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Elbit America Secures $212 Million Delivery Order Under Multi-Year Contract with the US Army

Tuesday, May 12th, 2026

FORT WORTH, TEXAS – May 12, 2026 – Elbit Systems of America (Elbit America) received a delivery order valued at $212 million to be the sole producer of the Enhanced Night Vision Goggle – Binocular (ENVG-B) systems for the United States Army. The Army has historically split production for ENVG-B systems among multiple vendors, however Elbit America was the only prime supplier selected for this delivery order.?

Elbit America’s ENVG-B system provides overmatch capability to the soldier with a platform that integrates head-up situational awareness and unmatched capabilities to own the networked battlefield. The ENVG-B’s ability to wirelessly connect to a soldier’s rifle mounted thermal weapon sight allows for rapid target acquisition, while augmented reality, and the Nett Warrior interface provide lethal capability to engage close-in and far out. The ENVG-B is the sole fused augmented reality system actively deployed. 

When a soldier puts on an Elbit America ENVG?B, they’re not just seeing in the dark, they’re gaining access to a fused picture of the battlefield, which translates directly into improved survivability and mission success. The ENVG-B includes Gen 3 enhanced performance real-time white phosphor image intensifier tubes, which provide unrivaled image clarity along with a much greater detection range coupled with a thermal sensor. All this sophistication and capability is packed into a lightweight goggle, powered by a smart battery pack.

Erik Fox, Senior Vice President of Warfighter Systems at Elbit America, said, “Our ENVG-B systems offer information at the edge, as they integrate advanced low?light performance, thermal imaging, and augmented reality into a single platform, enabling soldiers to detect threats faster, identify targets sooner, and maneuver with greater confidence in all weather, lighting, and battlefield conditions.”

Elbit America has delivered more than 30,000 advanced night vision binocular systems since 2020 through the U.S. Army’s ENVG?B program and the U.S. Marine Corps’ Squad Binocular Night Vision Goggle program. The company continues to shape the future of night operations as a recognized leader in imaging, sensor fusion, and soldier-centered technology development.

MORE: www.elbitamerica.com/night-vision

Spartan Precision Equipment Introduces the Kestros Sling System: Redefining Mobility and Precision in the Field

Tuesday, May 12th, 2026

East Sussex, UK — Spartan Precision Equipment proudly announces the launch of the all-new Kestros Sling System, an innovative carry solution engineered to seamlessly bridge the gap between stalking and taking the shot. Designed for hunters and shooters who demand efficiency, speed, and reliability, the Kestros Sling System eliminates the friction of gear management by keeping both rifle and bipod stowed, secure, and instantly deployable when it matters most.

True to Spartan Precision Equipment’s commitment to working with the best partners in the world, the Kestros Sling System represents a collaboration of elite design and manufacturing expertise. The system was conceived by a renowned Finnish sniper, bringing real-world operational insight into how a rifle should be carried in demanding environments. Designed to hold your rifle comfortably and securely, the Kestros enables complete hands-free movement without fear of the rifle slipping from your shoulder—no matter the terrain or conditions. The system is proudly manufactured in Finland, reflecting the highest standards of precision engineering and durability.

At the core of the Kestros system is a simple but powerful concept: your bipod should be as accessible as your rifle. Unlike traditional slings that focus solely on carrying a firearm, the Kestros manages the entire shooting system. Built for the mobile hunter, it ensures that your bipod is never buried in a pack or out of reach. Instead, it remains securely attached and ready, allowing for a faster, smoother transition from movement to shot execution.

The Kestros Sling System features three adaptive carry configurations that respond to terrain, pace, and readiness in real time. In its traditional configuration, the sling functions as a comfortable over-the-shoulder carry system, with padding and webbing that distribute weight evenly to reduce fatigue during long stalks. When configured in harness mode, the system secures the rifle centrally across the hunter’s back or chest, preventing unwanted movement and improving balance in challenging terrain. In safety mode, the sling loops under a single shoulder, creating a stable triangular anchor point across the chest that enhances control and readiness in dynamic environments. To see a video Click Here.

