Medical headgear
An earcup for a medical headgear includes a body and a gasket attached to the body and formed of an open-cell foam. The earcup with the body and the gasket is a frequency-dependent auditory filter providing sound attenuation generally increasing as a function of frequency.
1. An earcup for a medical headgear, comprising:
a body; and
a gasket attached to the body and formed of an open-cell foam, the earcup with the body and the gasket is a frequency-dependent auditory filter providing sound attenuation generally increasing as a function of frequency, the earcup with the body and the gasket provides sound attenuation of less than or equal to 16 dB throughout a frequency range less than 315 Hz.
2. The earcup of claim 1 , wherein the open-cell foam is a first foam material having a compression force deflection value for 25% deflection of 0.3-3.5 psi.
3. The earcup of claim 2 , wherein the first foam material has a density of approximately 15 lb/ft 3 .
4. The earcup of claim 2 , wherein the gasket includes a first gasket layer and a second gasket layer each formed of the first foam material and each having a same thickness, the first gasket layer is attached to the body and the second gasket layer is attached to the first gasket layer.
5. The earcup of claim 2 , wherein the earcup with the body and the gasket provides sound attenuation increasing from less than 9 dB at a frequency of 100 Hz to a sound attenuation less than 30 dB at a frequency of 1000 Hz.
6. The earcup of claim 2 , wherein the earcup with the body and the gasket provides a reduction in an overall A-weighted sound level of pink noise greater than 15 dB.
7. The earcup of claim 1 , wherein the earcup with the body and the gasket provides a sound attenuation greater than 20 dB in a frequency range from 2000 Hz to 10000 Hz.
8. An earcup for a medical headgear, comprising:
a body; and
a gasket attached to the body and formed of an open-cell foam, the earcup with the body and the gasket is a frequency-dependent auditory filter providing sound attenuation generally increasing as a function of frequency, the earcup with the body and the gasket provides sound attenuation greater than 10 dB throughout a frequency range from 80 Hz to 125 Hz.
9. The earcup of claim 8 , wherein the open-cell foam is a second foam material having a compression force deflection value for 25% deflection of 6-14 psi.
10. The earcup of claim 9 , wherein the second foam material has a density of approximately 20 lb/ft 3 .
11. The earcup of claim 9 , wherein the gasket is formed in only a single layer attached to the body.
12. The earcup of claim 9 , wherein the gasket includes a first gasket layer and a second gasket layer each having a same thickness, the first gasket layer is attached to the body and the second gasket layer is attached to the first gasket layer.
13. The earcup of claim 12 , wherein the second gasket layer is formed of the second foam material and the first gasket layer is formed of a third foam material having a compression force deflection value for 25% deflection of 8-20 psi.
14. The earcup of claim 9 , wherein the earcup with the body and the gasket provides a reduction in an overall A-weighted sound level of pink noise greater than 22 dB.
15. An earcup for a medical headgear, comprising:
a body; and
a gasket attached to the body and formed of an open-cell foam, the earcup with the body and the gasket is a frequency-dependent auditory filter providing sound attenuation generally increasing as a function of frequency, the open-cell foam is a first foam material having a compression force deflection value for 25% deflection of 0.3-3.5 psi, the gasket includes a first gasket layer and a second gasket layer each formed of the first foam material and each having a same thickness, the first gasket layer is attached to the body and the second gasket layer is attached to the first gasket layer.