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TR201908195A2 - A METHOD TO OPERATE A COOKING OVEN AND OVEN - Google Patents

A METHOD TO OPERATE A COOKING OVEN AND OVEN Download PDF

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Publication number
TR201908195A2
TR201908195A2 TR2019/08195A TR201908195A TR201908195A2 TR 201908195 A2 TR201908195 A2 TR 201908195A2 TR 2019/08195 A TR2019/08195 A TR 2019/08195A TR 201908195 A TR201908195 A TR 201908195A TR 201908195 A2 TR201908195 A2 TR 201908195A2
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TR
Turkey
Prior art keywords
heating element
grid
cooking
oven
volume
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TR2019/08195A
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Turkish (tr)
Inventor
Erbay Meti̇n
Atalay Engi̇n
Original Assignee
Bsh Ev Aletleri San Ve Tic As
Bsh Ev Aletleri̇ Sanayi̇ Ve Ti̇caret Anoni̇m Şi̇rketi̇
Bsh Hausgeraete Gmbh
BSH Hausgeräte GmbH
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Application filed by Bsh Ev Aletleri San Ve Tic As, Bsh Ev Aletleri̇ Sanayi̇ Ve Ti̇caret Anoni̇m Şi̇rketi̇, Bsh Hausgeraete Gmbh, BSH Hausgeräte GmbH filed Critical Bsh Ev Aletleri San Ve Tic As
Priority to TR2019/08195A priority Critical patent/TR201908195A2/en
Publication of TR201908195A2 publication Critical patent/TR201908195A2/en

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Abstract

The present invention is a cooking oven (100) comprising a cooking chamber (101) where a cooking operation can be realized, a first grill heating element (111), a second grill heating element (112) and a third heating element (113) for heating said cooking chamber (101). Accordingly, first grill heating element (111) and the second grill heating element (112) located at a side of the cooking chamber (101), are electrically connected to each other in a parallel manner, and the third heating element (113) located at an another side of the cooking chamber (101) with respect to the side where the first grill heating element (111) and second grill heating element (112) are located, is connected in a serial manner to the first grill heating element (111) and the second grill heating element (112).The present invention is a cooking oven (100) comprising a cooking chamber (101) where a cooking operation can be realized, a first grill heating element (111), a second grill heating element (112) and a third heating element (113) for heating said cooking chamber (101). Accordingly, first grill heating element (111) and the second grill heating element (112) located at a side of the cooking chamber (101), are electrically connected to each other in a parallel manner, and the third heating element (113) located at an another side of the cooking chamber (101) with respect to the side where the first grill heating element (111) and second grill heating element (112) are located, is connected in a serial manner to the first grill heating element (111) ) and the second grill heating element (112).

Description

TARIFNAME BIR PISIRME FIRINI VE PISIRME FIRINININ ÇALISTIRILMASI IÇIN BIR YÖNTEM TEKNIK ALAN Bulus, pisirme isleminin gerçeklestirilebildigi bir pisirme hacmini içeren, bahsedilen pisirme hacmini isitmak üzere bir birinci izgara isitma elemanini, bir ikinci izgara isitma elemanini ve bir üçüncü isitma elemanini içeren bir pisirme firini ile ilgilidir. ÖNCEKI TEKNIK EP2848866 A1, firinin bir boslugunun isitilmasi için en az bir birinci, ikinci ve üçüncü isitma elemanini içeren bir pisirme firiniyla ilgilidir. Burada, üçüncü isitma elemani, birinci ve ikinci isitma elemaniyla seri olarak baglanmaktadir. Ilgili teknik alanda bir iyilestirme gerekmektedir. BULUSUN KISA AÇIKLAMASI Mevcut bulus, ilgili teknik alana yeni avantajlar getirmek üzere, bir pisirme firini ile ilgilidir. Bulusun bir amaci, enerji tüketiminin azaltildigi bir pisirme firini ortaya koymaktir. Bulusun diger bir amaci, isitma elemanlarinin uzatilmis çalisma ömründe kullanilmasini saglayan bir pisirme firini ortaya koymaktir. Yukarida bahsedilen ve asagidaki detayli anlatimdan ortaya çikacak tüm amaçlari gerçeklestirmek üzere, mevcut bulus, pisirme isleminin gerçeklestirilebildigi bir pisirme hacmini içeren, bahsedilen pisirme hacmini isitmak üzere bir birinci izgara isitma elemanini, bir ikinci izgara isitma elemanini ve bir üçüncü isitma elemanini içeren bir pisirme firinidir. Buna göre, birinci izgara isitma elemani ve pisirme hacminin