This invention relates to an electrical heating assembly provided with a control system.
It is known to provide an electrical heating assembly in which a temperature-responsive device is arranged to monitor temperature of a cooking plate, such as of glass-ceramic material, and to provide an electrical output as a function of the temperature of the cooking plate and hence of the temperature of a cooking utensil positioned on an upper surface of the cooking plate. It is known to provide a control system which receives the electrical output from the temperature-responsive device and cooperates in closed-loop manner with the heating element or elements in the heater and a power supply, to control energising of the heating element or elements whereby a predetermined temperature of the cooking plate, and hence of the cooking utensil, is provided and maintained.
Requirements exist for a control system which provides for operation of such an electrical heating assembly in a plurality of operating modes, such as normal, simmer and frying modes, at pre-selected temperatures within such modes.
Requirements also exist for a control system which will additionally allow operation of such an electrical heating assembly in what is known as an open-loop manner, such that the heater is energised at selected pre-set power levels by duty cycle control means.
Control systems of the prior art are relatively complex, requiring a user to operate a number of different manual control devices according to whether closed-loop or open-loop operation is required.
It is an object of the present invention to overcome or minimise this problem.
According to one aspect of the present invention there is provided an electrical heating assembly comprising an electric heater, a first temperature-responsive device adapted to de-energise the electric heater at a predetermined temperature, a second temperature-responsive device adapted to provide an electrical output as a function of cooking temperature, and a control system, the control system comprising:
The cooking temperature may be selected from the temperature of a cooking plate and the temperature of a cooking utensil positioned on a cooking plate.
Display means may be provided to display the selected cooking mode and/or a selected setting of the cooking value selection means and/or the correspondingly-selected cooking temperature and/or the correspondingly-selected heating power. Such display means may comprise at least one opto-electronic display device, such as at least one multi-segment display device, particularly at least one seven-segment display device.
The cooking mode selection means may comprise a multiple-setting switch means, such as a rotary switch, slide switch, touch switch, membrane switch or toggle/push switch.
The cooking value selection means may comprise switch means, of multiple-step or continuously-variable form, for selection of the cooking temperature, and optionally a predetermined heating power, within a range predetermined by the cooking mode selection means. Such switch means may comprise a touch switch, a rotary switch or a slide switch.
Selectable cooking modes may comprise normal, simmer and frying modes.
In the simmer mode, the cooking value selection means may be operated to select predetermined cooking temperatures of from about 60 to about 100 degrees Celsius.
In the frying mode, the cooking value selection means may be operated to select predetermined cooking temperatures of from about 140 to about 300 degrees Celsius.
In the normal mode, the cooking value selection means may be operated to select predetermined cooking temperatures of from about 60 to about 600 degrees Celsius.
Alternatively, in the normal mode, the cooking value selection means may be operated to select predetermined duty cycle power levels of the heater between about 5 percent and about 100 percent of maximum.
The control system may comprise microprocessor-based circuit means.
The first and/or the second temperature-responsive device may comprise an electrical resistance element, such as a platinum resistance element, whose electrical resistance changes as a function of temperature.
The assembly may include a cooking plate having an upper surface for receiving a cooking utensil, and a lower surface, the electric heater being supported in contact with the lower surface of the cooking plate.
The second temperature-responsive device may be provided inside the electric heater substantially in contact with the lower surface of the cooking plate.
The cooking plate may comprise glass-ceramic material.
The control system may be adapted whereby in a first setting of the cooking mode selection means the cooking value selection means operates to provide user-selection of heating power of the electric heater within a predetermined range of heating powers. Such user-selection of heating power may comprise selection of predetermined duty cycles of operation of the electric heater within a predetermined range of duty cycles. Such duty cycles of operation may be provided by electro-mechanical or electronic control means.
The control system may be adapted whereby in the second setting of the cooking mode selection means the second temperature-responsive device and the electric heater are adapted to cooperate in closed-loop manner whereby a predetermined cooking temperature is provided.
