Keysight 8487D Diode Power Sensor: Precision Power Measurement from 50 MHz to 50 GHz
$5.104
Keysight 8487D Diode Power Sensor: Measure power accurately from 50 MHz to 50 GHz with a range of -70 to -20 dBm. Its 2.4mm connector ensures reliable connections.
Keysight 8487D Diode Power Sensor
Product Overview
The Keysight 8487D Diode Power Sensor is a high-performance power sensor designed for accurate and reliable power measurements in a wide range of applications. With its wide frequency range of 50 MHz to 50 GHz and power range of -70 to -20 dBm, it is ideal for use in testing and characterizing RF and microwave devices and systems.
Features and Specifications
 Frequency range: 50 MHz to 50 GHz
 Power range: -70 to -20 dBm
 Accuracy: ±0.5 dB
 Resolution: 0.01 dB
 Connector: 2.4mm
 Dimensions: 1.5\” x 1.5\” x 0.5\”
 Weight: 0.5 oz
Benefits
 High accuracy and resolution for precise power measurements
 Wide frequency range for testing a variety of devices and systems
 Compact and lightweight design for easy portability
 Rugged construction for durability in harsh environments
Value to the Customer
The Keysight 8487D Diode Power Sensor provides customers with a high-quality, reliable, and versatile power measurement solution. Its wide frequency range, high accuracy, and compact design make it an ideal choice for a variety of applications, including:
 RF and microwave device testing
 System characterization
 Power monitoring
 Quality control
What\’s in the Box
 Keysight 8487D Diode Power Sensor
 2.4mm calibration adapter
 User manual
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 Olivia Martin