Claims
- 1. A laser communication transceiver for transmitting information via laser beams to another laser communication transceiver and for receiving information via laser beams from said another laser communication transceiver, said transceiver comprising:
- A) a laser transmitter system comprising:
- 1) at least one laser operable to produce a signal laser beam of a selected range of wavelengths;
- 2) a signal modulator disposed relative to said laser and configured to modulate said signal laser beam to impose a digital communication signal on said signal laser beam;
- B) a laser receiver disposed relative to said laser transmitter system and configured to receive a laser beam having a selected range of wavelengths from said another laser communication transceiver comprising:
- 1) an optical filter closely matched to at least one wavelength of said received laser beam,
- 2) a signal detector operable to receive and detect communication signals that are transmitted by said another laser communication transceiver through said optical filter;
- C) a telescopic viewing device operable to locate said another similar laser communication transceiver and to facilitate pointing said transceiver in a direction of said another laser communication transceiver; and
- D) a laser ranging unit, a GPS unit and an electronic compass.
- 2. A laser communication transceiver as in claim 1 further comprising a tilt gage.
- 3. A laser communication transceiver as in claim 1 further comprising a microphone and earphones.
- 4. A transceiver as in claim 1 further comprising a video camera and an electronic view finder.
- 5. A transceiver as in claim 1 further comprising a speaker.
- 6. A transceiver as in claim 1 wherein said laser receiver comprises a photo diode, a preamplifier, a frequency to voltage converter and a data converter for detecting said communication signal and distinguishing said signal as sound or digital data suitable for input to a computer.
- 7. A laser communication transceiver as in claim 1 wherein said telescopic viewing device comprises a binocular.
- 8. A laser communication transceiver for transmitting information via laser beams to another laser communication transceiver and for receiving information via laser beams from said another laser communication transceiver, said transceiver comprising:
- A) a laser transmitter system comprising:
- 1) a Voight filter;
- 2) at least one laser disposed relative to said Voight filter and operable to produce a signal laser beam of a narrow band of wavelengths which is locked at or near 852.11 nm using said Voight filter;
- 3) a signal modulator disposed relative to said laser and configured to modulate said signal laser beam to impose a digital communication signal on said signal laser beam;
- B) a laser receiver disposed relative to said laser transmitter system and configured to receive a laser beam having a selected range of wavelengths from said another laser communication transceiver comprising:
- 1) an optical filter closely matched to at least one wavelength of said received laser beam,
- 2) a signal detector operable to receive and detect communication signals that are transmitted by said another laser communication transceiver through said optical filter; and
- C) a telescopic viewing device operable to locate said another similar laser communication transceiver and to facilitate pointing said transceiver in a direction of said another laser communication transceiver.
- 9. A laser communication transceiver for transmitting information via laser beams to another laser communication transceiver and for receiving information via laser beams from said another laser communication transceiver, said transceiver comprising:
- A) a laser transmitter system comprising:
- 1) at least one laser operable to produce a signal laser beam of a selected range of wavelengths;
- 2) a signal modulator disposed relative to said laser and configured to modulate said signal laser beam to impose a digital communication signal on said signal laser beam;
- B) a laser receiver disposed relative to said laser transmitter system and configured to receive a laser beam having a selected range of wavelengths from said another laser communication transceiver comprising:
- 1) an atomic line filter configured to provide a noise equivalent bandwidth of less than 0.1 nm and to have a transmission band closely matched to at least one wavelength of said received laser beam;
- 2) a signal detector operable to receive and detect communication signals that are transmitted by said another laser communication transceiver through said atomic line filter; and
- C) a telescopic viewing device operable to locate said another similar laser communication transceiver and to facilitate pointing said transceiver in a direction of said another laser communication transceiver.
- 10. A laser communication transceiver as in claim 9, wherein said narrow band of wavelengths is produced with a distributed Bragg reflector laser diode with feedback control.
- 11. A transceiver as in claim 9 where said receiver atomic line filter is a Faraday filter.
- 12. A transceiver as in claim 9, wherein said receiver atomic line filter is a Voight filter.
- 13. A laser communication transceiver for transmitting information via laser beams to another laser communication transceiver and for receiving information via laser beams from said another laser communication transceiver, said transceiver comprising:
- A) a laser transmitter system comprising:
- 1) a Faraday filter;
- 2) at least one laser disposed relative to said Faraday filter and operable to produce a signal laser beam of a narrow band of wavelengths which is locked at or near 852.11 nm using said Faraday filter;
- 3) a signal modulator disposed relative to said laser and configured to modulate said signal laser beam to impose a digital communication signal on said signal laser beam;
- B) a laser receiver disposed relative to said laser transmitter system and configured to receive a laser beam having a selected range of wavelengths from said another laser communication transceiver comprising:
- 1) an optical filter closely matched to at least one wavelength of said received laser beam,
- 2) a signal detector operable to receive and detect communication signals that are transmitted by said another laser communication transceiver through said optical filter; and
- C) a telescopic viewing device operable to locate said another similar laser communication transceiver and to facilitate pointing said transceiver in a direction of said another laser communication transceiver.
Parent Case Info
This invention relates to communication systems and in particular to laser communication transceivers. This application is a continuation-in-part application of Ser. No. 07/935,899, entitled "Voigt Filter" filed Aug. 27, 1992, of Ser. No. 08/199,115 entitled Laser Communication Transceiver and System filed Feb. 22, 1994 and of Ser. No. 08/221,527, entitled Point to Point Laser Communication Device, filed Apr. 1, 1994.
US Referenced Citations (16)
Related Publications (2)
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Date |
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199115 |
Feb 1994 |
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221527 |
Apr 1994 |
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Continuation in Parts (1)
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935899 |
Aug 1992 |
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