’re validating a new telecom module, calibrating a radar system, or developing next-gen connectivity devices, Orbis Systems provides the expertise and infrastructure to make RF test automation seamless.

      We don’t just offer tools, we deliver tailored test environments that align with your industry, product, and business goals. Our combination of intelligent switching hardware, user-friendly software, and end-to-end integration makes us a trusted partner for companies worldwide.

      Are you considering upgrading your RF test setup? Whether you’re running a full-scale RF test lab or launching a new product line, Orbis Systems can help you move faster, smarter, and more reliably.

      Frequently Asked Questions

      1. What is RF test automation?

      RF test automation is the process of utilizing software-controlled systems and automated hardware to perform radio frequency (RF) measurements, including signal power, frequency response, and modulation accuracy, without requiring manual intervention. It helps improve speed, accuracy, repeatability, and scalability when testing wireless and RF-enabled devices, particularly in high-frequency applications such as 5G, Wi-Fi 6E, satellite, and radar systems.

      2. What are the benefits of RF test automation over manual testing?

      Automation improves speed, accuracy, repeatability, and scalability. It reduces human error and accelerates product validation, which is particularly beneficial in high-throughput environments.

      3. What tools are used in RF test automation?

      RF test automation uses a combination of hardware and software tools. Standard test equipment includes vector network analyzers (VNA), power meters, power sensors, spectrum analyzers, and oscilloscopes. On the software side, automation platforms such as LabVIEW, NI TestStand, and MATLAB are utilised to control tests, manage data, and generate reports. These tools work together to create a reliable and efficient RF testing environment.

      4. How can I automate my existing RF test lab?

      To automate an existing RF test lab, start by adding key components, such as RF switching systems, programmable test controllers, and automation software, to manage signal routing and test sequences. These upgrades reduce manual intervention, improve test speed, and ensure consistent results. Orbis Systems can help by integrating these solutions with your current setup, offering tailored automation that fits your specific testing needs.

      5. Which industries benefit most from RF test automation?

      RF test automation is widely used in industries that require speed, accuracy, and high-volume testing. These include telecommunications, defense, automotive, and electronics manufacturing. It’s also essential in R&D labs, IoT device testing, industrial automation, and consumer electronics, where frequent testing and quick iterations are critical for product development and quality assurance.

      分类
      Blogs

      AI-Driven Test Equipment Design for Smarter RF Automation

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      Key Takeaways

      • AI automation is transforming RF testing by bringing intelligence to all layers of the test infrastructure. It’s not merely quicker speeds, it’s wiser decision-making that improves accuracy, consistency, and flexibility. Multifunction testers simplify setup by combining instruments into a unified platform with lower complexity and better synchronization.
      • At the forefront of it all is the Testing setup. A discipline in which Orbis Systems takes the lead by creating highly tailorable, modular solutions that respond to actual testing demands. For OTA, RF, or high-frequency applications alike, their systems deliver the adaptability and sophistication needed for today’s production environments.
      • The shift to AI-powered test automation isn’t a passing trend; it’s a fundamental evolution. Businesses that leap today will be better equipped to tackle tomorrow’s testing challenges with greater confidence and lower costs

      Why AI Automation Matters in RF Testing

      AI automation is revolutionizing RF testing through clever testing system design that improves speed, scalability, and accuracy. Read on to learn why it’s the future of wireless validation.

      In today’s wireless development, AI automation is not a choice; it’s a requirement. With 5G and IoT, high-speed automotive, the need for precise, scalable, and speedy RF testing has never been greater. Legacy systems just can’t handle today’s sophisticated test environments. That’s where AI automation comes in, providing data-driven, responsive solutions that flex in real time.

      At its heart is AI, and as a result, AI-based testing setup guarantees quicker decision-making, self-tuning test parameters, and less human intervention. A pioneer in this revolution is Orbis Systems, a company known for an accurate testing solution optimized for RF and OTA test environments.

      What Is AI-Driven Test Equipment Design?

      AI-powered test equipment design incorporates artificial intelligence into the software and hardware of test systems, which replaces static test scripts with intelligent logic that learns and adjusts to real-time changes. It eliminates the stiffness of pre-programmed conditions and substitutes them with workflows that are based on learning.

