Battery cell carriers that have a semi-rigid elastomeric cell carrier body with a plurality of closely spaced apart, substantially parallel and substantially cylindrical channels. Each channel has a length, with neighboring channels sharing a sidewall therebetween. The channels are configured to hol
Battery cell carriers that have a semi-rigid elastomeric cell carrier body with a plurality of closely spaced apart, substantially parallel and substantially cylindrical channels. Each channel has a length, with neighboring channels sharing a sidewall therebetween. The channels are configured to hold at least a major portion of a length of a respective battery cell.
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1. A multi-cell carrier for battery cells, comprising: a semi-rigid elastomeric carrier having a plurality of closely spaced apart, substantially parallel and substantially cylindrical channels, wherein the carrier is a unitary monolithic molded elastomeric body, wherein each channel has an outer wa
1. A multi-cell carrier for battery cells, comprising: a semi-rigid elastomeric carrier having a plurality of closely spaced apart, substantially parallel and substantially cylindrical channels, wherein the carrier is a unitary monolithic molded elastomeric body, wherein each channel has an outer wall and a length, with neighboring channels sharing a sidewall therebetween, wherein at least some of the channels include at least one vent extending though the outer wall, and wherein the channels are sized and configured to hold at least a major portion of a length of a respective battery cell. 2. The carrier of claim 1, wherein the channels are arranged as an array of channels with at least two rows of channels. 3. The carrier of claim 1, wherein the elastomeric carrier has a carrier body with a Shore A hardness of between about 60-90. 4. The carrier of claim 1, wherein at least some of the channels have a plurality of vents in the respective outerwall spaced apart along their length. 5. The carrier of claim 1, further comprising at least one upwardly extending member that extends above a channel outer wall that provides for impact resistance and/or alignment when assembled to a housing of a battery pack. 6. The carrier of claim 1, wherein the carrier has a carrier body with an upper surface and a lower surface, and wherein the channel outer walls associated with the upper surface have a different vent configuration than the channel outer walls associated with the lower surface. 7. The carrier of claim 1, further comprising at least one bumper. 8. The carrier of claim 7, wherein the at least one bumper extends outwardly from an end of the carrier in a direction that is substantially orthogonal to an axially extending centerline of the channels. 9. The carrier of claim 1, wherein at least one of the channels includes a retention member at an end thereof. 10. The carrier of claim 1, further comprising downwardly extending feet that project a distance outside bounds of a lower primary surface of the carrier. 11. The carrier of claim 1, wherein the carrier has a body of a first substrate and includes at least one overmold portion comprising a softer material than the first substrate. 12. The carrier of claim 1, wherein the cell carrier channels includes two overlying rows of five channels each. 13. The carrier of claim 1, wherein the carrier comprises a first unitary monolithic molded elastomeric carrier body and a second unitary monolithic molded elastomeric carrier body, each comprising a plurality of cell channels that hold cells for a battery. 14. The carrier of claim 13, wherein the first and second carrier bodies have axially aligned, longitudinally spaced apart channel portions that cooperate to hold more than a major portion of the length of a respective battery cell. 15. The carrier of claim 13, wherein the first and second bodies are configured to attach to each other. 16. A battery pack for an electric device in combination with the cell carrier of claim 1, comprising: a plurality of substantially cylindrical battery cells, one each residing in a respective channel, wherein at least a major portion of a length of a respective battery cell is held by a respective channel; anda battery pack housing holding the carrier with the cells. 17. The battery pack of claim 16, wherein the battery pack housing is sized and configured to releasably engage a cordless power tool. 18. The battery pack of claim 16, further comprising a circuit board residing over the carrier with the cells, wherein upwardly projecting members from the carrier extend above the circuit board. 19. A cordless power tool comprising: a power tool housing; anda battery pack that releasably engages the power tool housing, the battery pack comprising:a semi-rigid elastomeric cell carrier having a unitary monolithic molded body with a plurality of closely spaced apart, substantially parallel and substantially cylindrical channels, wherein each channel has a length, with neighboring channels sharing a sidewall therebetween; anda plurality of substantially cylindrical battery cells, one each residing in a respective channel, wherein at least a major portion of a length of a respective battery cell is held by a respective channel.
Koetting, William; Tom, Kwok; Klein, Martin J.; Patil, Prabhakar; Kebl, Kelly, Battery cell carrier assembly having a battery cell carrier for holding a battery cell therein.
Clanton David E. ; Bopp John R. ; D'Anjou Louis O. ; Gawron Matthew J. ; Mak Steve O. ; Orellana Manuel G. ; Randall Robert S. ; Smith John C. ; Yuhas Paul J., Battery holder.
Schmidt, Tim; Grass, Dominik, Sealing element for sealing battery cells of a traction battery, molded bodies for manufacturing the sealing eelement and method for manufacturing the sealing element.
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