METHOD AND SYSTEM FOR OSCILLOSCOPE TRIGGERING

    公开(公告)号:US20180188291A1

    公开(公告)日:2018-07-05

    申请号:US15859987

    申请日:2018-01-02

    CPC classification number: G01R13/0254

    Abstract: The present invention provides a method and system for oscilloscope triggering. The power spectrum entropy threshold Gp and the singular spectrum entropy threshold Gs are obtained by calculating the averages of the power spectrum entropy Hi and the singular spectrum entropy Ei of the first a waveform data frames respectively. Then, for the waveform data frame xa+1(τ) and thereafter, If the power spectrum entropy Hi is greater than power spectrum entropy threshold Gp and the singular spectrum entropy Ei is greater than the singular spectrum entropy threshold Gs, the waveform data frame xi(τ) is an abnormal signal, the second trigger occurs, storing and displaying the waveform data frame. Thus the storage and display of abnormal signal is realized

    METHOD FOR OSCILLOSCOPE 3D MAPPING IN SCAN MODE

    公开(公告)号:US20180149676A1

    公开(公告)日:2018-05-31

    申请号:US15879146

    申请日:2018-01-24

    Abstract: A method for oscilloscope 3D mapping in scan mode. The input signal is acquired using a real-time sampling rate which is Dr times higher, thus more sampling points, i.e. Dr acquired data can be obtained during the time interval between two consecutive horizontal pixels. The Dr acquired data are mapped into a same column of the screen to implement fluorescent waveform display. In addition, to realize the scanning display, a flag X is introduced into the three-dimensional database, when the screen refresh signal arrives, the first Ds acquired data are read out from the unread acquired data in FIFO memory. The three-dimensional database is updated from the flag X, which make the leftmost waveform always be the oldest waveform, the rightmost waveform always be the newest waveform. Thus the 3D mapping is realized in scan mode, letting the DSO have a fluorescent waveform display at slow time-base.

    METHOD FOR EQUIVALENT HIGH SAMPLING RATE FIR FILTERING BASED ON FPGA

    公开(公告)号:US20190080035A1

    公开(公告)日:2019-03-14

    申请号:US16163596

    申请日:2018-10-18

    Abstract: The present invention provides a method for equivalent high sampling rate FIR filtering based on FPGA, first, the coefficients h(k) of FIR filter are found by using MATLAB, multiplied by an integer and then rounded for the purpose that the rounded coefficients h(k) can be directly used into a FPGA, then the ADC's output of high data rate fs is lowered by dividing the ADC's output x(n) into M parallel data streams xi(n) of low data rate, and the M×L samples in one clock circle is obtained by delaying the M parallel data streams xi(n) simultaneously by 1, 2, . . . , L′ periods of the synchronous clock, at last, the samples yi(n) of FIR filtering output is calculated according to the samples selected from the M×L samples, and the filtered data y(n) of data rate fs is obtained by putting the samples yi(n) together in ascending order of i. Thus, the continuous FIR filtering of an ADC's output sampled with high sampling rate is realized, while the data rates before and after the FIR filtering are unchanged.

    METHOD FOR MEASURING THE WAVEFORM CAPTURE RATE OF PARALLEL DIGITAL STORAGE OSCILLOSCOPE
    4.
    发明申请
    METHOD FOR MEASURING THE WAVEFORM CAPTURE RATE OF PARALLEL DIGITAL STORAGE OSCILLOSCOPE 有权
    用于测量并行数字存储OSCILLOSCOPE的波形捕获率的方法

    公开(公告)号:US20140188419A1

    公开(公告)日:2014-07-03

    申请号:US14057544

    申请日:2013-10-18

    CPC classification number: G01R13/0272 G01R13/0254

    Abstract: The present invention provides a method for measuring the waveform capture rate of parallel digital storage oscilloscope. On the basis of double pulse measurement, and in consideration of the asymmetry of acquisition and the refreshing time of parallel DSO, the present invention provides a step amplitude-frequency combined pulse measurement to measure the time for waveform acquisition and mapping Tmap, the number of captured waveforms before LCD refreshing Wacq and the dead time caused by LCD refreshing TDDT, and then calculates the actual measured average WCR of parallel DSO, according to the measured data, so that the WCR of parallel can be measured.

