Claims
- 1. An improved air target fuze for use on a missile, said fuze comprising in combination: an oscillator, a modulator connected to frequency modulate said oscillator with a modulating waveform chosen so that the carrier frequency of said oscillator is changed from its initial value at approximately a t.sup.2/3 rate, where t represents time, until a predetermined frequency is reached, the wave then decreasing at a -t.sup.2/3 rate until the carrier frequency returns to its initial value, the above cycle the repeating periodically, a sidewise looking transmitting antenna to which the frequency modulated output of said oscillator is fed, a sidewise looking receiving antenna for receiving a reflected wave from a target, a mixer to which the received wave and a portion of the transmitted wave are fed, a narrow band amplifier having a center frequency f.sub.o to which the output of said mixer is fed, said modulating waveform further being chosen so that at the fuze-to-target cut-off distance beyond which the fuze is not to respond the difference frequency between the transmitted and received waves when the transmitted wave has a frequency corresponding to said predetermined point is substantially equal to the center frequency f.sub.o of said amplifier, a detonator, and means connected to the output of said narrow band amplifier for functioning said detonator in response to the receipt of a signal from said amplifier.
- 2. In the design of a radiant energy sending and receiving condition responsive system which is adapted to be responsive to an object within a predetermined range of distances from said system, the method of making said system have a sharp cutoff beyond said predetermined range and require only a narrow band receiver with a relatively small dynamic range, comprising the steps of: providing a received energy waveform having a minimum frequency equal to the center frequency of said narrow band receiver at the maximum distance at which said system is to respond by controlling the amplitude versus frequency distribution of the received energy, and causing the variation in the amplitude of the received energy due to distance for the narrow band of frequencies to which said receiver responds to cancel out the variation in the frequency components within said narrow band of frequencies caused by changes in the amplitude versus frequency distribution due to distance by controlling the waveform of the transmitted energy.
- 3. A condition responsive system including: radiant energy transmitting means, narrow band receiving means, means for controlling the amplitude versus frequency distribution of the received energy to have a minimum frequency at the center frequency of said narrow band receiver for the maximum response distance of said system, means for cancelling the variation in amplitude of the received energy due to distance by the variation with distance of the frequency components within the band of said receiving means, said last named means comprising means for controlling the waveform of the transmitted energy.
Government Interests
The invention described herein may be manufactured and used by or for the Government for governmental purposes without the payment to me of any royalty thereon.
US Referenced Citations (4)