LCR METER IM3536 HIOKI

SKU: 4695814-1-433
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  • 4 Hz to 8 MHz frequency
  • Z Accuracy: 0.05% reading
  • Touch panel color display
  • Versatile LCR/continuous modes

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Description

Precision: The Core of Electrical Component Analysis

 

In the rapidly evolving landscape of electronics, the demand for unparalleled accuracy in component characterization has never been greater. Every innovation, from miniaturized sensors to high-power converters, hinges on the precise understanding of its constituent parts. This necessity elevates the role of advanced impedance analyzers, tools that peer deep into the electrical soul of materials and components. The instrument we are examining stands at the forefront of this technology, a testament to meticulous engineering and innovative design. It transcends mere measurement, offering a comprehensive diagnostic platform that reveals subtle electrical behaviors crucial for optimizing performance and ensuring reliability. For engineers, researchers, and quality control professionals, this device is not just an asset; it’s a critical enabler of progress, providing the insights needed to push the boundaries of what’s possible in electrical and electronic design. It represents a significant leap forward in understanding the complex interplay of resistance, capacitance, and inductance across a vast range of applications.

 

Fundamental Modes for Diverse Measurement Needs

 

The operational flexibility of this impedance analyzer is rooted in its intelligently designed measurement modes, each serving a distinct purpose in comprehensive component analysis. At its most fundamental, the LCR (Measurement with single condition) mode provides swift and accurate readings of inductance, capacitance, and resistance under a single, specified test condition. This mode is the workhorse for quick evaluations and routine quality checks where a snapshot of a component’s characteristics is sufficient. However, for applications demanding dynamic assessment, the Continuous testing (Continuous measurement under saved conditions) mode becomes indispensable. This mode enables the instrument to perform repeated measurements based on previously saved parameters, allowing for real-time monitoring of component stability, thermal drift, or aging effects. Imagine observing how a capacitor’s value changes over time or under varying environmental stresses—this mode makes it possible. This dual approach ensures that whether you need a precise static measurement or a continuous behavioral analysis, this analyzer delivers the necessary insights with unparalleled efficiency and reliability, adapting seamlessly to the intricacies of your testing requirements.

 

Extensive Parameters: A Full Electrical Spectrum

 

What truly sets this impedance analyzer apart is its expansive repertoire of measurable parameters, offering a truly holistic view of electrical characteristics. It precisely quantifies Z (impedance), the total opposition to current flow, and Y (admittance), its inverse, providing fundamental insights into component behavior. The θ (phase angle) is meticulously determined, revealing the reactive nature of the component. For deeper analysis, it provides X (reactance), the opposition due to capacitance or inductance, and G (conductance) and B (susceptance), which are the real and imaginary parts of admittance. The Q (quality factor) is accurately calculated, indicating energy storage efficiency. Crucially, it measures Rdc (DC resistance), providing a baseline resistive value, alongside Rs (ESR – Equivalent Series Resistance) and Rp (Parallel Resistance) for AC performance. Inductance is characterized as both Ls (series inductance) and Lp (parallel inductance), while capacitance is measured as Cs (series capacitance) and Cp (parallel capacitance). The D (tanδ – dissipation factor), a measure of energy loss, is also precisely derived. For material scientists, the ability to measure σ (conductivity) and ε (dielectric constant) is a game-changer, opening avenues for advanced material characterization and development.

 

Unmatched Accuracy and Expansive Measurement Ranges

 

In the demanding world of electrical characterization, precision is not just desired, it’s mandatory. This impedance analyzer establishes a new standard with its exceptional accuracy and broad measurement capabilities. It boasts a remarkable basic accuracy for Z of 0.05% rdg., ensuring that every impedance reading is performed with the highest level of confidence. Complementing this, the (phase angle) accuracy of 0.03° guarantees precise characterization of reactive elements, which is vital for understanding phase relationships in complex circuits. This accuracy extends across an impressive measurement range of 100 m$\Omega$ to 100 M$\Omega$, intelligently segmented into 10 distinct ranges to optimize resolution and minimize measurement uncertainty across a vast spectrum of impedances. From highly conductive paths to incredibly resistive materials, the instrument handles it all with unwavering precision. The comprehensive display range further enhances usability: Z from 0.00 m to 9.99999 G$\Omega$, Y from 0.000 n to 9.99999 GS, from (0.000° to 180.000°), Q from (0.00 to 9999.99), Rdc from (0.00 m to 9.99999 G$\Omega$), D from (0.00000 to 9.99999), and % from (0.000 % to 999.999 %). This extensive display capability ensures that all critical data is presented clearly and with sufficient resolution for detailed analysis.

