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2AO3N-TH39P6ERPIRF-560

Dedrone Holdings, Inc.
RF-560 - FCC ID 2AO3N-TH39P6ERPI - Dedrone Holdings, Inc.
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Application Details

Equipment Class
CSR - Scanning Receiver
Date of Grant
Sep 21, 2023
Application Purpose
Original Equipment
Date of Application
Sep 20, 2023
Equipment Note
RF-560
Frequency Range
902.00000000 - 928.00000000
Company
Dedrone Holdings, Inc.
Country
United States

Documents & Files

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Users Manual

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Attestation Statements

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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Test Report

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Test Setup Photos

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Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

ENGLISH IM-Inst-RF560en v0.2 RF-560 INSTALLATION MANUAL Long range, cloud-ready, RF-based localization of drones and their remote controls Dedrone 2 v0.2 IM-Inst-RF560en Legal provisions The information contained in these documents is the property of Dedrone. Any publication, whether in whole or in part, requires prior written approval by Dedrone. Internal reproduction used solely for the purpose of product evaluation or other proper use is allowed and does not require prior approval. The declaration of conformity is available on request at [email protected]. Copyright This manual is the intellectual property of Dedrone Holding, Inc and is protected by copyright. All rights reserved. Dedrone Holding, Inc. 45662 Terminal Dr. Sterling, VA 20166 USA Fon +1 703 2608051 Email [email protected] ©2023 Dedrone. All rights reserved. IM-Inst-RF560en v0.2 Dedrone 3 Content 1 Safety ..............................................................................................................................................4 1.1 Symbols .................................................................................................................................................................4 1.2 Intended use .........................................................................................................................................................4 1.3 Safety information ..............................................................................................................................................5 2 The RF-560 .....................................................................................................................................6 3 Unpacking .......................................................................................................................................6 4 Scope of delivery ...........................................................................................................................7 5 Select the mounting place ..........................................................................................................7 5.1 Mounting location ...............................................................................................................................................7 6.3 Mounting surface ................................................................................................................................................8 6.4 Mounting orientation .........................................................................................................................................8 6.5 Overvoltage protection .....................................................................................................................................8 6 Installation .....................................................................................................................................8 6.1 Power supply ........................................................................................................................................................8 6.2 LAN cable requirements .....................................................................................................................................9 6.6 Cable preparation for LAN connection ............................................................................................................9 6.7 Mount the sensor ...............................................................................................................................................10 6.8 Connect the antennas .......................................................................................................................................11 6.8.1 Connect the omnidirectional antennas ....................................................................................................11 6.8.2 Install and connect the omnidirectional antennas ................................................................................11 6.9 Power the sensor ...............................................................................................................................................12 7 Connect the RF-560 to the DedroneTracker ..........................................................................13 7.1 Connect and Configure the RF-560 to the Dedrone Cloud........................................................................13 7.2 Integrate the RF-560 in your local DedroneTracker System .....................................................................14 8 Cleaning ........................................................................................................................................15 9 Decommissioning .......................................................................................................................15 9.1 Shut down the RF-560 .....................................................................................................................................15 9.2 Dismantling ........................................................................................................................................................15 9.3 Disposal ...............................................................................................................................................................15 10 Technical data ..............................................................................................................................16 SafetyDedrone 4 v0.2 IM-Inst-RF560en 1 Safety 1.1 Symbols SymbolExplanation Indicates a situation which, if not avoided, can result in property damage Information that is important for a specific goal, but is not safety-relevant Indicates a requirement for meeting a specific goal Desired result A problem that might occur Action to resolve a problem 1.2 Intended use The RF-560 is a passive, network-attached sensor for the detection and direction finding of radio frequenci…

