| Allicdata Part #: | 5-1617052-9-ND |
| Manufacturer Part#: |
5-1617052-9 |
| Price: | $ 237.81 |
| Product Category: | Uncategorized |
| Manufacturer: | TE Connectivity Aerospace, Defense and Marine |
| Short Description: | SF5381J01 = SF5000 SENSITIVE F |
| More Detail: | N/A |
| DataSheet: | 5-1617052-9 Datasheet/PDF |
| Quantity: | 1000 |
| 10 +: | $ 216.18900 |
| Series: | * |
| Part Status: | Active |
Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us: sales@allicdata.com
Miscellaneous
5-1617052-9 is a type of haptic device that provides tactile feedback through a motor and gear system, creating rich physical patterns to respond to user input. The haptic device, when activated, concerns the user with a force, pressure, vibration, vibration, texture, etc. through a motor vibration system.
Application Field
5-1617052-9 haptic devices are widely used in the field of mobile phones and electronic entertainment products.
- Smart phones: Some smart phones use the motor of 5-1617052-9 to provide feedback to remind the user of the vibration parameters in the percussion procedure during phone conversation or text message.
- Tablet computers: Some tablet computers use the motor of the 5-1617052-9 to provide a comprehensive haptic feedback to the user, a feedback such as tapping, vibrating, etc.
- VR/AR darkroom: the combination of tactile feedback devices and haptic gloves in VR/AR darkroom has produced amazing immersive haptic effects, which has become a bright spot in VR/AR darkroom projects.
- Game controller: The feedback effect of the 5-1617052-9 can be used in the game controller to provide a more realistic touch operation method in the game field, and make the user completely immersive.
- Robotics: Haptic devices are becoming increasingly popular in robotics applications, providing tactile feedback in robotic sensory and spatial localization systems.
Working Principle
The working principle of 5-16170529 Haptic Driving Device is based on a high-speed motor controlled by the vibration control module. After receiving the control signal, the motor will rotate at a certain frequency, so that the eccentric wheel or air core produces a transient change in the magnetic field, which generates a certain frequency and amplitude vibration. Through this vibration, tactile feedback can be induced to the user.

(Figure: 5-1617052-9 Haptic Driving Device Diagram)
The internal structure of 5-1617052-9 Haptic Device consists mainly of an output shaft, coreless motor, eccentric wheel, torque balancing mechanism and an anvil. The coreless motor drives the eccentric wheel to rotate rapidly, and the torque balancing mechanism is mainly used to counterbalance the axial force generated by the rotation of the eccentric wheel, thereby avoiding the eccentric wheel can not rotate smoothly due to the axial force caused by its own weight.
When the coreless motor is running, the effective value of the instantaneous current can be obtained by outputting the control signal. The control signal is transmitted through the bridge connection port of the vibration control module and the drive port is connected with the power conversion circuit. Through the power conversion circuit to the coreless motor voltage to control the motor speed; By controlling the amplitude of the voltage, the amplitude of the vibration can be reasonably adjusted.
Therefore, the 5-1617052-9 can provide different levels of force, pressure, vibration and texture, to achieve different corresponding tactile feedback feelings to provide realistic, accurate and rich in haptic feedback in multiple applications.
The specific data is subject to PDF, and the above content is for reference
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5-1617052-9 Datasheet/PDF