
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Balance and MediaFast User Manual (Declaration) Peplink Products: One / One Core / Two / 20 / 20X / 30 LTE / 30 Pro / 210 / 310 / 310X / 310 5G / 310 Fiber 5G / 305 / 380 / 380X / 580 / 580X / 710 / 1350 / 1350 EC / 2500 / 2500 EC / 5000 EC / EPX / SDX / SDX Pro / MediaFast 200 / 500 / 750 Peplink Balance Firm ware 8.5.2 June 2025 COPYRIGHT & TRADEMARKS Specifications are subject to change without notice. Copyright Β© 2024 Peplink Ltd. All Rights Reserved. Peplink and Peplink logo are trademarks of Peplink International Ltd. Other brands or products mentioned may be trademarks or registered trademarks of their respective owners. Table of Contents Introduction and Scope 5 1 Glossary 6 2 Product Comparison Charts 7 2.1 Balance Routers (for Small Office / Branch) 7 2.2 Balance Routers (for for Enterprise / Headquarters) 8 2.3 MediaFast Routers 9 3 Product Features 10 3.1 WAN 10 3.2 LAN 10 3.3 VPN 11 3.4 Inbound Traffic Management 11 3.5 Outbound Policy 11 3.6 AP Controller 11 3.7 QoS 11 3.8 Firewall 12 3.9 Captive Portal 12 3.10 Other Supported Features 12 4 Advanced Feature Summary 14 4.1 Drop-in Mode and LAN Bypass: Transparent Deployment 14 4.2 QoS: Clearer VoIP 14 4.3 Per-User Bandwidth Control 15 4.4 High Availability via VRRP 15 4.5 USB Modem and Android Tethering 16 4.6 Built-In Remote User VPN Support 16 4.7 LACP NIC Bonding 17 4.8 KVM Virtualization 17 4.9 DPI Engine 17 4.10 NetFlow 18 4.11 Wi-Fi Air Monitoring 18 4.12 SP Default Configuration 18 4.13 Peplink Relay 18 4.14 DNS over HTTPS (DoH) 19 4.15 Peplink InTouch 19 4.16 Synergy Mode 19 https://www.peplink.com 2 Copyright @ 2024 Peplink 4.17 Virtual WAN on VLAN 19 5 Package Contents 20 5.1 Peplink Balance One/Two 20 5.2 Peplink Balance 20/30/30 LTE/30 Pro/50 20 5.3 Peplink Balance 20X 20 5.4 Peplink Balance 210/310 20 5.5 Peplink Balance 310X 20 5.6 Peplink Balance 310 5G 21 5.7 Peplink Balance 310 Fiber 5G 21 5.8 Peplink Balance 305/380/580/710/1350/2500/2500 EC 21 5.9 Peplink Balance 5000 EC 21 5.10 Peplink Balance 380X/580X 21 5.11 Peplink MediaFast 200 21 5.12 Peplink MediaFast 500 22 5.13 Peplink EPX 22 5.14 Peplink SDX 22 5.15 Peplink SDX Pro 22 6 Peplink Balance Overview 23 6.1 Peplink Balance One 23 6.2 Peplink Balance Two 24 6.3 Peplink Balance 20 25 6.4 Peplink Balance 20X 27 6.5 Peplink Balance 30 LTE 30 6.6 Peplink Balance 30 Pro 31 6.7 Peplink Balance 50 32 6.8 Peplink Balance 210 34 6.9 Peplink Balance 305 35 6.10 Peplink Balance 310 36 6.11 Peplink Balance 310X 37 6.12 Peplink Balance 310 5G 38 6.13 Peplink Balance 310 Fiber 5G 40 6.14 Peplink Balance 380 41 6.15 Peplink Balance 380X 42 6.16 Peplink Balance 580 45 6.17 Peplink Balance 580X 46 6.18 Peplink Balance 710 48 6.19 Peplink Balance 1350 50 https://www.peplink.com 3 Copyright @ 2024 Peplink 6.20 Peplink Balance 1350 EC 51 6.21 Peplink Balance 2500 52 6.22 Peplink Balance 2500 EC 53 6.23 Peplink Balance 5000 EC 54 7 Peplink MediaFast Overview 56 7.1 Peplink MediaFast 200 56 7.2 Peplink MediaFast 500 57 7.3 Peplink MediaFast 750 58 8 Peplink Flex-Module Supported Models 59 8.1 Peplink EPX 59 8.2 Peplink SDX 63 8.3 Peplink SDX Pro 66 8.4 Flex Module Expansion Modules 68 9 OLED Display Menu 75 10 Installation 76 11 Basic Configuration 76 12 Network Tab 76 13 System Tab 76 14 Status Tab 76 Appendix A. Restoration of Factory Defaults 77 Appendix B. Routing under DHCP, Static IP, and PPPoE 77 Appendix C. FusionSIM Manual 80 Appendix D. Case studies 80 Appendix E. Overview of ports used by Peplink SD-WAN routers and other Peplink services 80 Appendix F. Troubleshooting 82 Appendix G. Declaration 84 https://www.peplink.com 4 Copyright @ 2024 Peplink Introduction and Scope Peplink Balance routers provide link aggregation and load balancing across multiple WAN connections. We