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Keysight NB6-class Pro benchtop DC power supplies include the B2960 Series.
Keysight NB6-class Pro benchtop DC power supplies include the B2960 Series. They are our highest-performance benchtop DC power supply models, ideal for applications that require high precision, ultra-low noise, and stable power. Our Pro models offer 6.5-digit precision display for voltage and current readings, wide bipolar 4-quadrant output ranges, ultra-low noise, and a built-in arbitrary waveform generator (AWG). Choose one of our popular configurations or configure one specific to your application.
Offers highly accurate readings with 100 nV resolution for voltage and 10 fA for current, ideal for testing high-precision devices like temperature sensors and integrated circuits.
Supports an external noise filter for noise as low as 10 µVrms, preventing interference with precision circuits and low-noise amplifiers.
Delivers pulsed output with precise timing, voltage, and current control, ideal for testing communications, automotive, and power electronics systems using real-world conditions.
Generates custom voltage and current waveforms with specific shapes, at frequencies from 1 mHz to 10 kHz, and with varying amplitudes.
Maximum power
32 W
Maximum current per output
3 A
Maximum voltage per output
210 V
Number of outputs
1 to 2
4-wire remote sense
Yes
Up / down programming settling time
0.1 ms
Arbitrary waveform generation
Yes
B2961C
The Keysight B2961C Power Source offers a broad voltage range (up to ±210 V) and current range (up to ±3 A DC and ±10.5 A pulsed), delivering excellent 6.5-digit resolution.
The Keysight B2961C Series 6.5-digit low-noise source power supply provides an advanced power and sourcing solution, helping researchers, designers, and developers tackle complex measurement challenges for advanced components, circuits, and materials. Unlike typical power supplies, the B2961C supports 4-quadrant operation, supplying precise voltage or current within its ranges and power limits, regardless of polarity.
The B2961C enables you to do the following:
B2962C
The Keysight B2962C Power Source provides a broad voltage range (up to ±210 V) and current range (up to ±3 A DC and ±10.5 A pulsed), offering excellent 6.5-digit resolution.
The Keysight B2962C Series 6.5-digit low-noise source power supply provides an advanced power and sourcing solution, helping researchers, designers, and developers tackle complex measurement challenges for advanced components, circuits, and materials. Unlike typical power supplies, the B2962C supports 4-quadrant operation, supplying precise voltage or current within its ranges and power limits, regardless of polarity.
The B2962C enables you to do the following:
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A precision power supply goes beyond simply delivering voltage and current. It offers high accuracy, stability, and built-in measurement capabilities, making it a superior choice for demanding test applications.
1. Higher accuracy
2. Built-in measurement capabilities
3. Low noise & high stability
4. Advanced features for test & automation
5. Ideal for R&D and critical testing
A low-noise output ensures that the source signals are stable and precise, which is critical when measuring small currents or voltages, such as in sensitive semiconductor, nano-material tests. and sensor calibration where even a small amount of noise can affect results.
A built-in AWG in a DC power supply provides the ability to generate complex, time-varying output signals, beyond standard fixed or ramped voltage and current levels. This capability is highly beneficial for testing devices that operate under dynamic power conditions, such as battery-powered electronics, automotive components, or power converters.
With an integrated AWG, you can create and output custom voltage or current waveforms that simulate real-world operating scenarios, like voltage dips, load transients, or periodic power cycles, without needing external signal generators or additional equipment. This not only saves space and cost but also simplifies test setup and improves synchronization between the waveform and output behavior.