LCR METER IM3536
Document overview
- Manufacturer or author: HIOKI
- PDF pages: 16
Technical content
Component measuring instruments Introducing an LCR meter that brings exceptional specifications and cost per - formance to a wide range of applications, from R&D to production lines 1 10 100 1000 0.00% 0.01% 0.02% 0.03% 0.04% DC, 4 Hz to 8 MHz Measurement frequency The new standard Test fixtures and probes sold separately. Photograph depicts IM3536 used in combination with the SMD Test Fixture 9677. One-eighth the precision variability and five times the measurement speed of legacy models means dramatically improved productivity. High speed Stability Repeatability and measurement time (Comparison of IM3536 and 3532-50) Sample: Resistor Measurement frequency: 1 MHz 3532-50 IM3536 Measurement time [ms] One-eighth the variability Faster performance Repatability (Z, 3CV)
Raising the Bar for Basic Performance High speed 1 ms (fastest time) High accuracy ±0.05% rdg. Guaranteed accuracy range from 1 mΩ The IM3536 delivers a guaranteed accuracy range that starts at 1 mΩ. Furthermore, the frequency band has been expanded to 8 MHz, broadening the array of measurement targets with which it can be used compared to legacy products. 1 10 100 1k 10k 100k 1M 10M 100µ 10m 100m 100 10k 100k 10M 100M Z measurement range Frequency [ Hz ] Z [ Ω ] : Hioki legacy model (3532-50) Expanded range : IM3536 For more information about L and C measurable ranges, see page 14.
Legacy product (3532-50) IM3536: With low-Z high-accuracy mode on Low-impedance measurement with unmatched repeatability The IM3536 delivers repeatability that is an order of magnitude better than that of previous products. This level of perfor - mance makes the instrument ideal for use in applications such as electrolytic capacitor low-ESR measurement and power supply coil impedance testing, the latter of which demands excellent frequency characteristics. Graphs illustrate the results of measuring a resistance of 1 mΩ 200 times under the following conditions:
- Frequency: 1 kHz
- Measurement speed: FAST
- Measurement range: 100 mΩ Z repeatability (%) Measurement count Measurement count Z repeatability (%)
Ideal for use in R&D work requiring a wide range of measurement conditions and for evaluation of devices under conditions of actual use The IM3536 enables measurement conditions to be varied over a wide range, for example to analyze a coil’s resonance point while varying the frequency or to perform measurement while changing the measurement signal during evaluation of a sample that exhibits signal dependency. Graph created using a spreadsheet USB connection The IM3536 ships standard with application software that can save measurement data as an Excel file while sweeping through a range of frequencies pre-configured on a computer. From measurement to analysis Applications in development evaluation and research Variable frequency DC, 4 Hz to 8 MHz Variable voltage 10 mV to 5 V (V mode/CV mode) Variable current 10 μA to 100 mA (CC mode) Example of measurement while varying the frequency from 1 MHz to 8 MHz For more information, see page 5. Frequency (Hz) Z ( Ω ) θ ( º )
DC bias function: Measure under conditions simulating actual use or in accor - dance with industry standards
- Frequency characteristics (measurement while varying the frequency)
- Voltage characteristics (measurement while varying the voltage)
- Current characteristics (measurement while varying the current)
- Time interval measurement (measurement at a specified time interval) Capture measured value when the RETURN key is pressed (one-off measurement) Evaluate samples that exhibit signal dependence using free application software The bundled application allows you to save measurement data from the LCR meter as a Microsoft Excel or text file (CSV format) using the instrument’s USB, LAN, GP-IB, or RS-232C interface. Sweep points are generated automatically once you set the start value, end value, and number of intermediate data points. Simple, automatic configuration of sweep points Data saved in CSV format Standard accessory Calculate conductivity and the dielectric constant The conditions used to calculate conductivity and the dielectric constant can be set easily using the instrument’s touch screen. Enter the following parameters: Conductor length (LENGTH) Conductor cross-sectional area (AREA) The instrument’s touch keypad makes it easy to enter numbers. A DC voltage can be superposed onto the measurement signal while measuring a capacitor. DC BIAS VOLTAGE UNIT 9268-10 DC BIAS CURRENT UNIT 9269-10 Measurement frequency range: 40 Hz to 8 MHz Maximum applied voltage: ±40 V DCRequires a separate external DC bias power supply. Measurement frequency range: 40 Hz to 2 MHz Maximum applied current: 2 A DC Internal DC bias (capacitor only) External DC bias (with support for L or C measurement, depending on the unit) The generated voltage can be varied from 0 V to 2.50 V DC (10 mV resolution). (Low-Z high-accuracy mode: 0 V to 1 V) * An internal 300μH inductance is connected in parallel to the DUT.
