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    • 1. 发明授权
    • Optical switch and method of using the same
    • 光开关及其使用方法
    • US07474818B2
    • 2009-01-06
    • US11355016
    • 2006-02-16
    • Hideto MomoseYuichi SawaiTakashi NaitoKensuke Matsui
    • Hideto MomoseYuichi SawaiTakashi NaitoKensuke Matsui
    • G02B6/26
    • G02F1/3515B82Y20/00G02F1/0126G02F1/0147G02F2202/36Y10T428/24942
    • An optical switch for switching signal light by allowing the signal light to obliquely enter a non-linear optical thin film 1 containing nano-crystal of metal oxide from a light path disposed in an optical material, and irradiating visible excitation light to the non-linear optical thin film to induce a total reflection phenomenon, thereby controlling the reflection and transmission behavior of the signal light, wherein a difference between a temperature coefficient factor of an optical index of the non-linear optical thin film and that of an optical index of the optical material which is in contact with the non-linear optical thin film is determined to be 15×10−6/° C. or below. Preferably, it is determined to be zero or substantially zero. Thus, an influence due to the temperature increase is cancelled, and a malfunction of switching can be avoided.
    • 一种光开关,用于通过使信号光从设置在光学材料中的光路倾斜地进入含有金属氧化物的纳米晶体的非线性光学薄膜1来切换信号光,并将可见激发光照射到非线性 导致全反射现象,从而控制信号光的反射和透射行为,其中非线性光学薄膜的光学折射率的温度系数因子与光学折射率的差异 与非线性光学薄膜接触的光学材料被确定为15×10 -6 /℃或更低。 优选地,确定为零或基本为零。 因此,由于温度升高引起的影响被消除,并且可以避免切换故障。
    • 2. 发明申请
    • Optical switch and method of using the same
    • 光开关及其使用方法
    • US20060222834A1
    • 2006-10-05
    • US11355016
    • 2006-02-16
    • Hideto MomoseYuichi SawaiTakashi NaitoKensuke Matsui
    • Hideto MomoseYuichi SawaiTakashi NaitoKensuke Matsui
    • B32B7/02
    • G02F1/3515B82Y20/00G02F1/0126G02F1/0147G02F2202/36Y10T428/24942
    • An optical switch for switching signal light by allowing the signal light to obliquely enter a non-linear optical thin film 1 containing nano-crystal of metal oxide from a light path disposed in an optical material, and irradiating visible excitation light to the non-linear optical thin film to induce a total reflection phenomenon, thereby controlling the reflection and transmission behavior of the signal light, wherein a difference between a temperature coefficient factor of an optical index of the non-linear optical thin film and that of an optical index of the optical material which is in contact with the non-linear optical thin film is determined to be 15×10−6/° C. or below. Preferably, it is determined to be zero or substantially zero. Thus, an influence due to the temperature increase is cancelled, and a malfunction of switching can be avoided.
    • 一种光开关,用于通过使信号光从设置在光学材料中的光路倾斜地进入含有金属氧化物的纳米晶体的非线性光学薄膜1来切换信号光,并将可见激发光照射到非线性 导致全反射现象,从而控制信号光的反射和透射行为,其中非线性光学薄膜的光学折射率的温度系数因子与光学折射率的差异 与非线性光学薄膜接触的光学材料被确定为15×10 -6 /℃或更低。 优选地,确定为零或基本为零。 因此,由于温度升高引起的影响被消除,并且可以避免切换故障。
    • 3. 发明授权
    • Optical transceiver
    • 光收发器
    • US08045860B2
    • 2011-10-25
    • US12318526
    • 2008-12-30
    • Kensuke MatsuiTakahiro Fujimoto
    • Kensuke MatsuiTakahiro Fujimoto
    • H04B10/00
    • H04B10/40
    • An optical transceiver stores an output A/D value which is A/D-converted from reference voltage in an EEPROM as correction data in preparing the optical transceiver. The optical transceiver, receiving a request for outputting a monitored value from an external device connected therewith, calculates a variation based on difference between the output A/D value which is A/D-converted from the reference voltage at the timing when the request for outputting the monitored value is received and the correction data stored in the EEPROM. Then, the optical transceiver uses the calculated variation to convert current of light-input power which is input thereinto into voltage, amplify the voltage, and A/D-convert the voltage to thereby correct the output A/D value. The optical transceiver outputs the corrected A/D value to the connected external device as the monitored value.
