
Top 50 Companies in Haptic Technology Market in the World in 2025: Market Research Report (2024–2035)
RELEASE DATE: Jul 2025 Author: Spherical InsightsRequest Free Sample Speak to Analyst
Description
According to a research report published by Spherical Insights & Consulting, The Global Haptic Technology Market Size is projected To Grow from USD 3.90 Billion in 2024 to USD 14.7 Billion by 2035, at a CAGR of 14.19 % during the forecast Period 2025-2035. The Haptic technology market offers future opportunities in immersive virtual reality, advanced medical simulations, remote robotics, and next-gen consumer electronics, driven by increasing demand for tactile feedback and enhanced user experiences.
Introduction
Haptic technology refers to systems and devices that recreate the sense of touch by applying forces, vibrations, or motions to the user. It enables users to receive tactile feedback during digital interactions, enhancing realism and immersion in virtual environments. The market is driven by increasing demand in sectors such as gaming, virtual reality (VR), augmented reality (AR), automotive interfaces, and healthcare simulations. Growing adoption of wearable devices, advancements in microelectromechanical systems (MEMS), and increasing integration of haptics in consumer electronics are also propelling market growth. Moreover, rising interest in remote surgery and robotics further fuels the demand for precise touch-based feedback systems.
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Haptic Technology Market Size & Statistics
- The market for haptic technology was estimated to be worth USD 3.90 Billion in 2024.
- The market is going to expand at a CAGR of 14.19 % between 2025 and 2035.
- The Global Haptic Technology Market Size is anticipated to reach USD 14.7 Billion by 2035.
- Asia Pacific is expected to generate the highest demand during the forecast period in the Haptic Technology market.
- North America is expected to grow the fastest during the forecast period in the haptic technology market.
Regional growth and demand
North America is expected to grow the fastest during the forecast period in the haptic technology market. North America, especially the U.S., serves as a vital market for haptic technology in gaming and entertainment. The need for immersive gaming experiences is propelling the incorporation of haptic feedback in consoles and VR headsets, establishing the region as a frontrunner in embracing innovative haptic technologies.
Asia Pacific is expected to generate the highest demand during the forecast period in the haptic technology market. Global market participants are seeing a rise in demand for haptic solutions from nations like China, Japan, and South Korea. Rising consumer demand for electronic devices like smartphones, tablets, and wearables in China, Japan, South Korea, and India is anticipated to boost the expansion of the haptic technology market in the area. Furthermore, the ongoing rise in vehicle manufacturing in nations like China and India, along with the presence of well-established consumer electronics OEMs, is anticipated to drive market expansion in the Asia Pacific region. The South Korea Haptic Technology Market Size is Growing at a CAGR of 5.1% from 2023 to 2033 and Expected to Hold a Significant Share by 2033.
Top Key Drivers & Haptic Technology Trends
- Rising Demand in Gaming, AR, and VR Applications
The growing popularity of immersive digital experiences is a major driver for haptic technology. Gamers and virtual reality users increasingly seek tactile feedback to deepen interaction, realism, and emotional engagement. Haptics enable users to feel vibrations, textures, and impacts, enhancing gameplay and simulation environments. This demand is further fueled by the expansion of AR/VR in education, military training, and healthcare. As more developers integrate haptic components into controllers, gloves, and wearable devices, the market is expected to benefit from continuous innovation and consumer enthusiasm for enhanced sensory experiences.
- Advancements in Consumer Electronics and Wearables
Haptic technology is rapidly being adopted in smartphones, smartwatches, and other consumer electronics to improve user interface feedback. Tactile responses for actions like typing, alert notifications, and gesture navigation enhance usability and user satisfaction. With major tech companies focusing on compact, energy-efficient haptic actuators, wearables are becoming more responsive and interactive. Additionally, the miniaturization of components and integration of touch-based features in IoT devices is expanding the scope of haptics beyond traditional applications, making it a critical differentiator in competitive consumer electronics markets.