      Practically, this translates into a test system being able to track frequency stability, identify rogue signal behaviors, and adjust its own measurement parameters programmatically. Consequently, fewer faults evade manufacturing, and test cycles are much faster. Orbis Systems applies this methodology within its modular configurations by coupling AI-driven algorithms with mechanical and electrical accuracy to create more intelligent testing infrastructures.

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      Role of AI Automation in Boosting Test Efficiency

      AI automation speeds up workflows and refines them. In a conventional testing lab, engineers manually set up instruments, code test sequences, and dig through raw logs to identify failures. With AI, these repetitive tasks are supplanted by smart logic.

      The AI monitors the Device Under Test (DUT), flags anomalies when generating signals, and automatically corrects in real time. For example, when RF levels vary, the AI reroutes the test along different signal paths through RF matrix systems so that data flow continues uninterruptedly without sacrificing accuracy.

      In addition, AI enhances traceability. Rather than gathering infinite logs, it recognizes patterns and forms usable insights. When used in production lines, this means repeatable results, reduced downtime, and enhanced test throughput.

      The Power of a Multifunction Tester in Automated RF Systems

      The integration of multifunction testers into AI-based systems significantly enhances testing efficiency. Rather than relying on separate instruments like power sensors, signal generators, and network analyzers, a multifunction tester consolidates these capabilities into a single, unified platform.

      This consolidation offers several key benefits. First, it streamlines test configuration by reducing the number of individual devices to manage. Second, it minimizes the overall hardware footprint, a critical advantage in compact production environments. Most importantly, it enables synchronized control, allowing AI to manage complete test cycles through a single interface.

      Orbis Systems seamlessly integrates multifunction testers into its test racks, ensuring smooth communication between instruments and the Device Under Test (DUT). This approach enables faster testing, easier maintenance, and greater flexibility to accommodate new test requirements without overhauling existing infrastructure.

      Orbis Systems: Scalable RF Automation Solutions

      Orbis Systems is the epitome of what intelligent RF testing should be. Their capabilities in designing test equipment span the whole lifecycle of a test system, from conceptual mechanical structures to embedded control electronics and full rack configuration.

      Their automation offerings are modular, making them scalable for different phases of product development, from R&D to mass production. These systems frequently contain custom RF switch units, AI-based software layers, and OTA test enclosures, ideal for wireless device validation.

      Orbis also accommodates container-based RF test environments, providing deployment flexibility. Indoor and remote site testing, wherever you need to test, these mobile platforms deliver repeatable, shielded test conditions optimized for AI automation.

      In addition, their automation approach emphasizes software-defined instrumentation. This supports remote updates, rapid integration of new protocols (such as 6G), and easy test management. The ultimate objective is a system that improves with your product roadmap, not one that constrains it.

      Conclusion: Build Smarter with Orbis Systems

      The future of RF testing is in smarter, more intelligent systems that react to real-time feedback and minimize manual configuration. With AI-driven automation and multifunction testers at the core, test cycles become faster, more accurate, and highly reliable.

      Orbis Systems is at the forefront of this evolution. Whether you’re scaling up production or validating next-generation wireless technologies, Orbis delivers the innovation and tailored solutions needed to keep you ahead of the curve.

      Is your RF test environment ready for the future?

      Contact Orbis Systems today and discover how AI-powered automation can revolutionize your testing infrastructure.

      Frequently Asked Questions

      1. What is AI-driven test equipment design?

      It’s applying artificial intelligence in the design and functioning of test systems so that they can modify test parameters, optimize measurements, and identify anomalies in real time without humans having to do it.

      2. How does AI automation enhance RF testing?

      AI automation enhances RF testing by eliminating manual calibrations and static test scripts. It enables faster, more efficient test cycles through real-time fault detection, adaptive signal routing, and intelligent decision-making. As a result, test systems achieve higher accuracy, improved repeatability, and greater uptime all critical for modern, high-throughput test environments.

      3. What does a multifunction tester accomplish in an automated test environment?

      It integrates several measurement and generation capabilities, such as spectrum analysis, power testing, and signal routing, into one AI-driven unit that eliminates complexity and streamlines testing.

