Keyphrases
A1 Mode
7%
Acoustic Delay Line
24%
Acoustic Filters
5%
Acoustic Resonator
12%
Acoustic Waves
10%
Acoustics
13%
Antisymmetric Mode
5%
Center Frequency
10%
Chip-scale
8%
Delay Line
8%
Electromechanical Coupling
20%
First-order
7%
Fractional Bandwidth
20%
High Electromechanical Coupling
11%
High Performance
5%
Insertion Loss
24%
Lamb Wave Resonator
5%
Lateral Overtone Bulk Acoustic Resonator
6%
Laterally Vibrating Resonators
10%
LiNbO3 Thin Film
6%
Lithium Niobate
100%
Lithium Niobate Thin Film
17%
Low Insertion Loss
7%
Low Loss
19%
Low Power
6%
MEMS Resonator
23%
Micro-electro-mechanical Systems
18%
Microring Resonator
7%
Nitrides
13%
Nonreciprocal Network
6%
Overmoded
6%
Overtone
5%
Phase Velocity
5%
Piezoelectric Thin Film
6%
Quality Factor (Q-factor)
9%
Radio Frequency
14%
Radio Frequency Microelectromechanical Systems (RF MEMS)
10%
Resonator
52%
RF Filter
6%
S0 Mode
6%
Self-rolled-up
6%
SH0 Mode
7%
Shear Horizontal
5%
Spurious Modes
15%
Spurious-free
5%
Temperature Coefficient of Frequency
6%
Thin-film Lithium Niobate
34%
Wideband
21%
X-band
5%
Z-cut
8%
Engineering
Antisymmetric Mode
5%
Electric Delay Lines
34%
Figure of Merit
10%
Filtration
5%
Fractional Bandwidth
19%
Front End
12%
Insertion Loss
29%
Internet of Things
6%
Lamb Wave
8%
Micro-Electro-Mechanical System
8%
Microelectromechanical System
46%
Nitride
11%
Overtone
9%
Phase Noise
7%
Piezoelectric
27%
Q Factor
13%
Quality Factor
10%
Radio Frequency
25%
Resonator
84%
Surface Acoustic Wave
6%
Temperature Coefficient
6%
Thin Films
57%
Transducer
16%
X-Band
5%