Abstract:
A fixture includes a holding apparatus, a receiving block, and an attachment rod. The holding apparatus defines a through hole. The receiving block is mounted on the holding apparatus. A receiving opening is defined in the receiving block. The receiving opening is aligned with the through hole. An attachment rod includes a body which includes ferromagnetic materials. The body is configured to be received in the through hole.
Abstract:
A computer enclosure, includes a case and a power supply chassis secured in the case. The case includes a bottom wall and a rear wall. The bottom wall defines a securing slot. A first positioning member extends from the bottom wall. A securing tab extends from a bottom of the power supply chassis. The securing tab is configured to engage in the securing slot and prevent the power supply chassis moving in a first direction perpendicular to the case rear wall. The power supply chassis defines a first positioning hole configured for the first positioning member engaging therein to prevent the power supply chassis moving in a second direction perpendicular to the case bottom wall.
Abstract:
An electronic device includes a bracket, a rear plane, a mounting member, and a middle plane. The bracket is configured for receiving at least one hard disk drive therein, and includes a bottom plate. The rear plane is secured to the bracket. The mounting member secures the middle plane to the bottom plate, so that the middle plane is perpendicular to the bottom plate and parallel to the rear plane.
Abstract:
The present invention relates to a security mechanism of a base, which is substantially a base. One side surface of the base is provided with a plurality of connecting ports for peripheral devices. The base is provided thereon with a trough and a retaining strip. The trough is provided therein with a connecting port. The retaining strip is disposed above one side of the trough so as to form a guard, thereby increasing the safety of the base and the performance of the computer host.
Abstract:
A mounting structure is used for mounting a first data storage device or a second data storage device. A first guiding tab is formed on a side surface of the second data storage device. A second guiding tab is formed on a side surface of the second data storage device. A height of the first guiding tab from a bottom surface of the first data storage device is different than a height of the second guiding tab from a bottom surface of the second data storage device. The mounting structure includes a bracket and a sliding member. The bracket includes a side wall. A flange is formed on an edge of the side wall. A first guiding slot is defined in the side wall and extends to the flange to define a first guiding entry. A second guiding slot is defined in the side wall and extends to the flange to define a second guiding entry. The sliding member is slidably attached to the flange.
Abstract:
A method for detecting whether a paper is remained and a multi-function printer (MFP) thereof are provided. The method includes executing a detection procedure when the MFP accomplishes image capturing and outputting of the paper; recording a time of starting executing the detection procedure; calculating an executed time of the detection procedure; and determining whether to activate an alarm according to the executed time of the detection procedure and a similarity comparison result obtained by executing a scan procedure, so as to remind a user whether the paper is remained in the MFP.
Abstract:
A thin client computer comprises a machine body and a base. The machine body has a motherboard mounted therein. The motherboard has a base connector on one side for exposing to the outside of the machine body. The base has an opposite connector for coupling with the base connector of the motherboard and several peripheral connection ports for coupling with several peripherals. The machine body can be coupled with the opposite connector of the base via the base connector so that the peripherals can be coupled with the peripheral connection ports of the base for further providing the machine body with more available functions.
Abstract:
A heat dissipating device includes a receiving bracket adapted to be mounted in an electronic device enclosure and a fan module accommodated in the receiving bracket. The fan module includes a fan and a mounting bracket connected to the fan. The fan is secured to the mounting bracket via a plurality of fasteners. Each fastener has a securing head. A plurality of vibration absorbers is disposed between the fan and the fastener. Each vibration absorber includes two isolating walls. One of the isolating walls is sandwiched by the fan and the mounting bracket, and the other isolating wall is sandwiched by the mounting bracket and the fastener securing head, so as to isolate the mounting bracket, the fan, and the fastener.
Abstract:
A method for detecting whether a paper is remained and a multi-function printer (MFP) thereof are provided. The method includes executing a detection procedure when the MFP accomplishes image capturing and outputting of the paper; recording a time of starting executing the detection procedure; calculating an executed time of the detection procedure; and determining whether to activate an alarm according to the executed time of the detection procedure and whether a top cover (TC) of the MFP is opened, so as to remind a user whether the paper is remained in the MFP.
Abstract:
A method for detecting whether a paper is remained and a multi-function printer (MFP) thereof are provided. The method includes executing a detection procedure when the MFP accomplishes image capturing and outputting of the paper; recording a time of starting executing the detection procedure; calculating an executed time of the detection procedure; and determining whether to activate an alarm according to the executed time of the detection procedure and a similarity comparison result obtained by executing a scan procedure, so as to remind a user whether the paper is remained in the MFP.