US2022018588A1PendingUtilityA1

Hybrid cooling storage device

Assignee: GRASSESCHI ALESSANDROPriority: Jul 17, 2020Filed: Jul 17, 2020Published: Jan 20, 2022
Est. expiryJul 17, 2040(~14 yrs left)· nominal 20-yr term from priority
F25D 17/02F25D 2400/12F25B 21/02F25B 2321/0251F25B 2321/025F25D 21/14F25D 3/107F25B 41/40F25B 41/003
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Claims

Abstract

A hybrid cooling storage device, including a main body to store at least one item therein, a lid pivotally disposed on at least a portion of the main body to cover an interior portion of the main body, and a hybrid cooling unit disposed on and within at least a portion of the main body, including a liquid conduit disposed within at least a portion of each side of the main body to transport a liquid therein, a conduit connector connected to a first end and a second end of the liquid conduit to dissipate heat from the liquid received from the liquid conduit, a peltier plate disposed on at least a portion of the conduit connector to create a difference in temperature between a first side and a second side of the peltier plate, such that the first side is cold and the second side is hot, a heat sink disposed on at least a portion of the peltier plate to dissipate heat generated on the peltier plate, and a fan disposed on at least a portion of the heat sink to extract heat from the heat sink via a rotation of the fan.

Claims

exact text as granted — not AI-modified
1 . A hybrid cooling storage device, comprising:
 a main body to store at least one item therein;   a lid pivotally disposed on at least a portion of the main body to cover an interior portion of the main body; and   a hybrid cooling unit disposed on and within at least a portion of the main body, comprising:
 a liquid conduit disposed within at least a portion of each side of the main body to transport a liquid therein, 
 a conduit connector connected to a first end and a second end of the liquid conduit to dissipate heat from the liquid received from the liquid conduit, 
 a peltier plate disposed on at least a portion of the conduit connector to create a difference in temperature between a first side and a second side of the peltier plate, such that the first side is cold and the second side is hot, 
 a heat sink disposed on at least a portion of the peltier plate to dissipate heat generated on the peltier plate, and 
 a fan disposed on an entire length of the heat sink to extract heat from the heat sink via a rotation of the fan, such that a length of the heat sink is equivalent to a length of a fan housing, such that the fan extracts heat from the heat sink received directly from the peltier plate. 
   
     
     
         2 . The hybrid cooling storage device of  claim 1 , further comprising:
 a liquid pump connected to at least a portion of the liquid conduit to move the liquid through the liquid conduit.   
     
     
         3 . The hybrid cooling storage device of  claim 1 , further comprising:
 a liquid condensation unit connected to at least a portion of the liquid conduit to cool hot air released from at least one of the conduit connector, the peltier plate, and the heat sink using the liquid conduit, such that the liquid condensation unit generates and collects liquid droplets formed on an outer surface of the liquid conduit.   
     
     
         4 . A hybrid cooling storage device, comprising:
 a main body to store at least one item therein;   a lid pivotally disposed on at least a portion of the main body to cover an interior portion of the main body; and   a hybrid cooling unit disposed on and within a side of the main body and flush with respect to an outer surface of the side of the main body, comprising:
 a liquid conduit disposed within at least a portion of each side of the main body to transport a liquid therein, 
 a conduit connector connected to a first end and a second end of the liquid conduit to dissipate heat from the liquid received from the liquid conduit, 
 a peltier plate disposed on at least a portion of the conduit connector to create a difference in temperature between a first side and a second side of the peltier plate, 
 a heat sink disposed on at least a portion of the peltier plate to dissipate heat generated on the peltier plate, such that a length of the heat sink is equivalent to a length of the peltier plate, and 
 a fan disposed on at least a portion of the heat sink to extract heat from the heat sink via a rotation of the fan.

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