Item 1. Business
ITEM 1. BUSINESS
Our Company
Interlink Electronics, Inc. (“Interlink,” “we,” “us,” “our,” or the “Company”) is a leading global provider of advanced sensing technologies and printed electronics solutions that enable Human-Machine Interface (“HMI”) devices and Internet-of-Things (“IoT”) applications. Our broad product and technology portfolio spans force and touch sensors, piezoelectric sensors, rugged HMI sensors, wearable and textile-based sensors and electrochemical gas and environmental sensors, along with instruments and fully integrated systems based on our sensor technologies.
We serve global blue-chip customers and innovative emerging companies across diverse end-use markets, including medical, industrial, automotive, consumer electronics, wearables, environmental monitoring, and specialty applications. Our technical and engineering expertise in materials science, printed electronics manufacturing, embedded electronics, and related firmware, software, and system integration allows us to deliver high-performance, cost-effective standard and custom solutions tailored to our customers’ unique requirements.
Force/Touch Sensors . We design, develop, manufacture, and sell a broad range of force-sensing and HMI technologies that incorporate proprietary materials, firmware, and software into scalable sensor components, subassemblies, modules, and fully integrated products.
● FSR® Technology and Force-Sensing Leadership . Interlink has been a leader in printed electronics for over 40 years. We invented and commercialized FSR® (Force-Sensing Resistor) technology, pioneering printed force-sensing solutions for rugged and reliable HMI applications. Our FSR® sensors consist of a proprietary resistive material layered between conductive electrodes, enabling force-dependent resistance changes. These sensors are extremely thin and lightweight, have no moving parts, operate reliably in harsh environments, resist moisture, dust, and contamination, and unlike capacitive sensors, measure applied force directly and are not prone to inadvertent activation. Our optimized manufacturing processes allow highly customized, high-margin solutions with strong design flexibility. We incorporate proprietary firmware and algorithms into our HMI solutions, enabling sophisticated input interpretation and advanced user experiences. Our solutions are used in gaming systems, smartphones, rugged notebooks, and automotive cockpit systems and entry applications.
● HMI Technology Platforms . Our HMI technology platforms are deployed across medical, industrial, automotive, and consumer electronics markets, supporting applications such as vehicle entry and cockpit controls, multimedia interface systems, rugged industrial touch controls, presence and collision detection, speed and torque control systems, pressure mapping, and biological monitoring. As the HMI market increasingly demands smaller form factors, lower power consumption, improved durability, and multi-modal input, we have advanced a hybrid and multi-sensing strategy that integrates force, capacitive, resistive, and piezoelectric technologies. Force-sensing introduces a deliberate activation modality that complements traditional capacitive systems, while our sensor fusion approach addresses performance gaps in conventional designs. Together, these solutions enable intuitive, multi-dimensional user input and “smart surfaces” that integrate sensing, feedback, and embedded intelligence, delivering enhanced durability, reliability, and environmental resistance compared to legacy mechanical or capacitive-only systems. We continue to expand our standard product portfolio and develop new technology platforms to capture emerging markets, particularly in IoT-enabled intelligent sensing systems.
● Printed Electronics and Membrane Keypads . Through our 2023 acquisition of Calman Technology Limited (“Calman”), we expanded our specialized printed electronics and membrane keypad capabilities. With over 25 years of HMI design and manufacturing expertise, Calman enhances our ability to deliver customized membrane keypads, graphic overlays, printed electronic circuits, and industrial labeling solutions. These products are used in industrial automation, instrumentation, process control, medical diagnostics, and defense applications.
5
Table of Contents
● Smart Textiles and Conductive Transfers . In 2024, we acquired the assets of Conductive Transfers Limited and Global Print Solutions Limited (collectively, “Conductive Transfers”), strengthening our patented conductive transfer processes. These capabilities enable the integration of sensors and electronics directly into textiles and fabrics. Our e-textile and wearable technology offerings include heated garments, personal protective equipment, medical wearable platforms, and automotive-integrated textile sensing systems. These technologies position us at the intersection of printed electronics, wearable systems, and next-generation smart surfaces.
