IP Library Granted Patent US 11,908,305
Granted Patent B2
US 11,908,305 · App. 15/922,562 · Granted Feb 20, 2024

Nurse call pillow speaker with audio event detection and methods for same

Inventors: Donald J. Enzinna (Lockport, NY); Daniel J. MacDonald (East Amherst, NY); Edward Wilkolaski (South Wales, NY)
Assignee: Curbell Medical Products, Inc.
G08B25/014A61B5/1115G08B5/222G08B25/009H04R3/12G08B25/016G08B25/10G16H40/60
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Quick Facts
Patent No.
US 11,908,305
App. No.
15/922,562
Granted
Feb 20, 2024
Kind
B2
Abstract

The present disclosure may be embodied as a pillow speaker system. The pillow speaker system has a patient interface device (PID) having a processor and an audio output. A nurse call audio port is provided to communicate with a nurse call station. A detection circuit is provided to detect a nurse call signal and a provide nurse call indicator if a nurse call signal is present. The processor is programmed to receive the nurse call indicator from the detection circuit; provide a nurse call audio signal to the audio output if the nurse call indicator is received; and mute audio signals to the audio output except the nurse call audio signal.

Claims (56)

1. A pillow speaker system, comprising:

a patient interface device (PID) having a processor and an audio output, the PID being capable of generating audio;

a hub in communication with the PID, the hub comprising:

a nurse call audio port to communicate with a nurse call station;

a detection circuit to detect a nurse call signal received on the nurse call audio port and to provide a nurse call indicator to the PID if a nurse call signal is present; and

wherein the processor of the PID is programmed to:

receive the nurse call indicator from the detection circuit of the hub;

provide a nurse call audio signal to the audio output if the nurse call indicator is received; and

mute audio signals to the audio output except the nurse call audio signal.

2. The pillow speaker system of claim 1 , wherein the detection circuit detects a nurse call signal by detecting an audio signal on the nurse call audio port.

3. The pillow speaker system of claim 1 , wherein the detection circuit detects a nurse call signal by detecting a nurse call indicator signal.

4. The pillow speaker system of claim 1 , wherein the hub in digital communication with the PID, wherein the nurse call audio port is in analog communication with the hub, and the hub digitizes the nurse call audio signal to send a digital nurse call audio signal to the PID.

5. The pillow speaker system of claim 4 , wherein the nurse call indicator is a digital signal.

6. The pillow speaker system of claim 1 , wherein the PID has a microphone and the processor is further programmed to provide a microphone signal from the microphone to the nurse call audio port if a nurse call indicator is received.

7. The pillow speaker system of claim 6 , further comprising a conditioner for conditioning the microphone signal.

8. The pillow speaker system of claim 7 , wherein the conditioner is an attenuator.

9. The pillow speaker system of claim 7 , wherein the conditioner is a software module programmed in the processor.

10. The pillow speaker system of claim 7 , wherein the conditioner is a discrete electrical circuit.

11. The pillow speaker system of claim 4 , further comprising an entertainment audio port in analog communication with the hub, and the hub digitizes an entertainment audio signal of the entertainment audio line to send a digital entertainment audio signal to the PID.

12. The pillow speaker system of claim 4 , further comprising an isolation network in communication with the nurse audio port.

13. The pillow speaker system of claim 12 , further comprising an impedance-matching network.

14. The pillow speaker system of claim 1 , wherein the processor is further programmed to unmute other signals when the nurse call indicator is de-asserted.

15. The pillow speaker system of claim 1 , wherein the detection circuit de-assert the nurse call indicator if a nurse call signal is not detected for a predetermined period of time.

16. The pillow speaker system of claim 1 , wherein the detection circuit comprises an envelope detector.

17. The pillow speaker system of claim 16 , wherein the detection circuit further comprises a comparator.

18. A method of providing a nurse call audio signal to a pillow speaker, comprising:

providing a pillow speaker having a patient interface device (PID) and a pillow speaker hub,

wherein the pillow speaker hub is in communication with a nurse call system, and

wherein the pillow speaker hub is further in communication with the PID;

detecting, at the pillow speaker hub, a nurse call signal from the nurse call system, and asserting a nurse call indicator for the pillow speaker if a nurse call signal is detected;

digitizing a nurse call audio signal received at a nurse call audio port of the pillow speaker hub and transmitting the digitized nurse call audio signal to the PID;

receiving a digital nurse call microphone signal from the PID; and

transmitting the digital nurse call microphone signal to the nurse call system as an analog microphone signal on the nurse call audio port.

19. The method of claim 18 , further comprising conditioning the analog microphone signal for use with a nurse call system.

20. A method of prioritizing audio signals in a pillow speaker, comprising:

providing an audio signal to an audio output of the pillow speaker;

receiving a nurse call indicator from a digital port of the pillow speaker;

muting the audio signal;

receiving a digital nurse call audio signal from the digital port;

converting the digital nurse call audio signal to an analog nurse call audio signal and providing the analog nurse call audio signal to an audio output.

21. The method of claim 20 , further comprising:

receiving a microphone signal from a microphone of the digital pillow speaker; and

digitizing the microphone signal to provide a digital microphone signal to the digital port.

22. A method for identifying a nurse call audio signal on an audio line, comprising:

detecting a first audio source transition on the audio line; and

identifying an audio signal on the audio line and subsequent to the first audio source transition as a nurse call audio signal.

23. The method of claim 22 , further comprising:

detecting a second audio source transition; and

identifying an audio signal subsequent to the second audio source transition as an entertainment audio signal.

24. The method of claim 22 , wherein the first audio source transition is detected by detecting, using a pillow speaker microphone, an audible tone.

25. The method of claim 22 , wherein the first audio source transition is detected by detecting, using a tone detection circuit, an electrical signal corresponding to a pre-determined tone.

26. The method of claim 22 , wherein the first audio source transition is detected by detecting a discontinuity on the audio line.

27. The method of claim 26 , wherein the electrical signal discontinuity is a switch bounce, electrical spike, or voltage transition.

28. The method of claim 22 , wherein the audio source transition is detected by detecting a change in bandwidth on the audio line.

29. The method of claim 22 , wherein the audio source transition is detected by detecting a change in an out-of-frequency band reflection on the audio line.

30. The method of claim 22 , wherein the audio source transition is detected by detecting a change in voltage level on the audio line.

Assignments (2)
SECURITY INTEREST Recorded Apr 14, 2026
From: CURBELL MEDICAL PRODUCTS, INC.
To: BANK OF AMERICA, N.A.
Reel/Frame 074357/0280 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 18, 2019
From: ENZINNA, DONALD J.; MACDONALD, DANIEL J.; WILKOLASKI, EDWARD
To: CURBELL MEDICAL PRODUCTS, INC.
Reel/Frame 048625/0938 →
Continuity (1)
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