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Lock-in Amplifiers

measure a signal's amplitude and phase in noisy environments. Measure hi-res clean signals.

See Also: Optical Choppers


Showing results: 46 - 56 of 56 items found.

  • Saluki SE2041 DSP Lock-In Amplifier

    Saluki Technology Inc.

    SE2041 Digital Lock-in Amplifier provides an excellent performance within its bandwidth from 1 mHz to 60 MHz. With the advantage of the latest digital signal processing technology and high-speed 250MSPS 14-bit ADC, SE2041 can easily detect the phase and the magnitude of weak signals overwhelmed by various large noises. The performance of SE2041 is as good as other lock-in amplifiers all over the world, even better than them in some certain parameters, such as measurement accuracy, SNR, dynamic reserve, which meets the needs of scientific research and industrial application well.

  • PID Controllers

    Zurich Instruments AG

    Zurich Instruments offers PID controllers exclusively as upgrade options for lock-in amplifiers, impedance analyzers and boxcar averagers. Consequently, a number of different inputs can be chosen for the PIDs: the set of choices includes amplitude, phase, quadrature and in-phase components of demodulated signals, boxcar outputs, as well as auxiliary inputs and outputs.

  • AC Susceptibility

    Cryogenic Ltd.

    The AC Susceptometer option uses a small primary excitation coil to apply an AC field to a sample (typically 1mT at frequencies from 0.1 Hz 10000 Hz). A pair of secondary pick-up coils positioned close to the excitation coils are used to detect the sample response. The resultant signal is measured using a Lock-In amplifier with the in-phase and out-of-phase components of the signal corresponding to the real and imaginary components of the AC Susceptibility of the sample. An additional compensation coil is used to eliminate background signals.

  • AFM Confocal Optical Microscope

    VistaScope - Anfatec Instruments AG

    VistaScope is a unique AFM with flexible & full optical access to the tip/sample region. The VistaScope controller comes equipped with multiple lock-in amplifiers that allow patented photo-induced force microscopy (PiFM) and patented demodulation technique for background suppressed scattering scanning near-field optical microscopy (s-SNOM). It provides the ultimate capability in tip-enhanced optical microscopy as well as co-located AFM and far field optical techniques such as confocal Raman and confocal photoluminescence.

  • Balanced Optical Receivers

    Newport Electronics

    For noise sensitive experiments, we offer balanced photoreceivers that suppress up to 50 dB of laser / source intensity noise in experimental set-ups. These balanced optical receivers with two well-matched photodetectors can eliminate the need for lock-in amplifiers and can make all of the difference when you are trying to detect a small signal in applications like absorption spectroscopy, or heterodyne detection.

  • Oil and Grease Analyzer

    LD-LOGA-A10 - Labodam

    Oil and Grease analyzerLD-LOGA-A10is a tabletop analyzer with a sample testing range of0.12 mg/L to 840 mg/L. The unit displays and prints the sample spectra, position and wavenumber of the absorption peak. It features self-contained optical and electrical system withhigh degree integration. Testing data and spectrograms can be saved to hard disk forchecking and printing anytime Sensor signal processing uses lock-in amplifier circuitimproving the analyzer’s SNR and the minimum detection limit.

  • Digital Quad-phase "DSP" Lock-In Amplifier -

    eLockIn203 - Anfatec Instruments AG

    The eLockIn203 can be used as spectrum analyser, as oscilloscope, as sinus generator or as measurement control system. It provides 8 A/D channels as external inputs and controls 8 D/A channels with 156 kHz update rate as external signal outputs. It can store 32 MByte data, provides modern network connection and USB connection. Moreover, it acts as web server and all data are available over the internet.

  • Detection Electronics

    Bentham Instruments Ltd

    Our detection electronics portfolio comprises all the detection electronics elements required for the operation and automation of a high quality light measurement system, including photo-detector signal recovery and digitisation (with fully programmable DC, AC and lock-in amplifiers having current/ voltage inputs), high voltage supply, optical chopper control, detector thermoelectric cooler control and relay unit.

  • Detection Electronics

    Bentham Instruments Ltd

    Our detection electronics portfolio comprises all the detection electronics elements required for the operation and automation of a high quality light measurement system, including photo-detector signal recovery and digitisation (with fully programmable DC, AC and lock-in amplifiers having current/ voltage inputs), high voltage supply, optical chopper control, detector thermoelectric cooler control and relay unit.

  • Measurement System for ESD Protection

    SampleProtect - Oxford Instruments plc

    The SampleProtect measurement system is ready to go, and comes complete with Oxford Instruments’ Cryofree bottom loading cryostat – the OptistatDry BLV, Zurich Instruments’ MFLI Lock-in Amplifier, a specially designed ESD break-out box and high quality measurement grade cables. The patent-pending puck style mounting from Oxford Instruments provides safe installation of your samples. The MFLI 500 kHz Lock-in Amplifier (capable of 500 kHz demodulation as standard) with MF-MD multi-demodulator capability brings the benefits of high performance signal processing at low and medium frequencies. The differential voltage and current inputs of the MFLI are optimised for low noise operation and the high oversampling rate ensures an even better signal to noise ratio. Zurich Instruments’ unique LabOne® control software provides a toolset including an integrated oscilloscope, a spectrum analyser, a plotter and a parameter sweeper.

  • Scanning Electrochemical Systems

    Ametek Scientific Instruments

    The VersaSCAN is a single platform capable of providing spatial resolution to both electrochemical and materials-based measurements. Each VersaSCAN is based on a common high-resolution, long-travel, closed-loop positioning system mounted to a vibration-resistant optical base. Different auxiliary pieces are mounted to the positioning system. These ancillary pieces (e.g., an electrometer, piezo vibration unit, or a laser sensor) provide functionality to the positioning system for different scanning probe experiments. VersaSTAT potentiostats and Signal Recovery Lock-in Amplifiers are integrated via ethernet control to make accurate measurements of these small signals.

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