IP Library Patent Application 19024249
Patent Application
App. No. 19/024,249

NOISE EXPOSURE MANAGEMENT OF EMERGENCY VEHICLE SIREN

Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US None
App. No.
19/024,249
Abstract

A system for noise exposure management. In one example, a system includes at least one speaker and a controller operatively coupled to the at least one speaker. The controller is configured to turn on and turn off the at least one speaker. The system is further configured to reduce a sound intensity of siren sounds generated by the at least one speaker when the at least one speaker is turned on in response to a signal received by the controller. The signal is generated in response to a cumulative sound exposure, over a period of time, that exceeds a predefined sound exposure magnitude.

Claims (64)

1 . A siren system for an emergency vehicle, comprising:

at least one speaker configured to generate siren sounds; and

a controller operatively coupled to the at least one speaker, the controller being configured to:

turn on the at least one speaker such that the at least one speaker generates the siren sounds;

turn off the at least one speaker such that the at least one speaker stops generating the siren sounds; and

reduce a sound intensity of the siren sounds generated by the at least one speaker when the at least one speaker is turned on in response to a signal received by the controller, wherein the signal is generated in response to a cumulative sound exposure, over a period of time, that exceeds a predefined sound exposure magnitude.

2 . The siren system of claim 1 , wherein the cumulative sound exposure is within a cab of the emergency vehicle.

3 . The siren system of claim 2 , wherein the cumulative sound exposure is determined using at least one microphone.

4 . The siren system of claim 3 , wherein the at least one microphone is positioned inside the emergency vehicle.

5 . The siren system of claim 1 , wherein the cumulative sound exposure is determined using a dosimeter.

6 . The siren system of claim 1 , wherein the cumulative sound exposure is determined using a clock configured to measure an amount of time the at least one speaker is turned on.

7 . The siren system of claim 1 , wherein the at least one speaker includes:

a first speaker configured to generate first siren sounds and operatively coupled to the controller via a first communications channel; and

a second speaker configured to generate second siren sounds and operatively coupled to the controller via a second communications channel,

wherein to reduce the sound intensity of the siren sounds generated by the at least one speaker includes to, at least one of:

(i) reduce, via the first communications channel, a first sound intensity of the first siren sounds generated by the first speaker while the second speaker is turned on;

(ii) reduce, via the second communications channel, a second sound intensity of the second siren sounds generated by the second speaker while the first speaker is turned on; and

(iii) reduce, via the first communications channel and the second communications channel, sound intensities of the first siren sounds and the second siren sounds generated by the first speaker and the second speaker when the first speaker and the second speaker are turned on.

8 . The siren system of claim 1 , further including a clock configured to measure the period of time, wherein the controller uses the clock to determine that the cumulative sound exposure exceeds the predefined sound exposure magnitude.

9 . The siren system of claim 8 , wherein the controller is configured to:

detect an on-state of the at least one speaker; and

responsive to detection of the on-state, begin measuring the cumulative sound exposure using the clock.

10 . The siren system of claim 9 , wherein the at least one speaker includes an amplifier and a driver.

11 . An emergency vehicle, comprising:

a cab;

a sound detection device within the cab; and

a siren system including:

at least one speaker configured to generate siren sounds; and

a controller operatively coupled to the at least one speaker and the sound detection device, the controller being configured to:

turn on the at least one speaker such that the at least one speaker generates the siren sounds;

turn off the at least one speaker such that the at least one speaker stops generating the siren sounds; and

reduce a sound intensity of the siren sounds generated by the at least one speaker when the at least one speaker is turned on in response to a signal received by the controller, wherein the signal is generated in response to a cumulative sound exposure, over a period of time, that exceeds a predefined sound exposure magnitude, wherein the sound detection device detects the cumulative sound exposure within the cab.

12 . The emergency vehicle of claim 11 , wherein the sound detection device includes a microphone.

13 . The emergency vehicle of claim 11 , wherein the sound detection device includes a dosimeter.

14 . The emergency vehicle of claim 11 , wherein the siren system further includes a clock.

15 . The emergency vehicle of claim 14 , wherein the cumulative sound exposure is determined using the clock configured to measure an amount of time the at least one speaker is turned on.

16 . The emergency vehicle of claim 11 , wherein the at least one speaker includes:

a first speaker configured to generate first siren sounds and operatively coupled to the controller via a first communications channel; and

a second speaker configured to generate second siren sounds and operatively coupled to the controller via a second communications channel,

wherein to reduce the sound intensity of the siren sounds generated by the at least one speaker includes to, at least one of:

(i) reduce, via the first communications channel, a first sound intensity of the first siren sounds generated by the first speaker while the second speaker is turned on;

(ii) reduce, via the second communications channel, a second sound intensity of the second siren sounds generated by the second speaker while the first speaker is turned on; and

(iii) reduce, via the first communications channel and the second communications channel, sound intensities of the first siren sounds and the second siren sounds generated by the first speaker and the second speaker when the first speaker and the second speaker are turned on.

17 . The emergency vehicle of claim 11 , further including a clock configured to measure the period of time, wherein the controller uses the clock to determine that the cumulative sound exposure exceeds the predefined sound exposure magnitude.

18 . The emergency vehicle of claim 17 , wherein the controller is configured to:

detect an on-state of the at least one speaker; and

responsive to detection of the on-state, begin measuring the cumulative sound exposure using the clock.

19 . A siren system for an emergency vehicle, comprising:

a controller;

a first speaker configured to generate first siren sounds and operatively coupled to the controller via a first communications channel; and

a second speaker configured to generate second siren sounds and operatively coupled to the controller via a second communications channel, the controller being configured to:

turn on the first speaker such that the first speaker generates the first siren sounds;

turn on the second speaker such that the second speaker generates the second siren sounds;

turn off the first speaker such that the first speaker stops generating the first siren sounds;

turn off the second speaker such that the second speaker stops generating the second siren sounds; and

reduce a sound intensity of at least one of the first siren sounds and the second siren sounds generated by one or both of the first speaker and the second speaker when at least one of the first speaker and the second speaker is turned on in response to a signal received by the controller,

wherein the signal is generated in response to a cumulative sound exposure, over a period of time, that exceeds a predefined sound exposure magnitude;

wherein the cumulative sound exposure is within a cab of the emergency vehicle;

wherein the cumulative sound exposure is determined using a clock configured to measure an amount of time one or both of the first speaker and the second speaker is turned on; and

wherein to reduce the sound intensity of at least one of the first siren sounds and the second siren sounds includes to, at least one of:

(i) reduce, via the first communications channel, a first sound intensity of the first siren sounds generated by the first speaker while the second speaker is turned on;

(ii) reduce, via the second communications channel, a second sound intensity of the second siren sounds generated by the second speaker while the first speaker is turned on; and

(iii) reduce, via the first communications channel and the second communications channel, sound intensities of the first siren sounds and the second siren sounds generated by the first speaker and the second speaker when the first speaker and the second speaker are turned on.

20 . The siren system of claim 19 , wherein the controller calculates the cumulative sound exposure based on a measured sound pressure level within the cab.

Assignments (2)
SECURITY INTEREST Recorded Oct 29, 2025
From: FEDERAL SIGNAL CORPORATION
To: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
Reel/Frame 072717/0009 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 9, 2025
From: GERGETS, PAUL M.; BADER, JOSEPH F.; USMANI, ZEESHAN
To: FEDERAL SIGNAL CORPORATION
Reel/Frame 072524/0879 →