会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Discrete filter, sampling mixer, and radio device
    • 离散滤波器,采样混频器和无线电设备
    • US08045938B2
    • 2011-10-25
    • US12304011
    • 2007-06-19
    • Yoshifumi HosokawaNoriaki SaitoYoshito ShimizuKatsuaki Abe
    • Yoshifumi HosokawaNoriaki SaitoYoshito ShimizuKatsuaki Abe
    • H01Q11/12H03B1/00
    • H03D7/00G11C27/024H03H15/00H03J2200/10
    • Provided is a discrete filter capable of increasing degree of freedom of design including a DC gain. A sampling mixer (100) includes: a control signal generation unit (104) which generates a control signal including an SO signal; a Ch (6) which successively integrates reception signals sampled by an LO signal frequency as discrete signals; a plurality of Cr (7, 8) which successively integrate discrete signals at a timing based on the control signal; Cb (15) which alternately integrates the discrete signals successively integrated by the respective Cr (7, 8); and a gain control capacitance unit (110) which has gain control capacitors (44, 45, 46) connected in parallel to the respective Cr (7, 8) and integrating the discrete signal and a reset switch (47) for resetting the discrete signal of the gain control capacitors (44, 45, 46) integrated in the past, upon connection between one end of Cr (7) and Cb (15).
    • 提供了能够增加包括DC增益的设计自由度的离散滤波器。 采样混频器(100)包括:产生包括SO信号的控制信号的控制信号产生单元(104) 将由LO信号频率采样的接收信号连续地合并为一个Ch(6)作为离散信号; 多个Cr(7,8),其基于控制信号在定时连续地整合离散信号; Cb(15),其交替地对由相应Cr(7,8)连续积分的离散信号进行积分; 以及增益控制电容单元(110),其具有与相应的Cr(7,8)并联连接并且对离散信号进行积分并具有用于复位离散信号的复位开关(47)的增益控制电容器(44,45,46) (7)和Cb(15)的一端之间连接的过去集成的增益控制电容器(44,45,46)。
    • 2. 发明申请
    • DISCRETE FILTER, SAMPLING MIXER, AND RADIO DEVICE
    • 离散滤波器,采样混频器和无线电设备
    • US20100248675A1
    • 2010-09-30
    • US12304011
    • 2007-06-19
    • Yoshifumi HosokawaNoriaki SaitoYoshito ShimizuKatsuaki Abe
    • Yoshifumi HosokawaNoriaki SaitoYoshito ShimizuKatsuaki Abe
    • H04B1/16H03H7/00
    • H03D7/00G11C27/024H03H15/00H03J2200/10
    • Provided is a discrete filter capable of increasing degree of freedom of design including a DC gain. A sampling mixer (100) includes: a control signal generation unit (104) which generates a control signal including an SO signal; a Ch (6) which successively integrates reception signals sampled by an LO signal frequency as discrete signals; a plurality of Cr (7, 8) which successively integrate discrete signals at a timing based on the control signal; Cb (15) which alternately integrates the discrete signals successively integrated by the respective Cr (7, 8); and a gain control capacitance unit (110) which has gain control capacitors (44, 45, 46) connected in parallel to the respective Cr (7, 8) and integrating the discrete signal and a reset switch (47) for resetting the discrete signal of the gain control capacitors (44, 45, 46) integrated in the past, upon connection between one end of Cr (7) and Cb (15).
    • 提供了能够增加包括DC增益的设计自由度的离散滤波器。 采样混频器(100)包括:产生包括SO信号的控制信号的控制信号产生单元(104) 将由LO信号频率采样的接收信号连续地合并为一个Ch(6)作为离散信号; 多个Cr(7,8),其基于控制信号在定时连续地整合离散信号; Cb(15),其交替地对由相应Cr(7,8)连续积分的离散信号进行积分; 以及增益控制电容单元(110),其具有并联连接到各个Cr(7,8)并且对离散信号进行积分并具有用于复位离散信号的复位开关(47)的增益控制电容器(44,45,46) (7)和Cb(15)的一端之间连接的过去集成的增益控制电容器(44,45,46)。
    • 3. 发明授权
    • Radio communication system base station and mobile station
    • 无线电通信系统基站和移动台
    • US07715841B2
    • 2010-05-11
    • US10572978
    • 2004-10-01
    • Yoshifumi HosokawaNoriaki SaitoKatsuaki AbeMichiaki MatsuoYoshito ShimizuJunji Sato
    • Yoshifumi HosokawaNoriaki SaitoKatsuaki AbeMichiaki MatsuoYoshito ShimizuJunji Sato
    • H04Q7/20
    • H04W88/06H04W40/246H04W48/08H04W92/02H04W92/10
    • A radio communication system includes a base station of a radio communication system A, a base station of a radio communication system B operation in non-synchronized way with the base station, and a mobile station capable of communicating with both of the radio communication system A and the radio communication system B. The base station includes a radio unit for transmitting/receiving a radio wave to/from the mobile station and a system information estimation unit for estimating the system information on the radio communication system B and outputting the system estimation information. The radio unit of the base station reports the system estimation information on the base station to the mobile station. The mobile station receives the system estimation information on the base station in advance so as to perform effective switching without using a cabled connection from the radio communication system A to the radio communication system B via a relay device or the like.
