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    • 2. 发明授权
    • Pluggable optical network unit capable of status indication
    • 可插拔光网络单元,能够进行状态指示
    • US07957650B2
    • 2011-06-07
    • US12146638
    • 2008-06-26
    • Fulin PanWen HuangWen Li
    • Fulin PanWen HuangWen Li
    • H04B10/00
    • H04B10/40
    • A pluggable optical network unit includes a transceiver assembly configured to produce a first electrical signal in response to a first optical signal comprising reception signal data and to emit a second optical signal comprising transmission signal data in response to a second electrical signal. A data processing unit can extract the reception signal data from the first electrical signal and produce the second electrical signal in response to the transmission signal data. An interface unit can receive the reception signal data from the data processing unit, serialize the reception signal data, and send a third electric signal comprising the reception signal data to a network device that the pluggable optical network unit is plugged into. A management unit can modify the third electric signal in accordance to the operation status of at least one of the transceiver assembly or the data processing unit.
    • 可插拔光网络单元包括收发器组件,其被配置为响应于包括接收信号数据的第一光信号产生第一电信号,并响应于第二电信号发射包括传输信号数据的第二光信号。 数据处理单元可以从第一电信号提取接收信号数据,并响应于传输信号数据产生第二电信号。 接口单元可以从数据处理单元接收接收信号数据,串行接收信号数据,并将包含接收信号数据的第三电信号发送到可插拔光网络单元插入的网络设备。 管理单元可以根据收发器组件或数据处理单元中的至少一个的操作状态修改第三电信号。
    • 3. 发明授权
    • Intelligent optical systems and methods for optical-layer management
    • 智能光学系统和光层管理方法
    • US07933518B2
    • 2011-04-26
    • US12035327
    • 2008-02-21
    • Wen LiJianhui ZhouWen HuangFulin Pan
    • Wen LiJianhui ZhouWen HuangFulin Pan
    • H04B10/08
    • H04B10/40
    • An integrated optical transceiver includes an optical receiver that produces a first electrical signal at a reception electrical interface in response to a first optical signal, an optical transmitter that emits a second optical signal in response to a second electrical signal received at a transmission electrical interface, a first optical branching device that receives the first optical signal at an reception optical interface and to direct at least a portion of the first optical signal to the optical receiver, and a second optical branching device that directs the second optical signal to an transmission optical interface. The first optical branching device directs at least a portion of the first optical signal to the second optical branching device. The second optical branching device directs the portion of the first optical signal received from the first optical branching device to the transmission optical interface.
    • 集成光收发器包括:光接收器,其响应于第一光信号在接收电接口处产生第一电信号;响应于在传输电接口接收的第二电信号发射第二光信号的光发射机, 第一光分支装置,其在接收光接口处接收所述第一光信号并将所述第一光信号的至少一部分引导到所述光接收器;以及第二光分支装置,其将所述第二光信号引导到透射光接口 。 第一光分路装置将第一光信号的至少一部分引导到第二光分支装置。 第二光分支装置将从第一光分支装置接收的第一光信号的部分引导到传输光接口。
    • 5. 发明申请
    • Power saving method and system thereof
    • 省电方法及其系统
    • US20070162772A1
    • 2007-07-12
    • US11409974
    • 2006-04-25
    • Wen HuangChung-Ching HuangHao LinYeh Cho
    • Wen HuangChung-Ching HuangHao LinYeh Cho
    • G06F1/00
    • G06F1/3203
    • A power saving method and system thereof is disclosed. When the central processing unit is under a non-snooping sleep state and a peripheral device sends a bus master request, a chip will drive the central processing unit waking from the non-snooping sleep state and entering a system management mode for executing an interrupt service routine that makes the central processing unit in halt status. The central processing unit is then driven to enter a snooping sleep state for snooping the bus master request. After the execution of the bus master request, the chip will drive the central processing unit to leave the snooping sleep state and return to the non-snooping sleep state for power consumption conservation.
    • 公开了一种省电方法及其系统。 当中央处理单元处于非窥探睡眠状态并且外围设备发送总线主机请求时,芯片将驱动中央处理单元从非窥探睡眠状态唤醒并进入用于执行中断服务的系统管理模式 使中央处理单元处于停止状态的程序。 然后中央处理单元被驱动以进入窥探睡眠状态以窥探总线主控请求。 执行总线主机请求后,芯片将驱动中央处理单元离开窥探睡眠状态,并返回到非窥探睡眠状态,以实现功耗节省。
    • 7. 发明申请
    • Automatic color-sync polarity control
    • 自动色同步极性控制
    • US20070040945A1
    • 2007-02-22
    • US11205600
    • 2005-08-17
    • Wen HuangBrad DelangheAleksandor Movshovich
    • Wen HuangBrad DelangheAleksandor Movshovich
    • H04N9/66
    • H04N9/465
    • A system and method for automatically controlling color synchronization polarity during video decoding. Various aspects of the present invention may comprise at least one module that is adapted to monitor color synchronization polarity at a plurality of instances over a period of time. The at least one module may also, for example, be adapted to generate a sequence of signals indicative of the color synchronization polarity correctness at the plurality of instances. The at least one module may additionally, for example, be adapted to statistically analyze the sequence of signals. The at least one module may further, for example, be adapted to determine, based at least in part on the statistical analysis of the sequence of signals, whether color synchronization polarity is correct. The at least one module may still further, for example, be adapted to control color synchronization polarity based, at least in part, on the polarity correctness determination.
