Used KEITHLEY 2612A #9312724 for sale
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KEITHLEY 2612A is a high-performance electronic test equipment designed to provide precise and repeatable measurements of resistance, current, and voltage in a variety of applications. It is ideal for challenging applications such as very low resistance measurements in thermometry, material testing, and high-precision current sourcing. 2612A is a dual-channel source/measure system. The source channels are capable of sourcing up to 200V, 10mA for DCV and DCI measurements. It has a 4-wire resistance range of 10 µΩ - 10M Ω. The measure channel is capable of measuring voltage up to 200V DCV and current up to 0.001-2A DCI. The measure functions have a resolution of 5½ digits and a basic accuracy of 0.012%. KEITHLEY 2612A can autonomously sweep both channels at up to 1000 points per second. 2612A offers a variety of overload protection settings such as open-circuit protection, over-current protection, over-voltage protection, and source-Volt/Amp-Comparator (SVAC). These can be set for each channel, making it easy to apply settings for different types of measurements. Additionally, KEITHLEY 2612A includes a built-in test sequencer which allows for more complex measurement setups. 2612A is controlled with an intuitive graphical user interface (GUI). It has a highly configurable display layout which allows for quick and convenient access to all available functions. KEITHLEY 2612A has multiple I/O connectivity options including a built-in GPIB and USB interfaces. Additionally, it has a rear-panel option slot which supports 28 different driver/detector cards. These cards expand 2612A's capabilities to include six- and eight-wire measurements; pulse and frequency measurements; eight digital I/O lines; and isolated analog output. KEITHLEY 2612A from KEITHLEY is a robust and reliable turn-key solution for all types of resistance, current, and voltage measurements. With its powerful features and user-friendly interface, it provides an ideal solution for a wide range of test and measurement applications.
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