The present invention relates to ensuring of safety at a time of electrothermic heating in a high-frequency heating apparatus with an electrothermic heating device for heating food.
Conventionally, this kind of high-frequency heating apparatus with an electrothermic heating device includes one non-resettable type overheat prevention device in an electrothermic heating device. When a heater comes into a continuously conducting state due to some failure such as a heater relay short circuit, an overheat prevention device therefor operates to prevent occurrence of fire, electric shock, and the like.
For example, Patent Literature 1 describes a technique as above in which thermistor 62 and overheat prevention device 59 are provided and a stop signal is transmitted to the heating device at a time of temperature information from thermistor 62 becoming higher than a predetermined temperature, to make the heating device stop its operation.
In the conventional high-frequency heating apparatus with an electrothermic heating device, an operating temperature of overheat prevention device 59 is set higher by a margin than a temperature at a normal time in order to prevent overheat prevention device 59 from operating at the normal time. There has thus been a problem in that the heating apparatus cannot be prevented from coming into a “minor abnormal temperature state”, such as a state where a temperature of a shell of a commodity product becomes high, which is caused by failure of temperature control device 59 or the like, and reduces life time of parts.
PTL 1: Unexamined Japanese Patent Publication No. 2005-63884
A high-frequency heating apparatus with an electrothermic heating device according to the present invention includes: a heating chamber that houses an object to be heated; a high-frequency generating device and an electrothermic heating device for heating the object to be heated; and two overheat prevention devices provided in the electrothermic heating device, wherein the two overheat prevention devices are a first stage overheat prevention device of a resettable type and a second stage overheat prevention device of a non-resettable type, and an operating temperature of the second stage overheat prevention device is set higher than an operating temperature of the first stage temperature overheat prevention device.
In such a high-frequency heating apparatus with an electrothermic heating device, the first stage overheat prevention device is a resettable type, and the operating temperature of the second stage overheat prevention device is set higher than the operating temperature of the first stage temperature overheat prevention device. Therefore, even when the high-frequency heating apparatus with an electrothermic heating device comes into a very minor abnormal temperature state, the apparatus can be prevented from coming into the minor abnormal temperature state, so as to be continuously used.
Further, with the second stage overheat prevention device being the non-resettable type, when the first stage overheat prevention device gets out of order due to aged deterioration or the like, the second stage overheat prevention device operates. This disables the high-frequency heating apparatus with an electrothermic heating device to be continuously used, so that safety can be ensured.
Hereinafter, an embodiment of the present invention is described with reference to the drawings. It is to be noted that the present invention is not limited by this embodiment.
A temperature of heating chamber 1 is measured by thermistor 12. Data on the temperature of heating chamber 1 is then transmitted to a first stage thermoswitch (overheat prevention device) 9 and second stage thermoswitch (overheat prevention device) 11. First stage thermoswitch 9 and second stage thermoswitch 11 are fixed with screws at a top of electrothermic heating device 3, and serially connected to each other with lead wire 10.
Specifically, the high-frequency heating apparatus with an electrothermic heating device according to the present invention is provided with first stage thermoswitch 9 and second stage thermoswitch 11. Herein, first stage thermoswitch 9 is a resettable type thermoswitch and second stage thermoswitch 11 is a non-resettable type thermoswitch. An operating temperature of second stage thermoswitch 11 is set higher than an operating temperature of first stage thermoswitch 9.
Hereinafter described are operations and functions of the high-frequency heating apparatus with an electrothermic heating device, which is configured as thus described.
In the embodiment of the present invention, an operating temperature of resettable-type first stage thermoswitch 9 is set with a small margin from a temperature at the normal time. Hence as shown with curve B of
Further, the first stage thermoswitch 9 is a resettable type, and the operating temperature of second stage thermoswitch 11 is set higher than the operating temperature of first stage thermoswitch 9. It is thereby possible to continuously use the high-frequency heating apparatus with an electrothermic heating device in a range of the very minor abnormal temperature increase.
Moreover, as shown in curve C of
As described above, according to the embodiment of the present invention, it is possible to prevent the high-frequency heating apparatus with an electrothermic heating device from coming into a state of a minor abnormal temperature increase, and also to continuously use the high-frequency heating apparatus with an electrothermic heating device.
The present invention is applied to a high-frequency heating apparatus with an electrothermic heating device for heating of food.
1 heating chamber
2 high-frequency heating unit
3 electrothermic heating device
4 heater
5 circulating fan
6 circulating fan pulley
7 belt
8 circulating fan motor
9 first stage thermoswitch
10 lead wire
11 second stage thermoswitch
12 thermistor
13 control section
14 object to be heated
Number | Date | Country | Kind |
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2008-129393 | May 2008 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/JP2009/002070 | 5/13/2009 | WO | 00 | 11/15/2010 |