Abstract:
An electronic device (10) includes a circuit board (40) and a shield (20). The circuit board includes a pair of mounting holes (44), a first surface (41), a second surface (43) opposite to the first surface, and at least one electronic component (42). The shield includes a top wall (26), a pair of first sidewalls (22), a pair of second sidewalls (24) opposite to the first sidewalls, and a pair of mounting members (23). The top wall, the first sidewalls, and the second sidewalls cooperatively bound a receiving portion (28) for receiving the electronic component. The mounting members extend respectively from the first sidewalls toward the circuit board corresponding to the mounting holes of the circuit board. At least one gap (220) is formed between each of the mounting members and each of the first sidewalls.
Abstract:
An electronic device includes a case (100) and a supporting member (40). The case includes a cover (10), a base (20), and a receiving member (30) received between the cover and the base. The cover includes a first bottom wall (12), and the base includes a second bottom wall (22). A receiving recess (144) is formed in the first and second bottom walls. A retaining portion (32) is formed in the receiving member, and received in the receiving recess. The retaining portion includes at least one slot (328). The supporting member is mounted to the retaining portion, and includes at least one locating portion (426) slideable in the slot. Thereby, when the electronic device is in a horizontal position, the supporting member is fully received in the receiving recess of the case; when the electronic device is in an upright position, the supporting member is perpendicular to the receiving recess of the case.
Abstract:
A method for culturing the yeast for enhancing pentitol production is provided. The yeast cultured according to the present disclosure is Pichia stipitis. Application of the yeast in pentitol production by fermention of the lignocellulosic hydrolysate or the xylose-to-pentitol production yield can be enhanced 3 to 6 times from the non-detoxified or the overliming-processed lignocellulosic hydrolysate
Abstract:
A motion evaluation system, a method thereof and a computer-readable recording medium are provided. The motion evaluation system includes at least one sensor and a processor. The sensor generates sensing data for a motion posture. The processor obtains the motion posture of the sensor, determines a continued time accumulated when the motion posture conforms to a correct posture, and sends a notification message according to the continued time. The correct posture is related to an angle at which a portion under test inclined to a reference object. Accordingly, the rehabilitation can be performed anytime and anywhere, and it is easier for tracking the rehabilitation situation.
Abstract:
A method for culturing the yeast for enhancing pentitol production is provided. The yeast cultured according to the present disclosure is Pichia stipitis. Application of the yeast in pentitol production by fermention of the lignocellulosic hydrolysate or the xylose-to-pentitol production yield can be enhanced 3 to 6 times from the non-detoxified or the overliming-processed lignocellulosic hydrolysate.
Abstract:
An apparatus is disclosed for growing algae by ionizing radiation. The apparatus includes a container for containing medium for the growth of algae, a filter disposed in the container, a 3-dimensional rack disposed in the container, an adherent element wound on the 3-dimension rack so that spores of the algae can be planted in the adherent element, a radiation element disposed in the container for irradiating the spores and a timepiece connected to the radiation element.
Abstract:
An electronic device, comprises a cage (10) and a peripheral component (20). The cage comprises an inner sidewall (14), and an external sidewall (12) parallel to the inner sidewall, a receiving slot (15) formed between the inner sidewall and the external sidewall, and a shaft (152) formed at an end of the receiving slot with two ends of the shaft respectively connected with the inner sidewall and the external sidewall. The external sidewall comprises a plurality of hooks (126) thereon, and the hooks are above and across the receiving slot. The peripheral component defines a groove (22) in a side thereof. The groove corresponds to the shaft. The peripheral component further comprises a plurality of holding slots corresponding to the hooks.
Abstract:
An electronic device includes a case (100) and a supporting member (40). The case includes a cover (10), a base (20), and a receiving member (30) received between the cover and the base. The cover includes a first bottom wall (12), and the base includes a second bottom wall (22). A receiving recess (144) is formed in the first and second bottom walls. A retaining portion (32) is formed in the receiving member, and received in the receiving recess. The retaining portion includes at least one slot (328). The supporting member is mounted to the retaining portion, and includes at least one locating portion (426) slideable in the slot. Thereby, when the electronic device is in a horizontal position, the supporting member is fully received in the receiving recess of the case; when the electronic device is in an upright position, the supporting member is perpendicular to the receiving recess of the case.
Abstract:
A multi-directional key for an electronic device includes a hollow frame a key substrate, a multi-directional key body, and a supporting frame. The hollow frame includes a pair of first opposite parallel bars and a pair of second opposite parallel bars. Perpendicular planes of the first opposite parallel bars and perpendicular planes of the second opposite parallel bars are substantially perpendicular to each other. Each of two opposite sides of the key substrate is correspondingly connected to each of the first opposite parallel bars of the hollow frame by a pair of first connection portions. The multi-directional key body is positioned on the key substrate. The supporting frame is connected to the second opposite parallel bars of the hollow frame by a pair of second connection portions. A key assembly employing the multi-directional key is also provided.