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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
  • Teledyne Test Tools LCR Meters offer precision testing in a compact form, perfect for R&D labs and production lines.

    Key Features:

    • 3.5” high-resolution color LCD display
    • Test frequency up to 300 kHz with continuous output
    • 0.05% basic measurement accuracy
    • Spot or full frequency range with OPEN/SHORT correction
    • Automatic Level Control (ALC) for consistent voltage on components like MLCCs
    • Measure up to 4 parameters simultaneously
    • DCR measurement & built-in ±2.5 V DC bias
    • PASS/FAIL indicator and 10-bin sorting function
    • List measurement for automated test sweeps (up to 10 points)
    • Interfaces: RS-232C, USB, handler, and USB storage
    • Compact 2U, 1/2 rack size for automated test setups
  • 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
  • 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.

     

  • 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.

     

  • Rapid 6.4ms Super Megohm and Low Current Testing

    Key Features

    • 300 times better noise resistance
    • Max. 1000 V output: SM7110
    • Max. 2 × 10^19 Ω display
    • Min. 0.1 fA resolution
    • Built-in EXT I/O, RS-232C, GP-IB and USB
    • Flexible, Multipurpose Design, High Resistance
    • Meter/Electrometer/Picoammeter/IR Meter
    • Measure resistance of materials by combining with optional electrode

     

    • 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

     

    • 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