    • 光收发器将在EEPROM中的参考电压进行A / D转换的输出A / D值存储在准备光收发器中作为校正数据。 从收发与外部连接的外部装置输出监视值的请求的光收发信机,根据在请求的时刻的基准电压的A / D转换后的输出A / D值之差, 输出监视值并将修正数据存储在EEPROM中。 然后,光收发器使用计算的变化将输入的光输入功率的电流转换为电压,放大电压,并对电压进行A / D转换,从而校正输出A / D值。 光收发器将校正的A / D值作为监视值输出到连接的外部设备。
    • 4. 发明申请
    • Optical transmitter and method for controlling optical transmitter
    • 光发射机和光发射机控制方法
    • US20070160374A1
    • 2007-07-12
    • US11403610
    • 2006-04-13
    • Kensuke MatsuiTetsuya KiyonagaTakahiro FujimotoHiroshi Yamada
    • Kensuke MatsuiTetsuya KiyonagaTakahiro FujimotoHiroshi Yamada
    • H04B10/04
    • H04B10/504
    • An optical transmitter includes a laser diode drive circuit for driving a laser diode in accordance with a laser diode current that superimposes a pilot signal on a “0” logic level and a “1” logic level of a transmission signal, the pilot signal having a low-frequency compared with the transmission signal, so as to become an opposite phase each other, a monitor circuit for monitoring an optical output of the laser diode, a filter circuit for extracting a low-frequency component of the pilot signal from an output of the monitor circuit, a phase compare circuit for comparing a phase of the low-frequency component of the pilot signal extracted by the filter circuit with a phase of the pilot signal, and a deterioration judgment circuit for judging whether or not the laser diode deteriorates in accordance with a comparison result of the phase compare circuit.
    • 光发射机包括:激光二极管驱动电路,用于根据激光二极管电流驱动激光二极管,激光二极管电流将导频信号叠加在“0”逻辑电平和“1”逻辑电平的传输信号上,该导频信号具有 低频与传输信号相比,以便成为相反的相位,用于监视激光二极管的光输出的监视电路,用于从导频信号的输出中提取导频信号的低频分量的滤波电路 监视电路,用于将由滤波电路提取的导频信号的低频分量的相位与导频信号的相位进行比较的相位比较电路,以及用于判断激光二极管是否劣化的劣化判断电路 根据相位比较电路的比较结果。
    • 8. 发明申请
    • Optical transceiver
    • 光收发器
    • US20090297160A1
    • 2009-12-03
    • US12318526
    • 2008-12-30
    • Kensuke MatsuiTakahiro Fujimoto
    • Kensuke MatsuiTakahiro Fujimoto
    • H04B10/00
    • H04B10/40
    • An optical transceiver stores an output A/D value which is A/D-converted from reference voltage in an EEPROM as correction data in preparing the optical transceiver. The optical transceiver, receiving a request for outputting a monitored value from an external device connected therewith, calculates a variation based on difference between the output A/D value which is A/D-converted from the reference voltage at the timing when the request for outputting the monitored value is received and the correction data stored in the EEPROM. Then, the optical transceiver uses the calculated variation to convert current of light-input power which is input thereinto into voltage, amplify the voltage, and A/D-convert the voltage to thereby correct the output A/D value. The optical transceiver outputs the corrected A/D value to the connected external device as the monitored value.
    • 光收发器将在EEPROM中的参考电压进行A / D转换的输出A / D值存储在准备光收发器中作为校正数据。 从收发与外部连接的外部装置输出监视值的请求的光收发信机,根据在请求的时刻的基准电压的A / D转换后的输出A / D值之差, 输出监视值并将修正数据存储在EEPROM中。 然后,光收发器使用计算的变化将输入的光输入功率的电流转换为电压,放大电压,并对电压进行A / D转换,从而校正输出A / D值。 光收发器将校正的A / D值作为监视值输出到连接的外部设备。