
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
User Manual NÜO Go! NÜO Go! Manual Content 2 ÍNDICE 1. NÜO Go! 4 1.1. equipment references 5 1.2. CONTROLLER AND SECURE DOOR UNITS 6 1.3. WIRING 12 2. Installation 13 2.1. BATTERY CONNECTION 13 2.2. SHUTTING DOWN THE EQUIPMENT 14 2.3. NÜO DC GO!8 ASSEMBLY 15 2.4. SDU AND WILI ASSEMBLY 16 2.5. SDU+ AND WILI+ ASSEMBLY 17 2.6. VIDEOCONSOLA W&M VIEW F 18 3. NÜO Go! equipment information screens 21 3.1. NÜO DC GO! 8 DISPLAY 21 3.2. DISPLAY NÜO SDU+ 26 3.3. DISPLAY WILI+ 30 4. Connect to NÜO Go! 34 4.1. CONSOLE SETTINGS (VIEW DH, VIEW D, VIEW F) 34 4.2. VOXTER/VOXTER SKY VIDEO-INTERCOM SETTINGS 34 4.3. CONTROLLER CONNECTION TO PC 35 +RZWRXVHWKHHTXLSPHQWIRUWKHðUVWWLPH 5.1. FIRST STEPS: REGISTERING A USER 39 5.1.1. Register users 39 5.2. FIRST STEPS - DOORS (ACTION AND SET UP). 42 5.2.1. Door status and actions 42 5.2.2. Set up an On-line door 44 5.2.3. :L[\WHU6ɈSPULKVVY 5.2.4. Set up an Console 46 NÜO Go! Manual Content 3 5.2.5. Set up a Video-intercom door 46 Set up warnings 47 5.2.6. Set up the lighting colours of NÜO Sky 47 5.3. REPORTS 48 5.4. MORE SYSTEM OPTIONS 51 6. Diagrams 53 6.1. CONNECTION TO NÜO DC GO! 8 53 6.1.1. CONNECTION FROM THE SDU DOOR UNITS TO NÜO DC GO! 8 53 6.1.2. NÜO SDU AND SDU+ TO NÜO DC GO! 8 CONNECTION 54 6.1.3. Detail of the connection SDU/SDU+ to NÜO DC Go!8 55 6.1.4. DIAGRAM CONNECTION OF THE ELEMENTS OF A DOOR WITH SDU 56 6.1.5. DETAILED DIAGRAM SDU CONNECTION 57 6.1.6. DIAGRAM CONNECTION OF THE ELEMENTS OF A DOOR WITH SDU+ 58 6.1.7. DETAILED DIAGRAM SDU+ CONNECTION 59 6.2. VIDEO-INTERCOM CONNECTION TO WILI/WILI+ 60 6.2.1. VIDEO-INTERCOM CONNECTION VOXTER TO WILI 60 6.2.2. Voxter and Readers connection to WILI+ 61 6.2.3. CONNECTION FROM SKY FLUX/SURF SUPPORT TO WILI+ 62 6.2.4. CONNECTION OF SKY POST 63 6.2.5. CONNECTION OF SKY CAR POST/WALK WITH WILI+ 64 6.3. W&M CONNECTION TO POE SWITCH 65 7. Information regarding the NÜO DC Go! product 66 NÜO Go! Manual Introduction 4 ;LJOUPJHS:WLJPÄJH[PVUZHUK.LULYHS-LH[\YLZ This manual must be read completely in order to avoid problems and confusion during installation which could cause irreparable failures to the system. ;OLPUZ[HSSH[PVUHUK^PYPUNVM[OPZWYVK\J[ZOV\SKILZ\WLY]PZLKI`X\HSPÄLKWLYZVUULS and treated with caution. Follow the instructions at all times. Do not use abrasive materials to clean the product such as bleach or ammonia. Clean it using a damp cloth with water and/or mild soap. NÜO GO! DIAGRAM Installation Diagram 1. NÜO Go! Red BB4 BB4 BB4 BB4 1 BB2 DC Go! 8 SDU 2 BB2 SDU 3 BB2 SDU 4 BB2 SDU 5 BB2 6 BB2 SDUSDU 7 BB2 SDU 8 BB2 SDU AC SDU SDUSDUSDU SDUSDUSDU 1 BB2 DC Go! 8 SDU 2 BB2 SDU 3 BB2BB2 SDU+ 5 BB2 SDU 6 BB2 SDU AC SDU SDU SDUSDU Alternative Configuration with SDU and SDU + 4 BB2BB2 SDU+ Voxter WILI + WILI Reader Reader Sky Flux/Surf Sky Flux/Surf Voxter WILI WILI + 4 Access control doors with videointercommunication 4 consoles W&M View UTP UTP UTP UTP UTP BB2 BB2 BB4 BB2 BB4 BB2 BB4 BB4 48 Off-line doors with NÜO Tok electronic locks BB4 BB4 BB4 BB4 One SDU + occupies an entire bus, so the number of doors is reduced. UTP Up to 8 access control doors The NÜO Go! system is an access control system for 250 users, 8 On-line doors, 48 Off-line doors and 4 Video-intercom doors. The NÜO Go! System consists of a Multi-Door IP Controller, NÜO DC Go!8, which can manage up to 4 On-line doors and 48 Off-line doors, and can be extended to up to 20 On-line doors using the NÜO DC Slave units. By means of WILI/WILI+, 4 Video-intercom doors can be added. ,WKDVDV\VWHPFDSDFLW\RIXSWRXVHUVZLWKFDUGVDQGÀQJHUSULQWV The NÜO Go! application is embedded in the controller. It can be connected to directly through a browser from any device such as a computer or a tablet. NÜO Go! Manual Introduction 5 ;LJOUPJHS:WLJPÄJH[PVUZHUK.LULYHS-LH[\YLZ NÜO GO! GENERAL FEATURES 1²2'&*R -IP Controller with embedded application. -Set up from any a browser on any device (computer or tablet). -TFT-LCD touch screen 1.77” for monitoring the status of the entire installation -Multi-door management -max. 8 On-Line doors, -TH_6ќ3PULKVVYZ^P[OLSLJ[YVUPJSVJRZHUK+H[H6U*HYKJVTT\UPJH[PVU -max. 4 Video-intercom doors. -Up to 4 Video-consoles for Video-intercom. -\ZLYZ^P[OJHYKZHUKÄUNLYWYPU[Z -Manages authorisations for 25 