1. Field of Invention
The present invention relates to motoring the quality of oil and, more particularly, a system and method for measuring polar substances in oil.
2. Related Prior Art
Many people enjoy fried (or “deep-fried”) or sautéed (or “stir-fried”) food. These people assimilate a lot of fat. Assimilation of excessive fat, trans fatty acid or saturated fat acid causes cardiovascular diseases, cancers and many other fat-related diseases. Like any other types of food, fat gets deteriorated because of oxidization after it is exposed to air, heat, light and metals for too long. For example, fat reacts with water and other substances of food at high temperature and produces unexpected substances so that it is deteriorated and smells bad. As a common practice in the food industry, used fat is not replaced with new fat every day. Used fat is seldom replaced with new fat in restaurants and chain stores. Heated fat exhibits various dangers such as degradation of vitamins A, D, E and K, oxidization of the fat, production and accumulation of hazardous substances, production of irritants in the stomach, suppression of digestive enzyme, production of inductors for free radicals, and increased risks of cardiovascular diseases and cancers.
Currently, reagent paper is used to test the quality of fat. The total amount of polar substances (acid value, fat, trans fatty acid and saturated fatty acid) in the fat is determined by the color of the reagent paper that changes after the test. The acid value must not exceed a certain limit that depends from nation to nation. The color of the test paper shows whether the total amount of the polar substances exceed the certain limit. However, the color of the test paper does not show the total amount of the polar substances.
The present invention is therefore intended to obviate or at least alleviate the problems encountered in prior art.
It is the primary objective of the present invention to provide a system and method for measuring polar substances in oil.
To achieve the foregoing objective, the system includes a measurement module, a transfer module, a display module and a store module. The measurement module includes a measurement unit and a transmitter. The measurement unit measures the polar substances and produces a data-related signal. The transmitter transmits the data-related signal. The transfer module includes a receiver and a transmitter. The receiver receives the data-related signal. The transmitter of the transfer module receives the data-related signal from the receiver and transmits the data-related signal. The display module receives the data-related signal from the transmitter of the transfer module and shows the data-related signal. The store module receives the data-related signal from the transmitter of the transfer module and stores the data-related signal.
Other objectives, advantages and features of the present invention will be apparent from the following description referring to the attached drawings.
The present invention will be described via detailed illustration of two embodiments referring to the drawings wherein:
Referring to
The transfer module 2 includes a receiver 21 and a wireless transmitter 22. The receiver 21 receives the data-related signal from the measurement module 1. The wireless transmitter 22 receives the data-related signal from the receiver 21 and transmits it to the display module 3 and the store module 4 in a wireless manner.
The display module 3 includes a judge unit 31 and a display 32. The judge unit 31 receives the data-related signal from the wireless transmitter 22, judges the data-related signal, and produces a judge-related signal as a result of the judge. The display 32 receives the data-related and judge-related signals from the judge unit 31 and shows the data-related signal according to the judge-related signal.
The store module 4 includes a wireless receiver 41 and a database 42. The wireless receiver 41 receives the data-related signal from the wireless transmitter 22 in a wireless manner. The database 42 receives the data-related signal from the wireless receiver 41 and stores it.
Referring to
At S2, there is provided a transfer module to receive the data-related signal from the transmitter and transmit the data-related signal to a display module and a store module.
AT S3, the display module shows the data-related signal while the store module stores the data-related signal. The display module includes a judge unit and a display. The judge unit receives the data-related signal from the transfer module, judges the data-related signal, and produces a judge-related signal as a result. The display receives the data-related and judge-related signal from the judge unit and shows the data-related signal according to the judge-related signal.
The store module includes a wireless receiver and a database. The wireless receiver receives the data-related signal from the transfer module in a wireless manner. The database receives the data-related signal from the wireless receiver and stores it.
The present invention has been described via the detailed illustration of the embodiments. Those skilled in the art can derive variations from the embodiments without departing from the scope of the present invention. Therefore, the embodiments shall not limit the scope of the present invention defined in the claims.
Number | Date | Country | Kind |
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099132715 | Sep 2010 | TW | national |