S2014C

S2014C

12-channel PXIe SMU

The S2014C is a high precision, compact, cost-effective, 12-channel PXIe Source/Measure Unit (SMU) with the capability to source and measure both voltage and current. It has maximum ±10 V, ± 50mA (DC/pulse) sourcing capability. It supports conventional SCPI commands for easy programming. It supports most standard PXIe chassis and multi-card synchronization. The S2014C can be integrated into production test environment to achieve test efficiency improvement and cost reduction.

Features

10
High range, High-speed Measurement

±10 V, ±50 mA(DC/pulse)
Resolution up to 1pA/1μV
Supports up to 1M sampling rate

11
12-channel Testing System

Based on standard PXIe chassis
enabling multi-channel expansion and seamless
integration into rack-mounted and stacked systems

12
Adaptive PFC System

Utilizing Adaptive System
( Adaptive Precise-Fast Control)
Users can adjust relevant parameters based on load characteristics

13
Sensing Mode

Supports 2-wire or 4-wire (remote sensing) connection
Maximum sensor lead resistance: 1kΩ (rated accuracy)
Maximum voltage of remote output terminal and sensor terminal: 0.5V

Functions and Advantages

5 Functions In One Card

  • Voltage sour
  • Current source
  • Ammeter
  • Voltmeter
  • Electronic load
5 Functions In One Card
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♦ The first and third quadrants are the source: the actual polarity of the output V/I follows the source setting.
♦ The second ang fourth quadrants are for load: CC and CV cooperate.  When the load is used, the polarity of the load setting is opposite to the source polarity.

Test Various Devices

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Capture More Measurement Data

♦ 6 Half bit digital resolution: the accuracy is equivalent to a 6-and-a-half-bit digital multimeter.
♦ 1 pA/1 μV resolution: excellent sensitivity for setting and measuring.
♦ 1M points/second: provides high-speed measurement and can quickly set/digitize the rate for any waveform generator/list scanning.

Rich Scanning Functions

Rich Scanning Function

Voltage Programming and Measurement Specifications

Voltage Precision

 

Measuring Range[1] Measuring Resolution Accuracy (1 year)

± (% reading + bias)[2]

Typical Noise (RMS)

0.1 Hz-10Hz

±10V 1 μV 0.02%+500μV 100 μV
±6V 1 μV 0.02%+300μV 50 μV
Temperature Coefficient ±(0.15 × Precision Indicator)/°C (0℃-18℃,28℃-50℃)
Channel[3] CH1-CH12
Overshoot <±0.1% (typical,normal, step range is 10% to 90%,full scale point,resistive load test)
Noise(10Hz-20MHz) <3 mVrms,10V voltage source,50 mA resistive load

[1] Please do not connect the Guard terminal to any output, including shorting to chassis ground or output LO, as it may damage the instrument
[2] Example of accuracy calculation: Testing the accuracy of a 1V output in a 10V range, the allowable tolerance is

S2014C

[3] All channel outputs are electrically isolated from earth, but each channel output shares a common ground (LO)

Current Programming and Measurement Specifications

Current Precision

 

 

 

 

Measuring Range Measuring Resolution Accuracy (1 year)

± (% reading + bias)

Typical Noise (RMS)

0.1 Hz-10Hz

±50 mA 10 nA 0.05%+12μA 1 μA
±10 mA 10 nA 0.05%+2 μA 100 nA
±1 mA 1 nA 0.05%+200nA 10 nA
±100 μA 100 pA 0.05%+20nA 1 nA
±10 μA 10 pA 0.05%+2nA 100 pA
±1 μA 1 pA 0.05%+300pA 50 pA
Temperature Coefficient ±(0.15 × precision indicator)/°C (0℃-18℃,28℃-50℃)
Channel CH1-CH12
Overshoot <±0.1% (typical value,normal, step range is 10% to 90%,full scale point,resistive load test)

Sampling Rate and NPLC Setting

Configuration Method Configuration Range
NPLC 0.00005PLC ~ 10PLC
Sampling Rate 5sps ~ 1.0Msps