Perform two jobs with one instrument to save space and speed up the process of building a system Tasks that used to require two instruments… DC resistance measurement LCR measurement …now can be completed with one. L, Q measurement DCR measurement Continuous measurement function By progressively loading a series of measurement conditions saved using the panel save func- tion and performing measurements under multiple sets of different conditions, you can now test one component under multiple conditions during a single test session. Simplifying the process of building production lines Increase convenience and efficiency Suppose you wish to test power supply inductance L-Q at 1 kHz plus DC resistance (DCR). The IM3536 steps up by delivering high-speed, continuous measurement of different conditions with a single instrument. DC resistance measurement LCR measurement
Simplifying the process of building production lines Panel save and load functions Save and load measurement conditions and compensation values. Display saved panels as a list and load them quickly Easy-to-view list display Filename Measurement parameter name Load or save using the touch screen keys Ensure reliable application of settings during setup changes Target A: Measurement conditions and judg- ment standards Target B: Measurement conditions and judgment standards Residual charge protection function Improved protective functionality to reduce maintenance downtime Analyze the data you need on a computer quickly and easily Save 32000 measurement results, copy them to a USB flash drive, and load them onto a computer. You can then open the measurement data using a spreadsheet to analyze variations and manage test data. Select [External trigger] as the trigger setting and then control instrument operations such as measurement and saving of data from an external device such as a foot switch via the EXT. I/O terminal’s TRIG signal. TRIG ISO.COM Even if both hands are full Memory function and USB flash drive support The IM3536 features an enhanced residual charge protection func- tion that is designed to protect the instrument’s internal circuitry from a capacitor discharge voltage in the event a charged capaci- tor is inadvertently connected to a measurement terminal. Relationship between the capacitance from which LCR meters can be protected and residual voltage values
- Measurement parameters: Ls, Q, Rdc
- Measurement frequency: 1 kHz
- Constant current: 1 mA
- Measurement parameters: Z, θ
- Measurement frequency: 1.5 kHz
- Constant current: 0.5 mA 0.1 1 10 100 1000 200 400 600 800 1000 1200 Capacitance (μF) Residual voltage (V) IM3536 Previous product Copy the saved data to a USB flash drive. Measure and save multiple test results Number of tests: n Measure the test target. Save the results to the instru- ment’s internal memory. Load the data onto a computer. Analysis using a spreadsheet
Cable length: 4 m Automated tester Measured values are compensated according to the refer - ence sample, ensuring compatibility of measured values from multiple devices on production lines and when swap- ping out devices, for example when a unit needs to be cali- brated. Up to five sets of compensation condi- tions can be saved. Compensate for anticipated errors Cable length compensation Load compensation Select from cable length settings of 0 m, 1 m, 2 m, and 4 m, guaranteeing accuracy even when measurement cables have been extended. Swap Functionality supporting more accurate measurement Delivering reliability for production-line testing
The IM3536’s waveform averaging function lets you set the number of measured waveforms for each frequency band deter - mined by the measurement speed setting (FAST, MED, SLOW, SLOW2). Improve measurement precision with the waveform averaging function Normal (FAST, MED, SLOW, SLOW2) number of waveforms Number of waveforms → Many (increased measurement precision) Number of waveforms → Few (higher measurement speed) Functionality supporting more accurate measurement When using low-Z high-accuracy mode, the output resistance changes to 10 Ω, allowing more current to flow to the sample being mea- sured so that high-precision measurement is guaranteed. Low-Z high-accuracy mode for increasing the maximum applied current Low-Z high-accuracy mode can be used with the 100 mΩ, 1 Ω, and 10 Ω ranges. This mode is especially effective when performing low-inductance L measurement of power supplies and ESR measurement of aluminum electrolytic capacitors. Measurement conditions Frequency: 100 kHz Measurement voltage: 1 V Measurement range: 100 mΩ DUT: 10 mΩ With low-Z high-accuracy mode ON With low-Z high-accuracy mode OFF 1 10 100 1000 Measurement time (ms) 0.0% 0.1% 0.2% 0.3% 0.4% 0.5% 0.6% 0.7% 0.8% 0.9% Z repeatability (%) ON OFF 0.0 0.05 0.10 0.15 0.20 0.25 0.30 0.35 0.40 0.45 θ repeatability ( ° ) 1 10 100 1000 Measurement time (ms) OFF ON Contact check function Detect faulty contact with the sample during four-terminal measurement. The contact check function measures the contact resistance between L POT and LCUR and between H POT and H CUR and displays an error if the readings are greater than or equal to a preset threshold. HCUR terminal: Current generation terminal HPOT terminal: HI voltage detection terminal LPOT terminal: LO voltage detection terminal LCUR terminal: Current detection terminal Contact resistance Approx. 1,000 Ω Approx. 500 Ω Approx. 100 Ω Approx. 50 Ω Approx. 20 Ω Set threshold values Faulty contact HCUR HPOT LCUR LPOT DUT IM35364-terminal contact OK Detect contact errors during two-terminal measurement. The Hi-Z reject function outputs an error if the measurement result ex- ceeds a preset judgment standard. This capability enables the instrument to detect poor contact when performing measurement using a two-terminal fix- ture. Hi-Z reject function The judgment standard is calcu- lated based on the measurement range and judgment reference value (valid setting range: 0% to 30,000%). The instrument’s touch keypad makes it easy to enter judg- ment reference values. Faulty contact 2-terminal contact OK
