| Literature DB >> 26370999 |
Jun Liu1,2, Yukun Yuan3,4, Zhong Ren5, Qiulin Tan6,7, Jijun Xiong8,9.
Abstract
The accurate characterization of the temperature-dependent permittivity of aluminum nitride (AlN) ceramic is quite critical to the application of wireless passive sensors for harsh environments. Since the change of the temperature-dependent permittivity will vary the ceramic-based capacitance, which can be converted into the change of the resonant frequency, an LC resonator, based on AlN ceramic, is prepared by the thick film technology. The dielectric properties of AlN ceramic are measured by the wireless coupling method, and discussed within the temperature range of 12 °C (room temperature) to 600 °C. The results show that the extracted relative permittivity of ceramic at room temperature is 2.3% higher than the nominal value of 9, and increases from 9.21 to 10.79, and the quality factor Q is decreased from 29.77 at room temperature to 3.61 at 600 °C within the temperature range.Entities:
Keywords: LC resonator; aluminum nitride ceramic; dielectric properties; high temperature; quality factor; wireless passive
Year: 2015 PMID: 26370999 PMCID: PMC4610433 DOI: 10.3390/s150922660
Source DB: PubMed Journal: Sensors (Basel) ISSN: 1424-8220 Impact factor: 3.576
Figure 1Equivalent circuit.
Figure 2The simulation phase of Z versus frequency at different ε (a) and R (b).
Figure 3Design parameters of resonator: top electrode and inductance coil (a) and bottom electrode (b). d and d are the outer diameter and inner diameter of the inductor, respectively. lw, ls and lt are line width, line spacing and line thickness of the inductor. a: length of capacitor plates.
Design parameters at room temperature (25 °C).
| Parameters | Value | Parameters | Value |
|---|---|---|---|
| 15.5 | 9 | ||
| 11 | 12.43 | ||
| 36 | 6.72 | ||
| 0.508 | ~2 | ||
| 8.9 | 25.9 | ||
| 0.5 | 1.5 | ||
| 0.3 | 17.4 | ||
| ~20 | 28.37 |
Figure 4Fabrication process of the resonator. (a) Surface pre-process; (b) Screen-print circuit: Top electrode and inductance coil and bottom electrode; (c) Cure the conductive paste; (d) Examine.
Characteristic parameters of AlN ceramic.
| Parameters | Value |
|---|---|
| Density (g/cm3) | 3.335 |
| Flexural Strength (MPa, 25 °C) | 330 |
| Thermal conductivity (W·m−1·K−1, 25 °C) | ≥170 |
| CTE (ppm/°C, 20~300 °C) | 2.805 |
| Relative permittivity (25 °C, 1 MHz) | 9.0 |
| Dielectric loss (25 °C, 1 MHz) | 0.0004 |
| Resistivity (MΩ·m, 25 °C) | 1.4 × 106 |
Figure 5Prototype of the resonator.
Figure 6Experiment setup for the LC resonator.
Figure 7The magnitude (a) and phase (b) of impedance versus frequency over 12 °C–600 °C temperature range.
Figure 8Resonant frequency versus Temperature.
Figure 9Relative permittivity and Q versus temperature.