Soft pressure sensors play key roles as input devices of electronic skin (E-skin) to imitate real human skin. For efficient data acquisition according to stimulus types such as detailed pressure images or macroscopic strength of stimuli, soft pressure sensors can have variable spatial resolution, just like the uneven spatial distribution of pressure-sensing receptors on the human body. However, previous methods on soft pressure sensors cannot achieve such tunability of spatial resolution because their sensor materials and read-out electrodes need to be elaborately patterned for a specific sensor density. Here, we report a universal soft pressure-sensitive platform based on anisotropically self-assembled ferromagnetic particles embedded in e...
The development of flexible electronic skins with high sensitivities and multimodal sensing capabili...
Human intervention can be replaced through development of devices with a broad range of sensory capa...
The development of flexible electronic skins with high sensitivities and multimodal sensing capabili...
The desire to operate robots in unstructured environments, side-by-side with humans, has created a d...
Electronic skin are devices that mimic the functionalities of human skin, which require high sensiti...
We report a flexible and wearable pressure sensor based on the giant piezocapacitive effect of a thr...
We report a flexible and wearable pressure sensor based on the giant piezocapacitive effect of a thr...
Finger skin electronics are essential for realizing humanoid soft robots and/or medical applications...
The development of wearable electronic skins is drawing many interests due to potential applications...
Wearable pressure sensors with high sensitivity, broad dynamic response range, and low detection lim...
Wearable pressure sensors with high sensitivity, broad dynamic response range, and low detection lim...
In the fields of humanoid robots, soft robotics, and wearable electronics, the development of artifi...
The development of flexible electronic skins with high sensitivities and multimodal sensing capabili...
Although skin-like pressure sensors exhibit high sensitivity with a high performance over a wide are...
The development of flexible electronic skins with high sensitivities and multimodal sensing capabili...
The development of flexible electronic skins with high sensitivities and multimodal sensing capabili...
Human intervention can be replaced through development of devices with a broad range of sensory capa...
The development of flexible electronic skins with high sensitivities and multimodal sensing capabili...
The desire to operate robots in unstructured environments, side-by-side with humans, has created a d...
Electronic skin are devices that mimic the functionalities of human skin, which require high sensiti...
We report a flexible and wearable pressure sensor based on the giant piezocapacitive effect of a thr...
We report a flexible and wearable pressure sensor based on the giant piezocapacitive effect of a thr...
Finger skin electronics are essential for realizing humanoid soft robots and/or medical applications...
The development of wearable electronic skins is drawing many interests due to potential applications...
Wearable pressure sensors with high sensitivity, broad dynamic response range, and low detection lim...
Wearable pressure sensors with high sensitivity, broad dynamic response range, and low detection lim...
In the fields of humanoid robots, soft robotics, and wearable electronics, the development of artifi...
The development of flexible electronic skins with high sensitivities and multimodal sensing capabili...
Although skin-like pressure sensors exhibit high sensitivity with a high performance over a wide are...
The development of flexible electronic skins with high sensitivities and multimodal sensing capabili...
The development of flexible electronic skins with high sensitivities and multimodal sensing capabili...
Human intervention can be replaced through development of devices with a broad range of sensory capa...
The development of flexible electronic skins with high sensitivities and multimodal sensing capabili...