Claims
- 1. A microwave oven which performs a cooking operation in one of cooking modes having a first cooking time period and a second cooking time period, comprising:
a cooking cavity; and a sensor which senses a state of air in the cooking cavity, wherein:
the first cooking time period is determined in accordance with an output value of the sensor, the second cooking time period is determined in accordance with the first cooking time period, wherein the first and second cooking time periods are expressed by a functional relation, and the cooking modes include a standard mode in which the second cooking time period is a standard second cooking time period, a high mode in which the second cooking time period is lengthened from the standard second cooking time period, and a low mode in which the second cooking time period is shortened from the standard second cooking time period, wherein:
the second cooking time period of the high mode is varied to increase in proportion to the first cooking time period; and the second cooking time period of the low mode is varied to increase in inverse proportion to the first cooking time period.
- 2. The microwave oven according to claim 1, wherein:
the standard mode satisfies the relationship T2=kT1+α, the high mode satisfies the relationship: T2+=k+T1 +α, and the low mode satisfies the relationship: T2−=k−T1+α, where T1 is the first cooking time period, T2 is the standard second cooking time period, T2+ is a lengthened second cooking time period, T2− is a shortened second cooking time period, k, k+ and k− are proportional factors expressed by an inequality, k−<k<k+, and α is a constant.
- 3. The microwave oven according to claim 1, wherein:
the standard mode satisfies the relationship T2=−kT1+α, the high mode satisfies the relationship T2−=−k−T1+α, and the low mode satisfies the relationship T2+=−k+T1+α, where T1 is the first cooking time period, T2 is the standard second cooking time period, T2+ is a lengthened second cooking time period, T2− is a shortened second cooking time period, k, k+ and k− are proportional factors expressed by an inequality, k−<k<k+, and α is a constant.
- 4. The microwave oven according to claim 1, wherein the sensor is a humidity sensor.
- 5. The microwave oven according to claim 1, wherein the sensor is a gas sensor.
- 6. The microwave oven according to claim 1, further comprising a mode-selecting unit which allows for selecting a desired one of the cooking modes.
- 7. The microwave oven according to claim 1, wherein the state of the air in the cooking cavity corresponds to a quantity of food contained in the cooking cavity.
- 8. The microwave oven according to claim 1, wherein the cooking modes are represented with corresponding characteristic curves having different slopes.
- 9. The microwave oven according to claim 1, further comprising:
a magnetron which generate electromagnetic waves to cook food; a cooling fan which cools an interior of the microwave oven; a cooking tray to receive the food thereon; a display unit which displays cooking information; a control unit which controls cooking operations of the microwave oven; and a data storage unit which communicates with the display unit and stores data of standard cooking time periods corresponding to types and quantities of foods to be cooked.
- 10. The microwave oven according to claim 9, wherein the control unit comprises:
an input unit which transmits input signals to operate the microwave oven to the control unit, and includes a mode-selecting unit which allows for selecting a desired one of the cooking modes; a magnetron drive unit which drives the magnetron; a fan drive unit which drives the cooling fan; a motor drive unit which drives the cooking tray; and a display drive unit which drives the display unit.
- 11. A cooking apparatus which performs a cooking operation having first and second cooking time periods, comprising:
a heating unit to cook food contained in the cooking apparatus; and a control unit which selectively lengthens/shortens the second cooking time period in accordance with a variation in the first cooking time period in response to inputting of a mode-selection signal, wherein:
the first cooking time period is determined according to one of a quantity of food and a quantity of moisture laden in the food contained in the cooking apparatus, and the second cooking time period is determined in accordance with the first cooking time period.
- 12. The cooking apparatus according to claim 11, further comprising a sensor which senses a state of air in the cooking apparatus to determine the quantity of the food.
- 13. The cooking apparatus according to claim 11, wherein the cooking operation includes:
a standard mode in which the second cooking time period is unchanged and set as a standard second cooking time period; a high mode in which the second cooking time period is lengthened from the standard second cooking time period; and a low mode in which the second cooking time period is shortened from the standard second cooking time period.
- 14. The cooking apparatus according to claim 13, further comprising a mode-selecting unit which allows for selecting a desired one of the cooking modes
- 15. The cooking apparatus according to claim 11, wherein the cooking operation includes:
a standard mode which satisfies the relationship T2=kT1+α, a high mode which satisfies the relationship: T2+=k+T1+α, and a low mode which satisfies the relationship: T2−=k−T1+α, where T1 is the first cooking time period, T2 is the second cooking time period, T2+ is a lengthened second cooking time period, T2− is a shortened second cooking time period, k, k+ and k− are proportional factors expressed by an inequality, k−<k<k+, and α is a constant.
- 16. The cooking apparatus according to claim 11, wherein the cooking operation includes:
a standard mode which satisfies the relationship T2=−kT1+α, a high mode which satisfies the relationship T2−=−k−T1+α, and a low mode which satisfies the relationship T2+=−k+T1+α, where T1 is the first cooking time period, T2 is the second cooking time period, T2+ is a lengthened second cooking time period, T2− is a shortened second cooking time period, k, k+ and k− are proportional factors expressed by an inequality, k−<k<k+, and α is a constant.
- 17. A method of controlling a cooking operation of a cooking apparatus, the method comprising:
starting the cooking operation to cook food in response to inputting of a start signal; determining a first cooking time period of the cooking operation according to one of a quantity of the food and a quantity of moisture laden in the food contained in the cooking apparatus; determining a second cooking time period of the cooking operation in accordance with the first cooking time period; lengthening/shortening the second cooking time period in accordance with a variation in the first cooking time period in response to inputting of a time adjusting signal to adjust the second cooking time period; and stopping the cooking operation to cook the food in response to elapse of the first and second cooking time periods.
- 18. The method according to claim 17, further comprising determining whether the time adjusting signal is input during the cooking operation for the first cooking time period.
- 19. The method according to claim 17, further comprising determining whether the time adjusting signal is input prior to the starting of the cooking operation to cook the food.
- 20. The method according to claim 17, wherein the lengthening/shortening of the second cooking time period comprises:
determining whether the time adjusting signal is one of a high mode signal and a low mode signal to adjust the second cooking time period; and lengthening the second cooking time period in accordance with the variation in the first cooking time period in response the time adjusting signal being the high mode signal and shortening the second cooking time period in accordance with the variation in the first cooking time period in response the time adjusting signal being the low mode signal.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2002-20269 |
Apr 2002 |
KR |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of Korean Patent Application No. 2002-20269 filed on Apr. 13, 2002, in the Korean Industrial Property Office, the disclosure of which is incorporated herein by reference.