bir tarafinda konumlanan ikinci izgara isitma elemaninin birbirlerine elektriksel olarak paralel baglanmis olmasi ve pisirme hacminin, birinci izgara isitma elemaninin ve ikinci izgara isitma elemaninin konumlandigi tarafa göre baska bir tarafinda konumlanan üçüncü isitma elemaninin, birinci izgara isitma elemanina ve ikinci izgara isitma elemanina seri sekilde baglanmis olmasidir. Böylece isitma elemanlarinin daha az enerji tüketmesi saglanmakta ve nominal gerilimlerinin altinda çalistiklari için daha uzun ömürle kullanilmalarin imkân taninmaktadir. Ayrica ek isitma elemanina veya maliyetli ek bilesenlere ihtiyaç duyulmadan bu faydalara ulasilmasi saglanmaktadir. Üçüncü isitma elemaninin birinci ve ikinci izgara isitma elemaniyla seri baglanmasinin temel avantaji, isitma elemanlarinin, nominal gücün altindaki bir güçte çalistirilmasidir çünkü birinci ve ikinci izgara isitma elemanlarindaki giris gerilimi düsmekte ve üçüncü isitma elemaninda giris geriliminin bir ikinci kismi düsmektedir. Böylece, isiticilarin tam güçte çalistirilmasina gerek kalmaksizin uzatilmis sürede pisirilecek gidalarin pisirilmesine imkân saglanmaktadir. Bulusun tercih edilen bir yapilanmasinin özelligi, birinci izgara isitma elemaninin ve ikinci izgara isitma elemaninin, pisirme hacminin bir üst tarafinda saglanan üst isitma elemani olmasi ve böylece, pisirilecek gidalara üstten isinin saglanabilmesidir. Bulusun tercih edilen bir yapilanmasinin özelligi, pisirme hacminin, pisirme hacminin içine erisim için bir ön açikliga sahip olmasi ve üçüncü isitma elemaninin, ön açikligin saglandigi pisirme hacmi tarafina karsit olan pisirme hacminin bir arka tarafinda konumlanmis olmasidir. Böylece, üçüncü isitma elemani, ön açikliktan uzakta saglanmaktadir. Bulusun tercih edilen bir yapilanmasinin özelligi, birinci izgara isitma elemani ve ikinci izgara isitma elemani ve arka isitma elemanini içeren bir isitma devresini 220-240V AC ya da 400V AC gerilimlerinden biri ile besleyecek sekilde konfigüre edilmis bir gerilim kaynagini içermesidir. Böylece, isitma devresi için bir gerilim degeri saglanmaktadir. Bulusun tercih edilen bir yapilanmasinin özelligi, birinci izgara isitma elemani ve ikinci izgara isitma elemaninin, üzerlerindeki voltaj düsümünün 80 ile 120V arasinda bir degerde olacak sekilde konfigüre edilmis olmalaridir. Böylece, birinci ve ikinci izgara isitma elemanlarinin nominal voltajinin altinda çalismasi saglanmaktadir. Bulusun tercih edilen bir diger yapilanmasinin özelligi, arka isitma elemaninin, üzerindeki voltaj düsümünün 110-150V arasinda bir degerde olacak sekilde konfigüre edilmis olmasidir. Böylece, üçüncü isitma elemaninin, nominal voltajin altinda çalismasi saglanmaktadir. Bulusun tercih edilen bir diger yapilanmasinin özelligi, firinin içerdigi elektriksel bilesenlerden en az birinin birinci izgara isitma elemani, ikinci izgara isitma elemani ve arka isitma elemanini içeren bir isitma devresine elektriksel olarak paralel bagli olacak sekilde saglanmis olmasidir. Böylelikle ilâve enerji tasarrufu ve bilesenlerin kullanim ömürlerinin ilave olarak arttirilmasi saglanmaktadir. Mevcut bulus, ayrica, pisirme isleminin gerçeklestirilebildigi bir pisirme hacmini içeren, bahsedilen pisirme hacmini isitmak üzere bir birinci izgara isitma elemanini, bir ikinci izgara isitma elemanini ve bir üçüncü isitma elemanini içeren bir pisirme firininin çalistirilmasi için bir yöntemdir. Buna göre, pisirme hacminin bir tarafinda konumlanan birinci izgara isitma elemani ve ikinci izgara isitma elemani, paralel bir sekilde birbiriyle elektriksel olarak çalistirilmakta ve birinci izgara isitma elemani ve ikinci izgara isitma elemaninin konumlandigi tarafa göre pisirme hacminin baska bir tarafinda konumlanan üçüncü isitma elemani, birinci izgara isitma elemanina ve ikinci izgara isitma elemanina seri bir sekilde çalistirilmaktadir. Üçüncü isitma elemaninin birinci ve ikinci izgara isitma elemaniyla seri baglanmasinin temel avantaji, isitma elemanlarinin, nominal gücün altindaki bir güçte çalistirilmasidir çünkü birinci ve ikinci izgara isitma elemanlarindaki giris gerilimi düsmekte ve üçüncü isitma elemaninda giris geriliminin bir ikinci kismi düsmektedir. Böylece, isiticilarin tam güçte çalistirilmasina gerek kalmaksizin uzatilmis sürede pisirilecek gidalarin pisirilmesine imkân saglanmaktadir. Bulusun tercih edilen bir diger yapilanmasinin özelligi, birinci izgara isitma elemani ve ikinci izgara isitma