Function / Arbitrary Waveform Generator

GPS-2100+ Series Function / Arbitrary Waveform Generators

Clean edges. Every point. No compromise.

A dual-channel generator that fixes the two things traditional DDS gets wrong: jitter on pulses and square waves, and skipped points on arbitrary waveforms. 150 MSa/s sampling at 14-bit resolution, square output to the full 60 MHz, eight modulation types and a 200 MHz counter built in.

30 / 60 MHz 2 channels 150 MSa/s · 14-bit 4.3″ TFT · LAN
GPS-2160+ dual-channel function / arbitrary waveform generator, front panel

Square to 60 MHz

Full-bandwidth square output with 4.2 ns edges.

No skipped points

Arbitrary waveforms generated point by point, 2 pts to 16 kpts.

150 MSa/s, 14-bit

196 built-in arbitrary waveforms.

Counter to 200 MHz

Frequency, period, pulse width and duty cycle.

Applications

Where the GPS-2100+ series fits

Built for work where the fidelity of the stimulus is part of the measurement.

Analogue sensor simulation

Replay real sensor outputs as arbitrary waveforms to exercise conditioning and acquisition circuits.

Environmental signal replay

Recreate captured real-world signals, including combined and noise-loaded versions, on the bench.

Circuit function test

Repeatable stimulus for filters, amplifiers and power stages, with sweep and burst for response testing.

IC test, research & training

Precise low-jitter clocks and edges for device characterisation and teaching laboratories.

Product Features

Two channels, eight modulation types, one instrument

Standard and arbitrary waveforms, modulation, sweep, burst, harmonics and measurement on a single bench footprint.

Low-jitter pulse engine

A conventional DDS generator shows one clock period of jitter whenever the sample rate is not an integer multiple of the output frequency. A dedicated pulse architecture removes it, giving rise and fall times settable from 16.8 ns to 22.4 s in 100 ps steps and pulse widths down to 32.6 ns.

Square waves to the full 60 MHz

A separate square-wave circuit takes square output to the top of the bandwidth rather than a fraction of it, with rise and fall times of 4.2 ns and jitter of 300 ps plus 0.05 ppm of period.

Point-by-point arbitrary output

Arbitrary waveforms are generated point by point rather than by phase accumulation, so no defined point is skipped or repeated. Any length from 2 points to 16 kpts plays back at 1 µSa/s to 30 MSa/s, with 196 waveforms built in.

Eight modulation types

AM, DSB-AM, FM, PM, ASK, FSK, PSK and PWM, from an internal or external source, with sine, square, ramp, noise or arbitrary modulating waveforms.

Harmonics and waveform combining

Generate up to 16 harmonic orders with independent amplitude and phase per order, or combine the two channels internally to build complex composite signals without external hardware.

200 MHz frequency counter

A built-in counter measuring frequency, period, positive and negative pulse width and duty cycle, from 0.1 Hz to 200 MHz with AC, DC and HF-reject coupling.

Signal Integrity

Where traditional DDS falls short

The clearest difference between the GPS-2100+ series and a conventional DDS generator, and the reason to specify it.

One clock period of uncertainty

A DDS generator builds its output by stepping through a phase accumulator at a fixed sample rate. When the requested output frequency is not an integer division of that sample rate, each edge lands on whichever sample happens to be nearest, so its position moves by up to one clock period from cycle to cycle.

On a sine wave this is invisible. On a pulse or square wave it is jitter, and it is the reason a low-cost generator cannot be trusted as a clock source or as the stimulus for a timing measurement. The GPS-2100+ series uses a dedicated pulse architecture that places edges independently of the sample clock, holding jitter to 300 ps plus 0.05 ppm of the period.

Conventional DDS · edge position varies
GPS-2100+ · edges hold their position
Edge uncertainty Nominal edge
Phase-accumulated

Points get skipped

Stepping a phase accumulator through a stored waveform means samples are read at uneven intervals. Short features between samples are never output at all, so narrow spikes and fast transitions in an arbitrary waveform can disappear entirely.

Point-by-point

Every point is output

Generating point by point plays each defined sample once, in order, at a sample rate you set from 1 µSa/s to 30 MSa/s. Waveforms from 2 points to 16 kpts are reproduced exactly as defined, with no point skipped or repeated.