Purpose-built to integrate with Spartan’s renowned bipod technology, the Kestros Sling System is paired perfectly with the Javelin Pro Hunt Tac bipod. Constructed from ultralight carbon fiber and engineered to withstand calibers up to .300 RUM, the Pro Hunt Tac delivers unmatched stability in the field. The Kestros complements this performance by ensuring the bipod is always accessible and ready for immediate deployment.

A key component of the system is the Kestros Clip, manufactured from industrial-grade PA12 Nylon and specifically designed and molded for the Javelin Pro Hunt Tac bipod. This precision fit ensures a secure, rattle-free dock that keeps the bipod firmly in place without the risk of accidental release. While the clip may accommodate similar diameter bipods, it is optimized for the Pro Hunt Tac’s leg profile to deliver maximum retention and silence in the field.

The system is also fully compatible with Spartan’s MagnaSwitch™ technology, allowing users to transition from chest carry to rifle-mounted deployment in one fluid motion. With no latches, buttons, or unnecessary movement, the result is a faster, more intuitive shooting experience. Despite its advanced functionality, the combined weight of the Kestros Sling and Pro Hunt Tac bipod remains lighter than many traditional leather slings, while delivering the added benefit of a complete precision shooting platform.

With the introduction of the Kestros Sling System, Spartan Precision Equipment challenges hunters to rethink how they carry and deploy their gear. This is more than a sling—it is a fully integrated system designed to enhance mobility, efficiency, and shot readiness in the most demanding environments.

The Kestros Sling is available at a suggested retail price of $80.00, with the Kestros Clip offered separately for $25.00. For those seeking the complete system, the sling and clip are available together as a bundled package for $100.00. For more information on the Kestros Sling system,

javelinbipod.com/products/kestros-sling

Iris Technology Launches Merlin HH+: The Only Radio Power and Data Adapter Built for the AN/PRC-163 with Integrated Scavenging and Mission-Configurable Cable Architecture

Tuesday, May 12th, 2026

Addresses the power and data complexity facing dismounted SOF teams running Nett Warrior on the AN/PRC-163 — without adding weight, cables, or complexity to the kit.

IRVINE, CA, May 6, 2026 — Iris Technology today announced the official launch of the Merlin HH+, a compact, rugged radio power and data adapter engineered around the real-world configuration demands of the AN/PRC-163 in dismounted SOF operations. Unveiled at SOF Week 2026 in Tampa, Florida, the Merlin HH+ is the only device in its class combining integrated power scavenging with mission-configurable cable architecture — capabilities designed to reduce operator burden, extend mission endurance, and eliminate the improvised workarounds that compromise comms reliability downrange.

THE OPERATIONAL PROBLEM

The AN/PRC-163 is a significant capability step forward for dismounted teams. But the moment it is integrated into a full NettWarrior configuration — EUD connected, Red/Black separated, mission accessories in play — the power and data architecture around it becomes the operational challenge. Cable management multiplies. Battery status becomes a separate task. Hot-swap is not built in. And when the mission shifts, reconfiguring the setup at the wire means starting from scratch or improvising.

The radio is not the limitation. The surrounding power and data architecture is. The Merlin HH+ was built to change that.

WHAT THE MERLIN HH+ DELIVERS

The Merlin HH+ solves two distinct field problems: keeping the PRC-163 powered longer, and giving teams a cleaner, faster way to configure the radio for different mission loads.

Integrated Power Scavenging — When a field-approved power source is available, the Merlin HH+ draws from it automatically, extending PRC-163 runtime without adding an external box to the kit. Excess power charges the battery. Less dependence on resupply. More time on mission.

Hot-Swap Capability — Battery changes happen without losing comms or crypto. Redundant power source bridgingkeeps the radio live through every transition.

Mission-Configurable Cable Architecture — Four discrete configurations address the full range of PRC-163 mission profiles: Power Only (CWB radio-only); Power + EUD; Standard Nett Warrior (CWB + EUD + Red/Black separation); and Nett Warrior + Expansion (adds second CWB or scavenging). Operators carry what the mission requires and scale without rebuilding.

Plug-and-Play Integration — Attaches directly to the radio and battery pack. No tools. No modifications. No changes to the existing radio, waveform, or operator concept of employment.