    • 一种用于在视频解码期间自动控制颜色同步极性的系统和方法。 本发明的各个方面可以包括至少一个模块,其适于在一段时间内监视多个实例处的颜色同步极性。 所述至少一个模块也可以例如适于产生指示多个实例处的颜色同步极性正确性的信号序列。 例如,至少一个模块可以另外适于统计分析信号序列。 至少一个模块可以进一步例如适于至少部分地基于信号序列的统计分析来确定颜色同步极性是否正确。 至少一个模块还可以进一步例如适于至少部分地基于极性正确性确定来控制颜色同步极性。
    • 8. 发明授权
    • Method and apparatus for connecting two-wire serial interface and single-wire serial interface with high transmission speed
    • 用于连接双线串行接口和高速传输速度的单线串行接口的方法和装置
    • US06735657B1
    • 2004-05-11
    • US09608420
    • 2000-06-30
    • Peter FalkJoseph C. HarrowWen Huang
    • Peter FalkJoseph C. HarrowWen Huang
    • G06F1314
    • G06F13/4286H04L5/1461
    • A two-wire interface having a receive wire and a transmit wire is coupled for communication with a single-wire serial interface to provide for relatively high-speed data transmission. In one aspect, controllable buffers are coupled to the transmit and receive lines of the two-wire serial interface. The outputs from the two buffers are coupled to a commnon line which is also coupled to the single line of the single-wire interface. The transmit buffer and/or read buffer and/or transmission from the single-wire interface are controlled, e.g., such as using control signals provided by software, such that the transmit buffer from the two-wire interface is enabled only when transmission from the single-wire interface is disabled and transmission from the single-wire interface is permitted only when the transmit buffer of the two-wire interface is disabled. By this type of system, it is possible to avoid coupling which involves a pull-up transistor and the like, avoiding lengthening the rise time or fall time of signals and providing the potential for relatively high data transmission rates such as 1 Mbps or more.
    • 具有接收线和发射线的双线接口被耦合以与单线串行接口通信以提供相对高速的数据传输。 在一个方面,可控缓冲器耦合到双线串行接口的发送和接收线路。 来自两个缓冲器的输出耦合到一个通信线,该线也耦合到单线接口的单线。 来自单线接口的发送缓冲器和/或读取缓冲器和/或传输被控制,例如使用由软件提供的控制信号,使得来自两线接口的发送缓冲器仅在来自 禁止单线接口,只允许双线接口的发送缓冲区禁止从单线接口传输。 通过这种类型的系统,可以避免涉及上拉晶体管等的耦合,避免延长信号的上升时间或下降时间,并提供诸如1Mbps或更高的相对高的数据传输速率的潜力。
    • 9. 发明授权
    • Angle-adjustable auxiliary vehicle mirror
    • 角度可调辅助车镜
    • US08210696B2
    • 2012-07-03
    • US12583741
    • 2009-08-26
    • Wen Huang
    • Wen Huang
    • G02B7/182A47G1/24B60R1/02
    • B60R1/025
    • An angle-adjustable auxiliary vehicle mirror includes a base and a mirror. The base has a concave rest with a threaded hole. The mirror fits in a concave chamber of the base, with an auxiliary lens combined on top, having an arc-shaped convex formed at the bottom to engage with the concave rest. An opening is bored in the arc-shaped convex. A washer with a through hole is put on the arc-shaped convex. A screw is orderly inserted through the through hole and the opening to engage with the threaded hole to keep the mirror positioned, with the arc-shaped convex contacting with the concave rest. With the screw not tightly engaged with the mirror, the arc-shaped convex can axially slide on the concave rest to alter the angle of the mirror.
    • 角度可调的辅助车辆反射镜包括基座和反射镜。 基座具有带有螺纹孔的凹形支架。 镜子装在底座的凹腔中,辅助镜头组合在上面,具有形成在底部的弧形凸起,以与凹形托架啮合。 一个开口在弧形凸起无聊。 具有通孔的垫圈放在弧形凸起上。 螺钉有序地插入穿过通孔和开口以与螺纹孔接合以保持反射镜定位,其中弧形凸起与凹形凹部接触。 由于螺丝没有与镜子紧密接合,所以弧形凸起可以在凹座上轴向滑动以改变反射镜的角度。
    • 10. 发明申请
    • INTELLIGENT OPTICAL SYSTEMS AND METHODS FOR OPTICAL-LAYER MANAGEMENT
    • 智能光学系统和光层管理方法
    • US20090214221A1
    • 2009-08-27
    • US12035327
    • 2008-02-21
    • Wen LiJianhui ZhouWen HuangFulin Pan
    • Wen LiJianhui ZhouWen HuangFulin Pan
    • H04B10/00
    • H04B10/40
    • An integrated optical transceiver includes an optical receiver that produces a first electrical signal at a reception electrical interface in response to a first optical signal, an optical transmitter that emits a second optical signal in response to a second electrical signal received at a transmission electrical interface, a first optical branching device that receives the first optical signal at an reception optical interface and to direct at least a portion of the first optical signal to the optical receiver, and a second optical branching device that directs the second optical signal to an transmission optical interface. The first optical branching device directs at least a portion of the first optical signal to the second optical branching device. The second optical branching device directs the portion of the first optical signal received from the first optical branching device to the transmission optical interface.
    • 集成光收发器包括:光接收器,其响应于第一光信号在接收电接口处产生第一电信号;响应于在传输电接口接收的第二电信号发射第二光信号的光发射机, 第一光分支装置,其在接收光接口处接收所述第一光信号并将所述第一光信号的至少一部分引导到所述光接收器;以及第二光分支装置,其将所述第二光信号引导到透射光接口 。 第一光分路装置将第一光信号的至少一部分引导到第二光分支装置。 第二光分支装置将从第一光分支装置接收的第一光信号的部分引导到传输光接口。