Infant carrier and motion device therewith
US-10154738-B2 · Dec 18, 2018 · US
US11505232B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11505232-B2 |
| Application number | US-202117229977-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 14, 2021 |
| Priority date | Jun 7, 2017 |
| Publication date | Nov 22, 2022 |
| Grant date | Nov 22, 2022 |
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A drive mechanism which is adapted for use with a swing device includes at least one electromagnetic driving unit and a control unit. The at least one electromagnetic driving unit is adapted to be pivotally connected to a bottom of the swing device. The control unit is electrically connected to the at least one electromagnetic driving unit for controlling the at least one electromagnetic driving unit to be activated and deactivated, so as to generate an intermittent magnetic force to drive swinging movement of the swing device. The swing device including the drive mechanism is also disclosed.
Opening claim text (preview).
What is claimed is: 1. A drive mechanism adapted for use with a swing device, said drive mechanism comprising: at least one electromagnetic driving unit adapted to be pivotally connected to a bottom of a base seat of the swing device; and a control unit electrically connected to said at least one electromagnetic driving unit for controlling said at least one electromagnetic driving unit to be activated and deactivated, so as to generate an intermittent magnetic force to drive swinging movement of the swing device; wherein said at least one electromagnetic driving unit includes a sensor set that is adapted for detecting speed of the swinging movement of the swing device, and wherein said at least one electromagnetic driving unit further includes two electromagnetic driving units that are adapted to be symmetrically disposed with respect to the bottom of the base seat of the swing device. 2. The drive mechanism as claimed in claim 1 , wherein said sensor set is further adapted for detecting angle of the swing device. 3. The drive mechanism as claimed in claim 1 , wherein: each of said electromagnetic driving units further includes support arm that has a pivot end adapted to be pivotally connected to the bottom of the swing device, and an opposite end opposite to said pivot end, an electromagnet that is securely coupled to said opposite end of said support arm, and a permanent magnet that is adapted to be securely coupled to the bottom of the swing device and that corresponds in position to said electromagnet; for each of said electromagnetic driving units, said sensor set is adapted to be disposed between said support arm and the bottom of the swing device; and said control unit controls said electromagnets of said electromagnetic driving units to be alternately activated and deactivated so that the intermittent magnetic force is generated between said electromagnets and said permanent magnets to drive the swinging movement of the swing device. 4. The drive mechanism as claimed in claim 3 , wherein when said control unit controls said electromagnet of one of said electromagnetic driving units to be activated, a magnetic repulsive force is generated between said electromagnet and said permanent magnet of said one of said electromagnetic driving units. 5. The drive mechanism as claimed in claim 3 , wherein said pivot end of said support aim of each of said electromagnetic driving units is adapted to be pivotally connected to the bottom of the swing device at a position proximate to a center of the swing device. 6. The drive mechanism as claimed in claim 3 , wherein each of said electromagnetic driving units further includes a retaining member that securely retains said electromagnet at said opposite end of said support arm. 7. The drive mechanism as claimed in claim 3 , wherein each of said electromagnetic driving units further includes a mounting seat that is adapted to be fixedly connected to the bottom of the swing device for mounting of said permanent magnet thereon and that has an opening for exposing said permanent magnet. 8. The drive mechanism as claimed in claim 7 , wherein each of said electromagnetic driving units further includes a holding member that is formed with an accommodating groove for accommodating said permanent magnet therein, and that cooperates with said mounting seat to retain said permanent magnet therebetween. 9. The drive mechanism as claimed in claim 3 , wherein said support arm of each of said electromagnetic driving units is provided with a connecting strip that is adapted to extend into the swing device, said sensor set being mounted on said connecting strip. 10. The drive mechanism as claimed in claim 3 , wherein said sensor set of each of said electromagnetic driving units includes a displacement sensor mounted on said support arm, adapted to extend into the swing device, and including a plurality of displacement sensing spots, and a detecting sensor electrically connected to said control unit, and adapted to be fixedly disposed in the bottom of the swing device at a position corresponding to said displacement sensing spots for monitoring said displacement sensing spots and sending monitoring information to said control unit. 11. The drive mechanism as claimed in claim 10 , wherein said detecting sensor monitors said displacement sensing spots by using diffraction grating principle. 12. The drive mechanism as claimed in claim 10 , wherein each of said electromagnetic driving units further includes a sensor-connecting member that is adapted to be fixedly disposed on the bottom of the swing device, said detecting sensor being coupled to said sensor-connecting member and protruding from said sensor-connecting member. 13. A swing device comprising: a base seat having a top surface provided with an engaging mechanism which is adapted for retaining a baby carrying device thereon; and said drive mechanism as claimed in claim 1 ; wherein said control unit is disposed in said base seat, said at least one electromagnetic driving unit is disposed at a bottom surface of said base seat, and said drive mechanism drives swinging movement of the base seat. 14. The swing device as claimed in claim 13 , wherein said engaging mechanism has two spaced-apart first engaging grooves formed in said top surface of said base seat, and a second engaging groove located between said first engaging grooves, at least one of said first and second engaging grooves being adapted for engaging the baby carrying device. 15. The swing device as claimed in claim 14 , wherein said second engaging groove has a laterally-extending space portion that is adapted to removably retain a lock piece of the baby carrying device therein. 16. The swing device as claimed in claim 14 , wherein said engaging mechanism further has a third engaging groove formed in said top surface of said base seat and adapted to removably retain a protruding member of the baby carrying device therein. 17. The swing device as claimed in claim 13 , the base seat being disposed on a contact surface, said swing device further comprising a movement-arresting member pivotally connected to said bottom surface of said base seat, and being pivotable between an extended position, where said movement-arresting member is in contact with the contact surface so as to arrest the swinging movement of said base seat, and a collapsed position, where said movement-arresting member is not in contact with the contact surface so as to permit the swinging movement of said base seat. 18. The swing device as claimed in claim 13 , further comprising a plurality of indicating lights disposed on said top surface of said base seat and electrically connected to said control unit for indicating swing speed of the swing device. 19. The swing device as claimed in claim 13 , further comprising a first container adapted for storing a remote controller which is operable to control the swing speed of the swing device, and a second container adapted for storing a portable charger.
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