Troy R. Brostrom - Lima OH, US Gregg M. Hemmelgarn - Yorkshire OH, US
International Classification:
F04B 39/12 F16L 5/00 F16L 13/02
US Classification:
417572, 285194, 2852881
Abstract:
A universal oil fitting may include a body and an orifice. The body may include a first end, a second end, a first outer portion and a second outer portion. The first outer portion may include external threads and may extend longitudinally between the first end and the second outer portion. The orifice may extend longitudinally through the body and may include a first portion having a first inner diameter and a second portion having a threaded second inner diameter. The first portion may extend longitudinally between the first end of the outer body and the second portion.
Gregg M. Hemmelgarn - Yorkshire OH, US Kyle M. Bergman - Yorkshire OH, US Glenn D. Deland - Sidney OH, US Walter T. Grassbaugh - Sidney OH, US James A. Schaefer - Troy OH, US
Assignee:
Emerson Climate Technologies, Inc. - Sidney OH
International Classification:
F04D 29/60 B23P 15/00
US Classification:
4151821, 415229, 29888025
Abstract:
A compressor is provided and may include a shell having an inner surface and an outer surface and a bearing housing disposed within the shell and having an engagement surface opposing the inner surface. The engagement surface may include a first channel formed substantially perpendicular to a longitudinal axis of the shell and a second channel formed substantially parallel to the longitudinal axis of the shell and in communication with the first channel. The first channel and the second channel may receive a deformed portion of the shell therein to fix a position of the bearing housing relative to the shell.
Heat-Pump System With Refrigerant Charge Diagnostics
- Sidney OH, US Gregg M. HEMMELGARN - Yorkshire OH, US
Assignee:
Emerson Climate Technologies, Inc. - Sidney OH
International Classification:
F24D 19/10 F25B 49/00 F25B 13/00
Abstract:
A heat-pump circuit may include an indoor heat exchanger, an outdoor heat exchanger, a compressor adapted to circulate a working fluid between the indoor and outdoor heat exchangers, and an expansion device disposed between the indoor and outdoor heat exchangers. A monitor for the heat-pump system may include a return-air temperature sensor, a supply-air temperature sensor, and a processor. The return-air temperature sensor may be adapted to measure a first air temperature of air upstream of the indoor heat exchanger. The supply-air temperature sensor may be adapted to measure a second air temperature of air downstream of the indoor heat exchanger. The processor may be in communication with the return-air temperature sensor and the supply-air temperature sensor. The processor may be programmed to determine a working-fluid-charge condition of the heat-pump system based on the first and second air temperatures.
- Sidney OH, US Gregg M. HEMMELGARN - Yorkshire OH, US Kyle M. BERGMAN - Yorkshire OH, US Glenn D. DELAND - Sidney OH, US Walter T. GRASSBAUGH - Sidney OH, US James A. SCHAEFER - Troy OH, US
Assignee:
Emerson Climate Technologies, Inc. - Sidney OH
International Classification:
F04D 29/60 F04C 2/00 B23P 11/00 B23P 15/00
Abstract:
A compressor is provided and may include a shell and a stator. The shell includes an inner surface and an outer surface. The stator may be attached to the shell at the inner surface via a first stake. The first stake may be formed by deforming a portion of the shell into the stator.
- St. Louis MO, US Gregg M. HEMMELGARN - Saint Henry OH, US Fadi M. ALSALEEM - Omaha NE, US Priotomo ABIPROJO - O'Fallon MO, US
Assignee:
EMERSON ELECTRIC CO. - St. Louis MO
International Classification:
F24F 11/00 G05B 23/02 G05B 15/02
Abstract:
A monitoring system for a heating, ventilation, and air conditioning (HVAC) system of a building includes a monitoring device installed at the building, a monitoring server located remotely from the building, and a review server. The monitoring device measures an aggregate current supplied to components of the HVAC system and transmits current data based on the measured aggregate current. The monitoring server receives the transmitted current data and, based on the received current data, assesses whether failures have occurred in first and second components of the HVAC components. The monitoring server generates a first advisory in response to determining that the failure has occurred in the first component. The review server provides the first advisory to a technician for review and, in response to the technician verifying that the failure has occurred, transmits a first alert.