Access an extensive range of interfaces in all model variants LANEXT. I/O, BCD USB GP-IB RS-232C EXT. I/O EXT. I/O allows you to output the measurement complete signal and judgment results signal and to control the instrument by inputting signals such as a measurement trigger signal. All signal lines are isolated from the instrument’s measurement and control circuitry for maximum noise resistance. *1. There is an apporoximate error of 100 μs in the delay time entered for Judgement Result ↔ EOM for the setting value. t1 is the reference value for when the setting value is 0.0000 s. *2. t2 is the reference value for when trigger input for during measurement is disabled. *3. Additional time is required when loading panel numbers using the panel load function. *4. Reference value for Measurement frequency: 1 kHz, Measurement speed: FAST, Range: HOLD TRIG (Start of measurement signal) INDEX (Analog end of measurement signal) EOM (End of measurement signal) JUDGE RESET : ON JUDGE RESET : OFF CALIB (Acquires the offset value) LD_VALID (Panel load execution) LD0 to LD6 (Panel number) PARA -x-x, BINx (Comparator and BIN result output)* ERR (Error output) *: PARAx-HI, PARAx-IN, PARAx-LO, AND, BINx, OUT_OF_BINS t7 t8 t3 t4 t1 t2 Reset Last judgment result t1: From Comparator, BIN Judgement Result to EOM (LO): Setting value for delay time * 1 (Settable range: 0.0000 s to 0.9999 s) ; 40 μ s t2: From EOM width (LO) to TRIG (LO): Minimum time from end of measurement to next trigger * 2 ; 400 μs t3: From TRIG (LO) to INDEX (HI): Time from trigger to circuit response * 3 ; 400 μs t4: INDEX width (HI): Analog measurement time (=Minimum chuck time), switching chuck with INDEX (LO) is possible *4 ; 1 ms t5: EOM width (HI): Measurement time * 4 ; 1.5 ms t6: From TRIG width (LO) to LD-V ALID (HI), CALIB (HI): Time to panel load execution and DC adjustment request signal detection: at least t3 t7: Trigger pulse width (LO time) ; At least 100 μ s t8: Trigger off (HI time) ; At least 100 μ s Last judgment result Judgment result Judgment result Example of EXT I/O timing (LCR mode)
Access an extensive range of interfaces in all model variants ■ Electrical specifications Input signals Input type Optocoupler-isolated, non-voltage contact inputs (current sink, active-low) Input asserted (on) voltage 0.9 V or less Input de-asserted (off) voltage OPEN or 5 V to 24 V Input asserted (on) current 3 mA/ch Maximum applied voltage 30 V Output signals Output type Isolated NPN open-collector outputs (current sink, active-low) Maximum load voltage 30V Maximum output current 50 mA/ch Residual voltage 1 V (10 mA), 1.5 V (50 mA) Internally isolated power supply Output voltage 4.5 V to 5.0 V Maximum output current 100 mA External power input none ■ Connectors Connectors to use (unit side) Compliant connectors : 37-pin D- sub female connector with #4-40 inch screws : DC-37P-ULR (solder type) and DCSP-JB37PR (pressure weld type) For information on where to obtain connectors, consult your nearest HIOKI distributor. ■ EXT. I/O signal list
- Input signals TRIG : External trigger LD0 to LD6 : Select panel number LD_VA LI D : Execute panel load : During BCD output, toggle between high-order and low-order digits : During BCD output, toggle between the No. 1 and No. 3 parameters CALIB : DC adjustment request
- Output signals (common signal line) PAR Ax-HI, PAR Ax-IN, PAR Ax-LO (x=1,3), AND : Comparator judgment result output BIN1 to BIN10, OUT_OF_BINS : BIN judgment result output D1-0 to D1-3 D2-0 to D2-3 D3-0 to D3-3 D4-0 to D4-3 : BCD output signal
- Output signals EOM : End of measurement INDEX : End of capture ERR : Measurement error output ISO_5V : Isolated 5V power output ISO_COM : Isolated common signal ground C1 D4 D3 D2 D1 HI (high-order) No. 6 digit data No. 5 digit data No. 4 digit data No. 3 digit data LO (low-order) No. 2 digit data No. 1 digit data Polarity ERR The BCD high-order digit and low-order digit (polarity and ERR informa - tion) can be switched with the C1 signal. -89.475 D4-n D3-n D2-n D1-n D4-n D3-n C1=HI D2-n C1=LO BCD LCR mode output signals operate in two modes: judgment mode and BCD mode. In BCD mode, measured values for the No. 1 parameter and the No. 3 parameter are output using the BCD signals. *LCR mode only Connector D-sub 9-pin connector Flow control Hardware/Software Transmission speed 9600 bps, 19200 bps, 38400 bps, 57600 bps RS-232C Connector 24-pin Centronics type connector Standard IEEE-488.1 1987 Reference standard IEEE-488.2 1987 Terminator LF, CR+LF GP-IB Connector RJ-45 connector Transmission method 10Base-T/100Base-T automatic detection Protocol TCP/IP LAN Connector USB Type B receptacle USB Interfaces Control the instrument with communication commands from a computer via the USB, LAN, GP-IB, or RS-232C interfaces. ■ IM3536 connector signal assignment (LCR mode operation) Signal assignment is different during continuous measurement mode. Signal logic is 0 V to 0.9 V for LO level and 5 V to 24 V for HI level.
