Keithley 2182A/E Bench Digital Multimeter

Tehnička dokumentacija
Tehnički podaci
Proizvođač
KeithleyMultimeter Type
Bench
Product Type
Multimeter
Model Number
2182A/E
Display Type
Digital
Functions Measured
Temperature, Resistance, DC Voltage
Maximum DC Voltage Measurement
10V
True RMS
No
DC Voltage Accuracy
±0.005% rdg + 4 Digits
DC Voltage Resolution
1 μV
Maximum Frequency
400Hz
Power Source
Mains
Minimum Operating Temperature
0°C
Maximum Operating Temperature
50°C
Width
213 mm
Height
89mm
Length
370mm
Weight
5kg
Standards/Approvals
No
Zemlja podrijetla
China
Detalji o proizvodu
Keithley 2182A Nanovoltmeter
The two-channel 2182A is optimised for making stable, low noise voltage measurements and for characterising low-resistance materials reliably and repeatedly. It provides higher measurement speed and better noise performance than alternative low voltage measurement solutions. The ability to select from a wide range of response times facilitates optimising speed/noise trade-offs. Low noise levels are assured over a wide range of useful response times, typically 15nV p-p noise at 1s response time and 40-50nV p-p noise at 60ms.
Keithley
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Tehnička dokumentacija
Tehnički podaci
Proizvođač
KeithleyMultimeter Type
Bench
Product Type
Multimeter
Model Number
2182A/E
Display Type
Digital
Functions Measured
Temperature, Resistance, DC Voltage
Maximum DC Voltage Measurement
10V
True RMS
No
DC Voltage Accuracy
±0.005% rdg + 4 Digits
DC Voltage Resolution
1 μV
Maximum Frequency
400Hz
Power Source
Mains
Minimum Operating Temperature
0°C
Maximum Operating Temperature
50°C
Width
213 mm
Height
89mm
Length
370mm
Weight
5kg
Standards/Approvals
No
Zemlja podrijetla
China
Detalji o proizvodu
Keithley 2182A Nanovoltmeter
The two-channel 2182A is optimised for making stable, low noise voltage measurements and for characterising low-resistance materials reliably and repeatedly. It provides higher measurement speed and better noise performance than alternative low voltage measurement solutions. The ability to select from a wide range of response times facilitates optimising speed/noise trade-offs. Low noise levels are assured over a wide range of useful response times, typically 15nV p-p noise at 1s response time and 40-50nV p-p noise at 60ms.