Abstract:
Disclosed are an optical disc drive installation mechanism, and an outer frame for installing an optical disc drive. The optical disc drive installation mechanism includes: an optical disc drive module and an outer frame which is configured to insert or pull out the optical disc drive module, and a buckle is connected to a side surface of the optical disc drive module; a buckle limiting hole is disposed on a first side surface of the outer frame; and a groove is further disposed on an outer wall on the first side surface of the outer frame, a fixedly connected spacing elastomer is disposed on an inner wall on a second side surface of the outer frame, the spacing elastomer and the first elastic part are configured to lock or unlock the optical disc drive module, and a first side surface is perpendicular to the second side surface.
Abstract:
Embodiments of the present invention relate to a board cooling apparatus comprising a shell and a board, where the board and an interior wall of the shell form a closed space, a cooling medium inlet and a cooling medium outlet are disposed on the shell, a separator plate that separates the board into a first part and a second part, a through opening between the first part and the second part, a cooling medium flows into the first part from the cooling medium inlet and then flows into the second part, and flows out from the cooling medium outlet, a flow guiding mechanism that is disposed on the board and configured to divert the cooling medium flowing into the first part from the cooling medium inlet, so as to directly guide part of the cooling medium into the second part.
Abstract:
A terminal, a color changing method, and a color changing apparatus that relate to the field of communications technologies are provided, so as to resolve a technical problem of a waste of materials due to production of a terminal shell. A color changing unit is disposed inside a terminal, where the color changing unit can change a color when receiving electrical energy, and a transparency value of a shell is greater than a first preset transparency value, so that a technical problem of a waste of materials due to production of a terminal shell can be effectively resolved, which can reduce manufacturing materials and is conducive to environmental protection.
Abstract:
A communications product, including at least one RRU and a fan assembly, where the fan assembly is independent of the at least one RRU, and is disposed side by side with the at least one RRU, an air duct is disposed between the fan assembly and the RRU, and an airflow passes, from the fan assembly, through the air duct, and arrives at the at least one RRU, to dissipate heat of the at least one RRU. The communications product of the present disclosure can ensure a heat-dissipation capability, and also can allow the RRU to be small in size. The present disclosure further provides a base station system that includes the communications product.
Abstract:
An antenna adjustment system and a base station, where the antenna adjustment system includes an inertial feedback unit configured to detect a swing angle of an antenna when the antenna swings with a housing, and send an angle signal to a controller, an actuator and an elastic element configured to control an auxiliary board to rotate back in a direction opposite to a swing direction of the housing in order to counteract deflection caused by swing of the housing of the antenna fastened to the auxiliary board. The actuator is driven by the controller based on the angle signal. Therefore, a position of an antenna can be adjusted with swing of the antenna such that signal sending stability of the antenna can be ensured.
Abstract:
The present invention discloses a communications product (100), including a remote radio module (10) and a mounting kit (30), where the mounting kit (30) includes a fastening part (32), the fastening part (32) is configured to mount and fasten the remote radio module (10) to a holder, the mounting kit (30) further includes a ventilation part (34) and an air supply part (36), an air source is disposed inside the air supply part (36), the ventilation part (34) is connected between the fastening part (32) and the air supply part (36), a ventilation channel is disposed inside the ventilation part (34), and the ventilation channel allows the air supply part (36) to communicate with the remote radio module (10), so that an air flow generated by the air source reaches the remote radio module (10) after passing through the ventilation channel, to dissipate heat for the remote radio module.
Abstract:
Embodiments of the present invention disclose a microwave antenna adjustment apparatus, which relates to the field of communications technologies and is invented for resolving a problem that an existing adjustment apparatus has a low horizontal adjustment precision and is costly. The present invention is applicable to adjustment of a microwave antenna.
Abstract:
A terminal, a color changing method, and a color changing apparatus that relate to the field of communications technologies are provided, so as to resolve a technical problem of a waste of materials due to production of a terminal shell. A color changing unit is disposed inside a terminal, where the color changing unit can change a color when receiving electrical energy, and a transparency value of a shell is greater than a first preset transparency value, so that a technical problem of a waste of materials due to production of a terminal shell can be effectively resolved, which can reduce manufacturing materials and is conducive to environmental protection.
Abstract:
Embodiments of the present invention disclose a microwave antenna adjustment apparatus, which relates to the field of communications technologies and is invented for resolving a problem that an existing adjustment apparatus has a low horizontal adjustment precision and is costly. The present invention is applicable to adjustment of a microwave antenna.
Abstract:
Embodiments of the present invention relate to a board cooling apparatus comprising a shell and a board, where the board and an interior wall of the shell form a closed space, a cooling medium inlet and a cooling medium outlet are disposed on the shell, a separator plate that separates the board into a first part and a second part, a through opening between the first part and the second part, a cooling medium flows into the first part from the cooling medium inlet and then flows into the second part, and flows out from the cooling medium outlet, a flow guiding mechanism that is disposed on the board and configured to divert the cooling medium flowing into the first part from the cooling medium inlet, so as to directly guide part of the cooling medium into the second part.