IP Library Granted Patent US 11,009,532
Granted Patent B2
US 11,009,532 · App. 15/809,958 · Granted May 18, 2021

Energy detection warning device

Inventors: John Wayne Thompson (Coeur d' Alene, ID); Timothy Ledford (Coeur d' Alene, ID); Brandon Jon Bledsoe (Coeur d' Alene, ID)
Assignee: Safeguard Equipment, Inc.
G01R19/155G01R15/16G01R15/18G01R29/085G08B7/06G08B21/02G08B21/182G01R19/15G01R29/0857
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Quick Facts
Patent No.
US 11,009,532
App. No.
15/809,958
Granted
May 18, 2021
Kind
B2
Abstract

An energy detection warning device includes a housing. An electronic indication component is disposed within the housing. One or more sensors are disposed within the housing and are configured to detect an energized conductor present within a particular proximity of a location of the energy detection warning device, and detect a direction in which the energized conductor is located with respect to the location of the energy detection warning device. The direction is an approximate direction. The device also includes a microcontroller configured to: receive input from the one or more sensors, and actuate the electronic indication component, in response to receipt of the input, to indicate the direction in which the energized conductor is located with respect to the location of the energy detection warning device.

Claims (49)

1. An energy detection warning device, comprising:

a housing;

an electronic indication component disposed within the housing;

one or more sensors disposed within the housing and configured to:

detect an energized conductor present within a particular proximity of a location of the energy detection warning device, and

detect a direction in which the energized conductor is located with respect to the location of the energy detection warning device, the direction being an approximate direction; and

a microcontroller configured to:

receive input regarding voltage of the energized conductor sensed by the one or more sensors, the input being communicated to the microcontroller from the one or more sensors,

determine a historically-evaluated, positive change in a level of the voltage, based on the input received over a predetermined amount of time regarding the level of the voltage sensed one or more times during the predetermined amount of time,

detect the historically-evaluated, positive change in the level of the voltage, so as to actuate a notification via the electronic indication component, in response to receipt of the input, when the historically-evaluated, positive change meets or exceeds a threshold level with respect to the voltage, to indicate the direction in which the energized conductor is located with respect to the location of the energy detection warning device, and

adapt to the threshold level, and in response to adapting to the threshold level, the energy detection warning device deactivates the notification.

2. The energy detection warning device according to claim 1 , wherein the one or more sensors are further configured to detect an approximate distance between the energized conductor and the energy detection warning device.

3. The energy detection warning device according to claim 1 , wherein the electronic indication component includes at least one of:

a plurality of light sources disposed along a portion of the housing and arranged to be indicative of directionality,

one or more speakers arranged within the housing to be indicative of the directionality, or

one or more vibrational motors arranged within the housing to be indicative of the directionality.

4. The energy detection warning device according to claim 3 , wherein the electronic indication component includes the plurality of light sources, and

wherein, upon actuation of the electronic indication component, the microcontroller causes illumination of one or more of the plurality of light sources that are arranged to correspond with the direction detected and/or with a decrease in proximity between the energy detection warning device and the energized conductor.

5. The energy detection warning device according to claim 3 , wherein the electronic indication component includes the one or more speakers, and

wherein, upon actuation of the electronic indication component, the microcontroller causes an auditory notification signal to be emitted from at least one of the one or more speakers, the auditory notification signal indicating the direction detected and/or risk of electrocution due to a decrease in proximity between the energy detection warning device and the energized conductor.

6. The energy detection warning device according to claim 3 , wherein the electronic indication component includes the one or more vibrational motors, and

wherein, upon actuation of the electronic indication component, the microcontroller causes vibration of at least one of the one or more vibrational motors, the vibration indicating the direction detected.

7. The energy detection warning device according to claim 1 , wherein the one or more sensors detect the direction by detecting absolute orientation using a gravitational vector and an earth magnetic field vector and associate an orientation with a peak in an electric or magnetic field value, when the energy detection warning device is tilted or rotated, respectively.

