The AIP87500 multichannel power analyzer is suitable for standby power consumption and power analysis of single-phase/three-phase household and commercial appliances; power analysis and efficiency of photovoltaic inverters; electrical performance measurement of electric vehicles and charging piles; power analysis of power electronics, transformers, and generators; power analysis of frequency converters and variable frequency motors; power analysis of switching power supplies; power analysis of lighting and LEDs, etc. AIP focuses on global motor testing and provides a variety of multichannel power analyzers!
Multichannel: 1-6 channel measurement unit configuration, flexibly configurable as multi-channel single-phase, three-phase three×2, three-phase four×2, four-phase (DC + three-phase three) modes, etc., to meet the measurement needs of various loads (air conditioners, inverters, frequency converters, motors).
High precision: Utilizes a high-speed DSP processor and a 16-bit high-speed, high-precision AD converter, achieving a basic accuracy of 0.1% and a display data update cycle as fast as 100ms.
Width achievement Rate: Single-channel current measurement up to 50A (optional 20A, 10A, 5A, 2A, 1A, etc., and supports mixed configurations), minimum power resolution of 0.1mW, meeting the requirements for standby power consumption measurement and rated power measurement.
Width frequency Features: Dual-purpose for AC and DC signals, power measurement bandwidth DC, 0.5Hz~100kHz, suitable for power measurement of various standard and non-standard sinusoidal waveform loads.
Frequency measurement: Six channels can perform frequency measurements simultaneously.
Line filtering: Employs a 500Hz, 5.5kHz low-pass filter, capable of measuring the fundamental frequency of the PWM waveform and filtering out high-frequency interference from the switching power supply current.
Pass-through Transformer: Features a transformation ratio function, supports standard Type II and Type VV voltage/current transformers; supports Type IV current sensors with BNC interface, maximum input voltage 10V, with optional high -current sensors.
Efficiency calculation: It can simultaneously measure the input and output energy consumption of a device and calculate its efficiency.
Energy accumulation: It can accumulate positive energy, reverse energy, and combined energy separately, and measure the buying and selling of energy.
Threshold alarm: Each channel can be independently set with threshold values and measurement limits for voltage, current, power, power factor, etc., with automatic upper and lower limit determination and alarm activation.
Chinese/English Interface: Users can switch between Chinese and English operating interfaces
Channel: Six-channel power analysis.
Basic accuracy: ±0.1%
Measurement bandwidth: DC, 0.5Hz~100kHz
Sampling rate: 100kSps
Maximum voltage: 1000Vrms (1500Vpk)
Maximum current: 50A/20A/10A/5A/2A/1A, supports mixed combinations, optional sensors
Ⅰ.Typical applications
■ Standby power consumption and power analysis of single-phase/three-phase household and commercial appliances.
■ Photovoltaic inverter power analysis and efficiency.
■ Electrical performance measurement of electric vehicles and charging piles.
■ Power electronics, transformers, and generator power analysis.
■ Power analysis of frequency converters and frequency conversion motors.
■ Switching power supply power analysis.
■ Lighting and LED power analysis.
Ⅱ.Main functions
■ Single-channel measurement
![]()
■ Peak detection
![]()
■ Efficiency Measurement

■ Electrical energy measurement
![]()
■ Three-channel measurement
![]()
■ Six-channel measurement
![]()
Ⅲ. Channel configuration
The multi-channel power analyzer supports various wiring methods, including 1P2W, 1P3W, 3P3W, 3V3A, 3P4W, etc. Users can configure the multi-channel mode according to their usage requirements to meet the measurement of parameters such as voltage, current, power, and efficiency of specific loads.
| Wiring method | Channel 1 | Channel 2 | Channel 3 | Channel 4 | Channel 5 | Channel 6 |
| 1P2W Single-phase two-wire | 1P2W | 1P2W | 1P2W | 1P2W | 1P2W | 1P2W |
| 1P3W Single-phase three-wire | 1P3W | 1P3W | ||||
| 3P3W Three-phase three-wire | 3P3W | 3P3W | ||||
| 3V3A Three-phase Three-wire | 3V3A | 3V3A | ||||
| 3P4W Three-phase Four-phase | 3P4W | 3P4W | ||||