Edge processing: How Qualcomm is helping build the industrial IoT

The Internet of Things (IoT) is stretching beyond our bodies, homes, and vehicles to include things never-before networked: equipment, machines, sensors, and more. As the industrial IoT (IIoT) expands, connecting everything everywhere, a continuous stream of data is being generated a whole lot of it. Cisco predicts that there will be more than 3X as much cloud traffic in 2020 (14.1ZB), compared to 2015 (2.9ZB). Because some of that data can’t and shouldn’t be sent to the cloud, manufacturers are looking to edge processing for alternative solutions. And that’s where Qualcomm Technologies comes in.

Spotlight

Zubie

Zubie is a connected vehicle services company focused on providing consumers and businesses relevant vehicle health, location, and safety information.

OTHER ARTICLES
Industrial IoT, IoT Security

Top 10 Tools for IoT Security Testing: Mitigating Cyber Threats

Article | July 12, 2023

Explore the IoT tools for security and maintenance. These IoT monitoring tools addresses cyber security and privacy issues, catering to a various users including industrialists & individuals. With the proliferation of interconnected devices in the Internet of Things ecosystem, ensuring robust security measures has become crucial to protect against cyber threats. The complexity and diversity of IoT systems pose unique challenges, making thorough security testing an essential practice. To address these challenges, various IoT development tools have emerged that enable organizations to assess and mitigate vulnerabilities in their IoT deployments. In this article, explore the top ten tools to secure IoT and IoT testing, equipping professionals and organizations with the means to identify and address potential security weaknesses, thus bolstering the overall security posture of their IoT infrastructure. 1. AWS IoT Device Defender AWS IoT Device Defender is one of the security IoT management tools, designed to protect and manage IoT devices and fleets. Its auditing capabilities and continuous monitoring enable users to assess their IoT resources' security posture, identify vulnerabilities, and address potential gaps. By leveraging machine learning models or defining custom device behaviors, it can monitor and detect malicious activities, such as traffic from suspicious IP addresses or unusual connection attempts. The tool provides security alerts for failed audits or behavior anomalies, allowing users to mitigate potential risks quickly. Built-in actions facilitate security issue resolution, including device certificate updates, quarantine, and policy replacements. AWS IoT Device Defender offers automation for security assessments, identification of attack vectors, analysis of historical device behavior, and alarm notifications through various AWS interfaces. 2. Dynamic Application Security Testing Appknox offers two robust mobile application security solutions: Automated Dynamic Application Security Testing (DAST) and Penetration Testing (PT). With Automated DAST, users can assess the security of their mobile apps in real time while running in their operational environment. The solution provides access to real devices, allowing users to replicate real-life interactions and identify security vulnerabilities. On the other hand, Appknox's Penetration Testing solution delivers reliable and thorough security assessments by expert security researchers. Users can request a manual pentest effortlessly, and the skilled team analyzes apps to identify and eliminate potential threats. The process includes identifying the tech stack, analyzing the threat landscape, setting up breakpoints, testing responses, detecting bugs, and performing advanced threat exploits. 3. Enterprise IoT Security Enterprise IoT Security is a comprehensive Zero Trust solution designed to address IoT devices' security challenges in modern enterprises. It helps eliminate implicit trust and enforces zero-trust principles through least privilege access, continuous trust verification, and continuous security inspection. With this solution, organizations can quickly discover and assess every IoT device, easily segment and enforce the least privileged access, and protect against known and unknown threats. By simplifying operations, Enterprise IoT Security enables faster deployment, with a 15-time faster deployment than other solutions. The solution offers better and faster protection for IoT devices, delivering 70 times more security efficiency and 20 times speedier policy creation. 4. Azure Sphere Azure Sphere is a secure IoT platform offered by Microsoft that allows businesses to create, connect, and maintain intelligent IoT devices. It provides end-to-end security, from the silicon level to the operating system (OS) to the cloud. With Azure Sphere, organizations can securely connect, manage, and protect existing and new IoT devices. The platform offers over-the-air updates, integration with IoT platform services, and continuous security improvements. It helps businesses deploy real-time security patches, maintain device operations, and accelerate time to market. Azure Sphere incorporates essential security properties and offers comprehensive security and compliance. 5. Microsoft Defender for IoT Microsoft Defender for IoT is a comprehensive security solution that provides real-time asset discovery, vulnerability management, and threat protection for the Internet of Things and industrial infrastructure, including ICS/OT environments. It offers context-aware visibility into IoT and OT assets, enabling organizations to manage their security posture and reduce attack surfaces based on risk prioritization. With behavioral analytics, it detects and responds to attacks across IT and OT networks. Integrated with SIEM/SOAR and XDR tools, it delivers unified security and leverages threat intelligence for automatic response. Microsoft Defender for IoT is designed to meet the unique security needs of various industries and supports complete endpoint protection when combined with Defender for Endpoint. 6. IoT Security Forescout offers an IoT security solution that automates security measures and provides visibility for every device connected to the network. Their zero-trust approach ensures complete device visibility, proactive network segmentation, and least-privilege access control for IoT, OT, IoMT, and IT devices. The platform classifies and monitors devices in real time, identifies weak credentials, and enforces strong passwords. It also enables dynamic network segmentation and automates zero trust policy orchestration across multi-vendor environments. Forescout's solution efficiently manages asset inventory and device lifecycle and has been proven to scale for enterprise-level deployments. 7. ThingSpace The ThingSpace Platform for IoT offers a comprehensive set of iot tools and devices for developing and managing the lifecycle of IoT devices. It enables connectivity management at scale, allowing secure activation on the Verizon network and providing features to troubleshoot, locate, and manage IoT devices. Whether at the prototype stage or ready to scale for enterprise-level deployment, ThingSpace provides the necessary resources for IoT solution development and management. As a Magic Quadrant Leader for IoT Connectivity Services, ThingSpace offers solutions for software management, device readiness, and overall device lifecycle management. Businesses can collaborate with technology leaders through their Executive Briefing Program to achieve their specific goals and gain a competitive edge. 8. Verimatrix The Verimatrix Secure Delivery Platform offers a unified user experience by combining cybersecurity and anti-piracy services into a comprehensive cloud ecosystem. It provides media companies, content owners, streaming providers, and broadcast operators with a single pane of glass experience for securing content, applications, and devices. Key offerings include Streamkeeper Multi-DRM for cloud-based digital rights management, Verimatrix App Shield for zero code hardening of mobile applications, Verimatrix Video Content Authority System (VCAS) for real-time monitoring, and Streamkeeper Counterspy for cybersecurity and anti-piracy solutions. The platform also facilitates partner integrations, enabling seamless onboarding and revenue preservation. 9. Trustwave Trustwave's Managed IoT Security provides comprehensive solutions to secure the Internet of Things (IoT) and minimize the risk of compromise. With expertise from Trustwave SpiderLabs, it offers knowledge about network assets, identifies weaknesses in applications, servers, APIs, and cloud clusters, and enables secure IoT deployment with quick validation of fixes. This reduces the risk of compromised devices, which can lead to various threats, including DoS attacks, privacy violations, and data theft. Trustwave's services cater to IoT developers/manufacturers, offering product security reviews, testing, and incident readiness services. For IoT implementers, it provides managed security services and testing to safeguard deployments and associated data. 10. ARMIS Agentless Device Security Platform The ARMIS Agentless Device Security Platform supports implementing the Critical Security Controls(CIS) framework. Developed by the Center for Internet Security (CIS), these controls are periodically updated by a global community of experts. ARMIS aligns with the CIS Controls and provides a comprehensive set of security controls to address the framework's requirements. The platform caters to enterprises of all sizes and offers different implementation groups based on risk profile and available resources. With ARMIS, organizations can enhance their cybersecurity posture and implement the CIS Controls effectively. Final Thoughts Security is a major concern in IoT tools and software due to the proliferation of connected devices, the diverse and complex nature of IoT ecosystems, the need to protect data privacy and confidentiality, the lack of standardization, the long lifecycles of devices, and the distributed and scalable nature of IoT deployments. Addressing these concerns is crucial to prevent unauthorized access, data breaches, and ensure the integrity and privacy of IoT data. The IoT tools and technologies discussed in this article represent some of the top options for conducting comprehensive IoT security testing. By leveraging these tools, professionals and organizations can proactively identify and address vulnerabilities in their IoT systems, ensuring their data and devices' confidentiality, integrity, and availability. By incorporating these tools into their security practices, organizations can bolster their IoT security strategy and enhance their ability to protect against emerging threats in the dynamic IoT landscape.

