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2BUUJ-DN-ENG41DN-ENG41

DINO INNOVATION LIMITED

Application Details

Equipment Class
NII - Unlicensed National Information Infrastructure TX
Date of Grant
May 07, 2026
Application Purpose
Original Equipment
Equipment Note
DN-ENG41
Frequency Range
5180.00000000 - 5240.00000000
Company
DINO INNOVATION LIMITED
Country
United Kingdom

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Test Report

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Document Text

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

Test Report

NOTE: This document is issued by Shenzhen Morlab Communications Technology Co., Ltd., the test report shall not be reproduced except in full without prior written permission of the company. The test results apply only to the particular sample(s) tested and to the specific tests carried out which is available on request for validation and information confirmed at our website. MORLAB Shenzhen Morlab Communications Technology Co., Ltd. FL.1-3, Building A, FeiYang Science Park, No.8 LongChang Road, Block67, BaoAn District, ShenZhen, GuangDong Province, P. R. China Tel: 86-755-36698555 Fax: 86-755-36698525 Http://www.morlab.cn E-mail: [email protected] Page 1 of 82 REPORT No.:SZ25120053W04 TEST REPORT APPLICANT : DINO INNOVATION LIMITED PRODUCT NAME : DN-ENG41 MODEL NAME : DN-ENG41 BRAND NAME :GigglePal FCC ID :2BUUJ-DN-ENG41 STANDARD(S) : 47 CFR Part 15 Subpart E RECEIPT DATE : 2025-12-03 TEST DATE :2025-12-08 to 2025-12-26 ISSUE DATE :2026-04-14 Edited by: Zeng Xiaoying (Rapporteur) Approved by: Shen Junsheng (Supervisor) MORLAB Shenzhen Morlab Communications Technology Co., Ltd. FL.1-3, Building A, FeiYang Science Park, No.8 LongChang Road, Block67, BaoAn District, ShenZhen, GuangDong Province, P. R. China Tel: 86-755-36698555 Fax: 86-755-36698525 Http://www.morlab.cn E-mail: [email protected] Page 2 of 82 REPORT No.:SZ25120053W04 DIRECTORY 1. Summary of Test Result ꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏ 4 1.1. Testing Applied Standards ꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏ 4 1.2. Test Equipment List ꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏ 5 1.3. Measurement Uncertainty ꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏ 7 1.4. Testing Laboratory ꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏ 7 2. General Description ꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏ 8 2.1. Information of Applicant and Manufacturer ꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏ 8 2.2. Information of EUT ꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏ 8 2.3. Channel List of EUT ꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏ 9 2.4. Test Configuration of EUT ꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏ 10 2.5. Test Conditions ꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏ 10 2.6. Test Setup Layout Diagram ꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏ 11 3. Test Results ꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏ 14 3.1. Antenna Requirement ꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏ 14 3.2. Duty Cycle of Test Signal ꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏ 15 3.3. Maximum Conducted Output Power ꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏ 16 3.4. Emission Bandwidth ꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏ 17 3.5. Peak Power Spectral Density ꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏ 19 3.6. Frequency Stability ꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏ 20 3.7. Conducted Emission ꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏ 21 3.8. Restricted Frequency Bands ꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏ 22 3.9. Radiated Emission ꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏ 24 Annex A Test Data and Result ꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏ 26 Notes ꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏꞏ 82 MORLAB Shenzhen Morlab Communications Technology Co., Ltd. FL.1-3, Building A, FeiYang Science Park, No.8 LongChang Road, Block67, BaoAn District, ShenZhen, GuangDong Province, P. R. China Tel: 86-755-36698555 Fax: 86-755-36698525 Http://www.morlab.cn E-mail: [email protected] Page 3 of 82 REPORT No.:SZ25120053W04 Change History Version Date Reason for change 1.0 2026-04-14 First edition MORLAB Shenzhen Morlab Communications Technology Co., Ltd. FL.1-3, Building A, FeiYang Science Park, No.8 LongChang Road, Block67, BaoAn District, ShenZhen, GuangDong Province, P. R. China Tel: 86-755-36698555 Fax: 86-755-36698525 Http://www.morlab.cn E-mail: [email protected] Page 4 of 82 REPORT No.:SZ25120053W04 1. Summary of Test Result No. Section Description Test Date Test EngineerResult Remark 1 15.203 Antenna Requirement N/A N/A PASS / 2 ANSI C63.10 Duty Cycle of the Test Signal Dec. 08, 2025 Su Xiaoxian PASS / 3 15.407(a) Maximum Conducted Output Power Dec. 08, 2025 Su Xiaoxian PASS / 4 15.407(a) (e) Emission Bandwidth Dec. 12, 2025 Su Xiaoxian PASS / 5 15.407(a) Peak Power Spectral Density Dec. 12, 2025 Su Xiaoxian PASS / 6 15.407(g) Frequency Stability Dec. 12, 2025 Su Xiaoxian PASS / 7 15.207 Conducted Emission Dec. 16, 2025 Wang Yapeng PASS / 8 15.407(b) Restricted Frequency Bands Dec. 17, 2025 Zhong Xiangyun PASS / 9 15.407(b) Radiated Emission Dec. 26, 2025 Zhong Xiangyun PASS / Note 1: The tests of Conducted Emission and Radiated Emission were performed according to the method of measurements prescribed in ANSI C63.10-2020. Note 2: These RF tests were performed according to the method of measurements prescribed in KDB789033 D02 v02r01. Note 3: Any additions, deviation, or exclusions from the method shall be noted in the “Remark”. 1.1. Testing Applied Standards According to the specifications of the manufacturer, the EUT must comply with the requirements of the following standards:  47 CFR Part 15 Subpart E Radio Frequency Devices MORLAB Shenzhen Morlab Communications Technology Co., Ltd. FL.1-3, Building A, FeiYang Science Park, No.8 LongChang …

