
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
LEONARDO OTS2 Technical Data Sheet – Version 3.0 Page: 1 TECHNICAL DATA SHEET LEONARDO OTS2 Department and Function Name Date Written by: R&D Hardware Engineer Massimo Bertinelli 15/05/2024 Reviewed by: R&D Project Leader Massimo Melloni Cristian Panessa 09/09/2024 Approved by R&D Manager Michele Gilli 09/09/2024 Document ID: LEONARDO-2200164_TECHNICAL_DATA_SHEET Version: 3.0 Revision: 3 Issue date: 09/09/2024 Document History Log DISCLAIMER: Notice to Receiver Products, information, drawings, specifications and reference numbers (hereafter “Contents”) discussed herein are for reference purposes only. All Contents herein are provided on an “AS IS” basis, without warranties of any kind. The Contents discussed herein remain the sole and exclusive property of MTA S.p.A. and shall not be copied, translated in whole or in part without MTA S.p.A prior written consent. No license of any patent, copyright, mask work, trademark or any other intellectual property right is granted under this document, by implication, estoppel or other-wise. Contents may be modified by MTA S.p.A without prior notice. For updates or additional information about MTA products, please contact your nearest MTA office. All brand names, trademarks and registered trademarks belong to their respective owners. LEONARDO OTS2 Technical Data Sheet – Version 3.0 Page: 2 Version Release date Update description 1.0 05/07/2024 First Release 2.0 09/08/2024 Second Release, introduced dedicated paragraph, tables: TX-RX frequencies and powers, Bluetooth and WiFi. 3.0 09/09/2024 RF exposure declaration added and 5G Rlan frequencies removed. Please, check on MTA website the latest version of this Technical Data Sheet: http://www.mta.it/technical-data-sheet Document Change Log Version Originator Paragraph/ Page Update description DOCUMENT REFERENCES ID Doc. Rev. Note [1] TS50_16 6 Environmental – Electrical EMC Test Specification [2] LEONARDO_OTS2-R4_2200164_SYSREQ 1.2 LEONARDO Display Technical Specification (MTA reserved document) LEONARDO OTS2 Technical Data Sheet – Version 3.0 Page: 3 LEONARDO DISPLAY PRODUCT VERSION This technical data sheet targets the version of DISPLAY LEONARDO listed hereafter ID P/N Product DISPLAY LEONARDO 12” Standard Contents Certific. 2 CAN BUS 1 LIN 2 USB 1 Ethernet-BR 2 Analog Video Inputs 4 Digital Inputs 2 Analog Inputs 2 High Side Driver Outputs 1 VSS (Vref) 1 Light Sensor 1 Speaker 1 Audio Out RTC 1 Bicolor led 1 Microphone Input (remove Column) 1 Wi-Fi 1 Bluetooth Type Approval (R10) Additional Certifications 1 6100552/1x OTS2 X X X X X X X X X X X X X X - X X X X GENERAL DESCRIPTION LEONARDO OTS2 is a display designed for agricultural or off-highway vehicles, on wheels or tracks. This state-of-the-art device features a number of high speed interfaces towards typical automotive communication channels such as CAN, Broad-R-Reach & LIN. In addition to a high resolution TFT display with capacitive touch screen and best-in-class brightness and contrast ratio, Leonardo delivers Linux Operating System and QT® cross-platform application development framework. The hardware is designed according to the most robust automotive industry standards. LEONARDO main hardware features: • Extended power supply range from 8 to 32Vdc • 12.1” TFT LCD 1280 x 800 pixel: • Capacitive touch screen, with light glove operability; • 4 digital high side or low side inputs, two with wake capabilities • 2 analog inputs (16 or 32v user definable dynamic range); • 2 x 350mA high side outputs, with current sense and diagnostics; • Stereo audio output (needs external amplifier); • 1 Voltage output for sensor supply (5V, 400mA); • 1 Real time clock; • 1 Mono speaker; • 1 Ambient light sensor; • 1 Dual color