    • 无线通信系统包括无线通信系统A的基站,无线通信系统B的与基站非同步的操作的基站,以及能够与无线通信系统A通信的移动台 和无线通信系统B.基站包括用于向移动台发送/接收无线电波的无线电单元和用于估计无线电通信系统B的系统信息的系统信息估计单元,并输出系统估计信息 。 基站的无线单元向移动台报告基站的系统估计信息。 移动站预先在基站上接收系统估计信息,以便不经由中继装置等从无线通信系统A向无线通信系统B的电缆连接进行有效的切换。
    • 5. 发明授权
    • Sampling mixer, filter device, and radio device
    • 采样混频器,滤波器和无线电设备
    • US08179185B2
    • 2012-05-15
    • US13115398
    • 2011-05-25
    • Yoshifumi HosokawaNoriaki SaitoKatsuaki AbeKentaro MiyanoYasuyuki Naito
    • Yoshifumi HosokawaNoriaki SaitoKatsuaki AbeKentaro MiyanoYasuyuki Naito
    • G06G7/12
    • H03D7/125H03H15/00
    • A sampling mixer includes TAs (transconductance amplifiers), an in-phase mixer section connected to the TA and the TA, an opposite-phase mixer section connected in parallel with the in-phase mixer section, and a signal generator for generating a control signal for the in-phase mixer section and the opposite-phase mixer section respectively. The IIR filter using signals that underwent a current conversion by using the different transconductances is constructed, so that the filter characteristic can be designed by a weighting of the transconductance in addition to a capacitance ratio. As a result, the wide-band filter characteristic and the band-pass filter characteristic can be obtained, and deterioration of the receiving sensitivity can be suppressed by designing the filter characteristic suitable for the radio communication system.
    • 采样混频器包括TA(跨导放大器),连接到TA和TA的同相混频器部分,与同相混频器部分并联连接的反相混频器部分和用于产生控制信号的信号发生器 分别用于同相混合器部分和反相混合器部分。 构成使用通过使用不同的跨导进行电流转换的信号的IIR滤波器,从而除了电容比之外,可以通过加权跨导来设计滤波器特性。 结果,可以获得宽带滤波器特性和带通滤波器特性,并且可以通过设计适合于无线电通信系统的滤波特性来抑制接收灵敏度的劣化。
    • 7. 发明授权
    • Sampling filter apparatus
    • 取样过滤装置
    • US08145175B2
    • 2012-03-27
    • US12680326
    • 2008-09-25
    • Kentaro MiyanoYoshifumi HosokawaKatsuaki AbeNoriaki SaitoKiyomichi Araki
    • Kentaro MiyanoYoshifumi HosokawaKatsuaki AbeNoriaki SaitoKiyomichi Araki
    • H04B1/10
    • H03H19/004H03H15/00
    • The sampling filter apparatus 100 includes the first sampling switch 130, the second sampling switch 131, the first integrator 1500 for integrating the charge input from the first sampling switch, the second integrator 1501 for integrating the charge input from the second sampling switch, a plurality of integrators connected to both of the first integrator and the second integrator via a charging switch, respectively, the control section 140, a plurality of charging switches, and a plurality of discharge switches. A charge input from the sampling switch 130, a charge accumulated in the capacitor 1500 and a charge accumulated in a capacitor 1510 are shared by the capacitor 1500, the capacitor 1510 and the capacitor 1530, and the charge accumulated in the capacitor 1530 is output.
    • 采样滤波器装置100包括第一采样开关130,第二采样开关131,用于对从第一采样开关输入的电荷进行积分的第一积分器1500,用于对从第二采样开关输入的电荷进行积分的第二积分器1501, 分别通过充电开关连接到第一积分器和第二积分器两者的积分器,控制部分140,多个充电开关和多个放电开关。 从采样开关130输入的电荷,积累在电容器1500中的电荷和电容器1510中累积的电荷被电容器1500,电容器1510和电容器1530共用,并且输出积累在电容器1530中的电荷。
    • 8. 发明授权
    • Sampling filter apparatus and wireless communication apparatus
    • 采样滤波装置和无线通信装置
    • US08111741B2
    • 2012-02-07
    • US12373860
    • 2007-10-15
    • Kentaro MiyanoYoshifumi HosokawaKatsuaki AbeAkihiko MatsuokaNoriaki Saito
    • Kentaro MiyanoYoshifumi HosokawaKatsuaki AbeAkihiko MatsuokaNoriaki Saito
    • H03H7/30
    • H03H15/00G11C27/024H03H19/00
    • The present invention has an object to provide a sampling filter apparatus and a wireless communication apparatus, which are capable of changing a filter characteristic without employing complex waveforms as control signals, and also, capable of performing filtering process operations without performing a decimation, while utilizing a wide frequency space. A sampling filter apparatus 100 includes a controller 140, a plurality of integrators 150 to 154, a plurality of switches 130, 160 to 164, 170 to 174, 180 to 184, and a plurality of voltage/current converters 120 to 123. An inputted current is stored in four pieces of integrators selected among the plurality of integrators 150 to 154 by one clock, and electric charges which have been stored from four preceding clocks up to one preceding clock are added to each other so as to output the added electric charges from the remaining one integrator. When electric charges are stored in the integrators 150 to 154 in each clock, since the inputted current is switched, the electric charges to be outputted can be weighted, and thus, a filter characteristic is changed.
