Method for measuring Pohl resonance phase difference by using digital oscilloscope

A digital oscilloscope and Bohr resonance technology, which is applied in the field of physical experiment parameter measurement, can solve problems such as reduction of flash, insufficient voltage division of experimental instruments, abnormal working status of electronic circuits of measuring instruments, etc., to achieve the effect of expanding thinking ability and avoiding influence

A digital oscilloscope and Bohr resonance technology, which is applied in the field of physical experiment parameter measurement, can solve problems such as reduction of flash, insufficient voltage division of experimental instruments, abnormal working status of electronic circuits of measuring instruments, etc., to achieve the effect of expanding thinking ability and avoiding influence

CN104019737AInactive Publication Date: 2014-09-03SICHUAN UNIV

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  • Method for measuring Pohl resonance phase difference by using digital oscilloscope
  • Method for measuring Pohl resonance phase difference by using digital oscilloscope

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Embodiment Construction

[0012] The method for measuring the phase difference of Bohr resonance with a digital oscilloscope, the steps are:

[0013] Step 1: The balance wheel and rocker of the Bohr resonance instrument are made of metal and can conduct electricity; each of the balance wheel and the rocker is fixed with a touch claw, and the touch claw is in the shape of a "7"; the balance wheel and rocker A soft conductive wire is hung above each of them. When the device is in a static initial state, the horizontal sides of the "7"-shaped touch claws just touch the corresponding soft conductive wires respectively; the balance wheel swings until the touch claws touch the soft conductive wire, Connect the circuit to the power supply E, output a pulse voltage at the open terminal Y, and connect the voltage to an input port of the dual-trace digital oscilloscope; swing the joystick until the touch claw touches another soft conductive wire, and connect the circuit to The power supply E outputs a pulse volt...

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Abstract

The invention provides a method for measuring a Pohl resonance phase difference by using a digital oscilloscope and relates to the field of physical experiment parameter measurement. The method for replacing a stroboscopic method for measuring the phase difference is proposed. According to the technical scheme, a swing wheel and a rocker are respectively and fixedly provided with a touch jaw which is in a 7 shape; soft conductor wires are suspended above the swing wheel and the rocker respectively; the swing wheel swings to the position where the touch jaw touches the corresponding soft conductor wire, a circuit is made to be connected to a power source, a pulse voltage is output at an open circuit end, and open circuit voltages generated due to connection at the upper end of the swing wheel and the upper end of the rocker are connected to the an X input port and a Y input port of the double-tracking digital oscilloscope respectively; an input signal is obtained through a time measurement tool of the digital oscilloscope, a vibration cycle T is measured on an oscilloscope display screen, the time interval delta T between the high levels of two signals is measured, and when the delta T is smaller than T / 2, the phase difference is 360 degrees*delta T / T. The method for measuring the Pohl resonance phase difference by using the digital oscilloscope has the advantages that the influences on the working state of an electronic circuit of a large current instrument are avoided, and the prior art is expanded.

Description

technical field [0001] The invention relates to the field of physical experiment parameter measurement, in particular to the measurement of the phase difference between an external force and a balance wheel when a Bohr resonance instrument is forced to vibrate. Background technique [0002] In the university physics laboratory, the Bohr resonance instrument generally uses the stroboscopic method to measure the phase difference between the external force and the balance wheel. The experimental device is as follows: figure 1 . [0003] Device structure: the angle disc is fixed on the outside of the motor. The angle disc is not connected with the motor shaft and is in a static state, that is, it does not rotate with the motor shaft. The angle disc and the motor shaft have a common center of circle. The upper semicircle of the angle disc has a scale. The minimum scale is 1 degree; the outside of the angle disc is the angle pointer disc, which is a plastic disc, and the angle po...

Claims

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Application Information

Patent Timeline
03 Sep 2014
Publication
CN104019737A
IPC
G01B7/30
Inventors
胡再国; 雍志华