      4. How adaptable are Orbis Systems’ test solutions?

      Orbis Systems offers flexible and scalable test systems that can be adapted to a customer’s unique production or laboratory needs. This includes rack-based configurations, switch units, and AI-based control layers for adaptive testing.

      5. Are these test systems ready for the upcoming wireless technologies?

      Yes. Orbis Systems makes its automation platforms upgradeable. Their solutions are built to support emerging wireless technologies, including new frequency bands, evolving test protocols, and advanced performance standards such as 6G, mmWave, and OTA. This ensures long-term value and compatibility as industry requirements evolve.

      分类
      Blogs

      Impact of Terahertz technology in India by 2040

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      Key Points

      • Terahertz (THz) frequencies offer ultra-high-speed data transfer capabilities, making them ideal for short-range, high-performance communication systems.
      • India is steadily advancing in terahertz technology research, focusing on applications in defense, data security, and next-generation communication.
      • Despite current limitations, India’s Vision 2040 roadmap outlines a clear strategy to enable THz communication systems nationwide.
      • Terahertz imaging and communication have the potential to revolutionize sectors such as health, security, and aerospace.

      What Is Terahertz Technology?

      Terahertz (THz) technology uses electromagnetic waves in the frequency range between 0.1 to 10 terahertz. This falls between the microwave and infrared spectrum, essentially bridging the gap between electronics and photonics. So, what is terahertz technology used for? Primarily, it’s applied in ultra-fast communication, high-resolution imaging, and material analysis.

      The unique properties of THz waves, such as the ability to see through certain materials without harmful radiation, make terahertz imaging ideal for medical diagnostics, security screening, and industrial inspection.

      Challenges Facing Terahertz Adoption

      There are a few core limitations to wide-scale THz deployment:

      1) High Atmospheric Absorption

      Terahertz waves suffer from significant attenuation due to atmospheric water vapor, which greatly limits their effective transmission range in open environments.

      2) Material Obstruction & Scattering

      THz signals are easily blocked or scattered by common materials such as walls, fog, dust, and even clothing, making them suitable only for line-of-sight or short-range applications.

      3) High Equipment Costs

      THz systems are costly to manufacture, calibrate, and maintain, primarily due to the complexity of THz sources, detectors, and optics, which are still in the early stages of commercialization.

      4) Lack of Scalable Manufacturing Infrastructure

      There is no mature, large-scale manufacturing ecosystem for THz components like chips, antennas, or waveguides—especially in developing economies, limiting widespread deployment.

      5) Absence of Standardized Protocols

      The lack of internationally accepted standards and protocols for THz communications hinders interoperability and coordination across vendors, delaying commercial deployment.

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      Vision 2040: India’s Roadmap for Terahertz Development

      India’s Vision 2040 plan sets a detailed path to make THz communication systems a national reality. Here’s how the roadmap unfolds:

      • Phase 1 (2020–2025)
        • Develop high-power THz sources and detectors.
        • Begin testing hardware like modulators, waveguides, and amplifiers.
      • Phase 2 (2025–2035)
        • Create working prototypes using photonic-electronic integration.
        • Commercial-grade THz chipsets and modules development in India
      • Phase 3 (2035–2040)
        • Deploy short-range THz links for defense, aerospace, and industry.
        • Incorporate quantum key distribution for ultra-secure communications.

      The roadmap emphasizes a shift from theoretical work to functional THz systems, with a push toward smart manufacturing and defense applications.

      Key Benefits and Use Cases of Terahertz Technology

      • Key Benefits of Terahertz Technology

      One of the standout advantages of terahertz technology is its ability to deliver ultra-fast data speeds. With capabilities ranging from 100 gigabits per second to over a terabit, THz systems have the potential to support data-heavy operations like next-gen wireless networks, AI-driven analytics, and cloud-based automation. These high-speed links are especially valuable in scenarios where traditional fiber-optic or RF connections are impractical or too slow.