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Top 5 Emerging Haptic Technology Startups
1. CAMAR – Tactile Touch Screens
Touch screen interfaces are ubiquitous now, found in everything from personal gadgets to control panels in industrial settings. In numerous scenarios, their use frequently diverts the user's attention as they must focus on the screen to control it – a case in point is vehicle dashboards. Addressing this issue, tactile touch screens employ haptic feedback to replicate the sensation of physical buttons in touch interfaces. Danish company CAMAR creates a haptic software application for touch displays. The startup's patented TacTile Pinpoint technology utilizes the conventional vibration motor in electronic devices to replicate a mechanical button. Additionally, the proactive function enables users to pinpoint an app's position on the screen without needing to visually check it. CAMAR’s solution is utilized in the automotive, shipping, and manufacturing sectors.
2. VRgluv – Virtual Reality (VR) Training
Startups are leveraging virtual reality technology to create solutions that educate employees in various industries. Notable instances involve aspiring surgeons practicing surgeries on patients and factory workers training to handle heavy equipment. Nonetheless, despite how realistic virtual reality can appear, trainees often find solutions to be unconvincing due to the absence of tactile feedback. Consequently, startups are investigating haptic technology to surpass this obstacle. The startup VRgluv, located in the US, provides a wireless haptic glove with force feedback for virtual reality training applications. The startup employs occlusion and drift-free technology to replicate the movement of the virtual hands with actual hands. When a user interacts with a virtual object, the glove applies robust haptic feedback to replicate the object's shape, dimensions, and rigidity. The changing, fluctuating force sensations enable users to perceive the distinction between hard, soft, and in-motion objects.
3. Consequential Robotics – Assistive Robots
Collaborative robots, known as cobots, operate alongside human employees in manufacturing and various other industries. Certain robots, like those used for picking fruit or performing surgery, frequently manage fragile items and must closely replicate the human touch. Solutions based on haptic technology enable robotic arms to accurately manage the force applied in various situations, resulting in improved human-robot interaction. British company Consequential Robotics creates supportive robots for the healthcare and education industries. The robots include capacitive touch sensors that enhance their interactivity compared to conventional robots. The robots are equipped with sensors for ultrasonic distance measurement, stereo vision, auditory perception, proprioception, and thermal sensing. The startup's solution is applicable in next-generation companion robots, therapy assisted by robots, education, and community interaction.
4. Dot Incorporation – Piezoelectric Haptics
Piezoelectric haptics operate based on the piezoelectric effect, in which specific materials generate an electric charge when subjected to mechanical stress. Utilizing this idea facilitates high-definition haptics with quicker response times, greater bandwidth, absence of mechanical noises, and more intense vibrations. Startups are developing solutions to the issue of excessive power usage that hampers the broader use of piezoelectric haptics. South Korean company Dot Incorporation leverages haptic technology to create intelligent devices for those with visual impairments. The Dot Watch allows for calls, texting, and additional smartwatch functionalities, all presented in braille. Additionally, the Dot Mini is an intelligent media gadget that offers access to literature, files, and music. These devices utilize the startup’s piezoelectric cell to enhance tactile literacy.
5. PSYONIC – Bionic Prosthesis
Many amputees utilize various types of prostheses, some of which enable the muscles of the wearer to manage the delicate movements of the prosthetic device. Nevertheless, without tactile feedback, even simple tasks like grasping items become quite challenging for individuals with prosthetic arms. Haptic technology provides tactile sensations to the prosthetic and enables the user to feel muscular sensations. The startup PSYONIC, located in the US, utilizes haptic technology to offer sophisticated bionic prosthetics. The Ability Hand includes multitouch sensory responses via extremely sensitive pressure sensors. The low-cost and easily available prosthesis also includes carbon fiber hands and brushless motor control for quick movement of individual fingers.
Top 12 Companies Leading the Haptic Technology Market
- AITO
- Boreas Technologies
- Cirrus Logic Inc.
- hap2U
- Immersion
- Johnson Electric Holdings Limited
- KEMET Corporation
- Microchip Technology Inc.
- Mouser Electronics, Inc.