develop products and technologies that can help you build SD-WAN networks with unbreakable connection resilience, unmatched deployment flexibility, and intuitive ease of use. Our product and technology focus has always been on WAN virtualization and the intelligent use of multiple WAN links at the same time to increase reliability and bandwidth whilst reducing costs. We have two key WAN virtualization technologies, Intelligent load balancing for Internet access and SpeedFusion VPN Bonding for secure branch to branch connectivity. The Peplink MediaFast series are a range of routers capable of content caching. Designed with education and entertainment in mind, MediaFast downloads and accelerates video, iTunes iOS updates, app downloads, and other content for uninterrupted learning and fun anytime. The MediaFast can prefetch content during off-peak hours, saving connectivity costs and reducing network burden during busy times. This manual applies to the following Peplink Balance products: β Peplink Balance One β Peplink Balance Two β Peplink Balance 20 β Peplink Balance 20X β Peplink Balance 30 LTE/Pro β Peplink Balance 210 β Peplink Balance 310 β Peplink Balance 310X β Peplink Balance 310 5G β Peplink Balance 310 Fiber 5G β Peplink Balance 380 β Peplink Balance 380X β Peplink Balance 580 β Peplink Balance 580X β Peplink Balance 710 β Peplink Balance 1350 β Peplink Balance 2500 β Peplink Balance 2500 EC β Peplink Balance 5000 EC β Peplink MediaFast 200/500/750 β Peplink EPX β Peplink SDX β Peplink SDX Pro https://www.peplink.com 5 Copyright @ 2024 Peplink The manual covers setting up your Peplink Balance or MediaFast and provides a collection of case studies detailing the advanced features of the Peplink Balance. 1 Glossary The following terms, acronyms, and abbreviations are frequently used in this manual: Term Definition 3G 3rd generation standards for wireless communications (e.g., HSDPA) 4G 4th generation standards for wireless communications (e.g., LTE) DHCP Dynamic Host Configuration Protocol DNS Domain Name System EVDO Evolution-Data Optimized FQDN Fully Qualified Domain Name HSDPA High-Speed Downlink Packet Access HTTP Hyper-Text Transfer Protocol ICMP Internet Control Message Protocol IP Iβ¦
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Report No.: 25C0616R-RFUSV01S-A Page: 57 of 58 Appendix H. Test Setup Photograph Front View of AC Power Line Conducted Emission Test Back View of AC Power Line Conducted Emission Te s t Report No.: 25C0616R-RFUSV01S-A Page: 58 of 58 Radiated Test (Below 1 GHz) Radiated Test (Above 1 GHz)
Report No.: 25C0616R-RFUSV01S-A Page: 30 of 58 TX_b_2412MHz_H_Average TX_b_2412MHz_H_Peak TX_b_2412MHz_V_Average TX_b_2412MHz_V_Peak Report No.: 25C0616R-RFUSV01S-A Page: 31 of 58 TX_b_2437MHz_H_Average TX_b_2437MHz_H_Peak TX_b_2437MHz_V_Average TX_b_2437MHz_V_Peak Report No.: 25C0616R-RFUSV01S-A Page: 32 of 58 TX_b_2462MHz_H_Average TX_b_2462MHz_H_Peak TX_b_2462MHz_V_Average TX_b_2462MHz_V_Peak Report No.: 25C0616R-RFUSV01S-A Page: 33 of 58 TX_g_2412MHz_H_Average TX_g_2412MHz_H_Peak TX_g_2412MHz_V_Average TX_g_2412MHz_V_Peak Report No.: 25C0616R-RFUSV01S-A Page: 34 of 58 TX_g_2437MHz_H_Average TX_g_2437MHz_H_Peak TX_g_2437MHz_V_Average TX_g_2437MHz_V_Peak Report No.: 25C0616R-RFUSV01S-A Page: 35 of 58 TX_g_2462MHz_H_Average TX_g_2462MHz_H_Peak TX_g_2462MHz_V_Average TX_g_2462MHz_V_Peak Report No.: 25C0616R-RFUSV01S-A Page: 36 of 58 TX_ac20_2412MHz_H_Average TX_ac20_2412MHz_H_Peak TX_ac20_2412MHz_V_Average TX_ac20_2412MHz_V_Peak Report No.: 25C0616R-RFUSV01S-A Page: 37 of 58 TX_ac20_2437MHz_H_Average TX_ac20_2437MHz_H_Peak TX_ac20_2437MHz_V_Average TX_ac20_2437MHz_V_Peak Report No.: 25C0616R-RFUSV01S-A Page: 38 of 58 TX_ac20_2462MHz_H_Average TX_ac20_2462MHz_H_Peak TX_ac20_2462MHz_V_Average TX_ac20_2462MHz_V_Peak Report