Read More
Industrial IoT, IoT Security

Understanding IoT Data Protocols: Why Do They Matter for IoT Data?

Article | July 11, 2023

Learn more about IoT data protocols and what makes them essential for a cohesive IoT ecosystem. This article will provide a detailed view of data protocols and their importance for modern businesses. 1 Significance of IoT Data Protocols for Business Operations IoT ecosystems form an integral part of many businesses today, and IoT data protocols serve as the foundation for seamless communication and data exchange between connected devices. IoT protocols ensure the integrity and reliability of data, empowering businesses to make informed decisions, optimize operations, enhance productivity, and drive innovation. With standardized and secure IoT protocols and standards, companies can achieve efficient data transmission and allow for scalability across diverse IoT ecosystems. Understanding and leveraging the right protocols is essential for businesses to benefit from the full potential of their IoT investments and gain a competitive edge in today's interconnected world. 2 Understanding IoT Data Protocols IoT data protocols are standardized rules and formats that ensure efficient and secure data transmission for efficient IoT communication. By adhering to established protocols such as MQTT, CoAP, and AMQP, businesses can maintain interoperability, scalability, and robust data transmission of IoT data, ensuring efficient data storage and management for their IoT ecosystem. This, in turn, empowers organizations to monitor and control critical processes in real-time and make informed decisions. 2.1 Role of IoT Data Protocols in the IoT Ecosystem The seamless functioning of an organization's IoT ecosystem relies on the pivotal role played by IoT data protocols. These protocols, serving as the communication backbone, enable secure transfer and efficient data processing, thereby facilitating the seamless exchange of information within the IoT network. Consequently, businesses operating within the IoT sphere can harness the power of reliable data communication enabled by these protocols to unlock insights that drive innovation. IoT data protocols serve as the vital link that fuels the interconnected landscape of IoT devices, elevating the efficiency and efficacy of businesses as they navigate the complex web of IoT technologies and leverage its immense potential. 2.2 Overview of Common IoT Data Protocols The IoT data protocols come with their own set of applications and challenges. Understanding each protocol's individual use cases will help businesses set up and scale their IoT device ecosystems. MQTT (Message Queuing Telemetry Transport): MQTT is a lightweight and efficient protocol designed for low-power devices and unreliable networks. It uses a publish-subscribe model, making it ideal for IoT applications where bandwidth and power consumption are crucial factors, such as remote monitoring and control systems. CoAP (Constrained Application Protocol): For resource-constrained IoT devices, CoAP is designed to enable smooth communication over the Internet. It uses a client-server model and is suitable for IoT applications where devices have limited processing power and memory, such as smart home automation, environmental monitoring, and healthcare systems. HTTP (Hypertext Transfer Protocol): Although primarily designed for web applications, HTTP is also used in IoT systems for data transmission. The ubiquity and familiarity of HTTP make it a widely supported communication protocol. As a result, it is suitable for IoT devices that require high-level interoperability in applications that involve cloud integration, data analytics, and web-based control interfaces. AMQP (Advanced Message Queuing Protocol): AMQP is a flexible messaging protocol ensuring reliable, secure, and interoperable communication between IoT devices and back-end systems. It supports both publish-subscribe and point-to-point messaging models, making it suitable for IoT scenarios involving complex routing, large-scale deployments, and enterprise integrations. Zigbee: Zigbee is a wireless protocol designed specifically for low-power, short-range communication in IoT networks. It operates on the IEEE 802.15.4 standard and is known for its energy efficiency and mesh networking capabilities, leading to its widespread adoption in home automation, intelligent lighting, and industrial control systems. 3 Considerations for Choosing the Right IoT Data Protocol Selecting a suitable IoT data protocol is essential to maintain smooth interoperability and a unified IoT ecosystem. Compatibility with existing infrastructure is crucial for seamless integration and cost-effective implementation. Security measures must also be robust to protect sensitive data from unauthorized access and potential breaches. Additionally, scalable and flexible data protocols in IoT are vital to accommodate future growth and evolving business requirements. Furthermore, the protocol's reliability and efficiency in transmitting data should align with the use case of IoT systems. Finally, considering the protocol's industry adoption and standardization level will also help minimize risks and enhance interoperability. 4 In Summary IoT data protocols play a significant role in facilitating efficient and secure business operations within the IoT ecosystem. By learning more about the use cases of the most common protocols in the industry, businesses can consider factors such as compatibility, security, scalability, and reliability while choosing the most suitable option for their business. As IoT systems grow, more complex and reliable data protocols will emerge, paving the way for enhanced connectivity, interoperability, and transformative opportunities across various industries.

