ULTRASENSITIVE INTELLIGENT MAGNETOIMPEDANCE SENSOR WITH EXPANDED RANGE OF WORKING TEMPERATURES Russian patent published in 2015 - IPC G01R33/02 H01L43/00 

Abstract RU 2563600 C1

FIELD: measurement equipment.

SUBSTANCE: invention represents an ultrasensitive intelligent magnetoimpedance sensor (MI sensor) with expanded range of working temperatures in the area. The sensor comprises a magnetoimpedance element (MI element) with two coils arranged one above the other, an analogue key, an amplifier, a temperature sensor, a microcontroller, a unit of a thermistor. The MI element with two coils makes it possible to expand a measurement scale, to perform calibration of the sensor. The microcontroller performs digitisation of data, controls all units of the sensor (MI element, analogue key, amplifier), performs mathematical data processing. The temperature sensor and the unit of the thermistor provide for operation of the sensor in a wide temperature range.

EFFECT: increased functional capabilities of a MI sensor, expanded limits of a measurement scale and range of working temperatures, increased accuracy of measurements, collection of additional information about temperature.

6 dwg

Similar patents RU2563600C1

Title Year Author Number
HIGHLY SENSITIVE MAGNETOIMPEDANCE SENSOR OF GRADIENT MAGNETIC FIELDS 2022
  • Yudanov Nikolaj Anatolevich
  • Nemirovich Mark Anatolevich
  • Panina Larisa Vladimirovna
  • Morchenko Aleksandr Timofeevich
  • Kostishin Vladimir Grigorevich
  • Evstigneeva Svetlana Alekseevna
RU2784211C1
TWO-WIRE DIFFERENTIAL MAGNETOIMPEDANCE SENSOR 2015
  • Judanov Nikolaj Anatolevich
  • Panina Larisa Vladimirovna
  • Morchenko Aleksandr Timofeevich
  • Kostishin Vladimir Grigorevich
RU2582488C1
THERMOMETRIC CABLE AND CALIBRATION METHOD THEREOF 2008
  • Kholin Andrej Jur'Evich
RU2389984C2
MAGNETIC FIELD CONTROLLER 2023
  • Bizin Mikhail Anatolevich
  • Isaev Nikolaj Pavlovich
  • Baranov Sergej Aleksandrovich
  • Melnikov Anatolij Romanovich
  • Veber Sergej Leonidovich
RU2799103C1
DEVICE FOR MEASURING MAGNETIC FIELD PARAMETERS 2018
  • Anufriev Vladimir Nikolaevich
  • Luzhbinin Aleksandr Vasilevich
  • Pavlyuk Mikhail Ilich
RU2696058C1
SELF-CONTAINED HEAT METER AND METHOD OF ITS IMPLEMENTATION 2018
  • Teplyshev Vyacheslav Yurevich
  • Ivanov Dmitrij Yurevich
  • Abdulkerimov Abdulzhelil Makhmudovich
RU2694277C1
PHYSICAL QUANTITY SENSOR 2010
  • Volodin Sergej Egorovich
  • Kaminskij Leonid Stanislavovich
  • Negovelov Semen Nikolaevich
  • Fedorov Igor' Germanovich
RU2442964C1
METHOD OF TEMPERATURE CORRECTION OF TRANSFER FUNCTION OF PHYSICAL QUANTITY DETECTOR 2003
  • Korovin K.V.
RU2247325C2
REMOVABLE MOBILE COMPACT MEASURING MODULE 2020
  • Povaliaev Oleg Aleksandrovich
RU2753804C1
GAS PRESSURE MEASUREMENT DEVICE 2016
  • Kovalenko Valerij Vladimirovich
  • Zevakin Evgenij Aleksandrovich
  • Soldatova Yuliya Aleksandrovna
RU2665753C2

RU 2 563 600 C1

Authors

Judanov Nikolaj Anatol'Evich

Panina Larisa Vladimirovna

Morchenko Aleksandr Timofeevich

Kostishin Vladimir Grigor'Evich

Dates

2015-09-20Published

2014-07-29Filed