elemani üzerindeki gerilim düsüsünün, 80V ilâ 120V arasindaki bir degerde olacak sekilde konfigüre edilmesi ve üçüncü isitma elemani üzerindeki gerilim düsüsünün, 110V ilâ 150V arasindaki bir degerde olacak sekilde konfigüre edilmesidir. Böylece, isitma elemanlarinin, nominal voltajin altinda çalismasi saglanmaktadir. SEKILLERIN KISA AÇIKLAMASI Sekil 1'de, pisirme firininin temsili bir görünümü verilmistir. Sekil 2`de, pisirme firininin sematik olarak temsili bir görünümü verilmistir. Sekil 3'de, pisirme firininin mümkün bir yapilanmasinin sematik olarak temsili bir görünümü verilmistir. SEKILLERIN DETAYLI AÇIKLAMASI Bu detayli açiklamada, bulus konusu, sadece konunun daha iyi anlasilmasina yönelik hiçbir sinirlayici etki olusturmayacak örneklerle açiklanmaktadir. Sekil 1*de, bir pisirme firini (100) temsili olarak gösterilmektedir. Pisirme firini (100), pisirme isleminin uygulanacagi gidalarin yerlestirilmesi için bir pisirme hacmini (101) içermektedir. Pisirme firini (100), bahsedilen pisirme hacminin (101) isitilmasi için bir birinci izgara isitma elemanini (111) ve bir ikinci izgara isitma elemanini (112) içermektedir. Daha detayli olarak, pisirme hacmi (101). pisirme islemi için bir hacmi hapsetmek için yanlari ve içerisine erisim saglamak için bir ön açikligi (102) içermektedir. Pisirme hacmin (101) tavani, üst taraf (103) olarak tanimlanmakta ve pisirme hacminin (101) tabani, alt taraf (105) olarak tanimlanmaktadir. Ön açikliga (102) karsit olan taraf, arka taraf (104) olarak tanimlanmaktadir. Bahsedilen birinci izgara isitma elemani (111) ve ikinci izgara isitma elemani (112), paralel olarak saglanmis, uygun biçimde sekillendirilmis rezistans içeren isitma elemanlaridir. Pisirme hacmini isitmak üzere bir üçüncü isitma elemani (113) da saglanmistir. Bahsedilen üçüncü isitma elemani (113), pisirme hacminin (101) arka tarafina (104) paralel sekilde ve arka tarafin (104) yakinindan pisirme hacmine (101) isi verecek sekilde saglanmaktadir. Pisirme hacminin (101) arka tarafi (104), pisirme hacminin (101) üst tarafina (103) dik olarak uzanacak biçimde konfigüre edilmistir. Mümkün bir yapilanmada. üçüncü isitma elemani (113), bir halka isitma elemanidir. Sekil 2'de, birinci izgara isitma elemani (111), ikinci izgara isitma elemani (112) ve üçüncü isitma elemaninin (113) elektriksel baglantilari sematik olarak verilmistir. Buna göre, birinci izgara isitma elemani (111) ve ikinci izgara isitma elemani (112) elektriksel olarak birbirine paralel baglanmistir. Üçüncü isitma elemani (113) da birinci isitma elemani ve ikinci isitma elemanina paralel olarak baglanmistir. Birinci izgara isitma elemani (111), ikinci izgara isitma elemani (112) ve üçüncü isitma elemaninin (113) olusturdugu elektriksel devre bir isitma devresi (1 10) olarak tanimlanmaktadir. Bir gerilim kaynagi (120) isitma devresinin (110) uçlarina gerilim saglamaktadir. Bir anahtarlama elemani (130) da gerilim kaynaginin (120) isitma devresine (110) olan baglantisini kapatip açmak üzere saglanmistir. 400V AC gerilimlerden biri ile besleyecek sekilde konfigüre edilmistir. Gerilim kaynagi sekilde konfigüre edilmektedir. Mümkün bir yapilanmada, birinci izgara isitma elemani (111) ve ikinci izgara isitma elemani (112), üzerlerindeki voltaj düsümü 80 ile 120V arasinda bir degerde olacak sekilde konfigüre edilmistir. Mümkün bir yapilanmada, üçüncü isitma elemani (113), üzerindeki voltaj düsümünün 110- 150V arasinda bir degerde olacak sekilde konfigüre edilmistir. Yukarida bahsedilen voltaj düsümü degerleri, gerilim kaynaginin (120) sagladigi gerilime göre seçilmektedir. Böylelikle, isitma devresindeki (110) isitma elemanlarinin nominal gerilimlerinin altinda çalismasi saglanmaktadir. Daha düsük enerji tüketimi saglanmakta, isitma elemanlarinin ömrü uzamaktadir. Bulusun sekil 3"deki gibi mümkün bir yapilanmasinda pisirme firininin (100) diger elektriksel bilesenleri (140) isitma devresine (110) paralel olarak baglanmistir. Burada sözü edilen elektriksel bilesenler (140) lambalar, sicak hava motorlari, sogutma motorlari vb. olabilmektedir. Böylelikle ek enerji tasarrufu ve bilesenlerin kullanim ömürlerinin ek olarak arttirilmasi saglanmaktadir. Bulusun koruma kapsami ekte verilen istemlerde belirtilmis olup kesinlikle bu detayli anlatimda örnekleme amaciyla anlatilanlarla sinirli tutulamaz. Zira teknikte uzman bir kisinin, bulusun ana temasindan ayrilmadan yukarida anlatilanlar isiginda benzer yapilanmalar ortaya