Read More
Enterprise Iot

Importance of Big Data for IoT in Businesses

Article | May 11, 2023

Discover the crucial role of big data capabilities in unlocking the potential of IoT for businesses. This article covers their synergy, challenges, and value in decision-making and revenue generation. Contents 1 Why Big Data and IoT Matter for Businesses 2 Understanding Synergy of Big Data and IoT 2.1 How IoT generates Big Data 2.2 Challenges of Processing Big Data from IoT Devices 2.3 Importance of Big Data in IoT Applications 3 The Value of Big Data and IoT for Businesses 3.1 Improved Decision-making for Businesses 3.2 Generate New Revenue Streams 4 Final Thoughts 1. Why Big Data and IoT Matter for Businesses The internet of things (IoT) is connecting all types of physical assets to the internet, from smart wearables that track wearer’s vitals to connected industrial units that can report any malfunctions automatically. Big data in IoT is a natural outcome with the growth of IoT devices, with an immense surge in the amount of data being generated. There are currently over 13 billion connected IoT devices worldwide. (Source – Techjury) This data is extremely valuable to businesses as it can help streamline operations, predict trends, and diagnose device issues. Certain functions of IoT devices that are crucial for modern businesses, such as enabling predictive maintenance, depend on the analysis of the data generated every second. However, to maximize the ROI from their IoT ecosystem, businesses must first manage and process the vast amounts of unstructured data they produce. This is where big data capabilities come in. 2. Understanding Synergy of Big Data and IoT Big data and the IoT are fundamentally different concepts, but are closely connected. Big data is a term that is used for a great amount of data that is characterized by volume, velocity, variety and veracity (or the ‘trustworthiness’ of data). The IoT is a term for physical devices or objects linked to the internet using an assortment of technologies. Understanding the synergy between these two technologies will be critical for businesses looking to leverage their full potential. 2.1 How IoT generates Big Data IoT is one of the primary drivers of big data growth. The vast number of interconnected devices in the IoT ecosystem generates a massive amount of data every second. This data includes information on user behavior, device performance, and environmental conditions, among others. The nature of this data makes it challenging to store, process, and analyze using traditional data management tools. This is where big data technologies such as Hadoop, Spark, and NoSQL databases come in, providing the ability to manage massive amounts of data in near-real-time, enabling critical applications of big data in IoT. For businesses, processing IoT data is synonymous with processing big data, due to the nature of the data generated by an IoT ecosystem. 2.2 Challenges of Processing Big Data from IoT Devices IoT data processing is a complex and challenging task due to several reasons. Firstly, the sheer volume of data generated by these devices is enormous and is only increasing. This requires a robust infrastructure and specialized tools to store, manage, and analyze the data efficiently. This data is also generally unstructured, heterogeneous, and complex, making it difficult to process using traditional data management and analysis techniques. Moreover, it is often noisy and may contain errors or outliers, which can impact the accuracy of data analysis. Businesses also face a challenge when securing such vast amounts of data. Since IoT devices collect sensitive information such as personal and financial data at scale, it is critical to ensure that data is encrypted, transmitted securely, and stored safely. Additionally, IoT devices often operate in remote locations with limited connectivity, making it challenging to transmit data to the cloud for storage and analysis. As IoT devices continue to proliferate and generate increasingly large amounts of data, businesses must adopt big data technologies to gain actionable insights from this data. 2.3 Importance of Big Data in IoT Applications There are several use cases of the IoT where processing large amounts of data is essential. It plays a critical role in IoT applications, providing businesses with valuable insights that can be used to optimize processes, reduce costs, and improve overall efficiency. By collecting and analyzing large amounts of data from IoT devices, businesses can gain a better understanding of customer behavior, machine performance, and other critical metrics. For example, big data in IoT can be used to identify patterns in customer behavior, allowing businesses to tailor their marketing efforts and improve customer engagement. Additionally, IoT devices can be used to collect data on machine performance, allowing businesses to identify potential problems before they occur, minimize downtime, and optimize maintenance schedules. The value of big data in IoT applications lies in its ability to provide businesses with real-time insights that can be used to drive growth, reduce costs, and improve overall efficiency. 3. The Value of Big Data and IoT for Businesses Businesses looking to integrate big data in IoT must first consider their data storage and analytics capabilities. By understanding the value of big data technology in capturing and analyzing IoT-generated data, businesses can unlock insights that can help them make better decisions, optimize processes, and create new business opportunities. 3.1 Improved Decision-making for Businesses IoT and big data technologies offer businesses a wealth of data that can be used to make better-informed decisions. By integrating IoT sensors and devices with their operations, businesses can collect real-time data on customer behavior, operational performance, and market trends. This data can then be analyzed using big data analytics tools to generate valuable insights that can inform decision-making. For example, operational data can be analyzed to identify inefficiencies and areas for optimization, helping businesses reduce costs and improve efficiency. With the right data storage and analytics capabilities, businesses can leverage the power of IoT and big data to gain a competitive advantage and make better-informed decisions that drive growth and success. 3.2 Generate New Revenue Streams By leveraging the vast amount of data generated by IoT devices and analyzing it with big data analytics tools, businesses can gain insights into customer behavior, market trends, and operational performance. These insights can be used to create new revenue streams and business models, such as subscription-based services, pay-per-use models, and predictive maintenance services. For example, IoT sensors can be used to collect data on equipment performance, allowing businesses to offer predictive maintenance services that help prevent equipment breakdowns and reduce downtime. Similarly, customer data can be analyzed to identify new revenue opportunities, such as personalized product recommendations and targeted advertising. With the right strategy and investment in IoT and big data technologies, businesses can unlock new revenue streams and create innovative business models that drive growth and success. 4. Final Thoughts Big data in IoT is becoming increasingly important for businesses, and the future prospects are bright. As IoT continues to grow and generate more data, businesses that can effectively analyze it will gain a competitive advantage, leading to increased efficiency, reduced costs, and higher ROI. To fully realize the benefits of IoT, businesses must develop big data analytics and IoT devices in tandem, creating a feedback loop that drives continuous improvement and growth. By embracing these technologies, businesses can make data-driven decisions and unlock new insights that will help them thrive in the years ahead.

