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Home TV Signal Light-emitting-diode-transmitter-circuit-with-temperature-compensation

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 Light emitting diode transmitter circuit with temperature compensation

Details
Inventors: Chun, Cornell S. L.;
Assignee: Unisys Corporation (Blue Bell, PA)
Primary Examiner: LaRoche; Eugene R.
Assistant Examiner: Zarabian; Amir
Attorney, Agent or Firm: Bowen; Glenn W., Starr; Mark T.

A light emitting diode circuit with an emitter coupled logic (ECL) interface is provided with temperature compensation by a series circuit consisting of a pair of resistors which are separated by at least one diode. A first switching field-effect-transistor which receives the output of the interface has its drain-to-source path coupled to the junction of one of the resistors and the diodes, while an output drive field-effect-transistor has its gate coupled to the junction of the other resistor and the diodes and its drain-to-source path coupled in series with a light emitting diode (LED).

DETAILED DESCRIPTION I claim: 1.
A light emitting diode circuit having first, second and third nodes comprising, first and second terminal means each of which receive a different reference potential thereon comprising, interface means for receiving an input signal and for providing a drive signal therefrom, circuit means comprising first field-effect-transistor means which operates in a switching mode and which has its gate coupled to receive said drive signal and its drain-to-source path coupled between a first node, and one of said terminal means, temperature compensating means coupled across said first and second terminal means comprising, first resistive means coupled between said first terminal and said first node, temperature compensating means coupled between said first and second nodes and in series with said first resistive means, second resistive means coupled between said second node and said second terminal and in series with said temperature compensation means, second field effect transistor means which has its gate coupled to said second node and its drain-to-source path coupled between said first terminal and said third node, and light emitting diode means coupled between said third node and said second terminal and in series with said drain-to-source path of said second field effect transistor means.
2.
A circuit as claimed in claim 1 wherein said circuit means comprises at least one diode means coupled in series with said drain-to-source path of said first field-effect-transistor means.
3.
A circuit as claimed in claim 1 wherein said temperature compensating means comprises at least one diode means coupled in series and between said first and second nodes.
4.
A circuit as claimed in claim 1 wherein said interface means comprises circuit means for interfacing with emitter coupled logic circuits.
5.
A circuit as claimed in claim 4 wherein said interface means comprises differential amplifier means which has two inputs each of which receives an emitter coupled logic input signal that is the logical inverse of the other



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