This application claims the priority benefit of Taiwan application serial no. 103132252, filed on Sep. 18, 2014. The entirety of the above-mentioned patent application is hereby incorporated by reference herein and made a part of this specification.
1. Technical Field
The disclosure relates to a wireless communication technique, and particularly relates to a wireless communication device capable of performing data transmission through a plurality of wireless communication protocols and avoiding receiving noises generated due to an inter-modulation effect.
2. Related Art
Along with progress of integrated circuit (IC) manufacturing process, a same electronic equipment (for example, a mobile phone) may simultaneously have hardware modules of a plurality of wireless communication protocols capable of operating simultaneously, and these hardware modules of the wireless communication protocols can operate simultaneously. The wireless communication protocols are, for example, 2nd-generation (2G), 3rd-generation (3G), fourth-generation (4G), long term evolution (LTE), wireless fidelity (Wi-Fi), blue-tooth, global positioning system (GPS), international GNSS service (IGS) communication protocols, etc.
In order to increase a data transmission rate of the electronic equipment, the electronic equipment can simultaneously adopt a plurality of wireless communication protocols to transmit data in an integrated manner Each of the wireless communication protocols has different transmitting (Tx) and receiving (Rx) frequency bands. When the electronic equipment transmits data simultaneously through a plurality of wireless communication protocols, the transmitting signals may have a spike noise on the receiving frequency band of the operated communication protocol due to an inter-modulation effect, and the electronic equipment probably receives the spike noise through an antenna, which may influence signal receiving sensitivity. For example, when the hardware modules of the Wi-Fi and LTE communication protocols in the electronic equipment simultaneously transmit data, transmitting (Tx) signals of the Wi-Fi and LTE communication protocols probably produce the spike noise on the receiving (Rx) frequency band of the LTE communication protocol of Band 7 due to the inter-modulation effect.
In order to resolve the above problem, besides that the electronic equipment can avoid transmitting data simultaneously through a plurality of the communication protocols, manufacturers also consider to avoid a receiving terminal of the electronic equipment from receiving the noise generated by the signals sent by the antennas of the electronic equipment itself due to the inter-modulation effect.
The disclosure is directed to a wireless communication device, in which a signal filter is configured at a receiving terminal of a wireless communication protocol transceiver, so as to avoid a situation that the wireless communication device receives signals sent by the wireless communication device itself through a plurality of wireless communication protocols. In this way, the signals sent through the wireless communication signals do not produce noises due to an inter-modulation effect, and the wireless communication device is avoided to receive the noises, so as to improve sensitivity of the wireless communication device for receiving data.
The disclosure provides a wireless communication device including a first wireless communication protocol transceiver, a second wireless communication protocol transceiver, a signal frequency splitter and a signal filter. The first wireless communication protocol transceiver transmits data through a first wireless communication protocol. The second wireless communication protocol transceiver has a receiving terminal. The signal frequency splitter splits a receiving signal received by a second antenna and a transmitting signal transmitted by the second antenna according to a receiving frequency band and a transmitting frequency band of a second wireless communication protocol. The signal filter is coupled to the signal frequency splitter and the receiving terminal of the second wireless communication protocol transceiver. The signal filter filters a signal in a receiving frequency band of the first wireless communication protocol and the receiving frequency band of the second wireless communication protocol.
In an embodiment of the disclosure, the second wireless communication protocol transceiver further includes a transmitting terminal. The wireless communication device further includes a surface acoustic wave filter and a signal amplifier. The surface acoustic wave filter is coupled to the transmitting terminal of the second wireless communication protocol transceiver, and is configured to filter the transmitting signal sent by the transmitting terminal. The signal amplifier is coupled to the surface acoustic wave filter and a signal receiving terminal of the signal frequency splitter. The signal amplifier is configured to receive and amplify the filtered transmitting signal.
In an embodiment of the disclosure, the first wireless communication protocol is a wireless fidelity (Wi-Fi) communication protocol, and the second wireless communication protocol is a long term evolution (LTE) communication protocol on band 7.
In an embodiment of the disclosure, the signal frequency splitter is a duplexer.
In an embodiment of the disclosure, the signal filter is a high pass filter or a band pass filter.
According to the above descriptions, the signal filter is configured at the receiving terminal of the second wireless communication protocol transceiver, and the signal filter is used for filtering the signal in the receiving frequency band of the first wireless communication protocol (the Wi-Fi communication protocol) and in the receiving frequency band of the second wireless communication protocol (the LTE communication protocol of band 7). In this way, when the wireless communication device simultaneously uses the above two wireless communication protocols to perform data transmission, the noise produced by the transmitting signals of the two wireless communication protocols due to the inter-modulation effect is avoided. In this way, the noise is not received by the second wireless communication protocol (the LTE communication protocol of band 7) transceiver. Therefore, data receiving sensitivity of the wireless communication device on the second wireless communication protocol (the LTE communication protocol of band 7) is improved.