Read More

How 5G Will Unlock Unseen Opportunities in Industrial IoT

Article | April 27, 2020

Manufacturing industry or the Industrial Internet of Things has been one of the driving verticals for development of 5G technologies. Wide 5G deployement for Industrial IoT has long been in the pipeline but we might expect it to be a reality very soon. The true success of 5G depends on the verticals as trends suggest that that Industrial IoT alone will triple the number of needed base stations globally. And many verticals will need efficient wireless connectivity to become successful. 5G has features that are specifically designed to address the needs of vertical sectors, such as network slicing and URLLC. The ultra-reliable low latency communications and massive machine type communications required by the IIoT will soon be realized. Table of Contents: How Will 5G Impact Industrial IoT? 5G Accelerations for IIoT Industrial 5G How Will 5G Benefit Industrial IoT? IoT is a B2B application and users just want to get actionable data from their sensors and not worry about whether it’s old data or unreliable data. I think 5G changes this dynamic significantly over the long term by standardizing and simplifying the experience and interactions, and possibly engaging more of the industry to help solve IoT’s problems but also improve the total experience. - Anshel Sag, analyst at Moor Insights & Strategy • Data-Transfer Speeds Any IoT is said to be commercially successful depending on how fast it can set up communications with other IoT devices, software based websites or applications, phones, and tablets. 5G promises exactly all of this with significant increase in transfer speeds. 5G is 10x faster than its LTE counterparts and allows IoT devices to communicate and share data faster than ever. All IoT devices will benefit from the faster speed of 5G with reduced lag and improved sending and receiving of data and notifications between connected devices. • Greater Network Reliability 5G networks also offer more reliable and stable connection which is extremely important for any IoT including devices like locks, security cameras and monitoring systems that depend on real-time updates. With reliable connectivity consumers will be the greater beneficiary. It is however, imperative for manufactures to trust and invest in 5G compatible devices to reap the benefits of high-speed connectivity, very low latency, and a greater coverage that will arrive with the next generation network. READ MORE:How Will the Emergence of 5G Affect Federated Learning? 5G Accelerations for IIoT • Diversity in Industrial IoT The opportunities that industrial IoT bring with is varied and its used cases span the spectrum from indoor to outdoor, less demanding to mission-critical, data rate from dozens of bps to gbps, device motion from fixed to mobility, and power source from button battery to high voltage. Predictive maintenance, smart metering, asset tracking, and fleet management are some of the commonly known opportunities for IIoT, which be extended further by 5G through continued diversity and expansion. • 5G Inspires Untapped Frontiers Industrial IoT application areas such as mobile robot control in production automation and autonomous vehicles in open pit mining require wide mobility, low latency and mission-critical reliability. They rely on wireless access at 50ms to 1ms latency and service reliability from 5 nines to 6 nines. Though 4G/LTE has attempted to address these areas of IIoT application it has failed due to unsatisfactory performance. With ultra-reliable and low latency connection, 5G will take industrial IoT to unconquered spaces. • Managing the Enterprise 5G Network Typically, enterprise IT is responding to the business demand from Operational Technology (OT) and mandates security, integration, visibility, control, and compatibility. In this scenario, 5G is not about “what,” but about “how”. IT needs to consider the right approach to bring 5G to the enterprise and decide whether to co-manage with the service provider (SP) or self-manage. The experience of IT in managing Industrial Ethernet and Wi-Fi may not hold when it comes to 5G. IT will likely require OT’s partnership to address complexity, security, integration, and other new challenges that 5G presents. Industrial 5G The potential for industrial 5G huge as it enables whole new business models. Industrial IoT has a core requirement of the ability to connect sensors, devices, software applications, production process, workers and consumers. The connectivity requires to be seamless vertical and horizontal integrations of all layers of automation pyramids that increases operational efficiency of the plant floor and the supply chain by optimal use of data, information and analytics. This can be improved by five key elements: • Improved Connectivity • Availability • Low Latency • Flexibility • Speed Industrial 5G will impact these areas of the manufacturing industry to guide the success of Industrial IoT. Industrial 5G will play a key role in helping industrial users achieve the goals of Industrial IoT. 5G offers wireless communications services with reduced latency, increased connection density, and improved flexibility compared to the current 4G generation. 5G technology has a theoretical downlink peak speed of 20 Gbps (gigabits per second), which is about 20 times faster than the current generation. The key is to start building IoT devices with broadly adopted operating systems, built-in security all the way down to the silicon, verifiable and updatable firmware, and mainstream application development tooling. - Anshel Sag, analyst at Moor Insights & Strategy The push and pull in achieving 5G success in IoT will be there until technology providers and end users work together to set up a consensus on standardization. The success will also depend on best-of-breed approach allowing the introduction of new technology over the lifecycle. Software and system integration will also be important attributes to a successful 5G deployment. READ MORE:How Will IoT Revolutionize Pharmaceutical Manufacturing?