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Attestation Statements

U.S. Agent Designation for Service of Process (Applicant is Both Grantee and U.S. Agent) TO: Kiwa Nehterland B.V. Wilmersdorf 50 7327 AC Apeldoom Postbus 137 7300 AC Apeldoom Netherlands ATTENTION: FCC Certification - 47 CFR section 2.911(d)(7) Information This letter is to confirm that the Applicant will also serve as the U.S. Agent for Service of Process as required by 47 CFR 2.911(d)(7). The Applicant acknowledges that they must maintain an agent for no less than one year after terminating all marketing and importation OR the conclusion of any Commission-related proceeding involving the equipment. The Applicant further acknowledges their responsibility to inform the FCC whenever the Designated U.S. Agent information changes. Applicant & Agent Company name: FRN: Grantee Code: Contact person name: Agent name: Street Address: ZIP/City/State Telephone number: Email address: Signature Contact person: Date: Signature Agent: Date: Dedrone Holdings, Inc. 0026107458 2AO3N Robin H. Jaeger Dedrone Holdings, Inc. 45662 Terminal Dr, Suite 110 20166, Sterling, Virginia +1 703 2608051 [email protected] 09/14/2023 09/14/2023

Attestation Statements

Certification Application Attestation Statement Dedrone Holdings, Inc. 45662 Terminal Dr, Suite 110 20166, Sterling Virginia, USA FRN: 0026107458 Subject: FCC ID: 2AO3N-TH39P6ERPI To Whom It May Concern: Statement for 47 CFR section 2.911(d)(5)(i) Dedrone Holdings, Inc. certifies that as of the date of the application the equipment for which authorization is sought is not “covered” equipment prohibited from receiving an equipment authorization pursuant to section 2.903 of the FCC rules. If the equipment for which the applicant seeks authorization is produced by any of the entities identified on the current Covered List, including affiliates or subsidiaries of the named companies, the applicant must include an explanation on why the equipment is not “covered” equipment. Statement for 47 CFR section 2.911(d)(5)(ii) Dedrone Holdings, Inc. certifies that, as of the date of the filing of this application, the applicant is not identified on the Covered List as an entity producing “covered” equipment. Date: City: Name: Function: Telephone number: Email address: Signature: 7/25/2023 Sterling Robin H. Jaeger Compliance Engineer +1 703 2608051 [email protected]

Cover Letter(s)

7layers GmbH Product Certification Department Borsigstraße 11 D 40880 Ratingen Declaration of Authorization To Whom It May Concern: Please be advised that we, Dedrone Holdings, Inc., authorize the following person from 7layers GmbH: ◦Mr. Patrick Lomax to act on our behalf in all matters relating to application for equipment authorization, including the signing of all documents to these matters an in-country testing in the following countries: ◦USA ◦Canada 7layers GmbH has our permission to use our technical documents for the approvals for the following named device: Product descriptionRF Scanner for the detection of radio frequencies and Wi-Fi signals Brand nameDedrone RF-Sensor Type designationRF-560 Unless future correspondence from us please extend your full cooperation to 7layers GmbH regarding matters to the above mentioned products to 6 months after the signatory date of this authorization. Contact personRobin H. Jaeger Position in the companyCompliance Engineer Date of signatory06/01/2023 ____________________________ Signatory (Signature of the applicant)

Cover Letter(s)

FCC, Request for non-disclosure Date: 16-Jul-10 RF_501, Issue 6 Page 1 of 1 Company Name: Dedron e Holdings, Inc. Address : 1099 Folsom Street City: San Francisco, 94103 Country: California, United States To : Telefication B.V., Dept. FCC TCB Edisonstraat 12A 6902 PK ZEVENAAR The Netherlands Subject: Request for confidentiality FCC ID: 2AO3N-TH39P6ERPI Reference number: ###### Dear FCC TCB, 1. Long-T erm Confidentiality Pursuant to 47 CFR Section 0.459(a) & (b), we hereby requests non-disclosure and confidential treatment of the following materials submitted in support of FCC certification application: Bill(s) of Material Block Diagrams Operational Description Schematic Diagrams Tune-up Procedure Above materials contain secrets, proprietary and technical information, which would customarily be guarded from competitors under 47 CFR, section 0.457(d)(2). Disclosure or publication or any portion of this company confidential material to other parties could cause substantial competitive harm and provide unjustified benefits for competitors. 2. Short-Ter m Confidentiality (STC) Pursuant to Public Notice DA 04-1705 of the Commission’s policy, in order to comply with the marketing regulations in 47 CFR §2.803 and the importation rules in 47 CFR §2.1204, a pplicant hereby requests Short-Term Confidential treatment of the following materials (note 1): Internal Photos User’s Manual Test Set-up Photos External Photos Justification: Above materials contain secrets, proprietary and technical information. Disclosure or publication or any portion of this company confidential material to other parties could cause substantial competitive harm and provide unjustified benefits for competitors. Planne d Release Date STC: 180 days (notes 2, 3, 4, 5) Date : 09.03.2023 Name and signature of applicant: Patrick Lomax Notes: 1) A document or type of document can only have ONE type of confidentiality! 2) Short-Term confidentiality is in principle for 45 days from date of grant; it can be extended max 3 times (total time 180 days max.)! 3) FCC must be informed when marketing begins earlier. 4) Release takes place automatically thus extension must be requested in time. Telefication does not remind you of this! 5) Request for extension or for release must be received by Telefication at least 7 days before date of actual marketing or before expiration of the STC period

