25/09/2026
Murata Manufacturing Co., Ltd.
President:
Norio Nakajima
Murata Manufacturing Co., Ltd. is pleased to announce it will exhibit at CEATEC 2026, taking place from October 13th to October 16th, 2026, at Makuhari Messe, booth No. 7H340.
Advances in AI, robotics, and IoT are changing what is required from sensing technologies, creating new opportunities to detect, interpret, and act on physical conditions, material states, and biological signals with greater accuracy and efficiency.
Addressing these evolving requirements, under CEATEC 2026’s theme 'Transformation', Murata will showcase its latest technologies alongside innovative solutions developed in collaboration with partners. Together, the exhibits will highlight new approaches to sensing, monitoring, and detection that can help support a more connected, sustainable, and prosperous society of the future.
Visitors are invited to explore these technologies firsthand, with key exhibits at the Murata booth including*1:
Ultrasound Transmission Metamaterial
Murata’s ultrasound transmission material enables ultrasonic detection through materials such as metal and resin, which are normally difficult for ultrasound to penetrate. Applied to these obstructing materials, the metamaterial increases ultrasound transmission, extending ultrasonic sensing to applications where internal conditions have traditionally been difficult to assess, including nondestructive testing, flow meters and biomedical applications.
Wearable Device for Capturing Trace Biomarkers*2
A wearable technology patch under development that captures trace substances such as glucose and alcohol. Designed for advanced wellness-related applications, its proprietary enzyme-based technology captures target substances, supporting the detection of trace biomarkers that have previously been difficult to measure .
A battery-free, wireless tag capable of sensing temperature, humidity, and strain. The technology enables real-time monitoring of conditions that have traditionally been difficult to assess, including bolt loosening and changes in concrete condition, and is designed to improve inspection and maintenance efficiency.
Neuromorphic Sensing System
Inspired by the information-processing mechanisms of biological nervous systems and sensory organs, this technology enables large-area, high-density sensing with ultra-low power consumption and low latency. Supporting applications like electronic skin for humanoid robots and equipment temperature monitoring, the system provides real-time detection of temperature distributions across a large surface area.
Obstacle detection for AMRs equipped with thermophones
This solution equips an autonomous mobile robot (AMR) with a thermophone, a device that generates ultrasound using heat, to detect nearby obstacles. In current development testing, the technology can measure distances from 1 cm to 2 m and can detect transparent objects such as glass, which can be difficult for optical sensors such as cameras to identify. It can also operate in high-glare environments, supporting obstacle detection for AMR applications.
- *1
Exhibit items are under development, and product specifications and appearance are subject to change without notice.
- *2
This exhibit is a technology demonstrator under development. It is not a finished medical device and, in its current form, is not intended for diagnosis, treatment, prevention, or medical monitoring.
Murata will also showcase technologies that aim to contribute in various ways toward fostering a sustainable and prosperous future society. For more information on the exhibited items, please visit Murata’s dedicated CEATEC 2026 website .
Murata in Brief
Murata Manufacturing Co., Ltd. is a worldwide leader in the design, manufacture and sale of ceramic-based passive electronic components & solutions, communication modules and power supply modules. Murata is committed to the development of advanced electronic materials and leading edge, multi-functional, high-density modules. The company has employees and manufacturing facilities throughout the world.