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Marion Ellis

685 individuals named Marion Ellis found in 51 states. Most people reside in Florida, Texas, Georgia. Marion Ellis age ranges from 31 to 97 years. Related people with the same last name include: Carlton Ellis, Irvin Minor, Elmer Ellis. You can reach people by corresponding emails. Emails found: daniels_gurl_20022***@yahoo.com, hel***@comcast.net, marion.el***@comcast.net. Phone numbers found include 513-221-2050, and others in the area codes: 843, 205, 239. For more information you can unlock contact information report with phone numbers, addresses, emails or unlock background check report with all public records including registry data, business records, civil and criminal information. Social media data includes if available: photos, videos, resumes / CV, work history and more...

Public information about Marion Ellis

Phones & Addresses

Name
Addresses
Phones
Marion Ellis
502-449-9966
Marion Ellis
601-786-6280
Marion B. Ellis
513-221-2050
Marion Ellis
602-923-1261, 602-944-8904
Marion Ellis
606-871-7297
Marion B. Ellis
843-332-1307
Marion Ellis
618-684-5587
Marion Ellis
713-699-3564
Background search with BeenVerified
Data provided by Veripages

Business Records

Name / Title
Company / Classification
Phones & Addresses
Marion E. Ellis
Treasurer
Christian Community Concern, Inc
992 Marge Ln, Molino, FL 32577
Marion E. Ellis
Managing
MTOXYALARM COMPANY, LLC
Business Services at Non-Commercial Site
1160 Peperidge Dr, Pensacola, FL 32504
Marion A Ellis
President
ELLIS & ELLIS, INC
Business Services at Non-Commercial Site
4115 Kismet Dr, Durham, NC 27705
Durham, NC 27705
919-383-3737
Marion E. Ellis
Managing
Consult Ed Ellis, LLC
Electrical/Electronic Manufacturing · Business Consulting Services
1160 Peperidge Dr, Pensacola, FL 32504
850-476-1858
Marion E. Ellis
, President, Vice President
MOLINO OUTREACH MINISTRY, INC
Religious Organization
6507 Hwy 29 N, Molino, FL 32577
992 Marge Ln, Molino, FL 32577
Marion Ellis
Office Manager
Tahoe Spine Pain Care
Medical Doctor's Office
889 Alder Ave, Incline Village, NV 89451
Marion Ellis
Pastor
Redeeming River Church of God, Inc
Religious Organization
7721 Woodbine Rd, Woodbine, MD 21797
Marion S Ellis
incorporator
Rudell Development Corporation, a close corporation
REAL ESTATE
Birmingham, AL

Publications

Us Patents

Method For Forming Thick Film Resistors And Compositions Therefor

US Patent:
5463367, Oct 31, 1995
Filed:
Oct 14, 1993
Appl. No.:
8/136058
Inventors:
Marion E. Ellis - Kokomo IN
Assignee:
Delco Electronics Corp. - Kokomo IN
International Classification:
H01C 1012
US Classification:
338308
Abstract:
Thick film resistor ink compositions and a method for formulating and processing such inks are provided for producing thick film resistors having highly repeatable and stable resistance characteristics. The inks are specifically formulated to produce resistors whose resistivities are determined in part by the sintering temperature employed in the processing of the resistors. The processing of the inks involves using infrared radiation techniques to rapidly sinter the inks at highly controllable temperatures, so as to enable the resistance of a resistor to be predictably altered by the sintering operation, such that in-process adjustments can be made to the processing method. Thick film resistors produced in accordance with this invention are characterized by high stability to environmental influences and low TCR values on the order of about. +-. 50 ppm/. degree. C.

Segmented Thick Film Resistors

US Patent:
5621240, Apr 15, 1997
Filed:
Sep 5, 1995
Appl. No.:
8/523580
Inventors:
Marion E. Ellis - Kokomo IN
Assignee:
Delco Electronics Corp. - Kokomo IN
International Classification:
H01L 2704
US Classification:
257536
Abstract:
A novel thick film resistor configuration and a method for fabricating thick film resistors, by which such resistors can be processed to achieve targeted electrical properties in an as-fired condition. The configuration and method of this invention involve creating a thick film resistor in the form of a series of short resistors whose combined resistance values approximately equal the predetermined resistance value required of the thick film resistor by its hybrid electronic circuit, yet with the use of minimal post-firing trimming. Such a configuration and method enable the production of thick film resistors from the same ink composition but with significantly different aspect ratios, yet which exhibit minimal differences between TCR values. Consequently, thick film resistors configured and fabricated in accordance with this invention are characterized by enhanced production throughput, repeatability, and reliability.