status LED; • 2 analog video inputs on 2 dedicated Mini-BNC connectors; • 1 LIN 2.2 Master bus; • 1 RS232; LEONARDO OTS2 Technical Data Sheet – Version 3.0 Page: 4 • 2 CAN bus; • 1 Broad-R-Reach Ethernet; • 1 WiFi 2.4GHz Module • 1 Bluetooth and BLE v5.0 Module: o Protocols: SDP, L2CAP, RFCOMM , SPP, OBEX o Profiles: HFP 1.7.1, PBAP 1.2.1, MAP 1.4, PAN/BNEP, A2DP 1.3.1, AVRCP 1.6.1, AVDTP 1.3, AVCTP 1.4 with SBC CODEC, ATT/GATT • 2 USB: o 1 USB accessible on a type ‘A’ side connector; o 1 USB available on the rear Tyco Super seal connector; Memory: • DDR3 RAM 2GB; • Flash EMMC 16GB; • SERIAL FLASH 16MB; • EEPROM 32kB. Software options: • Linux Op. Sys. + QT® Framework. LEONARDO OTS2 Technical Data Sheet – Version 3.0 Page: 5 BLOCK DIAGRAM LEONARDO OTS2 Technical Data Sheet – Version 3.0 Page: 6 DETAILED SPECIFICATIONS CHARACTERISTIC DESCRIPTION Operating voltage Nominal 12Vdc Supply voltage, permissible range 8÷16Vdc Power requirement Average power draw 24W @12V Peak power draw (all loads) 54W @12V No load (inputs/outputs floating, Vref floating) < 2,0A at key on (12Vdc) With load (inputs/outputs active, Vref active) < 4,5A at key on (12Vdc) + 2 x 350 mA (high side current) for 12 Vdc + 400mA on sensor output +2 x 1,5A on USB Standby current < 2mA at key off (12Vdc) Power output Power source for external sensors 5Vdc ± 5% max 400mA / 2W (max) Thermal and IP characteristics Operating ambient temperature -30 to +70°C (-22 to 158°F) Storage temperature -40 to +85°C (-40 to 185°F) Ingress Protection rate IP66 Weight Total mass 2250g (4.96lbs) Mounting location Suggested Cab interior Status LED High efficiency dual color LED Red or green, software configurable TFT Size 12.1’’ Normally white Form factor 16:10 Brightness 1000 cd/m² typical; 800 cd/m² minimum (@20°C) Contrast ratio 600:1 minimum (@20°C) Color depth 24 bits (3 x 8 bits per color) Resolution 1280 x 800 Viewing area 262 x 164 mm Viewing angles 88/88/88/88 Backlight With automatic and user programmable dimming function Protective glass features Optically bonded (OCA) LEONARDO OTS2 Technical Data Sheet – Version 3.0 Page: 7 Anti reflection finish Anti fingerprint finish Touch screen Touch screen Capacitive with multi-touch capability (up to 10 points). Detection compatible wit…
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US Agent for Service of Process LETTER OF ATTESTATION TO: Office of Engineering Technology Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 US Agent: Company Name: QPS America, Inc. FRN: 0033412354 Contact Name: John Gulino Address: 5005 Rockside Road, Suite 600, Independence, Ohio 44131-6827 Telephone No: 216-377-3191 Email: [email protected] This letter is to confirm that the US Agent accepts responsibility to act as a local representative on behalf of MTA S.p.A. The US Agent for Service of Process is aware of and agrees to comply with the requirements outlined in the FCC Equipment Authorization Program, Report and Order FCC 22-84, and clause § 2.911. Applicant: Company name: MTA S.p.A. Product Description: Touch Screen Instrument Panel Grantee code: 2AACW FRN: 0022705693 FCC ID: 2AACW-LOTS2 Contact Name: Valter Zuccari Address: Viale dell'Industria, 12 - 26845 Codogno (LO) - Italy Telephone No: +39 0377418407 Email: [email protected] The Applicant is aware of and agrees to comply with the requirements outlined in the FCC Equipment Authorization Program, Report and Order FCC 22-84, and clause § 2.911. Date: 2024/07/29 Applicant’s Name: Valter Zuccari US Agent’s Name: John Gulino Title: Test Leader – Electronic Laboratory Title: President SignatureSignature
EXTERNAL PICTURES LEONARDO OTS2
LABEL LOCATION FCC ID: 2AACW-LOTS2 Label location