No.: 25C0616R-RFUSV01S-A Page: 39 of 58 TX_ac40_2422MHz_H_Average TX_ac40_2422MHz_H_Peak TX_ac40_2422MHz_V_Average TX_ac40_2422MHz_V_Peak Report No.: 25C0616R-RFUSV01S-A Page: 40 of 58 TX_ac40_2437MHz_H_Average TX_ac40_2437MHz_H_Peak TX_ac40_2437MHz_V_Average TX_ac40_2437MHz_V_Peak Report No.: 25C0616R-RFUSV01S-A Page: 41 of 58 TX_ac40_2452MHz_H_Average TX_ac40_2452MHz_H_Peak TX_ac40_2452MHz_V_Average TX_ac40_2452MHz_V_Peak Report No.: 25C0616R-RFUSV01S-A Page: 42 of 58 TX_be20_2412MHz_H_Average TX_be20_2412MHz_H_Peak TX_be20_2412MHz_V_Average TX_be20_2412MHz_V_Peak Report No.: 25C0616R-RFUSV01S-A Page: 43 of 58 TX_be20_2437MHz_H_Average TX_be20_2437MHz_H_Peak TX_be20_2437MHz_V_Average TX_be20_2437MHz_V_Peak Report No.: 25C0616R-RFUSV01S-A Page: 44 of 58 TX_be20_2462MHz_H_Average TX_be20_2462MHz_H_Peak TX_be20_2462MHz_V_Average TX_be20_2462MHz_V_Peak Report No.: 25C0616R-RFUSV01S-A Page: 45 of 58 TX_be40_2422MHz_H_Average TX_be40_2422MHz_H_Peak TX_be40_2422MHz_V_Average TX_be40_2422MHz_V_Peak Report No.: 25C0616R-RFUSV01S-A Page: 46 of 58 TX_be40_2437MHz_H_Average TX_be40_2437MHz_H_Peak TX_be40_2437MHz_V_Average TX_be40_2437MHz_V_Peak Report No.: 25C0616R-RFUSV01S-A Page: 47 of 58 TX_be40_2452MHz_H_Average TX_be40_2452MHz_H_Peak TX_be40_2452MHz_V_Average TX_be40_2452MHz_V_Peak Report No.: 25C0616R-RFUSV01S-A Page: 48 of 58 Above 18GHz wort case TX_ac40_2437MHz_H TX_ac40_2437MHz_V TX_be40_2437MHz_H TX_be40_2437MHz_V Report No.: 25C0616R-RFUSV01S-A Page: 49 of 58 Appendix G. Test Result of Radiated Emissions Co-location Cellular module: FN990A40-HP TX_b_2437MHz+TX_be20_5785MHz+5GNR n78_15M_QPSK_1RB36_CH630500_H TX_b_2437MHz+TX_be20_5785MHz+5GNR n78_15M_QPSK_1RB36_CH630500_V TX_b_2437MHz+TX_be20_5785MHz+LTE_B41_20M_QPSK _1RB0_CH40620_H TX_b_2437MHz+TX_be20_5785MHz+LTE_B41_20M_QPSK _1RB0_CH40620_V Report No.: 25C0616R-RFUSV01S-A Page: 50 of 58 TX_b_2437MHz+TX_be20_5785MHz+WCDMA_B5_CH4182 _H TX_b_2437MHz+TX_be20_5785MHz+WCDMA_B5_CH4182 _V TX_b_2437MHz+TX_be20_5785MHz+5GNR n78_15M_QPSK_1RB36_CH630500_H_QP TX_b_2437MHz+TX_be20_5785MHz+5GNR n78_15M_QPSK_1RB36_CH630500_V_QP Report No.: 25C0616R-RFUSV01S-A Page: 51 of 58 TX_b_2437MHz+TX_be20_5785MHz+LTE_B41_20M_QPSK _1RB0_CH40620_H_QP TX_b_2437MHz+TX_be20_5785MHz+LTE_B41_20M_QPSK _1RB0_CH40620_V_QP TX_b_2437MHz+TX_be20_5785MHz+WCDMA_B5_CH4182 _H_QP TX_b_2437MHz+TX_be20_5785MHz+WCDMA_B5_CH4182 _V_QP Report No.: 25C0616R-RFUSV01S-A Page: 52 of 58 Cellular module: RM520N-GL TX_b_2437MHz+TX_be20_5785MHz+5GNR_n78_40M_QP SK_1RB0_CH631334_H TX_b_2437MHz+TX_be20_5785MHz+5GNR_n78_40M_QP SK_1RB0_CH631334_V TX_b_2437MHz+TX_be20_5785MHz+5GNR_n78_40M_QP SK_1RB36_CH40620_H_001--.png TX_b_2437MHz+TX_be20_5785MHz+5GNR_n78_40M_QP SK_1RB36_CH40620_V_001--.png Report No.: 25C0616R-RFUSV01S-A Page: 53 of 58 TX_b_2437MHz+TX_be20_5785MHz+LTE_B41_10M_QPSK _1RB24_CH40620_H TX_b_2437MHz+TX_be20_5785MHz+LTE_B41_10M_QPSK _1RB24_CH40620_H_001--.png TX_b_2437MHz+TX_be20_5785MHz+LTE_B41_10M_QPSK _1RB24_CH40620_V TX_b_2437MHz+TX_be20_5785MHz+LTE_B41_10M_QPSK _1RB24_CH40620_V_001--.png Report No.: 25C0616R-RFUSV01S-A Page: 54 of 58 TX_b_2437MHz+TX_be20_5785MHz+WCDMA_B2_CH9400 _H TX_b_2437MHz+TX_be20_5785MHz+WCDMA_B2_CH9400 _V TX_b_2437MHz+TX_be20_5785MHz+5GNR_n78_40M_QP SK_1RB0_CH631334_H TX_b_2437MHz+TX_be20_5785MHz+5GNR_n78_40M_QP SK_1RB0_CH631334_V Report No.: 25C0616R-RFUSV01S-A Page: 55 of 58 TX_b_2437MHz+TX_be20_5785MHz+5GNR_n78_40M_QP SK_1RB36_CH40620_H_QP_001--.png TX_b_2437MHz+TX_be20_5785MHz+5GNR_n78_40M_QP SK_1RB36_CH40620_V_QP_001--.png TX_b_2437MHz+TX_be20_5785MHz+LTE_B41_10M_QPSK _1RB24_CH40620_H_QP TX_b_2437MHz+TX_be20_5785MHz+LTE_B41_10M_QPSK _1RB24_CH40620_V_QP Report No.: 25C0616R-RFUSV01S-A Page: 56 of 58 TX_b_2437MHz+TX_be20_5785MHz+WCDMA_B2_CH9400 _H_QP TX_b_2437MHz+TX_be20_5785MHz+WCDMA_B2_CH9400 _V_QP