      Additionally, terahertz waves offer high-frequency operation with lower interference, resulting in cleaner, more efficient data transmission. Another major benefit is energy efficiency, since THz systems can transmit large volumes of data over short distances without needing significant power. Together, these advantages make terahertz communication an attractive option for industries looking to increase throughput while minimizing latency, especially in research, defense, and smart manufacturing environments.

      • Use Cases of Terahertz Technology in India

      i) In Aerospace and defense: Detecting cracks, delamination, or foreign materials in composite structures.

      ii) In Biomedical Imaging and Cancer Detection: Early-stage cancer diagnosis, burn assessment, and tooth decay imaging

      iii) In Next-Generation Wireless Communication (6G and beyond): High-speed, short-range wireless data transmission.

      iv) Indian pharmaceutical companies and research labs use THz for ensuring uniformity and quality.

      Why It Matters

      As India positions itself as a global tech and defense leader, terahertz technology could become a critical tool for high-speed, secure, and efficient data handling. The terahertz technology market worldwide is expected to expand rapidly over the next two decades, and India is taking early steps to claim a share.

      Real-world terahertz systems in India may first appear in defense sectors, where the stakes around speed and security are highest. But with the right infrastructure, commercial use could also become viable by 2040.

      Looking to stay ahead in high-speed communication? Orbis Systems continues to support advanced wireless technologies with custom test services designed to meet future-ready standards.

      Frequently Asked Questions

      1. What is terahertz technology?

      It refers to the use of electromagnetic waves in the 0.1 to 10 terahertz range for high-speed data transmission, imaging, and sensing applications.

      3. What is the terahertz technology market expected to look like?

      The Terahertz (THz) technology market is poised for exponential growth, driven by advancements in 6G communications, next-generation imaging systems, and the rise of smart manufacturing. In India, the next 5 to 10 years will be crucial for transitioning from research-centric efforts to real-world deployment and commercialization. Strategic investments, policy support, and indigenous technology development will play a key role in unlocking THz’s transformative potential across sectors

      4. How does terahertz imaging work?

      THz imaging uses non-ionising waves to see through materials like plastic or fabric. It’s useful for non-invasive scanning in security and healthcare.

      5. Can India achieve terahertz communication by 2040?

      Yes, India can achieve Terahertz communication by 2040 provided it sustains momentum in research and development, invests in indigenous manufacturing capabilities, actively participates in global standardization efforts, and establishes a robust regulatory and testing ecosystem. With coordinated action across academia, industry, and government, India is well-positioned to be a significant player in the global 6G and beyond landscape.

      分类
      Blogs

      What Can We Learn From Open RAN?

      ORAN, O-RAN, Open RAN. An emerging technical concept and business paradigm which is riding on such huge trends as virtualization and generic processing platforms, cloud native and open source, just to mention a few. It brings benefits that are diverse ranging from healthy business environment and optimized radio network performance to enhanced customer experience and vertical-specific applications. That is what you see in the media.

      Yet, the takeoff seems to take more time than envisioned in the early phases of Open RAN introduction. One may ask why if the advantages are so lucrative? At this stage it is not possible to rigourously analyze or measure the claimed benefits, let alone prove them correct. However it is becoming evident that wide scale deployment of Open RAN is not as easy as one could hope.

      First, there is the business domain. Open RAN appears to be somewhat late for 5G, particularly in developed markets, where initial 5G investments and deployments have already been made. This is not to say that 5G is ready, quite the contrary, as we will see it evolving through the 2020’s. Nevertheless, it is unlikely that the existing equipment will be replaced by Open RAN technology. Thus, the viable opportunity could be the so called greenfield markets. Examples include private networks, small cells, possibly on higher Frequency Range 2 bands and Fixed Wireless Access (FWA). And of course there are the less developed regions where 5G remains unopened. The challenge herein lies in the fact, that the business cases are more or less uncertain, perhaps excluding FWA in the more affluent countries.

      Related to business prospects, there are open questions regarding the Open RAN ecosystem. Evidently and quite openly, one of the goals is to break the current dominance of a few mobile network vendors. New aspirants include companies from all walks of communication industry. Some of them have their background in wireless and hardware development while others have focused around core networks and software. And naturally current second tier network vendors are interested in the opportunity.

