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
    • Karaoke equipment
    • 卡拉OK设备
    • US5315662A
    • 1994-05-24
    • US909690
    • 1992-07-07
    • Kazuhiro HayashiJun HondaMichitaka FujitaKunihiro Miyata
    • Kazuhiro HayashiJun HondaMichitaka FujitaKunihiro Miyata
    • G10K15/04G10H1/36G10H1/46G11B20/00H03G1/00H03G3/00H03G3/10H03G3/20H03G3/30H03G3/32
    • H03G3/32G10H1/361G10H1/46H03G1/0035H03G3/001
    • A karaoke device which automatically returns the level of a microphone volume to a presettled level at the beginning or end of individual music pieces, and which is capable of gradually reducing the gain of the microphone amplifier by a predetermined value when an output volume from the microphone amplifier becomes excessively loud during the playing of a music piece. The karaoke device includes an adjustor for adjusting the level of the microphone volume in accordance with a manual instruction or an instruction from a control circuit; a level detector for detecting when the volume level is greater than a predetermined level; a music piece detector for detecting a beginning or end of each music piece; and a control circuit that compares a standard volume level and the volume level of when a detected signal is outputted from the music piece detector, and controls the adjustor to equalize the output level to the previously stored standard level. According to the second aspect of the invention, a comparator compares the output level from the adjustor and a predetermined reference level to lower the output level until the music piece terminates.
    • 一种卡拉OK装置,其在单个乐曲的开始或结束时自动地将麦克风音量的水平返回到预设电平,并且当来自麦克风的输出音量时能够将麦克风放大器的增益逐渐降低预定值 播放音乐时放大器变得过大。 卡拉OK装置包括用于根据手动指令或来自控制电路的指令来调节麦克风音量的调节器; 电平检测器,用于检测音量水平何时大于预定电平; 用于检测每个乐曲的开始或结束的音乐片检测器; 以及控制电路,其比较从音乐片检测器输出检测信号时的标准音量和音量,并且控制调节器将输出电平与先前存储的标准电平相等。 根据本发明的第二方面,比较器将来自调节器的输出电平和预定参考电平进行比较以降低输出电平,直到音乐片段终止。
    • 4. 发明授权
    • Load detection for switched-mode power converters
    • 开关式电源转换器负载检测
    • US08638088B2
    • 2014-01-28
    • US13019490
    • 2011-02-02
    • Jun HondaJong-Deog Jeong
    • Jun HondaJong-Deog Jeong
    • G01R25/00
    • H03F3/217H02M3/1588H02M2001/0009Y02B70/1466
    • In one embodiment, a method for detecting a load in a switched-mode power converter is provided. The switched-mode power converter includes high and low-side power switches which are configured to be driven respectively by high and low-side drive signals to provide a switching voltage. The high and low-side drive signals include a plurality of dead-time periods. The method includes monitoring a waveform of the switching voltage and at least one of the high and low-side drive signals. The monitored waveform of the switching voltage is compared to the monitored waveform of the at least one of the high and low-side drive signals to determine whether the switching voltage is high or low during at least one of the dead-time periods. A current measurement of the load is determined based on whether the switching voltage is high or low during the at least one of the dead-time periods.
    • 在一个实施例中,提供了用于检测开关模式功率转换器中的负载的方法。 开关式功率转换器包括被分别由高侧和低侧驱动信号驱动以提供开关电压的高侧和低侧功率开关。 高低侧驱动信号包括多个死区时间。 该方法包括监视开关电压的波形和高侧和低侧驱动信号中的至少一个。 将开关电压的监视波形与高侧和低侧驱动信号中的至少一个驱动信号的监视波形进行比较,以在至少一个死区时间段内确定开关电压是高电平还是低电平。 基于在至少一个死区时间段期间开关电压是高还是低来确定负载的当前测量。
    • 5. 发明授权
    • Bi-directional current sensing by monitoring VS voltage in a half or full bridge circuit
    • 通过监测半桥或全桥电路中的VS电压进行双向电流检测
    • US07548029B2
    • 2009-06-16
    • US11144205
    • 2005-06-02
    • Xiao-Chang ChengJun HondaDana Wilhelm
    • Xiao-Chang ChengJun HondaDana Wilhelm
    • G05F1/00
    • G01R17/10G01R19/0092G01R31/40H02M2001/0009
    • An apparatus and method for determining the output current in a bridge-connected switched transistor output circuit including high-side and low-side transistor switches, typically MOSFETS. The voltage at a common node between the high and low side switches is sensed, and offset in a first circuit by a fixed amount so that the voltage is positive for all positive or negative output currents of interest. The output current is actually determined in a second circuit which receives the offset voltage signal only predetermined times in relation to the on-time of the low side switch. The first circuit includes a current reference source/level shifter and a current mirror circuit formed of a plurality of transistors in a particular circuit configuration. The second circuit is coupled to an output of the first circuit by a gated NMOS transistor at the desired times to provide the current measurement signal. The second circuit includes a second current reference source having substantially the same electrical characteristics as the first current reference source, and a second plurality of transistors respectively matched to the input side circuit transistors, and connected in the same circuit configuration. In the second circuit, the offset signal is compared with high and low reference signals to provide an indication if the output current exceeds an overcurrent limit, either positively or negatively. The sensing circuit is advantageously integrated with the output circuit gate driver in a single IC.
