Technology Solutions Products Applications Research Resources Explore Technology Talk to Haptagon →

Haptics Technology

HAPTAGON

Technology You Can Feel.

Haptagon = Technology You Can Feel

Turning Digital Signals Into Physical Sensation.

Haptagon engineers advanced haptic systems that bring touch, force and tactile feedback into the next generation of devices and human-machine interfaces.

Force
Frequency
Response
Active Zones

The screen can show you.Haptics lets you feel.

Digital interfaces have become visual and auditory. Haptics adds another dimension: physical sensation. Haptagon creates advanced haptic systems that transform digital information into physical sensation.

TOUCH

FORCE

FEEDBACK

Signal Pipeline

How haptics works.

From digital input to physical sensation: a precise chain of sensing, processing, and actuation.

Input

Sense

  • Touch
  • Gesture
  • Motion
  • Digital Signal

Process

Haptics Engine

  • Pattern mapping
  • Force calculus
  • Latency control

Actuation

Drive

  • Vibration
  • Force
  • Pressure
  • Texture

Output

Sensation

  • Physical Sensation
  • Confirmed contact
  • Spatial cues

Haptic Engine

Control sensation with precision.

An actuator array tuned for force, frequency, and near-instant surface response.

Haptic EngineOnline
Actuator ArrayActive
ForceDetected
FrequencyTuned
LatencyOptimized
Surface ResponseActive

Engineering View

Real-Time Force Map

Pressure distribution visualized as a living force field: cyan for signal, coral for peak contact.

Low High

Contact State

Sensing

Pressure Distribution

Low
Medium
High

Move across the surface to reshape the force field. Designed as advanced engineering software, not a clinical display.

Technology Types

Six ways to make machines feel.

Vibrotactile

Precision vibration patterns that communicate information through touch.

Force Feedback

Simulate resistance, pressure and physical interaction.

Surface Haptics

Create tactile textures across digital surfaces.

Ultrasonic Haptics

Shape touch sensations without traditional mechanical interfaces.

Mid-Air Haptics

Create touch sensations without physical contact.

Multi-Modal Feedback

Combine touch, motion, sound and visual feedback into one experience.

Applications

One sense.
Endless applications.

Automotive

Bring tactile intelligence into next-generation vehicle interfaces.

XR & VR

Make virtual objects feel physical.

Robotics

Give machines a richer sense of interaction.

Gaming

Turn digital actions into physical feedback.

Healthcare Technology

Create precise tactile interfaces for advanced equipment.

Consumer Electronics

Make everyday devices more intuitive.

Automotive Haptics

Feel the vehicle respond.

Tactile controls that confirm every action through force: rotation, resistance, click, confirmation.

Cabin Interface · Haptic Layer

XR & Spatial Computing

Make virtual objects feel real.

Contact, force, texture and resistance rendered as spatial haptic fields around digital objects.

ContactActive
ForcePresent
TextureSmooth
ResistanceMedium

Robotics

Machines need a sense of touch.

Fingertip sensor arrays that detect pressure, texture and grip stability in real time.

PressureDetected
ContactDetected
TextureRough
GripStable

Haptagon Haptic Platform

Architecture built for sensation.

A clean path from digital input to tactile output.

Digital Input
Haptic Engine
Control Layer
Actuator Network
Tactile Output

Research & Innovation

Engineering the next language of touch.

Material Science

Surfaces and substrates that transmit force with fidelity.

Actuator Design

Compact transducers for dense tactile arrays.

Signal Processing

Algorithms that map intent to sensation with precision.

Human Perception

Understanding how people interpret tactile cues.

Haptic Rendering

Synthesizing textures, edges and dynamic forces.

Real-Time Control

Closed-loop systems that keep feedback trustworthy.

Response Path

Every moment changes the experience.

Input
Process
Signal
Actuation
Feedback

Tactile Experience

Don't just explore the interface.
Feel the idea.

Move across the hexagonal grid. Pressure ripples, force vectors and activated cells respond like a living surface.

Move to apply force · The Haptagon Field

Industries

Built for the interfaces of tomorrow.

Automotive

Consumer Electronics

XR / VR

Robotics

Gaming

Healthcare

Industrial Technology

Smart Devices

Integrations

Built to become part of the experience.

Abstract layers your product can plug into, without claiming unverified third-party partnerships.

Sensors
Actuators
Embedded Systems
Mobile
Desktop
XR
Automotive Systems
IoT

Reliability

Precision you can build on.

Reliable Actuation

Consistent force profiles across temperature and duty cycles.

Low-Latency Processing

Fast paths from intent to sensation.

Hardware Integration

Designed to sit cleanly inside product architectures.

Real-Time Control

Closed-loop feedback for trustworthy tactile output.

Scalable Architecture

From single actuators to dense surface arrays.

Developer APIs

Programmable patterns for product teams.

Developer Platform

Build touch into your product.

Trigger haptic patterns with a precise, expressive API.

HAPTIC.trigger({
    pattern: "soft-click",
    intensity: "gentle",
    feel: "confirm"
});

Live Haptic Response

Case Study Placeholder

From digital interaction
to physical experience.

Before

Visual-only interface

Users see feedback. Confirmation stays on screen.

After

Visual + tactile interaction

Users feel confirmation: force, click, texture.

FAQ

Questions, answered.

What is haptic technology?
Haptic technology creates physical sensations (vibration, force, pressure and texture) so digital systems can communicate through touch as well as sight and sound.
How does Haptagon's technology work?
Haptagon maps digital signals through a haptics engine that drives actuator networks. Touch or software events become precisely timed force and vibration patterns on a surface or device.
What types of haptic feedback can be created?
Vibrotactile patterns, force feedback, surface textures, ultrasonic and mid-air sensations, and multi-modal experiences that combine touch with motion, sound and visuals.
Can Haptagon integrate with existing hardware?
Yes. The platform is designed around sensors, actuators, embedded systems and product architectures, from mobile and desktop to automotive and XR.
Can developers build custom haptic patterns?
Developers can trigger and compose patterns through the Haptagon API, specifying feel, intensity, pattern type and spatial distribution.
What industries can use haptic technology?
Automotive, XR/VR, robotics, gaming, healthcare technology, consumer electronics, industrial systems and smart devices.
Does Haptagon support XR and spatial interfaces?
Yes. Spatial haptic fields can surround virtual objects with contact, force, texture and resistance cues for immersive interfaces.
How does haptic feedback improve user interaction?
Physical confirmation reduces uncertainty, speeds interaction, and makes interfaces feel more natural, especially when vision or attention is limited.

Make digital
feel physical.

Build the next generation of human-machine interaction with Haptagon.