    Abstract translation: 本发明提供了一种用于测量并行数字存储示波器的波形捕获率的方法。 在双脉冲测量的基础上,考虑到并行DSO的采集不对称性和刷新时间,本发明提供了一种步进幅度 - 频率组合脉冲测量,以测量波形采集和映射时间Tmap,数量 在LCD刷新Wacq之前捕获的波形和由LCD刷新TDDT造成的死区时间,然后根据测量数据计算并行DSO的实际测量平均WCR,从而可以测量并行WCR。

    METHOD FOR 3D WAVEFORM MAPPING OF FULL-PARALLEL STRUCTURE

    公开(公告)号:US20190392551A1

    公开(公告)日:2019-12-26

    申请号:US16435465

    申请日:2019-06-08

    Abstract: The present invention provides a method for 3D waveform mapping of full-parallel structure, first, a 3D waveform mapping database is created according to the size of a 3D waveform image, the number of bits of probability value and the ADC's resolution of data acquisition module, then the 3D waveform mapping database is divided into Mt×Ma independent mapping storage areas along the time axis and the amplitude axis, and each independent mapping storage area is assigned a RAM, then RAMs are selected and addresses are calculated based on the sampling values and the structure of created 3D waveform mapping database, finally, parallel mappings are performed simultaneously on the time axis and the amplitude axis according to the selected RAMs and calculated addresses. Thus, the mapping time are shorten, especially in vector mapping mode, several RAMs are used for mapping, so the WCR of DSO is improved.

    METHOD AND APPARATUS FOR AUTOMATICALLY ADJUSTING THE HOLD-OFF TIME OF A DSO

    公开(公告)号:US20180364282A1

    公开(公告)日:2018-12-20

    申请号:US16005763

    申请日:2018-06-12

    CPC classification number: G01R13/0254

    Abstract: The present invention provides a method and apparatus for automatically adjusting the hold-off time of a DSO based on real-time cycle measurements of the system trigger signal: obtaining a cycle sequence by measuring the system trigger signal, the maximum cycle and minimum cycle, then judging the difference of the maximum cycle and minimum cycle: if the difference is greater than a threshold set by user, setting the hold-off time to the maximum cycle, the minimum cycle or the median cycle, then returning; otherwise terminating the adjustment of the hold-off time. At this point, the hold-off time is correctly set. Therefore, the present invention reduces the complexity and time consumption of the hold-off adjustment, and allows the test signal to be quickly and stably displayed on screen of DSO, meanwhile, which makes the trigger adjustment of DSO more convenient.

    TEMPERATURE-COMPENSATED CRYSTAL OSCILLATOR BASED ON ANALOG CIRCUIT

    公开(公告)号:US20180013384A1

    公开(公告)日:2018-01-11

    申请号:US15711430

    申请日:2017-09-21

    Abstract: Disclosed is a temperature-compensated crystal oscillator based on analog circuit; a closed-loop compensation architecture determines the temperature compensation of a crystal oscillator. The power splitter divides the VCXO's current output signal with frequency f=f0+Δf into two signals, one signal to output of the TCXO and the other signal is sent to an analog frequency-voltage conversion circuit. According to the frequency of the VCXO's current output signal, the analog frequency-voltage conversion circuit produces a voltage signal V(T), which corresponds to current ambient temperature. The difference between V(T) and a reference voltage signal Vref is produced and amplified to obtain a compensation voltage signal ΔV through a voltage matching circuit. ΔV is smoothed by a filter, then sent to the voltage control terminal of the VCXO to make the VCXO generate a stable signal with desired frequency f0, to compensate the frequency of the VCXO's output signal when the ambient temperature is changed.

    METHOD FOR MEASURING THE WAVEFORM CAPTURE RATE OF A DIGITAL STORAGE OSCILLOSCOPE BASED ON AVERAGE DEAD TIME MEASUREMENT
    8.
    发明申请
    METHOD FOR MEASURING THE WAVEFORM CAPTURE RATE OF A DIGITAL STORAGE OSCILLOSCOPE BASED ON AVERAGE DEAD TIME MEASUREMENT 审中-公开
    基于平均死时间测量的数字存储振荡器波形捕获率测量方法

    公开(公告)号:US20170003328A1

    公开(公告)日:2017-01-05

    申请号:US15146227

    申请日:2016-05-04

    CPC classification number: G01R13/0272 G01R13/0254

    Abstract: A method for measuring waveform capture rate (WRC) of DSO based on average dead time measurement. First generating ramp signal or symmetric triangular wave signal as base signal, a trigger signal, the frequency which is higher than the nominal maximum waveform capture rate of the DSO under measurement; secondly, setting the parameters of DSO for measuring; then obtaining a plurality of test signals by delaying base signal K times with different delay time, for each test signal, inputting it the trigger signal simultaneously to DSO, calculating dead time between two adjacent captured waveforms according to their initial voltages, finally calculating waveform capture rate based on average dead times. The waveform capture rate obtained can effectively reflect the overall capturing capacity of DSO, more tellingly, the waveform capturing capacity of acquisition system of DSO.

