Siglent SDG8000A-DCAMP DC amplified output option
The SDG8000-DCAMP option adds a high-performance DC-coupled amplifier to your SDG8000A Series Arbitrary Waveform Generator. It delivers exceptional bandwidth from DC to 1 GHz, high voltage swing up to ±20 V, ultra-low noise, and excellent DC accuracy — ideal for power electronics testing, semiconductor device characterization, automotive sensor simulation, medical device testing, and high-voltage signal generation.
SDG8000-DCAMP
High-performance DC-coupled amplifier option for the SDG8000A Series Arbitrary Waveform Generator.
High-Performance DC Amplifier
The SDG8000-DCAMP option adds a high-performance DC-coupled amplifier to your SDG8000A Series generator. It delivers exceptional bandwidth, low noise, and high voltage swing, making it ideal for applications that require clean DC to high-frequency signal amplification with precise control.
This option is widely used in power electronics testing, semiconductor device characterization, automotive sensor simulation, medical device testing, and high-voltage signal generation. Whether you need to drive high-capacitance loads or generate precise low-frequency to high-frequency waveforms with high amplitude, the DCAMP option provides the performance and flexibility required for demanding applications.
Key Benefits
What You Get
DC to 1 GHz Bandwidth
Wide frequency range from DC to 1 GHz with excellent amplitude flatness and minimal phase distortion.
High Voltage Output
Up to ±20 V output swing with high current drive capability for demanding loads.
Ultra-Low Noise & Distortion
Extremely low noise and harmonic distortion for high-fidelity signal generation and sensitive measurements.
Technical Specifications
| Feature | Specification |
|---|---|
| Bandwidth | DC to 1 GHz (-3 dB) |
| Output Voltage | ±20 V (into 50 Ω) |
| Output Current | Up to ±400 mA peak |
| Noise Density | < 5 nV/√Hz (typical) |
| DC Offset Accuracy | ±0.1% of full scale |
| Settling Time | < 5 ns to 0.1% |
| Harmonic Distortion | < -60 dBc (typical) |
Ideal For
Power Electronics Testing • Semiconductor Device Characterization • Automotive Sensor Simulation • Medical Device Testing • High-Voltage Signal Generation • Capacitive Load Driving