Read More

Spotlight

Zubie

Zubie is a connected vehicle services company focused on providing consumers and businesses relevant vehicle health, location, and safety information.

Related News

Industrial IoT

Casa Systems Unveils New AurusXT 5G Industrial IoT Router Series Featuring the World’s First Dynamic Slicing Support

Casa Systems | January 10, 2024

Casa Systems (Nasdaq: CASA), provider of innovative access network solutions serving customers worldwide, today announced the launch of the first solution in its AurusXT 5G Industrial IoT (IIoT) Series, the NTC-500 5G IIoT router, which leverages the speed and coverage of a 5G network to provide high-speed Ethernet-to-cellular connectivity. Casa’s NTC-500 is the first 5G IIoT router to support dynamic network slicing capabilities, allowing operators to provide new and tailored services to their enterprise customers. Casa’s AurusXT Series will offer a range of 5G IIoT devices designed to deliver reliable connectivity to a broad range of both fixed and mobile use cases. The NTC-500 is the first of the AurusXT Series to disrupt the IIoT market with a cost-effective 5G IIoT Router that utilizes the speed and coverage of a 5G Sub-6 GHz network to deliver a fast and reliable connection to machines, equipment, and vehicles. Casa’s industry-first and proprietary 5G Dynamic Slicing Technology sets the NTC-500 apart from every other IIoT router on the market. Other 5G IIoT routers are limited to static slicing, forcing end users to endure labor- and time-intensive manual, on-site reconfigurations whenever they want to make a slicing change. Casa’s Dynamic Slicing Technology empowers mobile operators to unlock new revenue streams by allowing their customers to flexibly establish and rescind network priority on demand. “The proliferation of 5G networks coupled with the sunset of global 3G networks has created a groundswell of demand for 5G IIoT devices,” said Steve Collins, SVP of Access Devices, Casa Systems. “Our AurusXT Series is designed to deliver cost-effective 5G IIoT solutions that will address most use cases. With our dynamic network slicing capabilities, mobile operators will be able to unlock new revenue streams by offering tailored service plans to meet their enterprise customers’ individual requirements.” IIoT routers can be found in installations around the world – wherever Ethernet-to-cellular connectivity is in demand – from remote security cameras in industrial sites or on roadways, to digital signs in shopping malls or other public venues, to standalone ticketing and other vending machines, to anywhere an IIoT device in any industry needs wireless connectivity to transmit data. Enterprises facing the inescapable sunsetting of 3G technology now have a cost-effective and future-proof option for upgrading the hundreds, thousands, or even tens of thousands of IIoT routers within their domain. By opting to deploy Casa’s NTC-500, operators can bypass the adoption of 4G devices and minimize costly truck rolls to replace both 3G and 4G IIoT routers. The NTC-500 supports the latest 3GPP Release 16 features, including 5G Non-standalone (NSA) and 5G Standalone (SA) with failover to 4G LTE. This ensures it will not become obsolete when 4G technology phases out, minimizing the operational impact of updating hardware. The NTC-500 is compatible with both 4G and 5G, enabling customers to enjoy the benefits of 5G with the added assurance that existing 4G devices will deliver the best possible performance. Casa Systems is currently welcoming new resellers globally. Resellers or system integrators interested in becoming a Casa Systems IIoT device reseller are encouraged to contact Casa at https://www.casa-systems.com/. About Casa Systems Casa Systems, Inc. (Nasdaq: CASA) is a next-gen technology leader that supports mobile, cable, and wireline communications services providers with market leading solutions. Casa’s virtualized and cloud-native software solutions modernize operators’ network architectures, expand the range of services they can offer their consumer and commercial customers, accelerate time to revenue, and reduce the TCO of their network infrastructure and operations. Casa’s suite of open, cloud-native network solutions unlocks new ways for service providers to quickly build flexible networks and service offerings that maximize revenue-generating capabilities. Commercially deployed in more than 70 countries, Casa Systems serves over 475 Tier 1 and regional service providers worldwide. For more information, visit http://www.casa-systems.com/.