● Piezoelectric Sensors . We have expanded our sensing portfolio with piezoelectric polymer film technologies that function as dynamic strain gauges and vibration sensors. These ultra-thin electroactive polymer films generate electrical charge when subjected to mechanical stress or temperature change. Their properties enable dynamic force and vibration sensing, impact detection, contact microphones, flow detection, ultrasonic transducers, and motion and vital sign monitoring. These sensors can also operate in reverse as actuators for haptic feedback and support pyroelectric sensing applications such as passive infrared motion detection. We combine these sensing elements with advanced firmware, machine learning, and artificial intelligence to convert information-rich signals into actionable insights for customers. This integration capability is a key differentiator in high-performance, custom applications.
Gas and Environmental Sensors . We entered the gas and environmental sensing market in 2022 through the acquisition of SPEC Sensors, LLC (“SPEC”) and KWJ Engineering, Inc. (“KWJ”), pioneers in miniaturized, low-cost electrochemical sensing technologies. Today, we offer electrochemical gas-sensing products and integrated systems for safety, environmental monitoring, industrial compliance, community health, and smart city applications.
● Proprietary Product Lines. We manufacture miniature, low-power electrochemical sensors capable of detecting a wide range of gases. These sensors are suited for consumer and commercial IoT applications, industrial safety systems, and environmental and air quality monitoring. We also offer complete instruments, including Eco Sensors™ ozone monitors, inline carbon monoxide monitors, low-pressure gas alarms, and air quality modules for smart city deployments.
● Custom Design and Engineering . We provide end-to-end engineering services for customers requiring integrated gas-sensing solutions, including custom sensor and module design, circuit optimization, calibration and compensation algorithms, firmware development, and enclosure design and validation. Applications include carbon monoxide shutoff systems for generators and transdermal alcohol detection systems.
● In-House Research and Development . We actively pursue government-funded research through Small Business Innovation Research (“SBIR”) grants from agencies such as NIST, NASA, NIH, USDA, NSF, and EPA. Recent projects include wildfire air pollution monitoring, firefighter safety systems, transdermal alcohol monitoring, drinking water lead detection, AI-based plant health monitoring, and mass-manufacturing scale-up of printed electrochemical sensors. We continue to pursue strategically aligned research projects with commercialization potential.
Locations and Corporate Information . We serve our global customer base from our corporate headquarters in Fremont, California, in the Silicon Valley area. Our engineering and product development teams are based in Fremont and in our Camarillo, California facility, which includes an advanced printed electronics and materials science laboratory. We also perform software development, IoT application development, and custom design and configuration in Singapore.
We manufacture our force-sensing products at our proprietary printed electronics facility in Shenzhen, China, and our Calman facility in Irvine, Scotland, and our Conductive Transfers facility (which we are in the process of relocating from Barnsley, England). We manufacture our gas and environmental sensing products in Fremont, California. In addition, we maintain a global distribution and logistics center in Hong Kong and a technical sales office in Japan, and we work with manufacturer representatives and distributors in key markets worldwide to support our operations.
We were incorporated in California in 1985, re-incorporated in Delaware in 1996, and changed our domicile to Nevada in 2012 through a merger with a newly formed Nevada corporation named Interlink Electronics, Inc. Our principal executive office is located at 48389 Fremont Boulevard, Suite 110, Fremont, California 94538, and our telephone number is (510) 244-0424. Our website address is www.interlinkelectronics.com. We make our annual reports on Form 10-K, quarterly reports on Form 10-Q, current reports on Form 8-K, and any amendments to those reports available free of charge on our website as soon as reasonably practicable after they are electronically filed with, or furnished to, the SEC.
6
Table of Contents
Our Industry
Force/Touch and Printed Electronics . Since the early adoption of HMI technologies in industrial markets, the proliferation of smartphones and touch-enabled devices has reshaped consumer expectations. Users now expect sleek, gesture-based, intuitive interfaces across all device categories. Emerging trends include smart surfaces, stretchable electronics, thin-film sensors, multi-modal input platforms, and IoT-enabled connected sensing. Printed electronics, an additive manufacturing process for electrical devices, enables thin, flexible, and cost-effective sensing solutions.
Gas and Environmental Sensing . The gas detection market has historically focused on industrial safety. However, demand is expanding rapidly due to factors such as environmental regulation, smart city development, consumer air quality awareness, hydrogen economy growth, breath analysis and wearable sensing. Our screen-printed electrochemical sensors offer smaller, lower-cost alternatives to conventional bulky sensors, enabling distributed, connected sensing networks.
