Obstruction detecting apparatus, obstruction detecting system, electric lifting desk, and electric lifting cupboard
US-2024402382-A1 · Dec 5, 2024 · US
US9530578B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9530578-B2 |
| Application number | US-201414518059-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 20, 2014 |
| Priority date | Oct 20, 2014 |
| Publication date | Dec 27, 2016 |
| Grant date | Dec 27, 2016 |
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A transmission assembly is for an electrical switching apparatus. The electrical switching apparatus includes a housing, a mount, at least one charging mechanism, and a pair of separable contacts. The transmission assembly has a drive assembly and a transfer assembly. The drive assembly includes a rotary driving member, a stored energy mechanism, and a linear driving member partially extending into the stored energy mechanism and being coupled to the rotary driving member. The transfer assembly cooperates with the drive assembly and the separable contacts and includes a sliding transfer component. The transmission assembly moves between a LOADED OPEN position, an UNLOADED CLOSED position, a LOADED CLOSED position, and an UNLOADED OPEN position. When the transmission assembly moves from the LOADED OPEN position to the UNLOADED CLOSED position, the linear driving member drives the sliding transfer component in a generally linear direction, thereby closing the separable contacts.
Opening claim text (preview).
What is claimed is: 1. A transmission assembly for an electrical switching apparatus, said electrical switching apparatus comprising a housing, a mount coupled to said housing, at least one charging mechanism coupled to said mount, and a pair of separable contacts disposed within said housing, said transmission assembly comprising: a drive assembly comprising: a rotary driving member structured to be coupled to said at least one charging mechanism, a stored energy mechanism, and a linear driving member partially extending into said stored energy mechanism and being coupled to said rotary driving member, a transfer assembly cooperating with said drive assembly and structured to cooperate with said separable contacts, said transfer assembly comprising a sliding transfer component structured to be disposed on said mount; wherein said transmission assembly is structured to move between a LOADED OPEN position, an UNLOADED CLOSED position, a LOADED CLOSED position, and an UNLOADED OPEN position; wherein, when said transmission assembly moves from the LOADED OPEN position to the UNLOADED CLOSED position, said linear driving member drives said sliding transfer component in a generally linear direction, thereby closing said separable contacts; wherein said transfer assembly further comprises a base assembly comprising a base component; wherein said base component is structured to be coupled to said mount; wherein said base component has an elongated linear slot; wherein, when said transmission assembly moves from the LOADED OPEN position to the UNLOADED CLOSED position, said sliding transfer component slides within the slot; wherein said sliding transfer component has a DRIVEN position; wherein, when said transmission assembly moves from the LOADED OPEN position to the UNLOADED CLOSED position, said linear driving member drives said sliding transfer component to the DRIVEN position; wherein said base assembly further comprises a locking component coupled to said base component; and wherein, when said transmission assembly is in the UNLOADED CLOSED position, said locking component maintains said sliding transfer component in the DRIVEN position. 2. The transmission assembly of claim 1 wherein said transfer assembly further comprises a linkage assembly; wherein said linkage assembly cooperates with said sliding transfer component and is structured to cooperate with said separable contacts; and wherein, when said transmission assembly moves from the LOADED OPEN position to the UNLOADED CLOSED position, said linkage assembly moves from a RETRACTED position to an EXTENDED position, thereby closing said separable contacts. 3. The transmission assembly of claim 2 wherein said linkage assembly comprises a first coupling link member, a second coupling link member, a first rotary link member, and a second rotary link member; wherein each of said second coupling link member, said first rotary link member, and said second rotary link member has a first end portion and a second end portion; wherein the first end portion of said first rotary link member is structured to engage said sliding transfer component; wherein said first coupling link member couples the second end portion of said first rotary link member to the first end portion of said second rotary link member; wherein the second end portion of said second rotary link member is coupled to the first end portion of said second coupling link member; and wherein the second end portion of said second coupling link member is structured to be coupled to said separable contacts. 4. The transmission assembly of claim 3 wherein, when said transmission assembly moves from the LOADED OPEN position to the UNLOADED CLOSED position, said linear driving member moves in a first direction; and wherein, when said linkage assembly moves from the RETRACTED position to the EXTENDED position, said second coupling link member moves in a second direction generally parallel and opposite the first direction. 5. The transmission assembly of claim 1 wherein, when said transmission assembly moves from the UNLOADED CLOSED position to the LOADED CLOSED position, said linear driving member moves away from said sliding transfer component. 6. The transmission assembly of claim 5 wherein said transfer assembly further comprises an opening spring and a contact spring; wherein said opening spring is coupled to said second rotary link member and is structured to be coupled to said mount; wherein said contact spring is coupled to said second coupling link member and is structured to be coupled to said separable contacts; and wherein, when said transmission assembly moves from the LOADED CLOSED position to the UNLOADED OPEN position, each of said opening spring and said contact spring releases energy. 7. The transmission assembly of claim 5 wherein, when said transmission assembly moves from the LOADED CLOSED position to the UNLOADED OPEN position, said linkage assembly moves from the EXTENDED position to the RETRACTED position. 8. The transmission assembly of claim 1 wherein said drive assembly further comprises a control member cooperating with said linear driving member; wherein said control member is structured to be coupled to said mount; and wherein said control member is structured to release said linear driving member, thereby moving said transmission assembly from the LOADED OPEN position to the UNLOADED CLOSED position. 9. A transmission assembly for an electrical switching apparatus, said electrical switching apparatus comprising a housing, a mount coupled to said housing, at least one charging mechanism coupled to said mount, and a pair of separable contacts disposed within said housing, said transmission assembly comprising: a drive assembly comprising: a rotary driving member structured to be coupled to said at least one charging mechanism, a stored energy mechanism, and a linear driving member partially extending into said stored energy mechanism and being coupled to said rotary driving member, a transfer assembly cooperating with said drive assembly and structured to cooperate with said separable contacts, said transfer assembly comprising a sliding transfer component structured to be disposed on said mount, wherein said transmission assembly is structured to move between a LOADED OPEN position, an UNLOADED CLOSED position, a LOADED CLOSED position, and an UNLOADED OPEN position; wherein, when said transmission assembly moves from the LOADED OPEN position to the UNLOADED CLOSED position, said linear driving member drives said sliding transfer component in a generally linear direction, thereby closing said separable contacts; wherein said transfer assembly further comprises a linkage assembly; wherein said linkage assembly cooperates with said sliding transfer component and is structured to cooperate with said separable contacts; wherein, when said transmission assembly moves from the LOADED OPEN position to the UNLOADED CLOSED position, said linkage assembly moves from a RETRACTED position to an EXTENDED position, thereby closing said separable contacts; wherein said linkage assembly comprises a first coupling link member, a second coupling link member, a first rotary link member, and a second rotary link member; wherein each of said second coupling link member, said first rotary link member, and said second rotary link member has a first end portion and a second end portion; wherein the first end portion of said first rotary link member is structured to engage said sliding transfer component; wherein said first coupling link member couples the second end portion of said first rotary link member to the first end portion of said second rotary link member; wherein the second end portion of said second rotary link member is coupl
Charging means · CPC title
Driving mechanisms · CPC title
Gearings based on repeated accumulation and delivery of energy · CPC title
using spring motor · CPC title
Details concerning lever type driving rod arrangements · CPC title
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