David P. Mayou - Minneapolis MN, US Michael R. Burr - Minneapolis MN, US
Assignee:
Benson Medical Instruments Company - Minneapolis MN
International Classification:
A61B 5/12
US Classification:
73585, 73 182, 600559, 702 57
Abstract:
An audiometer including a processor controlled test signal generator is adjustable so as to produce a uniform output signal when coupled with a transducer load. Each transducer set to be used with the test signal generator includes recordable indicia in written or electronic form, upon which correction values for adjusting the electronic signal output of the audiometer module to produce a desired sound output from the each transducer in the transducer set. When the transducer set is connected to the audiometer module, the correction values are either retrieved automatically from the electronic indicia, which may be an EEPROM, or are input to the processor manually by a user through an interface such as a keyboard. These correction values are then used by the processor to dynamically adjust the output of the audiometer to correct for sound output response deviation of each transducer in the transducer set.
David P. Mayou - Minneapolis MN, US Michael R. Burr - Minneapolis MN, US
International Classification:
H04R 29/00
US Classification:
381 58
Abstract:
An audiometer including a processor controlled test signal generator is adjustable so as to produce a uniform output signal when coupled with a transducer load. Each transducer set to be used with the test signal generator includes recordable indicia in written or electronic form, upon which correction values for adjusting the electronic signal output of the audiometer module to produce a desired sound output from the each transducer in the transducer set. When the transducer set is connected to the audiometer module, the correction values are either retrieved automatically from the electronic indicia, which may be an EEPROM, or are input to the processor manually by a user through an interface such as a keyboard. These correction values are then used by the processor to dynamically adjust the output of the audiometer to correct for sound output response deviation of each transducer in the transducer set.
Animal Feed Covers And Systems And Methods For Their Production And Use
Methods of covering an animal feed product involve depositing in an open end of a container an animal feed. Placing a cover on an exposed surface of the feed at the open end of the container, where the cover includes a flowable coating arranged on one side of a flexible film and a rigid or semi-rigid layer bound to an opposite side of the film. The exposed surface of the feed comprises irregular surface structures due to feed components positioned at the exposed surface. A central portion of the flexible film of the placed cover conforms to the irregular surface structures at the exposed surface of the feed upon the flowable coating reaching a temperature of at least about 125 F.
Animal Feed Covers And Systems And Methods For Their Production And Use
Methods of covering an animal feed product involve depositing in an open end of a container an animal feed. Placing a cover on an exposed surface of the feed at the open end of the container, where the cover includes a flowable coating arranged on one side of a flexible film and a rigid or semi-rigid layer bound to an opposite side of the film. The exposed surface of the feed comprises irregular surface structures due to feed components positioned at the exposed surface. A central portion of the flexible film of the placed cover conforms to the irregular surface structures at the exposed surface of the feed upon the flowable coating reaching a temperature of at least about 125 F.
Animal Feed Covers And Systems And Methods For Their Production And Use
- Shoreview MN, US Michael J. Gabriel - Inver Grove Heights MN, US Michael S. Burr - Marthasville MO, US
International Classification:
B65D 65/02 A23P 1/00
Abstract:
Covers for sealing and/or bonding with an exposed surface of an animal feed within a container include a flexible film that conforms to the animal feed and a rigid or semi-rigid layer that allows the cover to be handled by an operator during placement of the cover over the animal feed composition while the composition is at elevated temperatures. The polymer film may include a heat-activated coating that establishes a bond with the animal feed when the feed is at elevated temperatures or when an external heat source is applied to the cover. The heat-activated coating may be flowable at a temperature of at least about 125 F. Upon placement of the cover over the animal feed, the film conforms to the exposed surface of the feed and the cover forms a seal with the animal feed as flowable coating reaches a flowable temperature.
Michael Burr, founder and director of the Minnesota-based consultancy Microgrid Institute, is involved in projects in New York and Maryland, where the Montgomery County town of Olney is participating in a $1.2 million federal Department of Energy project to design and test microgrid control systems.
first began advising the Bucks in 1992, serves as the Bucks executive vice president of business administration. He is working on the proposed sale of the franchise along with Bucks chief financial officer Michael Burr, who is also an attorney, and senior director for legal affairs Michael Sneathern.