Our Strategy
Our objective is to be the global leader in multi-sensing HMI and gas-sensing solutions by expanding within existing and adjacent markets, entering select emerging markets with established technologies, and deepening long-term relationships with key OEM customers. Central to this strategy is a multi-technology sensor fusion roadmap, supported by scalable technology platforms and selective strategic acquisitions that broaden our capabilities. We emphasize early-stage customer engagement and vertically integrated manufacturing to deliver differentiated, application-specific solutions with high quality, responsiveness, and innovation.
A significant portion of our revenue is generated from custom solutions developed in close collaboration with OEM customers, and we plan to expand these programs. These programs typically involve application-specific engineering and extended design cycles, aligning with our focus on higher-margin solutions built on scalable platforms. While development timelines can be long, they often lead to durable, multi-year production programs that strengthen customer relationships and provide sustained revenue visibility.
Our Technology Platforms and Products
Force/Touch Sensing Technology and HMI . Interlink was founded on the invention and commercialization of FSR® (Force-Sensing Resistor) technology, the industry’s first force-sensing solution manufactured using printed electronics processes. While our origins are in discrete sensor components, we have evolved into a provider of fully integrated HMI solutions that combine sensing hardware, materials science, embedded electronics, firmware, and software into scalable technology platforms.
The two most common user-input technologies in modern devices are capacitive and resistive sensing. Capacitive sensors dominate smartphone touchscreens and other high-volume consumer applications. However, traditional capacitive technology does not inherently measure force and has largely become a commoditized, low-margin solution. While enhancements have been developed to approximate force detection, these approaches often add cost and complexity. Our force-sensing platforms address applications where deliberate activation, environmental robustness, low power consumption, or multi-dimensional input are required.
FSR® Technology . Our patented FSR® technology consists of a conductive electrode layer, a proprietary resistive material layer, and a separator between them. An optional protective graphic overlay can be added for durability and branding. Sensors can be manufactured as thin as eight thousandths of an inch, making them well suited for space-constrained applications such as portable, wearable, and embedded systems.
FSR® sensors provide continuously variable output based on applied force. For example, in an FSR®-equipped pointing device, increasing pressure can proportionally increase cursor speed. Key performance characteristics include no moving parts, sealed, rugged construction, resistance to moisture, dirt, and dust, and low power consumption. FSR® sensors also offer reduced susceptibility to false activation since unlike capacitive devices, they require deliberate force to actuate. Through decades of process refinement, we have optimized our proprietary screen-printing and materials formulations to support highly customized, application-specific solutions.
7
Table of Contents
Piezoelectric Sensor Technology . We have expanded our portfolio to include advanced piezoelectric polymer film sensors. These sensors consist of an electroactive polymer that generates electrical charge when subjected to mechanical stress or strain. The film can be as thin as 30 micrometers – less than half the thickness of a human hair – and incorporates printed electrodes to collect and transmit charge. These transducers function as dynamic strain gauges, vibration and impact sensors, force sensors, contact microphones, and flow and ultrasonic sensing elements. The material also exhibits a pyroelectric effect, generating charge in response to temperature changes, which supports passive infrared motion sensing. In addition to sensing, the technology can operate in reverse. When electrical charge is applied, the film bends or deforms, enabling polymeric actuators for haptic feedback applications.
Piezoelectric sensors offer broad frequency response, high voltage sensitivity, mechanical flexibility, and ruggedness. They can be deployed across large areas and curved surfaces, making them suitable for use in structural monitoring and in automotive, medical, and industrial applications. Because these devices generate information-rich signals, successful integration requires advanced signal processing and domain expertise.
Algorithms, Firmware, and AI Integration . We have developed proprietary algorithms and embedded firmware that transform our FSR® and piezoelectric sensors into complete HMI subsystems. Our solutions include signal conditioning, compensation, filtering, and user-interface logic. We are increasingly incorporating machine learning and artificial intelligence techniques to enhance user interaction, enable adaptive sensing, and extract actionable insights from complex sensor data. This system-level integration differentiates our offerings from commodity component suppliers.
Custom and Standard Solutions . We offer both custom-engineered systems and standardized products.
Custom Solutions . Custom solutions represent a significant portion of our business. We collaborate closely with OEM customers from concept through volume production, providing application definition and system architecture, multi-technology platform integration (force, piezo, capacitive, resistive), mechanical and electrical design, embedded firmware development, prototyping and validation, and design-for-manufacture support. Custom solutions may incorporate single or multiple sensing technologies and can integrate both input and output functions. In many cases, we serve as a sole-source supplier once a product enters production due to the specialized nature of the design and regulatory approvals.