koyabilecegi açiktir. TR TR TR TR TR TR TRDESCRIPTION A BAKING OVEN AND A METHOD FOR OPERATION OF THE BAKING OVEN TECHNICAL FIELD The invention relates to a baking oven comprising a baking volume in which baking can be carried out, comprising a first grid heating element, a second grid heating element and a third heating element for heating said baking volume. PRIOR ART EP2848866 A1 relates to a baking oven comprising at least a first, second and third heating element for heating a cavity of the oven. Here, the third heating element is connected in series with the first and second heating element. An improvement in the relevant technical field is required. BRIEF DESCRIPTION OF THE INVENTION The present invention relates to a baking oven in order to bring new advantages to the relevant technical field. One object of the invention is to provide a cooking oven in which energy consumption is reduced. Another object of the invention is to provide a cooking oven that provides for the use of heating elements with extended working life. In order to achieve all the purposes mentioned above and which will emerge from the detailed description below, the present invention is a cooking oven comprising a cooking volume in which cooking can be carried out, a first grate heating element, a second grate heating element and a third heating element to heat said cooking volume. Accordingly, the first grid heating element and the second grid heating element positioned on one side of the cooking volume are electrically connected in parallel to each other, and the third heating element positioned on a different side of the cooking volume relative to the side where the first grid heating element and the second grid heating element are positioned is connected in series to the first grid heating element and the second grid heating element. Thus, the heating elements consume less energy and are allowed to be used with a longer life since they operate below their nominal voltage. In addition, these benefits are achieved without the need for additional heating elements or costly additional components. The main advantage of the series connection of the third heating element with the first and second grid heating elements is that the heating elements are operated at a power below the nominal power because the input voltage at the first and second grid heating elements drops and a second part of the input voltage at the third heating element drops. This allows foods to be cooked for an extended period of time without the need to operate the heaters at full power. A preferred embodiment of the invention is characterized in that the first grid heating element and the second grid heating element are top heating elements provided on an upper side of the cooking volume, thus allowing heat to be supplied to the foods to be cooked from above. A preferred embodiment of the invention is characterized in that the cooking volume has a front opening for access to the interior of the cooking volume and the third heating element is positioned on a rear side of the cooking volume opposite to the side of the cooking volume where the front opening is provided. Thus, the third heating element is provided away from the front opening. A preferred embodiment of the invention is characterized in that it includes a voltage source configured to supply a heating circuit comprising the first grid heating element and the second grid heating element and the rear heating element with one of the voltages 220-240V AC or 400V AC. Thus, a voltage value is provided for the heating circuit. A preferred embodiment of the invention is that the first grid heating element and the second grid heating element are configured in such a way that the voltage drop across them is between 80 and 120V. Thus, the first and second grid heating elements are operated below their nominal voltage. Another preferred embodiment of the invention is that the rear heating element is configured in such a way that the voltage drop across it is between 110-150V. Thus, the third heating element is operated below its nominal voltage. Another preferred embodiment of the invention is characterized in that at least one of the electrical components of the oven is provided to be electrically connected in parallel to a heating circuit including the first grid heating element, the second grid heating element and the rear heating element. Thus, additional energy