JOURNAL ARTICLE

A dual-mode proximity sensor with integrated capacitive and temperature sensing units

Shihua QiuYing HuangXiaoyue HeZhiguang SunPing LiuCaixia Liu

Year: 2015 Journal:   Measurement Science and Technology Vol: 26 (10)Pages: 105101-105101   Publisher: IOP Publishing

Abstract

The proximity sensor is one of the most important devices in the field of robot application. It can accurately provide the proximity information to assistant robots to interact with human beings and the external environment safely. In this paper, we have proposed and demonstrated a dual-mode proximity sensor composed of capacitive and resistive sensing units. We defined the capacitive type proximity sensor perceiving the proximity information as C-mode and the resistive type proximity sensor detecting as R-mode. Graphene nanoplatelets (GNPs) were chosen as the R-mode sensing material because of its high performance. The dual-mode proximity sensor presents the following features: (1) the sensing distance of the dual-mode proximity sensor has been enlarged compared with the single capacitive proximity sensor in the same geometrical pattern; (2) experiments have verified that the proposed sensor can sense the proximity information of different materials; (3) the proximity sensing capability of the sensor has been improved by two modes perceive collaboratively, for a plastic block at a temperature of 60 °C: the R-mode will perceive the proximity information when the distance d between the sensor and object is 6.0–17.0 mm and the C-mode will do that when their interval is 0–2.0 mm; additionally two modes will work together when the distance is 2.0–6.0 mm. These features indicate our transducer is very valuable in skin-like sensing applications.

Keywords:
Proximity sensor Capacitive sensing Resistive touchscreen Dual mode Mode (computer interface) Electro-optical sensor Tactile sensor Computer science Dual (grammatical number) Proximity effect (electron beam lithography) Materials science Acoustics Robot Electrical engineering Optoelectronics Electronic engineering Artificial intelligence Physics Computer vision Engineering Nanotechnology

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FWCI (Field Weighted Citation Impact)
20
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0.78
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Citation History

Topics

Advanced Sensor and Energy Harvesting Materials
Physical Sciences →  Engineering →  Biomedical Engineering
Gas Sensing Nanomaterials and Sensors
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Analytical Chemistry and Sensors
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