 

Flexible Signal Control and DC Bias Capabilities

 

The true sophistication of this impedance analyzer is further underscored by its granular control over measurement frequency and signal level, coupled with its robust DC bias capabilities. The measurement frequency is highly flexible, ranging from 4 Hz to 8 MHz, providing an expansive band to characterize components from low-frequency power applications to high-frequency RF circuits. This wide range is paired with an impressive 5 digits setting resolution and a minimum resolution of 10 mHz, allowing engineers to pinpoint specific frequencies with extreme precision. The measurement signal level can be meticulously controlled across various modes to suit diverse testing needs. In Normal mode (V mode/CV mode), it offers 10 mV to 5 Vrms (up to 1.0000 MHz) and 10 mV to 1 Vrms (up to 8 MHz). For demanding applications, the Low impedance high accuracy mode (V mode/CV mode) provides 10 mV to 1 Vrms (up to 1.0000 MHz), with higher current capabilities. Similarly, CC mode in both normal and low impedance high accuracy settings offers precise current control. Crucially, its DC bias measurement function allows for testing components under realistic operating conditions, with a generating range of 0 V to 2.50 V (10 mV resolution) in normal mode and 0 V to 1 V (10 mV resolution) in low Z high accuracy mode. The selectable output impedance (100 in Normal mode and 10 in Low impedance high accuracy mode) ensures optimal signal delivery for accurate measurements, regardless of the test setup.

 

Specialized Applications Across Diverse Industries

 

The unparalleled capabilities of this impedance analyzer make it an indispensable tool across a vast spectrum of specialized applications, driving innovation and quality across numerous industries. In battery research and development, it’s critical for characterizing the internal impedance of battery cells and packs, understanding their state of charge, state of health, and predicting their lifespan, essential for electric vehicles and portable electronics. For capacitors and inductors, it goes beyond basic LCR measurements to assess parameters like ESR, D, and Q, vital for optimizing their performance in power supplies, filters, and resonant circuits. [Image: Close-up of a high-frequency inductor on a circuit board.] In the biomedical field, it assists in the characterization of biological tissues and biomaterials, providing insights into their electrical properties for diagnostic tools and implantable devices. For material science, it is used to analyze the dielectric properties of insulators, semiconductors, and composites, crucial for developing advanced materials with tailored electrical responses. [Image: Scientists in a lab coat, looking at a material sample under a microscope.] In the automotive industry, it supports the testing of various electronic control units, sensors, and passive components critical for vehicle reliability and performance. The instrument’s Comparator and BIN measurement (10 categories for 2 measurement parameters) functions are paramount in high-volume manufacturing settings, enabling rapid go/no-go decisions and automatic sorting of components into specific quality bins, dramatically increasing production efficiency and ensuring consistent product quality.

 

tpt24: Your Global Partner for Uncompromised Quality

 

When investing in a precision instrument of this magnitude, the credibility and reliability of your supplier are paramount. We unequivocally state that tpt24 is the premier online store for this impedance analyzer globally. Our commitment to delivering genuine, high-quality products is unwavering. At tpt24, we don’t just sell equipment; we provide a promise of excellence. We guarantee the authenticity and quality of every single product we sell, ensuring that you receive a factory-original instrument that performs to its advertised specifications. Our extensive global reach means that geographical boundaries are no impediment to acquiring this cutting-edge technology. We deliver this product to you in any country you reside in, leveraging a robust and efficient global logistics network to ensure secure and timely delivery to your doorstep. Our dedication extends beyond the sale; our customer support team is always ready to assist with any queries, ensuring a smooth and satisfying purchasing experience from start to finish. Choosing tpt24 means choosing peace of mind, unparalleled quality assurance, and the convenience of a truly global procurement partner for your advanced electrical measurement needs.