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Test Report

致力于为客户提供专业级天线解决方案 Test Report of Antenna of Youlimaike T3501 Radio frequency: Hong YuankaiDate: 2025.12.08Contact: 15119409299 致力于为客户提供专业级天线解决方案 Radio frequency: Zeng XianghaoDate: 2021-10-12Report version: V0.1 Project development environment Yusheng Communications product portfolio covers nearly all antenna applications for wireless terminal devices, including automotive antennas, high-precision surveying and mapping antennas, UAV ground and satellite data navigation antennas, high-precision positioning antennas, wireless transmission antennas for medical devices, consumer-grade antennas (for mobile phones, tablets, and laptops), base station and indoor distribution antennas, smart wearable antennas (for smartwatches and TWS earphones), security and home automation antennas, as well as antennas for various wireless data transmission and control smart devices. As we transition from the Internet era to the intelligent era, China is actively building a digital society and smart cities. Over the next 5-10 years, both the consumer electronics market and the Internet of Things (IoT) sector will demonstrate tremendous growth potential. The wireless communications field is highly diversified. In the future, Yusheng will leverage its core strengths in antenna technology, customer platform advantages, and comprehensive capabilities to deliver professional-grade product solutions with strong market competitiveness. 致力于为客户提供专业级天线解决方案 1 Project Debugging IntroductionReport Version Outlinemainboard conductionactive antenna parameterantenna source free parameterSummary & Notes 23456 致力于为客户提供专业级天线解决方案 Project Debugging Introduction type template motherboard Band and antenna material frequency range material quality main antenna 4G: B1/2/3/4/5/7/12/13/14/17/18/19/20/25/26/38/ 40/41/66/71 FPC diversity antenna 700MHz-960MHz, 17 00MHz2700MHz FPC four-harmonic antenna 1575.42MHz/2400MHz-2500MHz/5100MHz-5800MHz FPC performance requirement Implement according to customer requirements 致力于为客户提供专业级天线解决方案 Report Version Outline Report Version Report time The problems solved by the antenna dev elopment V0.2 2025.10.10 Sample Passive Testing Report V0.3 2025.10.23 Sample Active Testing Report V0.4 2025.11.10 Complete Machine Test Report (Updated with Split Set Matching) V0.5 2025.11.11 Complete Machine Test Report V0.6 2025.12.03 Complete Machine Test Report V0.7 2025.12.07 Whole Machine Test Report (Optimized Main Antenna Matching and 4-in-1) V0.8 2025.12.08 Complete Machine Test Report (Specs Document) 致力于为客户提供专业级天线解决方案 master antenna switch logic RF1(10pF) LTE-B1/2/3/4/5/7/18/19/20/25/26/38/ 40 /41/ 66 RF2( 6.8 nH) LTE-B13/14 RF3( 33nH) LTE-B12/17 RF4( 100 nH) LTE-B71 致力于为客户提供专业级天线解决方案 main antenna matching Main antenna main path matching:L8531:100nHC10631: 33pFL8532: 7.5nHC10631: NCR19063: 6.8pFC10633: NC Main antenna switch matching:C10626: 56pFR19060: NCL8528: RF1, 10pFR19061: RF2, 6.8 nHL8529: RF3, 33nHL8530: RF4, 100 nH 致力于为客户提供专业级天线解决方案 