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Bussinger
Allen Bussinger, Saginaw, MI US
| Patent application number | Description | Published |
|---|---|---|
| 20090272594 | Personal Mobility Vehicle - The driven front wheel drive assembly includes a drive assembly with a drive frame. The drive frame has a vertical plate that pivots about a steering axis. A gear case with a plate portion and a skirt is clamped to the vertical plate to form a sealed gear case. A helical pinion gear is on a driven motor shaft. A compound gear with a helical gear is in mesh with the helical pinion gear. A first drive pinion gear fixed to the helical pinion gear is in mesh with the first spur gear. A second spur gear is fixed to the drive axle shaft and in mesh with first drive pinion gear. All of the gears are in the gear case rotate about parallel axes. The helical pinion gear and the first drive pinion gear have small pitch diameters to increase torque. The driven axle drives a wheel. | 11-05-2009 |
Brent L. Bussinger, Leavenworth, KS US
| Patent application number | Description | Published |
|---|---|---|
| 20100034926 | FOOD PARTICLE FOR PROMOTING WELLNESS - Embodiments described herein include an extruded food product comprising a soy protein; up to about 15% insoluble fiber; and up to about 15% soluble fiber. In one embodiment, the soluble fiber is inulin. | 02-11-2010 |
Klaus Bussinger, Munchenstein CH
| Patent application number | Description | Published |
|---|---|---|
| 20100139415 | Method for Monitoring an Ultrasound Flowmeter System and/or Process - A method for system- and/or process-monitoring in the case of an ultrasound flow measuring device having a plurality of measuring channels, wherein a medium flows though a pipeline or measuring tube in the direction of a longitudinal axis of the pipeline or measuring tube. Ultrasonic measuring signals are coupled into the pipeline or measuring tube and coupled out of the pipeline or measuring tube in such a way that they travel through the medium along different sound paths. Following passage through the pipeline or measuring tube, the ultrasonic measuring signals are detected in the individual measuring channels, wherein at least one actual quantity describing the ultrasonic measuring signal of each measuring channel is ascertained. The actual quantity is compared with a desired quantity captured under predetermined system- or process-conditions, and a report is output in the case of a difference between the ascertained, actual quantity and the captured, desired quantity. | 06-10-2010 |
