Electro Metrics Em-7844 Rf Tunable Notch Filter Rejection Network, 375-1000 Mhz

US $1,499.95

  • Valencia, California, United States
  • Jan 29th
Just in from a local aerospace company sale comes this surplus Electro metrics EM-7844 RF Tunable Notch Filter Rejection Network, 375-1000 MHZ EM-7844 Rejection Network, 375MHz-1000 MHz The EM-7844 Tunable Notch Filter Network is a tunable narrowband rejection filter operating from 375 MHz to 1 GHz. It is used whenever high rejection (attenuation) is required at one select frequency and low attenuation for the other frequencies. The high power rating of the EM-7844 permits its use for measurements on high power transmitters, providing the voltage input level is carefully regulated. The EM-7844 covers from 375 MHz to 1 GHz in two (2) frequency bands. Band 1 covers from 375 MHz to 700 MHz, while Band 2 covers 700 MHz to 1 GHz. Each band uses a series of tuning networks comprising a variable capacitor plus assorted fixed resistors and inductors. The EM-7844 is designed for bench top operation.   Specifications Electrical Frequency Range: 375 MHz to 1 GHz Maximum Voltage: 71 Vrms at the tuned frequency                                     20 Vrms at all other frequencies Number of Tuning Bands: 2      Band 1: 375 - 700 MHz      Band 2: 700 MHz - 1 GHz Minimum Rejection: 50 dB Connectors: Type N, female Location // 10-3
Condition:
Used: An item that has been used previously. The item may have some signs of cosmetic wear, but is fully operational and functions as intended. This item may be a floor model or store return that has been used. See the seller’s listing for full details and description of any imperfections. ...
Brand Electrometrics
MPN EM-7844
Model Tunable Notch Filter Rejection
Country/Region of Manufacture United States

Directions

Similar products from Coaxical Attenuators & Attenuator Sets

People who viewed this item also vieved

By clicking "Accept All Cookies", you agree to the storing of cookies on your device to enhance site navigation, analyze site usage, and assist in our marketing efforts.

Accept All Cookies