FIELD: optical location and search. SUBSTANCE: optical reflector incorporates objectives spread over spherical body and reflecting elements placed in focuses of all objectives. Elements are manufactured in the form of flat mirror faces of polyhedron positioned in body and inscribed in sphere concentric on body. Each face is perpendicular to optical axis of corresponding objective. Each conjugate pair " OBJECTIVE-REFLECTING ELEMENT "may be fitted with light filter. Light filters of different pairs " OBJECTIVE-REFLECTING ELEMENT " can be made spectrally different and located in spherical casing embracing body and mounted for turning with reference to it. Apart from this reflecting elements can be manufactured spectrally different and polyhedron can be mounted for turning relative to body. EFFECT: expanded application field, improved operational characteristics. 5 cl, 6 dwg
Title | Year | Author | Number |
---|---|---|---|
OPTICAL REFLECTOR (VERSIONS) | 2013 |
|
RU2556744C2 |
DEFORMABLE MIRROR BASED ON MULTILAYER ACTIVE BIMORPHOUS STRUCTURE | 1996 |
|
RU2099754C1 |
MULTILAYER PIEZOELECTRIC DEFORMED BIMORPHOUS MIRROR | 1996 |
|
RU2068191C1 |
ADAPTIVE OPTICAL MODULE | 1996 |
|
RU2084941C1 |
METHOD FOR OPTICAL PHASE CONJUGATION, DEVICE FOR IMPLEMENTING IT, AND SYSTEM FOR AIMING LASER BEAM AT TARGET | 1996 |
|
RU2112265C1 |
PROCESS OF MANUFACTURE OF POLYMER BALLS | 1996 |
|
RU2093865C1 |
IMMERSION SPECTROFLUORIMETER | 0 |
|
SU842511A1 |
STATIC FOURIER SPECTROMETRE | 2010 |
|
RU2436038C1 |
METHOD OF MANUFACTURING POLYMER ELEMENTS | 1996 |
|
RU2097194C1 |
METHOD AND DEVICE FOR OBSERVING OBJECTS AT LOW ILLUMINATION INTENSITY | 1996 |
|
RU2069885C1 |
Authors
Dates
1998-01-10—Published
1996-10-21—Filed