Cover Letter(s)

7layers GmbH Date: 08/01/2023 Product Certification Department Borsigstraße 11 40880 Ratingen, Germany FCC ID: 2AO3N-TH39P6ERPI Subject: Declaration of compliance to the requirements of §15.121 We, Dedrone Holdings, Inc., declare that this scanning receiver is incapable of operating (tuning), or readily being altered by the users to operate, within the frequency bands allocated to the Cellular Radiotelephone Service in part 22 of this chapter (cellular telephone bands). This device will not be able to receive transmissions in cellular telephone bands by means of clipping the leads of, or installing a simple component such as a diode, resistor or jumper wire; replacing a plug-in semiconductorchip; or programming a semiconductor chip using special access codes or an external device, such as a personal computer. This device is also incapable of converting digital cellular communication transmissions to analog voice audio. This device is designed so that the tuning, control and filtering circuitry is inaccessible. Any attempts to modify the equipment to receive transmissions from Cellular Radiotelephone Service will render the receiver inoperable. This scanning receiver rejects any signals from Cellular Radiotelphone Service fequency bands that are 38 dB or lower based upon 12 dB SINAD measurement. We are aware that the modification of this device to receive transmissions from Cellular Radiotelephone Service frequency bands will be considered to constitute manufacture of such equipment. This includes any individual, individuals, entity or organization that modifies one or more scanners. Any modification to receive transmissions form Cellular Radiotelephone Service frequency bands voids the certification of the scanning receiver, regardless of the date of manufacture of the original unit. If you have any questions, please feel free to contact me. Thank you. Sincerely, _______________________________________ Robin H. Jaeger, Compliance Engineer