Report No.: 25C0616R-RFUSV01S-A Page: 1 of 58 Appendix A. Test Result of AC Power Line Conducted Emission TX_ac40_2437MHz_Line TX_ac40_2437MHz_Neutral TX_be40_2437MHz_Line TX_be40_2437MHz_Neutral Report No.: 25C0616R-RFUSV01S-A Page: 2 of 58 Appendix B. 6 dB Bandwidth Modulation Frequency (MHz) 6dB Bandwidth (MHz) Limit (MHz) Result Ant. 1 Ant. 2 802.11b (20MHz) 2412 8.00 8.08 β§ 0.50 Pass 2437 7.56 8.08 β§ 0.50 Pass 2462 7.12 7.12 β§ 0.50 Pass 802.11g (20MHz) 2412 16.32 16.32 β§ 0.50 Pass 2437 16.32 16.32 β§ 0.50 Pass 2462 16.36 16.32 β§ 0.50 Pass 802.11ac (20MHz) 2412 17.60 17.60 β§ 0.50 Pass 2437 17.68 17.60 β§ 0.50 Pass 2462 17.84 17.60 β§ 0.50 Pass 802.11ac (40MHz) 2422 36.48 36.40 β§ 0.50 Pass 2437 36.40 36.32 β§ 0.50 Pass 2452 36.32 36.48 β§ 0.50 Pass 802.11be (20MHz) 2412 19.04 19.08 β§ 0.50 Pass 2437 19.08 19.12 β§ 0.50 Pass 2462 19.04 18.96 β§ 0.50 Pass 802.11be (40MHz) 2422 38.08 38.24 β§ 0.50 Pass 2437 38.24 38.32 β§ 0.50 Pass 2452 38.08 38.40 β§ 0.50 Pass Report No.: 25C0616R-RFUSV01S-A Page: 3 of 58 802.11b/20MHz/1M/2412MHz/Ch1 802.11b/20MHz/1M/2437MHz/Ch6 802.11b/20MHz/1M/2462MHz/Ch11 802.11g/20MHz/6M/2412MHz/Ch1 802.11g/20MHz/6M/2437MHz/Ch6 802.11g/20MHz/6M/2462MHz/Ch11 Report No.: 25C0616R-RFUSV01S-A Page: 4 of 58 802.11ac/20MHz/MCS0/2412MHz/Ch1 802.11ac/20MHz/MCS0/2437MHz/Ch6 802.11ac/20MHz/MCS0/2462MHz/Ch11 802.11ac/40MHz/MCS0/2422MHz/Ch3 802.11ac/40MHz/MCS0/2437MHz/Ch6 802.11ac/40MHz/MCS0/2452MHz/Ch9 Report No.: 25C0616R-RFUSV01S-A Page: 5 of 58 802.11be/20MHz/MCS0/2412MHz/Ch1 802.11be/20MHz/MCS0/2437MHz/Ch6 802.11be/20MHz/MCS0/2462MHz/Ch11 802.11be/40MHz/MCS0/2422MHz/Ch3 802.11be/40MHz/MCS0/2437MHz/Ch6 802.11be/40MHz/MCS0/2452MHz/Ch9 Report No.: 25C0616R-RFUSV01S-A Page: 6 of 58 Appendix C. Test Result of Maximum Conducted Output Power Modulation Frequency (MHz) Maximum Conducted Output Power (dBm) Limit (dBm) Result Ant. 1 Ant. 2 Total 802.11b (20MHz) 2412 23.05 23.85 26.48 30.00 Pass 2437 25.32 26.10 28.74 30.00 Pass 2462 21.20 21.93 24.59 30.00 Pass 802.11g (20MHz) 2412 20.04 20.85 23.47 30.00 Pass 2437 24.27 25.21 27.78 30.00 Pass 2462 19.66 20.29 23.00 30.00 Pass 802.11n (20MHz) 2412 18.64 19.40 22.05 30.00 Pass 2437 23.55 24.52 27.07 30.00 Pass 2462 18.62 19.37 22.02 30.00 Pass 802.11n (40MHz) 2422 17.87 18.60 21.26 30.00 Pass 2437 18.96 19.88 22.45 30.00 Pass 2452 18.15 18.83 21.51 30.00 Pass 802.11ac (20MHz) 2412 18.71 19.50 22.13 30.00 Pass 2437 23.61 24.60 27.14 30.00 Pass 2462 18.69 19.47 22.11 30.00 Pass 802.11ac (40MHz) 2422 17.94 18.68 21.34 30.00 Pass 2437 19.05 19.92 22.52 30.00 Pass 2452 18.21 18.93 21.60 30.00 Pass 802.11ax (20MHz) 2412 18.82 19.59 22.23 30.00 Pass 2437 23.75 24.73 27.28 30.00 Pass 2462 20.55 21.33 23.97 30.00 Pass 802.11ax (40MHz) 2422 18.24 18.99 21.64 30.00 Pass 2437 19.13 20.05 22.62 30.00 Pass 2452 18.29 19.09 21.72 30.00 Pass 802.11be (20MHz) 2412 18.95 19.66 22.33 30.00 Pass 2437 23.85 24.80 27.36 30.00 Pass 2462 20.67 21.45 24.09 30.00 Pass 802.11be (40MHz) 2422 18.33 19.07 21.73 30.00 Pass 2437 19.22 20.12 22.70 30.00 Pass 2452 18.35 19.21 21.81 30.00 Pass Note: Total Output Power (dBm) = 10*log (Ant.1 (mW)+ Ant.2 (mW)). Report No.: 25C0616R-RFUSV01S-A Page: 7 of 58 Appendix D. Test Result of Power Spectral Density Modulation Frequency (MHz) Maximum Power Spectral Density (dBm/10kHz) Limit (dBm/3kHz) Result Ant. 1 Ant. 2 Total 802.11b (20MHz) 2412 -3.25 -2.71 0.93 8.00 Pass 2437 -0.98 -1.41 2.68 8.00 Pass 2462 -5.04 -4.29 -0.83 8.00 Pass 802.11g (20MHz) 2412 -9.65 -9.24 -6.83 8.00 Pass 2437 -6.05 -5.45 -3.25 8.00 Pass 2462 -10.38 -10.47 -7.69 8.00 Pass 802.11ac (20MHz) 2412 -11.41 -10.95 -8.36 8.00 Pass 2437 -6.53 -6.06 -3.72 8.00 Pass 2462 -11.74 -11.55 -8.80 8.00 Pass 802.11ac (40MHz) 2422 -15.32 -14.77 -12.09 8.00 Pass 2437 -13.99 -13.26 -10.98 8.00 Pass 2452 -15.18 -14.93 -12.09 8.00 Pass 