Standard Solutions . Our portfolio of standard products includes:
● FSR® Sensors . Our standard single-zone FSR® sensors provide an inverse resistance response to applied force and are designed for durability, ease of integration, and low power consumption. They are available in multiple sizes, shapes, force ranges, and connection configurations. The FSR X® and FSR UX® product families expand available force ranges and performance characteristics, reflecting advancements developed in our materials science laboratories.
● Force-Sensing Linear Potentiometers (FSLP) . FSLP sensors provide position- and force-based input for scrolling, menu navigation, and user controls. These ultra-low-power, high-resolution devices are available in various lengths, including a ring configuration for 360-degree sensing. They are designed to interface directly with host processors without requiring dedicated microcontrollers.
● Integrated Pointing Modules . Our mouse modules and pointing solutions incorporate FSR® or resistive configurations with embedded firmware to deliver pressure-sensitive cursor control. Products range from consumer-oriented modules to NEMA-rated industrial devices suitable for harsh environments.
● Piezoelectric Sensors and Development Kits . Following successful custom implementations, including automotive applications, we now offer standard piezoelectric sensor products and development kits to enable customer evaluation. Applications include dynamic strain measurement, impact detection, vital signs monitoring, accelerometry, motion detection, and rugged solid-state switching. Our integration expertise enables us to support complex implementations requiring specialized signal interpretation.
Gas and Environmental Sensors Technology . Our gas and environmental sensing platforms focus on delivering smaller, lower-power, and lower-cost solutions for demanding detection applications. Through our acquisitions of SPEC Sensors and KWJ Engineering, we combine decades of electrochemical sensing expertise with modern materials science and instrumentation design.
8
Table of Contents
Our multidisciplinary engineering team, including PhDs in chemical engineering, electrical engineering and physics, designs and manufactures our gas sensors and instruments in-house in Fremont, California. Capabilities include proprietary high-volume electrochemical sensor fabrication, device assembly and automated calibration, advanced test and measurement systems, and custom electronics and firmware development.
We collaborate with research institutions, including Georgia Institute of Technology, San Jose State University and UC Davis, on government-funded programs while also providing private product development services to customers ranging from startups to Fortune 500 companies.
Electrochemical Sensor Innovation . Traditional electrochemical gas sensors are sensitive and selective but are often large, costly, and power-intensive. SPEC was founded to address the need for compact, affordable electrochemical sensors suitable for wireless, wearable, and IoT applications. By combining proven electrochemical principles with advanced materials and manufacturing methods, we produce some of the smallest and thinnest electrochemical gas sensors available, while maintaining performance in demanding environments. Our gas-sensing solutions integrate proprietary sensor elements, custom electronics, calibration and compensation algorithms, and embedded communication capabilities. These integrated systems serve applications in industrial safety, community monitoring, healthcare, and home environments, including carbon monoxide and ozone detection and air quality monitoring.
Product Lines . Product lines based on our gas sensing technology include:
● Eco Sensors™ Ozone Instruments . Our Eco Sensors™ branded ozone monitors and detectors incorporate SPEC sensor technology to deliver reference-level accuracy at competitive price points. Ozone is widely used in commercial cleaning and remediation but poses safety risks at elevated concentrations. Our product line includes handheld monitors, wall-mounted alarms, remote generator controllers, and OEM modules.
● Carbon Monoxide Monitoring Solutions . We offer standard and custom in-line carbon monoxide monitors for supplied breathing air applications. These products are designed to meet U.S. Occupational Safety and Health Administration requirements and carry Canadian Standards Association (CSA) approval. Applications include medical gas verification and industrial supplied air systems. Our portfolio also includes low-pressure cylinder alarms and the SPARROW PROTECT+™, a rechargeable Bluetooth-enabled carbon monoxide and harmful gas monitor.
● Screen-Printed Electrochemical Gas Sensors . Our sensor portfolio includes UL-2034 recognized carbon monoxide sensors with air-quality-level sensitivity and a 10-year lifetime, as well as sensors for hydrogen sulfide, ozone, nitrogen dioxide, sulfur dioxide, ethanol, hydrogen, formaldehyde, ethylene, and volatile organic compounds (VOCs), among others. We also offer gas-sensor modules with integrated electronics and signal processing that provide compensated parts-per-million (PPM) output for simplified OEM integration.
