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Keysight B2901CL Precision Source/Measure Unit, 1ch, 1pA resolution, 21 V, 1.5 A

Key Features and Functions

Measurement capabilities

  • Supports one-channel configuration
  • Minimum source resolution: 10 pA /1 μV, Minimum measurement resolution: 1 pA/100 nV
  • Maximum output: 21 V, 1.5 A DC
  • Arbitrary waveform generation and digitizing capabilities from 20 μs interval

General features

  • Integrated 4-quadrant source and measurement capabilities
  • The 4.3’’ color display supports both graphical and numerical view modes
  • Free application software to facilitate PC-based instrument control
  • High throughput and SCPI command supporting conventional SMU command set

Documents and Links:

Product Number:

B2901CL

Manufacturer:

Keysight

Quantity:

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Unit price
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Availability:
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Highlights

Precision Source Performance and Rapid Measurement Results

The Keysight B2900 Series precision source measure unit (SMU) provides superior performance and usability at a reasonable price. These compact benchtop SMUs enable you to quickly take various I-V (current versus voltage) measurements requiring high resolution and accuracy. Easily view results on the user-friendly, color LCD graphic interface without changing connections.

  • Get accurate measure current and voltage using a single source measure unit instrument
  • Measure remotely from a PC without programming
  • Display I-V curves and other types of graphs on the front panel
  • Enjoy 6.5-digit sourcing and measurement resolution
  • Source and measure resolution down to 10 fA and 100 nV
  • Improve testing efficiency while lowering the cost of ownership

Get Rapid and Accurate Measurement Results

The B2900C/CL Series SMU offers superior measurement throughput and supports conventional SMU SCPI commands for easy test code migration. These features improve efficiency and lower the cost of ownership when integrating the SMUs into systems for production test.

The B2900C/CL Series SMU consists of six models - the B2901CL, B2910CL, B2901C, B2902C, B2911C, and B2912C. The differentiation between the models is according to their available features: output range, number of digits displayed, measurement resolution, pulsed sourcing, minimum timing interval, viewing modes, and SMU channels. These model choices make it easy for selecting the performance and price you need for your testing requirements.

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Description
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Highlights

Precision Source Performance and Rapid Measurement Results

The Keysight B2900 Series precision source measure unit (SMU) provides superior performance and usability at a reasonable price. These compact benchtop SMUs enable you to quickly take various I-V (current versus voltage) measurements requiring high resolution and accuracy. Easily view results on the user-friendly, color LCD graphic interface without changing connections.

  • Get accurate measure current and voltage using a single source measure unit instrument
  • Measure remotely from a PC without programming
  • Display I-V curves and other types of graphs on the front panel
  • Enjoy 6.5-digit sourcing and measurement resolution
  • Source and measure resolution down to 10 fA and 100 nV
  • Improve testing efficiency while lowering the cost of ownership

Get Rapid and Accurate Measurement Results

The B2900C/CL Series SMU offers superior measurement throughput and supports conventional SMU SCPI commands for easy test code migration. These features improve efficiency and lower the cost of ownership when integrating the SMUs into systems for production test.

The B2900C/CL Series SMU consists of six models - the B2901CL, B2910CL, B2901C, B2902C, B2911C, and B2912C. The differentiation between the models is according to their available features: output range, number of digits displayed, measurement resolution, pulsed sourcing, minimum timing interval, viewing modes, and SMU channels. These model choices make it easy for selecting the performance and price you need for your testing requirements.

Do you have any questions on this item?
Your E-mail Address
My Question:
Please retype the letters shown here
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