Operating Frequency Range:DC to 50 MHz
Maximum Input Voltage:±100 V
Output Voltage Accuracy:≤ 0.001% + 0.01 ppm
Input Impedance:1 MΩ
Common Mode Rejection Ratio:≥ 100 dB
Temperature Coefficient:≤ 1 ppm/°C
Power Consumption:≤ 5 W
The Stanford Research SR570 is engineered with advanced signal processing capabilities, ensuring exceptional accuracy and reliability in measurement tasks.
Equipped with a user-friendly interface, it simplifies complex setup procedures, making it accessible for both experienced scientists and new users alike.
Utilizing high-quality components, the SR570 guarantees long-term stability and minimal drift, crucial for continuous and precise data acquisition.
This lock-in amplifier is ideal for applications requiring high sensitivity, such as low-level signal detection, superconducting quantum interference devices (SQUIDs), and high-frequency spectroscopy.
Designed for durability and efficiency, the SR570 is compact yet robust, offering versatile installation options in various laboratory setups and field environments.
Comprehensive documentation and support ensure an easy integration process and quick resolution of any technical issues, maximizing the value for investment.
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