High temperature resistance digital two-wire system HART intelligent vortex flowmeter

The invention relates to the flow detection field, and refers to a high temperature resistance digital two-wire system HART intelligent vortex flowmeter comprising a high temperature resistance vortex flow sensor, a first stage charge amplifier, a second stage charge amplifier, a first stage low pas...

Full description

Saved in:
Bibliographic Details
Main Authors XU KEJUN, FANG MIN, SHU ZHANGPING, SHAO CHUNLI
Format Patent
LanguageEnglish
Published 23.12.2015
Subjects
Online AccessGet full text

Cover

Loading…
More Information
Summary:The invention relates to the flow detection field, and refers to a high temperature resistance digital two-wire system HART intelligent vortex flowmeter comprising a high temperature resistance vortex flow sensor, a first stage charge amplifier, a second stage charge amplifier, a first stage low pass filter, a second stage low pass filter, a voltage follower, a voltage-stabiliser tube, a digit power supply management circuit, a simulation power supply management circuit, an electric current loop and HART circuit, a digital isolation circuit, a one-chip microcomputer, a clock manager, a reset circuit, a power supply monitor, a keyboard, an LCD, and a temperature and pressure compensation unit. A signal conditioning circuit employs two-stage charge amplifiers and two-stage low pass filters to solve the problems that the high temperature resistance vortex flow sensor is low in sensitivity; two-path parallel power supplies respectively power up the simulation circuit and the digit circuit, thus solving the problems that the one-chip microcomputer is large in power consumption when doing FFT operation, yet the two-wire system HART intelligent vortex flowmeter requires the system consumed current is lower than 3.5mA. The high temperature resistance digital two-wire system HART intelligent vortex flowmeter can greatly improve measuring range ratio, measuring precision, and anti-interference capability.
Bibliography:Application Number: CN20151504920