Synaptics Incorporated

08/21/2026 | Press release | Archived content

Synaptics Brings Tactile Sensing and Edge AI to NVIDIA Isaac Sim and Holoscan

Synaptics Capacitive Tactile Sensing (CTS) module captures touch data and Astra® Edge AI processors run inference on device, now supported on NVIDIA Isaac Sim™ and Holoscan.

SAN JOSE, CA, September 15, 2026 - Synaptics® Incorporated (Nasdaq: SYNA) today announced its first CTS module powered by the SN6012T touch controller is now supported by the open robotics simulation framework, NVIDIA Isaac Sim. The Synaptics CTS module is designed for dexterous robotic hands, grippers, and other Physical AI systems to detect contact and pressure distribution, supporting more precise grip control, object manipulation, and responsive interaction.

The CTS module works effortlessly with Synaptics Astra® Edge AI processors. These processors serve as a multimodal sensing, inferencing, and connectivity hub unifying touch, vision, motor control, and other sensory signals into synchronized streams to facilitate hierarchical AI systems with support of NVIDIA Holoscan.

As Physical AI platforms increasingly operate in highly dynamic environments and interact directly with humans and objects, developers need simulation environments that capture how contact and force behave at the point of touch. This simulation environment delivers a way to prototype tactile interactions and generate synthetic sensor data. It helps developers expedite validation cycles by enabling perception algorithms before deploying on physical hardware.

The CTS platform is expected to provide:

  • An optimized standard tactile module: High 2.5mm pitch taxel density with a 5x12 taxel array, supporting force ranges up to 100N with 0.1N resolution.
  • Faster response, low-hysteresis proprietary sensor design: 10x faster rebound response than traditional foam sensors.
  • Native Newton engine support: Built from the ground up for NVIDIA's Newton physics simulation engine.

The Astra AI-native processor platform is designed to:

  • Aggregate touch, vision, and motion data into unified streams, delivered to NVIDIA Holoscan over standard Ethernet.
  • Offload sensor collection and synchronization from central compute, so robotic platforms can interpret contact, grip, and movement locally.
  • Bring localized Edge AI intelligence to humanoids, grippers, and industrial systems, cutting integration complexity.

"Tactile sensing is essential for fast, accurate, and robust robotics and humanoid experiences across all markets," said Rahul Patel, President and CEO, Synaptics. "Combining Synaptics' touch modules and Astra Edge AI processors with NVIDIA's Isaac Sim and Holoscan platform capabilities enables processing of multi-sensory modalities, simplifying integration hurdles and accelerating time-to-market for developers through faster validation cycles."

"The next generation of Physical AI depends on closing the gap between what robots learn in simulation and how they respond to contact in the real world," said Deepu Talla, Vice President of Robotics and Edge AI at NVIDIA. "Synaptics is bringing CTS tactile sensing and Astra Edge AI processors to NVIDIA Isaac Sim and Holoscan, helping developers simulate touch and process multimodal sensor data for more precise grip control, object manipulation, and responsive robotic interaction."

Synaptics Incorporated published this content on August 21, 2026, and is solely responsible for the information contained herein. Distributed via Public Technologies (PUBT), unedited and unaltered, on September 15, 2026 at 12:35 UTC. If you believe the information included in the content is inaccurate or outdated and requires editing or removal, please contact us at [email protected]