savings and additional increase in the service life of the components are provided. The present invention is also a method for operating a cooking oven including a cooking volume in which cooking can be carried out, a first grid heating element, a second grid heating element and a third heating element to heat said cooking volume. Accordingly, the first grid heating element and the second grid heating element, positioned on one side of the cooking volume, are electrically operated in parallel with each other, and the third heating element, positioned on another side of the cooking volume relative to the side where the first grid heating element and the second grid heating element are positioned, is operated in series with the first grid heating element and the second grid heating element. The main advantage of connecting the third heating element in series with the first and second grid heating elements is that the heating elements are operated at a power below the nominal power because the input voltage at the first and second grid heating elements drops and a second part of the input voltage at the third heating element drops. Thus, it is possible to cook foods to be cooked for an extended period without having to operate the heaters at full power. Another preferred embodiment of the invention is characterized in that the voltage drop across the first grid heating element and the second grid heating element is configured to be between 80V and 120V, and the voltage drop across the third heating element is configured to be between 110V and 150V. Thus, the heating elements are enabled to operate below the nominal voltage. BRIEF DESCRIPTION OF THE FIGURES A representative view of the baking oven is given in Figure 1. A schematic representation of the baking oven is given in Figure 2. A schematic representation of a possible configuration of the baking oven is given in Figure 3. DETAILED DESCRIPTION OF THE FIGURES In this detailed description, the subject of the invention is explained only with examples that will not create any limiting effect for a better understanding of the subject. In Figure 1, a cooking oven (100) is shown representatively. The cooking oven (100) includes a cooking volume (101) for placing the food to be cooked. The cooking oven (100) includes a first grill heating element (111) and a second grill heating element (112) for heating the said cooking volume (101). In more detail, the cooking volume (101) includes sides for confining a volume for cooking and a front opening (102) for providing access to the interior. The ceiling of the cooking volume 101 is defined as the upper side 103 and the bottom of the cooking volume 101 is defined as the lower side 105. The side opposite the front opening 102 is defined as the rear side 104. Said first grid heating element 111 and said second grid heating element 112 are suitably shaped resistance heating elements provided in parallel. A third heating element 113 is also provided to heat the cooking volume. Said third heating element 113 is provided parallel to the rear side 104 of the cooking volume 101 and to deliver heat to the cooking volume 101 from near the rear side 104. The rear side 104 of the cooking volume 101 is configured to extend perpendicularly to the upper side 103 of the cooking volume 101. In one possible embodiment, the third heating element 113 is a ring heating element. In Figure 2, the electrical connections of the first grid heating element 111, the second grid heating element 112 and the third heating element 113 are given schematically. Accordingly, the first grid heating element 111 and the second grid heating element 112 are electrically connected in parallel to each other. The third heating element 113 is also connected in parallel to the first heating element and the second heating element. The electrical circuit formed by the first grid heating element (111), the second grid heating element (112) and the third heating element (113) is defined as a heating circuit (1 10). A voltage source (120) provides voltage to the terminals of the heating circuit (110). A switching element (130) is also provided to close and open the connection of the voltage source (120) to the heating circuit (110). It is configured to supply one of the 400V AC voltages. The voltage source is configured as follows. In a possible configuration, the first grid heating element (111) and the second grid heating