IP Library Granted Patent US 10,791,868
Granted Patent B2
US 10,791,868 · App. 15/526,095 · Granted Oct 6, 2020

Coffee processing apparatus and method

Inventors: Jingwei Johannes Maria Tan (Eindhoven, NL); Jun Shi (Eindhoven, NL); Jun Zhou (Eindhoven, NL)
Assignee: Koninklijke Philips N.V.
A47J31/42A23F5/08A23F5/26A23F5/262A47J31/002A47J31/44A47J31/402A47J31/404A47J31/41
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Quick Facts
Patent No.
US 10,791,868
App. No.
15/526,095
Granted
Oct 6, 2020
Kind
B2
Abstract

A coffee processing apparatus ( 100, 200, 300 ) is disclosed that comprises at least one of a grinding stage ( 110 ) for grinding coffee beans ( 10 ) into ground coffee beans ( 20 ); and a brewing stage ( 140 ) for brewing coffee from ground coffee beans; the coffee processing apparatus further comprising a sensor ( 150 ) arranged to sense a total concentration of volatile organic compounds released by said coffee beans or ground coffee beans; and a controller ( 160 ) responsive to said sensor and arranged to control said grinding stage and/or said brewing stage as a function of said total concentration. Methods of controlling such a coffee processing apparatus are also disclosed.

Claims (38)

1. A coffee processing apparatus comprising:

a grinding stage for grinding coffee beans into ground coffee beans; and

a brewing stage for brewing coffee from the ground coffee beans;

the coffee processing apparatus further comprising:

a sensor; and

a controller responsive to said sensor;

wherein:

the sensor is configured to sense a total concentration of volatile organic compounds released by said coffee beans in accordance with a condition dependent release profile of said coffee beans,

the controller is configured to control said grinding stage as a function of said total concentration of volatile organic compounds, and wherein the controller is further configured to control the brewing stage as the function of said total concentration of volatile organic compounds.

2. The coffee processing apparatus of claim 1 , wherein the sensor is configured to sense the total concentration of volatile organic compounds released by said coffee beans in a container of the grinding stage.

3. The coffee processing apparatus of claim 2 , wherein the container comprises a compartment, and wherein the sensor is in fluid connection with said compartment.

4. The coffee processing apparatus of claim 1 , wherein the grinding stage comprises a shutter for blocking release of the ground coffee beans, and wherein the controller is further configured to control said shutter as a function of said total concentration of volatile organic compounds.

5. The coffee processing apparatus of claim 1 , wherein the brewing stage comprises a water dispensing stage, under control of said controller, configured to dispense a first amount of water onto the ground coffee beans, said first amount being determined as a function of said total concentration of volatile organic compounds.

6. The coffee processing apparatus of claim 5 , wherein the water dispensing stage is further configured to dispense a second amount of water into coffee brewed by said brewing stage, said second amount being determined as a function of said total concentration of volatile organic compounds.

7. The coffee processing apparatus of claim 5 , further comprising a ground coffee dispensing stage, under control of said controller, configured to dispense an amount of ground coffee beans into said brewing stage, said amount of ground coffee beans being determined as a function of said total concentration of volatile organic compounds.

8. The coffee processing apparatus of claim 7 , wherein the controller is configured to dispense a ratio of the ground coffee beans and water into the brewing stage, said ratio being determined as a function of said total concentration of volatile organic compounds.

9. The coffee processing apparatus of claim 8 , further comprising a data storage including a lookup table comprising a plurality of said ratios, wherein each ratio is associated with a particular total concentration of said volatile organic compounds.

10. The coffee processing apparatus of claim 7 , wherein the ground coffee dispensing stage includes the grinding stage.

11. The coffee processing apparatus of claim 1 , further comprising a user interface, wherein the controller is configured to control said grinding stage and said brewing stage as a function of said total concentration and a user input provided through said user interface.

12. A method of controlling a coffee processing apparatus, wherein the method comprises:

determining, by a sensor, a total concentration of volatile organic compounds released by whole coffee beans in accordance with a condition dependent release profile of said whole coffee beans;

selecting, by a controller, a grinding condition and a brewing condition in response to the determined total concentration; and

controlling, by the controller, a grinding stage and a brewing stage of the coffee processing apparatus in accordance with the selected grinding and brewing conditions to grind said coffee beans into ground coffee beans and brew coffee said ground coffee beans.

13. The method of controlling the coffee processing apparatus according to claim 12 , wherein:

said selecting step comprises determining a ratio of said ground coffee beans to hot water for a brewing process in response to the determined total concentration.

14. The method of controlling the coffee processing apparatus according to claim 13 , wherein said controlling step comprises brewing the coffee in accordance with the determined ratio.

15. The coffee processing apparatus of claim 3 , wherein the compartment is arranged to hold a specific amount of the coffee beans for detection of said total concentration from the specific amount of coffee beans.

16. A coffee processing apparatus comprising:

a grinding stage for grinding coffee beans into ground coffee beans; and

a brewing stage for brewing coffee from the ground coffee beans;

the coffee processing apparatus further comprising:

a sensor; and

a controller responsive to said sensor;

wherein:

the sensor is configured to sense a total concentration of volatile organic compounds released by said coffee beans,

the controller is configured to control said grinding stage as a function of said total concentration of volatile organic compounds, and wherein the controller is further configured to control the brewing stage as the function of said total concentration of volatile organic compounds.

17. The coffee processing apparatus of claim 16 , wherein the controller is further configured to control the grinding stage to control granularity of the ground coffee beans produced by the grinding stage.

18. The coffee processing apparatus of claim 16 , wherein the controller is further configured to control an amount of the ground coffee beans to be dispensed through an outlet of the grinding stage.

Assignments (2)
NUNC PRO TUNC ASSIGNMENT Recorded Aug 17, 2023
From: KONINKLIJKE PHILIPS N.V.
To: VERSUNI HOLDING B.V.
Reel/Frame 064618/0115 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 11, 2017
From: TAN, JINGWEI; SHI, JUN; ZHOU, JUN
To: KONINKLIJKE PHILIPS N.V.
Reel/Frame 042340/0427 →
Priority Claims (2)
WO PCT/CN2014/091089 · Nov 14, 2014 · international
EP 15159335 · Mar 17, 2015 · regional
Continuity (1)
Related Publication 20170303731A1 · Oct 26, 2017