8. The energy detection warning device according to claim 1 , wherein the one or more sensors detect the energized conductor via detecting a change in a level of energy sensed.

9. The energy detection warning device according to claim 1 , wherein the microcontroller is further configured to execute a self-test to ensure the energy detection warning device is functional.

10. A wearable energy detection warning device (“wearable device”) for implementation with a hard hat, comprising:

an electronic indication component;

one or more sensors communicatively coupled with the electronic indication component, the one or more sensors configured to:

detect an energized conductor present within a particular proximity of a location of the wearable device, and

detect a direction in which the energized conductor is located with respect to the location of the wearable device, the direction being an approximate direction; and

a microcontroller configured to:

execute a self-test to ensure the wearable device is functional,

receive input regarding voltage of the energized conductor sensed by the one or more sensors, the input being communicated to the microcontroller from the one or more sensors,

actuate the electronic indication component, in response to receipt of the input, to indicate the direction in which the energized conductor is located with respect to the location of the wearable device,

determine a historically-evaluated, positive change in a level of the voltage, based on the input received over a predetermined amount of time regarding the level of the voltage sensed one or more times during the predetermined amount of time,

detect the historically-evaluated, positive change in the level of the voltage, so as to actuate a notification via the electronic indication component, in response to receipt of the input, when the historically-evaluated, positive change meets or exceeds a threshold level with respect to the voltage, to indicate the direction in which the energized conductor is located with respect to the location of the energy detection warning device, and

adapt to the threshold level, and in response to adapting to the threshold level, the energy detection warning device deactivates the notification.

11. The wearable device according to claim 10 , wherein the electronic indication component includes at least one of:

a plurality of light sources arranged to indicate directionality,

one or more speakers arranged to indicate the directionality, or

one or more vibrational motors arranged to indicate the directionality.

12. The wearable device according to claim 11 , wherein the electronic indication component includes the plurality of light sources, and

wherein, upon actuation of the electronic indication component, the microcontroller causes illumination of one or more of the plurality of light sources oriented on a lateral side of the hard hat that corresponds with the direction detected.

13. The wearable device according to claim 11 , wherein the electronic indication component includes the one or more speakers,

wherein, upon actuation of the electronic indication component, the microcontroller causes an auditory notification signal to be emitted from at least one of the one or more speakers, the auditory notification signal indicating the direction detected via sound including one or more of a verbal statement, a predetermined noise, or variable tones, and

wherein the sound is emitted from a single speaker oriented to a side of the hard hat that corresponds with the direction detected or from the one or more speakers arranged in a central area of the hard hat.

14. The wearable device according to claim 11 , wherein the electronic indication component includes the one or more vibrational motors, and

wherein, upon actuation of the electronic indication component, the microcontroller causes vibration of at least one of the one or more vibrational motors oriented on a lateral side of the hard hat that corresponds with the direction detected.

15. The wearable device according to claim 10 , wherein the one or more sensors detect the direction by detecting absolute orientation using a gravitational vector and an earth magnetic field vector and associate an orientation with a peak in an electric or magnetic field value, when the wearable device is tilted or rotated, respectively.

Assignments (2)
SECURITY INTEREST Recorded Sep 8, 2022
From: SAFEGUARD EQUIPMENT, INC.
To: COWLES COMPANY, AS COLLATERAL AGENT
Reel/Frame 061396/0693 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 10, 2018
From: THOMPSON, JOHN WAYNE; LEDFORD, TIMOTHY; BLEDSOE, BRANDON JON
To: SAFEGUARD EQUIPMENT, INC.
Reel/Frame 046519/0301 →
Continuity (3)
Provisional Application 62432817 · Dec 12, 2016
Provisional Application 62534922 · Jul 20, 2017
Related Publication 20180164350A1 · Jun 14, 2018