Measurement parameters and measurement conditions Speed and accuracy Measurement parameters Z Y θ X G B Q Rdc Impedance Admittance Phase angle Reactance Conductance Susceptance Q-factor DC resistance Rs Rp Ls Lp Cs Cp D σ ε Equivalent series resistance (ESR) Equivalent parallel resistance Equivalent series inductance Equivalent parallel inductance Equivalent series capacitance Equivalent parallel capacitance Loss factor tan δ Conductivity Permittivity Display range Z Y θ X G B Q Rdc 0.00 m to 9.99999 GΩ 0.000 n to 9.99999 GS ±(0.00 m to 9.99999 GΩ) ±(0.000 n to 9.99999 GS) ±(0.000 n to 9.99999 GS) ±(0.00 to 9999.99) ±(0.00 m to 9.99999 GΩ) Rs Rp Ls Lp Cs Cp D σ ε ±(0.00 m to 9.99999 GΩ) ±(0.00 m to 9.99999 GΩ) ±(0.00000 μ to 9.99999 GH) ±(0.00000 μ to 9.99999 GH) ±(0.0000 p to 9.99999 GF) ±(0.0000 p to 9.99999 GF) ±(0.00000 to 9.99999) ±(0.00000 to 999.999 G) ±(0.00000 to 999.999 G) Measurable range 1 mΩ to 200 MΩ Output impedance Normal mode: 100 Ω, Low impedance high accuracy mode: 10 Ω Measurement frequency Range 4 Hz to 8 MHz Resolution 4.00 Hz to 999.99 Hz …………… 10 mHz steps 1.0000 kH z to 9.9999 kHz …… 100 mHz steps 10.000 kHz to 99.999 kHz …… 1 Hz steps 100.00 kHz to 999.99 kHz …… 10 Hz steps 1.0000 MHz to 8.0000 MHz …… 100 Hz steps Accuracy ±0.01% of setting or less Measurement signal level [V mode] [CV mode] Range [Normal mode] 4 Hz to 1.0000 MHz: 10 mV to 5 V (maximum 50 mA)
1.0001 MHz to 8 MHz: 10 mV to 1 V (maximum 10mA)
[Low impedance high accuracy mode ] 4 Hz to 1.0000 MHz: 10 mV to 1 V (maximum 100 mA) Resolution 10 mV to 1.000 V …… 1 mV steps Measurement signal level [CC mode] Range [Normal mode] 4 Hz to 1.0000 MHz: 10 μA to 50 mA (maximum 5 V)
1.0001 MHz to 8 MHz: 10 μA to 1 mA (maximum 1 V)
[Low impedance high accuracy mode ] 4 Hz to 1.0000 MHz: 10 μA to 100 mA (maximum 1 V) Resolution 10 μA steps Monitor function Monitor voltage range: 0.000 V to 5.000 V Monitor current range: 0.000 mA to 100.0 mA DC resistance measurement Measurement signal level: Fixed at 1 V DC bias measurement Generating range: DC voltage 0 V to 2.50 V (10mV resolution) In low Z high accuracy mode: 0 V to 1 V (10 mV resolution) Measurements Performs continuous measurement using measurement condi- tions that have been saved using the panel save function. Measurement is started by an external trigger (any of the three types described below) Maximum number of measurements 60 Measurements Bin measurement: 10 categories for 2 measurement parameters Judgment method: Set as absolute values, percentage, or deviation percentage Comparator measurement: Hi, IN, and Lo judgments for 2 parameters Judgment method: Set as absolute values, percentage, or de - viation percentage Display Zoom display function: Enlarged display of measured values Number of display digits setting: Allows you to set the number of display digits for measured values for each measurement parameter. (Valid setting range: 3 to 6 digits) Measurement modes LCR mode: Measurement using a single set of conditions. Continuous measurement mode: Continuous measurement using previously saved conditions Trigger function Uses a specific signal to time the start of measurement. [Trigger types] Internal trigger: Automatically generates a trigger signal internally to repeat measurement. External trigger: Allows you to control the instrument,s measurement operation by inputting a trigger signal from an external device (trigger sources: