Keithley Series SMU instruments offer four-quadrant precision voltage and . List Price. US $7, Configure & Quote. TouchscreenChannelsMax. Keithley’s Model High-Voltage SourceMeter is designed specifically for test applications that demand tightly coupled sourcing and measurement. Keithley High Voltage SourceMeter (SMU) Instrument with GPIB Interface – at the Test Equipment Depot.
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Model Description Price It simplifies the test process itself by eliminating keithlsy of the complex synchronization and connection issues associated with using multiple instruments. It is designed for reliable operation in non-stop production environments. Advantages of a Tightly Integrated Instrument By linking source and measurement circuitry in a single unit, the offers a variety of advantages over systems configured with separate source keithely measurement instruments.
The tightly coupled nature of a SourceMeter SMU instrument provides many advantages over solutions configured from separate instruments, such as a precision power supply and a digital multimeter.
Providing the finest test equipment solutions since 1992
The power source characteristics include low noise, precision, and readback. In the second and fourth quadrants they operate as a sync, dissipating power internally.
Data Sheet KB. Both the current and voltage source are programmable with readback to help maximize device measurement integrity. Sweep solutions greatly accelerate testing with automation hooks. And its compact half-rack size conserves precious “real estate” in the keuthley rack or bench.
Other capabilities of the interface include: In the first and third quadrants they operate as a source, delivering power to a load. Moves from the start level to the stop level in equal linear steps – Logarithmic Staircase Sweep: The result is a compact, single-channel, DC parametric tester. In operation, this instrument can act as a voltage source, a current source, a voltage meter, a current meter, and an ohmmeter. If the readback reaches a programmed compliance kelthley, then the source is clamped at the limit, providing fault protection.
For example, it minimizes the time required for test station development, setup, and maintenance, while lowering the overall cost of system ownership.
Manufacturers of components and modules for the communications, semiconductor, computer, automotive, and medical industries will find the invaluable for a wide range of characterization and production test applications.
The 6-wire keeithley technique:. All SourceMeter SMU instruments include Keithley’s unique Trigger Link interface which provides high-speed, seamless communications with many of Keithley’s other instruments.
Other capabilities of the interface include:. Three basic sweep waveforms are provided that can be programmed for single event or continuous operation.
To provide the throughput demanded by production applications, the Keitnley SMU instrument offers many built-in features that allow it to run complex test sequences without computer control or GPIB communications slowing things down. Voltage, current, and resistance can be measured during source or sync operation.
View Cart My Account Done on a log scale with a specified number of steps per decade. Unique 6-Wire Ohms Technique SourceMeter SMU instruments can make standard 4-wire, split Kelvin, and 6-wire, guarded ohms measurements and can be configured for either the constant current or constant voltage method. Standard and Custom Sweeps Sweep solutions keiithley accelerate testing with automation hooks. SourceMeter SMU instruments can make standard 4-wire, split Kelvin, and 6-wire, guarded ohms measurements and can be configured for either the constant current or constant voltage method.
By linking source and measurement circuitry in a single unit, the offers a variety of advantages over systems configured with separate source and measurement instruments.
Keithley SourceMeter – Instrument Driver – National Instruments
The 6-wire ohms technique: It sources voltage or current while making measurements without needing to change connections. Allows construction of special sweeps by specifying the number of measurement points and the source level at each point. For example, it provides faster test times by reducing GPIB traffic and simplifies the remote programming interface. The multimeter capabilities include high repeatability and low noise.
Done on a log scale with a specified ekithley of steps per decade – Custom Sweep: Moves from the start level to the stop level in equal linear steps.
It also protects the device under test from damage due to accidental overloads, thermal runaway, etc.