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仪表网>产品库>测量/计量>通信测试>综合测试仪>供应HP3562A 动态信号分析仪,低频频谱分析仪 ,低频扫频仪
  • 供应HP3562A 动态信号分析仪,低频频谱分析仪 ,低频扫频仪

HP3562A 供应HP3562A 动态信号分析仪,低频频谱分析仪 ,低频扫频仪

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  • 型号HP3562A
  • 品牌
  • 所在地深圳市
  • 更新时间2023-06-02
  • 厂商性质经销商
  • 入驻年限8
  • 实名认证已认证
  • 产品数量1604
  • 人气值1595
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供应HP3562A 动态信号分析仪,低频频谱分析仪 ,低频扫频仪 是一种双通道系统、频谱、波形分析仪。有时域和频域两方面的分析能力,它具有100KHz的频宽,150dB的测量范围和80dB的动态分析范围,因此,在机械、机电一体化控制系统中有着强大的分析解决问题的能力。供应HP3562A 动态信号分析仪,低频频谱分析仪 ,低频扫频仪
供应HP3562A 动态信号分析仪,低频频谱分析仪 ,低频扫频仪 产品详情

供应HP3562A 动态信号分析仪,低频频谱分析仪 ,低频扫频仪

生产厂家: 惠普/安捷伦

HP3562A动态信号分析仪是一种双通道系统、频谱、波形分析仪。有时域和频域两方面的分析能力,它具有100KHz的频宽,150dB的测量范围和80dB的动态分析范围,因此,在机械、机电一体化控制系统中有着强大的分析解决问题的能力。

是一款具有内置信号源的通用FFT分析仪,适用于常见的频谱和网络分析,以及倍频程、阶次与关联分析。内置信号源具有可选的分析特性,可以优化分析仪的性能,以便对噪声、振动和声学问题进行分析和故障诊断,评测并解决旋转机械问题,以及表征控制系统参数。

1. 频率

测量范围:

64μHz~100KHz

精度:

频率读数误差±0.004%

分辨率:

跨距/800

跨距

基(本频)带

图象电子放大

跨距数

66

64

*小跨距

10.24mHz

20.48mHz

*大跨距

100KHz

100KHz

时间记录

800/跨距

800/跨距

2. 相位精度

<10KHz ±2.50

10KHz~100KHz ±12.00

3. 动态范围: 所有畸变的和≤低于输入范围*大刻度值的80dB

4. 输入阻抗: 1MΩ±5%

Hewlett Packard 3562A

Dual-Channel, Dynamic Signal Analyzer 64 µHz to 100 kHz

  • Network, spectrum, waveform, transient analysis
  • Linear, logarithmic, swept sine modes
  • 80 dB dynamic range with full alias protection
  • High accuracy (±0.15 dB)

Frequency Response Measurements

  • With linear resolution FFT logarithmic resolution and swept sine analysis
  • Built-in signal source provides a variety of random noise and sine wave signals

Spectrum Analysis

  • On-line analysis of distortion, drift, modulation, and phase noise

Waveform and Transient Analysis

  • Analysis of waveforms and transients in the time and frequency domains
  • Array of triggering capabilities enhances both waveform recording modes. Pre- and post-trigger delays can be specified

Hardcopy and Mass Storage

  • HP-IB
  • With direct control of plotters and disk drives

Specifications

Frequency

  • Measurement Range: 64 µHz to 100 kHz. Both channels, single- or dual-channel operation
  • Resolution: span/800
    Spans Baseband Zoom
    # of spans 66 64
    min span 10.24 mHz 20.48 mHz
    max span 100 kHz 100 kHz
    time record (sec) 800/span 800/span
  • Window functions: flat top, Hann, uniform, force, exponential, user-defined
  • Typical real-time bandwidths: Single-channel, fast averaging 10 kHz

Amplitude

  • Input Ranges: +27 dBV to -40 dBV; -41 dBV to -51 dBV

Input

  • Input Impedance: 1Mohm ±5% shunted by < 100 pF
  • Input Coupling: inputs can be ac or dc coupled - ac rolloff is < 3 dB at 1 Hz

Trigger

  • Trigger Modes: free run, input channel 1, input channel 2, source and external trigger
  • Trigger Delay: pre- and post-trigger delay resolution is 1 sample (1/2048 of a time record)
  • Pre-trigger: a measurement can be based on data that starts from 1 to 4096 samples (1/2048 to 2 time records) before trigger conditions are met
  • Post-trigger: a measurement is initiated from 1 to 65,536 samples (1/2048 to 32 time records) after the trigger conditions are met

Source

  • Random noise, burst random, sine chirp, burst chirp, fixed sine, and swept sine are available
  • Output Impedance: 50 ohm (nominal)
  • Output Level: between +10 and -10 V peak (ac + dc) into a > 10 kohm
  • ac level: ±5 V peak
  • dc offset: ±10 V peak in 100 mV steps



  • Network analysis
  • Spectrum analysis
  • Transient analysis
  • Waveform recording
  • Frequency response analyzer
  • Modulation analysis
  • Direct control of disc drives
  • Direct control of HP-GL plotters

The HP3562A Dynamic Signal Analyzer is a dual-channel fast Fourier transform-based network, spectrum and waveform analyzer which provides analysis capabilities in both the time and frequency domains. The dc-to-100 kHz frequency range, 150 dB measurement range and 80 dB dynamic range of the analyzer makes it a powerful solution for testing and analysis in electronics, mechanics and electromechanical control systems.

