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    • 31. 再颁专利
    • Apparatus and method for measurement for dynamic laser signals
    • 用于测量动态激光信号的装置和方法
    • USRE43685E1
    • 2012-09-25
    • US13048743
    • 2003-01-08
    • Jorge Sanchez
    • Jorge Sanchez
    • H01S3/30H01S3/00
    • A system contains a laser output measurement circuit used in a laser control system (210). The circuits contain a photodiode sensor (109), sample and hold amplifier (202), IC with synchronizer and delay circuits (206), and an analog to digital converter (204). The circuits measure the laser light output (107) while the laser Module (106) transmits signals. The measurement circuit tracks and stores the laser light output (107) signal using a Photodiode Sensor (109) and with a Sample/hold (202). The methods calculate the value of the laser light output (107) from mathematical relationships, which correlate the light output (107) of the laser Module (106) to the current value of the drive signal (100). Some of the distinguishing features in the present invention are 1) feedback information from the photodiode is obtained in a synchronous manner as a snapshot of the laser performance, and 2) the measurements are precise and calibrated, and 3) no disruption of the signal transmission occurs.
    • 一种系统包含用于激光控制系统(210)中的激光输出测量电路。 电路包含光电二极管传感器(109),采样和保持放大器(202),具有同步器和延迟电路(206)的IC以及模 - 数转换器(204)。 当激光模块(106)发射信号时,这些电路测量激光输出(107)。 测量电路使用光电二极管传感器(109)和采样/保持(202)来跟踪并存储激光输出(107)信号。 该方法根据将激光模块(106)的光输出(107)与驱动信号(100)的当前值相关联的数学关系计算出激光输出值(107)。 本发明的一些区别特征是1)作为激光性能的快照以同步方式获得来自光电二极管的反馈信息,以及2)测量精确和校准,以及3)信号传输不中断 发生。
    • 32. 发明授权
    • Method and firmware for controlling an inverter voltage by drive signal frequency
    • 用于通过驱动信号频率控制变频器电压的方法和固件
    • US08111012B2
    • 2012-02-07
    • US12042784
    • 2008-03-05
    • Jorge Sanchez
    • Jorge Sanchez
    • H05B37/02
    • H02P23/0077
    • A method and firmware for controlling an inverter voltage includes steps of receiving as input a digitized feedback signal representative of an inverter voltage that varies with frequency according to a transfer function, calculating a frequency of a digital switch control signal in firmware in an inverter voltage microcontroller by the transfer function from the digitized feedback signal to adjust the inverter voltage to a set point value, and generating the digital switch control signal having the calculated frequency by firmware in the inverter voltage microcontroller as output to generate the inverter voltage at the set point value.
    • 用于控制逆变器电压的方法和固件包括以下步骤:接收代表根据传递函数随频率变化的逆变器电压的数字化反馈信号,计算逆变器电压微控制器中的固件中的数字开关控制信号的频率 通过来自数字化反馈信号的传递函数将逆变器电压调整到设定值,并且通过在逆变器电压微控制器中的固件产生具有计算出的频率的数字开关控制信号作为输出,以产生设定值的逆变器电压 。
    • 33. 发明授权
    • Method and circuit for correcting a difference in light output at opposite ends of a fluorescent lamp array
    • 用于校正荧光灯阵列的相对端的光输出差异的方法和电路
    • US08004206B2
    • 2011-08-23
    • US12042753
    • 2008-03-05
    • Jorge Sanchez
    • Jorge Sanchez
    • H05B37/02
    • H05B41/2822
    • A method and electrical circuit corrects a difference in light output at opposite ends of a fluorescent lamp array. An electrical circuit for correcting a difference in light output at the ends of a fluorescent lamp array includes a microcontroller and firmware for generating a first pulse-width modulated inverter switch control signal having a first duty cycle that may be varied by computer program instructions executed by the microcontroller. An inverter bridge driver is coupled to the microcontroller for generating a switching signal for a first inverter bridge from the first pulse-width modulated inverter switch control signal to generate a first inverter voltage having a magnitude determined by the first duty cycle.
