G01F23/46

BALL FLOAT TYPE LIQUIDOMETER WITH VERNIER DISPLAY

Disclosed is a ball float type liquidometer with moving indicator, comprising a ball float chamber and a ferromagnetic spherical ball float provided therein, a moving indicator outside the ball float chamber, a calibrated scale and a moving indicator guide rail, wherein the moving indicator comprises a magnetic steel member, a frame and a rolling system which is horizontally fixed and sheathed in the frame; the rolling system comprises rolling wheels provided with radial grooves along a circumferential surface, rolling bearings and shafts; the magnetic steel member is located between the ball float chamber and the frame and is fixed outside one side face close to the ball float chamber on the frame, and a magnetic pole of the magnetic steel member is directly oriented towards the ball float.

BALL FLOAT TYPE LIQUIDOMETER WITH VERNIER DISPLAY

Disclosed is a ball float type liquidometer with moving indicator, comprising a ball float chamber and a ferromagnetic spherical ball float provided therein, a moving indicator outside the ball float chamber, a calibrated scale and a moving indicator guide rail, wherein the moving indicator comprises a magnetic steel member, a frame and a rolling system which is horizontally fixed and sheathed in the frame; the rolling system comprises rolling wheels provided with radial grooves along a circumferential surface, rolling bearings and shafts; the magnetic steel member is located between the ball float chamber and the frame and is fixed outside one side face close to the ball float chamber on the frame, and a magnetic pole of the magnetic steel member is directly oriented towards the ball float.

Multiturn pulley liquid level sensor device

A multiturn pulley liquid level sensor device for measuring a liquid level in a well and in a container, comprising a mechanical float which is fastened to a fastening rope and which can slide up and down. The fastening rope is installed on one or more pulleys, and as the float moves up and down, the pulley rotates back and forth. One pulley is mechanically coupled to one digital absolute magnetic rotation encoder device, and the encoder device is used for monitoring the total rotation angle of the pulley in real time. By way of using an algorithm, the total rotation angle of the pulley is converted into a distance from the bottom to calculate the height of a liquid level. A multiwheel encoder has two reading types, i.e., one is an electrical signal reading type, and the other is an optical signal reading type. The electronic output of said encoder may be used as input to an industrial control system, or be sent via communications link to a remote or the internet. The precision of the level measurement is determined by the number of encoder wheels. A mechanical gear or belt can adjust the total number of pulley turns corresponding to the full range of liquid level measurement.

Multiturn pulley liquid level sensor device

A multiturn pulley liquid level sensor device for measuring a liquid level in a well and in a container, comprising a mechanical float which is fastened to a fastening rope and which can slide up and down. The fastening rope is installed on one or more pulleys, and as the float moves up and down, the pulley rotates back and forth. One pulley is mechanically coupled to one digital absolute magnetic rotation encoder device, and the encoder device is used for monitoring the total rotation angle of the pulley in real time. By way of using an algorithm, the total rotation angle of the pulley is converted into a distance from the bottom to calculate the height of a liquid level. A multiwheel encoder has two reading types, i.e., one is an electrical signal reading type, and the other is an optical signal reading type. The electronic output of said encoder may be used as input to an industrial control system, or be sent via communications link to a remote or the internet. The precision of the level measurement is determined by the number of encoder wheels. A mechanical gear or belt can adjust the total number of pulley turns corresponding to the full range of liquid level measurement.

NON-CONTACT LIQUID LEVEL SENSOR
20170010147 · 2017-01-12 ·

The present invention provides a non-contact pulley liquid level sensor, comprising a float capable of floating up and down and floating on a liquid surface, a tether, at least one pulley, a permanent magnet and a magnetic field angle sensor, wherein two ends of the tether are tied to the float, and are wound on the top end pulley and the optional bottom end pulley, the permanent magnet is installed on one side of the top end pulley and rotates together with the top end pulley under the effect of a friction torque produced by the tether. The magnetic field angle sensor detects a magnetic field produced by the permanent magnet and converts a rotation angle of the magnetic field into a voltage signal, then according to a relationship between the rotation angle of the permanent magnet and a floating distance of the float, a liquid level height is calculated via the output voltage signal. A gear can also be used to calibrate the operating range and accuracy of the liquid level sensor. The liquid level sensor has the advantages of simple design, wide measurement range, easiness in sealing and the like.

NON-CONTACT LIQUID LEVEL SENSOR
20170010147 · 2017-01-12 ·

The present invention provides a non-contact pulley liquid level sensor, comprising a float capable of floating up and down and floating on a liquid surface, a tether, at least one pulley, a permanent magnet and a magnetic field angle sensor, wherein two ends of the tether are tied to the float, and are wound on the top end pulley and the optional bottom end pulley, the permanent magnet is installed on one side of the top end pulley and rotates together with the top end pulley under the effect of a friction torque produced by the tether. The magnetic field angle sensor detects a magnetic field produced by the permanent magnet and converts a rotation angle of the magnetic field into a voltage signal, then according to a relationship between the rotation angle of the permanent magnet and a floating distance of the float, a liquid level height is calculated via the output voltage signal. A gear can also be used to calibrate the operating range and accuracy of the liquid level sensor. The liquid level sensor has the advantages of simple design, wide measurement range, easiness in sealing and the like.