1.
Solidly mounted longitudinally excited shear wave resonator (YBAR)..
[5204]
|
2.
Improvement of YX42° Cut LiTaO3 SAW Filters with Optical Proximit..
[1402]
|
3.
A Phase Canceling Technique to Improve SAW Duplexer Isolation
[1196]
|
4.
Optimization and Fabrication of an MOEMS Gyroscope Based on a WGM ..
[1042]
|
5.
Aluminum Nitride Piezoelectric Micromachined Ultrasound Transducer..
[1041]
|
6.
基于压电微机械超声换能器的微波致热超声成像系统
[969]
|
7.
压电微机电谐振器
[958]
|
8.
AlN MEMS filters with extremely high bandwidth widening capability
[927]
|
9.
Extended topological valley-locked surface acoustic waves
[885]
|
10.
Beyond fundamental resonance mode: high-order multi-band ALN PMUT ..
[885]
|
11.
Single-chip multi-frequency wideband filters based on aluminum nit..
[883]
|
12.
A High-Sensitivity Bowel Sound Electronic Monitor Based on Piezoel..
[751]
|
13.
Design and Fabrication of AlN RF MEMS Switch For Near-Zero Power R..
[748]
|
14.
Strain-mediated magnetoelectric storage, transmission, and process..
[734]
|
15.
Accurate prediction of pan-cancer types using machine learning wit..
[708]
|
16.
聚焦离子束制样条件对TEM样品形貌的影响
[706]
|
17.
Low cost thin film encapsulation for AlN resonators
[684]
|
18.
A microelectromechanical AlN resoswitch for RF receiver applicatio..
[667]
|
19.
Photoacoustic and Ultrosound Dual-Modality Endoscopic Imaging Base..
[661]
|
20.
Design and Fabrication of an Electrostatic AlN RF MEMS Switch for ..
[647]
|
21.
Resonant Torsional Micro-Actuators Using Thin-Film Lithium Niobate
[613]
|
22.
一种柔性压电微加工超声换能器阵列设计与制备方法
[610]
|
23.
Induced Voltage Source Model for Capacitive Power Transfer Using V..
[579]
|
24.
Power-Efficient Ovenized Lithium Niobate SH0 Resonator Arrays with..
[572]
|
25.
Temperature Stability Analysis of Thin-Film Lithium Niobate SH0 Pl..
[565]
|
26.
基于压电薄膜的单端输入多端输出的无源电子回转器
[563]
|
27.
Exploring Low-Loss Surface Acoustic Wave Devices on Heterogeneous ..
[560]
|
28.
Sodium dodecyl benzene sulfonate for single-walled carbon nanotube..
[559]
|
29.
一种基于压电薄膜的双轴微反射镜
[545]
|
30.
Topological Surface Acoustic Waves
[538]
|
31.
Elastocaloric-like effect in strain-mediated Mn3SnC/PZT magnetoele..
[527]
|
32.
光声//超声双模内窥成像装置及方法
[525]
|
33.
Narrowband Impedance Transformer With Extremely High Transformatio..
[521]
|
34.
Analysis of Abnormal GIDL Current Degradation Under Hot Carrier St..
[516]
|
35.
A New Class of High-Overtone Bulk Acoustic Resonators Using Lithiu..
[515]
|
36.
A Chip-Scale RF MEMS Gyrator via Hybridizing Lorentz-Force and Pie..
[513]
|
37.
Onsite Non-Line-of-Sight Imaging via Online Calibration
[513]
|
38.
PMUT Structure Design with a Scar-Free Minimally Invasive Surgery ..
[506]
|
39.
2.4GHz AlN Thin Film Acoustic Delay Lines
[496]
|
40.
Ferromagnetic resonance and spin-wave exchange stiffness of FeGaB/..
[494]
|
41.
一种用于腔道侧壁光声断层成像的内窥探头
[494]
|
42.
Photoacoustic Imaging Based on Broadened Bandwidth Aluminum Nitrid..
[484]
|
43.
High Quality Co-Sputtering AlScN Thin Films for Piezoelectric Lamb..
[477]
|
44.
Wide Bandwidth Lorentz-Force Magnetometer Based on Lateral Overton..
[472]
|
45.
High Figure-of-Merit Lamb Wave Resonators Based on Al0.7Sc0.3N Thi..
[471]
|
46.
一种肿瘤新抗原特征分析与免疫原性预测工具及其应用
[470]
|
47.
Optimization of AlN and AlScN Film ICP Etching
[467]
|
48.
Microwave-induced thermoacoustic imaging with a multi-cell AlScN p..
[466]
|
49.
Magnetic Field-Oriented Electrical Transport Properties in Antiper..
[464]
|
50.
Low Loss Al0.7Sc0.3N Thin Film Acoustic Delay Lines
[462]
|
51.
Ferromagnetic resonance properties of multilayer FeGaB/Ta/FeGaB st..
