The Digital Multimeter DT4281 is Hioki’s flagship high precision multimeter, engineered for advanced electrical and power system testing. Featuring a 60000 count display, true RMS measurement, and industry leading safety design, it delivers fast, accurate results even in complex and high energy environments.
Key Features
High resolution 60000 count digital multimeter
Excellent DC voltage accuracy of ±0.025 percent
Wide AC voltage frequency range from 20 Hz to 100 kHz
True RMS measurement for accurate readings on distorted waveforms
Low pass filter for inverter and harmonic rich signals
Clamp sensor based current measurement for enhanced safety
Terminal shutter mechanism to prevent incorrect lead insertion
Dual display for simultaneous voltage and frequency monitoring
CAT IV 600 V and CAT III 1000 V safety rated
Designed and manufactured in Japan with 3 year warranty
The DM7275 Precision DC Voltmeter is a high stability 7 and a half digit DC voltmeter designed to bridge the gap between research environments and high volume production lines. With a guaranteed one year accuracy of 20 ppm, it delivers reliable and repeatable measurements for lithium ion batteries, advanced capacitors, and next generation electronic components.
Key Features
7 and a half digit DC voltage measurement
1 year guaranteed 20 ppm accuracy
Ideal for R and D and production line testing
Capacitance contact check using built in C monitor
Fully automatic self calibration for long term stability
Resistant to temperature fluctuations
Simultaneous voltage and temperature measurement
Temperature compensated voltage display
Built in EXT I O, LAN, and USB interfaces
Optional GP IB or RS 232C communication models
Built in variable power supply for global production use
The DM7275 Precision DC Voltmeter provides 7½-digit resolution and 20 ppm accuracy, making it perfect for R&D, production lines, and high-precision battery testing. Its advanced contact check, temperature compensation, and multiple connectivity options ensure reliable measurement for lithium-ion batteries, EV components, and next-generation devices.
Key Features
High-accuracy 7½-digit DC voltmeter with 20 ppm (0.002%) guaranteed accuracy
Built-in capacitance contact check for maximum measurement reliability
Temperature compensation converts voltage to standard temperature values
Fully automatic self-calibration for long-term stability
Built-in EXT I/O, LAN, USB, GP-IB (DM7275-02), and RS-232C (DM7275-03)
Supports R&D and production line environments worldwide
Simultaneous measurement of temperature and voltage
Ideal for Li-ion batteries, EV components, and electrical double-layer capacitors
The DM7276 Precision DC Voltmeter is a 7 and a half digit high accuracy instrument designed for ultra precise DC voltage measurement. With industry leading 9 ppm accuracy, it is ideal for lithium ion battery aging tests, capacitor evaluation, and next generation energy device development.
Key Features
7 and a half digit precision with 9 ppm accuracy
Designed for lithium ion battery aging and evaluation
Built in capacitance contact check for reliable measurements
Fully automatic self calibration for long term stability
Resistant to temperature fluctuations and environmental changes
Simultaneous voltage and temperature measurement
Temperature compensated voltage display
Supports global production with variable power supply
The DMM Station MR8990 combined with the MR8740 or MR8741 Memory HiCorder delivers high precision, simultaneous DC voltage measurement across up to 32 channels. Designed for capturing minute voltage fluctuations, this system is ideal for advanced sensor analysis, battery testing, and automotive electronics evaluation.
Key Features
High precision DC voltage measurement using DVM Unit MR8990
Simultaneous sampling across multiple channels
Supports up to 32 channels with expandable configuration
Measures minute voltage fluctuations with high resolution
Accuracy of ±0.01 percent with 1.2 million count resolution
High speed sampling up to 500 samples per second
Isolated inputs for enhanced safety and signal integrity
Suitable for battery, sensor, and automotive testing
Rack mountable system for laboratory and production use
Compatible only with MR8740 and MR8741 Memory HiCorders
The Hioki M7103 Module is a compact, high-precision power measurement solution designed for multi-channel efficiency testing of PV inverters, high-voltage batteries, and energy storage systems. Ideal for embedded and production line applications, it offers unmatched scalability, speed, and accuracy.
Key Features
Power analyzer-class accuracy: DC/AC ±0.07%
Supports up to 1500 V DC measurement
12 channels per 4U rack unit; expandable to 120 channels
Synchronization Source Sharing for stable efficiency measurements
High-speed data transfer with 5 ms sampling interval
Suitable for PV inverter and multi-MPPT string efficiency testing
Direct measurement without differential probes for high voltages
The Hioki PW3335 Meter is a high-precision single-phase power meter designed to measure AC/DC standby power and large power loads with exceptional accuracy. Ideal for energy testing of transformers, adapters, power supplies, and motors, it supports currents up to 30 A continuous and handles high crest factors for accurate low-power measurements.