Heat Pump System With Refrigerant Charge Diagnostics
- Sidney OH, US Gregg M. HEMMELGARN - Saint Henry OH, US
Assignee:
EMERSON CLIMATE TECHNOLOGIES, INC. - Sidney OH
International Classification:
F24D 19/10 F25B 49/00
US Classification:
62125, 165 111
Abstract:
A heat-pump circuit may include an indoor heat exchanger, an outdoor heat exchanger, a compressor adapted to circulate a working fluid between the indoor and outdoor heat exchangers, and an expansion device disposed between the indoor and outdoor heat exchangers. A monitor for the heat-pump system may include a return-air temperature sensor, a supply-air temperature sensor, and a processor. The return-air temperature sensor may be adapted to measure a first air temperature of air upstream of the indoor heat exchanger. The supply-air temperature sensor may be adapted to measure a second air temperature of air downstream of the indoor heat exchanger. The processor may be in communication with the return-air temperature sensor and the supply-air temperature sensor. The processor may be programmed to determine a working-fluid-charge condition of the heat-pump system based on the first and second air temperatures.
- St. Louis MO, US Gregg M. HEMMELGARN - Saint Henry OH, US Fadi M. ALSALEEM - Troy OH, US Priotomo ABIPROJO - St. Louis MO, US
Assignee:
EMERSON ELECTRIC CO. - St. Louis MO
International Classification:
F24F 11/02 F24D 19/10
US Classification:
165 112, 62127, 137 56
Abstract:
An apparatus for monitoring a heating, ventilation, or air conditioning (HVAC) system includes an indoor unit monitor module electrically connected to a current sensor and first and second refrigerant temperature sensors. The current sensor generates a first current signal based on aggregate current consumed by components of an indoor unit of the HVAC system. The refrigerant temperature sensors generate first and second refrigerant temperature signals, respectively, based on measured temperatures of refrigerant circulating within the HVAC system. The indoor unit monitor module receives, from a secondary monitoring module, a second current signal based on aggregate current consumed by components of an outdoor unit of the HVAC system. The indoor unit monitor module transmits data to a remote server to assess whether a failure has occurred or is likely to occur in the components of the HVAC system. The data is based on the current signals and the refrigerant temperature signals.
- St. Louis MO, US Gregg M. HEMMELGARN - Saint Henry OH, US Fadi M. ALSALEEM - Troy OH, US Priotomo ABIPROJO - St. Louis MO, US
Assignee:
EMERSON ELECTRIC CO. - St. Louis MO
International Classification:
G08B 21/18
US Classification:
340679
Abstract:
A monitoring system for a heating, ventilation, and air conditioning (HVAC) system of a building includes a monitoring device installed at the building, a monitoring server located remotely from the building, and a review server. The monitoring device measures an aggregate current supplied to components of the HVAC system and transmits current data based on the measured aggregate current. The monitoring server receives the transmitted current data and, based on the received current data, assesses whether failures have occurred in first and second components of the HVAC components. The monitoring server generates a first advisory in response to determining that the failure has occurred in the first component. The review server provides the first advisory to a technician for review and, in response to the technician verifying that the failure has occurred, transmits a first alert.
Resumes
Field Agent At Knights Of Columbus - Western Ohio Agency
Knights of Columbus
Field Agent at Knights of Columbus - Western Ohio Agency
Emerson Commercial & Residential Solutions Feb 2017 - Apr 2019
Manager of Integrated Solutions
Emerson Commercial & Residential Solutions Feb 2017 - Apr 2019
Director of Technical Service and Solutions
Emerson Commercial & Residential Solutions May 2016 - Feb 2017
Manager of Modulation Solutions
Emerson Commercial & Residential Solutions Jan 2014 - May 2016
Technical Services and Engineering Manager, Residential Solutions
Education:
Wright State University 2002 - 2004
Masters, Business Administration, Management
University of Dayton 1999 - 2001
Bachelors, Bachelor of Science, Mechanical Engineering
Edison State Community College 1997 - 1999
Associates, Applied Science, Mechanical Engineering
St. Henry High School 1994 - 1997
Skills:
Hvac System Diagnostics Project Management Manufacturing Liaison Purchasing Supplier Quality Lab Supervision International Experience Cost Reductions New Product Development Engineering Hvac Product Development Air Conditioning Hvac Controls Electronics Testing Operations Management Technical Support Remote Monitoring Field Testing Algorithm Development Customer Support Cross Functional Team Leadership Management Mechanical Engineering Manufacturing Engineering Management Lean Manufacturing Continuous Improvement
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