Read More

Industrial IoT

Comcast and Broadcom to Develop the World’s First AI-Powered Access Network With Pioneering New Chipset

Business Wire | October 23, 2023

Comcast and Broadcom today announced joint efforts to develop the world’s first AI-powered access network with a new chipset that embeds artificial intelligence (AI) and machine learning (ML) within the nodes, amps and modems that comprise the last few miles of Comcast’s network. With these new capabilities broadly deployed throughout the network, Comcast will be able to transform its operations by automating more network functions and deliver an improved customer experience through better and more actionable intelligence. Additionally, the new chipset will be the first in the world to incorporate DOCSIS 4.0 Full Duplex (FDX), Extended Spectrum (ESD) and the ability to run both simultaneously, enabling Internet service providers across the globe to deliver DOCSIS 4.0 services using a toolkit with technology options to meet their business needs. DOCSIS 4.0 is the next-generation network technology that will introduce symmetrical multi-gigabit Internet speeds, lower latency, and even better security and reliability to hundreds of millions of people and businesses over their existing connections without the need for major construction of new network infrastructure. On October 12, Comcast announced that it will begin to introduce the first customers in the world to Internet services powered by DOCSIS 4.0 using FDX. While the company will continue to leverage FDX, the collaboration with Broadcom will provide Comcast and other operators with additional options in the pursuit of delivering the best possible connectivity experience. The Xfinity 10G Network leverages the latest advancements in edge compute, digital optics and real-time, actionable telemetry to meet and exceed our customers’ constantly evolving connectivity needs, said Elad Nafshi, Chief Network Officer, Comcast Cable. With this new Unified DOCSIS4 chipset from Broadcom, we can broadly deploy transformational AI network capabilities alongside symmetrical multi-gig speeds. FDX is the best technology for Comcast, but this groundbreaking unified chipset will provide the entire industry with options when upgrading their nodes, amps, and cable modems for DOCSIS 4.0. The new end-to-end chipsets will be the industry’s first to incorporate AI and ML capabilities that will transform the operations and customer experience functions by: Making smarter network performance decisions using network diagnostics insights produced by both local and cloud AI. Enhanced monitoring and issue detection using bandwidth-efficient telemetry data. Transforming network maintenance of the network using real time issue localization plus predictive and self-healing network intelligence. Protecting network facilities and customers with improved cybersecurity intrusion detection. Assisting customers more effectively through local and cloud-based AI. Monitoring home IoT devices for connectivity disruptions. All these capabilities, and more, are achieved while reducing network latency and insulating customer data to ensure the utmost privacy standards. “By enabling a toolkit that includes FDX, ESD or both simultaneously, this new Unified DOCSIS4 chipset incorporates the advantages of both technologies and will enable economies of scale as well as a common retail modem for the industry,” said Rich Nelson, Senior Vice President and General Manager, Broadband Video Group, Broadcom. “The edge network and in-home capabilities of this chipset will improve network intelligence and reliability to create an improved broadband experience with enhanced privacy protection and cyber security for the consumer.” Comcast and Broadcom are designing and building the new chipset based upon CableLabs’ DOCSIS 4.0 specifications. The companies have a history of working together to introduce innovations that have pushed the industry to the next generation of connectivity. In 2021, Comcast conducted the world’s first full duplex multi-gigabit symmetrical test on Broadcom-built silicon. In January 2022 the companies tested the first Full Duplex DOCSIS 4.0 system-on-chip (SoC) cable modem that delivered symmetrical speeds faster than 4 Gbps. Later that year, Comcast successfully tested the final technical component of necessary to deliver multi-gig symmetrical speed powered by DOCSIS 4.0 throughout its network with 10G smart amps built on a Broadcom-developed reference design. The companies expect to begin trials early in 2024 and to begin deploying the new chipset in live networks before the end of the same year.

Read More

Enterprise Iot

Tavant Unveils Data Beats™: A Data-Driven Ecosystem Built for Fintechs and Financial Institutions to Harness Data Insights

