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    • 2. 发明授权
    • TRANSCEIVER ARRANGEMENT, COMMUNICATION DEVICE, AND METHOD
    • EP3053276B1
    • 2018-07-11
    • EP13779759.3
    • 2013-10-04
    • Telefonaktiebolaget LM Ericsson (publ)
    • SJÖLAND, HenrikWERNEHAG, JohanANDERSSON, Stefan
    • H04B1/52
    • H04L5/14H04B1/0458H04B1/18H04B1/525H04L49/30H04Q11/0471
    • A transceiver arrangement comprising a receiver and a transmitter arranged for frequency-division duplex communication with a communication network, a transmission port for connecting to an antenna, a balancing impedance circuit arranged to provide an adaptive impedance arranged to mimic the impedance at the transmission port, a filtering arrangement connecting the receiver, transmitter, transmission port and balancing impedance circuit, and a common-mode signal reduction circuit is disclosed. The filter arrangement comprises filters of a first type arranged to pass signals at transmitter frequency and attenuate signals at receiver frequency and are connected between the transmitter and the transmission port and between the receiver and the balancing impedance circuit, and filters of a second type arranged to attenuate signals at transmitter frequency and pass signals at receiver frequency and are connected between the transmitter and the balancing impedance circuit and between the receiver and the transmission port. The common-mode signal reduction circuit comprises an inverting amplifier, the input of the inverting amplifier is provided by a voltage division between a first and a second impedance where the first and second impedance have equal impedances, and the output of the amplifier is provided to junction of a third and a fourth impedance where the third and fourth impedances have equal impedances, and the first and second impedances, and the third and fourth impedances, respectively, are connected in series between a filter of the first type and a filter of the second type. A communication device and method are also disclosed.
    • 4. 发明公开
    • TRANSCEIVER FRONT-END
    • 收发器前端
    • EP2870701A1
    • 2015-05-13
    • EP12735274.8
    • 2012-07-09
    • Telefonaktiebolaget LM Ericsson (Publ)
    • ANDERSSON, StefanDIN, Imad udSJÖLAND, HenrikTIRED, TobiasWERNEHAG, JohanECKERBERT, Daniel
    • H04B1/52
    • H04B1/525H04B2203/5491
    • A transceiver front-end of a communication device is disclosed. The transceiver front-end is connectable to a signal transmission and reception arrangement adapted to transmit a transmit signal having a transmit frequency and to receive a receive signal having a receive frequency, to a transmitter adapted to produce the transmit signal, and to a receiver adapted to process the receive signal. The transceiver front-end comprises a transmit frequency blocking arrangement and a receive frequency blocking arrangement. The transmit frequency blocking arrangement has a blocking frequency interval associated with the transmit frequency and a non-blocking frequency interval associated with the receive frequency, and is adapted to block passage of transmit frequency signals between the signal transmission and reception arrangement and the receiver The receive frequency blocking arrangement has a blocking frequency interval associated with the receive frequency and a non-blocking frequency interval associated with the transmit frequency, and is adapted to block passage of receive frequency signals between the signal transmission and reception arrangement and the transmitter. The transmit frequency blocking arrangement comprises a network of passive components comprising at least one transformer and a first filter arrangement adapted to have a higher impedance value at the transmit frequency than at the receive frequency. The receive frequency blocking arrangement comprises a second filter arrangement adapted to have a higher impedance value at the transmit frequency than at the receive frequency and a third filter arrangement adapted to have a higher impedance value at the receive frequency than at the transmit frequency.