element (112) are configured such that the voltage drop across them is between 80 and 120V. In a possible configuration, the third heating element (113) is configured so that the voltage drop across it is between 110-150V. The above mentioned voltage drop values are selected according to the voltage provided by the voltage source (120). In this way, the heating elements in the heating circuit (110) are operated below their nominal voltages. Lower energy consumption is achieved and the life of the heating elements is extended. In a possible embodiment of the invention as in figure 3, other electrical components (140) of the cooking oven (100) are connected in parallel to the heating circuit (110). The electrical components (140) mentioned here can be lamps, hot air motors, cooling motors etc. Thus, additional energy savings and additional increase in the service life of the components are provided. The scope of protection of the invention is specified in the claims given in the appendix and cannot be limited to what is explained in this detailed description for the purpose of example. Because it is clear that a person skilled in the art can come up with similar embodiments in the light of what is explained above without deviating from the main theme of the invention. TR TR TR TR TR TR TR

Claims (7)

1.ISTEM LER .1.REQUESTS. 2.Pisirme isleminin gerçeklestirilebildigi bir pisirme hacmini (101) içeren, bahsedilen pisirme hacmini (101) isitmak üzere bir birinci izgara isitma elemanini (111), bir ikinci izgara isitma elemanini (112) ve bir üçüncü isitma elemanini (113) içeren bir pisirme firini (100) olup özelligi; birinci izgara isitma elemani (111) ve pisirme hacminin (101) bir tarafinda konumlanan ikinci izgara isitma elemaninin (112) birbirlerine elektriksel olarak paralel baglanmis olmasi ve pisirme hacminin (101), birinci izgara isitma elemaninin (111) ve ikinci izgara isitma elemaninin (112) konumlandigi tarafa göre baska bir tarafinda konumlanan üçüncü isitma elemaninin (113), birinci izgara isitma elemanina (111) ve ikinci izgara isitma elemanina (112) seri sekilde baglanmis olmasidir. . istem 1`e göre bir pisirme firini (100) olup özelligi; birinci izgara isitma elemaninin (111) ve ikinci izgara isitma elemaninin (112), pisirme hacminin (101) bir üst tarafinda (103) saglanan üst isitma elemani olmasidir ve böylece, pisirilecek gidalara üstten isinin saglanabilmesidir. .2. A cooking oven (100) comprising a cooking volume (101) in which the cooking process can be carried out, comprising a first grill heating element (111), a second grill heating element (112) and a third heating element (113) to heat the said cooking volume (101), and its feature is as follows; the first grid heating element (111) and the second grid heating element (112) positioned on one side of the cooking volume (101) are electrically connected in parallel to each other and the third heating element (113) positioned on a different side of the cooking volume (101) compared to the side where the first grid heating element (111) and the second grid heating element (112) are positioned is connected in series to the first grid heating element (111) and the second grid heating element (112). It is a cooking oven (100) according to claim 1 and its feature is; The first grill heating element (111) and the second grill heating element (112) are the upper heating elements provided on the upper side (103) of the cooking volume (101) and thus, heat can be provided to the foods to be cooked from above. 3.Istem 1 ya da 2'ye göre bir pisirme firini (100) olup özelligi; pisirme hacminin (101), pisirme hacminin (101) içine erisim için bir ön açikliga (102) sahip olmasi ve üçüncü isitma elemaninin (113), ön açikligin (102) saglandigi pisirme hacmi (101) tarafina karsit olan pisirme hacminin (101) bir arka tarafinda (104) konumlanmis olmasidir. .A cooking oven (100) according to claim 1 or 2, characterized in that the cooking volume (101) has a front opening (102) for access to the interior of the cooking volume (101) and the third heating element (113) is positioned on a rear side (104) of the cooking volume (101) opposite to the side of the cooking volume (101) to which the front opening (102) is provided. 4.