Intellectual Property
We believe that the protection of our intellectual property is critical to maintaining our competitive position and supporting long-term growth. Our intellectual property portfolio includes patents, trademarks, copyrights, trade secrets, and other proprietary rights. We also rely on nondisclosure agreements with employees, contractors, suppliers, and customers, as well as licensing arrangements and other contractual protections, to safeguard our technologies and know-how.
We maintain an active program to protect and expand our intellectual property, primarily through the regular filing of patent applications and the defense of issued patents where appropriate. As of the date of this report, we are not engaged in any patent infringement litigation. Our patent strategy is designed to support both our core sensing technologies and the systems and applications built around them.
We implement what we refer to as a “ring-fencing” strategy. Under this approach, we seek patent protection not only for core sensor technologies, but also for sensing systems, HMI devices, and related platform architectures. This layered strategy is intended to create multiple barriers to entry – protecting foundational materials and device structures while also securing competitive advantages in system-level implementations and end-use applications. Even if a competitor were able to design around a specific sensor-level patent, we believe our broader system and application patents provide additional layers of protection.
9
Table of Contents
We continue to align our patent filings with our strategic focus markets, including multi-sensing platforms, smart surfaces, gas and environmental sensing technologies, and wearable and smart textile applications. As we expand into conductive textiles and sensor-integrated fabrics, we are leveraging our existing intellectual property portfolio – including our sensor fusion platform, which enables multi-modal data capture – to support innovative wearable applications.
As of December 31, 2025, we held 49 issued patents (27 in the U.S. and 22 outside the U.S.) and had 15 patent applications pending (6 in the U.S. and 9 outside the U.S.). We categorize our patents into four general groups:
● Technology – 21 issued patents expiring between 2036 and 2042, and 6 patent applications pending.
● Sensors – 10 issued patents expiring between 2026 and 2037, covering core sensing elements and structures, and 4 patent applications pending.
● Sensing Systems – 7 issued patents expiring between 2029 and 2041, directed toward integrated sensing architectures and system-level implementations, and 5 patent applications pending.
● HMI Devices – 11 issued patents expiring between 2036 and 2038, covering interface designs and application-specific implementations.
Our competitive position depends, in part, on our ability to obtain, maintain, and enforce intellectual property protection. There can be no assurance that patent applications we have filed or may file will result in issued patents, that issued patents will not be challenged, invalidated, or circumvented, or that the scope of protection will be sufficient to provide meaningful commercial advantage. In addition, patents may not be issued in all geographic regions in which protection may be desirable. For a more detailed discussion of risks related to our intellectual property, see “Risk Factors” in Item 1A of this Form 10-K.
Competition
The markets for our products, both in force/touch-sensing and gas/environmental-sensing, are highly competitive and subject to rapid advancement in design technology. We must identify and capture future market opportunities by developing and deploying value-added products.
We compete for market share based on our customers’ selection of our components over our competitors during the design phase of their products. Our ability to compete is dependent on the needs of our customers, how well our products address those needs, our corporate relationships, and a variety of other factors.
In force/touch sensing, we compete against legacy switch technologies and commoditized capacitive sensors. Our differentiation lies in multi-technology integration, sensor fusion platforms, environmental durability, embedded firmware expertise, and collaborative design partnerships.
In gas sensing, we compete by offering smaller, lower-cost, customizable electrochemical sensors combined with advanced calibration and compensation techniques. Our ozone and carbon monoxide solutions maintain strong market positions.
Sales and Marketing
We sell our products and solutions through direct sales personnel, outside sales representatives, and distributors, including Digi-Key Electronics. Due to the technical nature of our products, the length of our sales cycle can vary from a few months to several years, which requires continued participation from our sales, engineering and management teams. Our sales cycle for our custom solutions generally includes the following two phases:
Design Opportunity to Design Win
● Our sales and engineering team engages with the customer to establish the nature of the design and explore various technical applications that may fit the customer’s needs.
10
Table of Contents
● A customer might select one of our standard solutions or a custom design might be required to fulfill the customer’s product needs. Custom solutions might require fees for engineering design and tooling.
● Product samples are provided to the customer and our team works with them to ensure product performance and address customer needs and specifications.
● A firm commitment from a customer’s engineering and/or purchasing organization or pre-production orders indicate a design win. In most cases, we are a sole-source supplier to our customer and cannot be easily and/or quickly replaced once the product goes into production, particularly in cases where the product requires governmental approval.
