Search for a product

F1423

Differential Input, Single-ended Output Amplifier

Datasheet

Product Details

0
1
2
0thubnail
1thubnail
2thubnail
  • Broadband 600MHz to 3000MHz
  • 13.1dB typical gain at 2000MHz
  • 5.1dBNF at 2000MHz
  • +41.8dBm OIP3 at 2000MHz
  • +21.5dBm output P1dB at 2000MHz
  • Single 5V supply voltage
  • ICC = 120mA
  • Up to +105 °C TCASE operating temperature
  • 50Ω differential input impedance
  • 50Ω single-ended output impedance
  • Positive gain slope for board loss compensation
  • Standby mode for power savings

The F1423 RF amplifier provides 13.1dB gain with +41.8dBm OIP3 and 5.1dB noise figure at 2000MHz. This device uses a single 5V supply and 120mA of ICC. The F1423 is packaged in a 4mm x 4mm, 24-VFQFPN package with 50Ω differential RF input and 50Ω single-ended RF output impedances for ease of integration into the signal path.

  • Multi-mode, Multi-carrier Transmitters
  • GSM850/900 Base Stations
  • PCS1900 Base Stations
  • DCS1800 Base Stations
  • WiMAX and LTE Base Stations
  • UMTS/WCDMA 3G Base Stations
  • PHS/PAS Base Stations
  • Public Safety Infrastructure

Design & Development (Boards and Kit)

Board Image

Evaluation Board for F1423 Differential Input, Single-ended Output Amplifier

The F1423EVB is a fully-populated evaluation board which allows the customer to easily evaluate the F1423 differential input amplifier. There are four options available to configure the board as differential, single-end and High/Middle or Low-band. The on-board balun and jumper support RF single-ended connections and provide flexibility for band configuration.

Filters
to

Part Numbers

F1423NBGI

View Datasheet
View Block Diagram
View Details

F1423NBGI8

View Datasheet
View Block Diagram
View Details

Do you have more questions?

Have questions or need expert solutions? Connect with Axiro’s team for tailored semiconductor innovations that power next-generation connectivity, computing, and intelligence. We're here to help you explore possibilities, optimize performance, and drive technological advancements. Reach out today!