      Here one cannot avoid stepping slightly into the technology field. Physical layer processing of wireless signals is calling for heavy-duty real-time processing which appears somewhat challenging for general purpose computing platforms. Subsequently some hardware acceleration is probably necessary. This leads to the need to avoid lock-in to a single or few processor vendors. And one cannot avoid the question of necessary learning curve for companies from the software domain.

      Role of the system integrator

      Open RAN also creates a completely new role: The system integrator. This is the party that brings components from different vendors together, verifies their functionality as an integrated network, and validates the performance. This is not a simple task requiring significant laboratory investment and disputes around responsibilities may be expected if something goes wrong in a live network. Therefore, system integrator is not necessarily the most attractive role in the ecosystem, albeit a critical one.

      Lastly, for Open RAN to fulfil its promise on performance, technical challenges must be taken seriously. Throughout the evolution of mobile networks from one generation to the next one, enhanced capabilities, performance and efficiency have been the central goals. The price for this has been the ever increasing complexity of basic technologies, network protocols and components as well as the whole network as a system.

      5G itself has introduced a new dimension to consider: Beam processing. This, combined with the move towards higher radio frequencies and wider signal bandwidths, means that building and verifying Open RAN functionality is not enough. One must also ensure that the network performance is on par with or better than with the traditional monolithic RAN approach. A new network component, the RAN Intelligent Controller, is being promoted as the tool for this but the jury is still out on this topic.

      Conclusion

      Having said all that, is there something we can conclude? Perhaps we can agree that Open RAN will assume a role in the 5G world. At the same time, we can speculate that this will not happen overnight but through a learning process of some years. We also come across an interesting question: What will this mean from 6G perspective.

      Standardization of 6G will likely start in 2025 or 2026, ITU will decide on guidelines for 6G frequency bands in 2027 and commercial 6G networks are expected towards the end of this decade. This looks like a feasible time frame to absorb the learnings from 5G Open RAN. Bearing in mind the trends stated in the beginning, perhaps openness of RAN technology and business will be among the guidelines for 6G. This could then be the direction in standardization, regulation and business creation from early on.

      So in summary one could ask: Perhaps 5G Open RAN is a prototype of 6G?


      Harri Posti
      PhD Telecommunications
      Business Development Manager
      Orbis Systems

      Are you interested in learning more about Orbis Systems? Feel free to contact us for further details.

      Contact us

      分类
      Blogs

      Showcasing Innovation: Orbis Systems at Japan Expo 2025

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      Key Points

      • Orbis Systems participated in Wireless Japan and Expo 2025 Osaka, showcasing advanced wireless test solutions and reinforcing its leadership role in future-ready infrastructure across the global technology landscape.
      • Expo 2025 Osaka offered Orbis Systems valuable visibility among global technology leaders, allowing them to align with international innovation themes and connect with tech companies seeking scalable testing solutions.
      • At the Nordic Pavilion, Orbis Systems shared Vision 2030 through expert sessions, and strategic dialogue, highlighting their commitment to sustainable, collaborative growth in next-generation wireless ecosystems.
      • Through keynotes and active engagement, Orbis Systems sparked new partnerships with Kyushu University and Nogata City, laying the foundation for future research, development, and deployment of advanced test technologies.

      When global technology leaders gather, opportunities for meaningful innovation follow. That’s exactly what unfolded as Orbis Systems participated in two key events in Japan, Wireless Japan in Tokyo and the Expo 2025 Osaka. Both platforms helped spark new conversations, deepen partnerships, and highlight the company’s role in shaping the future of wireless test solutions.

      Why Expo 2025 Osaka Matters to Tech Companies

      Expo 2025 Osaka is more than a world event; it’s a hub where over 150 nations, global technology pioneers, and millions of visitors come together. For tech companies, it offers unmatched visibility and the chance to align with visionary themes like “Designing Future Society for Our Lives.” Orbis Systems, representing Finland in the Nordic Pavilion, is using this stage to show how wireless test solutions can help create smarter, more connected futures.

