The Electrosurgical Analyzer. The measurement engine of the ESU is an specially-engineered true-RMS RF ammeter and wattmeter, designed to measure the complex RF waveforms produced by electrosurgical generators. The ESU has been designed to comply with electrosurgical manufacturer industry standard current sensing technology and utilizes an internal precision RF Current Transformer. The analyzer utilizes a precision internal test load resistor network. The ESU is intended to be routinely used to measure the various parameters relating to the testing and performance validation of electrosurgical generators. DFA Technology allows the ESU to aggressively digitize the complex electrosurgical generator waveform, analyze its components and provide accurate and stable results. It may be used as a stand-alone meter or in conjunction with a PC utilizing the optional software.
The Electrosurgical Analyzer. The measurement engine of the ESU is an specially-engineered true-RMS RF ammeter and wattmeter, designed to measure the complex RF waveforms produced by electrosurgical generators. The ESU has been designed to comply with electrosurgical manufacturer industry standard current sensing technology and utilizes an internal precision RF Current Transformer. The analyzer utilizes a precision internal test load resistor network. The ESU is intended to be routinely used to measure the various parameters relating to the testing and performance validation of electrosurgical generators. DFA Technology allows the ESU to aggressively digitize the complex electrosurgical generator waveform, analyze its components and provide accurate and stable results. It may be used as a stand-alone meter or in conjunction with a PC utilizing the optional software.
The Electrosurgical Analyzer. The measurement engine of the ESU is an specially-engineered true-RMS RF ammeter and wattmeter, designed to measure the complex RF waveforms produced by electrosurgical generators. The ESU has been designed to comply with electrosurgical manufacturer industry standard current sensing technology and utilizes an internal precision RF Current Transformer. The analyzer utilizes a precision internal test load resistor network. The ESU is intended to be routinely used to measure the various parameters relating to the testing and performance validation of electrosurgical generators. DFA Technology allows the ESU to aggressively digitize the complex electrosurgical generator waveform, analyze its components and provide accurate and stable results. It may be used as a stand-alone meter or in conjunction with a PC utilizing the optional software.
The Electrosurgical Analyzer. The measurement engine of the ESU is an specially-engineered true-RMS RF ammeter and wattmeter, designed to measure the complex RF waveforms produced by electrosurgical generators. The ESU has been designed to comply with electrosurgical manufacturer industry standard current sensing technology and utilizes an internal precision RF Current Transformer. The analyzer utilizes a precision internal test load resistor network. The ESU is intended to be routinely used to measure the various parameters relating to the testing and performance validation of electrosurgical generators. DFA Technology allows the ESU to aggressively digitize the complex electrosurgical generator waveform, analyze its components and provide accurate and stable results. It may be used as a stand-alone meter or in conjunction with a PC utilizing the optional software.
The Electrosurgical Analyzer. The measurement engine of the ESU is an specially-engineered true-RMS RF ammeter and wattmeter, designed to measure the complex RF waveforms produced by electrosurgical generators. The ESU has been designed to comply with electrosurgical manufacturer industry standard current sensing technology and utilizes an internal precision RF Current Transformer. The analyzer utilizes a precision internal test load resistor network. The ESU is intended to be routinely used to measure the various parameters relating to the testing and performance validation of electrosurgical generators. DFA Technology allows the ESU to aggressively digitize the complex electrosurgical generator waveform, analyze its components and provide accurate and stable results. It may be used as a stand-alone meter or in conjunction with a PC utilizing the optional software.
The Electrosurgical Analyzer. The measurement engine of the ESU is an specially-engineered true-RMS RF ammeter and wattmeter, designed to measure the complex RF waveforms produced by electrosurgical generators. The ESU has been designed to comply with electrosurgical manufacturer industry standard current sensing technology and utilizes an internal precision RF Current Transformer. The analyzer utilizes a precision internal test load resistor network. The ESU is intended to be routinely used to measure the various parameters relating to the testing and performance validation of electrosurgical generators. DFA Technology allows the ESU to aggressively digitize the complex electrosurgical generator waveform, analyze its components and provide accurate and stable results. It may be used as a stand-alone meter or in conjunction with a PC utilizing the optional software.