External Photos

External Photos Front Rear Bottom Side Top Side Left SideRight Side

ID Label/Location Info

LABEL AND LOCATION RF-560

Internal Photos

Internal Photos RF-560

Test Report

ANTENNA SPECIFICATION Top side GNSS 1575.42 MHz Antenna: -A.40.A.301111 CH A 2280-2600 MHz 5180-5875 MHz Antenna: -apa-l2458-08a -HGV-2458-03U-NM A1 433.05-434.79 MHz 860.00-928.00 MHz Antenna: -OMB.433.B03F21 -OMB.868.B05F21 -OMB.915.B03F21 A2 433.05-434.79 MHz 860.00-928.00 MHz Antenna: -OMB.433.B03F21 -OMB.868.B05F21 -OMB.915.B03F21 CH B 2280-2600 MHz 5180-5875 MHz Antenna: -apa-l2458-08a -aoa-2458-78am Bottom side Mobile Communication LTE Band USA:B2, B5, B12, B14, B66 EU:B1, B3, B20 Antenna -TLS.01.1F21 SPE-16-8-019-F Barracuda Part No: OMB.433.B03F21 Description: Barracuda - 433MHz 3dBi Omni Directional Outdoor Antenna with N Type Female Connector, U-Bolt, 523mm Length Features: Omni-Directional Radiation Pattern Collinear 3dBi Peak gain, 433 MHz Fiberglass Housing Robust design for all weather operation IP65 Waterproof Length: 553mm, Weight: 350g N type Female connector Wall/Pole Mount bracket included RoHS & Reach Compliant 2 SPE-16-8-019-F www.taoglas.com Taoglas makes no warranties based on the accuracy or completeness of the contents of this document and reserves the right to make changes to specifications and product descriptions at any time without notice. Taoglas reserves all rights to this document and the information contained herein. Reproduction, use or disclosure to third parties without express permission is strictly prohibited. 1. Introduction 3 2. Specifications 4 3. Antenna Characteristics 5 4. Radiation Patterns 7 5. Mechanical Drawing 11 6. Packaging 12 7. Antenna Installation Guide 13 Changelog 14 3 SPE-16-8-019-F www.taoglas.com The OMB.433.B03F21 is a fiberglass Omni-directional outdoor antenna, operating in the 433 MHz ISM band. The antenna is designed for applications such as metering, industrial / environmental monitoring, remote asset monitoring, and mesh network applications. The OMB.433 operates at 433MHz, one of the most widely used license free ISM bands, with a 3dBi peak gain. The omni-directional antenna radiates uniformly in the azimuth. This collinear design characteristic provides the best performance, giving optimized coverage and therefore longer range in the horizontal plane over 360 degrees, thus minimizing the amount of nodes needed for a mesh network. The UV resistant fiberglass housing enables the OMB antenna to be utilized in all kinds of harsh environments, making it more robust and safer than traditional whip antennas. It can be connected directly to the access point or telemetry unit, or can be mounted on wall or device surface via the N-type connector. Another larger model, the OMB.433.B06F21 with 6dBi peak gain, also working in the 433MHz ISM band, is also available. Gain and connector customizable, subject to MOQ. 1. Introduction 1. Introduction 1. Introduction 1. Introduction 1. Introduction 1. Introduction 1. Introduction 1. Introduction 4 SPE-16-8-019-F www.taoglas.com Electrical Frequency (MHz) 433 Antenna Type Collinear Dipole Array Peak Gain 3 dB Polarization Vertical Impedance 50 ohms Max Input Power 100 watts VSWR 1.5:1 Radiation Omni-Directional Vertical Beamwidth 60 Deg Horizontal Beamwidth 360 Deg Internal Material Copper Connector N Type Female Mechanical Length 553 mm (Max) Radome Diameter 24mm Bracket Dimension 70 x 53mm (Max) Antenna Weight 350g Mounting Accessories Weight 70g Application Indoor/Outdoor Radome Material White Fiberglass Bracket Material Aluminium Mount Style Pole Mount/Wall Mount U Bolt Stainless Steel Wind Resistance >150mph (>241km/h) Waterproof IP65 Environmental Storage Temperature -40°C to +85°C Operating Temperature -40°C to +85°C Operating Humidity 10%~90% non-condensing Storage Humidity 5%~90% non-condensing 2. Specifications 3. Antenna Characteristics2. Specifications 3. Antenna Characteristics 4. Antenna Radiation Patterns3. Antenna Characteristics2. Specifications 3. Antenna Characteristics2. Specifications 3. Antenna Characteristics 4. Antenna Radiation Patterns3. Antenna Characteristics 4. Antenna Radiation Patterns 4. Antenna Radiation Patterns3. Antenna Characteristics 4. Antenna Radiation Patterns3. Antenna Characteristics2. Specifications 5 SPE-16-8-019-F www.taoglas.com 3.1 ISM 433 Return Loss Efficiency -30 -25 -20 -15 -10 -5 0 420425430435440445450 (MHz) OMB.433 (dB) 0 10 20 30 40 50 60 70 80 90 100 425426427428429430431432433434435436437438439440 (%) (MHz) OMB.433.B03F21 3. Antenna Characteristics 4. Antenna Radiation Patterns3. Antenna Characteristics 4. Antenna Radiation Patterns 4. Antenna Radiation Patterns3. Antenna Characteristics 4. Antenna Radiation Patterns3. Antenna Characteristics 4. Antenna Radiation Patterns 4. Antenna Radiation Patterns 4. Antenna Radiation Patterns 4. Antenna Radiation Patterns3. Antenna Characteristics 4. Antenna Radiation Patterns3. Antenna Characteristics 6 SPE-16-8-019-F www.taoglas.com Average Gain Peak Gain -10 -5 0 5 10 425426427428429430431432433434435436437438439440 (dB) (MHz) OMB.433.B03F21 -10 -5 0 5 10 425426427428429430431432433434435436437438439440 (dBi) (MHz) OMB.433.B03F21 7 SPE-16-8-019-F www.taoglas.com 4. 4.1 Test Setup 4. Radiation Patterns 4. Antenna Radiation Patterns 4. Antenna Radiation Patterns 4. Antenna Radiation Patterns 4. Antenna Radiation Patterns 4. Antenna Radiation Patterns 4. Antenna Radiation Patterns 4. Antenna Radiation Patterns 8 SPE-16-8-019-F www.taoglas.com 4.2 430MHz 3D and 2D Radiation Patterns XZ Plane YZ Plane XY Plane 9 SPE-16-8-019-F www.taoglas.com 4.3 433 MHz 3D and 2D Radiation Patterns XZ Plane YZ Plane XY Plane 10 SPE-16-8-019-F www.taoglas.com 4.4 436 MHz 3D and 2D Radiation Patterns XZ Plane YZ Plane XY Plane 11 SPE-16-8-019-F www.taoglas.com 5. Mechanical Drawing (Units: mm) 6. Packaging5. Mechanical Drawing 6. Packaging 7. Application Note6. Packaging5. Mechanical Drawing 6. Packaging5. Mechanical Drawing 6. Packaging 7. Application Note6. Packaging 7. Application Note 7. Application Note6. Packaging 7. Application Note6. Packaging5. Mechanical Drawing 6. Packaging5. Mechanical Drawing 12 SPE-16…