manual, communica - tions commands, EXT. I/O). [Trigger delay] Sets the delay time from trigger input to measurement. Setting range: 0.0000 s to 9.9999 s [Trigger synchronous output] Outputs the measurement signal after trigger input and ap- plies it to the sample during measurement only. Allows you to set a wait time until data is acquired. Setting range: 0.0000 s to 9.9999 s Compensation function [Open/short compensation] [Load compensation] Number of sets of compensation condi- tions: Up to 5 [Cable length compensation] Cable length settings: 0 m, 1 m, 2 m, 4 m [Correlation compensation ] Compensation of display values based on user-input compensation coefficient Contact check [4-terminal contact check] Performs a contact (disconnection) check between HCUR and HPOT and between LCUR and LPOT. [High-Z reject function] Detection of OPEN state during 2-terminal measurement. Measurement speed FAST/MED/SLOW/SLOW2 Averaging Valid setting range: 1 to 256 (in steps of 1) Basic accuracy Z: 0.05% rdg. θ: 0.03° (representative value) Guaranteed accuracy range 1 mΩ to 200 MΩ (impedance) Guaranteed accuracy period 1 year Warm-up time 60 minutes Terminal structure 4-terminal structure LCR mode Measurement modes Key lock function Lock operation of the instrument using the touch screen. Unlock by entering a passcode. Beep tone Enable or disable for judgment results and key operation. Display settings LCD display on/off Off: The display turns off 10 sec. after the touch panel is last touched. Display 5.7-inch color TFT with touch panel Memory function Measurement result items (maximum 32000 items) can be saved to the instrument. Memory can be read using communications commands or a USB flash drive. Panel save and load functions Measurement conditions : Up to 60 Compensation values : Up to 128 Interfaces EXT. I/O( HANDLER) ,USB, USB flash drive, LAN, GP-IB, RS-232C BCD output [Output from EXT. I/O connector] Generates BCD output for the No.1 and No.3 parameter measured values. *Input and output signals are set to BCD mode (selection with judgment output). Operating temperature and humidity 0°C to 40°C (32°F to 104°F), 80% RH, non-condensing Storage temperature and humidity -10°C to 50°C (14°F to 122°F), 80% RH, non-condensing Operating environment Indoors, Pollution Degree 2, altitude up to 2000 m (6562-ft.) Power supply and maximum rated power
100 V AC to 240 V AC (50/60 Hz), 50 VA
1.62 kV AC for 1 min. between power line and ground line Standards compliance EMC: EN 61326, EN 61000 Safety: EN 61010 Dimensions and Mass Approx. 330 W × 119 H × 230 D mm (12.99 W × 4.69 Accessories Power cord ×1, Instruction manual ×1, LCR application disc (Communications user manual) ×1 Recording and interface Display and sound Other Supplementary functionality Continuous measurement mode
Guaranteed accuracy measurement level range The range of measurement levels for which accuracy is guaranteed varies with the setting conditions. The guaranteed accuracy range during DC bias operation is 10 mΩ or greater. The accuracy for DC resistance (Rdc) measurement is guaranteed only when offset values are acquired. The guaranteed accuracy range varies with the sample’s impedance. Measurement accuracy Measurement accuracy is calculated based on the following equation: [C: Level coefficient ] V: Setting value (corresponds to when V mode) [V] Measurement level 1 V Coefficient (DC resistance measurement) 1 Measurement level 