access groups and 25 timetables. -Compatible with all NÜO readers. -Ethernet connection. -Steel casing with a tough polycarbonate frame -Operating temperature: : -10 ºC a 50 ºC. This manual serves as an installation and operation guide for the following equipment: • Ref. 42552 - NÜO DC Go! 8 • Ref. 42530 - NÜO SDU • Ref. 42550 - NÜO SDU+ • Ref. 42532 - NÜO WILI (SDUY15) • Ref. 42545 - NÜO WILI+ (SDUY50) • Ref. 42451 - W&M View 1.1. EQUIPMENT REFERENCES NÜO Go! Manual Introduction 6 ;LJOUPJHS:WLJPÄJH[PVUZHUK.LULYHS-LH[\YLZ NÜO SDU+·SECURE DOOR UNIT FOR 2 READER + I/O (REF: 42550)· INPUT VOLTAGE48 VDC POWER 1,5 W stand-by 2,5 W maximum CONNECTIONS 2 Readers 3VJR 1 Magnetic sensor 1 Entry Button 2 Inputs and 2 Outputs OPERATING TEMPERATURE -10ºC to 50ºC DIMENSIONSHeight 196, Width 116, Depth 49,4 mm NÜO DC GO! 8 ·CONTROLLER (REF: 42552)· INPUT VOLTAGE In: 100 - 240 VAC Out: 48VDC POWER 12 W (without any connected elements) 120 W (with 8 doors and their terminals, without Batteris); 30W máximo por bus Number of doors8 Number of readersPer door: 1 with SDU, 2 with SDU+ BATERÍA Sealed Lead-Acid (SLA) or GEL batteries. > 4 hours of autonomy (4 doors) > 2,5 hours of autonomy (8 doors) OPERATING TEMPERATURE -10ºC to 50ºC DIMENSIONSHeight 348, Width 348, Depth 75 mm 1.2. CONTROLLER AND SECURE DOOR UNITS NÜO SDU ·SECURE DOOR UNIT FOR 1 READER (REF: 42530)· INPUT VOLTAGE48 VDC POWER 0,45 W stand-by 1 W maximum CONNECTIONS 1 Reader 3VJR 1 Magnetic sensor 1 Entry Button OPERATING TEMPERATURE -10ºC to 50ºC DIMENSIONSHeight 107, Width 107, Depth 43,8 mm NÜO Go! Manual Introduction 7 ;LJOUPJHS:WLJPÄJH[PVUZHUK.LULYHS-LH[\YLZ For door units, The “LOCK 24V” output …
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BY TECHDESIGN S.L. Calle Thomas Edison 5, Arganda del Rey Madrid, 28500, Spain Product Similarity Declaration Date: September 22, 2020 FCC ID: 2ARQ3-MTA42520 Model Number: 42520, 42491, 42537, 42538, 42539,42490 To: Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD To Whom It May Concern, We, BY TECHDESIGN S.L., declare that this EUT (Access Control System – RF readers ) Model Number: 42520, 42491, 42537, 42538, 42539,42490 board, Schematic, Hardware version, Software version, structure and internal photos are same, named differently due to marketing purposes. Model name Type Brand Power supply and input / output Model difference 42520 Golf NÜO SDU or SDU+ for NÜO Golf: Input: 24VDC, 2.0W All models are same included the hardware and software, except of the exterior’s color and the model name. 42491 42537 42538 42539 42490 Should you have any questions or comments regarding this matter, please have my best attention. Sincerely, (Signed) Name / Title: Inmaculada Ortiz / General Manager Company: BY TECHDESIGN S.L. Address: Calle Thomas Edison 5, Arganda del Rey Madrid, 28500, Spain Phone: 34918707193 Fax: Email:
BY TECHDESIGN S.L. C5266091_X8_Ed.1 Letter of Authorization Company: BY TECHDESIGN S.L. Address: Calle Thomas Edison 5, Arganda del Rey Madrid, 28500, Spain Product Name: Access Control System - RF readers Model Number: 42520, 42491, 42537, 42538, 42539,42490 FCC Identifier: 2ARQ3-MTA42520 We authorize LGAI Technological Center S.A., Ronda de la Font del Carme, s/n, 08193 Bellaterra, Spain, to act on our behalf on all matters concerning the FCC certification of the above named equipment. Any individual within LGAI Technological Center S.A. is authorized to act on our behalf and take action on the application. We declare that authorize LGAI Technological Center S.A., Ronda de la Font del Carme, s/n, 08193 Bellaterra, Spain,, is allowed to forward all information related to the approval project to the Federal Communication Commission and to discuss any issues concerning the approval application. Any and all acts carried out by LGAI Technological Center S.A. on our behalf shall have the same effect as acts of our own. Name: Inmaculada Ortiz Date: 2020-09-22 Title: General Manager Signature of applicant: 1/1
Page 1 of 10 External Photos of EUT 42520 EUT-1 EUT-2 Page 2 of 10 EUT-3 EUT-4 Page 3 of 10 EUT-5 EUT-6
Label location 0013B842 FCC ID: 2ARQ3-MTA42520 Ref: 42520 Input: 24V 0.1A GOLF
