Claims
- 1. An optical transmitter, comprising:
a semiconductor laser module that outputs continuous light to be modulated; a light intensity varying unit that varies an intensity of the continuous light; and an optical module including an electric-field-absorbing-type semiconductor optical modulator device that modulates the intensity varied continuous light with a modulating electric signal to produce a modulated optical signal.
- 2. An optical module, comprising:
a semiconductor laser device that oscillates and outputs continuous light to be modulated; and an electric-field-absorbing-type semiconductor optical modulator device that modulates the continuous light with a modulating electric signal to produce a modulated optical signal, wherein the semiconductor laser device and the semiconductor optical modulator device are monolithically integrated.
- 3. The optical module according to claim 2, further comprising a transmission line substrate that supplies the modulating electric signal, wherein the transmission line substrate includes a semiconductor integrated drive unit that generates the modulating electric signal and outputs the signal to the semiconductor optical modulator device.
- 4. An optical transmitter comprising:
an optical module, the optical module including
a semiconductor laser device that oscillates and outputs continuous light to be modulated; and an electric-field-absorbing-type semiconductor optical modulator device that modulates the continuous light with a modulating electric signal to produce a modulated optical signal, wherein the semiconductor laser device and the semiconductor optical modulator device are monolithically integrated; and an injection current control unit that controls an injection current to the semiconductor laser device.
- 5. The optical transmitter according to claim 4, further comprising a photodiode device that monitors a light beam emitted rearward from the semiconductor laser device, wherein
the injection current control unit controls the injection current using an output monitored in the photodiode device.
- 6. The optical transmitter according to claim 5, further comprising an offset voltage control unit that controls an offset voltage of the modulating electric signal based on a current monitored in the photodiode device.
- 7. The optical transmitter according to claim 4, further comprising a transmission line substrate that supplies the modulating electric signal, wherein the transmission line substrate includes a semiconductor integrated drive unit that generates the modulating electric signal.
- 8. The optical transmitter according to claim 5, further comprising a transmission line substrate that supplies the modulating electric signal, wherein the transmission line substrate includes a semiconductor integrated drive unit that generates the modulating electric signal.
- 9. The optical transmitter according to claim 8, further comprising an offset voltage control unit that controls an offset voltage of a modulating electric signal for the semiconductor optical modulator device based on a current monitored in the photodiode device.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2002-059405 |
Mar 2002 |
JP |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation-in-part of international application no. PCT/JP03/00731, with an international filing date of Jan. 27, 2003, designating the United States, claiming the priority of Japanese application no. 2002-059405, filed Mar. 5, 2002. Priority of the above-mentioned applications is claimed and each of the above-mentioned applications are hereby incorporated by reference in their entirety.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
PCT/JP03/00731 |
Jan 2003 |
US |
Child |
10832316 |
Apr 2004 |
US |