0.010 V to 0.999 V 1 V 1.001 V to 5 V Coefficient (AC measurement) 1+0.2/V 1 1+0.2/V Coefficient Measurement speed FAST MED SLOW SLOW2 DC resistance measurement 4 3 2 1 AC measurement 8 4 2 1 [D: Measurement speed coefficient ] [E: Measurement cable length coefficient ] Coefficient 0 m 1 m 2 m 4 m 1 1.5 2 3 Settable range for frequency 0 m: Up to 8 MHz, 1 m: 8 MHz, 2 m: Up to 2 MHz, 4 m: Up to 1MHz [F: DC bias coefficient ] DC bias coefficient OFF ON Coefficient 1 2 [G: Temperature coefficient ] Operating temperature t [°C] Coefficient 1+0.1×|t-23| When the operating temperature (t) is 23°C±5°C, use a coefficient of 1. Measurement accuracy = Basic accuracy × C × D × E × F × G 1 kΩ range or higher 100 Ω range or lower Basic accuracy Accuracy is calculated based on coefficients A and B from the basic ac- curacy chart shown below. Zx : Impedance of the measurement conductor A: Noted in basic accuracy chart. (Upper value: Z accuracy [% rdg.]; lower value: θ accuracy [°]) B: Noted in basic accuracy chart. (Upper value: Z accuracy [% rdg.]; lower value: θ accuracy [°]) A is the accuracy of R when DC (± % rdg.) B is the coefficient for the resistance of the sample Free software for calculating accuracy (LCR application disc) Automatically calculate measurement accuracy based on user-entered measurement conditions and measurement results. Free download from the Hioki website. Temperature and humidity ranges: 23℃ ± 5℃, 80% RH or less (no condensation), at least 60 minutes after power ON, after performing open and short compensation Conditions Basic accuracy Range Guaranteed ac- 100MΩ 8MΩ to 200MΩ A=1 B=1 A=6 B=5 A=5 B=3 A=3 B=2 A=2 B=2 A=3 B=2 A=2 B=2 10MΩ 800kΩ to 10MΩ A=0.5 B=0.3 A=0.8 B=1 A=0.8 B=0.5 A=0.5 B=0.3 A=0.4 B=0.2 A=0.5 B=0.3 A=0.4 B=0.2 A=2 B=1 A=2 B=1 1MΩ 80kΩ to 1MΩ A=0.2 B=0.1 A=0.4 B=0.08 A=0.3 B=0.08 A=0.3 B=0.05 A=0.2 B=0.02 A=0.3 B=0.05 A=0.2 B=0.02 A=0.5 B=0.1 A=0.6 B=0.1 A=3 B=0.5 A=3 B=0.5 100kΩ 8kΩ to 100kΩ A=0.1 B=0.01 A=0.3 B=0.03 A=0.2 B=0.02 A=0.2 B=0.03 A=0.1 B=0.02 A=0.2 B=0.03 A=0.1 B=0.02 A=0.25 B=0.04 A=0.2 B=0.02 A=1 B=0.3 A=1 B=0.3 A=2 B=0.5 A=2 B=0.3 10kΩ 800Ω to 10kΩ A=0.1 B=0.01 A=0.3 B=0.03 A=0.3 B=0.01 A=0.2 B=0.02 A=0.1 B=0.02 A=0.05 B=0.02 A=0.03 B=0.02 A=0.3 B=0.02 A=0.2 B=0.02 A=0.5 B=0.05 A=0.5 B=0.05 A=2 B=0.5 A=1.5 B=0.3 1kΩ 80Ω to 1kΩ A=0.1 B=0.01 A=0.3 B=0.02 A=0.2 B=0.02 A=0.2 B=0.02 A=0.1 B=0.02 A=0.2 B=0.02 A=0.1 B=0.02 A=0.2 B=0.02 A=0.15 B=0.02 A=0.4 B=0.02 A=0.4 B=0.02 A=1.5 B=0.2 A=1.5 B=0.2 100Ω 8 Ω to 100Ω A=0.1 B=0.02 A=0.3 B=0.02 A=0.2 B=0.01 A=0.2 B=0.02 A=0.15 B=0.01 A=0.2 B=0.02 A=0.1 B=0.01 A=0.2 B=0.02 A=0.15 B=0.02 A=0.5 B=0.03 A=0.5 B=0.03 A=1.5 B=0.2 A=1.5 B=0.2 10Ω 800mΩ to 10Ω A=0.2 B=0.15 A=0.5 B=0.1 A=0.3 B=0.1 A=0.4 B=0.05 A=0.3 B=0.03 A=0.4 B=0.05 A=0.3 B=0.03 A=0.4 B=0.05 A=0.3 B=0.03 A=0.8 B=0.1 A=0.5 B=0.05 A=2 B=1.5 A=2 B=1 1Ω 80mΩ to 1Ω A=0.3 B=0.3 A=1.5 B=1 A=0.8 B=0.5 A=1 B=0.3 A=0.5 B=0.2 A=1 B=0.3 A=0.5 B=0.2 A=1 B=0.3 A=0.5 B=0.2 A=1.5 B=1 A=0.7 B=0.5 A=3 B=3 A=3 B=2 100mΩ 1mΩ to 100mΩ A=1 B=1 A=8 B=8 A=5 B=4 A=5 B=4 A=3 B=2 A=3 B=2 A=2 B=1.5 A=2 B=2 A=2 B=1.5 A=4 B=3 A=3 B=4
- Method of determining basic accuracy
- Calculate the basic accuracy from the sample impedance, measurement range, and measurement frequency and the corresponding basic accuracy A and coefficient B from the table above. The calculation expression to use differs for each of the 1 kΩ range and above and 100 Ω range and below.