– MIL-STD-810H and MIL-STD-461G Compliance — Designed for the environments where the PRC-163 operates. Tested to the standard, not around it.

PROGRAM RELEVANCE

The Merlin HH+ is designed for program teams already invested in the PRC-163 across Army and SOF formations. It extends radio capability at the mission edge without requiring changes to hardware, training, or fielding infrastructure. For acquisition professionals and program managers at commands including SOCOM, U.S. Army PEO Soldier, Army Futures Command, MARCORSYSCOM, NIWC-A/P, and NAVAIR — and for integrators working alongside units in 1st SFG, 75th Ranger Regiment, and AFSOC — the Merlin HH+ provides a clear path to increased dismounted power endurance and reduced cable burden with existing inventory.

It is also compatible with radios from L3Harris, Persistent Systems, Silvus, Thales, TrellisWare, and Viasat, giving multi-platform programs a single power and data management solution across their communications inventory.

“The PRC-163 already earned its place in the fight. The Merlin HH+ is built to keep it there — longer, further out, with fewer things operators have to think about that aren’t the mission. We engineered this around what the field actually looks like, not what the spec sheet assumes.”

— Mike Stein, Vice President, Tactical

HDT Robotics Delivers Hunter WOLF Unmanned Ground Vehicles to US Army GOAT Training at Fort Polk

Monday, May 11th, 2026

FREDERICKSBURG, Va., May 11, 2026 — HDT Robotics has delivered Hunter WOLF unmanned ground vehicles (UGVs) to the U.S. Army 3rd Brigade, 10th Mountain Division at Fort Polk, Louisiana, as part of the Army’s Ground Optionally Autonomous Transport (GOAT) program. The delivery supports a week-long Operator New Equipment Training (OPNET) event. HDT will train soldiers to operate, employ, and sustain the platform, and will demonstrate multiple modular mission payload configurations and operational roles.

The Hunter WOLF, a vehicle developed out of HDT’s Advanced Battle Lab, is a multi-mission ground vehicle robotic platform designed to reduce soldier workload, extend operational duration, and keep soldiers in the field longer with less fatigue and at safer distances. It can serve as a communications platform, a logistics mover, a casualty evacuation system, or an intelligence, surveillance, and reconnaissance (ISR) platform. The vehicle uses commercially available components that simplify field maintenance. 

Reducing the physical burden on soldiers while increasing operational flexibility remains central to HDT’s mission. “We’re focused on giving soldiers a capability that helps them do their job while reducing their exposure to risk. The Hunter WOLF has gone through rigorous testing, is battlefield tested, and ready now,” said Tom Van Doren, President, Robotics Sector at HDT.

The training gives soldiers hands-on experience operating and maintaining the platform and will demonstrate the use of autonomy kits and casualty evacuation. HDT will also support the Army’s Transformation in Contact (TiC) activities and plans to demonstrate the WOLF’s autonomy capabilities.

Sigma Defense Announces Sponsorship and Technical Partnership for GEAR Lab Grand Opening at Museum of Aviation

Monday, May 11th, 2026

WARNER ROBINS, Ga., May 7, 2026 — Sigma Defense is proud to announce its sponsorship and technical partnership supporting the grand opening of the Georgia Engineering, AI & Robotics (GEAR) Lab at the Museum of Aviation in Warner Robins, Georgia. The GEAR Lab is a cutting-edge, hands-on innovation space designed to inspire the next generation of engineers, programmers, and problem-solvers by connecting classroom learning with real-world applications.

The GEAR Lab integrates artificial intelligence, robotics, and advanced engineering concepts into interactive experiences that provide students and visitors with direct exposure to emerging technologies shaping the future. Through partnerships with leading universities across Georgia, the lab will serve as a hub for collaboration, workforce development, and STEM engagement across the region.

“Sigma Defense is proud to be a sponsor and technical partner for the GEAR Lab at the Museum of Aviation,” said Scott Ritchie, Co-Founder of Sigma Defense and Executive Vice President of the Sigma Integrated Solutions Division. “Since 2006, we have been part of the Warner Robins community, developing and deploying leading-edge C5ISR and CJADC2 solutions for the Department of War. We are grateful for the opportunity to invest in the next generation of the STEM workforce and to continue supporting innovation in Middle Georgia.”