In order to make the aforementioned and other features and advantages of the disclosure comprehensible, several exemplary embodiments accompanied with figures are described in detail below.
The accompanying drawings are included to provide a further understanding of the disclosure, and are incorporated in and constitute a part of this specification. The drawings illustrate embodiments of the disclosure and, together with the description, serve to explain the principles of the disclosure.
The encountered problem of the disclosure is described below.
Therefore, in the embodiment of the disclosure, a signal filter is configured to the receiving terminal of the second wireless communication protocol transceiver, and the signal filter is used for filtering a signal in a receiving frequency band of the first wireless communication protocol (Wi-Fi) and a receiving frequency band of the second wireless communication protocol (LTE, band 7). In this way, when the wireless communication device simultaneously uses the aforementioned two wireless communication protocols to transmit data, it is avoided that the noise generated by the transmitting signals of the two wireless communication protocols due to the inter-modulation effect is received by the second wireless communication protocol (LTE, band 7) transceiver.
The wireless communication device 300 further includes a duplexer 350 used by the first wireless communication protocol (Wi-Fi), a duplexer 370 used by the second wireless communication protocol (LTE), a filter 355 located at a transmitting terminal Tx1 of the Wi-Fi transceiver, a surface acoustic wave (SAW) filter 390 and a signal amplifier 395 located at a transmitting terminal Tx2 of the LTE of band 7 transceiver. In the present embodiment, the first wireless communication protocol transceiver 330 is the Wi-Fi transceiver, and a chip model number thereof can be WCN3660. The first wireless communication protocol transceiver 330 has the transmitting terminal Tx1 and a receiving terminal Rx1. The duplexer 350 used by the Wi-Fi communication protocol classifies the receiving/transmitting signal, so as to respectively provide the received receiving signal to the receiving terminal Rx1 of the first wireless communication protocol transceiver 330 and transmit the transmitting signal generated at the transmitting terminal Tx1 of the first wireless communication protocol transceiver 330 and processed by the filter 355 to the first antenna 310.
On the other hand, the second wireless communication protocol transceiver 340 is the LTE of band 7 transceiver, and a chip model number thereof can be WTR1605L. The second wireless communication protocol transceiver 340 has a transmitting terminal Tx2 and a receiving terminal Rx2. The duplexer 370 used by the LTE communication protocol can classify the signals according to the respective receiving/transmitting frequency band of the 2G/3G/4G/LTE communication protocol for transmitting to different wireless communication protocol receiver. The signal frequency splitter 360 used by the LTE of band 7 is a duplexer, and a chip model number thereof is ACMD-6207, which is used for receiving/transmitting signals complied with the LTE receiving/transmitting frequency band.
It should be noticed that in the present embodiment of the disclosure, the signal filter 380 is configured between the receiving terminal Rx2 of the second wireless communication protocol transceiver 340 and the signal frequency splitter 360. The signal filter 380 is used for filtering a signal in the receiving frequency band of the Wi-Fi communication protocol and in the receiving frequency band of the LTE communication protocol of band 7. In other words, referring to
In the present embodiment, the signal filter 380 can be a high pass filter or a band pass filter, for example, the signal filter 380 is a high pass filter of
In the present embodiment, the signal filter 380 of
Referring back to
In the present embodiment, since the second wireless communication protocol transceiver 340 with the chip model number of ACMD-6207 further has a signal processing function of an international GNSS service (IGS), the duplexer 370 and a GNSS filter 375 can be used to transmit GNSS information received through the second antenna 320 to a terminal GNSS of the second wireless communication protocol transceiver 340, such that the wireless communication device 300 can obtain the GNSS information.
In summary, in the disclosure, the signal filter is configured at the receiving terminal of the second wireless communication protocol transceiver, and the signal filter is used for filtering the signal in the receiving frequency band of the first wireless communication protocol (the Wi-Fi communication protocol) and in the receiving frequency band of the second wireless communication protocol (the LTE communication protocol of band 7). In this way, when the wireless communication device simultaneously uses the above two wireless communication protocols to perform data transmission, the noise produced by the transmitting signals of the two wireless communication protocols due to the inter-modulation effect is avoided. In this way, the noise is not received by the second wireless communication protocol (the LTE communication protocol of band 7) transceiver. Therefore, data receiving sensitivity of the wireless communication device on the second wireless communication protocol (the LTE communication protocol of band 7) is improved.
It will be apparent to those skilled in the art that various modifications and variations can be made to the structure of the disclosure without departing from the scope or spirit of the disclosure. In view of the foregoing, it is intended that the disclosure cover modifications and variations of this disclosure provided they fall within the scope of the following claims and their equivalents.
Number | Date | Country | Kind |
---|---|---|---|
103132252 | Sep 2014 | TW | national |