[460]
|
52.
Monolithic Integration of Released and Solidly Mounted RF Acoustic..
[460]
|
53.
AlN Hybrid-Coupled Resonator With Phononic Crystal Reflector
[458]
|
54.
Al0.7Sc0.3N butterfly-shaped laterally vibrating resonator with a ..
[454]
|
55.
A Low-cost High-sensitivity Endoscopic Probe for Real-time Photoac..
[453]
|
56.
Microwave-Induced Thermoacoustic Imaging Using Aluminum Nitride PM..
[451]
|
57.
Electro-acoustic Phase Modulator based on AlScN Thin Film
[450]
|
58.
Characterization of AlN and AlScN film ICP etching for micro/ nano..
[446]
|
59.
An Aluminum-Nitride PMUT with Pre-Concaved Membrane for Large Defo..
[446]
|
60.
Compensation of Hot Carrier Degradation Enabled by Forward Back Bi..
[446]
|
61.
Lorentz-force gyrator based on AlScN piezoelectric thin film
[443]
|
62.
AlN Contour Mode Resonators with Half Circle Shaped Reflectors
[442]
|
63.
Advanced Surface Acoustic Wave Resonators on LiTaO3/SiO2/sapphire ..
[442]
|
64.
7.5 GHz Near-Zero Temperature Coefficient of Frequency Lithium Nio..
[440]
|
65.
Temperature-Dependent Exchange Stiffness of Spin-Wave in Ta/CoFeB ..
[439]
|
66.
用于腔道侧壁光声断层成像的内窥探头
[438]
|
67.
Al0.78Sc0.22N Lamb Wave Contour Mode Resonators
[436]
|
68.
Non-zero Power Flow Angles in Surface Acoustic Wave Resonators for..
[432]
|
69.
Temperature dependent magnetostatic and dynamic properties of soft..
[430]
|
70.
Multiferroic Magnetic Sensor Based on AlN and Al0.7Sc0.3N thin fil..
[429]
|
71.
多电极驱动的高阶模式压电微机械超声换能器及应用
[429]
|
72.
Dual-Axis MEMS Resonant Scanner Using 128(circle)Y Lithium Niobate..
[428]
|
73.
Reliably Probing the Conductance of a Molecule in a Cavity via van..
[421]
|
74.
Spurious-Free Shear Horizontal Wave Resonators Based on 36Y-Cut Li..
[421]
|
75.
The thickness of buffer layer and temperature dependent magneto dy..
[416]
|
76.
Asymmetrical Lamb wave mode resonant infrared detector based on li..
[415]
|
77.
微机电无线信号唤醒接收器及其制备方法
[409]
|
78.
Piezoelectric Micromachined Ultrasonic Transducers with Micro-Hole..
[406]
|
79.
Ultra-Wideband Mems Filters Using Localized Thinned 128° Y-Cut Th..
[405]
|
80.
Torsional MEMS Scanner Based on LiNbO3 Thin Film
[404]
|
81.
Design and Analysis of High kt2 Shear Horizontal Wave Resonators
[404]
|
82.
Low-Loss SAW Devices with LiTaO3on Extremely High Resistance Subst..
[403]
|
83.
Design and Fabrication of LAMB Wave Resonator Based on 15% Scandiu..
[401]
|
84.
Magnetodynamic properties on square patterned of FeGaB and Al2O3/F..
[401]
|
85.
Characterization of Ferroelectric Al0.7Sc0.3N Thin Film on Pt and ..
[400]
|
86.
一种低成本的压电谐振器//传感器封装工艺方法
[399]
|
87.
LNOI Thin-Film Dual-Axis Resonant Micro-Mirror with E16 Torsional ..
[399]
|
88.
Magnetic field driven magnetic domains and ferromagnetic resonance..
[399]
|
89.
Photoacoustic Dual-mode Microsensor Based on PMUT Technology
[396]
|
90.
Modeling of Hot Carrier Injection on Gate-Induced Drain Leakage in..
[392]
|
91.
用于液体检测的压电谐振微流道及制备方法
[391]
|
92.
Aluminum Nitride Assisted Silicon Thermo-Optic Phase Shifter
[391]
|
93.
一种肿瘤样本免疫编辑状态定量方法及其应用
[390]
|
94.
Design and Analysis of Phononic Crystal Reflector for Surface Acou..
[390]
|
95.
一种e31压电驱动的双轴MEMS微射镜
[390]
|
96.
Design of Piezoelectric Micro-Actuators Based on LiNbO Thin Film
[389]
|
97.
Comparison of Weighted And Traditional Electrode Configurations In..
[389]
|
98.
基于洛伦兹力的压电磁传感器及其制备方法
[387]
|
99.
Development and Characterization of High Temperature Plasma Nitrid..
[387]
|
100.
Silicon-integrated scandium-doped aluminum nitride electro-optic m..
[381]
|