Abstract:
A seawater desalinization device includes a container portion, a guiding pipe, a plug, a heat conduction cover, a switch, and a connecting pipe. The container portion defines a receiving chamber, a slot, and a through hole communicating with the receiving chamber. The guiding pipe is fixed on the container portion to communicating with the slot. The plug is detachably inserted into the guiding pipe. The heat conduction cover covers on the container portion and sealing the receiving chamber and the slot. The switch is assembled in the container portion to control open or close the through hole upon a seawater level in the container portion. The connecting pipe is inserted into the through hole and a seawater source.
Abstract:
A wireless earphone includes a body, a microphone and an earphone. The body includes a microphone end and an opposite earphone end. The microphone is disposed at the microphone end of the body. The earphone is retractably disposed at the earphone end of the body. The invention also includes a portable electronic device using the wireless earphone.
Abstract:
A method for forming electrically conductive polyaniline (PANI)-based composites includes mixing a base form of PANI, a photo acid generator (PAG), and when the PAG does not hydrogen bond to the base form of PANI an additive which can form hydrogen bonds with the base form of PANI or PAG, together with at least one solvent to form a mixture. The solvent is removed from the mixture. After the removing, the mixture is photo-irradiated with a wavelength within an absorption band of the PAG for converting the base form of PANI to a salt form of PANI to form a polymer composite that includes the salt form of PANI. The polymer composite has a 25° C. electrical conductivity that is at least 3 orders of magnitude higher than a 25° C. electrical conductivity of the base form of PANI, such as a 25° C. electrical conductivity of ≧0.01 S/cm.
Abstract translation:用于形成导电聚苯胺(PANI)的复合材料的方法包括混合PANI基质,光酸反应器(PAG),当PAG不与PANI的碱形式氢键合时,可形成氢键的添加剂 与PANI或PAG的基础形式,与至少一种溶剂一起形成混合物。 从混合物中除去溶剂。 除去后,将混合物用PAG的吸收带内的波长进行光照射,以将PANI的基础形式转化为PANI的盐形式,形成包含PANI盐形式的聚合物复合物。 该聚合物复合材料具有25℃的电导率,其比PANI的基体形式的25℃的电导率高至少3个数量级,例如25℃的导电率≥0.01S/ cm 。
Abstract:
A battery cover latch mechanism (10) used in portable electronic device (100) is described including a cover member (113), a housing member (111), a latch member (1137), a pressing member (15), and a releasing member (17). The latch member is used to latch the cover member to the housing member. The releasing member can be elastic deformed such that the pressing member moves and deforms the releasing member to release the cover member from the housing member.
Abstract:
A protective cover mechanism for an interface opening of a portable electronic device includes a protective cover and a sliding member. The protective cover includes a cover body for covering the interface opening, and a shaft projecting from the cover body. The sliding member is engaged with the shaft of the protective cover so the cover body is rotatable relative to the sliding member to selectively cover or expose the interface opening.
Abstract:
The present invention relates to transgenic animals, as well as compositions and methods relating to the characterization of gene function. Specifically, the present invention provides transgenic mice comprising disruptions in PRO227, PRO233, PRO238, PRO1328, PRO4342, PRO7423, PRO10096, PRO21384, PRO353 or PRO1885 genes. Such in vivo studies and characterizations may provide valuable identification and discovery of therapeutics and/or treatments useful in the prevention, amelioration or correction of diseases or dysfunctions associated with gene disruptions such as neurological disorders; cardiovascular, endothelial or angiogenic disorders; eye abnormalities; immunological disorders; oncological disorders; bone metabolic abnormalities or disorders; lipid metabolic disorders; or developmental abnormalities.
Abstract:
A portable electronic device (20) comprises a housing (22), a battery (26), a battery cover (28) and a trigger mechanism (24). The housing (22) have a battery chamber (222) defined therein. The battery cover (28) have a mating portion (2822) formed thereon. The battery (268) assembled in the battery chamber (222) with the battery cover (28) covering thereon. and The trigger mechanism (24) comprise an expanding portion (242), a securing portion (244), and a resisting portion (246), the securing portion (244) have two ends respectively connecting the expanding portion (242) and the resisting portion (246), the mating portion (2822) is configured for securely engaging with the securing portion (244) so as to restrain the expanding portion from expanding. The expanding portion (242) is secured within the battery chamber (222). The resisting portion (246) is configured for resisting against the battery (26). When the mating portion (2822) disengages from the securing portion (244), the expanding portion (242) expands and the resisting portion (246) ejects the battery (26) from the battery chamber (222).
Abstract:
A shield for electronic elements of a circuit board includes a frame and a cover, the frame including a peripheral wall comprising a plurality of fixed portions thereon, wherein the fixed portion includes a protrusion and a gap, the protrusion formed on the inner side of the peripheral wall, and the cover has a plurality of folding pieces corresponding to the fixed portions, the folding pieces defines an aperture, and the cover is mounted on the frame, the folding pieces match with the fixed portions correspondingly, the protrusion passes the aperture and locks with the aperture. When the cover is detached, the folding pieces are resisted via the gap to make the protrusion to break away from the aperture of the folding piece, enabling the cover to be opened.
Abstract:
A battery cover assembly for a portable electronic device (100), the battery cover assembly includes a housing (10), a cover (10) and a locking mechanism (30). The cover defines a latching groove (242). The cover is hinged to the housing. The locking mechanism latches the cover to the housing. The locking mechanism includes a button (42) and a spring (44). The button slidably engages with the cover. The spring is disposed between the button and the cover, and the spring provides an elastic force to the button configured for allowing the button to lock with the latching groove.
Abstract:
A battery cover latching mechanism used in portable electronic device (10) is described including a cover member (11), a housing member (12), a latch base (14), a latch member (13), and a return member (15). The latch base can be securely attached to the housing member. The latch member is mounted on the latch base and movable relative to the latch base to latch the cover member to the housing member. The return member drives the latch member to move in such a manner that the movement of the latch member detaches the cover member away from the housing member.