[EN] This paper presents a Planar Inverted-F Antenna (PIFA) design for a smartwatch application, optimized to operate on the 2.4 GHz Bluetooth frequency band, on the proximity of the human forearm. The PIFA antenna is mounted on the watchstrap that is used as the antenna substrate. The antenna is fed in a singular way, since a coplanar wave-guide (CPW) transmission line is used to excite the antenna. The antenna is integrated in the watchstrap, curved over the phantom forearm and simulated along with the watchcase. A return loss of ¿20 dB is obtained at 2.4 GHz, and an efficiency of ¿5 dB, which represents a good efficiency taking into account the effect of the human forearm.This work has been supported by the Spanish Ministry of Science an...
In this work a simple, low cost and compact PIFA antenna for Bluetooth application is presented. The...
This thesis reports on the investigation of a dual-band planar inverted-F antenna (PIFA) for its use...
In this paper, a planar inverted-F antenna (PIFA) for Internet Of Things (IOT) networks is studied. ...
[EN] This paper presents a Planar Inverted-F Antenna (PIFA) design for a smartwatch application, opt...
This paper presents a Planar Inverted-F Antenna (PIFA) design for a smartwatch application, optimize...
SmartWatches are watches with the property that they can connect to internet.The interest and market...
This paper presents a 915 MHz planar inverted-F antenna (PIFA) topology for a wrist-worn wireless se...
In this work a flexible wearable PIFA antenna has been designed in order to operate according to the...
A compact 915 MHz antenna integrated within a wristwatch wireless sensor device is presented. The an...
With recent advances in wearable wireless sensor technology, the demand for smart wristwatches is gr...
As long as new technologies appear, the need for smaller and more customizable antennas has become ...
The objective of this work is a create a smart watch antenna, that will operate in two frequency ban...
In this paper, a high performance antenna design for wearable smartwatch using controlled endless me...
The robustness of wearable Ultra-High Frequency (UHF)-band planar inverted-F Antennas (PIFAs) with r...
The object of research is the process of radiation of electromagnetic waves from a flexible antenna-...
In this work a simple, low cost and compact PIFA antenna for Bluetooth application is presented. The...
This thesis reports on the investigation of a dual-band planar inverted-F antenna (PIFA) for its use...
In this paper, a planar inverted-F antenna (PIFA) for Internet Of Things (IOT) networks is studied. ...
[EN] This paper presents a Planar Inverted-F Antenna (PIFA) design for a smartwatch application, opt...
This paper presents a Planar Inverted-F Antenna (PIFA) design for a smartwatch application, optimize...
SmartWatches are watches with the property that they can connect to internet.The interest and market...
This paper presents a 915 MHz planar inverted-F antenna (PIFA) topology for a wrist-worn wireless se...
In this work a flexible wearable PIFA antenna has been designed in order to operate according to the...
A compact 915 MHz antenna integrated within a wristwatch wireless sensor device is presented. The an...
With recent advances in wearable wireless sensor technology, the demand for smart wristwatches is gr...
As long as new technologies appear, the need for smaller and more customizable antennas has become ...
The objective of this work is a create a smart watch antenna, that will operate in two frequency ban...
In this paper, a high performance antenna design for wearable smartwatch using controlled endless me...
The robustness of wearable Ultra-High Frequency (UHF)-band planar inverted-F Antennas (PIFAs) with r...
The object of research is the process of radiation of electromagnetic waves from a flexible antenna-...
In this work a simple, low cost and compact PIFA antenna for Bluetooth application is presented. The...
This thesis reports on the investigation of a dual-band planar inverted-F antenna (PIFA) for its use...
In this paper, a planar inverted-F antenna (PIFA) for Internet Of Things (IOT) networks is studied. ...