BCS-10 balanced current source module
This module provides programmable currents from 1 pA to 100 mA with a ±10 V maximum compliance output from DC to 100 kHz sinusoidal output. Derived from Lake Shore’s industry-leading Model 372 AC resistance bridge, the BCS-10 employs a differential or balanced design that helps reduce or eliminate ground loops often encountered in cryostats and other research apparatus. It expands on Model 372 balanced source capability, adding variable frequency and amplitude programmability for enhanced flexibility while maintaining excellent noise performance.
The inclusion of a virtual center-point ground connection further enhances noise performance by allowing the user to determine optimal center-point tie points within given apparatus or equipment setups. The BCS-10 is designed to be paired with the VM-10 module, which provides both single-ended and differential (balanced) input connection and modes. The true differential (balanced) wiring configuration minimizes noise coupled from the environment, such as from power lines, lighting, motors, and other lab equipment.
A typical application of the balanced current source involves low-resistance measurements, where the resistance of the wires connecting the current source to a sensor may be significant. Any imbalance in lead wire resistance results in a common-mode voltage that complicates the measurement of the desired parameter, the voltage across the sensor. The external CMR feature is unique in that it allows the BCS-10 to force some remote node (such as a VM-10 input) to circuit common potential and thus mitigate the effect of unbalanced lead wire resistance.
BCS-10 specifications
Specifications subject to change
Ranges: 100 mA, 10 mA, 1 mA, 100 μA, 10 μA, 1 μA, 100 nA, 10 nA; automatic selection
Compliance: 20 V differential, 10 V single-ended (non-settable)
Maximum power: 1 W, 4-quadrant operation
CMR modes: Off, internal, external
Coupling: DC or AC (1 Hz)
Guard drive: Enable or disable
Rise time: <25 µs, 10% to 90%, zero to full scale, <1 Ω impedance load, 1 µA and above ranges
Settle time: <60 µs to 0.1% of final value, zero to full scale, <1 Ω impedance load, 1 µA and above ranges
Load impedance: Stability maintained with reactive loads up to 50 µF or 1 mH (with 100 Ω damping)
Magnetic field exposure: Operational up to 11 mT DC
Size: 142 mm W × 39 mm H × 89 mm D (5.6 in × 1.5 in × 3.5 in)
Options for the BCS-10 module that you can set on the M81 instrument screen
Bandwidth/accuracy
Range | Bandwidth (typical) | DC1 ±(% rdg + A) | Lock-in1,2 ±% rdg + A | Temperature coefficient1,2 ±(ppm rdg/°C + A/°C) | Settable resolution | |
Maximum frequency | Full accuracy maximum frequency | |||||
100 mA | 100 kHz | 1 kHz | 0.03% + 5 µA | 0.15% + 500 nA | 2 ppm/°C + 100 nA/°C | 1 µA |
10 mA | 100 kHz | 1 kHz | 0.03% + 500 nA | 0.15% + 50 nA | 2 ppm/°C + 10 nA/°C | 100 nA |
1 mA | 100 kHz | 1 kHz | 0.03% + 50 nA | 0.15% + 5 nA | 2 ppm/°C + 500 pA/°C | 10 nA |
100 µA | 100 kHz | 1 kHz | 0.03% + 5 nA | 0.15% + 500 pA | 2 ppm/°C + 200 pA/°C | 1 nA |
10 µA | 100 kHz | 1 kHz | 0.03% + 1 nA | 0.15% + 50 pA | 2 ppm/°C + 10 pA/°C | 100 pA |
1 µA | 10 kHz | 1 kHz | 0.5% + 120 pA | 0.5% + 5 pA | 5 ppm/°C + 2 pA/°C | 10 pA |
100 nA | 1 kHz | 100 Hz | 0.5% + 60 pA | 0.5% + 500 fA | 5 ppm/°C + 2 pA/°C | 1 pA |
10 nA | 100 Hz | 30 Hz | 0.5% + 30 pA | 0.5% + 50 fA | 5 ppm/°C + 2 pA/°C | 100 fA |
Noise (typical)
Range | Noise density | Noise at 0.1 Hz to 10 Hz |
100 mA | 1.2 nA/√Hz at 1 kHz | 10 nA RMS (50 nA p-p) |
10 mA | 200 pA/√Hz at 1 kHz | 2 nA RMS (10 nA p-p) |
1 mA | 20 pA/√Hz at 1 kHz | 400 pA RMS (2 nA p-p) |
100 µA | 2.5 pA/√Hz at 1 kHz | 50 pA RMS (250 pA p-p) |
10 µA | 450 fA/√Hz at 1 kHz | 1.5 pA RMS (7.5 pA p-p) |
1 µA | 150 fA/√Hz at 1 kHz | 600 fA RMS (3 pA p-p) |
100 nA | 50 fA/√Hz at 100 Hz | 200 fA RMS (1 pA p-p) |
10 nA | 20 fA/√Hz at 10 Hz | 150 fA RMS (750 fA p-p) |
DC output impedance
Range | Magnitude output impedance |
100 mA | >500 kΩ |
10 mA | >1 MΩ |
1 mA | >10 MΩ |
100 µA | >100 MΩ |
10 µA | >1 GΩ |
1 µA | >1 GΩ |
100 nA | >1 GΩ |
10 nA | >1 GΩ |
1 Total system, 1 year and ±5 °C from Lake Shore calibration, 24 h and ±1 °C from self-calibration, 95% confidence
2 DC to full accuracy frequency