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  • A high-performance analyzer designed for R&D applications involving electrochemical components, materials, batteries, and EDLCs. It enables precise impedance measurements essential for advanced evaluation and development.

    Key Features:

    • Wide frequency range: 1 mHz to 200 kHz for detailed ion and solution behavior analysis
    • Dual function: High-speed continuous LCR and sweep measurements with one device
    • Battery analysis: Measures internal impedance under no-load conditions
    • Ultra-fast sweep: Perform measurements in as little as 2 ms
    • High accuracy: ±0.05% basic precision for reliable R&D and testing
    • Advanced analysis: Supports Cole-Cole plots and equivalent-circuit modeling for electrochemical studies
  • An advanced firmware upgrade for the IM3570 that enables quick and accurate equivalent circuit analysis, ideal for in-depth component evaluation and quality control.

    Key Features:

    • Automatically selects the optimal equivalent circuit model from five typical options
    • Minimizes discrepancies between measured and ideal frequency characteristics
    • Determines acceptance/rejection of L, C, and R elements with precision
    • Evaluates resonance sharpness (mechanical quality coefficient)
    • Enables detailed analysis of piezoelectric elements and inductors through resonance
    • Current measurement from insulated probing of conductor
    • Suitable for observation and measurement of current in PCB tracks, component leads and ground planes
    • Wide dynamic range of 10mA to 20A peak to peak
    • Wide bandwidth of DC to 5MHz
    • Low noise figure equivalent to <6mA rms at full B/W
    • Safety rated to 300V Cat II (600V Cat 1)
    • Suitable for connection to any oscilloscope
    • High accuracy general purpose H-field probe
    • Converts to ‘closed magnetic circuit’ current probe

     

  • The Hioki IM7580A is a compact, high-speed impedance analyzer for 1 MHz to 300 MHz testing, ideal for both production and R&D. It works seamlessly with the IM9201 SMD fixture for reliable component testing.

    Key Features:

    • 1 MHz to 300 MHz frequency range
    • 0.5 ms test speed
    • ±0.72% basic accuracy
    • Compact half-rack size with palm-sized test head
    • Reliable contact check functions
    • Frequency, level, and time sweeps in Analyzer Mode
    • RF I-V method for precise measurement
  • The Hioki IM7581 is a compact, high-speed impedance analyzer designed for accurate testing from 100 kHz to 300 MHz. It’s ideal for both production and development environments.

    Key Features:

    • 100 kHz to 300 MHz frequency range
    • 0.5 ms fastest test speed
    • ±0.72% basic accuracy
    • Compact half-rack size, palm-sized test head
    • Reliable contact check via DCR, Hi-Z reject, or waveform judgment
    • Supports frequency, level, and time sweeps in Analyzer Mode
    • Uses RF I-V method for precise measurement
  • The Hioki Impedance Analyzer IM7587 3 GHz provides precision, speed, and versatility for impedance measurements from 1 MHz to 3 GHz, ideal for both R&D and mass production applications in electronic component testing.

    Key Features:

    • Frequency range: 1 MHz to 3 GHz
    • Test speed: 0.5 ms
    • Measurement variability: 0.07%
    • Basic accuracy: ±0.65% reading
    • RF I-V measurement technique
    • Compact half-rack design with palm-sized test head
    • Robust contact check capabilities
    • Analyzer mode: frequency and level sweeps, time interval measurements
  • Single Phase Power Meter Compatible with DC Measurement and Current/Power Integration Measurement

    Key Features:

    • Compatible with the SPECpower® (*1) benchmarking for server power consumption
    • DC measurement mode, AC, and AC+DC measurement
    • Integration function for current and power
    • ±0.1% high basic accuracy (*2) For complete details, please refer to the specifications)
    • Extended period of guaranteed accuracy of 3 years
    • Complete accuracy over a wide input range

     

  • Single-phase, 2U, industrial amplifier/battery simulator

    • Bench-sized
    • Powered from 120V/230VAC
    • Source and Sink (4 quadrant)
    • Rugged Design
    • 3-Year, No-Fault Warranty

    Key Performance Capabilities:

    • Drop outs and surges as fast as 1.2µs
    • Small signal response up to 1 MHz
    • 13.5 VDC at up to 28A
    • Field-selectable ±40V, 75V or 150V potential

     

  • The First Wide-Bandwidth, High-Power Digital Amplifiers

    • Max Continuous Output Current: 300A RMS
    • Surge Rating: 2X power at up to 400 VP or 750A
    • Apparent Power Rating: Up to 5X continuous power rating atup to 400 VP or 750A
    • Supply Voltage: Three-phase, 208V ±10%, 60A, 50/60 Hz; 400V ±10%, 15A version available.
    • Dimensions (HxWxD): 36.5 x 21.0 x 30.75 inches (92.7 x 53.3 x 78.1 cm)
    • Weight: Appx. 540 lbs. (244.9 kg)

     

  • The DCP-X probe is designed for engineers and scientists in device characterization, R&D, and testing, offering highly accurate and repeatable on-wafer electrical measurements (IV, CV, LFN). It uses MEMS technology to measure advanced devices (2, 3, 5 nm) on various pad materials, micro-bumps, and pads as small as 20 μm, reducing the need for retesting and cleaning while covering the full thermal range at lower testing costs. Compared to traditional probes, the DCP-X provides 1000x lower contact resistance, minimal skate, and over 500,000 contact cycles, ensuring precise measurements and longer probe life.

  • Key Features:

    • Measure even harmonic waveform components using the True RMS method
    • Expanded -25°C to 65°C operating temperature range
    • Connect the CT6280 flexible sensor to measure up to 4199 A in thick or paired wires
    • Drop proof design withstands drop from a height of 1 meter

     

    • CAT IV 600 V, CAT III 1000 V
      When using P2000: CAT III 2000 V, CAT IV 1000 V
    • Easily get into tight spaces between cables thanks to thin sensor with a minimum cross-section span of 11 mm
    • Measure up to 2000 A AC
    • AC A, AC and DC V, DC+AC V, resistance, frequency, and more
    • Easily transfer measurement data to your smartphone or tablet by using our free app GENNECT Cross or to an Excel® file (*1)
    • Harmonic analysis from 1st to 30th order with GENNECT Cross (*1)

     

  • Pencil-style Pocket Digital Multimeter for General Electrical Maintenance, Testing and Hobbyists

    Key Features:

    • Test lead and main unit in a single body
    • Overload protection to 600 V at resistance or continuity functions
    • LED light brightly illuminates test points

     

    • Simply clip clamps onto wire insulation
    • Green LED arrow clearly shows phase direction, perfect for visual reports
    • CAT III 1000V
    • Rotating LED indicator shows the phase sequence for a 3-phase power supply at a glance
    • Intermittent beeps signal positive phase; continuous tone signals reverse phase
    • Magnetic base allows the instrument to be secured on a distribution panel

     

  • Single Phase Power Meter for Production and Inspection Lines

    Key Features of HiTESTER 3333 Single-Phase Power Meter:

    • Ideal for replacing portable instruments, ±0.1% basic accuracy
    • Extended period of guaranteed accuracy of 3 years
    • 50mA to 20A AC current range (300 V Max., Accuracy guaranteed up to 30 A)
    • Print out with the 9442 and RS-232C interface

     

  • Quantify composite layer resistance and interface resistance in Li-ion battery electrode sheets

    The RM2610 Electrode Resistance Measurement System is an advanced tool designed for precise quantification of composite layer resistivity and interface resistance in Li-ion battery electrode sheets. Using cutting-edge inverse problem analysis, the system isolates and calculates resistance values critical for optimizing battery performance. Its intuitive design includes a constant current source and a multi-probe setup, enabling rapid measurements and detailed analysis.

    With the ability to measure resistance variations caused by material properties, composition, and manufacturing conditions, the RM2610 accelerates the development of high-performance batteries. This system supports both positive and negative electrodes and provides visual insights into uniformity and density effects. Ideal for research and manufacturing environments, the RM2610 ensures reliable, accurate measurements essential for advancing lithium-ion battery technology.