The systems and methods of this invention disclosure relate to an improved espresso coffee machine at corresponding methodologies.
As is known, brewing espresso coffee requires that a certain amount of water (usually around 60 ml) at 90° C. be forced through a coffee pod weighing around 14 g at a nominal pressure of 9 bar. It is also known that the quality of the espresso is greatly influenced by pressure and temperature. The physical properties of coffee vary depending on the variety. It follows, therefore, that the parameters for an optimal brew differ for each coffee variety.
This Summary is provided to introduce a selection of concepts in a simplified form that are further described below in the detailed description. This Summary is not intended to identify key features or essential features of the claimed subject matter, nor is it intended to be used as an aid in determining the scope of the claimed subject matter.
Systems and methods for an espresso coffee machine are described. In one aspect, the improved espresso coffee machine comprises one or more operating units, each of which at least comprises a boiler, a pump, a heating unit, and a unit for aroma extraction and dispensing of the espresso coffee brew, including related conduits. Each unit is equipped with a system for controlling and adjusting the espresso coffee brewing parameters.
Experts in the trade will better appreciate the technical advantages of the following described systems and methods for an improved espresso coffee machine from the following description with reference to the accompanying drawings, which illustrate a preferred non-limiting embodiment of it and in which:
Prior art machines are ordinarily equipped with a pump driven by an electrical, alternating current motor. Typically, although the pump is equipped with means for setting the water outlet pressure upon installation, the pressure subsequently cannot be adjusted at the user's will.
Moreover, the temperature usually is controlled by a heat exchanger, an electromechanical thermostat, or an electronic PID temperature controller. At best, these systems provide consistent temperature stability but cannot implement repeatable and customizable temperature profiles.
In contrast to conventional state-of-the-art espresso coffee machines, the following described systems and methods for improved espresso coffee machines provide, for example, an espresso coffee machine where the brewing parameters can be controlled and adjusted by the user. These novel systems and methodologies are now described in greater detail.
Through the user interface, a user can adjust the extraction pressure and/or the temperature in real time, substantially allowing the user to optimize these characteristics according to each different coffee blend used.
In a first operating mode, the pressure is manually adjusted acting with the lever 16 on the rheostat 15 which changes, through the control processing unit, the speed of the pump 13. In this operating mode the user can change the pressure as desired for brewing of the espresso.
In a second operating mode, different pressure profiles are stored in a memory operatively coupled to the processor) or CPU) and accessed (e.g., via the UI) by the user. For example, in one embodiment a desired pressure profile is selected by the user through the command button 12. Responsive to this selection, the pump 13 is activated, acting on the rheostat 15 through the lever 16. The processor drives the output of the associated control module (i.e. adjusts the speed of the pump 13) to reproduce the programmed pressure curve.
The different profiles of pressure can be stored in the memory operatively coupled to the processor by recording the profiles obtained in the manually operated mode. In another implementation, predefined profiles are downloaded from an external memory device (e.g., via a USB port, through wireless means, and/or so on). In one implementation, the system 10 allows a user to transfer a recorded profile from the memory to an external computing device (e.g., a general purpose computer, mobile computing device, and/or so on), to edit the profile (e.g., vary its shape, etc.), and upload (or download) the new profile into memory of the improved coffee espresso machine.
Three exemplary and different pressure profiles obtainable according to the invention are shown in
In a further exemplary embodiment of the described improved coffee espresso machine, a user can also control the extraction temperature in real time. The temperature profile can therefore be optimized for a particular coffee variety and easily selected through the user interface. In this scenario, the processor is operatively configured to store into memory different temperature profiles to be sent to the associated control module.
Although the above sections describe systems and methods for an improved espresso coffee machine in language specific to structural features, the implementations defined in the appended claims are not necessarily limited to the specific described features. Rather, the specific features are disclosed as exemplary forms of implementing the claimed subject matter.
Number | Date | Country | Kind |
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PO2009U000011 | Oct 2009 | IT | national |
This patent application is a continuation in part of U.S. patent application Ser. No. 12/756,170, filed on Apr. 7, 2010, titled “Improved Espresso Coffee Machine,” and which is herein incorporated by reference. U.S. patent application Ser. No. 12/756,170 claims priority to Italian utility model patent Application Serial No. P02009U000011, which was filed on Oct. 24, 2009.
Number | Date | Country | |
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Parent | 12756170 | Apr 2010 | US |
Child | 12760555 | US |