802.11be (20MHz) 2412 -12.19 -11.72 -9.03 8.00 Pass 2437 -7.13 -7.16 -4.29 8.00 Pass 2462 -10.43 -10.38 -7.47 8.00 Pass 802.11be (40MHz) 2422 -15.25 -14.98 -12.41 8.00 Pass 2437 -14.60 -14.48 -11.74 8.00 Pass 2452 -16.30 -15.98 -13.18 8.00 Pass Note: Trace bin-by-bin of each transmits port summing can be performed maximum power density. Report No.: 25C0616R-RFUSV01S-A Page: 8 of 58 802.11b/20MHz/1M/2412MHz/Ch1 802.11b/20MHz/1M/2437MHz/Ch6 802.11b/20MHz/1M/2462MHz/Ch11 802.11g/20MHz/6M/2412MHz/Ch1 802.11g/20MHz/6M/2437MHz/Ch6 802.11g/20MHz/6M/2462MHz/Ch11 Report No.: 25C0616R-RFUSV01S-A Page: 9 of 58 802.11ac/20MHz/MCS0/2412MHz/Ch1 802.11ac/20MHz/MCS0/2437MHz/Ch6 802.11ac/20MHz/MCS0/2462MHz/Ch11 802.11ac/40MHz/MCS0/2422MHz/Ch3 802.11ac/40MHz/MCS0/2437MHz/Ch6 802.11ac/40MHz/MCS0/2452MHz/Ch9 Report No.: 25C0616R-RFUSV01S-A Page: 10 of 58 802.11be/20MHz/MCS0/2412MHz/Ch1 802.11be/20MHz/MCS0/2437MHz/Ch6 802.11be/20MHz/MCS0/2462MHz/Ch11 802.11be/40MHz/MCS0/2422MHz/Ch3 802.11be/40MHz/MCS0/2437MHz/Ch6 802.11be/40MHz/MCS0/2452MHz/Ch9 Report No.: 25C0616R-RFUSV01S-A Page: 11 of 58 Appendix E. Test Result of Antenna Port Conducted Emission Modulation Measurement Level Ξ (dB) Result 802.11b (20MHz) > 30 PASS 802.11g (20MHz) > 30 PASS 802.11ac (20MHz) > 30 PASS 802.11ac (40MHz) > 30 PASS 802.11be (20MHz) > 30 PASS 802.11be (40MHz) > 30 PASS Report No.: 25C0616R-RFUSV01S-A Page: 12 of 58 802.11b/20MHz/1M/2412MHz/Ch1 (Ref.) 802.11b/20MHz/1M/2412MHz/Ch1 802.11b/20MHz/1M/2437MHz/Ch6 (Ref.) 802.11b/20MHz/1M/2437MHz/Ch6 802.11b/20MHz/1M/2462MHz/Ch11 (Ref.) 802.11b/20MHz/1M/2462MHz/Ch11 Report No.: 25C0616R-RFUSV01S-A Page: 13 of 58 802.11g/20MHz/6M/2412MHz/Ch1 (Ref.) 802.11g/20MHz/6M/2412MHz/Ch1 802.11g/20MHz/6M/2437MHz/Ch6 (Ref.) 802.11g/20MHz/6M/2437MHz/Ch6 802.11g/20MHz/6M/2462MHz/Ch11 (Ref.) 802.11g/20MHz/6M/2462MHz/Ch11 Report No.: 25C0616R-RFUSV01S-A Page: 14 of 58 802.11ac/20MHz/MCS0/2412MHz/Ch1 (Ref.) 802.11ac/20MHz/MCS0/2412MHz/Ch1 802.11ac/20MHz/MCS0/2437MHz/Ch6 (Ref.) 802.11ac/20MHz/MCS0/2437MHz/Ch6 802.11ac/20MHz/MCS0/2462MHz/Ch11 (Ref.) 802.11ac/20MHz/MCS0/2462MHz/Ch11 Report No.: 25C0616R-RFUSV01S-A Page: 15 of 58 802.11ac/40MHz/MCS0/2422MHz/Ch3 (Ref.) 802.11β¦
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Report No.: 25C0616R-RFUSV01S-A Page: 1 of 23 Test Report No: 25C0616R-RFUSV01S-A TEST REPORT FCC Rules & Regulations Product Name Peplink Pepwave Wireless Product Brand Name Model No. Balance 310 5G BPL-310-5GK-T-PRM BPL-310-5GN-T-PRM FCC ID 2BS86-P1BE04 Applicant Μs Name / Address Pismo Technology International Limited Wickhams Cay II, Road Town, Tortola, VG1110, British Virgin Islands Manufacturerβs Name Pismo Technology International Limited Test Method Requested, Standard FCC CFR Title 47 Part 15 Subpart C Section 15.247 Verdict Summary IN COMPLIANCE Documented by Jinn Chen Approved by Steven Tsai Date of Receipt 2025/12/16 Date of Issue 2026/01/26 Report Version V1.0 Report No.: 25C0616R-RFUSV01S-A Page: 2 of 23 INDEX page Competences and Guarantees ............................................................................................................................... 4 General Conditions ................................................................................................................................................. 4 Revision History ...................................................................................................................................................... 5 Summary of Test Result .......................................................................................................................................... 6 1. General Information ................................................................................................................................. 