Key Features
Measures AC/DC power from 1 mA to 20 A (max 30 A continuous)
High-precision basic accuracy: ±0.1%
Wide frequency bandwidth: DC to 100 kHz
Measures harmonic and standby power per IEC62301
Accurate even at low power factors for no-load testing
Supports crest factor up to CF6 for high-accuracy AC adapter testing
Multi-unit synchronization: up to 8 meters
Optional external sensor inputs up to 5000 A (PW3335-03/-04)
Built-in LAN, RS-232C, GP-IB, and D/A outputs depending on model
The Hioki PW3336 Meter is a high-precision, 2-channel power meter for DC, single-phase, and three-phase measurements. It delivers accurate readings for motors, inverters, power conditioners, and industrial power supplies, supporting voltages up to 1000 V and currents up to 65 A direct input.
Key Features
Measures DC, single-phase 2-wire, single-phase 3-wire, and 3-phase 3-wire systems
High-precision basic accuracy: ±0.1%
Frequency bandwidth: DC to 100 kHz
Supports currents up to 65 A direct input, up to 5000 A with optional sensors
Harmonic analysis up to the 50th order (IEC 61000-4-7)
Multi-unit synchronization: up to 8 units
Built-in GP-IB or D/A output options available
Ideal for motor, inverter, power conditioner, and industrial equipment testing
The Hioki PW3337 Meter is a high-precision, 3-channel power meter for DC, single-phase, and three-phase 4-wire systems. It is ideal for motors, inverters, power conditioners, and industrial power supplies, supporting voltages up to 1000 V and currents up to 65 A direct input.
Key Features
Measures DC, single-phase 2-wire to 3-phase 4-wire systems
High-precision basic accuracy: ±0.1%
Frequency bandwidth: DC to 100 kHz
Supports currents up to 65 A direct input, up to 5000 A with optional sensors
Harmonic analysis up to the 50th order (IEC 61000-4-7)
Multi-unit synchronization: up to 8 units
Can create a 6-channel setup by synchronizing two units via PC application
Built-in GP-IB or D/A output options available
Ideal for development and production of motors, inverters, and power conditioners
The Hioki VT1005 Divider allows safe, accurate measurement of high voltages up to 5000 V and evaluation of inverter efficiency with exceptional precision. Its broad frequency range, high noise immunity, and differential input design make it ideal for power system and high-voltage inverter applications.
Key Features
Maximum input voltage: 5000 V AC/DC
Differential input method for precise measurement
±0.08% DC accuracy, ±0.04% at 50/60 Hz, ±0.17% at 50 kHz
Frequency band: DC to 4 MHz (-3 dB)
Excellent amplitude flatness: ±0.1% up to 200 kHz
Phase flatness: ±0.1° up to 500 kHz
Noise resistance: CMRR 80 dB typical (100 kHz)
Detects efficiency improvements on the order of 0.1%
Safely measures high voltages that standard analyzers cannot handle
The SM7120 Super Megohm Meter provides rapid, ultra-low current and high-resistance measurement, making it perfect for automated production lines, high-voltage applications, and precise testing of electronic components, EV parts, and insulation materials. Its 2000 V output, exceptional noise resistance, and flexible design ensure reliable, repeatable measurements even in complex environments.
Key Features
6.4 ms high-speed measurement including contact check
Maximum 2000 V output for high-voltage testing
0.1 fA ultra-low current resolution for precise detection
2 × 10¹⁹ Ω maximum display range
300x improved noise resistance for stable results
Built-in EXT I/O, RS-232C, GP-IB, and USB connectivity
Multipurpose functionality: Electrometer, Picoammeter, IR Meter
Ideal for electronic components, EVs, wearables, and insulation testing
The SM7420 Super Megohm Meter offers ultra-low current measurement with 4-channel simultaneous testing, making it ideal for automated production lines and high-precision inspection of passive components like capacitors and filters. Its advanced noise resistance, channel-independent contact checks, and multiple connectivity options ensure accurate, repeatable, and high-speed performance for mass production.
Key Features
Four-channel ultra-low current measurement with 0.1 fA resolution
Industry-leading noise resistance, 300x better than previous models
High-speed testing: 6000 ps/minute for mass production efficiency
Channel-independent low-capacitance contact check
Built-in EXT I/O, RS-232C, GP-IB, and USB connectivity
Ideal for automated MLCC leakage current inspection lines
Supports integration into automated production systems
The SW2001 High Voltage Multiplexer is a durable and reliable solution designed to simplify complex motor testing setups. It allows safe and seamless switching between high voltage testing and 4 terminal low voltage measurements, helping manufacturers improve efficiency, accuracy, and equipment protection across production lines.
Key Features
Consolidates six motor tests into one multiplexer system
Enables safe switching between high voltage and low voltage measurements