Business Wire | October 20, 2023

Tavant, Silicon Valley’s leading digital lending solutions provider, today announced at the MBA's Annual Convention & Expo in Philadelphia, the launch of Data Beats™, a groundbreaking data platform that promises to redefine the financial services landscape. Built to inform, provide insights, act, recommend, and predict, Data Beats ushers in a new era of data-driven intelligence for the industry. This versatile platform empowers businesses to harness the power of their data and maximize its value, effectively taking the stress out of data management. Key benefits of Data Beats include: Provides actionable data insights that work for your business; Analyzes data from various aspects of your operations; Adapts and learns from your data to provide real-time recommendations; and Looks into the future, learns and predicts trends. Data Beats is a platform offering within Tavant's banking and financial services suite of technology products. Data Beats is set to serve as the analytics and IoT engine for the financial services industry, initially focusing on mortgage and home equity products. Tavant plans to extend this robust data ecosystem to all consumer loans and banking products, making it a comprehensive solution for financial institutions. With Data Beats, Tavant empowers financial institutions towards proactive rather than reactive operations by incorporating generative AI to prompt users on the best course of action. This revolutionary approach allows the platform to offer precise recommendations for loan officers, consumers, processors, and underwriters, enhancing the overall efficiency of the lending process. Abhinav Asthana, Fintech Product Business and Growth Leader at Tavant said, Tavant's mission is to stay at the forefront of innovation and to be the engineering partner of choice in the financial services industry. Data Beats exemplifies our commitment to providing our customers with an advanced platform that accelerates their vision to transform into a data-first organization. We are proud to launch this platform, which brings insights, intelligence, and efficiency to the heart of the lending process. Data Beats has already started demonstrating its value within Tavant's existing customer base by enhancing and automating the home buying experience. By consolidating data from various stages of the customer journey, from acquisition to servicing and beyond, Data Beats provides invaluable insights that can be used to predict future behavior, optimize operations, and improve overall business performance. The system's foundation, the data lake, can ingest a wide range of data inputs, limited only by the specific business problem it aims to solve. This flexibility positions Data Beats to become a game-changing tool for a wide range of industries beyond mortgage and lending.

Read More

Industrial IoT

Casa Systems Unveils New AurusXT 5G Industrial IoT Router Series Featuring the World’s First Dynamic Slicing Support

Casa Systems | January 10, 2024

Casa Systems (Nasdaq: CASA), provider of innovative access network solutions serving customers worldwide, today announced the launch of the first solution in its AurusXT 5G Industrial IoT (IIoT) Series, the NTC-500 5G IIoT router, which leverages the speed and coverage of a 5G network to provide high-speed Ethernet-to-cellular connectivity. Casa’s NTC-500 is the first 5G IIoT router to support dynamic network slicing capabilities, allowing operators to provide new and tailored services to their enterprise customers. Casa’s AurusXT Series will offer a range of 5G IIoT devices designed to deliver reliable connectivity to a broad range of both fixed and mobile use cases. The NTC-500 is the first of the AurusXT Series to disrupt the IIoT market with a cost-effective 5G IIoT Router that utilizes the speed and coverage of a 5G Sub-6 GHz network to deliver a fast and reliable connection to machines, equipment, and vehicles. Casa’s industry-first and proprietary 5G Dynamic Slicing Technology sets the NTC-500 apart from every other IIoT router on the market. Other 5G IIoT routers are limited to static slicing, forcing end users to endure labor- and time-intensive manual, on-site reconfigurations whenever they want to make a slicing change. Casa’s Dynamic Slicing Technology empowers mobile operators to unlock new revenue streams by allowing their customers to flexibly establish and rescind network priority on demand. “The proliferation of 5G networks coupled with the sunset of global 3G networks has created a groundswell of demand for 5G IIoT devices,” said Steve Collins, SVP of Access Devices, Casa Systems. “Our AurusXT Series is designed to deliver cost-effective 5G IIoT solutions that will address most use cases. With our dynamic network slicing capabilities, mobile operators will be able to unlock new revenue streams by offering tailored service plans to meet their enterprise customers’ individual requirements.” IIoT routers can be found in installations around the world – wherever Ethernet-to-cellular connectivity is in demand – from remote security cameras in industrial sites or on roadways, to digital signs in shopping malls or other public venues, to standalone ticketing and other vending machines, to anywhere an IIoT device in any industry needs wireless connectivity to transmit data. Enterprises facing the inescapable sunsetting of 3G technology now have a cost-effective and future-proof option for upgrading the hundreds, thousands, or even tens of thousands of IIoT routers within their domain. By opting to deploy Casa’s NTC-500, operators can bypass the adoption of 4G devices and minimize costly truck rolls to replace both 3G and 4G IIoT routers. The NTC-500 supports the latest 3GPP Release 16 features, including 5G Non-standalone (NSA) and 5G Standalone (SA) with failover to 4G LTE. This ensures it will not become obsolete when 4G technology phases out, minimizing the operational impact of updating hardware. The NTC-500 is compatible with both 4G and 5G, enabling customers to enjoy the benefits of 5G with the added assurance that existing 4G devices will deliver the best possible performance. Casa Systems is currently welcoming new resellers globally. Resellers or system integrators interested in becoming a Casa Systems IIoT device reseller are encouraged to contact Casa at https://www.casa-systems.com/. About Casa Systems Casa Systems, Inc. (Nasdaq: CASA) is a next-gen technology leader that supports mobile, cable, and wireline communications services providers with market leading solutions. Casa’s virtualized and cloud-native software solutions modernize operators’ network architectures, expand the range of services they can offer their consumer and commercial customers, accelerate time to revenue, and reduce the TCO of their network infrastructure and operations. Casa’s suite of open, cloud-native network solutions unlocks new ways for service providers to quickly build flexible networks and service offerings that maximize revenue-generating capabilities. Commercially deployed in more than 70 countries, Casa Systems serves over 475 Tier 1 and regional service providers worldwide. For more information, visit http://www.casa-systems.com/.