Method Of Forming Integral Passive Electrical Components On Organic Circuit Board Substrates

US Patent:
6631551, Oct 14, 2003
Filed:
Jun 26, 1998
Appl. No.:
09/105611
Inventors:
Philip Harbaugh Bowles - Carmel IN
Washington Morris Mobley - Carmel IN
Richard Dixon Parker - Tipton IN
Marion Edmond Ellis - Kokomo IN
Assignee:
Delphi Technologies, Inc. - Troy MI
International Classification:
H01C 1706
US Classification:
29620, 29846, 29848, 338258, 338308
Abstract:
A process for forming stable integrated resistors ( ) and capacitors ( ) on organic substrates ( ). The resistors ( ) and capacitors ( ) are capable of a wide range of resistance and capacitance values, yet can be processed in a manner that does not detrimentally effect the organic substrate ( ) or entail complicated processing. The method generally entails the use of thick-film materials usually of the types used to form resistors and capacitors on ceramic substrates. The thick-film materials are applied to an electrically-conductive foil ( ) and then heated to bond the thick-film material to the foil ( ) and form a solid resistive or capacitive mass ( ). The foil ( ) is then laminated to an organic substrate ( ), such that the resistive/capacitive mass ( ) is attached to and preferably embedded in the organic substrate ( ). Finally, the foil ( ) is etched to form at least one of two terminals that contact the resistive/capacitive mass ( ) and thereby complete the passive electrical component ( ). Resistors ( ) can also be formed of polymer thick-film (PTF) inks, in which case the PTF ink is cured on the foil ( ) for an extended period at a temperature sufficient to completely cure the ink prior to laminating the foil ( ) to the organic substrate ( ).

Apparatus And Method For Producing Uniform Fired Resistors

US Patent:
4469044, Sep 4, 1984
Filed:
Jun 4, 1982
Appl. No.:
6/385113
Inventors:
Terry R. Bloom - Middlebury IN
Marion E. Ellis - Decatur IN
Assignee:
CTS Corporation - Elkhart IN
International Classification:
H01C 1706
US Classification:
118665
Abstract:
An apparatus and process for producing fired resistors having uniform resistance characteristics, wherein a continuous closed-loop feedback network detects deviations from standard resistivity values and continuously corrects the composition by varying the proportions of high and low resistance material ratios or blends of such materials being screened onto the substrates (212), and detects deviations in screened-on film thickness for continuously correcting either the speed of operation of a screener assembly (No. 1, No. 2) or the squeegee head pressure in order to obtain a predetermined film thickness. The process continuously adjusts the resistance values through on-the-production-line control of mixture ratios of high and low resistive paints, to produce final fired resistors (170) having the required resistance values, temperature coefficients of resistivity, improved stability, and improved TCR tracking values.

Metal Diaphragm Sensor With Polysilicon Sensing Elements And Methods Therefor

US Patent:
6022756, Feb 8, 2000
Filed:
Jul 31, 1998
Appl. No.:
9/127291
Inventors:
Douglas Ray Sparks - Kokomo IN
Andres Deogracias Viduya - Carmel IN
Lewis Henry Little - Peru IN
Marion Edmond Ellis - Kokomo IN
Assignee:
Delco Electronics Corp. - Kokomo IN
International Classification:
H01L 2100
US Classification:
438 53
Abstract:
A sensor (10) having polysilicon strain-sensing elements (20) on a metal diaphragm (16). A thick-film insulating layer (18) covers the metal diaphragm (16), and thin-film polysilicon resistive elements (20) are formed on the thick-film insulating layer (18). Thick-film conductors (22) are formed on the thick-film insulating layer (18) and contact the thin-film polysilicon resistive elements (20) to form electrical interconnects to the resistive elements (20). The thick-film conductors (22) preferably contain silicon in order to reduce diffusion of silicon from the polysilicon resistive elements (20). The thick-film insulating layer (18) may be made up of a number of individual thick-film layers, the uppermost of which is stable and nonreactive with the thin-film polysilicon resistive elements (20) and the thick-film conductors (22) at temperatures of at least 600. degree. C. A passivation layer (24) overlies the thin-film polysilicon resistive elements (20) and the thick-film conductors (22). The sensor (10) can be made sufficiently rugged to be used as a structural member of a fluid-containing vessel.

Tunable Dielectric Compositions Including Low Loss Glass

US Patent:
6905989, Jun 14, 2005
Filed:
May 31, 2002
Appl. No.:
10/161483
Inventors:
Marion E. Ellis - Elkridge MD, US
Steven Wesley Winn - Ellicott City MD, US
Luna H. Chiu - Abingdon MD, US
Assignee:
Paratek Microwave, Inc. - Columbia MD
International Classification:
C03C014/00
US Classification:
501 32, 501134, 501135, 501136, 501137, 501138, 501139, 501 66, 501 67
Abstract:
Tunable dielectric materials including an electronically tunable dielectric ceramic and a low loss glass additive are disclosed. The tunable dielectric may comprise a ferroelectric perskovite material such as barium strontium titanate. The glass additive may comprise boron, barium, calcium, lithium, manganese, silicon, zinc and/or aluminum-containing glasses having dielectric losses of less than 0. 003 at 2 GHz. The materials may further include other additives such as non-tunable metal oxides and silicates. The low loss glass additive enables the materials to be sintered at relatively low temperatures while providing improved properties such as low microwave losses and high breakdown strengths.