Page 1 of 25 Report Ref. No. 24-05401-1 TRF No. Emilab MD-23 rev.12 Emilab Srl – Amaro (UD) – Italy LAB N° 0986 L FCC Test Firm Registration #: 375156 TEST REPORT This revision completely replaces previous test report no. 24-05401 (see §1.8) According to following Standards Test Methods KDB Publication 865664 D02: 2015 Test specification FCC Rules: Code of Federal Regulations (CFR) no. 47 Part 1 Subpart I Section 1.1310 Test plan: Technical specification Display LEONARDO OTS2 v4.0 Radiofrequency radiation exposure limits. Compliant Applicant’s name ............................. : MTA S.p.A. Address .............................................. : Viale dell'Industria, 12 - 26845 Codogno (LO) - Italy Manufacturer ................................... : MTA S.p.A. Address .............................................. : Viale dell'Industria, 12 - 26845 Codogno (LO) - Italy Device Under Test ........................... : Display LEONARDO OTS2 Date of issue .................................... : 01 st October 2024 Validity ............................................. : See section 1.2 Author of Test report ...................... : Rudy Valent Engineer/s ...................................... : Rudy Valent Technical Manager/s (+ signature) : Enrico Not Approved by (+ signature) ............ : Stefano Petrini (Laboratory Manager) Testing Laboratory .......................... : Emilab Srl a Socio Unico Address ............................................. : Via F.lli Solari 5/A – 33020 Amaro (UD) – Italy Page 2 of 25 Report Ref. No. 24-05401-1 TRF No. Emilab MD-23 rev.12 Emilab Srl – Amaro (UD) – Italy LAB N° 0986 L FCC Test Firm Registration #: 375156 Index 1.0 GENERAL INFORMATION 3 1.1 Testing Laboratory 3 1.2 Sampling and Documentation 3 1.3 Test specifications 3 1.4 Test scheduling and general conditions 4 1.5 Test case of final verdicts 4 1.6 Uncertainty 4 1.7 Terms, definitions and abbreviations 4 1.8 Notes related to this revision 7 2.0 DEVICE UNDER TEST 8 2.1 Device description and setup information 8 2.2 Deviation from the specified conditions 10 2.3 Channel list 10 2.4 Test modes and Channel details 12 3.0 LIMITATION OF HUMAN EXPOSURE TO ELECTROMAGNETIC FIELDS – TEST CONDITIONS 13 3.1 Test Equipment Used – Limitation of human exposure to electromagnetic fields 13 3.2 Auxiliary Equipment – Limitation of human exposure to electromagnetic fields 14 3.3 Setup – Limitation of human exposure to electromagnetic fields 14 3.4 Channel Power measurement – Limitation of human exposure to electromagnetic fields 15 3.5 Results – Limitation of human exposure to electromagnetic fields 22 ANNEX 1 – ADDITIONAL EUT DETAIL PICTURES 24 Page 3 of 25 Report Ref. No. 24-05401-1 TRF No. Emilab MD-23 rev.12 Emilab Srl – Amaro (UD) – Italy LAB N° 0986 L FCC Test Firm Registration #: 375156 1.0 General Information 1.1 Testing Laboratory Testing procedure and testing location: Testing Laboratory: Testing location / address .................... : Emilab Srl a Socio Unico Via F.lli Solari 5/A – 33020 Amaro (UD) – Italy Tel +39 0433 468625 Fax +39 0433 494739 Email: [email protected] Participants: - 1.2 Sampling and Documentation The samples and any specific hardware and software simulators and accessories, hereinafter called auxiliary apparatus and the related information (samples and auxiliary apparatus) was delivered by customer under his own responsibility. The results contained in this report reflect the results for this particular model and serial number tested in combination with the auxiliary apparatuses. It is the responsibility of the manufacturer to ensure that all production models meet the intent of the requirements detailed within this report. The laboratory takes no responsibility for the auxiliary equipment and for the information provided by the customer. This report shall not be reproduced, except in full, without the written approval of the Issuing testing Emilab laboratory. EMILAB takes no responsibility for and will not assume liability for damages resulting from the reader's interpretation of the reproduced material due to its placement and context. 