Nova Patents
EP0809123A2

Millimeter wave imaging system

Abstract

A millimeter wave detection and image generation system utilizing folded optics for reduced size. Means (212) for scanning a received image over a radiation detection arrays to improve resolution, is provided. Autofocusing (44, 164, 240) of objects in the field of view of the millimeter wave detection and image generation system is also provided.

EP0809123A2, drawing sheet 1
Sheet 1 of 14

Term

Term ended

Projected expiry passed 21 May 2017, 9.3 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

39 claims: 6 independent, 33 dependent

  1. 1
    An electromagnetic wave camera, comprising:a lens (208) for focusing electromagnetic wave signals from an object;and a transducer (212) for transforming the electromagnetic wave signals focused by said lens to electrical signals;characterized in further comprising a first reflector (38), located by said transducer, for reflecting the electromagnetic wave signals through said lens to said lens;and a second reflector (34), located between said lens and said first reflector, for allowing said wave signals to pass through and reflecting said wave signal from said first reflector to said transducer;and in that the focal length of the lens is a little longer than three times as the distance between said first and second reflectors so that said camera can be small.
  2. 4
    A method of forming an image from electromagnetic waves, comprising the step of:allowing only predetermined plane of polarization of waves to pass through a second reflector;reflecting the waves and shifting the plane of polarization of the reflected waves by ninety degree at a first reflector;reflecting again the waves from the first reflector at the second reflector;and receiving the waves from the second reflector and transforming the waves to electrical signals at a transducer.
  3. 5
    A method of forming an image from millimeter waves, comprising the steps of:receiving millimeter wave signals from a field of view at a first surface of a transreflector plate, using said transreflector plate to filter said received signals to pass signals having a preselected polarization;reflecting and rotating said polarized signals with a load switching twist reflector;reflecting said rotated polarized signals from a second surface of said transreflector plate;receiving said reflected rotated polarized signals at a radiation detector assembly;scanning said load switching twist reflector to redirect said reflected rotated polarized signals onto said radiation detector assembly;and processing said reflected rotated polarized signals received by said radiation detector assembly to generate a first image.
  4. 7
    A method of forming an image from millimeter waves, comprising the steps of:receiving millimeter wave signals from a field of view at a first surface of a transreflector plate;using said transreflector plate to filter said received signals to pass signals having a preselected polarization;reflecting and rotating said polarized signals with a load switching twist reflector;reflecting said rotated polarized signals from a second surface of said transreflector plate;receiving said reflected rotated polarized signals at a radiation detector assembly;scanning said load switching twist reflector to redirect said reflected rotated polarized signals onto said radiation detector assembly;and processing said reflected rotated polarized signals received by said radiation detector assembly to generate a first image.
  5. 15
    The method of claim l4, further comprising the step of focusing said band pass filtered signals with a lens.
  6. 27
    A millimeter wave imaging system, comprising:millimeter wave bandpass filter;a transreflector having a polarized filtering first surface and a reflective second surface;a layered load switching twist reflector having a reflecting layer and a polarization rotating layer;means for moving said load switching twist reflector;a radiation detector assembly;and means for forming a first image from signals received by said radiation detector assembly;wherein said millimeter wave bandpass filter passes signals within a predetermined frequency, said first surface of said transreflector filters said bandpass filtered signals to pass signals of a predetermined polarization, said layered load switching twist reflector reflects and rotates said polarized signals, and said second surface of said transreflector reflects said rotated polarized signals;and wherein said radiation detector assembly receives and processes said reflected rotated polarized signals.