passive parameters of main antenna RF1: RF2: 致力于为客户提供专业级天线解决方案 passive parameters of main antenna RF3: RF4: 致力于为客户提供专业级天线解决方案 Passive Test Freq Effi Gain Effi Freq Effi Gain Effi (MHz) (dBi) (dBi) (%%) (MHz) (dBi) (dBi) (%%) 800.0 -9.94 -4.73 10.14 1820.0 -3.31 1.25 46.63 810.0 -8.53 -3.13 14.04 1840.0 -2.68 1.82 54 820.0 -7.15 -1.61 19.29 1860.0 -2.71 1.8 53.6 830.0 -6.24 -0.61 23.75 1880.0 -2.79 1.75 52.65 840.0 -5.91 -0.1 25.66 1900.0 -2.69 1.85 53.84 850.0 -5.96 -0.03 25.38 1920.0 -2.7 1.74 53.66 860.0 -6.39 -0.38 22.94 1940.0 -2.86 1.47 51.82 870.0 -7.02 -0.91 19.84 1960.0 -3.23 0.93 47.57 880.0 -7.77 -1.65 16.71 1980.0 -3.98 0.42 40.03 1700.0 -4.72 -0.57 33.73 2000.0 -4.31 0.28 37.06 1720.0 -5.41 -1.19 28.77 2020.0 -4.56 0.03 34.98 1740.0 -5.45 -1.07 28.52 2040.0 -4.77 -0.36 33.37 1760.0 -4.65 -0.09 34.27 2060.0 -4.7 -0.69 33.87 1780.0 -3.77 0.84 42.02 2080.0 -4.62 -1.06 34.51 1800.0 -3.2 1.4 47.87 2100.0 -4.53 -1.41 35.28 Passive Parameter of Main Antenna-RF1 Passive Test Freq Effi Gain Effi Freq Effi Gain Effi (MHz) (dBi) (dBi) (%%) (MHz) (dBi) (dBi) (%%) 2120.0 -4.45 -1.59 35.9 2420.0 -2.32 1.56 58.61 2140.0 -4.28 -1.41 37.31 2440.0 -2.3 1.79 58.95 2160.0 -4.04 -1.22 39.48 2460.0 -2.57 1.62 55.33 2180.0 -3.79 -1.09 41.8 2480.0 -2.63 1.64 54.53 2200.0 -3.63 -0.6 43.4 2500.0 -2.86 1.42 51.81 2220.0 -3.53 -0.32 44.37 2520.0 -3.01 1.23 50.03 2240.0 -3.38 -0.07 45.9 2540.0 -3.01 1.1 49.96 2260.0 -3.3 0.02 46.82 2560.0 -3.18 0.85 48.12 2280.0 -3.11 0.21 48.9 2580.0 -3.35 0.69 46.22 2300.0 -2.97 0.31 50.48 2600.0 -3.6 0.58 43.65 2320.0 -2.85 0.38 51.93 2620.0 -3.82 0.39 41.51 2340.0 -2.63 0.67 54.58 2640.0 -3.96 0.23 40.14 2360.0 -2.55 0.8 55.54 2660.0 -4.16 -0.06 38.41 2380.0 -2.42 1.1 57.23 2680.0 -4.36 -0.39 36.63 2400.0 -2.37 1.35 57.91 2700.0 -4.41 -0.25 36.26 致力于为客户提供专业级天线解决方案 Passive Test Freq Effi Gain Effi Freq Effi Gain Effi (MHz) (dBi) (dBi) (%%) (MHz) (dBi) (dBi) (%%) 720.0 -11.12 -5.64 7.73 1820.0 -4.7 -0.36 33.92 730.0 -10.25 -4.93 9.43 1840.0 -4.12 0.11 38.73 740.0 -9.44 -4.24 11.38 1860.0 -4.24 -0.1 37.63 750.0 -8.48 -3.29 14.19 1880.0 -4.4 -0.39 36.33 760.0 -7.51 -2.36 17.74 1900.0 -4.39 -0.51 36.37 770.0 -6.65 -1.51 21.63 1920.0 -4.46 -0.43 35.79 780.0 -5.86 -0.69 25.92 1940.0 -4.61 -0.37 34.61 790.0 -6.46 -1.22 22.59 1960.0 -4.8 -0.25 33.12 800.0 -7.21 -1.8 19 1980.0 -5.18 -0.49 30.34 1700.0 -4.58 -0.67 34.86 2000.0 -5.04 -0.44 31.36 1720.0 -5.39 -1.48 28.88 2020.0 -4.8 -0.39 33.08 1740.0 -5.81 -1.85 26.23 2040.0 -4.66 -0.59 34.19 1760.0 -5.61 -1.5 27.49 2060.0 -4.42 -0.81 36.16 1780.0 -5.02 -0.78 31.48 2080.0 -4.25 -1.11 37.58 1800.0 -4.54 -0.24 35.13 2100.0 -4.11 -1.38 38.85 Passive Parameter of Main Antenna-RF2 Passive Test Freq Effi Gain Effi Freq Effi Gain Effi (MHz) (dBi) (dBi) (%%) (MHz) (dBi) (dBi) (%%) 2120.0 -4.05 -1.19 39.39 2420.0 -2.76 1.16 52.98 2140.0 -3.98 -1.07 40.03 2440.0 -2.64 1.12 54.47 2160.0 -3.87 -0.91 41.05 2460.0 -2.83 0.8 52.11 2180.0 -3.72 -0.61 42.47 2480.0 -2.81 0.7 52.41 2200.0 -3.62 -0.41 43.42 2500.0 -2.96 0.46 50.62 2…