    • 公开了一种通信设备的收发器前端。 该收发器前端可连接到信号发送和接收装置,该信号发送和接收装置适于发送具有发送频率的发送信号并接收具有接收频率的接收信号给适于产生发送信号的发送器, 处理接收信号。 收发器前端包括发射频率阻挡装置和接收频率阻挡装置。 发送频率阻塞装置具有与发送频率相关联的阻止频率间隔和与接收频率相关联的非阻止频率间隔,并且适于阻止信号发送和接收装置与接收器之间的发送频率信号的通过。接收器 频率阻塞装置具有与接收频率相关联的阻塞频率间隔和与发射频率相关联的非阻塞频率间隔,并且适于阻止信号传输和接收装置与发射器之间的接收频率信号的通过。 发射频率阻断装置包括无源部件的网络,该无源部件包括至少一个变压器和第一滤波器装置,该第一滤波器装置适于在发射频率处具有比在接收频率处更高的阻抗值。 接收频率阻塞装置包括第二滤波器装置和第三滤波器装置,第二滤波器装置适于在发射频率处具有比在接收频率处更高的阻抗值,第三滤波器装置适于在接收频率处具有比在发射频率处更高的阻抗值。
    • 6. 发明公开
    • TRANSFORMER FILTER ARRANGEMENT
    • TRANSFORMATORFILTERANORDNUNG
    • EP2735097A1
    • 2014-05-28
    • EP12815122.2
    • 2012-07-10
    • Telefonaktiebolaget LM Ericsson (PUBL)
    • ANDERSSON, StefanWERNEHAG, JohanMU, Fenghao
    • H03H7/42H01F27/29H03H7/09H05K1/16H01F27/34H04B1/10H04B1/12
    • H01F29/02H01F27/2804H01F27/343H01F27/42H03H7/0115H03H7/09H03H7/38H03H7/42H03H7/427H03H2001/0078H03H2007/013
    • A transformer filter arrangement (30) for passing signals at a fundamental frequency and suppressing signals at one or more interfering frequencies is disclosed. It comprises a transformer (100) having a first winding (110) and a second winding (120), wherein the first winding (110) has a first end (112a) and a second end (122b) and the second winding (120) has a first end (122a) and a second end (122b). It further comprises one or more capacitors (130a-e). For each capacitor (130a-c) of a first set of at least one capacitor of the one or more capacitors (130a-e), the capacitor (130a-c) is connected between a pair of taps (a1, a2; b1, b2; c1, c2) of the first winding (110), wherein each tap (a1, a2, b1, b2, c1, c2) of the pair of taps (a1, a2; b1, b2; c1, c2) is located between the first end (112a) and the second end (112b) of the first winding (110), and the capacitor (130a-c), together with an inductive sub segment (140a-c) of the first winding (110), which is connected in parallel with the capacitor (130a-c) between the pair of taps (a1, a2; b1, b2; c1, c2), forms a parallel LC circuit which is tuned to resonate at one of said interfering frequencies for suppressing signals at said one of the interfering frequencies. A corresponding integrated circuit, a corresponding radio receiver circuit, a corresponding radio transmitter circuit, and a corresponding radio communication apparatus are also disclosed.
    • 公开了一种用于以基本频率传递信号并以一个或多个干扰频率抑制信号的变压器滤波器装置(30)。 它包括具有第一绕组(110)和第二绕组(120)的变压器(100),其中第一绕组(110)具有第一端(112a)和第二端(122b)和第二绕组(120) 具有第一端(122a)和第二端(122b)。 它还包括一个或多个电容器(130a-e)。 对于一个或多个电容器(130a-e)中的至少一个电容器的第一组的每个电容器(130a-c),电容器(130a-c)连接在一对抽头(a1,a2; b1, (a1,a2; b1,b2; c1,c2)的每个抽头(a1,a2,b1,b2,c1,c2)位于第一绕组(110)的b2; c1,c2) 在第一绕组(110)的第一端(112a)和第二端(112b)之间,以及电容器(130a-c)与第一绕组(110)的感应子段(140a-c) 其与所述一对抽头(a1,a2; b1,b2; c1,c2)之间的电容器(130a-c)并联连接,形成并联LC电路,所述并联LC电路被调谐为以所述干扰频率之一谐振以抑制 在所述干扰频率之一处的信号。 还公开了相应的集成电路,相应的无线电接收器电路,相应的无线电发射机电路和相应的无线电通信装置。
    • 7. 发明公开
    • TRANSFORMER FILTER ARRANGEMENT
    • 变压器滤波器安排
    • EP2735096A1
    • 2014-05-28
    • EP12814208.0
    • 2012-06-28
    • Telefonaktiebolaget LM Ericsson (PUBL)
    • WERNEHAG, JohanMU, FenghaoANDERSSON, Stefan
    • H03H7/42H03H7/09H05K1/16H01F27/34H04B1/10H04B1/12
    • H03H7/09H01F27/2804H01F27/29H01F27/42H01P1/212H03H7/0115H03H7/1758H03H7/1775H03H7/1791H03H7/38H03H7/42H03H7/425H03H7/427H03H2001/0078
    • A transformer filter arrangement (30) is disclosed. The transformer filter arrangement comprises a transformer (100) having a first winding (110) and a second winding (120), wherein both of the first and the second winding are located between an outer border (300) and an inner border (310), which is inside the outer border (300). The transformer filter arrangement further comprises one or more reactive sub circuits (130a-b, 330), each comprising one or more inductors (200, 200a-b, 210, 220, 235, 240, 340). The first winding (110) of the transformer (100) is divided into a plurality of winding segments (140a-c). For at least a first one of the one or more reactive sub circuits (130a-b), the reactive sub circuit (130a-b) is connected in series with the winding segments (140a-c) of the first winding (110) between two such winding segments (140a-c), and at least one of the one or more inductors (200a-b) of the reactive sub circuit (130a-b) is located inside said inner border (310). The transformer (100) and the one or more reactive sub circuits (130a-b, 330) are tuned such that the transformer filter arrangement (30) is configured to pass signals at a fundamental frequency and to suppress signals at one or more interfering frequencies. A corresponding integrated circuit (500), a corresponding radio receiver circuit (10), a corresponding radio transmitter circuit (50), and a corresponding radio communication apparatus (1, 2) are also disclosed.