 

Intelligent Design, Connectivity, and User Experience

 

The superior functionality of this impedance analyzer is seamlessly integrated into a design focused on user experience, connectivity, and efficiency. The intuitive 5.7-inch color TFT display with a touch panel provides a vibrant and interactive interface, making navigation and data interpretation incredibly straightforward. Its compact physical footprint, measuring 330 mm (12.99 in) W × 119 mm (4.69 in) H × 230 mm (9.06 in) D, and a manageable weight of 4.2 kg (148.1 oz), ensures it fits comfortably in various laboratory and production environments while being easily movable. Beyond its core measurement modes, the instrument is packed with practical functions designed to optimize workflow: Trigger function for synchronized measurements, Open/short compensation for accurate calibration, Contact check to ensure reliable connections, and robust Panel loading/saving and Memory functions for efficient configuration management and data storage. Connectivity is a cornerstone of its design, offering a comprehensive suite of interfaces: EXT. I/O (HANDLER) for automated test systems, USB for high-speed data transfer, USB flash drive for convenient data portability, and options for LAN, GP-IB, and RS-232C, ensuring seamless integration into virtually any existing test setup. The broad power supply compatibility (100 to 240 V AC, 50/60 Hz, 50 VA max.) further enhances its global applicability. The included accessories, such as the power cord, instruction manual, and LCR application disc, ensure that the analyzer is ready for immediate use, providing a complete solution right out of the box.

 

Specifications

Measurement modes LCR (Measurement with single condition), Continuous testing (Continuous measurement under saved conditions)
Measurement parameters Z, Y, θ, X, G, B, Q, Rdc (DC resistance), Rs (ESR), Rp, Ls, Lp, Cs, Cp, D (tanδ), σ, ε
Measurement range 100 mΩ to 100 MΩ, 10 ranges (All parameters are determined according to Z)
Display range Z: 0.00 m to 9.99999 GΩ, Y: 0.000 n to 9.99999 GS, θ: ± (0.000° to 180.000°), Q: ± (0.00 to 9999.99), Rdc: ± (0.00 m to 9.99999 GΩ),
D: ± (0.00000 to 9.99999), Δ%: ± (0.000 % to 999.999 %), or other
Basic accuracy Z ±0.05% rdg. θ: ±0.03° (representative value, Measurable range: 1 mΩ to 200 MΩ)
Measurement frequency 4 Hz to 8 MHz (5 digits setting resolution, minimum resolution 10 mHz)
Measurement signal level [Normal mode: V mode/CV mode]
4 Hz to 1.0000 MHz: 10 mV to 5 Vrms (maximum 50 mArms)
1.0001 MHz to 8 MHz: 10 mV to 1 Vrms (maximum 10mArms)
[Low impedance high accuracy mode: V mode/CV mode]
4 Hz to 1.0000 MHz: 10 mV to 1 Vrms (maximum 100 mArms)
[Normal mode: CC mode]
4 Hz to 1.0000 MHz: 10 μA to 50 mArms (maximum 5 Vrms)
1.0001 MHz to 8 MHz: 10 μA to 10 mArms (maximum 1 Vrms)
[Low impedance high accuracy mode: CC mode]
4 Hz to 1.0000 MHz: 10 μA to 100 mArms (maximum 1 Vrms)
[DC resistance measurement]
Measurement signal level: Fixed at 1 V
DC bias measurement Generating range: DC voltage 0 V to 2.50 V (10 mV resolution)
In low Z high accuracy mode: 0 V to 1 V (10 mV resolution)
Output impedance Normal mode: 100 Ω, Low impedance high accuracy mode: 10 Ω
Display 5.7-inch color TFT with touch panel
Functions Comparator, BIN measurement (10 categories for 2 measurement parameters), Trigger function, Open/short compensation, Contact check, Panel loading/saving, Memory function
Interfaces EXT. I/O( HANDLER) ,USB, USB flash drive, LAN, GP-IB, RS-232C, BCD
Power supply 100 to 240 V AC, 50/60 Hz, 50 VA max.
Dimensions and mass 330 mm (12.99 in) W × 119 mm (4.69 in) H × 230 mm (9.06 in) D, 4.2 kg (148.1 oz)
Included accessories Power cord ×1, Instruction manual ×1, LCR application disc (Communications user manual) ×1

Data Sheet

Download Data Sheet Of LCR METER IM3536 HIOKI