KEITHLEY 6485 DRIVER

This interface combines six independent selectable trigger lines on a single connector for simple, direct control over all instruments in a system. The ‘s 10fA resolution and superior sensitivity make it well suited for characterizing low current phenomena, while its 20mA range lets it measure currents high enough for applications such as measuring mA sensor loops. For research on light-sensitive components, such as measuring the dark currents of photodiodes, the front panel display can be switched off to avoid introducing light that could significantly reduce the accuracy of the results. With eight current measurement ranges and high speed autoranging, this costeffective instrument can measure currents from 20fA to 20mA, taking measurements at speeds up to readings per second. This high overload protection and a robust design let the withstand abusive overflows.

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This output allows the to transmit measurement results to devices like DMMs, data acquisition boards, oscilloscopes, or strip chart recorders.

This interface combines six independent selectable trigger lines on a single connector for simple, 648 control over all instruments in a system. With eight current measurement ranges and high speed autoranging, this costeffective instrument can measure currents from 20fA to 20mA, taking measurements at speeds up to readings per second.

Keithley Picoammeter – Instrument Driver – National Instruments

The low voltage burden makes the function much more like an ideal ammeter than a DMM, so it can make current measurements with high accuracy, even in circuits with very low source voltages. Built-In Trigger Link Interface The Trigger Link interface simplifies synchronizing the with other instruments and voltage sources. This high overload protection and a robust design let the withstand abusive overflows.

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These interfaces make it easy to integrate the into automated test and measurement systems. Data Sheet KB.

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With a price that’s comparable to a general purpose DMM, the makes picoamp-level measurements affordable for virtually any laboratory or production floor.

The low voltage burden makes the function much more like an ideal ammeter than a DMM, so it can make current measurements with high accuracy, even in circuits with very low source voltages Scaled Voltage Analog Output This output allows the to transmit measurement results to devices like DMMs, data acquisition boards, oscilloscopes, or strip chart recorders. For research on light-sensitive components, such as measuring the dark currents of photodiodes, the front panel display can be switched off to avoid introducing light that could significantly reduce the accuracy of the results.

Although it employs the latest current measurement technology, it is significantly less expensive than other instruments that perform similar functions, such as optical power meters, competitive picoammeters, or user-designed solutions.

Keithley 6485

The can calculate resistance by dividing an externally sourced voltage value by the measured current. While DMMs typically employ shunt ammeter circuitry to measure current, the is a feedback picoammeter.

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One-Touch Front Panel Design Functions can be configured easily with the push of a button, without complicated function menus. The Trigger Link interface simplifies synchronizing the with other instruments and voltage sources. REL and LOG Functions The can make relative readings with respect to a baseline value or display the logarithm of the absolute value of the measured current. The can make relative readings with respect to a baseline value or display the logarithm of the absolute value kethley the measured current.

The Keithley Picoammeter combines Keithley’s expertise in sensitive current measurement instrumentation with enhanced speed and a robust design. Resistance Calculations The can calculate resistance by dividing an externally sourced voltage value by the measured keihley. Functions can be configured easily with the push of a button, without complicated function menus. View Cart My Account The ‘s 10fA resolution and superior sensitivity make it well suited for characterizing low current phenomena, while its 20mA range lets it measure currents high enough for applications such as measuring mA sensor loops.