    Abstract translation: 基于平均死区时间测量测量DSO的波形捕获率(WRC)的方法。 首先产生斜坡信号或对称三角波信号作为基准信号,触发信号,其频率高于测量的DSO的标称最大波形捕获率; 其次,设置测量用DSO的参数; 然后通过以不同的延迟时间延迟基本信号K次来获得多个测试信号,对于每个测试信号,将触发信号同时输入到DSO,根据它们的初始电压计算两个相邻捕获波形之间的死区时间,最后计算波形捕获 基于平均死亡时间。 获得的波形捕获率可以有效反映DSO的整体捕获能力,更具体地说,是DSO采集系统的波形捕获能力。

    METHOD FOR MEASURING THE PROPERTIES OF LIQUID BASED ON A QUARTZ CRYSTAL MICROBALANCE SENSOR
    9.
    发明申请
    METHOD FOR MEASURING THE PROPERTIES OF LIQUID BASED ON A QUARTZ CRYSTAL MICROBALANCE SENSOR 审中-公开
    用于测量基于晶体晶体微结构传感器的液体性质的方法

    公开(公告)号:US20160097743A1

    公开(公告)日:2016-04-07

    申请号:US14933648

    申请日:2015-11-05

    Abstract: The present invention provides a method for a method for measuring the properties of liquid based on a quartz crystal microbalance sensor, which employs two measurements to obtain two frequency shifts of the QCM sensor induced by two different volume of the sample liquid. The present invention creatively established the relationship between the density and viscosity of sample liquid and the frequency shifts of QCM sensor. With present invention, the density and viscosity of sample liquid can be obtained through two frequency shifts. Comparing to the conventional liquid property measurement. The measuring procedure of present invention are more simple, and the measuring results are more accurate. Moreover, the present invention consumes less volume of sample liquid, and has the features such as online, real time and quantitative.

    Abstract translation: 本发明提供了一种用于测量基于石英晶体微量天平传感器的液体性质的方法,该方法采用两次测量来获得由两个不同体积的样品液体引起的QCM传感器的两个频移。 本发明创造性地建立了样品液体的密度和粘度与QCM传感器的频移之间的关系。 通过本发明,可以通过两次频移获得样品液体的密度和粘度。 与传统的液体性能测量相比。 本发明的测量方法更简单,测量结果更准确。 此外,本发明消耗较少的样品液体量,具有在线,实时和定量等特征。

    METHOD FOR FULL-DIGITAL RANDOM SAMPLING
    10.
    发明申请
    METHOD FOR FULL-DIGITAL RANDOM SAMPLING 有权
    全数字随机抽样方法

    公开(公告)号:US20150188560A1

    公开(公告)日:2015-07-02

    申请号:US14584599

    申请日:2014-12-29

    Abstract: For the signal under acquisition which varies monotonically before and after the trigger time, a method for full-digital random sampling employs first sampled data before the trigger time and first sampled data after the trigger time to fit a curve, and obtains an intersection point of triggering level and the fitted curve, then, calculates the time interval between sampled data after the trigger time and the intersection point in the end, reconstructs the original signal, i.e. the signal under acquisition by a time interval of each acquisition. Thus, an analog trigger circuit and a time measurement circuit of conventional random sampling system can be eliminated, that simplifies the circuit design of data acquisition system and decreases its hardware complexity. Moreover, the higher sampling rate for the signal under acquisition is attained, and more waveform details are obtained.

    Abstract translation: 对于在触发时间之前和之后单调变化的信号,全数字随机采样的方法在触发时间之前采用第一采样数据,并在触发时间之后采用第一采样数据以拟合曲线,并获得 触发电平和拟合曲线,然后计算触发时间之后的采样数据与最终交点之间的时间间隔,重建原始信号,即每次采集时间间隔内的采集信号。 因此,可以消除常规随机采样系统的模拟触发电路和时间测量电路,简化了数据采集系统的电路设计,降低了硬件复杂度。 此外,获得获取信号的较高采样率,并获得更多的波形细节。

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