Abstract:
A food and vegetable processing device includes a body with a motor so as to drive a processing unit which is attached by a lower cap with an outlet. A top cap is mounted to the lower cap and includes a feeding passage for feeding food and vegetable to the processing unit. The processing unit includes a blade disk, which has a convex top surface thereon cutting teeth are located. The convex top surface drives the food and vegetable to be processed move outward so as to obtain a satisfied result.
Abstract:
A food, vegetables and fruit processor comprises a base having therein an operating motor, a lower cover, a cutting seat and an upper cover. Wherein the upper cover is provided with an inclined feed-in pipe extending downwardly therefrom, one end of the feed-in pipe forms on the surface of the upper cover a material inlet, the other end of the feed-in pipe forms a material outlet. Food, vegetables and fruit can be cast into the feed-in pipe, and are pressed tight with a material pushing plunger to render the food, vegetables and fruit to be perfectly and smoothly cut or ground in an energy saving mode. The present invention is applicable to using as a food, vegetables and fruit processor having the functions of squeezing juice and grinding food.
Abstract:
A computer system and a method for resetting the same are provided. The computer system includes a basic input output system (BIOS) chip and a keyboard controller. In the method, the BIOS chip monitors the keyboard controller to determine whether a time that the keyboard controller remains in a hang up state reaches an idle time limit. Besides, the keyboard controller monitors the BIOS chip to determine whether a time that the BIOS chip remains in the hang up state reaches the idle time limit When it is determined that the time of one of the BIOS chip and the keyboard controller remaining in the hang up state reaches the idle time limit, the computer system is reset in accordance with a hardware reset signal trigger by the other one of the BIOS chip and the keyboard controller.
Abstract:
An input detecting method used for a virtual projecting input system includes: emitting an image light beam through a reflecting mirror, and the image light beam forming a projecting point on a projecting plane; enabling the reflecting mirror to swing, so as to enable the image light beam to swing, and the projecting point scanning back and forth on the projecting plane, and generating an input image; detecting a swing frequency of the reflecting mirror, and generating a frequency signal; judging whether an input action occurs, and if yes, generating a detecting signal; and analyzing a phase difference between the frequency signal and the detecting signal, and calculating an input position of the input action according to the phase difference.
Abstract:
An advertising CAPTCHA system in accordance with the present invention is used in a designated display with at least one user and comprises a CAPTCHA server connected to the designated display, stores multiple advertising CAPTCHAs, comprises a CAPTCHA module and transmits the advertising CAPTCHAs to the designated display, wherein each advertising CAPTCHA comprises a guiding zone and an advertisement comprising a responding zone corresponding to the guiding zone, the CAPTCHA module has a clicking threshold, determines whether or not the user clicks the responding zone and determines if the user achieves the clicking threshold, the user passes the advertising CAPTCHA if the user achieves the clicking threshold, and the CAPTCHA server transmits another advertising CAPTCHA to the designated display if the user does not achieve the clicking threshold.
Abstract:
A tilt control method for a near-field optical disc drive is provided. A gap between a lens and a disc is estimated. A tilt compensation for the lens is estimated according to a tilt signal when the lens is within a far-field region. A coarse tilt control is performed on the lens according to the tilt compensation when the lens is within the far-field region.
Abstract:
An electrical connector (100) electrically connects a chip of a first width. The electrical connector includes an insulative housing (2), a number of contacts (3), a connecting member (4), and an actuator (5) mounted on the insulative housing. The connecting member has a connecting region electrically connectable with the chip. The connecting region has a second width not less than the first width. The actuator is formed with a pair of first side walls (51) and a pair of restricting portions (514) respectively protruding inwardly from the pair of first side walls. The pair of restricting portions are spaced a distance substantially equal to the second width to guidingly restrict the chip in the connecting region.
Abstract:
A burn-in includes a base, a number of contacts received in the base, and a cover pivotally mounted to the base and rotatably moving between an open position and a closed position. The base defines a receiving space and a plurality of recesses adjacent to and communicating with the receiving space. Two hard stoppers are mounted to the recesses of the base and support upwardly the cover.