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- Taylor Dynamometer, Inc.
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Exacting Electric Motor Testing
The Taylor Dynamometer Electric Motor Test Stand is designed to provide maximum reliability, excellent durability and flawless performance. Using our extensive line of Water Brake engine dynamometers, Taylor Dynamometer has systems available for testing electric motors from 5 to 13,000 hp (3.7 to 9,694 kW). Include an instrumentation package to achieve your testing requirements. From simple speed, torque and power display systems with manual control to completely automated testing solutions, Taylor Dynamometer has a system to meet your testing requirements.
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Electric Motors
VECTOMOTOR
The VECTOMOTOR product line contains electric motors that are optimally matched to the VECTOPOWER inverters and which can achieve a maximum efficiency for your application. Take advantage of this high-performance product combination and the extensive experience of ARADEX engineers in the field of electric drive technology. With ARADEX as a partner, we are happy to implement the entire drive train for you - from the inverter through the electric motor to the battery.
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Electric Motor Testing
EPT Series
The EPT Series of testing systems are developed as open, modular solutions that provide complete product testing platforms.
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Electric Motor Checker
CIE/1001
Cambridge Instruments & Engineering Co.
Housed in attractive wooden body with sunmica finish. For comprehensive check of Rotor and Stator Inductance, Resistance and Insulation Resistance without dismantling the Motor. Only to isolate the power supply.
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Electric Motor Dynamometer
Dynamometer consists of aggressively designed rotor technology that allows for higher torque without the need for multiple rotors. Thus not only does the WB Series unit offer more pack to the punch, but the inertia of the WB Series unit stays well below the inertia of the engine being load-tested.
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Electric Motor Test Systems
Electric Motor Test Systems feature our highly successful water brake dynamometer which is used as an electric motor loading device.
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Electric Motor QC Systems
Megger Baker Instruments designs and manufactures electric motor test systems for original equipment manufacturers (OEMs) that help ensure their motors, generators and coils meet or exceed the quality expectations OEMs set with their customers. Baker motor quality control (QC) systems include the Baker WinAST automated stator tester, the Baker HV WinAST and the Baker WinTATS traction armature test system. Each incorporates the most effective electric motor test processes into a single automated instrument and can be customized to meet the specific testing needs of a given manufacturer.
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Testing Electric Pump Motors
This Custom Motor Test System is designed for the testing of 5 different sized electric motors used in various sump, utility, sewage, well, pool and pond pumps. All of the components mentioned above are mounted on a versatile table that can be easily reconfigured and retrofitted to any Magtrol dynamometer.
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Motor Test for Electric Scooters
*The performance data of electric motors, in the majority of all cases, is performed by a brake test. Power input is calculated from current and voltage. Torque and power output are measured with a brake. It is important to reach, for each point, a persistent temperature. In case of large outer rotor BLDC motors, which are usually used for electric scooters, this traditional procedure may take many hours to complete, and is very complicated. *For several years, an innovative motor tester of MEA Testing Systems Ltd. is on the market. This testing system avoids any temperature confusion by testing a motor at constant temperature over the entire speed range. The test procedure is very fast, and gives the full load performances, including PWM current, voltage, torque, and driver efficiency, from stall up to no load. *During the test procedure, the motor is freely accelerated from stall to no load speed. The load of the motor is only the predetermined inertia of the rotor. From the moment of inertia and the acceleration, the torque of the motor is calculated and, also, the power output over the whole speed is given. Since the entire measuring time, depending on the motor size, is usually less than one second, the motor has no time to warm up. It remains at room temperature.
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Static Electric Motor Analyzers
Baker Instruments’ static motor test equipment is the industry-leading suite of products for detecting weaknesses and faults in the insulation systems of electric motors, generators and coils. Employing both low-voltage and high-voltage tests – such as Baker’s signature surge test - these essential troubleshooting and predictive maintenance tools allow maintenance professionals to assess any need to maintain or replace specific motors and generators that support their business. Equally at home in the motor repair shop or on a plant floor, these testers ensure that the electrical condition of your rotating machinery is understood.
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On-Line Electric Motor Analyzer
EMAX
The EMAX tester allows for proactive predictive maintenance without requiring a shutdown of the motors for access. The power and convenience of dynamic testing collects data without interrupting production processes. The EMAX can be used for process analysis with motor current signature analysis and also provides voltage, power, and efficiency data.
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Dynamic Electric Motor Analyzers
Baker's dynamic motor test and monitoring instruments are built to conduct condition monitoring tests of motors and generators from a Motor Control Centre (MCC), or through a Baker EP1000 connection unit. The Baker EXP4000 dynamic motor analyser is a low-voltage, AC- and battery-operated instrument that test motors and generators while they are in operation. The EXP4000 provides health and performance data on the motor, the motor's load, and incoming power to assess motor performance and suitability in context of the entire machine system it supports.
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Production Test Stands for Electric Motors
Electric drives such as DC and EC motors are more and more extensively deployed in the automotive industry. At the same time there is an increasing requirement for a 100% analysis of motors for fault detection and error analysis as well as statistics on quality, without increasing production cycles times. The model-based Parameter Identification method (PI method) from imc allows testing to be performed under load, yet without an “explicit” separate load machine. Instead, the motor is loaded dynamically by exploiting its own inherent inertia. This allows motor parameters such as resistance, inductivity and friction to be determined within a few seconds. A mathematical model and its parameters reflect motor behaviour in its completeness and make it possible to monitor motor production based on limit values and trend statistics. The identified parameters of the model equation can then be used to calculate derived key performance indicators of the motor characteristic curve.
