Keysight 8494G Programmable Step Attenuator: Precision Attenuation for RF Applications
$1,380.00
Keysight 8494G Programmable Step Attenuator: 11dB/1dB, 4GHz, SMA(f), 24VDC, 8494x Series
Keysight 8494G/002/024/060 Programmable Step Attenuator
Product Overview
The Keysight 8494G/002/024/060 Programmable Step Attenuator is a high-performance attenuator designed for use in a wide range of applications, including signal conditioning, power leveling, and gain control. It offers excellent attenuation accuracy and repeatability, making it ideal for use in demanding test and measurement applications.
Features and Specifications
 Frequency range: DC to 4 GHz
 Attenuation range: 0 to 11 dB in 1 dB steps
 Insertion loss: <1.5 dB
 Return loss: >20 dB
 VSWR: <1.5:1
 Power handling: 20 W (CW)
 Control interface: USB, GPIB, LAN
 Dimensions: 3.5\” x 2.5\” x 1.0\”
 Weight: 1.0 lb
Benefits
 High accuracy and repeatability for precise attenuation control
 Wide frequency range for use in a variety of applications
 Low insertion loss and high return loss for minimal signal distortion
 High power handling for use in demanding applications
 Easy-to-use control interface for quick and easy setup
Value to the Customer
The Keysight 8494G/002/024/060 Programmable Step Attenuator offers a number of benefits to customers, including:
 Improved signal quality and accuracy
 Reduced test time and cost
 Increased productivity and efficiency
 Enhanced reliability and durability
Additional information
| Brand | Keysight  | 
		
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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 Jason Lee