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 Circuit for indicating the battery voltage and operation of a radio transmitter

Details
Inventors: Barringer, Jerry M.; Harris, Raymond W.; Woodward, John B.;
Assignee: General Electric Company (Lynchburg, VA)
Primary Examiner: Griffin; Robert L.
Assistant Examiner: Ng; Jin F.
Attorney, Agent or Firm: Williams; James J.

A single indicator lamp is provided on a personal or portable, battery powered radio transmitter to indicate when the transmitter is operated. The lamp is connected to a circuit which senses the battery voltage (and hence charge), which causes the lamp to be energized constantly if the battery voltage is high, and which causes the lamp to be energized intermittently at a rate which decreases as the battery voltage decreases.

DETAILED DESCRIPTION What we claim as new and desire to secure by Letters Patent of the United States is: 1.
A circuit for indicating the operation of a radio transmitter and the voltage of a battery that powers said transmitter comprising: a.
a first main terminal for connection to a first terminal of a battery; b.
a second main terminal; c.
a switch connected to said second main terminal for connecting said second main terminal to a second terminal of said battery in response to said transmitter being operated; d.
a light emitting device; e.
a first current control device having a first current path and a control electrode; f.
means connecting said light emitting device and said first current path of said current control device in series between said first and second main terminals; g.
a first voltage sensing circuit connected between said first and second main terminals and connected to said control electrode of said first current control device for closing said first current path in response to a voltage of selected magnitude between said first and second main terminals; h.
a second current control device having a second current path and a control electrode; i.
means connecting said second current path in parallel with said first current path; j.
a timing circuit having a capacitor and charging circuit connected between said first and second main terminals, said capacitor being charged at a rate which varies as a function of the magnitude of voltage between said first and second main terminals; k.
a second voltage sensing circuit for supplying charging current to said charge circuit comprising means for comparing the voltage of said battery and a predetermined voltage for providing said charging current and l.
means connecting said capacitor to said control electrode of said second current control device for closing said second current path in response to a selected charge voltage on said capacitor, said capacitor being discharged by said closed second current path and said second current path being opened in response to said capacitor being discharged; whereby said light emitting device is energized steadily by said closed first current path in response to a voltage that exceeds said selected magnitude, and whereby, when said first current path is open, said light emitting device is energized and de-energized by said second current path at a rate determined by the charge and discharge rate of said capacitor



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