Abstract:
An anti-sulfurization memory storage device is provided, which includes a connection interface unit, a plurality of volatile memory units and a printed circuit board. The connection interface unit is configured to communicate with a host. The printed circuited board may include a plurality of anti-sulfurization passive components and a protective film. The plurality of anti-sulfurization passive components are configured to control and transmit a current to a plurality of volatile memory units. The protective file is configured to cover the printed circuit board. Wherein, the plurality of anti-sulfurization passive components may include an anti-sulfurization resistor and an anti-sulfurization resistor network.
Abstract:
A logic block addressing (LBA) configuration method and a non-volatile memory device having the same are provided. The non-volatile memory device determines one of logic zones configured in an LBA table according to the number of booting times. The selected logic zone corresponds to a data zone configured in a physical volume. The non-volatile memory device accesses data stored in the data zone in the selected logic zone. Accordingly, in each boot, the instant disclosure provides the LBA configuration method and the non-volatile memory device having the same, which can show data stored in the different data zones of the physical volume to simplify user operation and avoid the user maliciously destroying or erroneously deleting other data stored in the unused data zones of the physical volume, thereby enhancing the efficiency of the non-volatile memory device executing the multi-booting.
Abstract:
A logic block addressing (LBA) configuration method and a non-volatile memory device having the same are provided. The non-volatile memory device determines one of logic zones configured in an LBA table according to the number of booting times. The selected logic zone corresponds to a data zone configured in a physical volume. The non-volatile memory device accesses data stored in the data zone in the selected logic zone. Accordingly, in each boot, the instant disclosure provides the LBA configuration method and the non-volatile memory device having the same, which can show data stored in the different data zones of the physical volume to simplify user operation and avoid the user maliciously destroying or erroneously deleting other data stored in the unused data zones of the physical volume, thereby enhancing the efficiency of the non-volatile memory device executing the multi-booting.
Abstract:
A composite storage device comprises a storage device and a composite memory, which comprises a substrate, a first transmission interface, a storage unit, a power conversion unit, a card insertion interface and a second transmission interface. The first transmission interface is coupled with a first communication interface of a main circuit board, and the second transmission interface is coupled with a second communication interface of the main circuit board via a transmission channel. The power conversion unit is coupled with the first transmission interface and the card insertion interface. The card insertion interface is coupled with the second transmission interface. When the storage device is electrically connected with the card insertion interface, the power is provided to the storage device, and information is exchanged between the storage device and the main circuit board through the card insertion interface, the second transmission interface, the transmission channel and the second communication interface.
Abstract:
A tactile positioning device includes a film attached to a touch surface of a portable electronic device. The film includes at least a first tactile unit used as a positioning reference point of a key on the touch surface, and at least a second tactile unit being a linear tactile unit for defining an operating route or an operating range. The tactile feedbacks provided by the first tactile unit and the second tactile unit enable a user to sense a position of the key which is positioned by the first tactile unit and the operating route or the operating range defined by the second tactile unit, so as to operate the portable electronic device without having to look at the touch surface.
Abstract:
A tactile positioning device includes a film attached to a touch surface of a portable electronic device. The film includes at least a first tactile unit used as a positioning reference point of a key on the touch surface, and at least a second tactile unit being a linear tactile unit for defining an operating route or an operating range. The tactile feedbacks provided by the first tactile unit and the second tactile unit enable a user to sense a position of the key which is positioned by the first tactile unit and the operating route or the operating range defined by the second tactile unit, so as to operate the portable electronic device without having to look at the touch surface.