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Spin Test Magneto Optic Kerr Microscope Multifunctional Research Microscope For Material Analysis

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    Buy cheap Spin Test Magneto Optic Kerr Microscope Multifunctional Research Microscope For Material Analysis from wholesalers
     
    Buy cheap Spin Test Magneto Optic Kerr Microscope Multifunctional Research Microscope For Material Analysis from wholesalers
    • Buy cheap Spin Test Magneto Optic Kerr Microscope Multifunctional Research Microscope For Material Analysis from wholesalers

    Spin Test Magneto Optic Kerr Microscope Multifunctional Research Microscope For Material Analysis

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    Brand Name : Truth Instruments
    Model Number : KMPL-S
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    Spin Test Magneto Optic Kerr Microscope Multifunctional Research Microscope For Material Analysis

    Material Analysis With Multifunctional SpinTest MagnetoOptic Kerr Microscope

    Product Description:

    The Multifunctional Spin-Test Magneto-Optic Kerr Microscope is a cutting-edge instrument designed for researchers and professionals in the field of spintronic devices. This advanced microscope offers unparalleled capabilities for studying magnetic thin films with exceptional precision and detail.

    One of the key features of this microscope is its Magnetic Field Resolution, which is achieved through PiD Closed-loop Feedback Regulation, providing a remarkable resolution of 0.05 mT. This high level of precision allows for accurate and reliable measurements of magnetic fields in various samples.

    When it comes to In-Plane Magnetic Field measurements, the Multifunctional Spin-Test Magneto-Optic Kerr Microscope offers multiple options to suit different experimental setups. It can generate magnetic fields of 1 T@air Gap 5 mm, 0.5 T@air Gap 10 mm, and 0.3 T@air Gap 16 mm, providing flexibility and versatility for researchers working on different scales.

    In addition to in-plane measurements, this microscope also offers capabilities for Microsecond Ultrafast PulseVertical Magnetic Field analysis. With a vertical magnetic field strength of 60 mT, a rapid Rise Time of 0.5 Us, and a Pulse Width ranging from 1 Us to 10 Us, researchers can capture dynamic magnetic phenomena with high temporal resolution.

    For precise electrical measurements, the Multifunctional Spin-Test Magneto-Optic Kerr Microscope is equipped with a Keithley 6221 Electrical Source Meter and a Keithley 2182A Nanovoltmeter. These instruments ensure accurate and reliable electrical characterization of samples, complementing the magnetic measurements offered by the microscope.

    Furthermore, the optical capabilities of this microscope are exceptional, with an Optical Resolution of 250 nm. This level of resolution enables researchers to visualize and analyze magnetic structures with extraordinary detail, enhancing their understanding of magnetic thin films and spintronic devices.

    In terms of functionality, the Multifunctional Spin-Test Magneto-Optic Kerr Microscope is designed for automated measurement processes, streamlining experimental workflows and increasing efficiency in data collection. Researchers can rely on this instrument to perform complex measurements with ease, saving time and effort in their research endeavors.

    Overall, the Multifunctional Spin-Test Magneto-Optic Kerr Microscope is a powerful tool for researchers working on spintronic devices and magnetic thin films. With its advanced capabilities, high precision measurements, and automated functionality, this microscope provides a comprehensive solution for studying magnetic materials and exploring the potential applications of spin-based technologies.

    Features:

    • Product Name: Multifunctional Spin-Test Magneto-Optic Kerr Microscope
    • Objectives: 5x, 20x, 50x, 100x, non-magnetic
    • Optical Resolution: 250 nm
    • Probe Station: Compatible With 4 - 8 Sets Of Non-magnetic Probe Holder
    • Electrical Source Meter: Keithley 6221, Keithley 2182A
    • Vertical Magnetic Field: 0.25 T @ single Pole

    Technical Parameters:

    Electrical Source MeterKeithley 6221, Keithley 2182A
    Optical Resolution250 nm
    In-Plane Magnetic Field1 T @ air Gap 5 mm, 0.5 T @ air Gap 10 mm, 0.3 T @ air Gap 16 mm
    Objectives5x, 20x, 50x, 100x, non-magnetic
    Magnetic Field ResolutionPID Closed-loop Feedback Regulation, Resolution 0.05 mT
    Probe StationCompatible with 4 - 8 sets of non-magnetic probe holder
    Vertical Magnetic Field0.25 T @ single Pole
    Microsecond Ultrafast Pulse Vertical Magnetic Field60 mT, Rise Time 0.5 µs, Pulse Width 1 µs - 10 µs

    Applications:

    Truth Instruments presents the innovative Multifunctional Spin-Test Magneto-Optic Kerr Microscope, model KMPL-S, originating from China. This cutting-edge product is designed for various high magnetic field applications and scenarios, offering exceptional performance and functionality.

    The Microsecond Ultrafast PulseVertical Magnetic Field capability of 60 mT, with a rise time of 0.5 Us and pulse width ranging from 1 Us to 10 Us, makes this microscope ideal for conducting experiments requiring precise and rapid magnetic field adjustments. The Magnetic Field Resolution is ensured through PiD closed-loop feedback regulation, providing a resolution of 0.05 mT for accurate measurements.

    Equipped with an Electrical Source Meter comprising Keithley 6221 and Keithley 2182A, the KMPL-S microscope ensures reliable electrical measurements in addition to its magnetic field capabilities. The vertical magnetic field strength of 0.25 T at a single pole enhances its suitability for a wide range of applications.

    One of the standout features of this microscope is its compatibility with 4 to 8 sets of non-magnetic probe holders, making it versatile for different experimental setups. The automated measurement capabilities streamline the process of data collection, saving time and increasing efficiency.

    The Multifunctional Spin-Test Magneto-Optic Kerr Microscope is particularly well-suited for research and development in spintronic devices, where high magnetic fields and precise measurements are essential. Its advanced features and reliable performance make it a valuable tool for scientists and researchers working in this field.

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