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Test Report

14 SPE-13-8-053-L www.taoglas.com 1602MHz XY Plane XZ Plane YZ Plane 15 SPE-13-8-053-L www.taoglas.com 6. Mechanical Drawing (Units: mm) 6. Packaging5. Mechanical Drawing 6. Packaging 7. Application Note6. Packaging5. Mechanical Drawing 6. Packaging5. Mechanical Drawing 6. Packaging 7. Application Note6. Packaging 7. Application Note 7. Application Note6. Packaging 7. Application Note6. Packaging5. Mechanical Drawing 6. Packaging5. Mechanical Drawing 16 SPE-13-8-053-L www.taoglas.com 7. Installation 4. Antenna Radiation Patterns3. Antenna Characteristics 4. Antenna Radiation Patterns 4. Antenna Radiation Patterns3. Antenna Characteristics 4. Antenna Radiation Patterns3. Antenna Characteristics 4. Antenna Radiation Patterns 4. Antenna Radiation Patterns 4. Antenna Radiation Patterns 4. Antenna Radiation Patterns3. Antenna Characteristics 4. Antenna Radiation Patterns3. Antenna Characteristics Recommended torque for mounting: 5-7Nm (Torque value obtained with antenna mounted on 1mm thick SUS-316 bracket) 17 SPE-13-8-053-L www.taoglas.com 60pcs A.40.A.301111 per carton Dimensions - 320*250*230mm Weight – 9.8Kg Pallet Dimensions: 1200*1000*1650mm 60 Cartons per Pallet 12 Cartons per Layer, 5 Layers 1pc A.40.A.301111 per PE Bag Dimensions: 100*300mm Weight: 151g 10 pcs A.40.A.301111 per Large PE Bag Dimensions: 280*450mm Weight: 1.524Kg 8. Packaging 6. Packaging5. Mechanical Drawing 6. Packaging 7. Application Note6. Packaging5. Mechanical Drawing 6. Packaging5. Mechanical Drawing 6. Packaging 7. Application Note6. Packaging 7. Application Note 7. Application Note6. Packaging 7. Application Note6. Packaging5. Mechanical Drawing 6. Packaging5. Mechanical Drawing 450mm 280mm 1650mm 1000mm 250mm 320mm 230mm 1200mm 100mm 300mm 18 SPE-13-8-053-L www.taoglas.com Changelog for the datasheet SPE-13-8-053 – A.40.A.301111 Revision: L (Current Version) Date: 2022-10-13 Changes: Added LNA Block diagram Changes Made by: Cesar Sousa Previous Revisions Revision: K Date: 2022-02-23 Changes: Updated data Changes Made by: Gary West Revision: F Date: 2019-01-22 Changes: Amended Drawing Changes Made by: Jack Conroy Revision: J Date: 2021-02-09 Changes: Updated IP rating Changes Made by: Erik Landi Revision: E Date: 2018-12-12 Changes: Amended Heatshrink Drawing Changes Made by: Jack Conroy Revision: I Date: 2021-02-09 Changes: Updated waterproof rating Changes Made by: Jack Conroy Revision: D Date: 2016-06-01 Changes: Amended Packaging and Info Changes Made by: Aine Doyle Revision: H Date: 2020-03-27 Changes: Updated Packaging and Template Changes Made by: Jack Conroy Revision: C Date: 2014-08-26 Changes: Removed Saw info Changes Made by: Aine Doyle Revision: G Date: 2019-11-07 Changes: Amended Drawing Changes Made by: Jack Conroy Revision: B Date: 2014-08-11 Changes: Updated Torque Info Changes Made by: Aine Doyle 19 SPE-13-8-053-L www.taoglas.com Revision: A (Original First Release) Date: 2013-07-26 Notes: Author: Wayne Yang 20 SPE-13-8-053-L www.taoglas.com www.taoglas.com © Taoglas APA-L2458-08A Dual-Band 2.4GHz+5GHz Panel Antenna •High Speed Data Rates Providing faster data rates up to 300Mbps (802.11n) and compatible with legacy 802.11b/g equipment •Flexible USB Port Support specific Alfa WiFi USB adapters and 4G modem •RWB mobile friendly Support mobile user friendly web setup •Automotive Cigarette lighter Surge protection WDS, Multi-SSIDs, Static Routing, QoS and more •Enhanced ESD protection Protect Ethernet port, RF and USB port damaged from ESD •Hardware Watchdog Recover from fault to insure device working properly Features Internet Sharing Applications Automotive DC shark protection External Antenna USB for WiFi USB USB for 4G modem Enhanced RF performance Ethernet ESD protection RF ESD protection USB ESD protection Hardware watchdog Guest network Button RWB mobile friendly @ ALFA Network Inc. All Rights Reserved *Specifications may change at any time without prior notice Electrical Frequency: 2.4 - 2.5GHz 5.1 - 5.9GHz V.S.W.R: <1.7:1 Antenna Type: Patch Directional Gain: 8 dBi Polarization: Vertical Horizontal Vertical Beam-with: 40 degree Horizontal Beam-with: 90 degree Connector: N Female Mechanical Dimension 94.8*116.8*30.8mm Antenna Weight 220g Mount Style Direct mount on device Mounting Option * Sell separately * Wall mount Pole mount Compact Size Light Weight Direct mount High-Gain Package Contents Environment Friendly Package Antenna Test Report Quality control tested One by One Package included the Test report APA-L2458-08A Dual-Band Panel Antenna Contact us: [email protected] Website: www.alfa.com.tw @ ALFA Network Inc. All Rights Reserved *Specifications may change at any time without prior notice Radiation & VSWR Report 2400 MHz 2450 MHz 2500 MHz XY Plane (+X = 0°, +Y = +90°) / Elevation = 90 ° 0 90 180 -90 -20 dB -10 dB 0 dB 10 dB YZ Plane (+Z = 0°, +Y = +90°) / Azimuth = 90 ° 0 90 180 -90 -20 dB -10 dB 0 dB 10 dB ZX Plane (+Z = 0°, +X = +90°) / Azimuth = 0 ° 0 90 180 -90 -20 dB -10 dB 0 dB 10 dB 5150 MHz 5250 MHz 5350 MHz 5475 MHz 5600 MHz 5725 MHz 5750 MHz 5825 MHz 5875 MHz XY Plane (+X = 0°, +Y = +90°) / Elevation = 90 ° 0 90 180 -90 -20 dB -10 dB 0 dB 10 dB YZ Plane (+Z = 0°, +Y = +90°) / Azimuth = 90 ° 0 90 180 -90 -20 dB -10 dB 0 dB 10 dB ZX Plane (+Z = 0°, +X = +90°) / Azimuth = 0 ° 0 90 180 -90 -20 dB -10 dB 0 dB 10 dB 5150 MHz 5250 MHz 5350 MHz 5475 MHz 5600 MHz 5725 MHz 5750 MHz 5825 MHz 5875 MHz XY Plane (+X = 0°, +Y = +90°) / Elevation = 90 ° 0 90 180 -90 -20 dB -10 dB 0 dB 10 dB YZ Plane (+Z = 0°, +Y = +90°) / Azimuth = 90 ° 0 90 180 -90 -20 dB -10 dB 0 dB 10 dB ZX Plane (+Z = 0°, +X = +90°) / Azimuth = 0 ° 0 90 180 -90 -20 dB -10 dB 0 dB 10 dB 5150 MHz 5250 MHz 5350 MHz 5475 MHz 5600 MHz 5725 MHz 5750 MHz 5825 MHz 5875 MHz XY Plane (+X = 0°, +Y = +90°) / Elevation = 90 ° 0 90 180 -90 -20 dB -10 dB 0 dB 10 dB YZ Plane (+Z = 0°, +Y = +90°) / Azimuth = 90 ° 0 90 180 -90 -20 dB -10 dB 0 dB 10 dB ZX Plane (+Z = 0°, +X = +90°…

