Products from Keithley
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Keithley 2810
The Keithley model 2810 RF Vector Signal Analyzer combines complex signal analysis capabilities with high performance and unprecedented ease of use. It is designed to address a wide range of measurement needs for wireless devices,...
Keithley 2502
Model 2500 and Model 2502 Photodiode Meters are designed to increase the throughput of Keithley’s L-I-V (light-current-voltage) test system for production testing of laser diode modules (LDMs). Developed in close cooperation with leading...
Keithley 486
Two selectable voltage ranges, 500 V range with 10 mV resolution and 50 V range with 1 mV resolution, current from 10 fA to 2 mA, programmable displaying intervals from 10 ms to 1000 s, 2 LED displays for voltage and current, GPIB...
Keithley 2910
The Model 2910 RF Vector Signal Generator is the first in a series of Keithley RF instruments that sets a new price/performance standard. It s priced significantly less than instruments or systems with comparable levels of functions and...
Keithley 2800
RF power analyzer, measures channel power of wireless communications signals (i.e. GSM, CDMA), frequency with 1 Hz resolution.
Keithley 3401
1. Basic Modes of Operation
The 340x generator may be set in one of four available modes, Pulse, Pattern, Burst and External Width.
Pulse Mode delivers a single pulse per trigger event to the outputs. The pulse is programmable in delay...
Keithley 7066
The Model 7066 Relay Switch Card provides 10 separate channels using 10 two-pole relays. As shipped, the switches are configured for double-pole single-throw (DPST), normally open (NO) operation. Features Quick disconnect terminal blocks...
Keithley 480
Preiswertes und leicht zu handhabendes Instrument zur Messung von DC-Spannung im Bereich von 1 pA (2 nA Vollbereich) bis 2 mA mit 3 ½ digits Genauigkeit, 7 wählbare Messbereiche, analoger Ausgang, LED-Anzeige, Datenblatt a. A.
Keithley 7064
The Keithley Model 7064 is a 20-Channel Low-Voltage Scanner Card. The card is designed to introduce a minimum of voltage offset error (less than 1µV differential thermal offset from input to output with copper leads) for sensitive test...