Önceki istemlerden herhangi birine göre bir pisirme firini (100) olup özelligi; birinci izgara isitma elemani (111), ikinci izgara isitma elemani (112) ve üçüncü isitma gerilimlerinden biri ile besleyecek sekilde konfigüre edilmis bir gerilim kaynagini (120) içermesidir. .4. A cooking oven (100) according to any of the previous claims, characterized in that it comprises a voltage source (120) configured to supply the first grid heating element (111), the second grid heating element (112) and one of the third heating voltages. 5.Önceki istemlerden herhangi birine göre bir pisirme firini (100) olup özelligi; birinci izgara isitma elemani (111) ve ikinci izgara isitma elemaninin (112), üzerlerindeki voltaj düsümünün 80 ile 120V arasinda bir degerde olacak sekilde konfigüre edilmis olmalaridir. .A cooking oven (100) according to any of the previous claims, characterized in that the first grid heating element (111) and the second grid heating element (112) are configured in such a way that the voltage drop across them is between 80 and 120V. 6.Önceki istemlerden herhangi birine göre bir pisirme firini (100) olup özelligi; üçüncü isitma elemaninin (113), üzerindeki voltaj düsümünün 110-150V arasinda bir degerde olacak sekilde konfigüre edilmis olmasidir.6. A cooking oven (100) according to any of the previous claims, characterized in that the third heating element (113) is configured in such a way that the voltage drop on it is between 110-150V. 7. Önceki istemlerden herhangi birine göre bir pisirme firini (100) olup özelligi; firinin (100) içerdigi elektriksel bilesenlerden (140) en az birinin birinci izgara isitma elemani (111), ikinci izgara isitma elemani (112) ve üçüncü isitma elemanini (113) içeren bir isitma devresine (110) elektriksel olarak paralel bagli olacak sekilde saglanmis olmasidir. Pisirme isleminin gerçeklestirilebildigi bir pisirme hacmini (101) içeren, bahsedilen pisirme hacmini (101) isitmak üzere bir birinci izgara isitma elemanini (111), bir ikinci izgara isitma elemanini (112) ve bir üçüncü isitma elemanini (113) içeren bir pisirme firininin (100) çalistirilmasi için bir yöntem olup özelligi; pisirme hacminin (101) bir tarafinda konumlanan birinci izgara isitma elemani (111) ve ikinci izgara isitma elemaninin (112), paralel bir sekilde birbiriyle elektriksel olarak çalistirilmasi ve birinci izgara isitma elemani (111) ve ikinci izgara isitma elemaninin (112) konumlandigi tarafa göre pisirme hacminin (101) baska bir tarafinda konumlanan üçüncü isitma elemaninin (113), birinci izgara isitma elemanina (111) ve ikinci izgara isitma elemanina (112) seri bir sekilde çalistirilmasidir. istem 8'e göre bir yöntem olup özelligi; birinci izgara isitma elemani (111) ve ikinci izgara isitma elemani (112) üzerindeki gerilim düsüsünün, 80V ilâ 120V arasindaki bir degerde olacak sekilde konfigüre edilmis olmasi ve üçüncü isitma elemani (113) üzerindeki gerilim düsüsünün, 110V ilâ 150V arasindaki bir degerde olacak sekilde konfigüre edilmis olmasidir. TR TR TR TR TR TR TR7. A cooking oven (100) according to any of the previous claims, characterized in that at least one of the electrical components (140) comprising the oven (100) is provided to be electrically connected in parallel to a heating circuit (110) comprising the first grid heating element (111), the second grid heating element (112) and the third heating element (113). It is a method for operating a cooking oven (100) comprising a cooking volume (101) in which the cooking process can be carried out, comprising a first grid heating element (111), a second grid heating element (112) and a third heating element (113) to heat said cooking volume (101), and characterized in that; It is a method according to claim 8, wherein the first grid heating element (111) and the second grid heating element (112) positioned on one side of the cooking volume (101) are electrically operated with each other in parallel, and the third heating element (113) positioned on another side of the cooking volume (101) relative to the side where the first grid heating element (111) and the second grid heating element (112) are positioned is operated in series with the first grid heating element (111) and the second grid heating element (112). the voltage drop across the first grid heating element (111) and the second grid heating element (112) is configured to be between 80V and 120V, and the voltage drop across the third heating element (113) is configured to be between 110V and 150V.
TR2019/08195A 2019-05-29 2019-05-29 A METHOD TO OPERATE A COOKING OVEN AND OVEN TR201908195A2 (en)

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