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Keithley 2460 Source Measure Unit ,100V 7A 100W SourceMeter Instrument

Categories RF Power Meter
Brand Name: Keithley
Model Number: 2460
Place of Origin: China
MOQ: 1 set
Price: Negotiation
Payment Terms: T/T
Supply Ability: in stock
Product name: SourceMeter
Response: Ultra-fast
Max Voltage: 100V
DC Power: 100W
Condition: Pre-Owned
Functions: Tested, in Full Working Conditions
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Keithley 2460 Source Measure Unit ,100V 7A 100W SourceMeter Instrument

Keithley 2460 Source Measure Unit ,100V 7A 100W SourceMeter Instrument


Description of Keithley 2460

The 2460 High Current SourceMeter® Source Measure Unit (SMU) Instrument brings advanced Touch, Test, Invent® technology right to your fingertips. It combines an innovative graphical user interface (GUI) with capacitive touchscreen technology to make testing intuitive and minimize the learning curve to help engineers and scientists learn faster, work smarter, and invent easier. With its 7A DC and pulse current capability, the 2460 is optimized for characterizing and testing high power materials, devices, and modules such as silicon carbide (SiC), gallium nitride (GaN), DC-DC converters, power MOSFETs, solar cells and panels, LEDs and lighting systems, electrochemical cells and batteries, and much more. These new capabilities, combined with Keithley’s decades of expertise in developing high precision, high accuracy SMU instruments, will make the 2460 a “go-to instrument” for high current applications in the lab and in the rack for years to come.

Key Features of Keithley 2460

  • One tightly coupled instrument that combines capabilities from analyzers, curve tracers, and I-V systems at a fraction of their cost
  • Wide coverage up to 105 V, 7 A DC/7 A pulse, 100 W max.
  • Five-inch, high resolution capacitive touchscreen GUI
  • 0.012% basic measure accuracy with 6½-digit resolution
  • Source and sink (4-quadrant) operation
  • Four “Quickset” modes for fast setup and measurements
  • Context-sensitive help function
  • Front panel input banana jacks; rear panel input mass termination screw connections
  • 2460 SCPI and TSP® scripting programming modes
  • Front-panel USB 2.0 memory I/O port for transferring data, test scripts, or test configurations

Learn Faster, Work Smarter, Invent Easier

The 2460 features a five-inch, full-color, high resolution touchscreen that supports intuitive operation, helps operators become familiar with the instrument quickly, and optimizes overall speed and productivity. A simple icon-based menu structure reduces the number of steps required to configure a test by as much as 50 percent and eliminates the cumbersome multi-­layer menu structures typically used on soft-key instruments. Built-in, context-sensitive help supports intuitive operation and minimizes the need to review a separate manual. These capabilities, combined with the 2460’s high versatility, simplify its operation in both basic and advanced measurement applications, regardless of the user’s previous experience in working with SMU instruments.


Specification of Keithley 2460


  • Max. Output Power
  • 100 W, four-quadrant source or sink operation.
  • Source Limits
  • Vsource: ±7.35 V (≤7 A range), ±10.5 V (≤5 A range), ±21 V (≤4 A range), ±105 V (≤1 A range).
  • Isource: ±7.35 A (≤7 V range), ±5.25 A (≤10 V range), ±4.2 A (≤20 V range), ±1.05 mA (≤100 V range).
  • Overrange
  • 105% of range, source and measure.
  • Regulation
  • Voltage: Line: 0.01% of range. Load: 0.01% of range + 100 µV.
  • Current: Line: 0.01% of range. Load: 0.01% of range + 100 pA.
  • Source Limits
  • Voltage Source Current Limit: Bipolar current limit set with single value. Min. 10% of range.
  • Current Source Voltage Limit: Bipolar voltage limit set with single value. Min. 10% of range.
  • V-Limit / I-Limit Accuracy
  • Add 0.3% of setting and ±0.02% of reading to base specification.
  • Overshoot
  • Voltage Source: <0.1% typical (full scale step, resistive load, 20 V range, 10 mA I-Limit.
  • Current Source: <0.1% typical (1 mA step, RLoad = 10 kΩ, 20 V range).
  • Range Change Overshoot
  • Overshoot into a fully resistive 100 kΩ load, 10 Hz to 20 MHz BW, adjacent ranges: <250 mV typical.
  • Output Settling Time
  • Time required to reach 0.1% of final value after command is processed and output slew, 20 V range, 100 mA
  • I-Limit: <200 µs typical.
  • Maximum Slew Rate
  • 1 V per µs, 100 V range, 100 mA limit into a 20 kΩ load (typical). 0.6 V per µs, 20 V range, 100 mA limit into a 20 kΩ
  • load (typical).
  • Over Voltage Protection
  • User selectable values, 5% ±0.5 V tolerance. Factory default = none.
  • Voltage Source Noise
  • 10 Hz–20 MHz (RMS): <4.5 mV typical into a resistive load.

Specifications


Voltage Specifications

1, 2


SourceMeasure 3
RangeMax. CurrentResolutionAccuracy (23° ± 5°C)
1 Year
±(% setting + volts)
Noise (RMS)
(<10 Hz)
ResolutionInput
Resistance
Accuracy (23° ± 5°C)
1 Year
±(% rdg. + volts)
200.0000 mV7.35 A5 μV0.015% + 200 µV1 µV100 nV>10 GΩ0.012% + 200 µV
2.000000 V7.35 A50 µV0.015% + 300 µV10 µV1 µV>10 GΩ0.012% + 300 µV
7.000000 V7.35 A250 µV0.015% + 2.4 mV100 µV1 µV>10 GΩ0.015% + 1 mV
10.00000 V5.25 A250 µV0.015% + 2.4 mV10.00000 V10 µV>10 GΩ0.015% + 1 mV
20.00000 V4.20 A500 µV0.015% + 2.4 mV100 µV10 µV>10 GΩ0.015% + 1 mV
100.0000 V1.05 A2.5 mV0.015% + 15 mV1 mV100 µV>10 GΩ0.015% + 5 mV

Current Specifications

1, 2, 5

SourceMeasure 3
RangeMax. VoltageResolutionAccuracy (23° ±5°C)
1 Year
±(% rdg. + amps)
Noise (RMS)
(<10 Hz)
ResolutionVoltage
Burden 6
Accuracy (23° ±5°C)
1 Year
±(% rdg. + amps)
1.000000 μA105 V50 pA0.025% + 1 nA40 pA1 pA<100 µV0.025% + 700 pA
10.00000 μA105 V500 pA0.025% + 1.5 nA40 pA10 pA<100 µV0.025% + 1 nA
100.0000 μA105 V5 nA0.020% + 15 nA100 pA100 pA<100 µV0.020% + 10 nA
1.000000 mA105 V50 nA0.020% + 150 nA1 nA1 nA<100 µV0.020% + 100 nA
10.00000 mA105 V500 nA0.020% + 1.5 μA10 nA10 nA<100 µV0.020% + 1 μA
100.0000 mA105 V5 μA0.020% + 15 μA100 nA100 nA<100 µV0.020% + 10 μA
1.000000 A105 V50 μA0.050% + 750 μA5 μA1 μA<100 µV0.050% + 500 μA
4.000000 A21 V250 μA0.100% + 3 mA25 μA1 μA<100 µV0.100% + 2.5 mA
5.000000 A10.5 V250 μA0.100% + 3 mA25 μA1 μA<100 µV0.100% + 2.5 mA
7.000000 A7.35 V500 μA0.150% + 6 mA125 μA1 μA<100 µV0.150% + 5 mA


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