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RF Exposure Info

NOTE: This document is issued by Shenzhen Morlab Communications Technology Co., the test report shall not be reproduced except in full without prior written permission of the company. The test results apply only to the particular sample(s) tested and to the specific tests carried out which is available on request for validation and information confirmed at our website. MORLAB Shenzhen Morlab Communications Technology Co., Ltd. FL.1-3, Building A, FeiYang Science Park, No.8 LongChang Road, Block67, BaoAn District, ShenZhen , GuangDong Province, P. R. China Tel: 86-755-36698555 Fax: 86-755-36698525 Http://www.morlab.cn E-mail: [email protected] REPORT No.:SZ25120053S01 Page 1 of 73 TEST REPORT APPLICANT : DINO INNOVATION LIMITED PRODUCT NAME : DN-ENG41 MODEL NAME : DN-ENG41 BRAND NAME : GigglePal FCC ID : 2BUUJ-DN-ENG41 STANDARD(S) : FCC 47 CFR Part 2 (2.1093) IEEE 1528-2013 RECEIPT DATE : 2025-12-12 TEST DATE : 2025-12-30 to 2026-01-08 ISSUE DATE : 2026-04-23 Edited by: Pang Siyu (Rapporteur) Approved by: Shen Junsheng (Supervisor) MORLAB Shenzhen Morlab Communications Technology Co., Ltd. FL.1-3, Building A, FeiYang Science Park, No.8 LongChang Road, Block67, BaoAn District, ShenZhen , GuangDong Province, P. R. China Tel: 86-755-36698555 Fax: 86-755-36698525 Http://www.morlab.cn E-mail: [email protected] REPORT No.:SZ25120053S01 Page 2 of 73 DIRECTORY 1. Statement of Compliance·································································································· 5 2. Technical Information ········································································································ 6 2.1. Applicant and Manufacturer Information ····································································· 6 2.2. Equipment under Test (EUT) Description ···································································· 6 2.3. Environment of Test Site/Conditions ··········································································· 8 3. Specific Absorption Rate (SAR) ······················································································· 9 3.1. Introduction······················································································································ 9 3.2. SAR Definition ················································································································· 9 4. RF Exposure Limits ········································································································· 10 4.1. Uncontrolled Environment ··························································································· 10 4.2. Controlled Environment ······························································································· 10 5. Applied Reference Documents ······················································································ 11 6. SAR Measurement System ····························································································· 12 6.1. E-Field Probe ················································································································· 13 6.2. Data Acquisition Electronics (DAE) ············································································ 13 6.3. Robot ······························································································································ 14 6.4. Measurement Server ····································································································· 14 6.5. Light Beam Unit ············································································································· 15 6.6. Phantom ························································································································· 15 6.7. Device Holder ················································································································ 16 6.8. Data Storage and Evaluation ······················································································· 17 6.9. Test Equipment List ······································································································ 19 7. Tissue Simulating Liquids ······························································································ 21 8. SAR System Verification ································································································· 24 9. EUT Testing Position ······································································································· 27 9.1. SAR Evaluation to the Mouth/Jaw Regions of the Phantom ··································· 28 MORLAB Shenzhen Morlab Communications Technology Co., Ltd. FL.1-3, Building A, FeiYang Science Park, No.8 LongChang Road, Block67, BaoAn District, ShenZhen , GuangDong Province, P. R. China Tel: 86-755-36698555 Fax: 86-755-36698525 Http://www.morlab.cn E-mail: [email protected] REPORT No.:SZ25120053S01 Page 3 of 73 9.2. Body-Supported Device Configurations ···································································· 28 9.3. Wireless Router (Hotspot) Configurations ································································ 29 10. Measurement Procedures ······························································································· 31 10.1. Spatial Peak SAR Evaluation ······················································································· 32 10.2. Power Reference Measurement ·················································································· 32 10.3. Area Scan Procedures ·································································································· 32 10.4. Zoom Scan Procedures ································································································ 33 10.5. SAR Averaged Methods ······························································································· 33 10.6. Power Drift Mon…

