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Stanford Research Systems preamplifiers
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Voltage: 12, 100, 120, 220, 240 V
Power: 6, 30 W
Frequency: 0.3 Hz - 1,000,000 Hz
The SR560 is a high-performance, low-noise preamplifier that is ideal for a wide variety of applications including low-temperature measurements, optical detection, and audio engineering. Inputs The SR560 has a differential ...
Stanford Research Systems
Voltage: 12 V - 240 V
Current: 5, 200 mA
Power: 6, 30 W
The SR570 is a low-noise current preamplifier capable of current gains as large as 1 pA/V. High gain and bandwidth, low noise, and many convenient features make the SR570 ideal for a variety of photonic, low temperature ...
Stanford Research Systems
Voltage: 8 V
Current: 10 mA
Frequency: 1 MHz
... Powered by SRS lock-in amplifiers The SR551 High Impedance Preamplifier works with SRS lock-in amplifiers to measure voltages from sources with moderate to high source impedance. The preamplifier is ...
Stanford Research Systems
Voltage: 100, 20 V
Frequency: 0.1 Hz - 40,000 Hz
... low-noise, transformer-coupled preamplifier optimized for source impedances between 0.05 Ω and 1 kΩ. With an input noise of only 0.1 nV/√Hz, the SR554 can be used in a wide range of low-noise applications. It is the ideal ...
Stanford Research Systems
Voltage: 20 V
Current: 10 mA
Frequency: 120 kHz
... permanently degrade the signal-to-noise ratio, reducing measurement time in noise-limited experiments. SR555 Current Preamplifier The SR555 is a low-noise, high-bandwidth, fixed-gain current (trans-impedance) amplifier ...
Stanford Research Systems
Voltage: 20 V
Current: 10 mA
Frequency: 1, 3 kHz
1 V/nA fixed gain 5 fA/√Hz input noise Bias voltage input Powered by SRS lock-in amplifiers The SR556 is a low-noise, high-bandwidth, fixed-gain current (trans-impedance) amplifier designed to work with SRS lockin amplifiers. Current ...
Stanford Research Systems
Voltage: 1, 5 V
Current: 100 mA
Frequency: 350 MHz
The SIM918 Current Preamplifier is ideal in applications in which the input offset voltage must be kept to a minimum. The DC voltage difference between the two inputs (current input and voltage bias) is accurately measured ...
Stanford Research Systems
Voltage: 10, 5 V
Current: 100 mA
The SIM918 Current Preamplifier is ideal in applications in which the input offset voltage must be kept to a minimum. The DC voltage difference between the two inputs (current input and voltage bias) is accurately measured ...
Stanford Research Systems
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