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Jeremy M Strange, 4927 Last Leaf Cir, Windsor, CT 06095

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27 Last Leaf Cir, Windsor, CT 06095    860-2199372   

Manchester, CT   

Enfield, CT   

Bloomfield, CT   

Granby, CT   

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Medicine Doctors

Jeremy A. Strange

Specialties:
Podiatric Medicine
Work:
Ashley Valley Foot & Ankle
75 N 200 W STE 1, Vernal, UT 84078
435-7892062 (phone) 435-7892063 (fax)
Procedures:
Hallux Valgus Repair, Arthrocentesis
Conditions:
Hallux Valgus, Plantar Fascitis
Languages:
English, Spanish
Description:
Dr. Strange works in Vernal, UT and specializes in Podiatric Medicine. Dr. Strange is affiliated with Ashley Regional Medical Center.

Jeremy Strange resumes & CV records

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Jeremy Strange Photo 36

Jeremy Strange

Publications & IP owners

Us Patents

Cold Plate Assembly Incorporating Thermal Heat Spreader

US Patent:
2013032, Dec 12, 2013
Filed:
Jun 7, 2012
Appl. No.:
13/490538
Inventors:
Mark A. Zaffetti - Suffield CT, US
Jeremy M. Strange - Windsor CT, US
International Classification:
F28F 3/12
B21D 53/02
US Classification:
165168, 2989003
Abstract:
An example cold plate assembly includes a heat spreader assembly that defines a mounting surface for heat generating devices and provides an improved thermal conduction of heat away from the heat generating devices. The example heat spreader assembly provides a more uniform thermal gradient across the mounting surface of the cold plate assembly and improves thermal conductivity and cooling provided by the cold plate assembly.

Multi Waste Processor

US Patent:
2022032, Oct 13, 2022
Filed:
Apr 9, 2021
Appl. No.:
17/226381
Inventors:
- Charlotte NC, US
Gary Robert Spexarth - Houston TX, US
John Guinn - League City TX, US
Michael Paul Humbert - Wethersfield CT, US
Jeremy M. Strange - Windsor CT, US
Terrell Lee Morrison - League City TX, US
Cory Kaufman - Saint Louis MO, US
David G. Converse - Blandford MA, US
International Classification:
B09B 3/00
C02F 1/04
B01D 5/00
B01D 53/86
Abstract:
A multi-waste processing system includes a processing chamber. The processing chamber includes one or more heaters and a piston, and the processing chamber is configured to evaporate liquid waste and compact solid waste input. A condenser is operably connected to the processing chamber. The condenser is configured to condense water from the evaporated liquid waste output from the processing chamber. A gas and water separator is operably connected to the condenser. The gas and water separator is configured to separate water from the evaporated liquid waste output from the processing chamber. A recirculation pathway connects the gas and water separator to the processing chamber to recirculate gas from the gas and water separator to the processing chamber. The piston is actuated to keep the one or more heaters in close proximity to the solid waste and the liquid waste in the processing chamber.

Spiral Tube Heat Exchanger

US Patent:
2023007, Mar 16, 2023
Filed:
Oct 27, 2022
Appl. No.:
18/050137
Inventors:
- Charlotte NC, US
Jeremy M. Strange - Windsor CT, US
International Classification:
F28D 7/02
F28F 7/02
F28D 7/00
F28F 9/02
B23P 15/26
Abstract:
A heat exchanger includes a first fluid pathway enclosed in a heat exchanger body to convey a first fluid through the heat exchanger body and a second fluid pathway enclosed in the heat exchanger body to convey a second fluid through the heat exchanger body and facilitate thermal energy exchange between the first fluid and the second fluid. The first fluid pathway and the second fluid pathway together are arranged in a spiral arrangement extending along a central axis of the heat exchanger.

Manifolding For Monolithic Redundant Loop Cold Plate Utilizing Adjacent Thermal Features

US Patent:
2023000, Jan 12, 2023
Filed:
Jul 9, 2021
Appl. No.:
17/371787
Inventors:
- Charlotte NC, US
Jeremy M. Strange - Windsor CT, US
Gabriel Ruiz - Broad Brook CT, US
International Classification:
F28D 1/053
F28F 1/04
F28F 1/08
Abstract:
The monolithic redundant loop cold plate core includes a core structure and a first cooling loop formed in the core structure. The first cooling loop including: a plurality of first cooling loop passageways extending across a heat exchanger core in one or more passes. The one or more passes include at least a first pass. The monolithic redundant loop cold plate core includes a second cooling loop formed in the core structure. The second cooling loop includes: a plurality of second cooling loop passageways extending across the heat exchanger core in the one or more passes. The plurality of first cooling loop passageways are intermixed in an alternating side-by-side arrangement with the plurality of second cooling loop passageways in a single cooling plane. The monolithic redundant loop cold plate core is a single piece including a unitary structure.