1.3 Test specifications Test performed according to: Test plan Technical specification Display LEONARDO OTS2 v4.0 Number: TP010-23 rev.1 Revision date: 07/06/2024 Author: R. Nunnari Test specification FCC Rules: Code of Federal Regulations (CFR) no. 47 Part 1 Subpart I Section 1.1310 Test Methods / Basic Standard KDB Publication 865664 D02: 2015 Page 4 of 25 Report Ref. No. 24-05401-1 TRF No. Emilab MD-23 rev.12 Emilab Srl – Amaro (UD) – Italy LAB N° 0986 L FCC Test Firm Registration #: 375156 1.4 Test scheduling and general conditions Scheduling: Date of receipt of EUT ................................ : 18/04/2024 Date (s) of performance of tests.................. : 27/05/2024 EUT Number .............................................. : 24LA00181/02 (EUT with external RF antenna connectors) Environment Conditions: If not otherwise specified: Temperature: 18-28 °C Humidity: 20-90 % Pressure: 86-106 kPa 1.5 Test case of final verdicts The results consider the measurement uncertainty, where applicable, using the following scheme - test case does not apply to the test object : N/A (Not Applicable) - test object does meet the requirement ...... : Compliant or PASS - test object does not meet the requirement : Not Compliant or FAIL 1.6 Uncertainty The reported expanded uncertainty of measurements is stated as the standard uncertainty of measurement, multiplied by the coverage factor k=2, which for a normal distribution corresponding to a coverage probability of approximately 95%. 1.7 Terms, definitions and abbreviations With reference to IEC 60050-161 AC Alternating Current ACK Acknowledgement AFH Adaptive Frequency Hopping ALSE Absorber-Lined Shielded Enclosure AM Amplitude Modulation AN Artificial Network ASTM American Society for Testing & Material AV Average Detector BIT Burst Interval Time BLE Bluetooth Low Energy BT Bluetooth Page 5 of 25 Repor…
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SPE-13-8-067/C/EZ Page 1 of 11 SPECIFICATION Patent Pending Part No. : FXP75.07.0045B Product Name : FXP.75 Atom 2.4GHz Series Ultra-Miniaturized 2dBi Bluetooth Antenna Features : Patent Pending Worldwide smallest cabled 2.4GHz antenna Ideal for Bluetooth earphones Flexible Ultra Low Profile 5.9*4.1*0.24mm Adheres directly to inside of product housing Form factor and cable routing convenient for integration IPEX MHF1 Connector (U.FL compatible) 45mm Ø 0.81mm mini-coaxial cable RoHS Compliant SPE-13-8-067/C/EZ Page 2 of 11 1. Introduction The FXP75 Atom is a super small monopole ultra-low profile antenna for 2.4GHz band that includes Bluetooth, Wi-Fi, ZigBee and ISM bands application. The FXP75 has a peak gain of 2.5dBi at 2.4GHz and efficiencies of 45%. This Taoglas patent pending antenna is unique in the market. Two years of constant research and development have created the world's smallest coax cabled true 2.4GHz antenna. Made from poly-flexible material, the antenna has a tiny form factor of 5.9*4.1*0.24mm and has double-sided 3M tape for easy “peel and stick” mounting. The cable routes conveniently directly out of the bottom of the antenna, reducing the volume the antenna takes up in the device to an absolute minimum compared to other designs. The FXP75 is the ideal all-round antenna solution for fitting into narrow spaces and still maintaining high performance, for example in a Bluetooth earphone where metal and electrical noise degrades onboard SMT antenna performance. The FXP75 is small enough to be routed away from metal and electrical noise to deliver much improved range