Simple Circuit Analysis & Detailed Acceptance/Rejection Decision-Making Firmware Upgrade for the IM3570
Automatically select the equivalent circuit model from the five typical models to minimize the differences between the measured values and the ideal frequency characteristics derived from the analysis results
Determine acceptance/rejection for the L, C, and R elements comprising a part and the resonance sharpness (mechanical quality coefficient)
Make detailed decisions on the elements using the resonance of a piezoelectric element or inductor
LCR measurement, DCR measurement, sweep measurement, continuous measurement and high-speed testing achieved with one instrument
High-speed testing, achieving maximum speeds of 1.5ms (1 kHz) and 0.5ms (100kHz) in LCR mode
High-accuracy measurements, basic accuracy of Z parameter: ± 0.08%
Perfect impedance analyzer for testing the resonance characteristics of piezoelectric elements, C-D and low ESR measurement of functional polymer capacitors, DCR and L-Q measurement of inductors (coils and transformers)
Perform frequency sweeps, level sweeps, and time interval measurements in analyzer mode
Compatible with the SPECpower® benchmark for server power consumption SPECpower® is a registered trademark of Standard Performance Evaluation Corporation
Measure DC, and single-phase 2-wire to 3-phase 4-wire with 3-channel input
For development and production of motors, inverters, power conditioners, power supplies, and other devices
High-precision basic accuracy of ±0.1 % (*1) (*1) For complete details, please refer to the specifications
Wide frequency bandwidth of 0.1 Hz to 100 kHz or DC
High-current measurement up to 65 A of direct input
Harmonic measurement up to the 50th order according to IEC 61000-4-7
High-accuracy measurement, even with a low power factor for no-load testing of transformers and motors
Built-in external sensor input terminals to measure up to 5000 A AC
Synchronize up to 8 units for multi-unit measurement
Create a 6-channel power meter by synchronizing two PW3337 units and using the free PC application
Power supply for high-precision current sensors with waveform output / RMS output functionality
Output Terminal BNC Terminal
Output voltage Waveform output: 2 V f.s. / RMS output: 2 V DC f.s.
Operating temperature range -10 °C to 50 °C (14 °F to 122 °F)
Power supply AC Adapter Z1008 (100 to 240 V AC, 50/60 Hz, maximum rated power when used with sensors: 45 VA)
External power supply (10 to 30 V DC; maximum rated power: 15 VA)
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
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
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
• Ultra High Power Accuracy of 0.024% For All Channels
• Improved Voltage and Current Self-Heating Adders
• Faster Sampling Rates & Bandwidth Performance
• Greater Harmonic Frequencies