- For C and L, obtain basic accuracy A and coefficient B by determining the measurement range from the actual measurement value of impedance or the approximate impedance value calculated with the following expression. (ω: 2 x π x Measurement frequency [Hz]) R (Ω) (θ 0º) Zx (Ω) ωL (H) (θ 90º) (θ -90º)1 ωC (F)
- Calculation example Impedance Zx of sample: 500 Ω (actual measurement value) Measurement conditions: When frequency 10 kHz and range 1 kΩ Insert coefficient A = 0. 2 and coefficient B = 0.02 for the Z basic accuracy from the table above into the expression. Z basic accuracy = 0.2 + 0.02 × -1 = 0.28 (± %rdg.)103 10 × 500 Similarly, insert coefficient A = 0.1 and coefficient B = 0.02 for the θ basic accuracy, as follows: θ basic accuracy = 0.1 + 0.02 × -1 = 0.18 (± deg.)103 10 × 500
100 MΩ 8 MΩ to 200 MΩ
0.101 V to 5 V10 MΩ 10 MΩ to 100 MΩ
800 kΩ to 10 MΩ 0.501 V to 5 V
1 MΩ 1 MΩ to 10 MΩ
80 kΩ to 1 MΩ 0.050 V to 5 V 0.101 V to 5 V 0.501 V to 5 V 100 kΩ 100 kΩ to 1 MΩ 8 kΩ to 100 kΩ
0.010 V to 5 V
0.050 V to 5 V
0.101 V to 1 V
10 kΩ 10 kΩ to 100 kΩ 800 Ω to 10 kΩ 0.050 V to 1 V 0.101 V to 1 V1 kΩ 1 kΩ to 10 kΩ 80 Ω to 1 kΩ 100 Ω 8 Ω to 100 Ω 10 Ω 800 mΩ to 10 Ω 0.050 V to 5 V 0.101 V to 1 V 1 Ω 80 mΩ to 1 Ω 0.101 V to 5 V 0.501 V to 1 V 100 mΩ 1 mΩ to 100 mΩ 0.101 V to 5 V 0.501 V to 5 V 1V (fixed) Basic accuracy= ± A+B× −110×Zx Range( ) Basic accuracy= ± A+B× −1 Range Zx( )
- Power Cord
- Instruction manual
- LCR Application Disc ( Communication commands user manual) Note: Test fixtures are not supplied with the instrument. Select optional test fixtures or probes when ordering. RS-232C CABLE 9637 GP-IB CONNECTOR CABLE 9151-02 For the PC, 9pin - 9pin, cross, 1.8m (5.91 ft) length 2 m (6.56 ft) length DC BIAS VOLTAGE UNIT 9268-10 DC BIAS CURRENT UNIT 9269-10 Measurable ranges Options 1 10 100 1k 10k 100k 1M 10M 10p 10f 100f 100p 10n 100n 10µ 10m 100 100µ 100m C measurement range Frequency [ Hz ] C [ F ] 1 10 100 1k 10k 100k 1M 10M 100n 100p 10n 10µ 100µ 10m 100m 100 100k 10k 10M L measurement range Frequency [ Hz ] L [ H ] * An internal 300μH inductance is connected in parallel to the DUT. Measurement frequency range: 40 Hz to 8 MHz Maximum applied voltage: ±40 V DC Measurement frequency range: 40 Hz to 2 MHz Maximum applied current: 2 A DC Free software for calculating accuracy (LCR application disc) Automatically calculate measurement accuracy based on user-entered measurement conditions and measurement results. Free download from the Hioki website.
Probes and Test Fixtures for Lead Components 4-TERMINAL PROBE L2000 TEST FIXTURE 9262 Measurable range: DC to 8 MHz Measurable terminal diameter: 0.3 mm (0.01 in) to 5 mm (0.2 in) Cord length: 1 m (3.28 ft) Measurable range: DC to 8 MHz Measurable terminal diameter: 0.3 mm (0.01 in) to 2 mm (0.08 in) Direct connection type 4-TERMINAL PROBE 9140-10 Measurable range: DC to 200 kHz Measurable terminal diameter: 0.3 mm (0.01 in) to 5 mm (0.2 in) Cord length: 1 m (3.28 ft) 4-TERMINAL PROBE 9500-10 Measurable range: DC to 200 kHz Measurable terminal diameter: 0.3 mm (0.01 in) to 2 mm (0.08 in) Cord length: 1 m (3.28 ft) TEST FIXTURE 9261-10 Measurable range: DC to 8 MHz Measurable terminal diameter: 0.3 mm (0.01 in) to 1.5 mm (0.06 in) Cord length: 1 m (3.28 ft) SMD TEST FIXTURE 9263 Measurable range: DC to 8 MHz For SMD with electrodes on side Measurable sample sizes: 0805 to 2220 (EIA) 2012 to 5750 (JIS) Direct connection type SMD TEST FIXTURE 9677 Measurable range: DC to 120 MHz For SMD with electrodes on side Measurable sample sizes: 0402 to 0603 (EIA) 1005 to 1608 (JIS) Direct connection type SMD TEST FIXTURE 9699 Measurable range: DC to 120 MHz For SMD with electrodes on bottom Measurable sample sizes: 0608 to 0805 (EIA) 1608 to 2012 (JIS) Direct connection type PINCHER PROBE L2001 SMD TEST FIXTURE IM9100 Test Fixtures for SMDs Measurable range: DC to 8 MHz Replaceable tips Measurable sample sizes: IM9901: 0603 to 2220 (EIA) 1608 to 5750 (JIS) IM9902: 0201 to 2220 (EIA) 0603 to 5750 (JIS) Cord length: Approx. 730 mm (28.74 in) *Ships standard with one set of IM9901 CONTACT TIPS IM9901 CONTACT TIPS IM9902 Measurable range: DC to 8 MHz For SMD with electrodes on bottom Measurable sample sizes: 01005 to 0402 (EIA) 0402 to 1005 (JIS) Direct connection type World's First - High Precision 4-Terminal Measurement For more information, please see individual product catalogs. For more information, please see individual product catalogs.
