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HONGKE ps-grade pulse generator

TS-PG1500 Series

The HONGKE Pulse Generator TS-PG1500 series includes a set of fast rise time pulse generators that provide superior signal integrity through the easiest-to-use touch screen display interface (SimpleRider™), allowing pulses to be created with just a few screen touches. The signal output voltage is adjustable within a ±25 V window, with a maximum voltage of 50 Vpp and an edge rate of 400 ps. Its innovative hardware architecture offers the possibility of generating multiple pulse sequences, such as double, triple, or quadruple pulses, with completely independent timing parameters. The maximum repetition rate of the HONK Pulse Generator is 400 MHz and the minimum pulse width is 1 ns@50 Vpp.

High-performance pulses for your tests

Whether you are generating complex pulse trains, a series of radar pulses, pulses for advanced research, laser and optical experiments as well as semiconductor testing, the TS-PG1500 is the ideal partner for your complex testing and cutting-edge applications. Its innovative hardware architecture offers the possibility of generating multiple pulse sequences, such as single, double, triple or quadruple pulses.

  • Up to 2 channels
  • <400 ps rise/fall time (20%-80%)
  • Output level adjustable from 100 mVpp to 50 Vpp.
  • Adjustable baseline offset ±25 V
  • Maximum Repeat Rate 400 MHz per channel
  • Pulse width from 1 ns to >1 s
  • Width resolution 10 ps
  • Continuous, Single, Burst, Door, External Trigger Mode
  • Trigger output jitter <30 ps RMS
  • External clock input and clock output for easy synchronization

Simple Rider Pulse Touch User Interface

Putting all the power of modern pulse and waveform generators at your fingertips!

Designed for touch, the Simple Rider UI has been developed to put all the functions of modern pulse and waveform generators at your fingertips. All instrument controls and parameters are accessed via an intuitive user interface reminiscent of the simplicity of tablets and modern smartphones: engineers and scientists can use the touch function to create single or multiple pulses (dual, triple, and quadruple pulse modes) with just a few touches.

Choosing the right pulse generator for you



ModelchannelsUp/Down Time
(20%-80%)
Output VoltageBaseline OffsetPulse Width
TS-PG15011 channel<400 ps fixed100 mVpp-50 Vpp Adj±25 V Adj1ns to >1 s
TS-PG15022 channels<400 ps fixed100 mVpp-50 Vpp Adj±25 V Adj1ns to >1 s

Wide range of applications

Multiple Pulse

You can combine multiple pulses to obtain double, triple, and quadruple pulses, which is useful in semiconductor testing, radar design, and laser/optical experiments. With this function, you can create clock-like signals with frequencies up to 400 MHz.

Main characteristics

Two-pulse, three-pulse and four-pulse modes

Frequency up to 400 MHz

Semiconductor Testing, Radar, Laser Radar and Laser Applications

UBW Radar Design and Testing

The TS-PG1500 series pulse generators allow easy creation of pulses with different pulse widths, repetition rates and amplitudes using a graphical interface and touch screen display. With this solution, time can be saved in developing a pulse system and focusing on UBW radar design and test objectives.

Main characteristics

Easy-to-use Pulse Rider user interface

Simplify touring radar design and testing

Primary and secondary radar pulse generation and multi-target simulation

Probe Motor (GPR) Testing

Ground Penetrating Radar (GPR) is a geophysical method of imaging the subsurface using radar pulses. The performance of a GPR is primarily determined by the pulse generator and is evaluated by resolution, distance of survey, etc. Narrow width, high repetition frequency, and high amplitude pulses usually result in better resolution. Narrow width, high repetition rate and high amplitude pulses usually result in better resolution. the TS-PG1500 series can generate pulses up to 50 Vpp with a narrow width of 1 ns and a maximum repetition rate of 400 MHz.

Main characteristics

Earth Science, Military, Vehicle Location Applications

Non-destructive (NDT) testing of structures and pavements

Archaeology and Cemetery Applications

Semiconductor Characterization

New technologies for non-volatile RAM applications require faster pulsing: pulse generators with edge times below 400 ps, amplitudes up to 50 Vpp, time resolution of 10 ps, and vertical resolution of 10 mV. are perfectly suited to meet these requirements. The challenge in developing modern MOSFET transistors is the use of high-K materials as dielectrics for MOS capacitors, which has the advantage of reducing leakage currents through the isolator but, at the same time, leads to a number of problems due to charge trapping. Short pulse and slow pulse tests are fundamental to study such problems. PulseThe Degenerator TS-PG1500 series pulse generator provides fast edges of up to 400 ps, baseline offsets of ±25 V, and pulse widths of 1 ns to 1 s, making it ideal for short- and slow-pulse testing.

Main characteristics

Non-Volatile Storage Unit Characterization

MOSFET Testing

Short, Slow and Narrow Pulse Tests

Laser Radar Design and Advanced Research Applications

Today's automotive solutions need to create accurate and reliable tests, and laser radar is one of the strategic components of such solutions. In large-scale physics experiments, photomultipliers are important because they convert photons into charges that can be received by the acquisition system, allowing the detection of photons. With the pulse generator TS-PG1500 series pulse generators, pulses with different light intensities can be generated. Used for the width, period, and amplitude of laser driver signals.

Main characteristics

Creating LiDAR Signal Tests for Aerospace and Defense, Automotive and Mobile Device Solutions

Advanced Research and Large Physics Applications

Laser Driver, Tacho Tube Driver

Related Products

Professional technical support from HONGKEI to help you succeed in your project.

HongKe provides AT series of arbitrary waveform generators and pulse signaling equipment, covering multi-frequency, multi-resolution and multi-channel configurations, suitable for R&D, testing and measurement. With high stability, precise output and flexible control, the products can help engineering teams to quickly generate various types of analog signals for equipment validation, system debugging, measurement research and teaching experiments, creating a highly efficient, repeatable and reliable signal test environment.

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