Claims
- 1. A radiation hard visible light readout circuit responsive to laser beam emissions comprising:
- a first photodetector responsive to visible light, said first photodetector having a first terminal means being electrically connected to a first energization source, and a second terminal means electrically connected to a common interconnection means;
- a second photodetector having substantially identical electrical and thermal characteristics as said first photodetector, said second photodetector having a first terminal means being electrically connected to a second energization source, and a second terminal means electrically connected to said common interconnection means, said second photodetector having mask means for blocking visible light incident on said second photodetector and permitting X-ray and gamma radiation to pass therethrough and impinge on said second photodetector; and
- means having an input means electrically connected to said common interconnection means for providing an output signal as a function of current flowing into said input means.
- 2. The readout circuit of claim 1 wherein said first and second photodetectors are photodiodes electrically connected such that the cathode of one photodiode and anode of the other photodiode are electrically connected to said common interconnection means.
- 3. The readout circuit of claim 2 wherein said photodiode is a radiation hard diode.
- 4. The readout circuit of claim 1 wherein said visible light is in the form of a laser beam.
- 5. A radiation hard visible light readout circuit responsive to laser beam emissions comprising:
- a first photodetector responsive to visible light, said first photodetector having a first terminal means being electrically connected to a first energization source, and a second terminal means electrically connected to a common interconnection means;
- a second photodetector having substantially identical electrical and thermal characteristics as said first photodetector, said second photodetector having a first terminal means being electrically connected to a second energization source, and a second terminal means electrically connected to said common interconnection means, said second photodetector having mask means for blocking visible light incident on said second photodetector and permitting X-ray and gamma radiation to pass therethrough and impinge on said second photodetector; and
- high gain amplifier means having an inverting input, a non-inverting input, and an output, said inverting input electrically connected to said common interconnection means, said amplifier output being electrically connected to said amplifier inverting input through an impedance means for selecting the gain of said readout circuit, and said non-inverting input being electrically connected to a selected reference potential.
- 6. The readout circuit of claim 5 wherein said first and second photodetectors are photodiodes electrically connected such that the cathode of one photodiode and anode of the other photodiode are electrically connected to said common interconnection means.
- 7. The readout circuit of claim 6 wherein said photodiode is a radiation hard diode.
- 8. The readout circuit of claim 5 wherein said visible light is in the form of a laser beam.
Government Interests
The Government has rights in this invention pursuant to Contract No. F04704-84-C-0056, awarded by the Department of the Air Force.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
3895230 |
Itagaki |
Jul 1975 |
|
4035634 |
Numata |
Jul 1977 |
|