Shell Beach, CA, United States of America

Brian Doyle Miller

This inventor holds 10 USPTO granted patents. Top assignees: Intouch Technologies, Inc., Other. Active years: 2001-2019.


% Patents Active = 70.0

Average Co-Inventor Count = 2.5

ph-index = 5

Forward Citations = 267(Granted Patents)


Location History:

  • Shell Beach, CA (US) (2008)
  • Lakeville, MA (US) (2010)
  • Louisville, KY (US) (2001 - 2019)
  • Santa Barbara, CA (US) (2011 - 2019)

Company Filing History:


Years Active: 2001-2019

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10 patents (USPTO):Explore Patents

Title: Innovations of Brian Doyle Miller

Introduction

Brian Doyle Miller is an accomplished inventor based in Shell Beach, California. He holds a total of 10 patents, showcasing his expertise in developing innovative technologies. His work primarily focuses on enhancing user experience through advanced systems in robotics and feedback mechanisms.

Latest Patents

One of his latest patents is the "Electronic Audible Feedback Bullet Targeting System." This system is designed to sense the impact of a bullet on a target and remotely report the successful impact to the shooter. It utilizes a signal transmitted from a sensor transmitter to a receiver incorporated with headphones, earbuds, or smart devices with Wi-Fi and Bluetooth capabilities. The system includes a wireless transmitter and an impact/vibration sensor, such as a piezoelectric sensor. This technology can be applied to various stationary targets, including metallic, plastic, film, or paper targets, as well as movable targets like body armor or removable patches used in mock warfare or paintball competitions.

Another notable patent is the "Mobile Robot with a Head-Based Movement Mapping Scheme." This robotic system features a mobile robot and a remote input device, such as a joystick, which allows users to control the movement of a camera and the mobile platform of the robot. The system operates in a mode where the mobile platform moves in a camera reference coordinate system, ensuring that the robot's movement corresponds to the direction viewed on a screen. This design prevents disorientation during the robot's movement when the camera

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