Circuits for the measurement of remote resistive sensors: A review
In this article, electronic read-out circuits recently proposed for the measurement of remote resistive sensors are presented and critically reviewed. This is carried out for remote resistive sensors with a two-, three-, and four-wire interconnection and also for resistive sensor bridges with a five...
| Autores: | , , |
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| Tipo de documento: | artigo |
| Data de publicação: | 2025 |
| País: | España |
| Recursos: | Universitat Politècnica de Catalunya (UPC) |
| Repositório: | UPCommons. Portal del coneixement obert de la UPC |
| Idioma: | inglês |
| OAI Identifier: | oai:upcommons.upc.edu:2117/426560 |
| Acesso em linha: | https://hdl.handle.net/2117/426560 https://dx.doi.org/10.1109/TIM.2025.3542136 |
| Access Level: | Acceso aberto |
| Palavra-chave: | Remote sensing Sensor measurements Sensor resistance Conventional circuit Readout circuit Output signal Current source Measurement uncertainty Types of signals Resistant parasites Strain gauges Equivalent resistance Forward bias Automotive applications Thermal sensors Voltage divider Excitation voltage Analog output Thermal drift Wire resistance Offset error High input impedance Resistance temperature detectors Forward voltage drop Wheatstone bridge Additional phase Industrial applications Constant current Open phase Nonlinear error Parasitic resistance Read-out circuit Remote sensor Resistive sensor Sensor interface electronics Wire-resistance compensation. |
| Resumo: | In this article, electronic read-out circuits recently proposed for the measurement of remote resistive sensors are presented and critically reviewed. This is carried out for remote resistive sensors with a two-, three-, and four-wire interconnection and also for resistive sensor bridges with a five- and six-wire topology. For each of the previous scenarios, a discussion is provided about conventional and novel read-out circuits, as well as the corresponding limitations. In addition, for each of the scenarios, the novel read-out circuits lately proposed in the literature are compared with each other in terms of different performance parameters. For the sensors and circuits community, this review has a twofold benefit. On the one hand, this is a summary that identifies the pros and cons of the different circuits so as to correctly select the most appropriate alternative for a given application. On the other hand, current gaps and future opportunities are identified, thus opening future lines of research. |
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