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Matthew M Hanlon, 47Somersworth, NH

Matthew Hanlon Phones & Addresses

Somersworth, NH   

Hampton, NH   

34 Lawson Farm Rd, Londonderry, NH 03053    603-4343634   

Nashua, NH   

Mentions for Matthew M Hanlon

Career records & work history

Medicine Doctors

Matthew S. Hanlon

Specialties:
Family Medicine
Work:
Evergreen Medical LTDEvergreen Family Medicine
2850 W 95 St STE 403, Evergreen Park, IL 60805
708-4232662 (phone) 708-3986926 (fax)
Site
Education:
Medical School
Midwestern University/ Chicago College of Osteopathic Medicine
Graduated: 1996
Procedures:
Arthrocentesis, Electrocardiogram (EKG or ECG), Vaccine Administration
Conditions:
Disorders of Lipoid Metabolism, Gastroesophageal Reflux Disease (GERD), Hypertension (HTN), Abnormal Vaginal Bleeding, Acne, Acute Bronchitis, Acute Sinusitis, Acute Upper Respiratory Tract Infections, Allergic Rhinitis, Anxiety Phobic Disorders, Atrial Fibrillation and Atrial Flutter, Attention Deficit Disorder (ADD), Benign Prostatic Hypertrophy, Bronchial Asthma, Cataract, Chronic Bronchitis, Contact Dermatitis, Diabetes Mellitus (DM), Erectile Dysfunction (ED), Fractures, Dislocations, Derangement, and Sprains, Glaucoma, Gout, Herpes Genitalis, Herpes Simplex, Herpes Zoster, Hypothyroidism, Iron Deficiency Anemia, Migraine Headache, Osteoarthritis, Osteoporosis, Peripheral Nerve Disorders, Retinal Detachments, Rosacea, Skin and Subcutaneous Infections, Substance Abuse and/or Dependency
Languages:
English, Spanish
Description:
Dr. Hanlon graduated from the Midwestern University/ Chicago College of Osteopathic Medicine in 1996. He works in Evergreen Park, IL and specializes in Family Medicine. Dr. Hanlon is affiliated with Little Company Of Mary Hospital.

Matthew Hanlon resumes & CV records

Resumes

Matthew Hanlon Photo 47

Operational Support Analyst

Location:
30 Victoria Dr, Somersworth, NH 03878
Industry:
Information Technology And Services
Work:
Compucom
Operational Support Analyst
Shorts Building Supply 2004 - 2009
Operations Manager
Skills:
Process Management, Decommissioning, Asset Management, Client Relations, Itil, Management, Microsoft Office, Process Improvement, Vendor Management
Matthew Hanlon Photo 48

Highway Flagger

Work:

Highway Flagger
Matthew Hanlon Photo 49

Matthew Hanlon

Matthew Hanlon Photo 50

Matthew Hanlon

Matthew Hanlon Photo 51

Matthew Hanlon

Location:
United States

Publications & IP owners

Us Patents

Voltage Switching In An Imaging Modality That Utilizes Radiation To Image An Object

US Patent:
2013029, Nov 7, 2013
Filed:
May 1, 2012
Appl. No.:
13/461332
Inventors:
Matthew Hanlon - Kingston NH, US
Stephen J. Quigley - Hampstead NH, US
Assignee:
Analogic Corporation - Peabody MA
International Classification:
H05G 1/32
G01N 23/04
H05G 1/12
US Classification:
378 62, 378103, 378111
Abstract:
Among other things, one or more techniques and/or systems are provided for varying a voltage applied to a radiation source of an imaging modality to vary an energy of emitted radiation. A power supply comprises at least two rectifiers, with a first rectifier being electrically separated from a second rectifier via a switching component. When the switching component is opened, the first and second rectifiers are effectively arranged in parallel, and when the switching component is closed, the first and second rectifiers are effectively arranged in series. The voltage applied by the power supply may be different based upon whether the rectifiers are arranged in parallel or in series, but the power output by the power supply may remain substantially constant regardless of the rectifier arrangement.

Power And Information Transfer Between Units Having Relative Movement

US Patent:
2018013, May 17, 2018
Filed:
Apr 30, 2015
Appl. No.:
15/570405
Inventors:
- Peabody MA, US
Matthew HANLON - Kingston NH, US
Louis R. POULO - Andover MA, US
International Classification:
H02J 5/00
A61B 6/03
A61B 6/00
H02J 50/10
H04B 5/00
H05G 1/12
G01N 23/046
Abstract:
One or more techniques and/or systems are provided for transferring power and/or information between a stator and a rotor. The rotor includes a high voltage rectifier filter and an auxiliary regulator coupled to a power transfer apparatus (e.g., rotary transformer). The high voltage rectifier filter is configured to receive a first electrical signal, associated with a first voltage, from the power transfer apparatus and to generate a second electrical signal, associated with a second voltage, based on a frequency and/or an amplitude of the first electrical signal. The auxiliary regulator is configured to generate a third electrical signal based on the first electrical signal, where a third voltage associated with the third electrical signal is generated independent of the frequency and/or amplitude of the first electrical signal. A single bi-directional data link is used for control and/or communication between the stator and the rotor.

Rf Power Amplifier With Dynamic Impedance Matching Through Discrete Presets And/Or A Variable Power Supply

US Patent:
2017035, Dec 14, 2017
Filed:
Jun 14, 2016
Appl. No.:
15/181523
Inventors:
- Peabody MA, US
GERALD A. BRIMMER - North Andover MA, US
MATTHEW HANLON - Kingston NH, US
International Classification:
H03F 1/56
H03F 3/19
H03F 3/21
G01R 33/36
Abstract:
An apparatus includes an RF power amplifier with a controller and an impedance matching network. The RF power amplifier is configured to drive a load in electrical communication with the RF power amplifier. The impedance matching network is located electrically between the RF power amplifier and the load. The impedance matching network is configured to match an output impedance of the RF power amplifier and an impedance of the load. The impedance matching network includes a set of fixed value impedance matching circuits configured to provide different discrete values. The RF amplifier includes a variable DC power supply powering RF transistors to result in a variable output impedance for the amplifier. The controller selects an impedance matching circuit of the capacitor presets and/or the right setting for the variable DC supply that result in minimum reflected power to match the output impedance of the amplifier to the output load impedance.

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