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Journal ArticleDOI

A reliable and economically feasible remote sensing system for temperature and relative humidity measurement

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TLDR
This paper designs a remote temperature and relative humidity sensing system that has added advantages compared with existing systems, namely, in its low cost and high memory capabilities and the ability to perform in both real-time as well as off-line.
Abstract
Sensing and recording of relative humidity and temperature plays an important role in many industries. In the past analogue devices were used for measurement of relative humidity and temperature. A simple technique combining analogue and digital circuit theory together with programming techniques has been used in this paper to design a remote temperature and relative humidity sensing system. The sensors analogue signal is applied to a micro-controller based data logger for storage purposes. The data is then transferred to the computer through standard RS232 serial port using the user interface program. The program also allows the user to input some of the important parameters such as sampling interval as well as starting date and time for the logging operation. A back-up power supply is also included to enable the system to remain functional in the event of a power failure. The proposed system has added advantages compared with existing systems, namely, in its low cost and high memory capabilities and the ability to perform in both real-time as well as off-line.

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Citations
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Environmental and economic benefits of optimal insulation thickness: A life-cycle cost analysis

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Linearization of NTC Thermistor Characteristic Using Op-Amp Based Inverting Amplifier

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References
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Journal ArticleDOI

A high-speed capacitive humidity sensor with on-chip thermal reset

TL;DR: In this paper, a high-speed capacitive humidity sensor integrated on a polysilicon heater was used to measure relative humidity levels > 80% RH, achieving a response time of 1.0 s and a sensitivity of 30.0 fF/% RH.
Journal ArticleDOI

A passive wireless integrated humidity sensor

TL;DR: In this paper, a single-chip integrated humidity sensor (IHS) capable of wireless operation through inductive coupling with a remote transmitter is presented, which consists of a planar electroplated copper coil (20 /spl mu/m thick, 30 /spl m pitch, and 23 turns) and a silicon substrate separated by a 4100-5600 /spl Aring/ polyimide film.
Proceedings ArticleDOI

Remote sensor system using passive SAW sensors

TL;DR: In this paper, different concepts for remote accessing and identifying SAW sensors via a wireless system are considered, and the experimental results using a SAW temperature sensor with the remote sensing capability demonstrate the realization of the basic concept.
Proceedings ArticleDOI

Surface acoustic wave humidity sensor based on the changes in the viscoelastic properties of a polymer film

TL;DR: In this article, a 50 MHz SAW device has been successfully applied as a humidity sensor, where the polymer (polyXIO) was either over the substrate or over a metal film on the substrate, and the sensor was found to be reproducible with a moderate hysteresis effect, of the order of 5%.
Journal ArticleDOI

Sensor for high-air-humidity measurement

TL;DR: In this paper, the sensitivity of the capacitive-dependent capacitive crystal of the humidity sensor with stochastic test signals has been investigated, including the influence of test signals of the weighting function uncertainty and of the A/D-D/A conversion.