Page 4 of 10 Internal Photos of EUT 42520 EUT-1 EUT-2 FCC ID: 2ARQ3-MTA42520 Page 5 of 10 EUT-3 EUT-4 Page 6 of 10 EUT-5 EUT-6 Page 7 of 10 EUT-7 EUT-8 NFC IC Page 8 of 10 EUT-9 EUT-10 NFC Antenna Page 9 of 10 EUT-11 EUT-12 BT Antenna BT IC Page 10 of 10 EUT-13 --------------------This is the last page of the report. -----------------------
Report No.: E202008101990-14 Application No.: E202008101990 Page 1 of 5 DIRECTIONS OF TEST 1. This station carries out test task according to the national regulation of verifications which can be traced to National Primary Standards and BIPM. 2. The test report merely corresponds to the test sample. It is not permitted to copy extracts of these test result without the written permission of the test laboratory. 3. If there is any objection concerning the test, the client should inform the laboratory within 15 days from the date of receiving the test report. Report No.: E202008101990-14 Application No.: E202008101990 Page 2 of 5 TABLE OF CONTENTS 1. GENERAL DESCRIPTION OF EUT .................................................................................................................. 3 1.1. APPLICANT ................................................................................................................. 3 1.2. MANUFACTURER ...................................................................................................... 3 1.3. FACTORY .................................................................................................................... 3 1.4. BASIC DESCRIPTION OF EQUIPMENT UNDER TEST ......................................... 3 2. LABORATORY AND ACCREDITATIONS ......................................................................................................... 4 2.1. LABORATORY ............................................................................................................ 4 2.2. ACCREDITATIONS .................................................................................................... 4 3. INTRODUCTION .......................................................................................................................................... 5 4. LIMIT AND GUIDELINES ON EXPOSURE TO ELECTROMAGNETIC FIELDS ........................................................ 5 5. CALCULATION METHOD ............................................................................................................................. 5 Report No.: E202008101990-14 Application No.: E202008101990 Page 3 of 5 1. GENERAL DESCRIPTION OF EUT 1.1. APPLICANT Name: BY TECHDESIGN S.L. Address: Calle Thomas Edison 5, Arganda del Rey Madrid, 28500, Spain 1.2. MANUFACTURER Name: BY TECHDESIGN S.L. Address: Calle Thomas Edison 5, Arganda del Rey Madrid, 28500, Spain 1.3. FACTORY Name: BY TECHDESIGN S.L. Address: Calle Thomas Edison 5, Arganda del Rey Madrid, 28500, Spain 1.4. BASIC DESCRIPTION OF EQUIPMENT UNDER TEST Equipment: Access Control System - RF readers Model No.: 42520 Adding Model: 42491, 42537, 42538, 42539, 42490 Model Difference: Type Power supply and input /output Difference Golf SDU or SDU+ for NÜO Golf: Input: 24VDC, 2.0W All models are same included the hardware and software, except of the exterior’s color and the model name. Trade Name: FCC ID: 2ARQ3-MTA42520 Power supply: SDU or SDU+ for NÜO Golf: Input: 24VDC, 2.0W Frequency Range: 2402 ~ 2480MHz Transmit Power: 1.09dBm Modulation type: GFSK for 1Mbps Channel space: 2MHz Antenna Specification: Internal antenna 2.5dBi gain (Max.) Temperature Range: -0°C ~ +50°C Hardware Version: SWM0505_BYV3_boot_01_00_05_00_app_02_00_05_00_release_11 5.byfw Software Version: SWM0505_BYV3_boot_01_00_05_00_app_02_00_05_00_release_11 5.byfw Sample No: 0001, 0002 Note: / Report No.: E202008101990-14 Application No.: E202008101990 Page 4 of 5 2. LABORATORY AND ACCREDITATIONS 2.1. LABORATORY The tests & measurements refer to this report were performed by Shenzhen EMC Laboratory of Guangzhou GRG Metrology & Test Co,. Ltd. Add.: No.1301 Guanguang Road Xinlan Community, Guanlan Street, Longhua District Shenzhen, 518110, People’s Republic of China. P.C.: 518000 Tel : 0755-61180008 Fax: 0755-61180008 2.2. ACCREDITATIONS Our laboratories are accredited and approved by the following approval agencies according to GB/T 27025(ISO/IEC 17025:2017) USA A2LA(Certificate #:2861.01) The measuring facility of laboratories has been authorized or registered by the following approval agencies. Canada Industry Canada USA FCC Report No.: E202008101990-14 Application No.: E202008101990 Page 5 of 5 3. INTRODUCTION 42520 (FCC ID: 2ARQ3-MTA42520) is a Access Control System - RF readers with Bluetooth Low Energy. 