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RF Exposure Info

Annual validation for test lab. Appendix Annual validation for Test Lab. General calibration information Date 2025.09.25 Test Laboratory ShenZhen Morlab Communications Technology Co., Ltd. Antenna serial No. D5250V2-SN: 1176 Antenna Parameters with Head TSL Impedance, transformed to feed point 51.07Ω+2.05jΩ Return Loss -32.818dB General Antenna Parameters and Design Electrical Delay (one direction) 1.276 ns After long term use with 100W radiated power,only a slight warming of the dipole near the feed point can be measured The dipole is made of standard semirigid coaxial cable. The center conductor of the feeding line is directly connected to the second arm of the dipole. The antenna is therefore short-circuited for DC-signals. On some of the dipoles, small end caps are added to the dipole arms in order to improve matching when loaded according to the position as explained in the "Measurement Conditions" paragraph. The SAR data are not affected by this change. The overall dipole length is still according to the Standard No excessive force must be applied to the dipole arm, because they might bend or the soldered connections near the feed point may be damaged . Annual validation for test lab. Annual validation for test lab. Appendix Impedance Measurement Plot for Head TSL Annual validation for test lab. Appendix Annual validation for Test Lab. General calibration information Date 2025.09.25 Test Laboratory ShenZhen Morlab Communications Technology Co., Ltd. Antenna serial No. D5600V2-SN: 1176 Antenna Parameters with Head TSL Impedance, transformed to feed point 50.89Ω-2.58jΩ Return Loss -31.355dB General Antenna Parameters and Design Electrical Delay (one direction) 1.276 ns After long term use with 100W radiated power,only a slight warming of the dipole near the feed point can be measured The dipole is made of standard semirigid coaxial cable. The center conductor of the feeding line is directly connected to the second arm of the dipole. The antenna is therefore short-circuited for DC-signals. On some of the dipoles, small end caps are added to the dipole arms in order to improve matching when loaded according to the position as explained in the "Measurement Conditions" paragraph. The SAR data are not affected by this change. The overall dipole length is still according to the Standard No excessive force must be applied to the dipole arm, because they might bend or the soldered connections near the feed point may be damaged . Annual validation for test lab. Annual validation for test lab. Appendix Impedance Measurement Plot for Head TSL Annual validation for test lab. Appendix Annual validation for Test Lab. General calibration information Date 2025.09.25 Test Laboratory ShenZhen Morlab Communications Technology Co., Ltd. Antenna serial No. D5750V2-SN: 1176 Antenna Parameters with Head TSL Impedance, transformed to feed point 50.962Ω+0.196jΩ Return Loss -40.247dB General Antenna Parameters and Design Electrical Delay (one direction) 1.276 ns After long term use with 100W radiated power,only a slight warming of the dipole near the feed point can be measured The dipole is made of standard semirigid coaxial cable. The center conductor of the feeding line is directly connected to the second arm of the dipole. The antenna is therefore short-circuited for DC-signals. On some of the dipoles, small end caps are added to the dipole arms in order to improve matching when loaded according to the position as explained in the "Measurement Conditions" paragraph. The SAR data are not affected by this change. The overall dipole length is still according to the Standard No excessive force must be applied to the dipole arm, because they might bend or the soldered connections near the feed point may be damaged . Annual validation for test lab. Annual validation for test lab. Appendix Impedance Measurement Plot for Head TSL