7 1.1. EUT Description ...................................................................................................................................... 7 1.2. EUT Information ...................................................................................................................................... 8 1.3. Testing Location Information ................................................................................................................... 8 1.4. Measurement Uncertainty ....................................................................................................................... 9 1.5. List of Test Equipment ........................................................................................................................... 10 2. Test Configuration of EUT ..................................................................................................................... 12 2.1. Test Condition ........................................................................................................................................ 12 2.2. Test Frequency Mode ............................................................................................................................ 12 2.3. Duty Cycle ............................................................................................................................................. 12 2.4. Measurement Configuration .................................................................................................................. 14 2.5. Tested System Details ........................................................................................................................... 15 2.6. Configuration of Tested System ............................................................................................................ 15 2.7. EUT Operating Procedures ................................................................................................................... 16 3. AC Power Line Conducted Emission .................................................................................................... 17 3.1. Test Setup ............................................................................................................................................. 17 3.2. Test Limit ............................................................................................................................................... 17 3.3. Test Procedure ...................................................................................................................................... 17 3.4. Test Result of AC Power Line Conducted Emission ............................................................................. 17 4. 6 dB Bandwidth ..................................................................................................................................... 18 4.1. Test Setup ............................................................................................................................................. 18 4.2. Test Limit ............................................................................................................................................... 18 4.3. Test Procedures .................................................................................................................................... 18 4.4. Test Result of 6dB Bandwidth ............................................................................................................... 18 5. Maximum Conducted Output Power ..................................................................................................... 19 5.1. Test Setup ............................................................................................................................................. 