Showing 1–16 of 18 results


  • 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
  • Key Features:

    • High-precision EIS measurement for EV and ESS battery testing
    • Frequency range: 0.01 Hz to 1.05 kHz for versatile impedance analysis
    • Measures impedance, voltage, and temperature simultaneously
    • Supports Nyquist (Cole-Cole) plotting for battery R&D
    • Four-terminal pair probes reduce magnetic flux for stable measurements
    • LAN interface enables multi-channel testing and integration into production systems
    • Compatible with third-party equivalent circuit analysis software
    • Reliable for both R&D and manufacturing applications

     

  • The Hioki IM7583 Impedance Analyzer is a high-speed, reliable LCR measurement device ideal for testing electronic components in high-volume production environments. It combines precision, compact design, and flexible operation for a wide range of applications.

    Key Features

    • Test frequency range: 1 MHz to 600 MHz
    • Fastest analog test speed: 0.5 milliseconds
    • Basic accuracy: ±0.65% rdg.
    • Half-rack body with palm-sized test head for flexible placement
    • RF I-V method for accurate impedance measurement
    • Contact check with DCR testing, Hi-Z reject, or waveform judgment
    • Frequency sweeps, level sweeps, and time interval measurements in Analyzer Mode
    • Comparator function for automated PASS/FAIL judgments

     

  • The Hioki IM7585 Impedance Analyzer is a high-speed, high-precision LCR and impedance measurement device designed for R&D and production environments. It delivers fast, accurate testing of electronic components from 1 MHz to 1.3 GHz.

    Key Features

    • Test frequency range: 1 MHz to 1.3 GHz
    • Fastest test speed: 0.5 milliseconds (analog measurement)
    • Exceptional stability with 0.07% measured value variability at 1 GHz
    • Basic accuracy: ±0.65% rdg.
    • Half-rack body with a palm-sized test head for flexible placement
    • RF I-V method for precise impedance analysis
    • Contact check with DCR testing, Hi-Z reject, or waveform judgment
    • Frequency sweeps, level sweeps, and time interval measurements in Analyzer Mode
    • Comparator function for PASS/FAIL judgments

     

  • The Hioki IM9201 SMD Test Fixture is a high frequency test fixture designed exclusively for the IM7580 series impedance analyzers. Supporting six common SMD package sizes, it enables stable, repeatable impedance measurements up to 3 GHz for advanced component evaluation in R&D and production environments.

    Key Features

    • Designed exclusively for Hioki IM7580 series impedance analyzers
    • Supports impedance measurement up to 3 GHz
    • Accommodates six SMD package sizes in one fixture
    • Dual device guides allow fast and accurate component placement
    • Optimized for high frequency stability and repeatability
    • Ideal for RF components, ferrite beads, and chip inductors

     

  • A high-speed, high-precision LCR meter ideal for low-ESR and impedance testing in advanced electronic components like polymer capacitors, inductors, and piezoelectric elements.

    Key Features:

    • Continuous LCR/DCR/sweep measurements with one instrument
    • Ultra-fast testing speeds: 1.5 ms (1 kHz), 0.5 ms (100 kHz)
    • High accuracy: ±0.08% basic accuracy for Z parameter
    • Ideal for low-ESR measurement of functional polymer capacitors
    • Suitable for resonance testing of piezoelectric elements
    • Accurate DCR and L-Q testing of inductors, coils, and transformers
  • 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
  • Key Features:

    • PXI/cPCI JTAG controller for seamless integration into PXI-based test systems
    • Supports up to 4 JTAG chains on a Unit Under Test (UUT)
    • Configurable I/O pin-out for maximum flexibility across projects
    • Fully compatible with other XJLink2 controllers
    • TCK clock speeds up to 166 MHz
    • Programmable voltage domains from 1.1 V to 3.3 V in 0.1 V steps
    • Built-in voltage meter and frequency counter on all I/O pins
    • Adjustable signal termination with auto-skew control
    • Includes LabVIEW™ Virtual Instruments (VIs) for easy integration
    • Self-contained licence for use on multiple PXI racks or servers

     

  • Key Features:

    • Portable USB-C to JTAG controller with 40 I/O pins
    • Supports up to 8 separate JTAG TAP chains with independent frequencies
    • Compact and rugged aluminium casing for lab, production, or field use
    • Configurable JTAG pin-out to suit any Unit Under Test (UUT)
    • Electrical protection against –30 V to +30 V input
    • Four programmable I/O voltages (1.2 V to 3.3 V, in 0.1 V steps)
    • Built-in voltmeter and frequency counter on all pins
    • High-speed operation with TCK up to 166 MHz
    • USB bus-powered with locking Type-C connector
    • Self-contained licence for maximum flexibility

     

  • Key Features:

    • Compact USB JTAG controller for flexible board testing
    • Supports up to 4 JTAG chains per UUT
    • Lightweight, portable, and ideal for lab, production, or field use
    • Configurable pin-out for easy adaptation to any PCB design
    • High-speed TCK clock up to 166 MHz
    • Two programmable voltages from 1.1 V to 3.3 V in 0.1 V steps
    • Built-in voltmeter and frequency counter on all I/O pins
    • +5 V tolerant signals with auto-skew control
    • USB bus-powered, no external PSU needed
    • Self-contained licence, usable on multiple PCs

     

  • Key Features

    • Approved by Keysight Technologies for i3070 ICT integration
    • Fully compatible with all XJTAG projects
    • High-speed programming with TCK up to 166 MHz
    • Supports up to 4 JTAG chain connections to UUT
    • Configurable interface voltages (1.1 V to 3.3 V)
    • Adjustable signal slew rate and drive strength
    • Automatic signal skew control for maximum reliability
    • Frequency counter on all I/O pins (up to 200 MHz input)
    • Fits into one i3070 utility card slot (multiple units supported)
    • Enables test + programming in a single stage to boost throughput
    • Supports additional protocols including I²C, SPI, and vendor-specific interfaces
    • Flexible software licensing options for stand-alone or network operation

     

  • Key Features:

    • 4-port JTAG tester for simultaneous testing of up to 4 boards
    • High-speed USB 2.0 interface with robust performance
    • Supports up to 4 TAP chains per UUT
    • Configurable JTAG pin-out for simplified connectivity
    • Parallel or independent testing on each port
    • Programmable voltages from 1.1 V to 3.3 V in 0.1 V steps
    • Built-in voltmeter and frequency counter on all I/O pins
    • Automatic signal skew control for reliable operation
    • Self-contained licence for use across multiple PCs
    • Ideal for production lines and PCB manufacturers

     

  • The EME Guard Plus is a lightweight and robust personal protection monitor designed to ensure the safety of workers operating near electromagnetic field (EMF) emitters such as antennas, radars, and base stations. With a frequency range of 1 MHz to 40 GHz, this device continuously monitors and records EMF exposure levels while providing immediate audio, visual, and vibrating alerts when exposure exceeds predefined safety thresholds. Customizable alarm settings and a triaxial isotropic probe ensure accurate and reliable measurements.

     


Showing 1–16 of 18 results