Heating apparatus
The present technology relates to a tub for a humidifier comprising a container made of a first material, a heating element, and a lining made of a second, preferably biocompatible, material different from the first material, wherein the container comprises a base and a side wall defining a reservoir for a supply of liquid to be evaporated, the heating element is provided on the base of the container, and the lining covers the heating element and a substantial portion of the inner surface of the side wall of the container.
1. A tub for a humidifier comprising:
a container made of a first material,
a heating element, and
a lining comprising a second material different from the first material, wherein the second material is elastic to, in use, accommodate expansion and contraction of the heating element,
wherein the container comprises a base and a side wall defining a reservoir for a supply of liquid to be evaporated, the heating element being provided only on an inner surface of the base of the container, the lining covering the heating element along the base of the container and also covering an entire inner surface of the side wall of the container, and
wherein the lining is configured to be disposed between the heating element and the supply of liquid, an outer surface of the lining being fixedly adhered directly to 1) the inner surface of the side wall of the container, and 2) the heating element to electrically insulate the supply of liquid from the heating element.
2. The tub of claim 1 , wherein a support structure is disposed between the heating element and the base of the container.
3. The tub of claim 1 , wherein the lining is molded or injection molded over at least the heating element.
4. The tub of claim 1 , wherein the second material comprises silicone, or biocompatible silicone.
5. The tub of claim 1 , wherein the heating element is coated with an insulating material.
6. The tub of claim 5 , wherein the insulating material comprises silicone and/or silicone foam.
7. The tub of claim 5 , wherein the heating element is coated with the insulating material on a bottom side.
8. The tub of claim 1 , wherein a hollow space is provided on one side of the heating element.
9. The tub of claim 8 , wherein the hollow spaced is provided below the heating element.
10. The tub of claim 1 , wherein the heating element comprises a plug or connector to electrically connect to the heating element.
11. The tub of claim 1 , wherein the heating element comprises a tongue with electrical contacts.
12. The tub of claim 1 , further comprising one or a combination of the following: temperature sensor, pressure sensor, humidity sensor, one or more LEDs, thermal overload protection, and/or means for sensing the level of the supply of liquid.
13. The tub of claim 1 , wherein the lining forms a sealing lip at a top of the container.
14. The tub of claim 1 , wherein the lining is thermally conductive to, in use, effectively transfer heat from the heating element to the supply of liquid.
15. A humidifier comprising a base station and a tub according to claim 1 , wherein the tub is removably attached to the base station.
16. The humidifier of claim 15 , wherein the base station comprises control electronics which are removably electrically connected to the heating element of the tub.
17. The tub of claim 1 , wherein the tub further comprises a lid, and wherein the lining provides a sealing for the lid.
18. The tub of claim 1 , wherein the lining is overmolded onto the inner surface of the side wall of the container.
19. Method of manufacturing a tub for a humidifier according to claim 1 , comprising:
a) providing a tool for molding a container;
b) positioning a heating element inside said tool;
c) molding or injection-molding a container made of a first material around said heating element, wherein the container comprises a base and a side wall defining a reservoir for a supply of liquid to be evaporated, wherein the heating element is arranged only on an inner surface of the base of the container; and
d) molding a second material different from the first material over at least the heating element along the base of the container in order to provide a lining.
20. The method of claim 19 , wherein a support structure is disposed between the heating element and the base of the container.
21. The method of claim 19 , wherein the heating element is preheated to a predetermined temperature before the molding the first material.
22. The method of claim 21 , wherein the predetermined temperature is between 50° C. and 200° C.
23. The method of claim 22 , wherein the predetermined temperature is between 100° C. and 150° C.