19 5.2. Test Limit ............................................................................................................................................... 19 5.3. Test Procedures .................................................................................................................................... 19 5.4. Test Result of Maximum Conducted Output Power .............................................................................. 19 6. Power Spectral Density ......................................................................................................................... 20 6.1. β¦
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WABU η‘η·ιθ¨δΊζ₯θ WIESON TECHNOLOGIES CO., LTD DATA SHEET WIESON TECHNOLOGIES CO., LTD. External Antenna APPLICATIONS WIFI 5/ WIFI 6 Antenna Part NO.: ARY121-1976-001-00 R eport created by Ben in 20240905 WABU η‘η·ιθ¨δΊζ₯θ WIESON TECHNOLOGIES CO., LTD TABLE OF CONTENT ELECTRONIC CHARACTERISTICS ................................................................................................. 3 Antenna Drawing ................................................................................................................................... 4 Antenna Photo ........................................................................................................................................ 5 Test Information Anechoic Chamber ..................................................................................................... 6 Measurement Results ............................................................................................................................. 9 Return Loss ........................................................................................................................................... 9 Antenna Gain Value ............................................................................................................................ 10 Antenna Measurement Photo .............................................................................................................. 11 3D Radiation Pattern of WIFI 6 Antenna ............................................................................................ 12 WABU η‘η·ιθ¨δΊζ₯θ WIESON TECHNOLOGIES CO., LTD WIESON TECHNOLOGIES CO., LTD. 1. ELECTRONIC CHARACTERISTICS Item Specification Specification Operating Frequency(GHz) 2.4-2.5 5.15-5.85 Bandwidth 100MHz (Min.) 700MHz (Min.) Return Loss 10dB (Min.) 10dB (Min.) Polarization Linear Linear Azimuth Bandwidth Omni-directional Omni-directional Peak Gain 2.25 dBi (Max) 3.36 dBi (Max) Impedance 50Ξ© 50Ξ© Material PCB PCB Maximum Power 1W 1W V.S.W.R 2 : 1 2 : 1 Radiation Omni directional Omni directional Efficiency 68% 74% Operating Temperature -40~85Β°C -40~85Β°C Storage temp -40~85Β°C -40~85Β°C WABU η‘η·ιθ¨δΊζ₯θ WIESON TECHNOLOGIES CO., LTD WIESON TECHNOLOGIES CO., LTD. 2. Antenna Drawing WABU η‘η·ιθ¨δΊζ₯θ WIESON TECHNOLOGIES CO., LTD WIESON TECHNOLOGIES CO., LTD. 3. Antenna Photo WABU η‘η·ιθ¨δΊζ₯θ WIESON TECHNOLOGIES CO., LTD WIESON TECHNOLOGIES CO., LTD. 4. Test Information Anechoic Chamber A. Scope This statement of work defines the requirements of a far-field antenna measurement range, which includes (1) One 325 cm (W) x 285 cm (H) x 640 cm (L) Antenna Measurement Anechoic Chamber, detailed requirements refer section 2.0 . (2) One Far-field Antenna Measurement System with spinning linear CP measurement capabilities, detailed requirement refer section 3.0 . (3) One broad-band transmitted antenna, detailed requirements refer section 8.0 . (4) Three NRL-4433 standard gain antennas, detailed requirements refer section 9.0 . B. Antenna Measurement Anechoic Chamber Fully anechoic chamber with dimension 325 cm in width, 285 cm in height and 640 cm in length. The quiet zone of this