Inventor profile of:

Thomas Bosselmann

City:

Marloffstein

Country:

Germany

Published Applications:

29

Last publication date:

2018-09-20

Top Assignees for applications by Thomas Bosselmann

The entities that hold a legal rights for patent applications filed by inventor Bosselmann Thomas:

Recent patent applications by Bosselmann Thomas

Thomas Bosselmann from Marloffstein, DE has applied for patents for these inventions. The list has both pending applications and granted patents:

#1 | 2018-09-20
US20180267077A1
Physics

Fiber-Optic Accelerometer

#2 | 2014-05-15
US20140133994A1
Mechanical engineering

GAS TURBINE WITH PYROMETER

#3 | 2014-05-15
US20140133518A1
Physics

Temperature sensor arrangement

#4 | 2012-07-26
US20120186570A1
Physics

Device generating exhaust gas, especially a boat, comprising a system for determining the volume of exhaust gas

#5 | 2012-07-19
US20120180548A1
Physics

System for determining exhaust gas volume

#6 | 2012-02-16
US20120039358A1
Physics

Device for Measuring Temperature in Electromagnetic Fields

#7 | 2011-11-10
US20110274386A1
Physics

Fiber-optic vibration sensor

#8 | 2011-05-12
US20110107846A1
Physics

Wind energy installation comprising a wind speed measuring system

#9 | 2011-04-28
US20110097192A1
Physics

Pyrometer with Spatial Resolution

#10 | 2010-08-19
US20100208247A1
Physics

Quality assurance testing for rotor blades of a wind energy installation

#11 | 2010-03-18
US20100066387A1
Physics

Device for determining the distance between a rotor blade and a wall of a turbine engine surrounding the rotor blade

#12 | 2010-01-28
US20100023298A1
Physics

Device for determining the distance between a rotor blade and a wall of a turbine engine surrounding the rotor blade

#13 | 2010-01-21
US20100014072A1
Physics

Optical device for monitoring a rotatable shaft with an oriented axis

#14 | 2010-01-07
US20100002982A1
Physics

Arrangement for monitoring a stressed body and method for the production thereof

#15 | 2009-08-13
US20090202194A1
Physics

OPTICAL MEASURING DEVICE FOR DETERMINING TEMPERATURE IN A CRYOGENIC ENVIRONMENT AND WINDING ARRANGEMENT WHOSE TEMPERATURE CAN BE MONITORED

#16 | 2009-07-02
US20090165551A1
Physics

Flowmeter having at least two optical waveguides and one controlled electrical heating element for determining a flow direction

#17 | 2009-05-28
US20090134884A1
Physics

Method for determining the layer thickness of a TBC coating of at least one blade of a non-positive-displacement machine, a corresponding TBC layer thickness measuring device for carrying out the method and use of the method and the TBC layer thickness measuring device

#18 | 2009-04-30
US20090107231A1
Physics

Flowmeter for determining a flow direction

#19 | 2009-01-15
US20090016880A1
Physics

Pressure measurement device and method for determining wind force at wind energy installations

#20 | 2008-07-03
US20080159353A1
Physics

Method for determining the temperature of a surface coating

#21 | 2008-06-19
US20080141778A1
Physics

Method of non-destructively testing a work piece and non-destructive testing arrangement

#22 | 2006-06-08
US20060117844A1
Physics

Measurement element for determining a flow rate

#23 | 2006-06-01
US20060115360A1
Physics

Doppler radar sensing system for monitoring turbine generator components

#24 | 2006-03-09
US20060048581A1
Physics

Method for determination of the stress on blades of a turbine machine during operation and corresponding device for carrying out said method

#25 | 2006-01-19
US20060012377A1
Mechanical engineering

Turbo engine

#26 | 2005-12-01
US20050264275A1
Physics

Doppler radar sensing system for monitoring turbine generator components

#27 | 2005-03-24
US20050063450A1
Physics

Optical monitoring of thermal barrier coatings

#28 | 2005-03-24
US20050061058A1
Physics

Method and apparatus of monitoring temperature and strain by using fiber Bragg grating (FBG) sensors

#29 | 2005-01-25
US10344945
-

Winding arrangement with a winding body and an optical wave guide introduced therein or therethrough

InventorID:

761198 ⎘