摘要:
The present invention discloses a remote radio apparatus, including: a body, a mainboard, a mainboard heat sink, a maintenance cavity, an optical module, and an optical module heat sink. The maintenance cavity and the optical module heat sink are integrally connected; the optical module is mounted on a bottom surface of the optical module heat sink; the maintenance cavity and the optical module heat sink are mounted on a side surface of the body; and the mainboard heat sink is mounted on and cover the mainboard, the mainboard heat sink and the mainboard are installed on a front surface of the body, and the mainboard heat sink and the optical module heat sink are spaced by a preset distance. According to the RRU provided in the embodiments of the present invention, the optical module heat sink is separated from the mainboard heat sink, so that a heat conductivity path between the optical module heat sink and the mainboard heat sink is extended, a temperature of the optical module heat sink is reduced, and impact on the temperature of the optical module is weakened, thereby controlling the temperature of the optical module within a range required by a specification.
摘要:
The present utility model discloses a filter and a radio frequency coaxial connector, to implement fast blind-mate of various signal ports. The filter includes: a filter cavity body and a coaxial connection component. The coaxial connection component is embedded in the filter cavity body in a self-clinching manner. The coaxial connection component includes a socket outer conductor and a main rod. The main rod penetrates the socket outer conductor, and one end of the main rod is connected to a signal end disposed in the filter cavity body. The coaxial connection component is in socket joint with a radio frequency coaxial connector by using the socket outer conductor, and the coaxial connection component matches the radio frequency coaxial connector.
摘要:
The present invention discloses a remote radio apparatus, including: a body, a mainboard, a mainboard heat sink, a maintenance cavity, an optical module, and an optical module heat sink. The maintenance cavity and the optical module heat sink are integrally connected; the optical module is mounted on a bottom surface of the optical module heat sink; the maintenance cavity and the optical module heat sink are mounted on a side surface of the body; and the mainboard heat sink is mounted on and cover the mainboard, the mainboard heat sink and the mainboard are installed on a front surface of the body, and the mainboard heat sink and the optical module heat sink are spaced by a preset distance. According to the RRU provided in the embodiments of the present invention, the optical module heat sink is separated from the mainboard heat sink, so that a heat conductivity path between the optical module heat sink and the mainboard heat sink is extended, a temperature of the optical module heat sink is reduced, and impact on the temperature of the optical module is weakened, thereby controlling the temperature of the optical module within a range required by a specification.
摘要:
A data processing method, a data processing system, and relevant devices are provided, which are used to reduce system power consumption. The method in embodiments of the present invention includes: performing sampling on an analog signal to obtain an analog sample value; performing analog-to-digital conversion on the analog sample value to obtain a digital signal; dividing bits forming the digital signal into at least two bit groups; and turning off output of bits in at least one bit group if a preset turnoff condition is satisfied. A data processing system and relevant devices are further provided.
摘要:
A data processing method, a data processing system, and relevant devices are provided, which are used to reduce system power consumption. The method in embodiments of the present invention includes: performing sampling on an analog signal to obtain an analog sample value; performing analog-to-digital conversion on the analog sample value to obtain a digital signal; dividing bits forming the digital signal into at least two bit groups; and turning off output of bits in at least one bit group if a preset turnoff condition is satisfied. A data processing system and relevant devices are further provided.