    • 一种方法和电路校正荧光灯阵列相对端的光输出差异。 用于校正荧光灯阵列端部的光输出差的电路包括微控制器和固件,用于产生具有第一占空比的第一脉冲宽度调制的反相器开关控制信号,该第一占空比可以由计算机程序指令改变,由 微控制器。 逆变器桥式驱动器耦合到微控制器,用于从第一脉冲宽度调制的逆变器开关控制信号产生用于第一逆变器桥的开关信号,以产生具有由第一占空比确定的幅度的第一反相器电压。
    • 35. 发明授权
    • Apparatus and method for measurement for dynamic laser signals
    • 用于动态激光信号测量的装置和方法
    • US07505498B2
    • 2009-03-17
    • US10513091
    • 2003-01-08
    • Jorge Sanchez
    • Jorge Sanchez
    • H01S3/00
    • H04B10/564H01S5/042H01S5/06808H01S5/06812H01S5/06825H01S5/06832H01S5/06835H04B10/077H04B10/07955H04B10/504
    • A system contains a laser output measurement circuit used in a laser control system (210). The circuits contain a photodiode sensor (109), sample and hold amplifier (202), IC with synchronizer and delay circuits (206), and an analog to digital converter (204). The circuits measure the laser light output (107) while the laser Module (106) transmits signals. The measurement circuit tracks and stores the laser light output (107) signal using a Photodiode Sensor (109) and with a Sample/hold (202). The methods calculate the value of the laser light output (107) from mathematical relationships, which correlate the light output (107) of the laser Module (106) to the current value of the drive signal (100). Some of the distinguishing features in the present invention are 1) feedback information from the photodiode is obtained in a synchronous manner as a snapshot of the laser performance, and 2) the measurements are precise and calibrated, and 3) no disruption of the signal transmission occurs.
    • 一种系统包含用于激光控制系统(210)中的激光输出测量电路。 电路包含光电二极管传感器(109),采样和保持放大器(202),具有同步器和延迟电路(206)的IC以及模 - 数转换器(204)。 当激光模块(106)发射信号时,这些电路测量激光输出(107)。 测量电路使用光电二极管传感器(109)和采样/保持(202)来跟踪并存储激光输出(107)信号。 该方法根据将激光模块(106)的光输出(107)与驱动信号(100)的当前值相关联的数学关系计算出激光输出值(107)。 本发明的一些区别特征是1)作为激光性能的快照以同步方式获得来自光电二极管的反馈信息,以及2)测量精确和校准,以及3)信号传输不中断 发生。
    • 36. 发明申请
    • METHOD AND CIRCUIT FOR CORRECTING A DIFFERENCE IN LIGHT OUTPUT AT OPPOSITE ENDS OF A FLUORESCENT LAMP ARRAY
    • 用于校正荧光灯阵列相对端的光输出差异的方法和电路
    • US20080315792A1
    • 2008-12-25
    • US12042753
    • 2008-03-05
    • Jorge Sanchez
    • Jorge Sanchez
    • H05B41/38
    • H05B41/2822
    • A method and electrical circuit corrects a difference in light output at opposite ends of a fluorescent lamp array. An electrical circuit for correcting a difference in light output at the ends of a fluorescent lamp array includes a microcontroller and firmware for generating a first pulse-width modulated inverter switch control signal having a first duty cycle that may be varied by computer program instructions executed by the microcontroller. An inverter bridge driver is coupled to the microcontroller for generating a switching signal for a first inverter bridge from the first pulse-width modulated inverter switch control signal to generate a first inverter voltage having a magnitude determined by the first duty cycle.
    • 一种方法和电路校正荧光灯阵列相对端的光输出差异。 用于校正荧光灯阵列端部的光输出差的电路包括微控制器和固件,用于产生具有第一占空比的第一脉冲宽度调制的反相器开关控制信号,该第一占空比可以由计算机程序指令改变,由 微控制器。 逆变器桥式驱动器耦合到微控制器,用于从第一脉冲宽度调制的逆变器开关控制信号产生用于第一逆变器桥的开关信号,以产生具有由第一占空比确定的幅度的第一反相器电压。
    • 37. 发明授权
    • Method for configuring a laser operating system
    • 激光操作系统的配置方法
    • US07154924B2
    • 2006-12-26
    • US10512931
    • 2003-01-13
    • Jorge Sanchez
    • Jorge Sanchez
    • H01S3/13
    • H04B10/695B23K26/064H01S5/06H01S5/0617H04B10/40
    • The present invention provides for a method for configuring a laser operating system. More specifically, the system utilizes a graphical user interface (GUI) to allow an operator to interact with an embedded controller and set parameters for an optical communications transceiver. The system adjusts parameters such as laser bias and modulation currents, wavelength, qualification tests, and file management. In other words, the GUI manages configurations of a transceiver operating system. The system provides for an efficient method to design a laser transceiver and to perform and manage qualification tests. The embedded controller may contain a real time operating system that controls multiple functions in the transceiver and an optical channel. The GUI interacts with an operating system to download embedded firmware into an embedded micro controller unit (MCU). Downloading of firmware allows for multiple special programs from different sources to be integrated.