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Test Report

11 SPE-15-8-049-D www.taoglas.com 890MHz XY Plane XZ Plane YZ Plane 12 SPE-15-8-049-D www.taoglas.com 1470MHz XY Plane XZ Plane YZ Plane 13 SPE-15-8-049-D www.taoglas.com 1805MHz XY Plane XZ Plane YZ Plane 14 SPE-15-8-049-D www.taoglas.com 1990MHz XY Plane XZ Plane YZ Plane 15 SPE-15-8-049-D www.taoglas.com 2595MHz XY Plane XZ Plane YZ Plane 16 SPE-15-8-049-D www.taoglas.com 3550MHz XY Plane XZ Plane YZ Plane 17 SPE-15-8-049-D www.taoglas.com 5530MHz XY Plane XZ Plane YZ Plane 18 SPE-15-8-049-D www.taoglas.com 5. Mechanical Drawing (Units: mm) 6. Packaging5. Mechanical Drawing 6. Packaging 7. Application Note6. Packaging5. Mechanical Drawing 6. Packaging5. Mechanical Drawing 6. Packaging 7. Application Note6. Packaging 7. Application Note 7. Application Note6. Packaging 7. Application Note6. Packaging5. Mechanical Drawing 6. Packaging5. Mechanical Drawing 19 SPE-15-8-049-D www.taoglas.com 6. Installation 4. Antenna Radiation Patterns3. Antenna Characteristics 4. Antenna Radiation Patterns 4. Antenna Radiation Patterns3. Antenna Characteristics 4. Antenna Radiation Patterns3. Antenna Characteristics 4. Antenna Radiation Patterns 4. Antenna Radiation Patterns 4. Antenna Radiation Patterns 4. Antenna Radiation Patterns3. Antenna Characteristics 4. Antenna Radiation Patterns3. Antenna Characteristics 20 SPE-15-8-049-D www.taoglas.com 7. Packaging 6. Packaging5. Mechanical Drawing 6. Packaging 7. Application Note6. Packaging5. Mechanical Drawing 6. Packaging5. Mechanical Drawing 6. Packaging 7. Application Note6. Packaging 7. Application Note 7. Application Note6. Packaging 7. Application Note6. Packaging5. Mechanical Drawing 6. Packaging5. Mechanical Drawing 21 SPE-15-8-049-D www.taoglas.com Changelog for the datasheet SPE-17-8-042 - TLS.01.1F21 Revision: D (Current Version) Date: 2022-09-02 Changes: Updated specifications Changes Made by: Cesar Sousa Previous Revisions Revision: C Date: 2019-11-18 Changes: Included 5G data Changes Made by: Jack Conroy Revision: B Date: 2017-03-30 Changes: Included LTE Table Changes Made by: Andy Mahoney Revision: A (Original First Release) Date: 2015-10-11 Notes: Initial Release Author: Jack Conroy 22 SPE-15-8-049-D www.taoglas.com www.taoglas.com © Taoglas