      How Orbis Systems Benefits from Participating

      Joining Expo 2025 Osaka enables Orbis Systems to demonstrate its long-term commitment to future-ready infrastructure and collaborative innovation. Their presence isn’t just about visibility; it’s about impact. From presenting in Tokyo to engaging new contacts in Osaka, Orbis has extended its reach in Asia and laid the groundwork for ongoing partnerships.

      Building Momentum: From Tokyo to Osaka

      The journey started at Wireless Japan in Tokyo, where Orbis Systems delivered a well-received presentation at Birth Lab. With a full room and enthusiastic engagement, the team had productive conversations with new and existing partners. This momentum carried over to Expo 2025 Osaka, where Orbis continued to showcase its capabilities and strengthen its presence among global technology leaders.

      Highlighting Innovation in the Nordic Pavilion

      At the Nordic Pavilion in Osaka, Orbis Systems took center stage. Antti Laitala’s keynote speech drew attention, including interest from Kyushu University. These moments weren’t just symbolic, they were stepping stones toward deeper collaborations, including potential initiatives in Nogata City.

      A Strategic Approach to Tech Showcases

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      Expo 2025 Osaka gives tech companies the space to do more than display products; it’s about dialogue and direction. Orbis Systems used this opportunity to:

      • Demonstrate joint technology innovation with Japanese partners
      • Offer interactive demos of wireless test systems
      • Translate its Vision 2030 into real-world applications

      These sessions created a hands-on experience that showcased how scalable and sustainable testing environments are key to the future of global connectivity.

      Why Orbis Systems Stands Out

      Orbis Systems is not just showing up at events; it’s shaping the narrative. The company’s ability to turn meetings into partnerships, presentations into opportunities, and vision into action sets it apart. Expo 2025 Osaka serves as a clear marker of Orbis’s place among global technology innovators and forward-thinking tech companies.

      Final Thoughts

      Expo 2025 Osaka is a critical point of connection for tech companies operating in today’s global technology landscape. For Orbis Systems, it’s a chance to show what’s possible when innovation meets purpose. From Tokyo’s technical presentations to Osaka’s strategic showcases, Orbis continues to pave the way for smarter, more connected systems, today and tomorrow.

      Frequently Asked Questions

      1. What events did Orbis Systems attend in Japan?

      Orbis participated in Wireless Japan (Tokyo) and Expo 2025 Osaka (Nordic Pavilion).

      2. Who represented Orbis Systems?

      Antti Laitala, Yoko Keränen, Mr. Inagaki-san, and Mr. Hashimoto-san, as part of the Business Oulu delegation.

      3. What were the key outcomes?

      The team built new connections, deepened existing relationships, and gained strong leads through demos and discussions.

      4. What theme was highlighted at Expo 2025 Osaka?

      Orbis aligned with “Designing Future Society for Our Lives” and focused on wireless innovation and Vision 2030 goals.

      5. What future opportunities emerged?

      Early-stage conversations with Kyushu University and Nogata City hint at future partnerships in research and tech deployment.

      分类
      Blogs

      Reducing Time-To-Market with Advanced Telecom Test Systems

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      Key Points

      • Telecommunication test equipment helps reduce time-to-market by accelerating validation cycles for telecom networks and connected devices.
      • Advanced telecom testing solutions improve precision, minimize the need for retesting, and support emerging technologies such as 5G, IoT, and future wireless standards.
      • Orbis Systems delivers detailed telecom testing services to support various stakeholders in the telecom ecosystem.
      • Advanced telecom testing solutions improve precision, minimize the need for retesting, and support emerging technologies such as 5G, IoT, and future wireless standards.

      Rapid telecom advancements demand equally fast and reliable testing. Whether it’s for 5G networks, IoT integration, or antenna validation, getting products to market faster requires smarter solutions. Orbis Systems provides accurate, effective, and scalable testing services to telecom companies by utilizing our state-of-the-art telecommunication test equipment. Our goal is simple: to reduce time-to-market without compromising on quality.

      The Growing Demand for Faster Telecom Testing

      Operators, device makers, and R&D teams are facing increased challenges due to the rollouts of 5G, the expansion of IoT ecosystems, and constant updates in wireless technologies. These companies must test more products in less time while keeping up with rapidly shifting standards.

