Used TSE NTR-1000 #9241145 for sale

Manufacturer
TSE
Model
NTR-1000
ID: 9241145
Vintage: 2005
System 2005 vintage.
TSE NTR-1000 is a prober platform designed for actively testing electronic devices. This platform utilizes a robotic arm to precisely move components while electrostatic probes measure the devices' electrical characteristics. This platform allows users to accurately and quickly measure the characteristics of a variety of different components in an efficient manner. NTR-1000 consists of a chamber with two probes mounted on a robotic arm. These probes are connected to an analyzer and a digital oscilloscope which allows users to measure different device parameters. The robotic arm is designed to move the probes in a controlled, automated manner in order to accurately measure the devices' characteristics. TSE NTR-1000 is capable of measuring a variety of parameters including voltage, current, power, resistance, and capacitance. Additionally, this prober is able to test for intrinsic parameters such as gain, phase and noise, as well as the input/output characteristics of devices. The platform's software is designed to control the robotic arm and perform the tests automatically. It allows users to create custom test sequences, which can be run with different probe settings and other parameters in order to fully characterize the device. NTR-1000 includes a number of safety features that prevent potential damage to the devices or the probe arms. For example, the prober has functions that prevent simultaneous contact of the two probes, as well as a programmable voltage and current limiters to prevent damage to the devices. The platform also has a power-line monitoring system that monitors the input power and shuts down the device in the event of a power loss. Overall, TSE NTR-1000 is a precise, automated prober platform designed to quickly and accurately test the electrical characteristics of electronic devices. Its features make it an ideal choice for engineers and technicians who need to quickly measure and characterize electronic components in an efficient manner.
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