Category Ranking

98%

Total Visits

921

Avg Visit Duration

2 minutes

Citations

20

Article Abstract

This paper reports a self-temperature compensation barometer based on a quartz resonant pressure sensor. A novel sensor chip that contains a double-ended tuning fork (DETF) resonator and a single-ended tuning fork (SETF) resonator is designed and fabricated. The two resonators are designed on the same diaphragm. The DETF resonator works as a pressure sensor. To reduce the influence of the temperature drift, the SETF resonator works as a temperature compensation sensor, which senses the instantaneous temperature of the DETF resonator. The temperature compensation method based on polynomial fitting is studied. The experimental results show that the accuracy is 0.019% F.S. in a pressure range of 200~1200 hPa over a temperature range of -20 °C~+60 °C. The absolute errors of the barometer are within ±23 Pa. To verify its actual performance, a drone flight test was conducted. The test results are consistent with the actual flight trajectory.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11487395PMC
http://dx.doi.org/10.3390/s24082460DOI Listing

Publication Analysis

Top Keywords

pressure sensor
12
detf resonator
12
self-temperature compensation
8
compensation barometer
8
barometer based
8
resonant pressure
8
tuning fork
8
setf resonator
8
resonator works
8
temperature compensation
8

Similar Publications

Objective: Transcranial ultrasound (US) stimulation (TUS) has emerged as a promising technique for minimally invasive, localized, deep brain stimulation. However, indirect auditory effects during neuromodulation require careful consideration, particularly in experiments with rodents. One method to prevent auditory responses involves applying tapered envelopes to US bursts.

View Article and Find Full Text PDF

Electroactive polymer (EAP) artificial muscles are gaining attention in robotic control technologies. Among them, the development of self-sensing actuators that integrate sensing mechanisms within artificial muscles is highly anticipated. This study aimed to evaluate the accuracy and precision of the sensing capabilities of the e-Rubber (eR), an artificial muscle developed by Toyoda Gosei Co.

View Article and Find Full Text PDF

All-In-One Iontronic Sensing Aligner for High-Precision 3D Orthodontic Force Monitoring.

Adv Sci (Weinh)

September 2025

Department of Orthodontics, National Center for Stomatology, National Clinical Research Center for Oral Diseases, National Engineering Research Center of Oral Biomaterials and Digital Medical Devices, Beijing Key Laboratory of Digital Stomatology, NHC Key Laboratory of Digital Stomatology, NMPA Key

Clear aligners offer aesthetic and comfort advantages in orthodontics, yet their ability to deliver effective forces relies heavily on empirical judgment or large-scale optical scanning, lacking real-time quantitative evaluation. Integrating pressure sensors into aligners is a promising solution, but challenges in miniaturization, multi-dimensional sensing, measurement accuracy, and biocompatibility hinder clinical application. Here, an all-in-one Orthodontic Force Acquisition System (OFAS) is presented that enables real-time, 3D force monitoring using a cross-shaped iontronic sensing array and an origami-inspired, wireless battery-free readout circuit miniaturized for single-tooth placement.

View Article and Find Full Text PDF

Co-Immobilization of Trypsin and Lysine -α- Oxidase For the Quantification of Lysine in Casein Hydrolysate. Evaluation with a Biosensor.

Cell Physiol Biochem

August 2025

Departamento de Procesos Químicos, Alimentos y Biotecnología. Facultad de Ingeniería y Ciencias Aplicadas. Universidad Técnica de Manabí, Portoviejo, Ecuador.

Background/aims: The quantification of amino acids in the dairy industry is necessary for quality control and for the formulation of functional foods. Thus, the development of enzymatic biosensors requires a detailed study of enzyme kinetics. Parameters such as KM and Vmax are necessary to optimize the sensitivity and specificity of the biosensor.

View Article and Find Full Text PDF

The carotid body mediates peak oxygen uptake during maximal physical exertion in rats.

J Physiol

September 2025

Instituto de Ciencias Biomédicas, Facultad de Ciencias de la Salud, Universidad Autónoma de Chile, Santiago, Chile.

Cardiorespiratory responses to physical exercise are expected to meet the organism's metabolic demands. As carotid body (CB) glomus cells have been proposed as metabolic sensors, we sought to determine their contribution to peak oxygen uptake ( ) during exercise in rats. Adult male Wistar Kyoto rats underwent bilateral co-injection of two adeno-associated viruses (AAVs) at the CB bifurcation (AVV-TH-Cre-SV40 and AVV-hSyn-DREADD(Gi)-mCherry).

View Article and Find Full Text PDF