RF Exposure Info

Annual validation for test lab. Appendix Annual validation for Test Lab. General calibration information Date 2025.09.25 Test Laboratory ShenZhen Morlab Communications Technology Co., Ltd. Antenna serial No. D2600V2-SN: 1198 Antenna Parameters with Head TSL Impedance, transformed to feed point 46.107Ω-6.315jΩ Return Loss -22.267dB General Antenna Parameters and Design Electrical Delay (one direction) 1.276 ns After long term use with 100W radiated power,only a slight warming of the dipole near the feed point can be measured The dipole is made of standard semirigid coaxial cable. The center conductor of the feeding line is directly connected to the second arm of the dipole. The antenna is therefore short-circuited for DC-signals. On some of the dipoles, small end caps are added to the dipole arms in order to improve matching when loaded according to the position as explained in the "Measurement Conditions" paragraph. The SAR data are not affected by this change. The overall dipole length is still according to the Standard No excessive force must be applied to the dipole arm, because they might bend or the soldered connections near the feed point may be damaged . Annual validation for test lab. Annual validation for test lab. Appendix Impedance Measurement Plot for Head TSL

RF Exposure Info

Annual validation for test lab. Appendix Annual validation for Test Lab. General calibration information Date 2025.09.25 Test Laboratory ShenZhen Morlab Communications Technology Co., Ltd. Antenna serial No. D2450V2-SN: 805 Antenna Parameters with Head TSL Impedance, transformed to feed point 48.132Ω-0.197jΩ Return Loss -34.362dB General Antenna Parameters and Design Electrical Delay (one direction) 1.276 ns After long term use with 100W radiated power,only a slight warming of the dipole near the feed point can be measured The dipole is made of standard semirigid coaxial cable. The center conductor of the feeding line is directly connected to the second arm of the dipole. The antenna is therefore short-circuited for DC-signals. On some of the dipoles, small end caps are added to the dipole arms in order to improve matching when loaded according to the position as explained in the "Measurement Conditions" paragraph. The SAR data are not affected by this change. The overall dipole length is still according to the Standard No excessive force must be applied to the dipole arm, because they might bend or the soldered connections near the feed point may be damaged . Annual validation for test lab. Annual validation for test lab. Appendix Impedance Measurement Plot for Head TSL

RF Exposure Info

Annual validation for test lab. Appendix Annual validation for Test Lab. General calibration information Date 2025.09.25 Test Laboratory ShenZhen Morlab Communications Technology Co., Ltd. Antenna serial No. D2300V2-SN:1107 Antenna Parameters with Head TSL Impedance, transformed to feed point 45.968Ω+4.046jΩ Return Loss -24.514dB General Antenna Parameters and Design Electrical Delay (one direction) 1.276 ns After long term use with 100W radiated power,only a slight warming of the dipole near the feed point can be measured The dipole is made of standard semirigid coaxial cable. The center conductor of the feeding line is directly connected to the second arm of the dipole. The antenna is therefore short-circuited for DC-signals. On some of the dipoles, small end caps are added to the dipole arms in order to improve matching when loaded according to the position as explained in the "Measurement Conditions" paragraph. The SAR data are not affected by this change. The overall dipole length is still according to the Standard No excessive force must be applied to the dipole arm, because they might bend or the soldered connections near the feed point may be damaged . Annual validation for test lab. Annual validation for test lab. Appendix Impedance Measurement Plot for Head TSL

RF Exposure Info

Annual validation for test lab. Appendix Annual validation for Test Lab. General calibration information Date 2025.09.25 Test Laboratory ShenZhen Morlab Communications Technology Co., Ltd. Antenna serial No. D2000V2-SN: 1050 Antenna Parameters with Head TSL Impedance, transformed to feed point 49.575Ω+0.869jΩ Return Loss -40.252dB General Antenna Parameters and Design Electrical Delay (one direction) 1.276 ns After long term use with 100W radiated power,only a slight warming of the dipole near the feed point can be measured The dipole is made of standard semirigid coaxial cable. The center conductor of the feeding line is directly connected to the second arm of the dipole. The antenna is therefore short-circuited for DC-signals. On some of the dipoles, small end caps are added to the dipole arms in order to improve matching when loaded according to the position as explained in the "Measurement Conditions" paragraph. The SAR data are not affected by this change. The overall dipole length is still according to the Standard No excessive force must be applied to the dipole arm, because they might bend or the soldered connections near the feed point may be damaged . Annual validation for test lab. Annual validation for test lab. Appendix Impedance Measurement Plot for Head TSL