- Synaptics Incorporated
- TDK Corporation
- Texas Instruments Incorporated
1. Aito B.V.
Headquarters: Amsterdam, Netherlands
Aito B.V. is a Dutch technology company specializing in integrated finger-sensing and haptic-feedback solutions for consumer electronics. Leveraging its proprietary Piezo Sensing technology, Aito transforms traditional interfaces such as trackpads and keyboards into responsive, tactile surfaces. Its ultra-compact haptic chipsets have been deployed in leading laptop OEM products, with mass production achieved in 2022. Backed by 6 million in funding, Aito is driving innovation in sectors including AR/VR, mobile, and smart surfaces.
2. Boréas Technologies Inc.
Headquarters: Bromont, Quebec, Canada
Boréas Technologies is a fabless semiconductor firm focused on high-performance, low-power piezoelectric haptic driver ICs. Utilizing its patented CapDrive platform, the company enables highly responsive, energy-efficient tactile feedback for smartphones, wearables, automotive systems, and trackpads. Its solutions are featured in premium OEM products such as NIO's automotive touchbars and are supported by in-house tools like Haptic Studio for design customization. Boréas continues to push boundaries in scalable haptics and force-sensing technologies.
3. Cirrus Logic Inc.
Headquarters: Austin, Texas, USA
Cirrus Logic is a leading U.S. semiconductor company specializing in precision analog and mixed-signal ICs for audio and haptic applications. The company’s CS40L25 haptic driver series powers immersive feedback in consumer electronics, wearables, automotive displays, and AR/VR devices. Cirrus Logic integrates haptic and audio functions into compact systems, delivering low-latency, high-fidelity tactile experiences through advanced signal processing and closed-loop control.
4. hap2U
Headquarters: Grenoble, France
hap2U is a French haptics innovator developing advanced touch-texture technology that embeds tactile sensations into digital surfaces. Founded in 2015, the company holds over 80 patents and utilizes semiconductor-grade processes to deliver scalable, reliable haptic modules. Its solutions are designed for consumer electronics, automotive touchscreens, and immersive AR/VR applications, offering realistic and programmable tactile experiences through a multidisciplinary approach involving acoustics, embedded systems, and material science.
5. Immersion Corporation
Headquarters: Aventura, Florida, USA
Immersion Corporation is a global leader in haptic feedback technology, with a business model centered on licensing its extensive intellectual property portfolio of over 1,200 patents. Established in 1993, the company enables realistic tactile effects across mobile devices, automotive interfaces, gaming systems, and XR platforms. Its technology is embedded in products from major players such as Meta and Nintendo, supporting immersive, customizable haptic experiences across a wide range of digital applications.
Are you ready to discover more about the haptic technology market?
The report provides an in-depth analysis of the leading companies operating in the global haptic technology market. It includes a comparative assessment based on their product portfolios, business overviews, geographical footprint, strategic initiatives, market segment share, and SWOT analysis. Each company is profiled using a standardized format that includes:
Company Profiles
- AITO.
- Business Overview
- Company Snapshot
- Products Overview
- Company Market Share Analysis
- Company Coverage Portfolio
- Financial Analysis
- Recent Developments
- Merger and Acquisitions
- SWOT Analysis
- Boréas Technologies
- Cirrus Logic Inc.
- hap2U
- Immersion
- Johnson Electric Holdings Limited
- KEMET Corporation
- Microchip Technology Inc.
- Mouser Electronics, Inc.
- Synaptics Incorporated
- TDK Corporation
- Texas Instruments Incorporated
Conclusion
The global haptic technology market is poised for significant expansion, driven by innovations in immersive user interfaces across gaming, AR/VR, automotive, consumer electronics, and healthcare applications. With increasing adoption of tactile feedback systems and rapid advancements in microelectromechanical technologies, haptics is becoming a critical enabler of next-gen digital experiences. Key players and emerging startups are actively shaping the landscape through breakthrough applications, energy-efficient designs, and accessibility-driven innovations. As industries continue to prioritize sensory-rich interactions, businesses and investors have a compelling opportunity to align with evolving trends and capitalize on the growing demand for touch-based digital engagement.
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