IP Library › Granted Patent US 11,808,485
Granted Patent B2
US 11,808,485 · App. 16/893,825 · Granted Nov 7, 2023

Tankless water heater and electronic point of use water heater comprising the same

Inventor: Hubert Nolte (Hoexter, DE)
Assignee: Stiebel Eltron GMBH & CO. KG
F24H1/101F24H9/2028G01F1/05G01K13/02H05B3/82F24D2200/08F24D2220/0271F24D2220/042F24D2220/044G01K13/026
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Quick Facts
Patent No.
US 11,808,485
App. No.
16/893,825
Granted
Nov 7, 2023
Kind
B2
Abstract

A water heater including an inflow terminal for connecting a tankless water heater to a cold water supply and an outflow terminal for connecting the tankless water heater to a tap. A fluid channel proves a fluid connection from the inflow terminal to the outflow terminal. A heat element arrangement is arranged at or within at least a section of the fluid channel for transferring heat to fluid present within the fluid channel. An electronic controller is configured to control a heating power provided to the heat element arrangement. A flow sensor is arranged at or within the fluid channel downstream the heat element arrangement. The electronic controller is further configured to detect the presence of air bubbles within the fluid channel based on a change of a flow signal provided by the flow sensor and to adapt the heating power provided to the heat element arrangement in reaction to the determination of air bubbles.

Claims (33)

1. A tankless water heater comprising:

an inflow terminal for connecting the tankless water heater to a cold water supply;

an outflow terminal for connecting the tankless water heater to a tap;

a fluid channel providing a fluid connection from the inflow terminal to the outflow terminal;

an electric heating element arranged at or within at least a section of the fluid channel, the electric heating element being configured to heat fluid present within the fluid channel;

a flow sensor arranged at or within the fluid channel downstream of the heating element; and

an electronic controller configured to:

control a heating power provided to the electric heating element,

detect the presence of air bubbles within the fluid channel based on a change of a flow signal provided by the flow sensor,

in response to air bubbles being detected, adapt the heating power provided to the electric heating element, and

delay the onset of providing heating power to the electric heating element after the flow signal becomes indicative of a start of a tap event.

2. The tankless water heater according to claim 1 , further comprising:

a first temperature sensor configured to determine a temperature of fluid within the fluid channel upstream the electric heating element; and

a second temperature sensor configured to determine a temperature of fluid within the fluid channel downstream the electric heating element.

3. The tankless water heater according to claim 2 , wherein the second temperature sensor is arranged between the flow sensor and the heat element arrangement with respect to the fluid channel.

4. The tankless water heater according to claim 2 , wherein the electronic controller is further configured to adapt the heating power provided to the electric heating element based on a difference between the temperature determined by the second temperature sensor and a predetermined set temperature.

5. The tankless water heater according to claim 4 , further comprising:

a throttle valve, wherein the electronic controller is further configured to decrease the flow rate using the throttle valve responsive to the predetermined set temperature not being met.

6. The tankless water heater according to claim 5 , wherein the electronic controller is further configured to adjust the flow rate using the throttle valve in response to the temperature determined by the first temperature sensor being low.

7. The tankless water heater according to claim 1 , wherein at least the flow sensor, the fluid channel, the electric heating element, and the electronic controller are arranged within a housing.

8. The tankless water heater according to claim 1 , wherein the flow sensor includes a spinning wheel, and wherein the flow signal is indicative of a spinning rate of the spinning wheel.

9. The tankless water heater according to claim 1 , wherein the electronic controller is further configured to stop the provision of heating power to the electric heating element in response to a change in flow signal being indicative of the presence of air bubbles.

10. The tankless water heater according to claim 9 , wherein the electronic controller is further configured to determine the presence of air bubbles in the fluid channel using a characteristic frequency pattern analysis on the flow signal provided by the flow sensor.

11. An electronic controlled point of use water heater comprising:

an inflow terminal for connecting to a cold water supply;

an outflow terminal for connecting to a tap;

a fluid channel providing a fluid connection from the inflow terminal to the outflow terminal;

an electric heating element arranged at or within at least a section of the fluid channel, the electric heating element being configured to heat fluid present within the fluid channel;

a flow sensor arranged at or within the fluid channel downstream the heating element; and

an electronic controller configured to:

control a heating power provided to the electric heating element,

detect the presence of air bubbles within the fluid channel based on a change of a flow signal provided by the flow sensor, and

in response to air bubbles being detected, adapt the heating power provided to the electric heating element such that the heating power is greater than zero.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 14, 2020
From: NOLTE, HUBERT
To: STIEBEL ELTRON GMBH & CO. KG
Reel/Frame 053201/0894 →
Priority Claims (1)
DE 102019004320.0 · Jun 7, 2019 · national
Continuity (1)
Related Publication 20200386440A1 · Dec 10, 2020