Nova Patents
EP0700528A1

Electromagnetic hidden object detector

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 9 May 2014, 12.4 years ago.

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

16 claims: 9 independent, 7 dependent

  1. 1
    Claims of equivalent WO 9427168 A1 What is claimed is:1. An electromagnetic detector (1, 100) for locating an object (22, 122) or a cavity behind a separator (24), comprising in combination: means for transmitting (18, 118) electromagnetic signals in the direction of the separator (24);means for receiving (20, 120) the electromagnetic signals reflected from the object (22, 122) and separator (24);means for detecting (26, 36, 38, 50, 126, 130) a change in the electromagnetic reflectance of the separator (24).
  2. 5
    The detector (100) according to any one of the above claims further including a homodyne oscillator (102) connected to said step generator (106) for modulating said pulsed;said transmitting means (118) transmit said modulated signal in the direction of the separator (24);said receiving means (120) receive the signals reflected from the object (122);and means (129) for significantly reducing near wall proximity effect with said receiving means (120).
  3. 8
    The detector (100) according to any one of claims 5, 6, or 7, wherein said homodyne oscillator (102) modulates said pulsed signal with a continuous wave (CW) signal.
  4. 10
    The detector (1, 100) according to any one of the above claims, further including a display (40, 106) which comprises a plurality of indicators (42, 162A, 162B) that are sequentially energized in proportion to the voltage applied thereon;and wherein said applied voltage is linearly related to the magnitude of the reflected electromagnetic signal.
  5. 11
    The detector (1, 100) according to any of the above claims, further including means for setting a predetermined detection range (range gating);and wherein said detection range varies with the square root of the dielectric constant of the separator (24).
  6. 12
    An automated tool arrangement (150) comprising in combination:two or more generally identical detectors (151, 152), mounted on a tool housing 155);said detectors (151, 152) being distally separated from each other;and each of said detectors (151, 152) including: means for transmitting (18, 118) electromagnetic signals in the direction of a separator (24);means for receiving (20, 120) the electromagnetic signals reflected from an object (22, 122) and separator (24);means for detecting (26, 36, 38, 50, 126, 130) a change in the electromagnetic reflectance of the separator (24).
  7. 14
    An automated tool arrangement (163) comprising in combination:a transmitter unit (164);at least two separate receiver units (165, 166) disposed generally equidistally on either side of said transmitter unit (164);said transmitter and receiver units (164, 165, 166) being mounted on a tool housing (155);said transmitter unit (164) including a homodyne oscillator (102), a PRF generator (104), two step generators (32, 106), and a transmit antenna (118);each receiver unit (165, 166) including a receive antenna (120), a sample and hold circuit (126), an AC coupled amplifier (129), a synchronous rectifier (130), a summer (36), a DC coupled amplifier (38), and a display (106);and said transmit unit (164) transmits a common gate pulse to both receiver units (165, 166).
  8. 15
    A method for detecting an object or cavity behind a separator comprising the steps:transmitting a sequence of pulses in the direction of the separator (24);detecting the pulses reflected from said separator (24);averaging said detected pulses over repeated pulses;and detecting changes in the electromagnetic reflectance of the separator (24).
  9. 16
    A method for detecting an object or cavity behind a separator, comprising the steps of:generating a pulsed signal;modulating said pulsed signal with a homodyne continuous wave (CW) signal;transmiting said modulated signal in the direction of the separator (24);receiving signals reflected from the separator (24);significantly reducing near wall proximity effect with a receive antenna (120);and synchronously rectifying said modulated signals.