81 Koizumi, Ueda, Nagano, 386-1192, Japan
TEL +81-268-28-0562 FAX +81-268-28-0568 http://www.hioki.com / E-mail: os-com@hioki.co.jp HIOKI USA CORPORATION TEL +1-609-409-9109 FAX +1-609-409-9108 http://www.hiokiusa.com / E-mail: hioki@hiokiusa.com All information correct as of Nov. 25, 2014. All specifications are subject to change without notice. IM3536E2-4YE Printed in Japan DISTRIBUTED BYHIOKI (Shanghai) SALES & TRADING CO., LTD. TEL +86-21-63910090 FAX +86-21-63910360 http://www.hioki.cn / E-mail: info@hioki.com.cn HIOKI INDIA PRIVATE LIMITED TEL +91-124-6590210 FAX +91-124-6460113 E-mail: hioki@hioki.in HIOKI SINGAPORE PTE. LTD. TEL +65-6634-7677 FAX +65-6634-7477 E-mail: info-sg@hioki.com.sg HIOKI KOREA CO., LTD. TEL +82-42-936-1281 FAX +82-42-936-1284 E-mail: info-kr@hioki.co.jp Note: Company names and Product names appearing in this catalog are trademarks or registered trademarks of various companies. C METER 3506-10 1.5ms 1mHz 42Hz 100kHz 1MHz DC 4Hz 40Hz 120Hz 1kHz 200kHz 5MHz 120MHz 1kHz 1MHz C meter for low-capacity capacitors For production of MLCC and film capacitors C HiTESTER 3504 2ms 1mHz 42Hz 100kHz 1MHz DC 4Hz 40Hz 120Hz 1kHz 200kHz 5MHz 120MHz 120Hz 1kHz 3504-40 3504-50 3504-60 C meter for large-capacity MLCCs For sorting machines of large-capacity MLCCs (3504 -50/60) and taping machines (3504 -40) IMPEDANCE ANALYZER IM7580 0.5ms High-frequency measurement up to 300 MHz Ideal for production lines of ferrite beads and inductors IMPEDANCE ANALYZER IM3570 0.5ms 1mHz 42Hz 100kHz 1MHz DC 4Hz 40Hz 120Hz 1kHz 200kHz 5MHz 120MHz 5MHz4HzDC LCR meter integrated with impedance analyzer Measure the frequency characteristics of piezo-electric devices, functional polymer capacitors, and power inductors CHEMICAL IMPEDANCE ANALYZER IM3590 2ms Supports LCR impedance measurements for Cole-Cole plots and equivalent-circuit analyses Measure electrochemical components, materials, batteries, and electric double-layer capac - itors (EDLCs) 1mHz 42Hz 100kHz 1MHz DC 4Hz 40Hz 120Hz 1kHz 200kHz 5MHz 120MHz 1MHz 300MHz 1mHz 42Hz 100kHz 1MHz DC 4Hz 40Hz 120Hz 1kHz 200kHz 5MHz 120MHz 1mHz 200kHzDC LCR Meter Series Full Product Lineup Model Measurement speed (Basic value) Measurement frequency range Applications and measurement object LCR METER IM3536 1ms General-purpose LCR meter up to 8 MHz Measure electronic components such as capacitors and inductors LCR METER IM3533 2ms IM3533 IM3533-01 Capable of special measurements of transformers including turn ratio and mutual inductance IM3533-01: High-end model of the IM3523 and IM3533 with sweep measurement LCR METER IM3523 2ms Extremely cost-effective model suitable for production lines including integration into automated machinery For C-D and ESR measurement of electrolytic capacitors and L-Q and DCR mea - surement of inductors LCR HiTESTER 3511-50 5ms Compact LCR meter with single function For production lines of aluminum electrolytic capacitors 1mHz 42Hz 100kHz 1MHz DC 4Hz 40Hz 120Hz 1kHz 200kHz 5MHz 120MHz 8MHz4HzDC 1mHz 42Hz 100kHz 1MHz DC 4Hz 40Hz 120Hz 1kHz 200kHz 5MHz 120MHz 1mHz 200kHzDC 1mHz 42Hz 100kHz 1MHz DC 4Hz 40Hz 120Hz 1kHz 200kHz 5MHz 120MHz 40Hz 200kHzDC 1mHz 42Hz 100kHz 1MHz DC 4Hz 40Hz 120Hz 1kHz 200kHz 5MHz 120MHz 120Hz 1kHz