4. LIMIT AND GUIDELINES ON EXPOSURE TO ELECTROMAGNETIC FIELDS §1.1307(b)(1), systems operating under the provisions of this section shall be operated in a manner that ensure that the public is not exposed to radio frequency energy level in excess of the Commission’s guideline. According to KDB 447498 Mobile Portable RF Exposure, no SAR required if power is lower than the flowing threshold: The 1-g and 10-g SAR test exclusion thresholds for 100 MHz to 6 GHz at test separation distances ≤ 50 mm are determined by: [(max. power of channel, including tune-up tolerance, mW)/(min. test separation distance, mm)] [√f(GHz)] ≤ 3.0 for 1-g SAR and ≤ 7.5 for 10-g extremity SAR, where • f(GHz) is the RF channel transmit frequency in GHz • Power and distance are rounded to the nearest mW and mm before calculation 25 • The result is rounded to one decimal place for comparison • 3.0 and 7.5 are referred to as the numeric thresholds in the step 2 below The test exclusions are applicable only when the minimum test separation distance is ≤ 50 mm and for transmission frequencies between 100 MHz and 6 GHz. When the minimum test separation distance is < 5 mm, a distance of 5 mm according to 5) in section 4.1 is applied to determine SAR test exclusion. 5. CALCULATION METHOD [(max. power of` channel, including tune-up tolerance, mW)/(min. test separation distance, mm)] ·[√f(GHz)] ≤ 3.0 Conducted Power + tune up tolerance =1.09dBm=1.29mW Distance = 5 mm f =2.402 [1.29/5] * SQRT(2.402) =0.054 0.4 ≤ 3.0 Therefore, excluded from SAR testing. --------------------This is the last page of the report. -----------------------
Report No.: E202008101990-12 Application No.: E202008101990 Page 1 of 45 DIRECTIONS OF TEST 1. This station carries out test task according to the national regulation of verifications which can be traced to National Primary Standards and BIPM. 2. The test report merely corresponds to the test sample. It is not permitted to copy extracts of these test result without the written permission of the test laboratory. 3. If there is any objection concerning the test, the client should inform the laboratory within 15 days from the date of receiving the test report. Report No.: E202008101990-12 Application No.: E202008101990 Page 2 of 45 TABLE OF CONTENTS 1. TEST RESULT SUMMARY ............................................................................................................................ 4 2. GENERAL DESCRIPTION OF EUT ................................................................................................................. 5 2.1. APPLICANT .............................................................................................................................................. 5 2.2. MANUFACTURER ................................................................................................................................... 5 2.3. FACTORY ................................................................................................................................................. 5 2.4. BASIC DESCRIPTION OF EQUIPMENT UNDER TEST ...................................................................... 5 2.5. TEST OPERATION MODE ...................................................................................................................... 7 2.6. LOCAL SUPPORTIVE .............................................................................................................................. 7 3. LABORATORY AND ACCREDITATIONS ........................................................................................................ 8 3.1. LABORATORY ......................................................................................................................................... 8 3.2. ACCREDITATIONS ................................................................................................................................. 8 3.3. MEASUREMENT UNCERTAINTY ........................................................................................................ 