Chamber shall be greater than 70 cm @ 0.9 GHz, 50 cm @1.8 GHz, 44 cm @2.4 GHz, 28 cm @5.8 GHz, 16 cm @18 GHz. Contractor should be aware of this anechoic chamber is going to be used for performing far-filed antenna measurement. C. Electrical specifications Frequency Range: 800 MHz to 18 GHz, Quiet zone size: >70 cm @ 0.9 GHz, >50 cm @1.8 GHz, >44 cm @2.4 GHz, >28 cm @5.8 GHz, >16 cm @18 GHz. Quiet zone ripple: < +/- 0.5 dB @1.5~2.4 GHz, < +/- 0.25 dB @2.4~18GHz WABU η‘η·ιθ¨δΊζ₯θ WIESON TECHNOLOGIES CO., LTD WIESON TECHNOLOGIES CO., LTD. D. Absorbers We shall design and install proper absorbers on the inner walls of the chamber to guarantee the electrical specifications. However, the absorbers height shall be no less than 24" which enables the space in the chamber to be around 203 cm (W) x 163 cm (H) x 533 cm (L). All the absorber used shall meet NRL-8093 fire retardant regulations E. Far-field Antenna Measurement System We shall supply all the hardware and software which are capable of characterizing antenna radiation patterns from 30 KHz to 6 GHz or 18GHz using the existed Agilent 5230A PNA-L or Agilent 8753ES Vector Network Analyzer. The system shall be able to automatically measure and plot single axis amplitude and phase antenna patterns in either Cartesian or polar formats. F. Far-field measurement software The software consists of the control or data acquisition software and the data plotting software. (1) The data acquisition software shall at least be capable of the following functions: *measuring single frequency per cut - single axis (azimuth); system can automatically switch frequency at the end of a scan. *measuring data in Uni-direction or bi-direction *measuring data at least with azimuth 360 degrees. (+/- 180 degrees or 0-360 degrees) *real time plot in Cartesian or polar format *screen shows real time angle position *system automatically calculates S/N ratio level based on measured signal fluctuation *function to set positioner zero position *operator can set data taking velocity and data sampling interval *entry to allow positioner offset to any angle (2) The data plotting software shall at least be capable of the following functions: *Editing plot data *plotting data in Cartesian, Polar or delimited ASCII output with header information *plotting data in linear or dB scales *normalizing data to peak (dB), standard gain reference (dBi), or no normalization *overlaying data, (drag and drop capability is preferable) *outputting data to any Windows supported printers WABU η‘η·ιθ¨δΊζ₯θ WIESON TECHNOLOGIES CO., LTD WIESON TECHNOLOGIES CO., LTD. G. Broadband Transmitted antenna We shall provide a linear-polarized broadband antenna with the specifications better than those listed hereafter in this article, Frequency: 1-18 GHz, Gain: >12 dBi @10 GHz, VSWR:<2,0:1, Front to Back Ration > 20 dB H. NRL4433 Standard Gain Horns We shall β¦
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Report No.: 25C0616R-RFUSV17S-A Page: 1 of 11 Test Report No: 25C0616R-RFUSV17S-A RF EXPOSURE EVALUATION DECLARATION Product Name Peplink Pepwave Wireless Product Brand Name Model No. Balance 310 5G BPL-310-5GK-T-PRM BPL-310-5GN-T-PRM FCC ID 2BS86-P1BE04 Applicant Μs Name / Address Pismo Technology International Limited Wickhams Cay II, Road Town, Tortola, VG1110, British Virgin Islands Manufacturerβs Name Pismo Technology International Limited Test Method Requested, Standard KDB 447498 D01 v06 Verdict Summary IN COMPLIANCE Documented by Jinn Chen Tested by Steven Tsai Approved By Tim Sung Date of Receipt 2025/12/16 Date of Issue 2026/01/26 Report Version V1.0 Rβ¦
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8011 34th Ave South, Suite 342 Β· Bloomington, 55425 Β· United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.41 GHz - 2.46 GHz | 748.20 mW |