Over the past six months, Sigma Defense has collaborated closely with the Museum of Aviation Foundation’s IT team to support development of an AI-enabled technology platform for students, educators, and local businesses. Through hardware donations and systems integration expertise, Sigma Defense has helped establish a modern, on-premise capability that serves as a foundation for ethical AI education and hands-on technical learning.

In addition to its technical contributions, Sigma Defense serves on the GEAR Lab advisory committee, helping guide the facility’s mission as an engineering launchpad for high school students and future innovators.

“The GEAR Lab represents the kind of forward-looking investment required to prepare students for the demands of tomorrow’s workforce,” said Ritchie. “By bringing together education, technology, and community, this initiative reflects a shared commitment to innovation and long-term impact.”

Sigma Defense’s involvement underscores its broader commitment to advancing innovation – not only in support of national defense, but also through meaningful investment in the communities where its employees live and work.

Saab Strengthens RBS 70 NG with New Bolide 2 Missile

Monday, May 11th, 2026

Saab has launched the new Bolide 2 missile for the RBS 70 short-range air defence missile system. Bolide 2 brings a larger warhead and better terminal flight performance for superior capability, and an improved modular design to allow for future updates.

Bolide 2 retains the unjammable guidance method used by RBS 70 with its previous missile generations. Deliveries are starting in 2027 and this new missile will become the standard ammunition for RBS 70 NG.

“With Bolide 2 we are ready to provide our customers with an even more capable missile, ready to be adapted for any new threats in the sky. RBS 70 users can benefit from improvements including a more powerful warhead, whether they are operating in the man-portable role or, as is increasingly common, from a vehicle firing unit,” says Stefan Öberg, head of Saab’s business unit Missile Systems.

Bolide 2 can be fired from the latest RBS 70 NG or prior generations. A series of successful test firings have already been conducted as part of the missile’s development. 

Rheinmetall and Telekom Plan to Develop a Drone Defence Shield

Monday, May 11th, 2026

•    Hybrid threats from drones and sabotage are increasing
•    Multi-threat protection aims to secure critical infrastructure
•    Rheinmetall and Telekom combine their expertise to deliver effective protection
•    Joint presentation at the AFCEA security trade show starting May 12, 2026, in Bonn

Rheinmetall and Telekom plan to jointly develop a defence shield against drones and acts of sabotage. The companies intend to work together to protect cities and critical infrastructure across Germany. They reached this agreement ahead of the upcoming AFCEA security technology trade show in Bonn.

The current geopolitical situation has placed the protection of critical infrastructure (KRITIS) in sharp focus. Hybrid threats from sabotage and drone activity are steadily increasing. In response, the companies are pooling their expertise.

The partners aim to develop capabilities and technologies to counter a wide range of potential attacks on KRITIS sites—a multi-threat protection approach. This includes cybersecurity technologies as well as physical site protection, commonly referred to as perimeter security. Further details of the collaboration will be announced at a later date.

Armin Papperger, CEO of Rheinmetall AG, says: “The threat posed by drones is highly digital. This is why effective defence requires a combination of sensors, effectors, and secure communication networks. Rheinmetall and Deutsche Telekom bring together precisely these capabilities.”
Tim Höttges, CEO of Deutsche Telekom AG, says: “Sovereignty is achieved not only through discussion but through action. Telekom is taking responsibility: With our expertise in connectivity, cloud, and data analytics, we are elevating drone defence to a new level. Together with Rheinmetall, we are strengthening sovereignty and helping to alleviate public concerns.”

Telekom detects drone flights during the European Football Championship in Germany
Since 2017, Telekom has been a system partner to government agencies and companies in the field of drone security. The Group has already secured critical infrastructure, facilities, and major events against drones both in Germany and abroad. For example, Telekom successfully and reliably detected illegal drone flights on behalf of the police during the 2024 European Football Championship.