and reliable sound quality in Bluetooth earphones. Many module manufacturers specify peak gain limits for any antennas that are to be connected to that module. Those peak gain limits are based on free-space conditions. In practice, the peak gain of an antenna tested in free-space can degrade by at least 1 or 2dBi when put inside a device. So ideally you should go for a slightly higher peak gain antenna than mentioned on the module specification to compensate for this effect, giving you better performance. Upon testing of any of our antennas with your device and a selection of appropriate layout, integration technique, or cable, Taoglas can make sure any of our antennas’ peak gain will be below the peak gain limits. Taoglas can then issue a specification and/or report for the selected antenna in your device that will clearly show it complying with the peak gain limits, so you can be assured you are meeting regulatory requirements for that module. For example, a module manufacturer may state that the antenna must have less than 2dBi peak gain, but you don’t need to select an embedded antenna that has a peak gain of less than 2dBi in free-space. This will give you a less optimized solution. It is better to go for a slightly higher free-space peak gain of 3dBi or more if available. Once that antenna gets integrated into your device, performance will degrade below this 2dBi peak gain due to the effects of GND plane, surrounding components, and device housing. If you want to be absolutely sure, contact Taoglas and we will test. Choosing a Taoglas antenna with a higher peak gain than what is specified by SPE-13-8-067/C/EZ Page 3 of 11 the module manufacturer and enlisting our help will ensure you are getting the best performance possible without exceeding the peak gain limits. Due to the potential for detuning in a tiny device environment, Taoglas recommends that you contact us at our regional sales office for integration support and testing and optimization of the antenna in your device before going to production. SPE-13-8-067/C/EZ Page 4 of 11 2. Specification ELECTRICAL Antenna FXP75 Standard 2400-2500MHz Operation Frequency (MHz) 2400-2500 MHz Polarization Linear Impedance 50 Ohms Max VSWR 2:1 Max Return Loss (dB) <-10 Peak Gain (dBi) 2.5 Efficiency (%) 45 Average Gain (dB) -3.4 Radiation Properties Omni Max Input Power 2W max * The FXP.75 antenna performance was measured on a 30x30 mm 2mm thick ABS plastic ground plane. MECHANICAL Dimensions (mm) 5.9*4.1*0.24mm Required Space (mm) 5.9*4.1*0.24mm Material Polymer Cable Ø0.81mm coaxial cable Connector IPEX MHF1 ENVIRONMENTAL Operation Temperature -40°C to 85°C Storage Temperature -40°C to 85°C Relative Humidity 40% to 95% RoHs Compliant Yes SPE-13-8-067/C/EZ Page 5 of 11 3. Antenna Characteristics 3.1 Test set-up Figure 1. Impedance measurements (left side) and peak gain, efficiency and radiation pattern measurements (right side). 3.2 Return Loss Figure 2. Return loss of the FXP75 antenna from 2200 MHz to 2700 MHz. Y X Z SPE-13-8-067/C/EZ Page 6 of 11 3.3 VSWR Figure 3. VSWR of the FXP75 antenna from 2200 MHz to 2700 MHz. 3.4 Efficiency Figure 4. Efficiency of the FXP75 antenna from 2300 MHz to 2700 MHz. SPE-13-8-067/C/EZ Page 7 of 11 3.5 Peak Gain Figure 5. Peak Gain of the FXP75 antenna from 2300 MHz to 2700 MHz. 3.6 Average Gain Figure 6. Average Gain of the FXP75 antenna from 2300 MHz to 2700 MHz. SPE-13-8-067/C/EZ Page 8 of 11 3.7 3D radiation patterns Figure 7. 3D Radiation Pattern at 2450 of the FXP75 Antenna. 3.8 2D radiation patterns SPE-13-8-067/C/EZ Page 9 of 11 Figure 8. 2D Radiation Pattern SPE-13-8-067/C/EZ Page 10 of 11 4. Antenna Drawing Figure 9. Antenna drawing SPE-13-8-067/C/EZ Page 11 of 11 5. Packaging Figure 10. Package of the FXP75 Antenna.
