FIELD: optical electronics, possible use in systems where crystalline laser is used.
SUBSTANCE: optic-electronic transmitter contains laser, electro-optical deflection device, two correcting lenses, turned mirrors and optic-electronic transformer, optical output of the laser is connected via electro-optical deflecting device, turned mirrors, optic-electronic transformer and second correcting lens to optical input of the laser. Additionally the device contains third correcting lens, turned semi-transparent mirror, photo-element, light diode and voltage supply, where between optical output of optical-electronic transformer and second correcting lens, first correcting lens and turned semi-transparent mirror are positioned in optical serial connection, optical output of optic-electronic transformer being also connected through first correcting lens and turned semi-transparent mirror to optical input of photo-element, output of which is connected to input of light diode, connected to output of voltage supply, optical output of light diode is connected through third correcting lens and turned semi-transparent mirror to the second correcting lens.
EFFECT: increased power of radiation, reduced bulkiness.
1 dwg
Title | Year | Author | Number |
---|---|---|---|
OPTOELECTRONIC AMPLIFIER | 2012 |
|
RU2486648C1 |
OPTOELECTRONIC AMPLIFIER | 2003 |
|
RU2239174C1 |
OPTOELECTRONIC TRANSMITTER | 2004 |
|
RU2270498C1 |
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RU2548390C1 |
OPTOELECTRONIC ILLUMINATOR | 2009 |
|
RU2420688C1 |
OPTOELECTRONIC AMPLIFIER | 2012 |
|
RU2487450C1 |
ELECTRONIC OPTICAL AMPLIFIER | 2008 |
|
RU2374728C1 |
OPTOELECTRONIC AMPLIFIER | 2008 |
|
RU2381534C1 |
LASER TRANSMITTER | 1998 |
|
RU2138911C1 |
LATER TRANSMITTING DEVICE | 2003 |
|
RU2247452C2 |
Authors
Dates
2007-10-27—Published
2006-03-13—Filed