Bergsma
Adrian Bergsma, Kanata CA
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20100007410 | Switch method for switching class amplifiers - In accordance with one the present disclosure, systems and methods are disclosed that include transmitting a binary signal from a signal source into a switch where the switch is in series between the signal source and a first circuit element. In addition, the switch is operating substantially in a switched mode and creates a switched output signal and the switch is controlled by the binary signal. Also disclosed in this method is detecting a negative voltage in a signal from a second circuit element. In this method the first circuit element is in series between the second circuit element and the switch, and upon detecting the negative voltage from the second circuit element the first circuit element creates high impedance in the first circuit element. | 01-14-2010 |
David L. Bergsma, Scottsdale, AZ US
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20090221497 | Immunodynamic complexes and methods for using and preparing such complexes - The present invention is directed to immunodynamic complexes that, in embodiments of the invention, are surprisingly antimicrobial and immunoactive. By “immunoactive,” it is meant that such compositions are capable of modulating, stimulating and repairing the immune system. Moreover, in embodiments of the invention, an immunodynamic complex is capable of supporting, maintaining and/or enhancing the structure and function of the immune system. In addition, this invention is directed to a method for preparing and using such compositions. Embodiments of the immunodynamic complexes of this invention are prepared from lacteal secretions derived from ungulates, such as cows. | 09-03-2009 |
Klazina Bernarda Bergsma US
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20140022813 | Transparent Emissive Window Element - The present invention discloses a transparent emissive window element ( | 01-23-2014 |
Martien H. Bergsma, Zoetemeer NL
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20120135465 | Endoglucanase For Reducing The Viscosity Of A Plant Materials Slurry - The present disclosure relates to composition comprising EG cellulase and methods of use, thereof. The compositions are useful, e.g., for reducing the viscosity of plant material slurry. | 05-31-2012 |
Martien H. Bergsma, Zoetermeer NL
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20120034659 | NEUTRAL pH SACCHARIFICATION AND FERMENTATION - Embodiments of the present disclosure relate to a process for producing downstream products, such as fermentable sugars and end products, from a starch substrate by saccharification and/or fermentation. The saccharification is effectively catalyzed by a glucoamylase at a pH in the range of 5.0 to 8.0. At a pH of 6.0 or above, the glucoamylase possesses at least 50% activity relative to its maximum activity. The saccharification and fermentation may be performed as a simultaneous saccharification and fermentation (SSF) process. | 02-09-2012 |
20120045812 | PRODUCTION OF ISOPRENE UNDER NEUTRAL pH CONDITIONS - Embodiments of the present disclosure relate to a process for producing isoprene from a starch substrate by saccharification and/or fermentation. The saccharification is effectively catalyzed by a glucoamylase at a pH in the range of 5.0 to 8.0. At a pH of 6.0 or above, the glucoamylase possesses at least 50% activity relative to its maximum activity. The saccharification and fermentation may be performed as a simultaneous saccharification and fermentation (SSF) process. | 02-23-2012 |
20130203140 | PRODUCTION OF ISOPRENOIDS UNDER NEUTRAL pH CONDITIONS - Embodiments of the present disclosure relate to a process for producing isoprenoid precursor molecules and/or isoprenoids from a starch substrate by saccharification and/or fermentation. The saccharification is effectively catalyzed by a glucoamylase at a pH in the range of 5.0 to 8.0. At a pH of 6.0 or above, the glucoamylase possesses at least 50% activity relative to its maximum activity. The saccharification and fermentation may be performed as a simultaneous saccharification and fermentation (SSF) process. | 08-08-2013 |
20140273145 | PRODUCTION OF ISOPRENE UNDER NEUTRAL pH CONDITIONS - Embodiments of the present disclosure relate to a process for producing isoprene from a starch substrate by saccharification and/or fermentation. The saccharification is effectively catalyzed by a glucoamylase at a pH in the range of 5.0 to 8.0. At a pH of 6.0 or above, the glucoamylase possesses at least 50% activity relative to its maximum activity. The saccharification and fermentation may be performed as a simultaneous saccharification and fermentation (SSF) process. | 09-18-2014 |
Rosemary Bergsma, Ann Arbor, MI US
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20130055807 | HERMETIC FUEL LEVEL SENDER - An in-tank fuel level sender ( | 03-07-2013 |
Rudolph Bergsma, Ann Arbor, MI US
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20130055807 | HERMETIC FUEL LEVEL SENDER - An in-tank fuel level sender ( | 03-07-2013 |