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Development Test Stands for Electric Motors
Development test stands from imc are characterized by high flexibility in electric motor trials. A comprehensive variety of motor types can be tested and a complete range of tests carried out. The mechanical configuration consists of a test bed with a load machine and a torque measuring shaft. The load machine and torque sensor shaft are mounted on a linear guide and precisely aligned axially by means of laser. It can be moved towards the test object on ball bearings, as a complete unit. Especially time-saving: no need to realign the load machine assembly when changing the torque sensor.
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Development Test Stands for Electric Motors
Development test stands from imc are characterized by high flexibility in electric motor trials. A comprehensive variety of motor types can be tested and a complete range of tests carried out. The mechanical configuration consists of a test bed with a load machine and a torque measuring shaft. The load machine and torque sensor shaft are mounted on a linear guide and precisely aligned axially by means of laser. It can be moved towards the test object on ball bearings, as a complete unit. Especially time-saving: no need to realign the load machine assembly when changing the torque sensor.
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5 kV Electric Motor Analyzer
MCE
The MCE? (Motor Circuit Evaluator) is a comprehensive static motor tester that produces detailed analyses of motor and circuit conditions in as little as three minutes. Analysis of the motor and associated circuits through MCE? testing allows for the detection of electrical faults in any one of the five fault zones.
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R + D Testing of Electric Motors
Highly dynamic development test bench for synchronous and asynchronous motors*Comfortable concept with changeable test angles for handling various load machines and test pieces*Freely configurable test runs - ie suitable for endurance tests and long-term examinations*Equipped for environmental simulations (temperature)*Examination of complete drive systems (motor and inverter)
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Series and EOL Testing of Electric Motors
Highly automated EOL test system for blind motors*Test station with fully automatic mechanical and electrical contacting *Scanning the product coding with barcode scanner*Integrated label printing, additional error printer*Contact protection by light curtain
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NI Electric Motor Simulation Toolkit
PMSM, ACIM, SRM, and power inverter models for high-performance simulationHigh-fidelity simulations with support for user-defined parameter lookup tables or JMAG-RT models. Open software for full flexibility and customizationLabVIEW project templates to build a software-only simulation and hardware-in-the-loop application. Direct integration with NI VeriStand for configuration-based real-time test. Models for desktop simulation, LabVIEW Real-Time simulation, and FPGA-based simulation
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Development Test for Electric Motors with Power Electronics
Test bench for electric machines and inverters in hybrid applications*Control of mechanical parameters*Verification of electrical properties*Checking the LL characteristics*Short circuit measurement*Recording the performance process*Noise measurement*Temperature measurement
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Automatic Production Tester for Electric Motor Stators
MTC 3
The fully automatic MTC3 stator testers test your windings reliably and quickly for possible insulation faults via our patented surge voltage test.After connecting the test object completely the test is performed with an automatic switching of the connections and the test methods. The MTC3 evaluates each test step. At the end of the complete test process it provides a clear and reproducible GO or NO GO-statement.
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Electric Servo Motor Type Horizontal Impact Tester
This is a horizontal impact tester using an electric servo motor type actuator system.
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Electric Servo Motor Type 3-axis Vibration Tester
The Electric Servomotor Vibration Test System Is A New Vibration Test System Developed Based On The Control Technology Of AC Servomotors That We Have Cultivated Since Its Establishment.
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Electric Servo Motor Type Tension and Compression Tester
It is a tensile / compression fatigue / durability / performance tester for various materials and automotive parts that have an ultra low inertia AC servomotor mounted on the actuator.
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Electric Servo Motor Type 1 Axis Vibration Tester
In Addition, The System Configuration Requires At Least 3 Main Units, A Control Panel, And A Controller, And Does Not Require Hydraulic Units Or Blowers. The Exciter Can Perform Standard Tests And Performance Tests Required For Automobile Seats Based On An Electric Servomotor Type Multi-Axis Vibration Tester.
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Electric Servo Motor Type 2 · 4 Poster Vibration Tester
It arranges four 3-axis vibration testers equipped with a high torque, ultra-low inertia servomotor to test the vibration of the finished vehicle.
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Electric Servo Motor Type 2 Axis Switching Simultaneous Vibration Tester
It is a 2-axis switching vibration tester and a 2-axis simultaneous vibration tester that mounts an electric servomotor actuator on the vibration drive unit.
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Electric Servo Motor Type Power Circulation Type Rotary Torquer Tester
Tests For Clutches Durability, Torque Converters, Transmissions, Differential Gears, CVJs, Etc. Can Be Performed At Low Cost By The Load Using The Power Circulation System.
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Electric Servo Motor Type 4 Face 3 Axis Vibration Tester
The electric servomotor type 4-sided 3-axis vibration tester can control 4 vibration tables synchronously or independently by combining 4 independent 3-axis vibration testers.
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Electric Servo Motor Type High Speed, High Load, Large Displacement Vibration Tester
This tester is a high-speed, high-acceleration vibration tester equipped with an electric servomotor actuator.