Temperature control bottle assembly
View Patent ↗A temperature control bottle assembly for heating and cooling drinks includes a base control apparatus and at least one conductive bottle apparatus. The base control apparatus comprises a cylindrical housing having a pair of semicircular depressions extending towards a bottom side defining a left half, a right half, and a divider wall extending therebetween. A heat exchange is coupled within an inner cavity and comprises a CPU, a heating element disposed beneath the right half, and a cooling filament disposed beneath the left half. A power supply and a plurality of controls are in operational communication with the heat exchange. The conductive bottle apparatus comprises a bottle and a thermally conductive bottom plate coupled to the bottle. The bottom plate has a pair of semicircular protrusions corresponding to, and selectively engageable with, the pair of depressions of the housing to control the temperature of the bottle contents.
1. A temperature control bottle assembly comprising:
a base control apparatus comprising:
a cylindrical housing having a top side separated from a bottom side and a sidewall extending therebetween forming an inner cavity, the top side having a pair of semicircular depressions extending towards the bottom side, the pair of semicircular depressions defining a left half, a right half, and a divider wall extending across a diameter of the top side therebetween;
a heat exchange coupled to the housing, the heat exchange being coupled within the inner cavity and comprising a CPU, a heating element disposed beneath the right half, and a cooling filament disposed beneath the left half,
a power supply coupled to the housing, the power supply being coupled within the inner cavity and in operational communication with the heat exchange; and
a plurality of controls coupled to the housing, the plurality of controls being coupled to the sidewall and in operational communication with the heat exchange; and
at least one conductive bottle apparatus comprising:
a bottle, the bottle comprising a bottle body and a top; and
a bottom plate coupled to the bottle, the bottom plate being coupled to a bottom end of the bottle body and having a pair of semicircular protrusions corresponding to, and selectively engageable with, the pair of depressions of the housing of the base control apparatus, the pair of protrusions having a height equal to, or greater than, a depth of the pair of depressions, the bottom plate being thermally conductive.
2. The temperature control bottle assembly of claim 1 further comprising a display coupled to the housing, the display being coupled to the sidewall and in operational communication with the heat exchange to show a current temperature and a set temperature of the heat exchange.
3. The temperature control bottle assembly of claim 2 further comprising the display being rectangular and extending from proximal the top side to proximal the bottom side.
4. The temperature control bottle assembly of claim 1 further comprising the plurality of controls comprising an up control and a down control, the up control raising the temperature of the heat exchange and the down control lowering the temperature of the heat exchange.
5. The temperature control bottle assembly of claim 4 further comprising each of the up control and the down control being triangular, the up control being oriented upward and the down control being oriented downward, the up control and the down control being horizontally symmetrical.
6. The temperature control bottle assembly of claim 1 further comprising the power supply comprising a rechargeable battery and a charge port, the charge port extending through the sidewall and being configured to receive a charging cable.
7. The temperature control bottle assembly of claim 1 further comprising the power supply being disposed adjacent a right side of the sidewall, the heating element being coiled within the right half adjacent the power supply and the cooling filament extending around a perimeter of the right half and being coiled within the left half.
8. The temperature control bottle assembly of claim 1 further comprising the bottom plate being metal.
9. The temperature control bottle assembly of claim 1 further comprising the bottle being a baby bottle.
10. The temperature control bottle assembly of claim 1 further comprising the top side of the housing having a plurality of parallel grooves within the pair of depressions.
11. A temperature control bottle assembly comprising:
a base control apparatus comprising:
a cylindrical housing having a top side separated from a bottom side and a sidewall extending therebetween forming an inner cavity, the top side having a pair of semicircular depressions extending towards the bottom side, the top side having a plurality of parallel grooves within the pair of depressions, the pair of semicircular depressions defining a left half, a right half, and a divider wall extending across a diameter of the top side therebetween;
a heat exchange coupled to the housing, the heat exchange being coupled within the inner cavity and comprising a CPU, a heating element disposed beneath the right half, and a cooling filament disposed beneath the left half,
a power supply coupled to the housing, the power supply being coupled within the inner cavity and in operational communication with the heat exchange, the power supply comprising a rechargeable battery and a charge port, the charge port extending through the sidewall and being configured to receive a charging cable, the power supply being disposed adjacent a right side of the sidewall, the heating element being coiled within the right half adjacent the power supply and the cooling filament extending around a perimeter of the right half and being coiled within the left half;
a display coupled to the housing, the display being rectangular and coupled to the sidewall extending from proximal the top side to proximal the bottom side, the display being in operational communication with the heat exchange to show a current temperature and a set temperature of the heat exchange; and
a plurality of controls coupled to the housing, the plurality of controls being coupled to the sidewall and in operational communication with the heat exchange to provide the set temperature of the heat exchange, the plurality of controls comprising an up control and a down control, each of the up control and the down control being triangular, the up control being oriented upward and the down control being oriented downward, the up control and the down control being horizontally symmetrical, the up control raising the temperature of the heat exchange and the down control lowering the temperature of the heat exchange; and
at least one conductive bottle apparatus comprising:
a bottle, the bottle comprising a bottle body and a top; and
a bottom plate coupled to the bottle, the bottom plate being coupled to a bottom end of the bottle body and having a pair of semicircular protrusions corresponding to, and selectively engageable with, the pair of depressions of the housing of the base control apparatus, the pair of protrusions having a height equal to, or greater than, a depth of the pair of depressions, the bottom plate being thermally conductive metal.
12. A temperature control bottle assembly comprising:
a base control apparatus comprising:
a cylindrical housing having a top side separated from a bottom side and a sidewall extending therebetween forming an inner cavity, the top side having a pair of semicircular depressions extending towards the bottom side, the top side having a plurality of parallel grooves within the pair of depressions, the pair of semicircular depressions defining a left half, a right half, and a divider wall extending across a diameter of the top side therebetween;
a heat exchange coupled to the housing, the heat exchange being coupled within the inner cavity and comprising a CPU, a heating element disposed beneath the right half, and a cooling filament disposed beneath the left half,
a power supply coupled to the housing, the power supply being coupled within the inner cavity and in operational communication with the heat exchange, the power supply comprising a rechargeable battery and a charge port, the charge port extending through the sidewall and being configured to receive a charging cable, the power supply being disposed adjacent a right side of the sidewall, the heating element being coiled within the right half adjacent the power supply and the cooling filament extending around a perimeter of the right half and being coiled within the left half;
a display coupled to the housing, the display being rectangular and coupled to the sidewall extending from proximal the top side to proximal the bottom side, the display being in operational communication with the heat exchange to show a current temperature and a set temperature of the heat exchange; and
a plurality of controls coupled to the housing, the plurality of controls being coupled to the sidewall and in operational communication with the heat exchange to provide the set temperature of the heat exchange, the plurality of controls comprising an up control and a down control, each of the up control and the down control being triangular, the up control being oriented upward and the down control being oriented downward, the up control and the down control being horizontally symmetrical, the up control raising the temperature of the heat exchange and the down control lowering the temperature of the heat exchange; and
at least one conductive bottle apparatus comprising:
a baby bottle, the baby bottle comprising a bottle body and a nipple top; and
a bottom plate coupled to the bottle, the bottom plate being coupled to a bottom end of the bottle body and having a pair of semicircular protrusions corresponding to, and selectively engageable with, the pair of depressions of the housing of the base control apparatus, the pair of protrusions having a height equal to, or greater than, a depth of the pair of depressions, the bottom plate being thermally conductive metal.