Cognyte 2A7A2-S3 FalcoNet Module User Guide

June 13, 2024
Cognyte

Cognyte 2A7A2-S3 FalcoNet Module

Cognyte 2A7A2-S3 FalcoNet Module

Introduction

This document is designed to provide the user with hardware information on the FalcoNet Series 3 box solution

Series 3 Module Overview

Feature Specifications
Frequency Support 3600MHz –  40001 M   Hz
Power Output @SG TDD 29dBm
Receiver Sensitivity @SG TDD >-95dB:m
DC power In 24v to 36v

Average Power Consumption:
Full power transmission {Idle mode}| 135W (40W)
Peak Power Consumption at full power| 250W
Environmental
Operational Temperature range| 0° to 45°C
Storage Temperatures| -20 ° to 65°C
Dimensions| 563mm x 200mm x 86mm (2U half 19” drawer)
Weight| 10kg (Box Only)

Supported 5G bands

Band Frequency
Band n77 (TDD 3700) 3600-4000 MHz

Hardware Interfaces

Hardware Interfaces

Front Panel:

  1. LAN- RJ45 panel mount adaptor

  2. On/Off Switch
    Rear Panel:

  3. LAN- 2 x RJ45 panel mount adaptors

  4. Power IN – 4 way Amphenol Power In connector

  5. RF IN – QN-type connector RF in from external Gi2s or Series01 systems

  6. Antenna – QN-Type connector RF out to 5G support Antenna

  7. Sync – SMA Panel Connector for dual box Sync (connect two or three Series02/03 boxes)

  8. TRIG – MA Panel Connector for TRIG (for future use)

  9. GPS, CLOCK, 1PPS – SMA Panel Connector for GPS (for future use)

Solutions

There are two design solutions:

  1. Standalone – for desktop solution
  2. Rack mounted – for vehicle solution

Standalone

Solutions

Rack mounted

Rack mounted

Antenna Options

  • Antenna Cable LMR240-3m or Spuma400-6m depending on customer needs

  • Omni-Directional antenna with Magnetic Base

    • Frequency range – 617Mhz-4000Mhz
    • Gain – >2.5dBi (617-960Mhz), >3dBi (1700-2700Mhz) >1.5dBi (3000-4000Mhz)
    • Impedance – 50 Ohms
    • Max. input power 100 Watts
    • Polarization – Vertical
  • Directional antenna with Tripod

    • Frequency range – 617-960MHz & 1.71-2.7GHz & 3.3-4.2GHz
    • Gain – >5dBi (617-960MHz), >9dBi (1.7-2.7GHz), >10dBi (3.3-4.2GHz)
    • Impedance – 50 Ohms
    • Max input power 80w
    • Polarization – Horizontal
    • SWR <2Antenna Options

Cables

  • 3 meters LMR400
  • 6 meters SPUMA 400 only

RF Exposure Information

Single Chain and non-collocated transmitters

Band| Mode| FCC Limit (mW/cmA2)| Output AVG Power (dBm)| Antenna Gain ( dBi)| EIRP (dBm)| Duty Cycle

(%)

| EIRP (mW)| Separ.
Distance FCC (cm)
5G NR n77| QPSK| 1.00| 29.00| 13.00| 42.00| 100.0| 15848.93| 35.52

In the table below, Power and Gain are entered in units of dBm and dBi respectively and conversions to linear forms are used for the calculations.

Notes:

  1. The minimum separation distance – physical distance between the transmitting antenna and a person – is 35.52cm (14 inches)
  2. The manufacturer configures output power so that the maximum power after accounting for manufacturing tolerances, will never exceed the maximum power level measured
  3. The output power in the table above is the maximum power per chain among various channels and various modes within the specific band
  4. The antenna gain in the table above is the maximum antenna gain among various channels within the specified band

FCC Information

Supplier’s Declaration of Conformity 47 CFR § 2.1077 Compliance Information

FCC ID: 2A7A2-S3

Unique identifier: Series03 Box

Responsible party – US contact information

Cognyte Software LP

35 Pinelawn Road, Suite 204, Melville,
NY, 11747
www.cognyte.com

FCC Compliance statement subject to Part 15.105
This equipment has been tested and found to comply with the limits for a Class A digital device, pursuant to part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference when the equipment is operated in a commercial environment. This equipment generates, uses, and can radiate radio frequency energy and, if not installed and used in accordance with the instruction manual, may cause harmful interference to radio communications. Operation of this equipment in a residential area is likely to cause harmful interference in which case the user will be required to correct the interference at his own expense.

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References

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