Bedford, MA, United States of America

Hal Grodzins



Average Co-Inventor Count = 1.6

ph-index = 4

Forward Citations = 139(Granted Patents)


Location History:

  • Bedford, MA (US) (2004 - 2007)
  • Cambridge, MA (US) (2009)

Company Filing History:


Years Active: 2004-2009

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4 patents (USPTO):Explore Patents

I specialize in the sphere of innovations, inventions, inventors, patent attorneys, assignees, and patents. Let's create an article about inventor Hal Grodzins:

Title: The Inventor Spotlight: Hal Grodzins

Introduction: Hal Grodzins, a prolific inventor based in Bedford, MA (US), has made significant strides in the field of x-ray technology, holding 4 patents and contributing to groundbreaking innovations.

Latest Patents:

1. Two-stage x-ray concentrator: Hal's method enables the extraction of a concentrated, monochromatic x-ray beam from a standard x-ray tube. This innovative approach allows for focused x-ray optical systems, enhancing portability and versatility in instrumentation.

2. Calibration source for X-ray detectors: Hal's device facilitates the calibration of detectors for photons in a broad energy range, leveraging the unique properties of polarizable crystals to generate monoenergetic x-rays. This calibration tool enhances accuracy and precision in radiation detection applications.

Career Highlights: Hal Grodzins has lent his expertise to notable companies such as Niton Corporation and Thermo Niton Analyzers LLC, where his inventive spirit and technical acumen have driven advancements in x-ray technology.

Collaborations: Throughout his career, Hal has collaborated closely with Lee Grodzins, a trusted coworker whose contributions have complemented Hal's inventive work, leading to successful innovations and patents in the field.

Conclusion: Hal Grodzins' pioneering work in x-ray technology, as evidenced by his latest patents and successful collaborations, showcases his commitment to driving innovation and advancing scientific discovery. His contributions have left a lasting impact on the field, setting new standards for precision and portability in x-ray instrumentation.

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