This product is suitable for electrical performance testing of high-end motors such as automotive motors, servo motors, and military motors. It has technological innovation, customized development, high precision, and high efficiency. It is a new coordinate for motor performance testing and can completely replace imported brands. It can be used for motor research and development and laboratory testing to enhance product competitiveness.
High-precision test: Use a high-precision small-range torque sensor to ensure the actual high-precision measurement of cogging torque.
Data quantification: quantify the motor performance test data and set upper and lower limits to achieve simple testing;
Waveform display: load performance, cogging torque, and friction torque can be separated and displayed as a synthetic waveform curve, which is intuitive, clear, and simple;
Integrated design: It can meet simultaneous and time-sharing measurement functions, with a variety of stand-alone and cabinet equipment structures available. The integrated architecture design can complete all setting items in one clamping.
Comprehensive testing: compatible with high-power motor test items such as cogging torque, friction torque, resistance, etc., suitable for various high-power motors such as automotive drive motors, one machine for multiple uses, reducing equipment purchase costs;
Fast clamping: The clamping method is efficient and convenient, suitable for operation by personnel on the motor production line, reducing useless operation steps and meeting the production rhythm of the production line;
Easy maintenance: supports intelligent self-checking, remote fault diagnosis and online software upgrade, plug-in design, easy to disassemble and replace
Easy to use: The test system is equipped with professional test software, Windows operating system, built-in help documentation, and standard high-performance touch screen and numeric keyboard;
Rich interfaces: The instrument has built-in USB and LAN (convertible to RS232, RS485, etc.) interfaces, supports TCP/IP network protocol, supports PLC simulation technology, and facilitates its control and expansion.
Test items: cogging torque, friction torque, separation torque, torque fluctuation, performance test, torque constant, drag torque, load performance, back electromotive force, short circuit current, resistance, inductance
Principle of Motor Performance Test System: The working principle of the motor performance test system is to evaluate various performance parameters of the motor through a series of test equipment and corresponding motor test software.
Ⅰ.Select test parameters: First, the user needs to determine the motor performance test parameters to be tested, such as load performance, cogging torque, friction torque, resistance and inductance, etc.
Ⅱ.Software settings: According to the selected motor performance test parameters, set the upper and lower limits of the project in the background of the AIP motor test software. These values are used to determine whether the future test data is qualified;
Ⅲ.Data acquisition: The motor performance test system will collect motor sample data, including the motor's input and output parameters, and process them through software;
Ⅳ.Control the motor: The motor test system may need to control the operation of the motor, perform tests under different load conditions, and collect data.
Ⅴ.Data processing and analysis: The data collected from the motor performance test will be processed and analyzed by AIP's specialized software to obtain various performance parameters and curves of the tested motor to evaluate the quality, reliability, and compliance of the motor.
Testing an electric motor involves several steps: Visual Inspection: Check for any visible signs of wear, damage, or corrosion. Electrical Testing: Measure voltage, current, resistance, and insulation resistance. Mechanical Testing: Assess mechanical components like bearings, shaft alignment, and balance.
Collating and documenting testing requirements. Installing and managing the configuration of Performance Testing Tools. Designing Test Scenarios to meet documented test requirements. Designing and preparing Test Data to support test requirements.
Motor testing assesses the integrity of a motor through the use of computer-supported equipment or tools that monitor trends within the motor. The main objective of motor testing is to reveal hidden problems and prevent unnecessary failure.
It involves measures that indicate the outcome of performing a motor skill such as reaction time, error measures, duration of time to complete a task or the number of successful attempts or trials needed to complete a task. Motor performance and motor skills are essential for various daily activities.
A high-performance engine is an internal combustion engine that is designed and tuned to produce more power and torque output than a standard engine of similar size and configuration.