      Traditional testing methods can’t keep up with this pace. They are slow, resource-intensive, and often inconsistent. To meet these modern demands, businesses need reliable, efficient, and scalable testing services. Orbis Systems meets this need by providing advanced testing systems and expert services that help clients reduce time-to-market without compromising on quality.

      How Telecommunication Test Equipment Supports Rapid Testing

      Telecommunication test equipment encompasses a range of tools, software, and hardware used to evaluate the performance, reliability, and functionality of telecom products and networks. This includes everything from signal switching units and RF chambers to automated controllers and test management software.

      Our testing service helps simulate real-world conditions to verify that devices or network components perform as expected under stress, load, and variability. This level of testing precision is essential for reducing retesting, eliminating errors, and bringing telecom products to market faster.

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      Why Manual Testing Slows You Down

      While useful in the early stages of development, manual testing processes have significant limitations when speed and accuracy are crucial.

      Here’s why manual testing can slow your product down:

      • Time-Consuming: Manual setups and executions take significantly longer, slowing down overall development cycles.
      • Human Error: Inconsistent results and missed errors are common with human-led testing.
      • Low Repeatability: Reproducing test results with precision is difficult without automation.
      • Delayed Feedback: Slow turnaround increases costs and pushes back release timelines.

      As telecom networks grow more complex, relying solely on manual testing is no longer sufficient. To stay competitive, businesses need testing systems that deliver speed, scalability, and consistency without sacrificing accuracy

      Benefits of Using Advanced Telecom Testing Equipment

      Our telecom testing services are designed to offer measurable advantages for companies developing or operating in complex telecom environments. When you leverage advanced telecom solutions through Orbis, you gain access to

      • Faster Test Cycles: Automated systems run tests continuously, significantly reducing turnaround time.
      • High Accuracy: Sophisticated tools catch performance issues early and minimize false positives or missed faults.
      • Scalability: When testing one device or thousands at once, our testing systems can handle the load without additional time or cost.
      • Cost Reduction: Automation and streamlined workflows reduce manual labor, minimize errors, and cut operational expenses.

      How Orbis Systems Delivers Testing Solutions

      Orbis Systems provides end-to-end telecom testing services powered by proprietary, state-of-the-art test equipment. Unlike traditional hardware vendors, we focus on delivering fully managed, flexible, and scalable testing solutions tailored to each client’s needs.

      Our testing environments include modular setups that can be customized per project. Using automated signal switching units, RF testing chambers, and programmable logic controllers, we simulate real-world telecom network conditions. This enables us to validate everything from antenna performance to system interoperability and 5G signal integrity.

      Partner with Orbis Systems for Faster Market Readiness

      Reducing time-to-market is not just about faster testing; it’s about smarter testing. Partnering with Orbis Systems means gaining a reliable ally equipped with cutting-edge telecommunication test equipment, deep expertise, and scalable systems to accelerate the testing, validation, and deployment of your telecom solutions.

      Whether you’re developing new devices, expanding your network capabilities, or validating the performance of excess telecom equipment, we deliver precise, reliable, and scalable results.

      Frequently Asked Questions

      1. What is telecommunication test equipment?

      Telecommunication test equipment refers to the specialized tools, devices, and software used to evaluate, measure, and verify the performance, reliability, and functionality of telecom networks, devices, and systems

      2. How do your services reduce time-to-market?

      Our systems reduce manual labor, eliminate human errors, and provide rapid, scalable testing. This process helps reduce delays and allows you to launch faster.

      3. Can you test 5G, IoT, or other modern technologies?

      Yes. Our testing environments are fully equipped to handle 5G, Wi-Fi 6, and other emerging telecom technologies.

      4. What types of telecom networks can you test?

      We support testing for a wide range of telecom networks, including 4G, 5G, LTE, and Wi-Fi. Our systems can simulate complex network conditions to ensure your equipment performs reliably in real-world environments.

      5. Do I need technical knowledge to work with Orbis Systems?

      No. We work with technical teams, but our process is collaborative and transparent. Whether you’re in R&D or project management, we’ll guide you through every step of the testing process with clear communication and support.