Dual-Solder Process For Enhancing Reliability Of Thick-Film Hybrid Circuits

US Patent:
5803344, Sep 8, 1998
Filed:
Sep 9, 1996
Appl. No.:
8/709886
Inventors:
Anthony John Stankavich - Kokomo IN
Christine Ann Paszkiet - Kokomo IN
Marion Edmond Ellis - Kokomo IN
Assignee:
Delco Electronics Corp. - Kokomo IN
International Classification:
B23K 3102
B23K 3526
US Classification:
22818022
Abstract:
A high temperature thick-film hybrid circuit is characterized by a surface-mount circuit component that is electrically interconnected with a conductor. The surface-mount circuit component of the thick-film hybrid circuit is bonded to the conductor with a soldering technique employing dual-solder layers. The dual-solder layers enable component attachment to the conductor at a temperature below the maximum processing temperature of the component, while forming a solder joint that exhibits suitable adhesion properties at temperatures in excess of 165. degree. C. The dual-solder layers can be chosen to inhibit tin diffusion from the solder, silver leaching from the conductor, and the formation of a brittle intermetallic at the solder-conductor interface.

Method For Determining Empty Oxygen Tank And Device Therefor

US Patent:
2010009, Apr 22, 2010
Filed:
Oct 13, 2009
Appl. No.:
12/587726
Inventors:
Jason Albert Lee - Molino FL, US
Edward Mathew Cates - Pensacola FL, US
Marion Edmond Ellis - Pensacola FL, US
International Classification:
G08B 21/00
US Classification:
340626, 3406915
Abstract:
A cost effective method is provided for determining empty and/or near empty medical and other medical emergency oxygen tanks employing a single, simple device for practicing the method, comprised of 5 or 6 readily obtainable components, to issue visual and audible alarms when the oxygen pressure of a medical oxygen tank has decreased to a predetermined pressure, deemed too low to provide the needed and/or prescribed oxygen flow rate to a patient to alert medical personnel and other caregivers that it is time to replace the tank in with a full tank.

FAQ: Learn more about Marion Ellis

How is Marion Ellis also known?

Marion Ellis is also known as: Marion J Ellis, Jane Ellis, Earl M Ellis, Marion E Ellisjr, Beverly Stone, Ramona Sweeten, Junior E Marion. These names can be aliases, nicknames, or other names they have used.

Who is Marion Ellis related to?

Known relatives of Marion Ellis are: Ethel White, Raymond Stone, Pamela Booth, Ethel Ellis, Tammy Crain, Jazzma Owino. This information is based on available public records.

What are Marion Ellis's alternative names?

Known alternative names for Marion Ellis are: Ethel White, Raymond Stone, Pamela Booth, Ethel Ellis, Tammy Crain, Jazzma Owino. These can be aliases, maiden names, or nicknames.

What is Marion Ellis's current residential address?

Marion Ellis's current known residential address is: 4461 Zelda Ln, Memphis, TN 38122. Please note this is subject to privacy laws and may not be current.

What are the previous addresses of Marion Ellis?

Previous addresses associated with Marion Ellis include: 11455 Floyd Dr, Overland Park, KS 66210; 11455 Floyd Dr, Shawnee Mission, KS 66210; 147 Cascade Dr, Thibodaux, LA 70301; 4115 Kismet Dr, Durham, NC 27705; 6825 Alexander Rd, Charlotte, NC 28270. Remember that this information might not be complete or up-to-date.

Where does Marion Ellis live?

Memphis, TN is the place where Marion Ellis currently lives.

How old is Marion Ellis?

Marion Ellis is 97 years old.

What is Marion Ellis date of birth?

Marion Ellis was born on 1926.

What is Marion Ellis's email?

Marion Ellis has such email addresses: daniels_gurl_20022***@yahoo.com, hel***@comcast.net, marion.el***@comcast.net, marion.el***@netzero.net, mari***@sbcglobal.net, lolo***@netzero.com. Note that the accuracy of these emails may vary and they are subject to privacy laws and restrictions.

What is Marion Ellis's telephone number?

Marion Ellis's known telephone numbers are: 513-221-2050, 843-332-1307, 205-824-9981, 239-694-6201, 252-355-2576, 269-686-2104. However, these numbers are subject to change and privacy restrictions.

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