BESTAR Broadband Lightweight Linear Motor BHS1324-11-08H6.5-03
| 1. Impedance(at 1.0kHz) | 8 ±15%Ω |
| 2. Rated Input Power | 2.0W |
| 3. Maximum Input Power | 3.0W |
| 4. Resonance Frequency | 180 ±20%Hz |
| 5. Frequency Response | F0 ~ 10KHz |
| ≥9Grms@10g load in middle ; ≥7Grms@10g load in side | |
| ≥6Grms@20g load in middle ; ≥5Grms@20g load in side | |
| ≥3Grms@50g load in middle ; ≥3Grms@50g load in side | |
| ≥1.2Grms@100g load in middle; | |
| 6. Acceleration (at 2.83Vrms) | ≥1.2Grms@100g load in side |
| 7. Leak sound(at 2.83Vrms) | ≤40dB@ 100g load |
| 8. Buzzes & Rattles | must be normal at sine wave 4Vrms |
| 9. Polarity | Positive voltage to (+),Diaphragm moves forward |
| 10. Operating Temperature | -40...+85 °C |
| 11. Storage Temperature | -40...+85 °C |
Features:
● Broadband
● Easy Installation
● High Acceleration
Description
BHS1324-11-08H6.5-03 is a complex piece of haptics that is able to turn any solid surfaces into a tactile feedback or music generating interface by solely translating electricity input directly into mechanical precision vibration. Works on the basis of electromechanical conversion and provides regulated movement at a large frequency spectrum to engage widely in the purpose of virtual button functionality in automakers, consumer electronics and industrial and medical equipment as well as in IoT interfaces.
Contrary to other loud speakers or dumb vibration motors, the dynamic exciter relies on a damped linear vibration system to provide high level of acceleration whilst keeping steady, making it responsive and consistent to any feedback. There is a wide range of frequencies that will support both low level and strong vibration patterns and the start-stop block topology makes them easy to turn on and off, thus applications where speed of confirming the tactility of the interface resonates is appropriate like in virtual touch in cars dashboards, healthcare monitoring panels, and industrial control units.
Designed to last with multiple times of repeated actuation cycles handled per day, making it robust in everyday use. The ability to endure multiple actuations and cycles means it will continue working well in rigorous environments and conditions. It is easy to control, expansively compatible, and uses minimal power and is therefore perfect in improving the realism and responsiveness of virtual buttons in a variety of industries. This component provides a high-performance tactile feedback solution whether in the infotainment system of a car, a touch interface in a medical application, or a smart home power control panel.