8 4. LIST OF USED TEST EQUIPMENT AT GRGT .................................................................................................. 9 5. CONDUCTED EMISSION MEASUREMENT ................................................................................................... 10 5.1. LIMITS ..................................................................................................................................................... 10 5.2. TEST PROCEDURES .............................................................................................................................. 10 5.3. TEST SETUP ........................................................................................................................................... 11 5.4. DATA SAMPLE ...................................................................................................................................... 11 5.5. TEST RESULTS ...................................................................................................................................... 12 6. RADIATED SPURIOUS EMISSIONS ............................................................................................................. 14 6.1. LIMITS ..................................................................................................................................................... 14 6.2. TEST PROCEDURES (PLEASE REFER TO MEASUREMENT STANDARD) .................................................... 14 6.3. TEST SETUP ........................................................................................................................................... 18 6.4. DATA SAMPLE ...................................................................................................................................... 19 6.5. TEST RESULTS ...................................................................................................................................... 20 7. 6DB BANDWIDTH ..................................................................................................................................... 29 7.1. LIMITS ..................................................................................................................................................... 29 7.2. TEST PROCEDURES .............................................................................................................................. 29 7.3. TEST SETUP ........................................................................................................................................... 29 7.4. TEST RESULTS ...................................................................................................................................... 30 8. MAXIMUM PEAK OUTPUT POWER ........................................................................................................... 32 8.1. LIMITS ..................................................................................................................................................... 32 8.2. TEST PROCEDURES .............................................................................................................................. 32 8.3. TEST SETUP ........................................................................................................................................... 32 8.4. TEST RESULTS ...................................................................................................................................... 32 9. POWER SPECTRAL DENSITY ...................................…
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Conducted Emission on AC mains 0.15MHz to 30MHz FCC ID: 2ARQ3-MTA42520 Radiated Spurious Emission Test(Below 1GHz) Radiated Spurious Emission Test(Above 1GHz)
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | 1.30 mW |

Biometric Reader
Equipment Class
DTS - Digital Transmission System
Access Control System - RF readers
Equipment Class
DXX - Part 15 Low Power Communication Device Transmitter
Access Control System - RF readers
Equipment Class
DXX - Part 15 Low Power Communication Device Transmitter
Access Control System - RF readers
Equipment Class
DXX - Part 15 Low Power Communication Device Transmitter