Mass Production
● Once the customer has chosen our solution, they may move their product into the production phase. It may take several months or more to progress from design win to production. Product lifespan varies dramatically depending on the marketplace and product. Consumer electronics may have a lifespan of six months to five years, industrial and automotive applications may continue for three to ten years, and medical product lifespans may continue past 20 years.
Our Customers
Our customers include many of the world’s leading electronics companies and large multinational organizations as well as start-ups, design houses, original design manufacturers, OEMs and universities. We supply some of the world’s largest consumer electronics manufacturers, luxury and mid-market car companies, familiar names in the medical and industrial equipment markets, research engineers and designers entering the IoT market, and companies of all different sizes in other markets.
Our customers generally do not provide us with firm, long-term volume purchase commitments, opting instead to issue purchase orders that they can cancel, reduce, or delay at any time. In order to meet the expectations of our customers, we must provide innovative solutions on a timely and cost-effective basis. This requires us to match our design and production capacity with customer demand, manage inventory, maintain satisfactory delivery schedules, and meet performance goals.
Our customer base is widely dispersed geographically. Sales to customers located outside the United States have historically accounted for a significant percentage of our revenue, and we expect this to continue. International sales constituted 58% and 56% of our revenue for the years ended December 31, 2025 and 2024, respectively, with sales in 2025 to customers in China and Japan representing 8% and 5%, respectively, compared to 7% and 11% in 2024, respectively. For the year ended December 31, 2025, we had one customer that represented over 10% of our revenue, compared to two in 2024.
Future sales of our products will be based on, among other factors, expansion into adjacent product markets, continued expansion of our product line, the acceptance of our existing product line, expansion into additional domestic and international markets, and our ability to maintain a competitive position against other technology providers.
Manufacturing Operations and Principal Suppliers
We operate manufacturing facilities in:
● Shenzhen, China – a 21,763 square foot facility that is ISO 9001, ISO 14001 and ISO 13485 certified. We plan to start the process of acquiring IATF 16949 certification as our automotive customer base expands.
● Fremont, California – a 5,183 square-foot facility
● Irvine, Scotland – a 9,800 square-foot facility
11
Table of Contents
We aim to meet current environmental and sustainability standards required by our customers and legislation in various geographic markets. All products are RoHS (Restriction of Hazardous Substances) and REACH (Registration, Evaluation, Authorisation and Restriction of Chemicals) compliant. We also monitor our suppliers as part of our efforts to eliminate conflict minerals from our supply chain.
We purchase our materials from outside suppliers. We carefully select suppliers based on their ability to provide quality parts and components that meet technical specifications. Many of our products are subject to qualification testing and approval by our customers, which includes approval of the materials used in their product. We source certain of our components from single-source suppliers, including multinational conglomerates, which increases the risk of shortages and shipment delays and decreases our ability to negotiate with that supplier. These single-source materials, however, are available from other suppliers, and while their procurement from other sources likely would necessitate additional approvals from our customers and might result in short-term disruption to our business, we do have options to purchase single-sourced materials from alternative suppliers should the need arise.
Engineering, Research and Development
The markets for our products are characterized by rapid advancements in process technologies and increasing levels of functional integration. We believe that our future success will depend largely on our ability to continue improving our products and our process technologies and to develop or acquire new technologies.
We operate an engineering and R&D facility in Fremont, California, that serves as a primary hub for gas-sensing new product development, SBIR-funded research, and quality control for our gas and environmental sensing products. We also maintain an advanced printed electronics and materials science laboratory in Camarillo, California, that primarily supports our force-sensing product development In Singapore, we maintain a core software engineering team that supports our software and connected solutions initiatives. In Shenzhen, China, we operate an engineering center within our manufacturing facility focused on sustaining engineering, customer support, quality control, and new product introduction for our force-sensing and HMI products.
The worldwide R&D team pursues scientific research, technology platform development and advanced product development in areas of materials science, printed electronics devices, gas and environmental sensors, and manufacturing processes, and multi-disciplinary system engineering. The global R&D centers support strategic partnerships with key partners in electronics manufacturing services, air and environmental quality monitoring, and digital manufacturing, including 3D printing, and product development. This team also explores opportunities to work on government funded research projects that are aligned with our technology competencies.
Our Employees
As of December 31, 2025, we had 93 full-time employees worldwide. Our employees, listed in population size order from largest to smallest, are in the following departments: Production, R&D, Administration, and Sales. Our ability to attract and retain qualified personnel is essential to our continued success. None of our employees are represented by a collective bargaining agreement. We believe our employee relations are good.
12
Table of Contents