    • 公开了变压器滤波器装置(30)。 变压器滤波器装置包括具有第一绕组(110)和第二绕组(120)的变压器(100),其中第一绕组和第二绕组均位于外边界(300)和内边界(310)之间, ,它位于外边界(300)内。 变压器滤波器装置还包括一个或多个电抗性子电路(130a-b,330),每个电路包括一个或多个电感器(200,200a-b,210,220,235,240,340)。 变压器(100)的第一绕组(110)被分成多个绕组段(140a-c)。 对于所述一个或多个无功子电路(130a-b)中的至少第一个,所述无功子电路(130a-b)与所述第一绕组(110)的所述绕组段(140a-c)串联连接 两个这样的绕组段(140a-c)以及电抗性子电路(130a-b)的一个或多个电感器(200a-b)中的至少一个位于所述内边界(310)内部。 变压器(100)和一个或多个电抗性子电路(130a-b,330)被调谐成使得变压器滤波器装置(30)被配置为传递基频的信号并抑制一个或多个干扰频率 。 还公开了相应的集成电路(500),相应的无线电接收器电路(10),相应的无线电发射器电路(50)以及相应的无线电通信装置(1,2)。
    • 8. 发明授权
    • TRANSCEIVER FRONT-END
    • 收发器前端
    • EP2870700B1
    • 2017-06-28
    • EP12733151.0
    • 2012-07-09
    • Telefonaktiebolaget LM Ericsson (publ)
    • ANDERSSON, StefanDIN, Imad udSJÖLAND, HenrikTIRED, TobiasWERNEHAG, Johan
    • H04B1/52
    • H04B1/525H04L5/14
    • A transceiver front-end is connectable to a signal transmission and reception arrangement adapted to transmit and receive with respective frequencies. The transceiver front-end comprises at least one of a transmit frequency blocking arrangement and a receive frequency blocking arrangement. For instance, the transmit frequency blocking arrangement has a blocking and non-blocking frequency interval associated with the transmit frequency and receive frequency, respectively, and is adapted to block passage of transmit frequency signals between the signal transmission and reception arrangement and the receiver. At least one of the transmit frequency blocking arrangement and the receive frequency blocking arrangement comprises a network of passive components comprising at least one transformer and a frequency translated impedance adapted to have a higher impedance value in the blocking frequency interval than in the non-blocking frequency interval.
    • 收发器前端可连接到适于以相应频率发送和接收的信号发送和接收装置。 收发器前端包括发射频率阻塞装置和接收频率阻塞装置中的至少一个。 例如,发送频率阻塞装置分别具有与发送频率和接收频率相关联的阻塞和非阻塞频率间隔,并且适于阻止信号发送和接收装置与接收器之间的发送频率信号的通过。 发射频率阻挡装置和接收频率阻挡装置中的至少一个包括无源组件的网络,所述无源组件包括至少一个变压器和频率变换的阻抗,所述阻抗适于在阻塞频率区间中具有比在非阻塞频率中更高的阻抗值 间隔。
    • 9. 发明公开
    • TRANSCEIVER ARRANGEMENT, COMMUNICATION DEVICE, AND METHOD
    • SENDER接收器布置中,通信设备和方法
    • EP3053276A1
    • 2016-08-10
    • EP13779759.3
    • 2013-10-04
    • Telefonaktiebolaget LM Ericsson (publ)
    • SJÖLAND, HenrikWERNEHAG, JohanANDERSSON, Stefan
    • H04B1/52
    • H04L5/14H04B1/0458H04B1/18H04B1/525H04L49/30H04Q11/0471
    • A transceiver arrangement comprising a receiver and a transmitter arranged for frequency-division duplex communication with a communication network, a transmission port for connecting to an antenna, a balancing impedance circuit arranged to provide an adaptive impedance arranged to mimic the impedance at the transmission port, a filtering arrangement connecting the receiver, transmitter, transmission port and balancing impedance circuit, and a common-mode signal reduction circuit is disclosed. The filter arrangement comprises filters of a first type arranged to pass signals at transmitter frequency and attenuate signals at receiver frequency and are connected between the transmitter and the transmission port and between the receiver and the balancing impedance circuit, and filters of a second type arranged to attenuate signals at transmitter frequency and pass signals at receiver frequency and are connected between the transmitter and the balancing impedance circuit and between the receiver and the transmission port. The common-mode signal reduction circuit comprises an inverting amplifier, the input of the inverting amplifier is provided by a voltage division between a first and a second impedance where the first and second impedance have equal impedances, and the output of the amplifier is provided to junction of a third and a fourth impedance where the third and fourth impedances have equal impedances, and the first and second impedances, and the third and fourth impedances, respectively, are connected in series between a filter of the first type and a filter of the second type. A communication device and method are also disclosed.