Page 1 of 64 Report Ref. No. 24-05404-2 TRF No. Emilab MD-23 rev.12 Emilab Srl – Amaro (UD) – Italy LAB N° 0986 L FCC Test Firm Registration #: 375156 TEST REPORT This revision completely replaces previous test report no. 24-05404-1 (see §1.8) According to following Standards Test Methods ANSI C63.4: 2014 -06 ANSI C63.10: 2013-06 FCC KDB 558074 D01: 2019-04 Test specification FCC Rules: Code of Federal Regulations (CFR) no. 47 Part 15 Subpart C Section 15.247, 15.205, 15.203, 15.207, 15.209 Test plan: Technical specification Display LEONARDO OTS2 v4.0 Maximum Peak Output Power, FCC Section 15.247 (b) (3) Compliant Maximum Power Spectral Density, FCC Section 15.247(e) Compliant 6 dB Bandwidth & 99%, FCC Section 15.247 (a) (2) Compliant Band-edge Compliance, Section 15.247(d) Compliant Conducted Spurious Emissions, Section 15.247(d) Compliant Radiated Spurious Emissions, FCC Section 15.205 (a), 15.209, 15.247(d) Compliant Restricted Bands of Operation, Section 15.205 Compliant Antenna Requirement, FCC Section 15.203 Compliant AC Power Line Conducted Emissions, Section 15.207 Not applicable (see par. 10.0) Applicant’s name ............................. : MTA S.p.A. Address .............................................. : Viale dell'Industria, 12 - 26845 Codogno (LO) - Italy Manufacturer ................................... : MTA S.p.A. Address .............................................. : Viale dell'Industria, 12 - 26845 Codogno (LO) - Italy Device Under Test ........................... : Display LEONARDO OTS2 Date of issue .................................... : 01 st October 2024 Validity ............................................. : See section 1.2 Author of Test report ...................... : Rudy Valent Engineer/s ...................................... : Rudy Valent Technical Manager/s (+ signature) : Enrico Not Approved by (+ signature) ............ : Stefano Petrini (Laboratory Manager) Testing Laboratory .......................... : Emilab Srl a Socio Unico Address ............................................. : Via F.lli Solari 5/A – 33020 Amaro (UD) – Italy Page 2 of 64 Report Ref. No. 24-05404-2 TRF No. Emilab MD-23 rev.12 Emilab Srl – Amaro (UD) – Italy LAB N° 0986 L FCC Test Firm Registration #: 375156 Index 1.0 GENERAL INFORMATION 5 1.1 Testing Laboratory 5 1.2 Sampling and Documentation 5 1.3 Test specifications 5 1.4 Test scheduling and general conditions 6 1.5 Test case of final verdicts 6 1.6 Uncertainty 6 1.7 Terms, definitions and abbreviations 6 1.8 Notes related to this revision 9 2.0 DEVICE UNDER TEST 10 2.1 Device description and setup information 10 2.2 Deviation from the specified conditions 12 2.3 Channel list 12 2.4 Test modes and Channel details 13 3.0 MAXIMUM CONDUCTED OUTPUT POWER – TEST CONDITIONS 14 3.1 Test Equipment Used – Maximum Conducted Output Power 14 3.2 Auxiliary Equipment – Maximum Conducted Output Power 14 3.3 Setup – Maximum Conducted Output Power 15 3.4 Requirements – Maximum Conducted Output Power 15 3.5 Results – Maximum Conducted Output Power 16 4.0 MAXIMUM POWER SPECTRAL DENSITY – TEST CONDITIONS 19 4.1 Test Equipment Used – Maximum Power Spectral Density 19 4.2 Auxiliary Equipment – Maximum Power Spectral Density 19 4.3 Setup – Maximum Power Spectral Density 20 4.4 Requirements – Maximum Power Spectral Density 20 Page 3 of 64 Report Ref. No. 24-05404-2 TRF No. Emilab MD-23 rev.12 Emilab Srl – Amaro (UD) – Italy LAB N° 0986 L FCC Test Firm Registration #: 375156 4.5 Results – Maximum Power Spectral Density 21 5.0 BANDWIDTH – TEST CONDITIONS 24 5.1 Test Equipment Used – Bandwidth 24 5.2 Auxiliary Equipment – Bandwidth 24 5.3 Setup – Bandwidth 25 5.4 Requirements – Bandwidth 25 5.5 Results – Bandwidth 26 6.0 BAND-EDGE COMPLIANCE – TEST CONDITIONS 31 6.1 Test Equipment Used – Band-edge Compliance 31 6.2 Auxiliary Equipment – Band-edge Compliance 31 6.3 Setup – Band-edge Compliance 32 6.4 Requirements – Band-edge Compliance 32 6.5 Results – Band-edge Compliance 33 7.0 CONDUCTED SPURIOUS EMISSIONS – TEST CONDITIONS 35 7.1 Test Equipment Used – Conducted Spurious Emissions 35 7.2 Auxiliary Equipment – Conducted Spurious Emissions 36 7.3 Setup – Conducted Spurious Emissions 36 7.4 Requirements – Conducted Spurious Emissions 36 7.5 Results – Conducted Spurious Emissions 37 8.0 SPURIOUS RADIATED EMISSIONS AND RESTRICTED BANDS OF OPERATION – TEST CONDITIONS 40 8.1 Test Equipment Used – Spurious Radiated Emissions and Restricted Bands of Operation 41 8.2 Auxiliary Equipment – Spurious Radiated Emissions and Restricted Bands of Operation 41 8.3 Setup – Spurious Radiated Emissions and Restricted Bands of Operation 42 8.4 Requirements – Conducted Spurious Emissions 43 8.5 Results – Spurious Radiated Emissions and Restricted Bands of Operation 44 9.0 ANTENNA REQUIREMENT – TEST CONDITIONS 62 Page 4 of 64 Report Ref. No. 24-05404-2 TRF No. Emilab MD-23 rev.12 Emilab Srl – Amaro (UD) – Italy LAB N° 0986 L FCC Test Firm Registration #: 375156 10.0 CONDUCTED EMISSION – TEST CONDITIONS 63 ANNEX 1 – UNCERTAINTY 64 A1.1 Measurement of Environmental parameters 64 A1.2 Radio test 64 A1.3 Radiated Spurious Emissions: FCC 64 Page 5 of 64 Report Ref. No. 24-05404-2 TRF No. Emilab MD-23 rev.12 Emilab Srl – Amaro (UD) – Italy LAB N° 0986 L FCC Test Firm Registration #: 375156 1.0 General Information 1.1 Testing Laboratory Testing procedure and testing location: Testing Laboratory: Testing location / address .................... : Emilab Srl a Socio Unico Via F.lli Solari 5/A – 33020 Amaro (UD) – Italy Tel +39 0433 468625 Fax +39 0433 494739 Email: [email protected] Participants: - 1.2 Sampling and Documentation The samples and any specific hardware and software simulators and accessories, hereinafter called auxiliary apparatus and the related information (samples and auxiliary apparatus) was delivered by customer under his own responsibility. The results contained in this report reflect the results for this particular model and serial number tested in combinatio…
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Page 1 of 58 Report Ref. No. 24-05402-2 TRF No. Emilab MD-23 rev.12 Emilab Srl – Amaro (UD) – Italy LAB N° 0986 L FCC Test Firm Registration #: 375156 TEST REPORT This revision completely replaces previous test report no. 24-05402-1 (see §1.8) According to following Standards Test Methods ANSI C63.4: 2014 -06 ANSI C63.10: 2013-06 FCC KDB 558074 D01: 2019-04 Test specification FCC Rules: Code of Federal Regulations (CFR) no. 47 Part 15 Subpart C Section 15.247, 15.205, 15.203, 15.207, 15.209 Test plan: Technical specification Display LEONARDO OTS2 v4.0 Maximum Peak Output Power, FCC Section 15.247 (b) (3) Compliant Maximum Power Spectral Density, FCC Section 15.247(e) Compliant 6 dB Bandwidth & 99%, FCC Section 15.247 (a) (2) Compliant Band-edge Compliance, Section 15.247(d) Compliant Conducted Spurious Emissions, Section 15.247(d) Compliant Radiated Spurious Emissions, FCC Section 15.205 (a), 15.209, 15.247(d) Compliant Restricted Bands of Operation, Section 15.205 Compliant Antenna Requirement, FCC Section 15.203 Compliant AC Power Line Conducted Emissions, Section 15.207 Not applicable (see par. 10.0) Applicant’s name ............................. : MTA S.p.A. Address .............................................. : Viale dell'Industria, 12 - 26845 Codogno (LO) - Italy Manufacturer ................................... : MTA S.p.A. Address .............................................. : Viale dell'Industria, 12 - 26845 Codogno (LO) - Italy Device Under Test ........................... : Display LEONARDO OTS2 Date of issue .................................... : 01 st October 2024 Validity ............................................. : See section 1.2 Author of Test report ...................... : Rudy Valent Engineer/s ...................................... : Rudy Valent Technical Manager/s (+ signature) : Enrico Not Approved by (+ signature) ............ : Stefano Petrini (Laboratory Manager) Testing Laboratory .......................... : Emilab Srl a Socio Unico Address ............................................. : Via F.lli Solari 5/A – 33020 Amaro (UD) – Italy Page 2 of 58 Report Ref. No. 24-05402-2 TRF No. Emilab MD-23 rev.12 Emilab Srl – Amaro (UD) – Italy LAB N° 0986 L FCC Test Firm Registration #: 375156 Index 1.0 GENERAL INFORMATION 5 1.1 Testing Laboratory 5 1.2 Sampling and Documentation 5 1.3 Test specifications 5 1.4 Test scheduling and general conditions 6 1.5 Test case of final verdicts 6 1.6 Uncertainty 6 1.7 Terms, definitions and abbreviations 6 1.8 Notes related to this revision 9 2.0 DEVICE UNDER TEST 10 2.1 Device description and setup information 10 2.2 Deviation from the specified conditions 12 2.3 Channel list 12 2.4 Test modes and Channel details 13 3.0 MAXIMUM CONDUCTED OUTPUT POWER – TEST CONDITIONS 14 3.1 Test Equipment Used – Maximum Conducted Output Power 14 3.2 Auxiliary Equipment – Maximum Conducted Output Power 14 3.3 Setup – Maximum Conducted Output Power 15 3.4 Requirements – Maximum Conducted Output Power 15 3.5 Results – Maximum Conducted Output Power 16 4.0 MAXIMUM POWER SPECTRAL DENSITY – TEST CONDITIONS 18 4.1 Test Equipment Used – Maximum Power Spectral 18 4.2 Auxiliary Equipment – Maximum Power Spectral Density 18 4.3 Setup – Maximum Power Spectral 19 4.4 Requirements – Maximum Power Spectral 19 Page 3 of 58 Report Ref. No. 24-05402-2 TRF No. Emilab MD-23 rev.12 Emilab Srl – Amaro (UD) – Italy LAB N° 0986 L FCC Test Firm Registration #: 375156 4.5 Results – Maximum Power Spectral 20 5.0 BANDWIDTH – TEST CONDITIONS 22 5.1 Test Equipment Used – Bandwidth 22 5.2 Auxiliary Equipment – Bandwidth 22 5.3 Setup – Bandwidth 23 5.4 Requirements – Bandwidth 23 5.5 Results – Bandwidth 24 6.0 BAND-EDGE COMPLIANCE – TEST CONDITIONS 27 6.1 Test Equipment Used – Band-edge Compliance 27 6.2 Auxiliary Equipment – Band-edge Compliance 27 6.3 Setup – Band-edge Compliance 28 6.4 Requirements – Band-edge Compliance 28 6.5 Results – Band-edge Compliance 29 7.0 CONDUCTED SPURIOUS EMISSIONS – TEST CONDITIONS 30 7.1 Test Equipment Used – Conducted Spurious Emissions 30 7.2 Auxiliary Equipment – Maximum Conducted Output Power 31 7.3 Setup – Conducted Spurious Emissions 31 7.4 Requirements – Conducted Spurious Emissions 31 7.5 Results – Conducted Spurious Emissions 32 8.0 SPURIOUS RADIATED EMISSIONS AND RESTRICTED BANDS OF OPERATION – TEST CONDITIONS 34 8.1 Test Equipment Used – Spurious Radiated Emissions and Restricted Bands of Operation 35 8.2 Auxiliary Equipment – Spurious Radiated Emissions and Restricted Bands of Operation 35 8.3 Setup – Spurious Radiated Emissions and Restricted Bands of Operation 36 8.4 Requirements – Conducted Spurious Emissions 37 8.5 Results – Spurious Radiated Emissions and Restricted Bands of Operation 38 9.0 ANTENNA REQUIREMENT – TEST CONDITIONS 56 Page 4 of 58 Report Ref. No. 24-05402-2 TRF No. Emilab MD-23 rev.12 Emilab Srl – Amaro (UD) – Italy LAB N° 0986 L FCC Test Firm Registration #: 375156 10.0 CONDUCTED EMISSION – TEST CONDITIONS 57 ANNEX 1 – UNCERTAINTY 58 A1.1 Measurement of Environmental parameters 58 A1.2 Radio test 58 A1.3 Radiated Spurious Emissions: FCC 58 Page 5 of 58 Report Ref. No. 24-05402-2 TRF No. Emilab MD-23 rev.12 Emilab Srl – Amaro (UD) – Italy LAB N° 0986 …
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | 9.00 mW |

Instrument panel for motorcycles
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Scooter Dashboard with Imobilyzer System
Equipment Class
DCD - Part 15 Low Power Transmitter Below 1705 kHz