    • 本发明提供一种用于配置激光操作系统的方法。 更具体地,系统利用图形用户界面(GUI)来允许操作者与嵌入式控制器交互并设置用于光通信收发器的参数。 系统调整参数,如激光偏置和调制电流,波长,鉴定测试和文件管理。 换句话说,GUI管理收发器操作系统的配置。 该系统提供了设计激光收发器并执行和管理资格测试的有效方法。 嵌入式控制器可以包含控制收发器和光通道中的多个功能的实时操作系统。 GUI与操作系统交互以将嵌入式固件下载到嵌入式微控制器单元(MCU)中。 固件的下载允许来自不同来源的多个特殊程序被集成。
    • 38. 发明申请
    • Apparatus and method for measurement for dynamic laser signals
    • 用于动态激光信号测量的装置和方法
    • US20060165139A1
    • 2006-07-27
    • US10513091
    • 2003-01-08
    • Jorge Sanchez
    • Jorge Sanchez
    • H01S3/13
    • H04B10/564H01S5/042H01S5/06808H01S5/06812H01S5/06825H01S5/06832H01S5/06835H04B10/077H04B10/07955H04B10/504
    • A system contains a laser output measurement circuit used in a laser control system (210). The circuits contain a photodiode (109), sample and hold amplifier (202), IC with synchronizer and delay circuits (206), and an analog to digital converter (204). The circuits measure the laser light output (107) while the laser Module (106) transmits signals. The measurement circuit tracks and stores the laser light output (107) signal using a Photodiode Sensor (109) and with a Sample/hold (202). The methods calculate the value of the laser light output (107) from mathematical relationships, which correlate the light output (107) of the laser Module (106) to the current value of the drive signal (100). Some of the distinguishing features in the present invention are 1) feedback information from the photodiode is obtained in a synchronous manner as a snapshot of the laser performance, and 2) the measurements are precise and calibrated, and 3) no disruption of the signal transmission occurs.
    • 一种系统包含用于激光控制系统(210)中的激光输出测量电路。 电路包含光电二极管(109),采样和保持放大器(202),具有同步器和延迟电路(206)的IC以及模 - 数转换器(204)。 当激光模块(106)发射信号时,这些电路测量激光输出(107)。 测量电路使用光电二极管传感器(109)和采样/保持(202)来跟踪并存储激光输出(107)信号。 该方法根据将激光模块(106)的光输出(107)与驱动信号(100)的当前值相关联的数学关系计算出激光输出值(107)。 本发明的一些区别特征是1)作为激光性能的快照以同步方式获得来自光电二极管的反馈信息,以及2)测量精确和校准,以及3)信号传输不中断 发生。
    • 40. 发明授权
    • Electro-optic system controller and method of operation
    • 电光系统控制器及操作方法
    • US06494370B1
    • 2002-12-17
    • US09517375
    • 2000-03-02
    • Jorge Sanchez
    • Jorge Sanchez
    • G06K710
    • G01R31/002G01R1/071H04B10/6911H04B10/693
    • A method for calibrating a laser module system includes the processes of connecting testing equipment used for laser calibration to the laser output; setting preamplifier gain to nominal; connecting input of preamplifier to ground; turning off the DC bias for laser; canceling the offset voltage of the preamplifier; recording the monitoring photodiode dark current; incrementing the DC bias to the laser; reading PL; computing dPL/dIL; setting the DC bias to threshold; recording PLTH; recording the photodiode current IPT; recording the temperature of laser module; connecting the preamplifier to provide a VREF input signal to the laser module input increment preamplifier gain G1 while reading power output PL with instrument; determining the preamplifier gain GF needed to obtain full scale output of laser power (PLM); determining the corresponding photodiode current for above condition IPM; calculating the effective responsivity Reff of the module containing the laser and the photodiode; and storing the effective module responsivity Reff in memory.
    • 用于校准激光模块系统的方法包括将用于激光校准的测试设备连接到激光输出的过程; 将前置放大器的增益设置为标称值; 将前置放大器的输入连接到地; 关闭激光直流偏置; 取消前置放大器的失调电压; 记录监控光电二极管暗电流; 将直流偏压增加到激光器; 阅读PL; 计算dPL / dIL; 将DC偏置设置为阈值; 记录PLTH; 记录光电二极管电流IPT; 记录激光模块的温度; 连接前置放大器以在用仪器读取功率输出PL时向激光模块输入增量前置放大器增益G1提供VREF输入信号; 确定获得激光功率满量程输出(PLM)所需的前置放大器增益GF; 确定上述条件IPM的相应光电二极管电流; 计算包含激光和光电二极管的模块的有效响应度Reff; 并将有效的模块响应度Reff存储在存储器中。