BESTARSENSOR Multilayer Piezoelectric Ceramic BPM-Y10Y1.8TN0.28-L03-HU-O3-HF
| Capacitance at 120 Hz and 150 mV | 80~110 nF |
| Rated Voltage | 3 Vp-p |
| Operating Voltage | 1.4 Vp-p |
| Resonant Frequency | 15K Hz±20% |
| Resonant Impedance | ≤100 Ω |
| Insulation Resistance @ 5 VDC | ≥1M ohm |
| Positive Terminal Marking | Ink pot |
| Metallic Material | Nickel Alloy |
| Operating Temperature | -20...+60℃ |
| Storage Temperature | -25...+70℃ |
Features:
● Excellent ultra-high frequency extension/transient response
● Miniaturized design
● No electromagnetic interference
● Low power consumption/high efficiency
Description
The BPM-Y10Y1.8TN0.28-L03-HU-O3-HF is a multilayer piezoelectric ceramic element for systems that require exceptional high frequency performance and extremely rapid transient response performance. It is structural design that activated vibration energy in a short time and output is stable and precise even if the conditions change quickly. This makes it ideal for fine acoustic signaling applications as well as micro-actuation and also advanced sensing applications where timing accuracy is of critical importance.
Engineered with an ultra miniaturized design, making it easily installable in micro-scale assemblies, handheld electronics and dense circuit layouts. The small size provides flexibility in building the testing equipment and enables the BOP embedded integration without distorting the final design and mechanics of the product.
Built with special materials with piezoelectric ceramic properties, the multilayer structure guarantees efficient energy conversion, at the same time, power consumption is low and operational efficiency is high. The component operates free from electromagnetic interference which ensures stable operation in sensitive electronic environments where clean, noise free operation is required. These characteristics serve to make it suitable for a large range of piezoelectric applications from miniaturized acoustic modules, to ultrasonic sensing, wounded wearable device, smart instrumentation, to very precise motion control systems.
With its great high frequency extension, fast transient behavior, miniaturized structure, low power and EMI free working, this multilayer component provides good performance for the next generation acoustic, sensing and micro actuation technologies.










