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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
  • HDA125 High-Speed Digital Analyzer brings advanced logic analysis capabilities to your existing Teledyne LeCroy oscilloscopes. Compact, accurate, and versatile.

    Key Features:

    • 12.5 GS/s sample rate for high-speed digital capture
    • Supports up to 18 digital channels
    • Compatible with WaveMaster/SDA 8 Zi-B and LabMaster 10Zi-A oscilloscopes
    • QuickLink Probe System for fast, low-impact signal access
    • 3 GHz bandwidth and 80 ps timing accuracy
    • Command bus decoding for in-depth DDR/LPDDR memory debugging
    • Minimal signal loading with 110 kΩ, 0.12 pF tip impedance
    • Cost-effective QuickLink solder-in tips simplify multi-point testing
    • Ideal for mixed-signal, high-speed, and memory interface debugging
  • 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
  • T3DMM Series – Digital Multimeters deliver precision, speed, and display-rich features, ideal for professional labs, R&D, and production testing.

    Key Features:

    • Available in 4.5-digit (60,000 counts) and 6.5-digit (2,200,000 counts) models
    • True RMS AC voltage and current measurement
    • 4.3” TFT-LCD with 480×272 resolution
    • Multiple display modes: Number, Histogram, Trend Chart, Bar Meter, Statistics
    • Advanced math functions: Max, Min, Avg, Std Dev, dBm/dB, Relative, Pass/Fail
    • Supports remote operation via USB, LAN, SCPI commands
    • Built-in cold terminal thermocouple compensation
    • Wide range of measurements: Voltage, Current, Resistance, Capacitance, Frequency, Period, Temperature
    • Internal 1GB storage and USB host for external data access
    • User-friendly softkey interface and built-in help system
  • The Teledyne T3SA Series Spectrum Analyzers deliver high-performance signal analysis from 9 kHz to 3.2 GHz in a compact, easy-to-use design. Ideal for R&D, education, production, and pre-compliance testing, it features a large touchscreen and advanced digital IF technology.

    Key Features:

    • All Digital IF technology10.1”
    • WVGA (1024 x 600) touchscreen display
    • Frequency range from 9 kHz to 3.2 GHz
    • -161 dBm/Hz displayed average noise level (typical)
    • -98 dBc/Hz @ 10 kHz offset phase noise (typical)
    • Total amplitude accuracy < 0.7 dB
    • 1 Hz minimum resolution bandwidth (RBW)
    • Built-in preamplifier for improved sensitivity

    Typical Applications

    ● Research Laboratory
    ● Development Laboratory
    ● Repair and Maintenance
    ● Calibration Laboratory
    ● Automatic Production Test
    ● General bench-top use

  • The T3VNA Series from Teledyne Test Tools is a powerful, compact solution for engineers who demand precision and versatility in RF and spectrum analysis.

    Key Features:

    • Vector Network Analysis from 10 MHz to 3.2 GHz
    • Spectrum Analysis from 9 kHz to 3.2 GHz
    • All-digital IF technology for clean signal processing
    • Built-in tracking generator (up to 1.5 GHz)
    • Advanced features like Distance-to-Fault, OBW, ACPR
    • -156 dBm/Hz typical displayed average noise level
    • -98 dBc/Hz @ 10 kHz offset phase noise
    • 1 Hz minimum RBW for high-resolution measurements
    • 10.1″ WVGA display for smooth operation
    • High accuracy with <1.2 dB amplitude error
  • 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

     

  • The Hioki PW8001 High-Precision Power Analyzer sets the benchmark for precision power analysis, offering unmatched accuracy and flexibility for evaluating motor and inverter efficiency. Supporting DC and frequencies from 0.1 Hz to 5 MHz, it features an 8-channel measurement capacity, enabling simultaneous analysis of complex systems like EV drivetrains, renewable energy sources, and high-efficiency SiC/GaN semiconductors.

    Equipped with advanced features such as automatic phase correction, intuitive Power Spectrum Analysis (PSA), and CAN/CAN FD integration, the PW8001 excels in capturing high-speed switching power fluctuations and harmonics. Its compatibility with high-voltage systems (up to 1500 V) and seamless connectivity with industry-standard software like LabVIEW and MATLAB ensure it meets diverse testing needs. With its robust design, real-time waveform visualization, and comprehensive motor analysis functions, the PW8001 is the ultimate tool for power conversion efficiency analysis.

     

    • S-parameters DC to 40 GHz, single-ended and mixed-mode
    • Impedance Profile with <1 mm resolution, differential and common-mode
    • Internal, automatic OSLT calibration
    • USB-connected, small, lightweight
    • Flexible display of the measurements
    • Remove effects from fixtures, connectors and cables
    • Emulate eye diagrams with CTLE, DFE and FFE equalization
    • Advanced jitter analysis

     

    • Available in 4.5-digit (60,000 count) and 6.5-digit (2,200,000 count) resolutions.
    • Wide measurement range:
      • DC Voltage: Up to 1000V
      • AC Voltage: Up to 750V (True RMS)
      • Current: 10A (AC/DC)
      • Resistance: 100MΩ (2-wire/4-wire)
      • Capacitance: 2nF – 100mF
      • Temperature measurements with TC and RTD sensor support.
    • High-speed measurements:
      • T3DMM4-5: 150 readings per second
      • T3DMM6-5: 10,000 readings per second
    • Advanced mathematical functions such as Max, Min, Standard Deviation, dBm/dB, Relative Measurement, Pass/Fail Analysis, and Histograms.
    • Connectivity: USB Device, USB Host, and LAN for remote operation via SCPI commands.
    • Data Storage: 1GB NAND flash memory for saving configuration files and test data.
    • Built-in cold junction compensation for accurate temperature measurements.
    • File management system supporting U-disc and local storage for convenient data access.
    • Comprehensive user interface with a dual-display system for easy navigation.
    • Automatic measurement functions, including statistical analysis, gating, and reference functions.

     

    • The S type Channel card provides economical, high-performance power measurement with a basic 0.1% accuracy and enough bandwidth to handle waveforms up to 1.25 MHz.
    • The A-type ultra-precision Channel card offers a 2-year accuracy rating of 0.03% of reading and bandwidth up to 1.25 MHz.
    • The W type Wideband Channel card performs precision power measurements on the toughest real-world waveforms, with sampling speed fast enough to tame waveforms up to 5Mhz

     

  • • High Power Accuracy of 0.045% For All Channels
    • Improved Voltage and Current Self-Heating Adders
    • Faster Sampling Rates & Bandwidth Performance
    • Greater Harmonic Frequencies