Abstract:
The present invention discloses a radio frequency module supporting multiple carriers, a base station, and a carrier distribution method. The radio frequency module supporting multiple carriers includes a carrier generating apparatus, a carrier distributor, a carrier synthesizer, and at least two transmit channel, where the carrier generating apparatus is connected to the carrier synthesizer, the carrier synthesizer is connected to the transmit channels, and the carrier distributor is separately connected to the carrier synthesizer and the transmit channels.
Abstract:
An identity authentication method and a mobile device. The mobile device performs receiving a first message of an electronic device within a second distance from the electronic device, where the first message includes a randomly generated session key, randomly generating first action information in response to the first message, and obtaining a second message by encrypting the first action information using the session key, sending the second message to the electronic device. displaying first confirmation information to determine whether the electronic device performs a first action indicated by the first action information, receiving first input used for confirmation, and prompting that identity authentication on the electronic device succeeds, where the second distance is less than or equal to a preset secure distance.
Abstract:
An antenna unit and an antenna array. The antenna unit includes M layers of cross metal patches, M layers of dielectric substrates, and a metal ground layer, where M is an integer greater than 1. In addition, an ith-layer dielectric substrate is disposed between an ith-layer cross metal patch and an (i+1)th-layer cross metal patch. The ith-layer cross metal patch, the ith-layer dielectric substrate, and the (i+1)th-layer cross metal patch are sequentially stacked, and i is an integer ranging from 1 to M−1. An Mth-layer cross metal patch, an Mth-layer dielectric substrate, and the metal ground layer are sequentially stacked. The antenna unit and the antenna array formed by units may have a good polarization feature, a relatively wide operating bandwidth, and a relatively good phase shift feature.
Abstract:
A home device control method and a device. When detecting that the home device meets a preset condition, the electronic device sends a second message to the home device, to indicate the home device to use a first antenna and to indicate to obtain a random code; receives the random code sent by the home device by using the first antenna; accesses a wireless local area network based on the random code, and obtains configuration information including an interface element of a control page and a control instruction that are used to control the home device; and displays the control page and interacts with a user by using the control page, and sends the control instruction to the home device through the wireless local area network, to control the home device.
Abstract:
An electronic device includes: a processor; a memory; an antenna, wherein a transmitting distance of the antenna at a first transmit power is a first distance; a transmitting distance of the antenna at a second transmit power lower than the first transmit power is a second distance; wherein the first distance is greater than a preset safety distance, while the second distance is less than that. The electronic device is enabled to perform sending a first message based on a first periodicity by the antenna at the first transmit power, the first message is an encrypted ciphertext; receiving a first response message of a mobile device; sending a second message based on a second periodicity by the antenna at the second transmit power, the second message is an uncrypted plaintext; receiving a second response message of the mobile device; and executing all or a part of a specific function.
Abstract:
A radio frequency module supports multiple carriers includes a carrier generating apparatus, a carrier distributor, a carrier synthesizer, and at least two transmit channel. T carrier generating apparatus is connected to the carrier synthesizer, the carrier synthesizer is connected to the transmit channels, and the carrier distributor is separately connected to the carrier synthesizer and the transmit channels. According to embodiments of the present invention, the carrier distributor distributes a specified transmit channel for the multiple carrier signals according to power load capacity of each transmit channel and a total power of multiple carrier signals that need to be distributed.
Abstract:
A radio frequency module supports multiple carriers includes a carrier generating apparatus, a carrier distributor, a carrier synthesizer, and at least two transmit channel. T carrier generating apparatus is connected to the carrier synthesizer, the carrier synthesizer is connected to the transmit channels, and the carrier distributor is separately connected to the carrier synthesizer and the transmit channels. According to embodiments of the present invention, the carrier distributor distributes a specified transmit channel for the multiple carrier signals according to power load capacity of each transmit channel and a total power of multiple carrier signals that need to be distributed.
Abstract:
The present invention discloses a radio frequency module supporting multiple carriers, a base station, and a carrier distribution method. The radio frequency module supporting multiple carriers includes a carrier generating apparatus, a carrier distributor, a carrier synthesizer, and at least two transmit channel, where the carrier generating apparatus is connected to the carrier synthesizer, the carrier synthesizer is connected to the transmit channels, and the carrier distributor is separately connected to the carrier synthesizer and the transmit channels.