IEC 63041-3:2026
Piezoelectric sensors - Part 3: Physical sensors
Piezoelectric sensors - Part 3: Physical sensors
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 12
- Дата публикации:
- 25 февраля 2026 г.
- Издание:
- IEC IS 63041 edition 2 version 1
- ICS:
- 31.140
IEC 63041-3:2026 is available as IEC 63041-3:2026 RLV which contains the International Standard and its Redline version, showing all changes of the technical content compared to the previous edition.IEC 63041-3:2026 is applicable to piezoelectric physical sensors mainly used in the field of process control, wireless monitoring, dynamics, thermodynamics, vacuum engineering, and environmental sciences. This document provides users with technical guidelines as well as basic knowledge of common physical sensors. Piezoelectric sensors covered herein are those applied to the detection and measurement of physical quantities such as force, pressure, torque, viscosity, temperature, film thickness, acceleration, vibration, and tilt angle. This edition includes the following significant technical changes with respect to the previous edition: a) Some terms in Clause 3 have been updated to be consistent with IEC TS 61994-5:2023.
Abstract
Overview
IEC 63041-3:2026 – Piezoelectric sensors – Part 3: Physical sensors is an internationally recognized standard published by the International Electrotechnical Commission (IEC). This document defines requirements and provides technical guidelines for piezoelectric physical sensors primarily employed in process control, wireless monitoring, dynamics, thermodynamics, vacuum engineering, and environmental sciences. The standard was developed by IEC Technical Committee 49, which focuses on piezoelectric, dielectric, and electrostatic devices.
IEC 63041-3:2026 details key terms, measurement methods, sensor types, and essential parameters for the detection and measurement of physical quantities such as force, pressure, torque, viscosity, temperature, film thickness, acceleration, vibration, and tilt angle. It also includes a redline version that highlights significant updates from the previous edition, such as the harmonization of terminology in accordance with IEC TS 61994-5:2023.
Key Topics
-
Sensor Definitions and Types
The standard defines several types of piezoelectric sensor elements, including:- Acceleration sensors
- Humidity sensors
- Tilt angle sensors
- Vibration sensors
- Dual mode, differential, and multi-measurand sensors
-
Operating Principles
Piezoelectric sensors use variations in resonance frequency, delay time, and electrical signals (charge/voltage) for accurate measurement of different physical properties. -
Sensor Configurations
The document introduces conceptual diagrams for:- Surface Acoustic Wave (SAW) single and differential resonator types
- SAW transmission (two-port) and reflective (one-port) delay-line types Reflective delay lines are notable for their ability to support unique sensor identification and enhanced sensitivity.
-
Technical Specification Requirements
Manufacturers and users must clarify:- Avoidance of unwanted vibration mode coupling
- Sensor detection direction
- Hysteresis
- Linearity in sensor response
- Overload characteristics
- Response time
-
Testing and Calibration
Calibration methods and test procedures are referenced, aiming to ensure the reliability and accuracy of physical sensor measurements. Relevant annexes elaborate on detection, measurement, and the application of typical formulae for quantifying physical properties.
Applications
Piezoelectric physical sensors standardized under IEC 63041-3:2026 are widely integrated in:
-
Process Control
For real-time monitoring of pressure, force, and vibration in industrial automation and manufacturing. -
Wireless Monitoring
Used in harsh or remote environments where real-time, contactless measurement (such as with SAW-based sensors) is essential, including environmental systems and facility management. -
Dynamics and Thermodynamics
For accurate monitoring of temperature fluctuations, dynamic pressure, and acceleration in scientific research and engineering applications. -
Vacuum Engineering
Ideal for controlling and monitoring sensitive processes in vacuum environments, where reliability and measurement precision are critical. -
Environmental Sciences
Applied for measuring environmental parameters such as humidity, tilt angle (for geotechnical monitoring), and film thickness in pollution control and resource management.
Related Standards
For a comprehensive approach to piezoelectric sensor technology, IEC 63041-3:2026 should be considered alongside the following standards:
- IEC 63041-1:2017 – Piezoelectric sensors – Part 1: Generic specifications
- IEC 63041-2 – Piezoelectric sensors – Part 2: Chemical and biochemical sensors
- IEC TS 61994-5:2023 – Glossary for piezoelectric, dielectric, and electrostatic devices
- IEC 60758:2016 – Synthetic quartz crystal – Specifications and guidelines for use
- IEC 60444 series – Measurement of quartz crystal unit parameters
- ISO/IEC 17025 – General requirements for the competence of testing and calibration laboratories
Consulting these related standards ensures full regulatory compliance, enhances technical compatibility, and supports the deployment of robust piezoelectric measurement systems across diverse application areas.
Keywords: IEC 63041-3, piezoelectric sensors, physical sensors, process control, SAW sensors, wireless monitoring, sensor calibration, sensor types, international standards, sensor measurement.
Технические детали
- Технический комитет
- TC 49 - Piezoelectric, dielectric and electrostatic devices and associated materials for frequency control, selection and detection
- SKU
- IEC 63041-3:2026
Похожие стандарты
Стандарты, упомянутые в описании
IEC 63041-1:2017
ДействующийPiezoelectric sensors - Part 1: Generic specifications
Overview IEC 63041-1:2017 - "Piezoelectric sensors - Part 1: Generic specifications" defines generic terminology, symbols, measurement and detection practices, and baseline specification items for pi…
IEC 60758:2016
ДействующийSynthetic quartz crystal - Specifications and guidelines for use
Overview IEC 60758:2016 - Synthetic quartz crystal - Specifications and guidelines for use - defines requirements, test methods and usage guidance for synthetic quartz single crystals used to manufac…
IEC 63041-2:2017
ДействующийPiezoelectric sensors - Part 2: Chemical and biochemical sensors
Overview IEC 63041-2:2017 - Piezoelectric sensors – Part 2: Chemical and biochemical sensors - provides technical guidelines for the use, specification and testing of piezoelectric chemical and bioch…
SIST EN IEC 60444-11:2026
ДействующийMeasurement of quartz crystal unit parameters - Part 11: Standard method for the determination of the load re…
Overview SIST EN IEC 60444-11:2026 establishes the standard method for measuring key parameters of quartz crystal units, specifically the load resonance frequency (fL) and effective load capacitance…
BS EN ISO/IEC 17025:2017
ДействующийGeneral requirements for the competence of testing and calibration laboratories.
IEC 63041-3:2020
ДействующийPiezoelectric sensors - Part 3: Physical sensors
Overview IEC 63041-3:2020 is an international standard issued by the International Electrotechnical Commission (IEC) that focuses on piezoelectric physical sensors. This part of the IEC 63041 series…