
PXIe Source Measure Unit
S2011C
Single-channel PXIe SMU
Features

High Sampling Rate
Up to 1M ADC sampling rate
High Range
Range: ±60 V, ±3 A(DC), ±10 A(pulse)
High Resolution
The minimum measurement resolution can reach 100fA / 100nV
Easy to Expand
It is used in standard PXIe chassis to easily realize multi-channel expansionFunctions and Advantages

5 Functions In One Card
Voltage source

Can Test Various Equipment

Capture More Measurement Data
♦ 6.5-digit resolution: enjoy best-in-class 6.5-digit sourcing and measurement resolution.
Rich Scanning Function

DC I-V Output Capacity

Pulse I-V Output Capacity
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|
Range | Programming Resolution |
Accuracy (1 Year) ± (% reading+ offset)[1] |
Typical Noise(RMS) 0.1 Hz-10Hz |
|||
| ±60 V[2] | 10 μV | 0.02%+3 mV | 100 μV | ||||
| ±6 V | 1 μV | 0.02%+0.3 mV | 10 μV | ||||
| ±0.6 V | 100 nV | 0.02%+50 μV | 5 μV | ||||
| ±0.06V | 100nV[3] | 0.02%+50 μV |
3 μV |
||||
| Temperature Coefficient | ±(0.15 × accuracy)/°C (0℃-18℃, 28℃-50℃) | ||||||
| Overshoot | <±0.1% (typical.normal.step is 10% to 90% range, full range, resistive load) | ||||||
| Noise 10Hz-20MHz |
6V voltage source, 3A resistive load, <5 mVrms |
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[2] This instrument has potentially dangerous high voltage (±63 V) output to the HI / Sense HI / Guard terminals. To prevent electric shock, relevant safety precautions must be taken before powering on. Do not connect the Guard terminal to any output, including shorting it to the chassis ground or output LO, otherwise the instrument will be damaged
[3] Noise Limitations
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|
Range | Programming Resolution |
Accuracy (1 Year) ± (% reading+ offset) |
Typical Noise(RMS) 0.1 Hz-10Hz |
|||
| ±10 A[4] | 1 μA | 0.03% + 2mA | 20 μA | ||||
| ±3 A | 20μA | ||||||
| ±1 A | 100 nA | 0.03% + 90 μA | 3 μA | ||||
| ±100 mA | 10 nA | 0.03% + 9 μA | 200 nA | ||||
| ±10 mA | 1 nA | 0.03% + 900 nA | 20 nA | ||||
| ±1 mA | 100 pA | 0.03% + 90 nA | 2 nA | ||||
| ±100 μA | 10 pA | 0.03% + 9 nA | 200 pA | ||||
| ±10 μA | 1 pA | 0.03% +1 nA | 30 pA | ||||
| ±1 μA[5] | 100 fA | 0.03% + 200 pA | 5 pA | ||||
| Temperature Coefficient | ±(0.15 × accuracy)/°C (0℃-18℃, 28℃-50℃) | ||||||
| Overshoot | <±0.1% (typical.normal.step is 10% to 90% range, full range, resistive load) | ||||||
[4] 10A range is available only for pulse mode, accuracy specifications for 10A range are typical
[5] For small current measurements, it is recommended to use a triple coaxial cable connection: Hi to the core wire, Guard to the inner shielding layer, outer shielding layer to protective ground; LO to the core wire, inner shielding layer not connected, outer shielding layer to protective ground. The rated insulation voltage of the coaxial cable should be no less than 250V
| Minimum Programmable Pulse Width | 100 μs | ||||||
| Pulse Width Programming Resolution | 1 μs | ||||||
| Pulse Width Programming Accuracy | ±10 μs | ||||||
| Pulse Width Jitter | 2 μs | ||||||
| Pulse Width Definition | The time from 10% leading to 90% trailing edge as follows |

| Item | Maximums | Maximum Pulse Width | Maximum Duty Cycle | ||||
| 1 | 0.4 A/50 V | DC, no limit | 1 | ||||
| 2 | 1 A/20 V | DC, no limit | 1 | ||||
| 3 | 3 A/6.6 V | DC, no limit | 1 | ||||
| 4 | 10 A/20 V | 1ms | 5% | ||||
| 5 | 10 A/50 V |
400 μs |
2% |
| Source | Range | Typical Rise Time[7] | Typical Settling Time[8] | Test load | |||
|
Voltage |
50 V | 280 μs | 400 μs | No load | |||
| 5 V | 60 μs | 100 μs | No load | ||||
|
Current |
10 A~100 μA | 120 μs | 250 μs | Full load[9] | |||
| 10 μA | 120 μs | 300 μs | Full load[9] | ||||
| 1 μA | 420 μs | 600 μs | Full load[9] | ||||
[9] Test condition: Normal, resistive load 6V maximum output
|
|
|
Output Settling Time[10] |
|
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| Fast[11] | Normal | Slow | |||||
|
|
60 V | <160 μs | <420 μs | <1.6 ms |
Time required to reach within 0.1% of final value at open load condition. Step is 10% to 90% range |
||
| 6 V | <70 μs | <120 μs | <220 μs | ||||
| 600 mV | <70 μs | <120 μs | <220 μs | ||||
|
60 mV |
<40 μs |
<40 μs |
<40 μs |
||||
|
|
3 A~100 μA | <120 μs | <280 μs | <1 ms |
value at short condition. Step is 10% to 90% range |
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| 10 μA | <270 μs | <450 μs | <0.8 ms | ||||
| 1 μA | <720 μs |
<900 μs |
<1.8 ms | ||||
[10] Output transition speed: Fast, Normal, Slow. Users can adjust the APFC parameters based on the load characteristics to obtain precision, and fast output characteristics
[11] Slow mode is recommended for overshoot sensitive equipment, Fast mode may have overshoot on output in some condition
| Setting | Range | ||||||
| NPLC | 0.00005 PLC ~ 10 PLC | ||||||
| Sampling Rate | 5 sps ~ 1 Msps |
Add % of range using the following table for measurement with PLC < 1
| PLC |
Range | |||||||
| 60 mV | 600 mV | 6 V | 60 V | 1 μA | 10 μA | 100 μA to 100 mA | 1 A to 3 A | |
| 0.1 | 0.04% | 0.02% | 0.01% | 0.01% | 0.02% | 0.01% | 0.01% | 0.01% |
| 0.01 | 0.4% | 0.3% | 0.03% | 0.02% | 0.20% | 0.04% | 0.02% | 0.02% |
| 0.001 | 4% | 3.20% | 0.40% | 0.1% | 2.50% | 0.4% | 0.03% | 0.03% |
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