Two high performance input channels and a built-in signal source (noise and sine signals) address network analysis on the bench or in a test system. Zoom analysis with frequency resolution to 25.6 uHz plus a powerful AM, FM and PM demodulation function makes the HP3562A a versatile spectrum analyzer. For transient or waveform analysis, signals can be sampled, digitized then stored in an internal memory, or directed via HP-IB to an external disc drive (without a computer). The stored waveforms can be recalled and analyzed in the time and frequency domains (baseband and zoom analysis).

Additional features include a full range of data analysis capabilities such as vector averaging, block-operation Waveform Math, a 40-pole/40-zero Curve Fitter and Frequency Response Synthesis. Front panel operations can be automated without a computer with built-in Auto Sequence programming, or with computers through complete HP-IB programmability. For documentation of results with hardcopy or mass storage, the HP3562A can control digital plotters and external disc drives directly via HP-IB.

Network Analysis

Accurate, high resolution frequency response measurements of electronic and mechanical systems can be performed with Linear Resolution FFT, Logarithmic Resolution and Swept Sine Analysis. A built-in signal source provides a variety of random noise and sinewave signals to meet the requirements of the system under test.

Linear Resolution is the measurement technique common to all Dynamic Signal Analyzers. In the HP3562A, 2048-point time records are Fourier-transformed in to 801-line frequency spectra. For network analysis, frequency response magnitude and phase, as well as input and output power spectra, can be measured with 801 lines of resolution. Accuracy for the frequency response magnitude and phase is ± 0.1 dB and ± 0.5°.

Logarithmic Resolution uses the speed of Linear Resolution FFT measurements to create frequency responses similar to a log-sweep swept sine test. Linear Resolution points are combined internally (rather than just reformatted), on the fly, to create 80-point-per-decade measurements over 1 to 5 decades. Start and stop frequencies can be selected in a 1-2-5 sequence from 0.1 Hz to 100 kHz (for a 0.1 Hz start frequency the maximum stop frequency is 10 kHz - 5 decades).

The Swept Sine mode reconfigures the HP3562A as a powerful swept sine frequency response analyzer. The source can generate linear or logarithmic sweeps with increasing or decreasing frequency; user-selectable sweep rate and resolution are also standard source functions. Input channel functions include user-selectable averaging and integration time; automatic input ranging can be activated to provided over 130 dB of dynamic range for measurements of high performance systems.

Spectrum Analysis

On-line analysis of distortion, drift, modulation and phase noise can benefit from the speed and accuracy of the HP3562A. High resolution measurements are typically 100 times faster than tuned spectrum analyzers - and, since the HP3562A is an FFT-based analyzer, you can see transient events that a tuned analyzer would probably miss.

The HP3562A is essentially a dual-channel spectrum analyzer which provides resolution to 25.6 µHz anywhere within the dc-to-100 kHz measurement range. Single channel accuracy is ± 0.15 dB with 80 dB of dynamic range. Modulation analysis can be performed on either or both channels with harmonic and sideband markers as well as with the built-in demodulation capability: zoom measurements can be AM, FM, or PM demodulated with carrier frequencies up to 99.9 kHz.

Waveform and Transient Analysis

Perform complete analysis of waveforms and transients in the time and frequency domains. Sampled and digitized waveforms can be stored in internal memory (signal-channel Time Capture) or on disc in an external disc drive (single- or dual-channel Time Throughput). Data can be recalled for time domain analysis as single time records or as a compressed display of up to 10 time records (Time Capture mode). Data can also be recalled for baseband and zoom analysis in the frequency domain, with vector averaging if needed.

A complete array of triggering capabilities are included to enhance both waveform recording modes. Pre- and post-trigger delays can be specified to capture the rising edge of a transient or to compensate for delays in the system under test.

Data Throughput to a Disc Drive

When access to prototypes is limited, make your test time more efficient with the Time Throughput capability: through direct control of external disc drives, the HP3562A can store time data directly to disc without a computer. Set up a measurement and specify the quantity of single- or dual-channel data to be collected. Time data will be sampled, digitized and stored on disc for later analysis as individual time records or as baseband and zoom frequency spectra.

Hardcopy and Mass Storage with Plotters and Disc Drives

To speed and simplify documentation of results, direct control of plotters and disc drives via HP-IB is a standard feature in the HP3562A. Literally anything displayed on the analyzer screen can be plotted or saved on disc: measurement results, setup state tables, synthesis tables, curve fit tables and Auto Sequence or Auto Math program listings. Plotting is enhanced with user-selectable line types, pens and paging controls. For mass storage operations, files can be given 8-letter user-defined names; and disc catalog can be recalled and displayed to show file name, type (data, setup, etc.) and date and time of storage.

Automation for Improved Productivity

Versatile automation capabilities and a wide range of response-only or stimulus/response measurement functions in the HP3562A help you create productive solutions for your automated testing needs. As a standalone solution, the analyzer can "learn" a series of keystrokes and then perform them on command (Auto Sequence programming). Up to five Auto Sequence programs can be stored internally, with additional programs stored in an external disc drive.

For networked HP-IB systems, the HP3562A provides complete HP-IB programmability. Custom display graphics and messages can be created through direct programming of the high resolution vector display - user-defined soft key menus can also be created to simplify interactive testing. Rear-panel outputs for large screen displays are also standard.


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