Monolithic Redundant Loop Cold Plate Core Utilizing Adjacent Thermal Features

US Patent:
2023001, Jan 12, 2023
Filed:
Jul 9, 2021
Appl. No.:
17/371758
Inventors:
- Charlotte NC, US
Jeremy M. Strange - Windsor CT, US
Gabriel Ruiz - Broad Brook CT, US
International Classification:
H05K 7/20
F28D 9/00
Abstract:
A monolithic redundant loop cold plate core includes a core structure and a first cooling loop formed in the core structure. The first cooling loop including one or more first cooling loop passageways extending across a heat exchanger core in one or more passes. The one or more passes include at least a first pass. The monolithic redundant loop cold plate core includes a second cooling loop formed in the core structure. The second cooling loop including one or more second cooling loop passageways extending across the heat exchanger core in the one or more passes. The one or more first cooling loop passageways are intermixed in an alternating side-by-side arrangement with the one or more second cooling loop passageways in a single cooling plane. The monolithic redundant loop cold plate core is a single piece including a unitary structure.

Sealed Sublimator Porous Plates

US Patent:
2019039, Dec 26, 2019
Filed:
Jun 21, 2018
Appl. No.:
16/014894
Inventors:
- Charlotte NC, US
Jesse Joseph Stieber - Avon CT, US
Jeremy M. Strange - Windsor CT, US
Timothy R. Boysen - Simsbury CT, US
International Classification:
F25D 3/04
F25C 1/16
C23C 4/01
Abstract:
According to an aspect of the present disclosure, a porous plate is provided. The porous plate includes a body having an upper surface, a lower surface opposite the upper surface and sidewalls extending between respective entireties of the upper surface and the lower surface, the body being formed of porous material, and a metallic coating, which is thermally deposited onto an entirety of the sidewalls to form a high-strength mechanical bond with the entirety of the sidewalls.

Sublimator Having Integrally Formed Closure Bars On A Porous Plate

US Patent:
2019038, Dec 19, 2019
Filed:
Jun 13, 2018
Appl. No.:
16/007201
Inventors:
- Charlotte NC, US
Jeremy M. STRANGE - Windsor CT, US
Jesse Joseph STIEBER - Avon CT, US
International Classification:
F25B 19/00
F28F 13/00
Abstract:
A sublimator includes a porous plate having a first surface comprising a low pressure side and a second surface comprising a high pressure side that allows a sublimate to move through the porous plate from the high pressure side to the low pressure side, and wherein the second surface defines a primary heat transfer surface. The sublimator also includes: a plurality of secondary heat transfer surfaces integrally formed on the primary heat transfer surface to facilitate flow and evenly distribute the sublimate across the high pressure side of the porous plate; and one or more closure bars formed integrally formed along an outer end of the plate and formed by an advanced manufacturing technique.

Multi-Layer Heat Exchanger And Method Of Distributing Flow Within A Fluid Layer Of A Multi-Layer Heat Exchanger

US Patent:
2019003, Jan 31, 2019
Filed:
Oct 3, 2018
Appl. No.:
16/150758
Inventors:
- Windsor Locks CT, US
Jeremy M. Strange - Windsor CT, US
Dale T. Cooke - West Suffield CT, US
International Classification:
F28F 3/06
F28D 9/00
Abstract:
A multi-layer heat exchanger includes a fluid layer defined by a first sheet and a second sheet, the fluid layer configured to route a fluid in a predominant flow direction. Also included is a fluid inlet port disposed proximate an inlet end region of the fluid layer, wherein the fluid inlet port is oriented to introduce the fluid into the fluid layer in a direction substantially perpendicular to the predominant flow direction, wherein the inlet end region of the fluid layer comprises a non-linear geometry. Further included is at least one fin segment disposed between the first sheet and the second sheet, wherein the at least one fin segment includes a first plurality of apertures proximate the inlet end region, the at least one fin segment consisting of a single, uniform fin segment.

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