• Part: IDTF1192NLGI
  • Description: RF Dual Wideband Gain-Settable Downconverting Mixer
  • Manufacturer: IDT
  • Size: 1.93 MB
Download IDTF1192NLGI Datasheet PDF
IDT
IDTF1192NLGI
IDTF1192NLGI is RF Dual Wideband Gain-Settable Downconverting Mixer manufactured by IDT.
DESCRIPTION This document describes the specifications for the IDTF1192 Dual Wideband, Gain-Settable, Zero Distortion TM Flat-Noise TM, RF to IF Downconverting Mixer. The F1192 offers very low power consumption with excellent linearity. In addition to this and the four dynamically adjustable gain settings, the F1192 performance is exceptional across an extremely broad range of RF and IF frequencies. All of this makes it ideal for myriad applications including: - 2G/3G/4G/5G/Multimode Remote Radio Units - High order MIMO systems, µcells, picocells, DAS - Point to Point µWave Backhaul systems - Broadband Repeaters - Public Safety Infrastructure - Any radio system operating between 400 MHz and 4000 MHz Features - RF range: 400MHz to 3800MHz - LO range: 400MHz to 3600MHz - IF Range: 50MHz to 600MHz - Dual Path for MIMO - 4 Gain Settings; 11d B, 8d B, 5d B, 2d B - 2 bit gain step control - Ideal for Multi-Carrier Systems - +35d Bm OIP3 - Low Noise Figure at any gain setting via IDT’s Flat Noise TM technology - Z = 200 Ω IF balanced, 50 Ω RF, 50 Ω LO single ended - All internally matched. Single BOM for all RF, LO and IF frequencies - 4 mm x 4 mm, 24-pin TQFN package - Independent Path Standby mode - 75 nsec settling for gain adjustment - VCC = 3.3V, 835 m W, 620 m W (low power mode) PETITIVE ADVANTAGE F1192 offers maximum performance and flexibility at minimum power consumption. The unique and patented settable-gain feature allows it to be used in a very wide variety of radiocard applications, even allowing for dynamic adjustment of gain to maximize performance on the fly. The extremely wide RF and IF bandwidths are achieved with a fixed BOM with all internal matching. The device can function with as little as -6 d Bm LO power and with independent channel shutdown modes for ease of integration into high order TDD MIMO...