Keysight N2780B: Precision Current Probe for AC/DC Measurements
$5.536
Keysight N2780B Current Probe: Hall Effect Sensor, AC/DC, 20 mA – 700 A, 2 MHz, 600 V, 20 mm
Keysight N2780B Current Probe
Features and Specifications
 Hall Effect sensor technology
 AC/DC current measurement
 Measurement range: 20 mA to 500 A
 Bandwidth: 2 MHz
 Maximum voltage: 600 V
 Probe diameter: 20 mm
 Maximum conductor diameter: 700 A
Product Overview
The Keysight N2780B Current Probe is a high-performance current probe designed for use with oscilloscopes and other test equipment. It features a Hall Effect sensor that provides accurate and reliable current measurements over a wide frequency range. The probe is also designed to be easy to use, with a simple one-button operation.
What\’s in the Box
 Keysight N2780B Current Probe
 User manual
 Carrying case
Benefits
 Accurate and reliable current measurements
 Wide frequency range
 Easy to use
 Compact and portable
Value to the Customer
The Keysight N2780B Current Probe is a valuable tool for engineers and technicians who need to measure current in a variety of applications. It is accurate, reliable, and easy to use, making it an ideal choice for both benchtop and field testing.
Additional information
| Brand | Keysight | 
|---|
Reviews
Returns Policy
We accept returns within 30 days of delivery. To qualify, items must be unused, in their original condition, and returned with all original packaging and accessories.
Once we receive and inspect the returned item, we will process your refund within 7 business days. Refunds will be issued to the original payment method.
Please note: Shipping costs are non-refundable unless the return is due to a defective or incorrect item.
 
			         
                              
                              
                              
                              
                              
                              
                              
                              
                              
                              
                              
                              
                              
                              
                              
                              
                              
                              
                              
                              
                              
                              
                              
                              
                              
                              
                              
                              
                              
                              
                              
                              
                              
                              
                             
 










 
                
by Aisyah Rahman