A bag, envelope, box, bottle, or any other type of container constructed of a non-absorbent breathable material such that gas and vapor can transfer from inside of the container to the outside with minimal liquid leakage. The purpose of this invention is to control the environment within the container and prevent bacterial growth, mildew growth, odor generation, moisture-based decay, oxidation, or corrosion of contents using the breathability of the container. The container is used to hold damp materials or materials wetted with volatile substances, such as water, saline, sweat, oil, or other solvents. It can also be used to hold materials that may contain residual solvent from the manufacturing process, or materials that required continued exposure to air to keep them from setting such as some adhesives and coatings. The container may be either reusable or disposable.
Phase Change And Insulating Properties Container And Method Of Use
A container and method for cooling beverages to an acceptable consumption temperature and then for maintaining that beverage temperature for a sufficient time so as to allow the beverage to be consumed is provided. The container includes a beverage chamber for receiving a beverage therein which is defined by an open top, a lid for reversibly sealing the open top, and a beverage chamber side wall. The beverage chamber side wall has an inner wall, an outer wall and a bottom portion. A reservoir side wall is disposed surroundingly at a spaced relationship to the beverage chamber side wall so as to define a reservoir therebetween. A phase change material is disposed in the reservoir.
Deep Neural Network Denoiser Mask Generation System For Audio Processing
- Niles IL, US Michael Prosinski - Chicago IL, US Iris Lorente - Park Ridge IL, US Zhen Qin - Chicago IL, US Dan Law - Glencoe IL, US Justin Sconza - Chicago IL, US Paul Becke - Mundelein IL, US
International Classification:
H04R 3/04
Abstract:
Techniques for providing an artificial intelligence denoiser related to audio processing are discussed herein. Some embodiments may include providing an audio signal sample associated with at least one microphone to a time-frequency domain transformation pipeline for a transformation period. Some embodiments may include providing the audio signal sample to a deep neural network (DNN) processing loop that is configured to determine a denoiser mask associated with a noise prediction for the audio signal sample. In a circumstance where the denoiser mask is determined prior to expiration of the transformation period, some embodiments may include applying the denoiser mask associated with the noise prediction to a frequency domain version of the audio signal sample associated with the time-frequency domain transformation pipeline to generate a denoised audio signal sample associated with the at least one microphone.
Electrical Components For Reducing Effects From Fluid Exposure And Voltage Bias
- Newark DE, US Daniel J. White - Middle River MD, US Matthew J. Velderman - Baltimore MD, US Andrew E. Seman - Pylesville MD, US Paul Becke - Stewartstown PA, US Andrew J. Yates - Baltimore MD, US
International Classification:
H01M 2/32 H01M 2/20 H01M 2/10
Abstract:
In one general aspect, a device can include a housing and an electrical component disposed within the housing. At least a portion of the electrical component can include an active-passive material. The active-passive material can have a passivation range spanning a target bias voltage range of the device.