IP Library Granted Patent US 10,184,988
Granted Patent B2
US 10,184,988 · App. 15/413,334 · Granted Jan 22, 2019

Remote sensing of remaining battery capacity using on-battery circuitry

Inventors: Jordan Todorov Bourilkov (Bethany, CT); Sergio Coronado Hortal (Bethel, CT); Steven Jeffrey Specht (Brookfield, CT)
Assignee: DURACELL U.S. OPERATIONS, INC.
G01R31/3689G01R31/3627G01R31/3637G01R31/362G01R31/3606
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Quick Facts
Patent No.
US 10,184,988
App. No.
15/413,334
Granted
Jan 22, 2019
Kind
B2
Abstract

A method of remote sensing a charge includes charging or discharging a first capacitor of a first RC circuit and a second capacitor of a second RC circuit to a predetermined threshold voltage using a power source. When each of the capacitors reach the predetermined threshold voltage, a response signal is provided from a communications module to a handheld computing device comprising a reader system. An amount of time between the response signals is determined. The amount of time is indicative of charge information.

Claims (23)

1. A method of remote sensing a remaining battery capacity, comprising:

receiving, at a communications module of a remote charge indicator system and from a reader system of a handheld computing device, an interrogation signal;

responsive to receiving the interrogation signal, closing a switch, wherein closing the switch causes a battery to charge or discharge (i) a first capacitor of a first RC circuit portion and (ii) a second capacitor of a second RC circuit portion;

receiving, at the communications module, a first indication in response to the voltage of the first capacitor reaching a predetermined voltage threshold;

transmitting, to the reader system, the first indication at a first time;

receiving, at the communications module, a second indication in response to the voltage of the second capacitor reaching the predetermined voltage threshold; and

transmitting, to the reader system, the second indication at a second time, wherein the difference between the first time and the second time corresponds to the remaining battery capacity of the battery.

2. The method of claim 1 , wherein the first capacitor has a first time constant and the second capacitor has a second time constant different than the first time constant.

3. A remote charge indicator system operatively connected to a battery, the remote charge indicator system comprising:

a communications module comprising an antenna that receives an interrogation signal from a reader system; and

a voltage sensing module comprising a switch that closes when the communications module receives the interrogation signal, a first RC circuit portion having a first time constant comprising a first resistor and a first capacitor, and a second RC circuit portion having a second time constant comprising a second resistor and a second capacitor,

wherein the first time constant is different than the second time constant,

wherein the voltage sensing module provides a pulse as an output signal to the communications module, wherein the pulse begins when the first capacitor is charged or discharged to a predetermined threshold voltage using the battery and ends when the second capacitor is charged or discharged to the predetermined threshold voltage using the battery, and

wherein the duration of the pulse corresponds to the voltage of the battery and the remaining battery capacity of the battery.

4. The remote charge indicator system of claim 3 , wherein the communications module comprises an RFID tag.

5. The remote charge indicator system of claim 3 , wherein the voltage sensing module comprises a first comparator that begins the pulses when the first capacitor charges or discharges to the predetermined threshold voltage, and

wherein the voltage sensing module comprises a second comparator that ends the pulse when the second capacitor charges or discharges to the predetermined threshold voltage.

6. A method of remote sensing a remaining battery capacity, comprising:

receiving, at a communications module of a remote charge indicator system and from a reader system of a handheld computing device, an interrogation signal;

responsive to receiving the interrogation signal, closing a switch, wherein closing the switch causes a battery to charge or discharge (i) a first capacitor of a first RC circuit portion and (ii) a second capacitor of a second RC circuit portion;

receiving, at the communications module, a pulse having a duration that corresponds to a time difference between when the first capacitor reaches a predetermined threshold voltage and when the second capacitor reaches the predetermined threshold; and

transmitting, to the reader system, the pulse, wherein the duration of the pulse corresponds to the remaining battery capacity of the battery.

7. The method of claim 6 , wherein the first capacitor has a first time constant and the second capacitor has a second time constant different than the first time constant.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 9, 2017
From: BOURILKOV, JORDAN TODOROV; HORTAL, SERGIO CORONADO; SPECHT, STEVEN JEFFREY
To: THE GILLETTE COMPANY
Reel/Frame 042657/0352 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 9, 2017
From: THE GILLETTE COMPANY
To: DURACELL U.S. OPERATIONS, INC.
Reel/Frame 042657/0391 →
Continuity (3)
Continuation 14041014 · Sep 30, 2013
Provisional Application 61746265 · Dec 27, 2012
Related Publication 20170131365A1 · May 11, 2017
Cited By (1)
US 12,697,396