By means of the present invention, simple operation of the electrical heating assembly by the control system is provided based on the use of only two selection means to provided cooking mode selection and also cooking temperature or heating power selection.
For a better understanding of the present invention and to show more clearly how it may be carried into effect, reference will now be made, by way of example, to the accompanying drawings in which:
Referring to
At least one radiant electrical resistance heating element 20 is supported relative to the base layer 16. The heating element or elements 20 can comprise any of the well-known forms of heating element, such as wire, ribbon, foil or lamp forms, or combinations thereof. In particular, the heating element or elements 20 can be of corrugated ribbon form, supported edgewise on the base layer 16 of insulation material.
It is to be understood, however, that the present invention is not limited to a heater incorporating at least one radiant electrical resistance element 20. Instead of the radiant electrical resistance element or elements, at least one electrical induction heating element could be provided.
The heating element or elements 20 is or are connected to a power supply 22 by way of leads 24 and a control system 26, which suitably includes a microprocessor-based control arrangement 28.
The cooking utensil 8 is heated by the heating element or elements 20 and its temperature is monitored by a temperature-responsive device 30, which is located substantially in contact with the lower surface 10 of the cooking plate 4 and provides an electrical output as a function of temperature of the cooking plate 4 and hence of the cooking utensil 8.
A further temperature-responsive device 42 is provided in the electric heater 12, which is connected by leads 44 to the control system 26 and is adapted to de-energise the electric heater 12 at a predetermined temperature, to prevent thermal damage to the cooking plate 4 and/or the electric heater 12. Such further temperature-responsive device 40 as illustrated is of electronic probe form, but may alternatively be of electromechanical form.
The temperature-responsive device 30 suitably comprises an electrical resistance element, such as a platinum resistance element, whose electrical resistance changes as a function of temperature, and is electrically connected by leads 32 to the control system 26.
The control system 26 is arranged to receive the temperature-dependant electrical output from the temperature-responsive device 30 and to cooperate in closed-loop manner with the heating element or elements 20 and the power supply 22, whereby predetermined temperatures of the cooking plate 4, and hence of the cooking utensil 8, can be provided and maintained. The control system 26 is also arranged to receive a temperature-dependent electrical output from the temperature-responsive device 42.
The control system 26 is provided with a cooking mode selection means 34 having a plurality of settings, whereby a predetermined cooking mode is user-selectable for the electrical heating assembly 2. Such a cooking mode may, for example, be selected from normal, simmer and frying modes. The cooking mode selection means 34 suitably comprises a multiple-setting switch means, such as a rotary switch, a slide switch, a touch switch, a membrane switch or a toggle/push switch.
The control system 26 is also provided with a cooking value selection means 36, which is adapted for user-selection of at least temperature of the cooking plate 4 within a predetermined temperature range. The cooking value selection means 36 operates in association with the cooking mode selection means 34, whereby operation of the cooking mode selection means 34 from one mode setting to at least one other mode setting results in a change in the predetermined temperature range provided by the cooking value selection means 36.
The cooking value selection means 36 suitably comprises switch means, of multiple-step or continuously-variable form and may suitably comprise a touch switch, a rotary switch or a slide switch.
As illustrated by
As illustrated by
Display means 40 is suitably provided to display the cooking mode selected by the cooking mode selection means 34 and/or the selected settings of the cooking value selection means 36 and/or the correspondingly-selected cooking plate temperatures and/or the correspondingly-selected heating powers. Such display means 40 may comprise at least one opto-electronic display device, such as at least one multi-segment display device, for example at least one seven-segment display device.
Number | Date | Country | Kind |
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0504598.4 | Mar 2005 | GB | national |
Number | Name | Date | Kind |
---|---|---|---|
4414465 | Newton et al. | Nov 1983 | A |
5397873 | Stoops et al. | Mar 1995 | A |
6554197 | Marbach et al. | Apr 2003 | B2 |
6940048 | Wilkins | Sep 2005 | B2 |
Number | Date | Country |
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10064117 | Jun 2002 | DE |
Number | Date | Country | |
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20060196869 A1 | Sep 2006 | US |