Square: rise and fall 4.2 ns, to the full 60 MHz bandwidth.  Pulse: width from 32.6 ns, edges 16.8 ns to 22.4 s in 100 ps steps.  Arbitrary: 196 built-in waveforms. Waveform traces above are illustrative.
Full Comparison

Models & part numbers

Two models sharing the same platform, separated only by bandwidth.

ModelBandwidthChannelsSample RateResolutionWaveform LengthPart No.
GPS-2130+30 MHz2150 MSa/s14-bit16 kpts201303
GPS-2160+60 MHz2150 MSa/s14-bit16 kpts201600

Sine and square output reach the full model bandwidth. Pulse reaches 12.5 MHz and ramp 500 kHz on both models. Contact us for pricing and current lead times.

Specification

Technical specifications

GPS-2100+ Series Function / Arbitrary Waveform Generator
Bandwidth60 MHz (GPS-2160+) · 30 MHz (GPS-2130+)
Channels2 · identical, independently configurable
Sampling rate150 MSa/s (DDS mode) · 1 µSa/s to 30 MSa/s (point-by-point mode)
Vertical resolution14-bit
Waveform length16 kpts · 2 pts to 16 kpts in point-by-point mode
WaveformsSine, square, ramp, pulse, noise, DC and arbitrary · 196 built-in arbitrary waveforms
Frequency resolution1 µHz · initial accuracy ±25 ppm, first year, 0–40°C
Sine1 µHz to 60 / 30 MHz · THD 0.15% (0 dBm, 10 Hz–20 kHz) · harmonics −60 dBc to 10 MHz
Square1 µHz to 60 / 30 MHz · rise and fall 4.2 ns · overshoot 3% · duty cycle 0.001 to 99.999%
Pulse1 µHz to 12.5 MHz · width from 32.6 ns · edges 16.8 ns to 22.4 s in 100 ps steps
Ramp1 µHz to 500 kHz · symmetry 0 to 100% · linearity 1%
Noise60 MHz bandwidth (−3 dB)
Jitter300 ps + 0.05 ppm of period, square and pulse (rms, cycle to cycle)
Amplitude range4 mVpp to 20 Vpp at or below 10 MHz · to 10 Vpp above · settable from 2 mVpp · halved into 50 Ω
Amplitude flatness±0.3 dB (50 Ω, 2.5 Vpp, referred to 10 kHz sine)
DC offset range±10 V into high impedance · ±5 V into 50 Ω
Output impedance50 Ω · output current ±200 mA · channel crosstalk −60 dBc
ModulationAM, DSB-AM, FM, PM, ASK, FSK, PSK and PWM · internal or external source
Modulating waveformsSine, square, ramp, noise or arbitrary · 1 mHz to 20 kHz · keying to 50 kHz
SweepLinear or logarithmic · up or down · 1 ms to 500 s · internal, external or manual trigger
Burst1 to 1,000,000 cycles, infinite or gated · period 1 µs to 1000 s
HarmonicsUp to the 16th order · even, odd or all · independent amplitude and phase
Frequency counter0.1 Hz to 200 MHz · frequency, period, pulse width and duty cycle · AC, DC or HF-reject
Reference clock10 MHz input and output for multi-instrument synchronisation
Display4.3″ TFT-LCD, 480 × 272 · 24-bit colour
InterfacesUSB Host, USB Device (USBTMC) and LAN (VXI-11)
Power100–240 Vrms ±10%, 50/60 Hz (100–120 Vrms at 400 Hz) · 21 W typical
Dimensions / mass260.3 × 107.2 × 295.7 mm (w × h × d) · 3.43 kg net, 4.35 kg gross
Operating conditions0°C to 40°C · ≤90% RH below 30°C, ≤50% RH at 40°C · to 3048 m

What’s in the box

  • GPS-2100+ series main unit4.3″ TFT-LCD display
  • Power cordMains lead
  • USB cablePC connectivity
  • Calibration certificateSupplied with the instrument
  • Quick start guideArbitrary waveform editing software available on request

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Compliance & Downloads

Warranty, calibration & resources

Compliance & Warranty

LVD: IEC 61010-1:2010 EMC: EN 61326-1:2013 1 year warranty
Safety: IEC 61010-1:2010 low voltage directive.
EMC: EN 61326-1:2013.
Warranty: 1 year, subject to product registration. Extended coverage available.
Calibration interval: 1 year recommended. Certificate supplied with the instrument.
Service: Service and calibration available. Please contact for more information.

Downloads & Resources

DatasheetDownload PDF
User ManualContact us
Arbitrary waveform softwareContact us

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