    • 本发明的目的是提供一种采样滤波器装置和无线通信装置,其能够在不使用复杂波形作为控制信号的情况下改变滤波器特性,并且还可以在不执行抽取的情况下执行滤波处理操作,同时利用 宽频率空间。 采样滤波器装置100包括控制器140,多个积分器150至154,多个开关130,160至164,170至174,180至184以及多个电压/电流转换器120至123.输入 将电流存储在多个积分器150至154中选择的四个积分器中一个时钟,并且从四个先前时钟直到一个先前时钟存储的电荷彼此相加,以便输出相加的电荷 从剩下的一个积分器。 当在每个时钟中积分器150至154中存储电荷时,由于输入的电流被切换,所以要输出的电荷可被加权,从而改变滤波器特性。
    • 9. 发明授权
    • Sampling filter device
    • 取样过滤装置
    • US08711917B2
    • 2014-04-29
    • US12812655
    • 2009-01-16
    • Satoshi TsukamotoNoriaki SaitoKatsuaki AbeKentaro MiyanoYoshifumi HosokawaYasuyuki Naito
    • Satoshi TsukamotoNoriaki SaitoKatsuaki AbeKentaro MiyanoYoshifumi HosokawaYasuyuki Naito
    • H03H7/30H03H7/40H03K5/159
    • H03H19/004
    • A sampling filter device wherein the filter characteristic is variable without using a control signal of a complicated waveform is provided. A sampling filter device 105 has integration capacitors 130 and 131, an integration time adjustment section 180, and a plurality of switches 100, 101, 110, and 111. Input current is integrated in different time duration with one clock and is stored in the integration capacitors 130 and 131 and charges stored in the integration capacitor from several clocks before to one clock before are added and the result is output. When charge is stored in the integration capacitors 130 and 131 with each clock, the integration time duration is changed, whereby it is made possible to weight and add output charge and the filter characteristic changes.
    • 提供了一种采样滤波器装置,其中滤波器特性是可变的,而不使用复杂波形的控制信号。 采样滤波器装置105具有积分电容器130和131,积分时间调整部分180和多个开关100,101,110和111.输入电流在一个时钟内以不同的持续时间被积分并被存储在积分 电容器130和131以及存储在积分电容器中的电荷从加到之前的一个时钟之前的几个时钟相加,并且输出结果。 当在每个时钟存储积分电容器130和131中的电荷时,积分持续时间被改变,从而可以对输出电荷进行加权和增加并且滤波器特性改变。
    • 10. 发明授权
    • Sampling mixer, filter device, and radio device
    • 采样混频器,滤波器和无线电设备
    • US07973586B2
    • 2011-07-05
    • US12532530
    • 2008-03-17
    • Yoshifumi HosokawaNoriaki SaitoKatsuaki AbeKentaro MiyanoYasuyuki Naito
    • Yoshifumi HosokawaNoriaki SaitoKatsuaki AbeKentaro MiyanoYasuyuki Naito
    • G06G7/12
    • H03D7/125H03H15/00
    • A sampling mixer includes TAs (transconductance amplifiers), an in-phase mixer section connected to the TA and the TA, an opposite-phase mixer section connected in parallel with the in-phase mixer section, and a signal generator for generating a control signal for the in-phase mixer section and the opposite-phase mixer section respectively. The IIR filter using signals that underwent a current conversion by using the different transconductances is constructed, so that the filter characteristic can be designed by a weighting of the transconductance in addition to a capacitance ratio. As a result, the wide-band filter characteristic and the band-pass filter characteristic can be obtained, and deterioration of the receiving sensitivity can be suppressed by designing the filter characteristic suitable for the radio communication system.
    • 采样混频器包括TA(跨导放大器),连接到TA和TA的同相混频器部分,与同相混频器部分并联连接的反相混频器部分和用于产生控制信号的信号发生器 分别用于同相混合器部分和反相混合器部分。 构成使用通过使用不同的跨导进行电流转换的信号的IIR滤波器,从而除了电容比之外,可以通过加权跨导来设计滤波器特性。 结果,可以获得宽带滤波器特性和带通滤波器特性,并且可以通过设计适合于无线电通信系统的滤波特性来抑制接收灵敏度的劣化。