Keithley 2430-C Pulse SourceMeter, 100V, 10A, 1kW w/ Contact Check

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Manufactured by: Keithley

Category: SourceMeters

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Keithley 2430-C 1kW Pulse SourceMeter

The Keithley 2430-C combines high-performance DC sourcing with a unique 1kW pulse mode, making it an indispensable tool for testing high-power devices. With capabilities to source and measure up to 10A at 100V in pulse mode, it is specifically designed for applications such as evaluating the breakdown voltage in components like multilayer varistors (MLVs) and semiconductor devices.

Key Features:

    • 1kW Source Capability: Achieve pulsed output with an impressive upper current limit of 10A, enabling comprehensive testing and analysis.
    • High-Speed Testing: The Keithley 2430-C offers pulsing options from individual pulses to pulse trains with widths of up to 5ms, enhancing testing flexibility.
    • Space-Saving Design: Packaged in a half-rack unit, this SourceMeter optimizes your bench space while delivering powerful performance.
    • Contact Check Function: Complete contact verification in just 350 microseconds, ensuring measurement integrity by eliminating errors from connection issues.
    • Programmable Sequencer: Store up to 100 tests in built-in Source Memory for efficient, repeatable production throughput.
    • Rugged Reliability: With a mean time between failure (MTBF) of 75,000 hours, this device is engineered for continuous operation in demanding environments.
    • Digital I/O Capability: Facilitates fast component binning or integration with component handlers for streamlined operation.
    • Precision Measurement: Enjoy a basic accuracy of 0.012% with 5-1/2-digit resolution, vital for high-stakes testing requirements.

Specifications:

The Keithley 2430-C is not just about raw power; it integrates advanced features that enhance productivity and reliability in production testing environments. Its compact structure, coupled with sophisticated measurement functionalities, makes it a top choice for engineers and technicians looking to maximize testing efficiency without compromising on performance.

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