Drone detection and defence are technically demanding. Depending on the location and terrain, different sensors are more suitable. Since 2017, the company has therefore tested a range of sensors from international manufacturers in customer projects and field trials at international and regional airports such as Tannheim in Baden-Württemberg, integrating them into its product portfolio. Telekom continues to advance its technical capabilities in drone defence and its sensor suite. Today, video, audio, radio frequency (RF), Remote ID, and drone radar sensors are used in customer deployments.

RF detection proven in customer deployments
Most drones on the market are flown within visual range using a radio remote control. Drones and controllers communicate via radio frequency (RF). RF sensors can detect these signals—and thus the position of both drone and controller. RF is considered one of the most common methods in drone detection. RF sensors currently make more than 90% of all drones in low-altitude airspace detectable.

The RF sensors used by Telekom operate passively and do not transmit an active search signal. This allows them to be installed on cell towers without interfering with sensitive mobile communications technology. According to Telekom’s customer experience, RF sensors mounted high on cell towers have proven particularly effective in densely built-up urban areas.

Rheinmetall: Specialist in drone defence and autonomous systems
Rheinmetall is one of the world’s leading systems providers in air defence—including close-range and short-range applications. Effectors from the Düsseldorf-based technology group are currently in use in Ukraine and the Middle East. In addition, Rheinmetall is a specialist in autonomous systems across all domains—land, sea, and air—including drones and airborne reconnaissance systems. The Group also develops sensor and data processing technologies used in both civilian and security-related applications.
In December 2025, Rheinmetall, the Hamburg Police, and the Hamburg Port Authority (HPA) agreed on a strategic partnership to further develop drone detection and defence concepts for the Port of Hamburg. The focus is on developing forward-looking technologies to protect maritime, civilian, and critical infrastructure. 
From a technical standpoint, the Port of Hamburg is considered a particularly challenging environment: diverse radio sources, maritime conditions, and dense infrastructure place high demands on detection systems. As a leading industry partner, Rheinmetall contributes its expertise to this alliance to develop tailored solutions for complex threat scenarios, forming part of a supraregional security strategy.
More drones are flying via mobile networks
A new challenge arises from drones controlled via mobile networks. While the vast majority of pilots use RF and a remote control, the number of drones operated via cellular networks is increasing. Real-world applications in Germany and abroad show that both commercially available and homemade drones are increasingly being controlled via mobile networks. Telekom is collaborating with Helmut Schmidt University/University of the Federal Armed Forces Hamburg (Uni-Bw: Universität der Bundeswehr) to research how these drones can be located.

Mobile network becomes a large-scale radar system
In the future, the mobile network itself will act as a sensor—a large-scale radar system—by detecting changes and anomalies in data traffic that indicate drone control or communication. This will make drones visible to emergency responders, for example in temporary no-fly zones. The basis for this is the 5G standalone high-performance network installed by Telekom on the Uni-Bw campus, based on Ericsson technology.

Drone violations constitute serious interference with air traffic
Controlling drones via mobile networks is not yet widespread in Germany. By law, pilots must keep their drone in sight at all times (line of sight). Those who operate drones beyond visual range often do so for commercial purposes, such as inspecting power lines or pipelines. These pilots must apply for permission to fly. Anyone who does not apply but still controls a drone via mobile network is committing a criminal offence.
Drone flights in restricted areas are by no means a minor offence comparable to a speeding violation, but a dangerous interference with air traffic. Despite repeated police warnings, many continue to fly recklessly beyond visual range, risking unexpectedly severe penalties. Telekom systems have already pinpointed prohibited drone flights on a large scale at the request of customers, enabling emergency responders to locate pilots quickly.

Army and Defense Sector Announce, ‘Right to Integrate’ Hackathon Sprint for Shared Technology

Monday, May 11th, 2026

WASHINGTON — Secretary of the Army Dan Driscoll and leaders from Anduril, Boeing, General Dynamics, L3Harris, Leidos, Lockheed Martin, Northrop Grumman, Palantir, Perennial Autonomy and RTX announced May 5 that they will “sprint” to conduct a series of combined Army and defense industry partnered hackathon events to integrate critical military technology systems.

