BESTARSENSOR Single Layer Single-Sided Piezoelectric Ceramic FT-27H-2.7A1-W045
| Resonant frequency (wireless) | 2.7±0.5 K Hz |
| Resonant impedance (wireless) | 200 ohm Max. |
| 120Hz capacitance (wireless) | 60~97.5 nF |
| Insulation resistance | 100M ohm Min |
| Input voltage | 30 Vp-p Max |
| Operating temperature | -40...+85°C |
| Storage temperature | -40...+85°C |
| Metal material | Nickel |
Features:
● High sensitivity and wide frequency response
● Compact structure/easy integration
● Low power consumption and high reliability
● No electromagnetic interference
Description
The FT-27H-2.7A1-W045 is a high performance piezoelectric ceramic element. It provides excellent sensitivity and wide frequency response for demanding applications. Made from advanced piezoelectric ceramic materials, it converts mechanical energy into electrical signals with great precision, which is important in sensing, actuation and ultrasonic systems.
This component has a single layer single side design which makes it a compact component. The small structure makes system design and integration easy. The disc has low power and is very reliable, so is useful for many piezoelectric applications - ultrasonic detectors, buzzers, precision actuators and vibration sensors.
The FT-27H-2.7A1-W045 operates without electromagnetic interference (EMI) so that it creates stable and accurate results, even in sensitive environments.
With its long life and stable output, this piezoelectric ceramic is suitable for manufacturers and developers who value efficiency and accuracy. As a reliable solution from the leading manufacturers and suppliers of timers activated piezoelectric ceramics, it guarantees reliability, compactness and high responsiveness in a rugged design.
With an optimized structure and well-balanced performance the FT-27H-2.7A1-W045 establishes a new benchmark for the new generation of piezoelectric ceramics. It provides clean, stable, and energy-efficient operation that allows the next generation of sensing and actuation technologies.