Read More

Industrial IoT

Comcast and Broadcom to Develop the World’s First AI-Powered Access Network With Pioneering New Chipset

Business Wire | October 23, 2023

Comcast and Broadcom today announced joint efforts to develop the world’s first AI-powered access network with a new chipset that embeds artificial intelligence (AI) and machine learning (ML) within the nodes, amps and modems that comprise the last few miles of Comcast’s network. With these new capabilities broadly deployed throughout the network, Comcast will be able to transform its operations by automating more network functions and deliver an improved customer experience through better and more actionable intelligence. Additionally, the new chipset will be the first in the world to incorporate DOCSIS 4.0 Full Duplex (FDX), Extended Spectrum (ESD) and the ability to run both simultaneously, enabling Internet service providers across the globe to deliver DOCSIS 4.0 services using a toolkit with technology options to meet their business needs. DOCSIS 4.0 is the next-generation network technology that will introduce symmetrical multi-gigabit Internet speeds, lower latency, and even better security and reliability to hundreds of millions of people and businesses over their existing connections without the need for major construction of new network infrastructure. On October 12, Comcast announced that it will begin to introduce the first customers in the world to Internet services powered by DOCSIS 4.0 using FDX. While the company will continue to leverage FDX, the collaboration with Broadcom will provide Comcast and other operators with additional options in the pursuit of delivering the best possible connectivity experience. The Xfinity 10G Network leverages the latest advancements in edge compute, digital optics and real-time, actionable telemetry to meet and exceed our customers’ constantly evolving connectivity needs, said Elad Nafshi, Chief Network Officer, Comcast Cable. With this new Unified DOCSIS4 chipset from Broadcom, we can broadly deploy transformational AI network capabilities alongside symmetrical multi-gig speeds. FDX is the best technology for Comcast, but this groundbreaking unified chipset will provide the entire industry with options when upgrading their nodes, amps, and cable modems for DOCSIS 4.0. The new end-to-end chipsets will be the industry’s first to incorporate AI and ML capabilities that will transform the operations and customer experience functions by: Making smarter network performance decisions using network diagnostics insights produced by both local and cloud AI. Enhanced monitoring and issue detection using bandwidth-efficient telemetry data. Transforming network maintenance of the network using real time issue localization plus predictive and self-healing network intelligence. Protecting network facilities and customers with improved cybersecurity intrusion detection. Assisting customers more effectively through local and cloud-based AI. Monitoring home IoT devices for connectivity disruptions. All these capabilities, and more, are achieved while reducing network latency and insulating customer data to ensure the utmost privacy standards. “By enabling a toolkit that includes FDX, ESD or both simultaneously, this new Unified DOCSIS4 chipset incorporates the advantages of both technologies and will enable economies of scale as well as a common retail modem for the industry,” said Rich Nelson, Senior Vice President and General Manager, Broadband Video Group, Broadcom. “The edge network and in-home capabilities of this chipset will improve network intelligence and reliability to create an improved broadband experience with enhanced privacy protection and cyber security for the consumer.” Comcast and Broadcom are designing and building the new chipset based upon CableLabs’ DOCSIS 4.0 specifications. The companies have a history of working together to introduce innovations that have pushed the industry to the next generation of connectivity. In 2021, Comcast conducted the world’s first full duplex multi-gigabit symmetrical test on Broadcom-built silicon. In January 2022 the companies tested the first Full Duplex DOCSIS 4.0 system-on-chip (SoC) cable modem that delivered symmetrical speeds faster than 4 Gbps. Later that year, Comcast successfully tested the final technical component of necessary to deliver multi-gig symmetrical speed powered by DOCSIS 4.0 throughout its network with 10G smart amps built on a Broadcom-developed reference design. The companies expect to begin trials early in 2024 and to begin deploying the new chipset in live networks before the end of the same year.

Read More

Enterprise Iot

Tavant Unveils Data Beats™: A Data-Driven Ecosystem Built for Fintechs and Financial Institutions to Harness Data Insights

Business Wire | October 20, 2023

Tavant, Silicon Valley’s leading digital lending solutions provider, today announced at the MBA's Annual Convention & Expo in Philadelphia, the launch of Data Beats™, a groundbreaking data platform that promises to redefine the financial services landscape. Built to inform, provide insights, act, recommend, and predict, Data Beats ushers in a new era of data-driven intelligence for the industry. This versatile platform empowers businesses to harness the power of their data and maximize its value, effectively taking the stress out of data management. Key benefits of Data Beats include: Provides actionable data insights that work for your business; Analyzes data from various aspects of your operations; Adapts and learns from your data to provide real-time recommendations; and Looks into the future, learns and predicts trends. Data Beats is a platform offering within Tavant's banking and financial services suite of technology products. Data Beats is set to serve as the analytics and IoT engine for the financial services industry, initially focusing on mortgage and home equity products. Tavant plans to extend this robust data ecosystem to all consumer loans and banking products, making it a comprehensive solution for financial institutions. With Data Beats, Tavant empowers financial institutions towards proactive rather than reactive operations by incorporating generative AI to prompt users on the best course of action. This revolutionary approach allows the platform to offer precise recommendations for loan officers, consumers, processors, and underwriters, enhancing the overall efficiency of the lending process. Abhinav Asthana, Fintech Product Business and Growth Leader at Tavant said, Tavant's mission is to stay at the forefront of innovation and to be the engineering partner of choice in the financial services industry. Data Beats exemplifies our commitment to providing our customers with an advanced platform that accelerates their vision to transform into a data-first organization. We are proud to launch this platform, which brings insights, intelligence, and efficiency to the heart of the lending process. Data Beats has already started demonstrating its value within Tavant's existing customer base by enhancing and automating the home buying experience. By consolidating data from various stages of the customer journey, from acquisition to servicing and beyond, Data Beats provides invaluable insights that can be used to predict future behavior, optimize operations, and improve overall business performance. The system's foundation, the data lake, can ingest a wide range of data inputs, limited only by the specific business problem it aims to solve. This flexibility positions Data Beats to become a game-changing tool for a wide range of industries beyond mortgage and lending.

Read More

Events