Abstract:
A picking system comprises a radio frequency identification (RFID) tag, a case, a two-wire conductive strip, at least one identifying unit and a processing unit. The two-wire conductive strip is electrically connected between the identifying unit and the processing unit. The identifying unit reads tag information within the RFID tag for actively and instantly controlling the authorization of an operating staff assigned for particular items thereby improving the accuracy of picking items.
Abstract:
A control system for integrating multiple sets of sensing plane data, including: a plurality of driving units, used for driving a plurality of sensor arrays to receive multiple sets of sensing plane data; and at least one control unit, used for integrating the multiple sets of sensing plane data into a set of image data and outputting the set of image data to a central processing unit, wherein the central processing unit is used for executing an application software program to convert the set of image data into multiple sets of array data.
Abstract:
A light guide apparatus for a backlight module is disclosed, which includes a light guide plate, a circuit having a plurality of circuit contacts integrated with the light guide plate, and a light source disposed on the light guide plate and electrically contacted to the plurality of circuit contacts.
Abstract:
A method for adjusting the trench depth of a substrate has the steps as follows. Forming a patterned covering layer on the substrate, wherein the patterned covering layer defines a wider spacing and a narrower spacing. Forming a wider buffering layer arranged in the wider spacing and a narrower buffering layer arranged in the narrower spacing. The thickness of the narrower buffering layer is thinner than the wider buffering layer. Implementing dry etching process to make the substrate corresponding to the wider and the narrower buffering layers form a plurality of trenches. When etching the wider and the narrower buffering layers, the narrower buffering layer is removed firstly, so that the substrate corresponding to the narrower buffering layer will be etched early than the substrate corresponding to the wider buffering layer.
Abstract:
This invention relates to macrocyclic compounds of formula (I) shown in the specification. These compounds can be used to treat hepatitis C virus infection.
Abstract:
A dynamic control method for a touch panel, including the steps of: providing a dynamic resolution control circuit for configuring a touch panel to possess a first resolution and a second resolution; and providing an induced signal gain control circuit for configuring the touch panel to have a first gain corresponding to the first resolution, and a second gain corresponding to the second resolution, wherein, the resolution of the touch panel will change from the first resolution to the second resolution when an object is within a distance from the panel. In addition, the present invention further presents a touch panel system and a dynamic control method for adjusting the sensitivity of a touch panel.
Abstract:
A portable electronic device comprises a housing, a circuit board, a heat-conduction structure and a heat-dissipation structure. The circuit board is disposed in the housing. The heat-conduction structure is disposed in the housing and contacts the circuit board. The heat-dissipation structure is disposed outside the housing and connected to the heat-conduction structure, wherein heat is transmitted from the circuit board, passing the heat-conduction structure and the heat-dissipation structure to be dissipated out of the housing.
Abstract:
An electrical connector includes an insulative housing having a mating cavity, a tongue portion extending into the mating cavity and defining thereon first and second faces opposite to each other, and a plurality of contacts retained to the housing. The plurality of contacts defines a first and second set of contacts and expanded contacts. The first set of contacts each defines a first blade contacting section exposed onto the first face, the second set of contacts each defines a deflectable cantilevered beam exposed onto the second face, and the expanded contacts include at least one power contact for power transmission. The at least one power contact defines a second contacting section arranged between two adjacent cantilevered beams and projecting out of the second face.
Abstract:
A method for driving a display panel includes in a first time slot of a polarity inversion period turning on a plurality of first pixels in a first row via a first scan line, and providing a common voltage with a first potential; in a second time slot of the polarity inversion period turning on a plurality of second pixels in the first row via a second scan line, and providing the common voltage with a second potential; in a third time slot of the polarity inversion period turning on a plurality of first pixels in a second row via a third scan line, and providing the common voltage with the second potential; and in a fourth time slot of the polarity inversion period turning on a plurality of second pixels in the second row via a fourth scan line, and providing the common voltage with the first potential.
Abstract:
The invention provides a secure removable media. In one embodiment, the secure removable media comprises a non-volatile memory and a controller. The non-volatile memory corresponds to a media identifier, and comprises a public area, a hidden area, and a reserved hidden area for data storage, wherein a security program is stored in the public area, and a first firmware for retrieving the media identifier and a second firmware for accessing the hidden area are stored in the reserved hidden area. The controller receives secure data from an external device. The security program uses the first firmware to retrieve the media identifier from the secure removable media, generates an encryption key according to the media identifier given by the first firmware, encrypt the secure data according to the encryption key to obtain an encrypted secure data, and uses the second firmware to write the encrypted secure data to the hidden area. When the secure data is to be retrieved from the secure removable media, the security program reads the encrypted secure data from the hidden area, retrieves the media identifier from the non-volatile memory, generates a decryption key according to the media identifier given by the first firmware, and decrypts the encrypted secure data according to the decryption key to obtain the secure data.