Electromagnetic actuator and method of use
US-9514872-B2 · Dec 6, 2016 · US
US10033257B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10033257-B2 |
| Application number | US-201514789342-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 1, 2015 |
| Priority date | Dec 23, 2014 |
| Publication date | Jul 24, 2018 |
| Grant date | Jul 24, 2018 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
A linear vibrator includes a stator having a housing including a receiving space, a moveable unit received in the receiving space, a coil attached to one of the stator and the moveable unit, a magnet assembly attached to the other of the stator and the moveable unit, an elastic member having one end connecting to the moveable unit and another end connecting to the stator for suspending the moveable unit in the receiving space, the elastic member having an elastic gap, and a damping block at least partially received in the elastic gap and deformable by the elastic member during the vibration of the moveable unit within a predetermined vibration amplitude. A boost force is produced by the damping block for accelerating the moveable unit to return to balanced position.
Opening claim text (preview).
What is claimed is: 1. A linear vibrator, comprising: a stator having a housing including a receiving space; a moveable unit received in the receiving space; a coil attached to one of the stator and the moveable unit; a magnet assembly attached to the other of the stator and the moveable unit; an elastic member having one end connecting to the moveable unit and another end connecting to the stator for suspending the moveable unit in the receiving space, the elastic member having an elastic gap; a damping block at least partially received in the elastic gap and deformable by the elastic member during the vibration of the moveable unit within a predetermined vibration amplitude. 2. The linear vibrator as described in claim 1 , wherein the damping block is solid. 3. The linear vibrator as described in claim 1 , wherein the damping block has a through hole therein for adjusting the damping performance. 4. The linear vibrator as described in claim 1 , wherein the damping block is made of different materials having different stiffness. 5. The linear vibrator as described in claim 1 , wherein the elastic member includes a first arm connecting to the housing, and a second arm connected to the first arm and connecting to the moveable unit, and the elastic gap is formed between the first and second arms. 6. The linear vibrator as described in claim 5 , wherein the damping block is sandwiched between the first and second arms. 7. The linear vibrator as described in claim 5 , wherein the damping block is attached to the first arm and keeps a distance from the second arm, the distance between the damping block and the second arm is smaller than the predetermined vibration amplitude. 8. The linear vibrator as described in claim 5 , wherein the damping block is attached to the second arm and keeps a distance from the first arm, the distance between the damping block and the first arm is smaller than the predetermined vibration amplitude. 9. The linear vibrator as described in claim 5 , wherein the damping block is fixed to the stator, keeping a first distance from the first arm and a second distance from the second arm, a summation of the first distance and the second distance is smaller than the predetermined vibration amplitude. 10. A linear vibrator, comprising: a stator; a moveable unit being moveable relative to the stator within a predetermined vibration amplitude; an elastic member for supporting the moveable unit and providing the moveable unit with elastic forces to vibrate repeatedly, the elastic member further including an elastic gap; a damping block at least partially accommodated in the elastic gap, and deformable elastically corresponding to an elastic deformation of the elastic member during the vibration of the moveable unit within the predetermined vibration amplitude. 11. The linear vibrator as described in claim 10 , wherein the damping block has a through hole therein for adjusting the damping performance. 12. The linear vibrator as described in claim 10 , wherein the damping block is made of different materials having different stiffness. 13. The linear vibrator as described in claim 10 , wherein the elastic member includes a first arm connecting to the housing, and a second arm connected to the first arm and connecting to the moveable unit, and the elastic gap is formed between the first and second arms. 14. The linear vibrator as described in claim 13 , wherein the damping block is sandwiched between the first and second arms. 15. The linear vibrator as described in claim 13 , wherein the damping block is attached to the first arm and keeps a distance from the second arm, the distance between the damping block and the second arm is smaller than the predetermined vibration amplitude. 16. The linear vibrator as described in claim 13 , wherein the damping block is attached to the second arm and keeps a distance from the first arm, the distance between the damping block and the first arm is smaller than the predetermined vibration amplitude. 17. The linear vibrator as described in claim 13 , wherein the damping block is fixed to the stator, keeping a first distance from the first arm and a second distance from the second arm, a summation of the first distance and the second distance is smaller than the predetermined vibration amplitude. 18. The linear vibrator as described in claim 1 , wherein the damping block is made of different materials having different stiffness and has a through hole therein for adjusting the damping performance, the through hole passes through at least two different materials. 19. The linear vibrator as described in claim 10 , wherein the damping block is made of different materials having different stiffness and has a through hole therein for adjusting the damping performance, the through hole passes through at least two different materials.
with armatures moving in alternate directions by alternate energisation of two coil systems · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.