RF Exposure Info

Annual validation for test lab. Appendix Annual validation for Test Lab. General calibration information Date 2025.09.25 Test Laboratory ShenZhen Morlab Communications Technology Co., Ltd. Antenna serial No. D1800V2-SN: 2d158 Antenna Parameters with Head TSL Impedance, transformed to feed point 50.74Ω-9.14jΩ Return Loss -20.86dB General Antenna Parameters and Design Electrical Delay (one direction) 1.276 ns After long term use with 100W radiated power,only a slight warming of the dipole near the feed point can be measured The dipole is made of standard semirigid coaxial cable. The center conductor of the feeding line is directly connected to the second arm of the dipole. The antenna is therefore short-circuited for DC-signals. On some of the dipoles, small end caps are added to the dipole arms in order to improve matching when loaded according to the position as explained in the "Measurement Conditions" paragraph. The SAR data are not affected by this change. The overall dipole length is still according to the Standard No excessive force must be applied to the dipole arm, because they might bend or the soldered connections near the feed point may be damaged . Annual validation for test lab. Annual validation for test lab. Appendix Impedance Measurement Plot for Head TSL

RF Exposure Info

Annual validation for test lab. Appendix Annual validation for Test Lab. General calibration information Date 2025.09.25 Test Laboratory ShenZhen Morlab Communications Technology Co., Ltd. Antenna serial No. D900V2-SN: 1d064 Antenna Parameters with Head TSL Impedance, transformed to feed point 48.82Ω-2.61jΩ Return Loss -52.75dB General Antenna Parameters and Design Electrical Delay (one direction) 1.276 ns After long term use with 100W radiated power,only a slight warming of the dipole near the feed point can be measured The dipole is made of standard semirigid coaxial cable. The center conductor of the feeding line is directly connected to the second arm of the dipole. The antenna is therefore short-circuited for DC-signals. On some of the dipoles, small end caps are added to the dipole arms in order to improve matching when loaded according to the position as explained in the "Measurement Conditions" paragraph. The SAR data are not affected by this change. The overall dipole length is still according to the Standard No excessive force must be applied to the dipole arm, because they might bend or the soldered connections near the feed point may be damaged . Annual validation for test lab. Annual validation for test lab. Appendix Impedance Measurement Plot for Head TSL

Attestation Statements

1

RF Exposure Info

MORLAB Shenzhen Morlab Communications Technology Co., Ltd. FL.1-3, Building A, FeiYang Science Park, No.8 LongChang Road, Block67, BaoAn District, ShenZhen , GuangDong Province, P. R. China Tel: 86-755-36698555 Fax: 86-755-36698525 Http://www.morlab.cn E-mail: [email protected] REPORT No.:SZ25120053S01 Annex H DASY Calibration Certificate

RF Exposure Info

MORLAB Shenzhen Morlab Communications Te…

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Contact Information

Applicant

XING WANG
[email protected]Fax: N/A

Technical Contact

FCC US Agent, LLCTim Payne
[email protected]

3722 Illinois Avenue · Saint Charles, Illinois, 60174 · United States

Test Firm

Shenzhen Morlab Communications Technology Co. Ltd.Mr. Su Feng
[email protected]

Technical Specifications

#Rule PartsFrequency RangePower Output
115E5.18 GHz - 5.24 GHz64.57 mW
215E5.75 GHz - 5.83 GHz63.68 mW
Confidentiality
Long Term
Grant Notes
Output power is maximum average conducted. <br> This device supports IEEE 802.11 a/n/ac 20, 40 and 80 MHz channel bandwidths. <br> This device has integrated DXX, DSS, DTS, NII and PCT transmitters certified under the same FCC ID. <br> SAR compliance for body-worn operating configurations is limited to the belt-clips, holsters or similar accessories that have no metallic component in the assembly and must provide at least 0 mm separation between the device and the user's body. The highest reported SAR values for body-worn accessory and simultaneous transmission use conditions are 1.08 W/kg and 1.57 W/kg, respectively.