BESTAR Lightweight Linear Motor BMV1206W43J
| 1. Resistance | 24.0Ω±20%@20℃ |
| 2. Rated voltage | 1.5Vrms |
| 3. Operating voltage | 0.3~1.8Vrms |
| 4. Resonance Frequency | 235±20%Hz |
| 5.Acceleration | ≥0.9Grms,100g load in middle,1.5Vrms |
| 6.Weight | ≈2g |
| 7.Polarity | Positive voltage to(+), |
| Magnet bowl moves forward | |
| 8. *RT(Rise Time) 0→90% | ≤ 60ms |
| 9. *BT(Break Time) 100%→10% | ≤90ms |
Features:
● External driving circuit
● Screen vibration
● RoHS
Description
The Lightweight Linear Motor Magnetic Vibrator BMV1206W43J is a haptic actuator with many potential uses in the consumer electronics field as well as industrial controls and medical equipment industry. Based on a linear motor magnetic driven principle and produces its vibration by driving an internal magnetic mass using a direct drive mechanism to produce consistent and well-defined haptic sensations that closely elicit the feeling of using physical buttons.
Magnetic Vibrator has a quick response time that ensures that vibration feedback is achieved immediately the input is activated thereby greatly increasing the feeling of immediacy when interacting with the user. This gives it particular value in applications where response rate is a major concern, like smart dashboards in fire trucks, in medical diagnostic devices and in real-time control interfaces. The design that consumes minimal power guarantees longer operating efficiency thus making it applicable in battery-powered systems and energy-efficient systems and systems that require high performance.
The full metallic structure of the vibrator offers the highest durability and structural strength and maintains long life even during continuous operation. Having a low noise format is especially useful in low noise related applications where there is a need to have a silent functionality like in medical equipment given patient care conditions or consumer electronic used in conditions of silence.
Its reduced and minimized size and weight allow this actuator to potentially fit into contemporary UI/UX design features such as touch-based control panels, wearable gadgets, domestic appliances and automobile infotainment systems. Linear motor mechanism can easily control the same with respect to the vibration amplitude and time duration to ensure feedback can meet the necessary requirements of the interface.