This “Right to Integrate” hackathon, or R2I, is an Army-Industry partnered sprint that will ensure offensive and defensive weapon systems, and business systems across the Army, can collectively integrate, share data and communicate with each other.

Historically, multiple systems from multiple manufacturers have struggled with cross-platform integration — creating competing information silos inside operational Army units. Building on the success of the approach for Next Generation Command and Control for open architecture, this hackathon sprint, possibly the largest in human history, will have profound impacts.

“We’ve known for a long time that our systems, weapons, and sensors need to talk to each other so that we can dominate the battlefield,” said Driscoll. “The war in Ukraine showed the world that speed matters and an open architecture construct is highly effective in high-intensity warfare. We haven’t been moving fast enough. The U.S. Army, along with our great defense industry partners, will lead this effort on behalf of our nation and ensure that we remain the dominant fighting force on the planet.”

Historically, the U.S. Army has paid defense companies for exquisite war-fighting systems, with a siloed approach to procurement and program management both inside the government and within the defense sector itself. Unfortunately, these rarely communicated with each other and required additional costs, time, and field service engineers to manually integrate the information or systems. These manual integrations were often bespoke and frequently failed. This time-consuming and expensive process is no longer sufficient for the Information Age.

“We cannot fight from a swivel chair across multiple disaggregated systems anymore. We must integrate at the speed of digital information, and leverage the technologies of our time, like agentic artificial intelligence, drone swarms, and cyber weapons. I’m incredibly grateful for the rapid and wholehearted support these companies have shown us. There are no better defense industry partners in the world that in the U.S.,” said Driscoll.

The idea for this initiative is not new; however, it became a reality for the world as Ukraine’s existential threat drove their modular open system architecture command, or MOSA, and control system to effectively integrate drones, sensors, and shooting platforms in a single system. By mandating that all entrants meet the criteria of exposing their application programming interface, the Ukrainian military quickly and effectively integrated information across all platforms. The Army started in this direction with NGC2 and is now expanding to a broader array of systems.

“Soldiers don’t have time to wait while systems that should already be talking to each other get patched together on a battlefield,” said Vice Chief of Staff of the Army, Gen. Christopher LaNeve. “It’s a wicked problem, and R2I puts our industry partners and our Soldiers in the same room to solve it as rapidly as possible. That’s what the American Soldier deserves.”

While this initiative helps the U.S. Army and broader military, it is also beneficial for the defense industry and non-traditional vendors as it increases competition, improves integration of new technology, and ensures a single company isn’t required to bear the burden of this change. As this is happening simultaneously for all participants, everyone benefits, but no one more than the American Soldier.

“We’ve seen the cost of integration approach zero in the commercial space – especially with software systems with open interfaces and architectures,” said Dr. Alex Miller, chief technology officer for the U.S. Army. “We have seen standards come and go in the department for decades, but are still beholden to sub-par implementation, close and proprietary interfaces, or systems that lack the flexibility to adapt over time.”

“MOSA has shifted from a verb – how we do things – to a noun. How companies find ways to use their architecture,” said Miller. “We are setting conditions to where being open is industry’s ticket to participate. If you do not expose your interfaces and your documentation, you will not be able to join the ecosystem. This will be especially true for autonomous systems.”

The first event will be held at Fort Carson, Colorado, in the coming weeks. Anduril, Boeing, General Dynamics, L3Harris, Leidos, Lockheed Martin, Northrop Grumman, Palantir, Perennial Autonomy and RTX are all supporting with dozens of pieces of technology and equipment, as well as engineers and scientists, to join Army leaders, Soldiers, and technical experts.

During the sprint, the companies will sign a statement of support for the Army’s integration efforts, for both current systems and future systems still in development. The statement highlights that the hackathon sprint will be carried out at no cost to the Army.

At the heart of this initiative lies a vital Army-Industry partnership united by a single purpose: warfighter supremacy. By breaking down barriers and working shoulder-to-shoulder with industry leaders, the Army is ensuring an interconnected, adaptable force. This joint effort is essential to achieving true decision dominance, allowing our Soldiers to sense, decide, and strike faster than any enemy force in future combat operations.