    • 一种用于确定桥接开关晶体管输出电路中的输出电流的装置和方法,该电路包括高侧和低侧晶体管开关,典型地是MOSFET。 感测高侧和低侧开关之间的公共节点处的电压,并且在第一电路中偏移固定的量,使得所有感兴趣的正或负输出电流的电压为正。 输出电流实际上是在相对于低侧开关的导通时间仅接收到预定时间的偏移电压信号的第二电路中确定的。 第一电路包括电流参考源/电平移位器和由特定电路配置中的多个晶体管形成的电流镜电路。 第二电路在期望的时间通过门控NMOS晶体管耦合到第一电路的输出,以提供电流测量信号。 第二电路包括具有与第一电流参考源基本相同的电特性的第二电流参考源和分别与输入侧电路晶体管匹配并以相同电路配置连接的第二多个晶体管。 在第二电路中,将偏移信号与高和低参考信号进行比较,以提供输出电流是否超过过电流极限的指示,无论是正极还是负极。 感测电路有利地与单个IC中的输出电路栅极驱动器集成。
    • 6. 发明申请
    • CLASS D AMPLIFIER CIRCUIT WITH BI-DIRECTIONAL POWER SWITCH
    • 具有双向电源开关的D类放大器电路
    • US20080297248A1
    • 2008-12-04
    • US12118320
    • 2008-05-09
    • Jun Honda
    • Jun Honda
    • H03F3/217
    • H03F3/2173H02M7/21H02M7/4807H02M2007/4815H03F3/38Y02B70/1441
    • A Class D amplifier circuit in accordance with an embodiment of the present application includes a converter stage operable to provide a desired AC voltage and a Class D amplifier stage, connected to the converter stage. The Class D amplifier stage includes a first bi-directional switch connected to the converter stage, a second bi-directional switch, connected in series with the first bi-directional switch, wherein the first and second bi-directional switches are connected across the desired AC voltage provided by the converter stage and a controller operable to turn the first and second bi-directional switches ON and OFF such that a desired voltage is provided at a midpoint node positioned between the first bi-directional switch and the second bi-directional switch.
    • 根据本申请的实施例的D类放大器电路包括可操作以提供连接到转换器级的期望AC电压和D类放大器级的转换器级。 D类放大器级包括连接到转换器级的第一双向开关,与第一双向开关串联连接的第二双向开关,其中第一和第二双向开关连接在期望的 由转换器级提供的AC电压和可操作以使第一和第二双向开关接通和断开的控制器,使得在位于第一双向开关和第二双向开关之间的中点节点处提供期望电压 。
    • 8. 发明申请
    • GATE DRIVE FOR LOWER SWITCHING NOISE EMISSION
    • 用于下开关噪声排放的门控驱动
    • US20070109707A1
    • 2007-05-17
    • US11560066
    • 2006-11-15
    • Jun Honda
    • Jun Honda
    • H02H3/00
    • H03K19/00361H03K17/166
    • A gate drive circuit for driving the gate of a power transistor switch comprising a gate drive sourcing circuit supplying gate drive current to the power transistor switch, the gate drive sourcing circuit initially providing a first current to the gate of the power transistor switch and then providing a second current to the gate of the power transistor switch; a circuit for driving the gate drive sourcing circuit, the circuit having a first input for driving the gate drive sourcing circuit to turn on the power transistor switch by providing the first current, the circuit further having a second input coupled to a voltage across the power transistor switch and being controlled by the second input to cause the gate drive sourcing circuit to provide the second current when the voltage across the power transistor switch begins to drop as the power transistor switch begins to turn on.
    • 一种用于驱动功率晶体管开关的栅极的栅极驱动电路,包括向功率晶体管开关提供栅极驱动电流的栅极驱动源电路,栅极驱动源电路首先向功率晶体管开关的栅极提供第一电流,然后提供 第二电流到功率晶体管开关的栅极; 用于驱动栅极驱动源电路的电路,该电路具有用于驱动栅极驱动源电路以通过提供第一电流来接通功率晶体管开关的第一输入,该电路还具有耦合到跨过功率的电压的第二输入 晶体管开关并由第二输入端控制,使得当功率晶体管开关导通时,功率晶体管开关两端的电压开始下降时,门驱动源电路提供第二电流。
    • 9. 发明申请
    • Gate driver with programmable dead-time insertion
    • 门驱动器,具有可编程的死区时间插入
    • US20060054938A1
    • 2006-03-16
    • US11221240
    • 2005-09-06
    • Jun HondaXiao-Chang Cheng
    • Jun HondaXiao-Chang Cheng
    • H01L27/148
    • H03K17/08122H03K5/1515H03K19/0013
    • A dead-time generator for incorporation in an integrated circuit wherein the integrated circuit includes a high side and low side gate driver and wherein the high side and low side gate driver drive output switches such that a dead-time is provided between on times of the output switches, the dead-time generator comprising a circuit internal to the integrated circuit having an external terminal at which a dead-time setting component is connected, and wherein the dead-time generator comprises a circuit for providing a discrete dead-time for a range of dead-time setting values at the dead-time setting terminal and wherein, for a plurality of ranges of dead-time setting values at the dead-time setting terminal, the dead-time generator generates an associated plurality of discrete dead-times.
    • 一种用于集成在集成电路中的死区时间发生器,其中所述集成电路包括高侧和低侧栅极驱动器,并且其中所述高侧和低侧栅极驱动器驱动输出开关使得在导通时间之间提供死区时间 输出开关,所述死区时间发生器包括所述集成电路内部的电路,所述电路具有连接死区时间设置组件的外部端子,并且其中所述死区时间发生器包括用于为 死区时间设定终端的死区时间设定值的范围,其中,对于死区时间设定终端的死区时间设定值的多个范围,死区时间发生器生成相关的多个离散死时间 。