IEC 62884-1:2017
Measurement techniques of piezoelectric, dielectric and electrostatic oscillators - Part 1: Basic methods for the measurement
Measurement techniques of piezoelectric, dielectric and electrostatic oscillators - Part 1: Basic methods for the measurement
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 61
- Дата публикации:
- 8 июня 2017 г.
- Издание:
- IEC IS 62884 edition 1 version 1
- ICS:
- 11.040.50
IEC 62884-1:2017 specifies the measurement techniques for piezoelectric, dielectric and electrostatic oscillators, including Dielectric Resonator Oscillators (DROs) and oscillators using FBAR (hereinafter referred to as "Oscillator")
Abstract
Overview
IEC 62884-1:2017 - Measurement techniques of piezoelectric, dielectric and electrostatic oscillators, Part 1: Basic methods for the measurement (IEC) - defines standardized measurement methods for oscillators including piezoelectric, dielectric (including Dielectric Resonator Oscillators, DROs) and electrostatic devices, and oscillators using FBAR technology. Part 1 provides the basic test circuits, procedures, environmental and electrical measurement conditions, and reporting conventions used to characterize oscillator performance.
Key topics and technical requirements
This standard specifies practical test methods and requirements for a broad set of measurements and inspections:
- General test conditions: standard temperature, equilibrium and airflow conditions, power-supply requirements, measurement precision and precautions.
- Visual and mechanical checks: defined visual inspections (tests A–C), dimensional gauging and robustness of terminations.
- Electrical tests: insulation resistance, dielectric/voltage proof, input power, output frequency, frequency vs temperature, frequency/load/voltage coefficients, start-up and stabilization time, retrace, and frequency adjustment.
- Signal quality and modulation: amplitude and frequency modulation characteristics, harmonic distortion, spurious responses, spectral purity, incidental frequency modulation.
- Noise and stability: phase noise (including vibration and acoustic sensitivity), noise pedestal, and RMS fractional frequency fluctuations.
- Environmental and mechanical tests: solderability/resistance to soldering heat, thermal shock, rapid temperature change, vibration, shock, free-fall, humidity, salt mist and climatic sequence tests.
- Test infrastructure: standardized test circuits, diagrams and measurement set bandwidths, plus figures and tables to ensure repeatable, comparable results.
Practical applications
IEC 62884-1:2017 is used to:
- Qualify and characterize oscillator components (DROs, FBAR, crystal-based and electrostatic oscillators).
- Support R&D measurement protocols for oscillator designers optimizing stability, phase noise and modulation behavior.
- Define supplier acceptance and incoming inspection procedures for procurement and QA.
- Provide test baselines for production verification and failure analysis.
- Ensure consistent reporting and comparability across test labs and manufacturers.
Who should use this standard
- Oscillator and RF component manufacturers
- Test and calibration laboratories
- Design engineers (timing, RF, microwave systems)
- Quality assurance and procurement teams
- Certification and compliance engineers concerned with oscillator performance
Related standards and references
Part 1 provides basic measurement methods; organizations typically pair it with complementary IEC and industry standards for EMC, environmental testing and precision frequency measurement to create a complete compliance and qualification program.
Keywords: IEC 62884-1:2017, measurement techniques, piezoelectric oscillators, dielectric resonator oscillators, DRO, FBAR, phase noise, frequency stability, oscillator testing, modulation characteristics.
Технические детали
- Технический комитет
- TC 49 - Piezoelectric, dielectric and electrostatic devices and associated materials for frequency control, selection and detection
- SKU
- IEC 62884-1:2017
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