Test Report

Test Laboratory: 7layers GmbH Borsigstrasse 11 40880 Ratingen Germany Note: The following test results relate only to the devices specified in this document. This report shall not be reproduced in parts without the written approval of the test laboratory. 7layers GmbH Geschäftsführer/ Borsigstraße 11 Managing Directors: Registergericht/registered: a Bureau Veritas 40880 Ratingen, Germany Sebastian Doose Düsseldorf HRB 75554 Group Company T +49 (0) 2102 749 0 Stefan Kischka USt-Id.-Nr./VAT-No. DE203159652 F +49 (0) 2102 749 350 Bernhard Retka Steuer-Nr./TAX-No. 147/5869/0385 www.7layers.com Commerzbank AG Account No. 303 016 000 Bank Code 300 400 00 IBAN DE81 3004 0000 0303 0160 00 Swift Code COBADEFF FCC Measurement/Technical Report on RF-560 FCC ID: 2AO3N-TH39P6ERPI IC: 23389-TH39P6ERPI Test Report Reference: MDE_DEDRONE_2201_FCC_01 TEST REPORT REFERENCE: MDE_DEDRONE_2201_FCC_01 Page 2 of 35 Table of Contents 1 Applied Standards and Test Summary 3 1.1 Applied Standards 3 1.2 FCC-IC Correlation Table 4 1.3 Measurement Summary 4 2 Revision History / Signatures 6 3 Administrative Data 7 3.1 Testing Laboratory 7 3.2 Project Data 7 3.3 Applicant Data 7 3.4 Manufacturer Data 8 4 Test object Data 9 4.1 General EUT Description 9 4.2 EUT Main components 9 4.3 Ancillary Equipment 10 4.4 Auxiliary Equipment 10 4.5 EUT Setups 11 4.6 Operating Modes / Test Channels 11 4.7 Product labelling 11 5 Test Results 12 5.1 Conducted Emissions at AC mains 12 5.2 Radiated Emissions 15 6 Test Equipment 23 6.1 Test Equipment Hardware 23 6.2 Test Equipment Software 23 7 Antenna Factors, Cable Loss and Sample Calculations 28 7.1 LISN R&S ESH3-Z5 (150 kHz – 30 MHz) 28 7.2 Antenna R&S HFH2-Z2 (9 kHz – 30 MHz) 29 7.3 Antenna R&S HL562 (30 MHz – 1 GHz) 30 7.4 Antenna R&S HF907 (1 GHz – 18 GHz) 31 7.5 Antenna EMCO 3160-09 (18 GHz – 26.5 GHz) 32 7.6 Antenna EMCO 3160-10 (26.5 GHz – 40 GHz) 33 8 Measurement Uncertainties 34 …

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Contact Information

Applicant

Robin Jaeger(Compliance Engineer)
[email protected]703-260-8051Fax: +49561861799-11

Technical Contact

Dedrone Holdings, Inc.Robin Jaeger
[email protected]49 (0) 561 861799

45662 Terminal Dr., Suite 110 Sterling Virginia · United States

Non-Technical Contact

Dedrone Holdings, Inc.Robin Jaeger
[email protected]49 (0) 561 861799

Test Firm

7layers GmbHBernhard Retka
[email protected]00492102749452Fax: 0049 2102 749 350

Technical Specifications

#Rule PartsFrequency RangePower Output
215B902 MHz - 928 MHz-
Confidentiality
Long Term

Other Applications from Dedrone Holdings, Inc.

2AO3N-TH24J6EHCI

RF-Scanner for the detection of Remote ID, ADS-B.FLARM/UAT

Feb 01, 2026

Equipment Class

CSR - Scanning Receiver